diff --git a/public/Ohmpi.html b/public/Ohmpi.html index 4fde6656d2ef3f2f7a2d6ced18913f8546256d48..2fca021c02e78844afa25bcc637fba48e1d1ae8f 100644 --- a/public/Ohmpi.html +++ b/public/Ohmpi.html @@ -47,7 +47,7 @@ </li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> diff --git a/public/Ohmpi_V2_00/V2_00_step_01.html b/public/Ohmpi_V2_00/V2_00_step_01.html index 31ff3e2e8d40b0fd31fb1b9f79c43a6d76575347..5ac23f2ae4def4663826454fb9ad9eb197667ce5 100644 --- a/public/Ohmpi_V2_00/V2_00_step_01.html +++ b/public/Ohmpi_V2_00/V2_00_step_01.html @@ -18,7 +18,7 @@ <link rel="index" title="Index" href="../genindex.html" /> <link rel="search" title="Search" href="../search.html" /> <link rel="next" title="STEP n°2: Measurement board" href="V2_00_step_02.html" /> - <link rel="prev" title="OhmPi V 2.xx (64 or 128 electrodes)" href="../V2_00.html" /> + <link rel="prev" title="OhmPi V 2.xx (64 or 128 electrodes and 12V)" href="../V2_00.html" /> </head> <body class="wy-body-for-nav"> @@ -40,17 +40,18 @@ <li class="toctree-l1"><a class="reference internal" href="../Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="../V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="../V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1 current"><a class="reference internal" href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul class="current"> +<li class="toctree-l1 current"><a class="reference internal" href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a><ul class="current"> <li class="toctree-l2"><a class="reference internal" href="../V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="../V2_00.html#technical-data">Technical data</a></li> <li class="toctree-l2 current"><a class="reference internal" href="../V2_00.html#ohmpi-2-step-by-step">Ohmpi 2 step by step</a><ul class="current"> <li class="toctree-l3 current"><a class="current reference internal" href="#"><strong>STEP n°1</strong> : Raspberry Pi configuration</a><ul> -<li class="toctree-l4"><a class="reference internal" href="#os-installation">OS installation</a></li> -<li class="toctree-l4"><a class="reference internal" href="#virtual-environnement-and-packages">Virtual Environnement and packages</a></li> -<li class="toctree-l4"><a class="reference internal" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi">Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)</a></li> +<li class="toctree-l4"><a class="reference internal" href="#part-a-os-installation"><strong>PART A</strong> OS installation</a></li> +<li class="toctree-l4"><a class="reference internal" href="#part-b-virtual-environnement-and-packages"><strong>PART B</strong> Virtual Environnement and packages</a></li> +<li class="toctree-l4"><a class="reference internal" href="#part-c-activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"><strong>PART C</strong> Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)</a></li> </ul> </li> <li class="toctree-l3"><a class="reference internal" href="V2_00_step_02.html"><strong>STEP n°2</strong>: Measurement board</a></li> +<li class="toctree-l3"><a class="reference internal" href="V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a></li> </ul> </li> </ul> @@ -71,7 +72,7 @@ <div role="navigation" aria-label="Page navigation"> <ul class="wy-breadcrumbs"> <li><a href="../index.html" class="icon icon-home"></a> »</li> - <li><a href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a> »</li> + <li><a href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a> »</li> <li><strong>STEP n°1</strong> : Raspberry Pi configuration</li> <li class="wy-breadcrumbs-aside"> <a href="../_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt" rel="nofollow"> View page source</a> @@ -84,8 +85,8 @@ <div class="section" id="step-n1-raspberry-pi-configuration"> <h1><strong>STEP n°1</strong> : Raspberry Pi configuration<a class="headerlink" href="#step-n1-raspberry-pi-configuration" title="Permalink to this headline">¶</a></h1> -<div class="section" id="os-installation"> -<h2>OS installation<a class="headerlink" href="#os-installation" title="Permalink to this headline">¶</a></h2> +<div class="section" id="part-a-os-installation"> +<h2><strong>PART A</strong> OS installation<a class="headerlink" href="#part-a-os-installation" title="Permalink to this headline">¶</a></h2> <table class="docutils align-default"> <colgroup> <col style="width: 78%" /> @@ -123,7 +124,7 @@ For this step, the installation instructions are well described on the Raspberry <p class="admonition-title">Note</p> <p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/raspbian_version1.jpg"><img alt="alternate text" src="../_images/raspbian_version1.jpg" style="width: 800px; height: 400px;" /></a> +<a class="reference internal image-reference" href="../_images/raspbian_version.jpg"><img alt="alternate text" src="../_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> </div> </div> <div class="admonition warning"> @@ -161,8 +162,8 @@ To ensure that the GPIOs are in Low position, you will need to modify the /boot/ <li><p>Close the terminal</p></li> </ol> </div> -<div class="section" id="virtual-environnement-and-packages"> -<h2>Virtual Environnement and packages<a class="headerlink" href="#virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> +<div class="section" id="part-b-virtual-environnement-and-packages"> +<h2><strong>PART B</strong> Virtual Environnement and packages<a class="headerlink" href="#part-b-virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> <p>A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages.</p> <p>All dependencies are specified in requirements.txt</p> @@ -197,27 +198,27 @@ to leave the virtual environment simply type:</p> </pre></div> </div> </div> -<div class="section" id="activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> -<h2>Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)<a class="headerlink" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> +<div class="section" id="part-c-activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> +<h2><strong>PART C</strong> Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)<a class="headerlink" href="#part-c-activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> <p>If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it.</p> <p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> <p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/thonny_first_interface1.jpg"><img alt="alternate text" src="../_images/thonny_first_interface1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/thonny_first_interface.jpg"><img alt="alternate text" src="../_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/thonny_option1.jpg"><img alt="alternate text" src="../_images/thonny_option1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/thonny_option.jpg"><img alt="alternate text" src="../_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/thonny_interpreter1.jpg"><img alt="alternate text" src="../_images/thonny_interpreter1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/thonny_interpreter.jpg"><img alt="alternate text" src="../_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> <p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> <p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/thonny_interpreter_folder1.jpg"><img alt="alternate text" src="../_images/thonny_interpreter_folder1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="../_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>8- Close the window by clicking on <strong>ok</strong>.</p> <p>9- Close thonny to save modifications</p> @@ -228,7 +229,7 @@ to leave the virtual environment simply type:</p> </div> </div> <footer><div class="rst-footer-buttons" role="navigation" aria-label="Footer"> - 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- - - - </div> - - </nav> - <section data-toggle="wy-nav-shift" class="wy-nav-content-wrap"> - - <nav class="wy-nav-top" id="barra-mobile" role="navigation" aria-label="top navigation"> - <i data-toggle="wy-nav-top" class="fa fa-bars"></i> - <a href="#">Porão do Juca</a> - </nav> - - <div class="wy-nav-content"> - <div class="fundo-claro"> - </div> - <div class="fundo-escuro"> - </div> - - <div class="rst-content"> - <div role="navigation" aria-label="breadcrumbs navigation"> - - <!-- <ul class="wy-breadcrumbs"> --> - <!-- <li><a href="#">Docs</a> »</li> --> - - <!-- <li>Features</li> --> - <!-- <li class="wy-breadcrumbs-aside"> --> - - <!-- <a href="_sources/index.txt" rel="nofollow"> View page source</a> --> - - <!-- </li> --> - <!-- </ul> --> - <!-- <hr/> --> - </div> - - <div role="main" class=""> - - <div id="content" class="hfeed entry-container hentry"> - <div class="section" id="step-n2-assembly-of-the-measurement-board"> -<h1><strong>STEP n°2</strong>: Assembly of the measurement board<a class="headerlink" href="#step-n2-assembly-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<div class="align-center figure"> -<a class="reference internal image-reference" href="Ohmpi_V2_00\step_n_2/00_mes_board_components.jpg"><img alt="alternate text" src="Ohmpi_V2_00\step_n_2/00_mes_board_components.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<div class="section" id="description"> -<h2>Description<a class="headerlink" href="#description" title="Permalink to this headline">¶</a></h2> -<div class="align-center figure"> -<a class="reference internal image-reference" href="Ohmpi_V2_00\schema_measurement_board.jpg"><img alt="alternate text" src="Ohmpi_V2_00\schema_measurement_board.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete “plug and play†measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps:</p> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/01_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/01_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installation of female header, 1 by10 pins, for ADS1115</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/02_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/02_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 4 dual-in-line- socket (2 by 2 pins) for -optical relay, AQY211EH.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/03_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/03_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 9 pins) -for INA282.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/04_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/04_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/05_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/05_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 2 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/06_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/06_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco Power Supply 12V to 5V, TDH15 - 1211N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/07_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/07_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals for 12V inpout et 5V outpout</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>8</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/08_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/08_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco power Supply 12V to 24V, TRN-1215</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>9</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/09_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/09_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Two screw terminals electrodes M and N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>10</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/10_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/10_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals, for 12V power supply and for -electrodes A and B</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>11</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/11_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/11_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering three capacitors (100nF)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>12</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/12_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/12_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>2 ohms shunt resistor pre-adjustment</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>13</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/13_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/13_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering 2 ohms shunt resistor</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>14</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/14_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/14_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>1 Mohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>15</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/15_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/15_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1 Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>16</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/16_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/16_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>17</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/17_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/17_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>18</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/18_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/18_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Female header 2 by 20 pins for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>19</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/19_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/19_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>View of the female header 2 by 20 pins installation -for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>20</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/20_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/20_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing MCP23008 component</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>21</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/21_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/21_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting optical relay, AQY211EH</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>22</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/22_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/22_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting LM158 operational amplificator</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>23</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/23_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/23_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting ADS115 board</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>24</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/24_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/24_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing the INA282</p></td> -</tr> -</tbody> -</table> -</div> -</div> -<div class="section" id="step-n3-start-up-of-the-measurement-board"> -<h1><strong>STEP n°3</strong>: Start-up of the measurement board.<a class="headerlink" href="#step-n3-start-up-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="../_images/001.jpg" src="../_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Shutdown the raspberry Pi and unplug the power supply</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="../_images/001.jpg" src="../_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="../_images/002.jpg" src="../_images/002.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="../_images/003.jpg" src="../_images/003.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="../_images/004.jpg" src="../_images/004.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="../_images/005.jpg" src="../_images/005.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Plug the power supply into a socket and connect it to your -Raspberry Pi’s power port.</p></td> -</tr> -</tbody> -</table> -</div> -<div class="section" id="step-n4-measurement-board-validation"> -<h1><strong>STEP n°4</strong>: Measurement board validation<a class="headerlink" href="#step-n4-measurement-board-validation" title="Permalink to this headline">¶</a></h1> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">i2cdetect</span> <span class="o">-</span><span class="n">y</span> <span class="mi">1</span> -</pre></div> -</div> -</div></blockquote> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="../_images/i2cdetect.png" src="../_images/i2cdetect.png" /> -</td> -</tr> -<tr class="row-even"><td><p>If everything is working, three I2C addresses should appear -on the screen.</p></td> -</tr> -</tbody> -</table> -<dl> -<dt>Setting up an equivalent electronic circuit, for this you will need:</dt><dd><ul class="simple"> -<li><p>4 1kohm resistor (R2)</p></li> -<li><p>1 220 ohm resistor (R1)</p></li> -<li><p>1 small padboard</p></li> -<li><p>Spool of solder</p></li> -</ul> -<table class="docutils align-left"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="../_images/ref_circuit.png" src="../_images/ref_circuit.png" /> -</td> -</tr> -<tr class="row-even"><td><p>Schematic of equivalent electronic circuit test</p></td> -</tr> -</tbody> -</table> -</dd> -</dl> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="../_images/20210905_122820.jpg" src="../_images/20210905_122820.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer le circuit équivalent</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="../_images/20210905_123034.jpg" src="../_images/20210905_123034.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer les cables de connexion aux batterie et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="../_images/20210905_132856.jpg" src="../_images/20210905_132856.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Souder les câbles et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="../_images/20210905_210045.jpg" src="../_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer les cables rouges sur la borne +12V et cable noir -sur la borne ground.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="../_images/20210905_210045.jpg" src="../_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer le circuit de référence</p></td> -</tr> -</tbody> -</table> -<p>Run the Thonny IDE and load the code Ohmpy4elec.pi</p> -</div> -<div class="section" id="step-n5-assembly-of-the-mux-board"> -<h1><strong>STEP n°5</strong>: Assembly of the MUX board<a class="headerlink" href="#step-n5-assembly-of-the-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n6-check-mux-board"> -<h1><strong>STEP n°6</strong>: Check Mux Board<a class="headerlink" href="#step-n6-check-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n7-assemble-ohmpi"> -<h1><strong>STEP n°7</strong>: Assemble Ohmpi<a class="headerlink" href="#step-n7-assemble-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n8-boxing-ohmpi"> -<h1><strong>STEP n°8</strong>: Boxing Ohmpi<a class="headerlink" href="#step-n8-boxing-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n9-field-measurement"> -<h1><strong>STEP n°9</strong>: Field measurement<a class="headerlink" href="#step-n9-field-measurement" title="Permalink to this headline">¶</a></h1> -</div> - - - </div> - <footer> - - - <hr/> - - <div role="contentinfo"> - <p> - © Copyright 2020, INRAE, Rémi CLEMENT. - </p> - </div> - - Built with <a href="http://sphinx-doc.org/">Sphinx</a> using a <a href="https://github.com/jucacrispim/sphinx_pdj_theme">theme</a> provided by <a href="http://poraodojuca.net">Porão do Juca</a>. - -</footer> - </div> - </div> - - - <script type="text/javascript"> - var DOCUMENTATION_OPTIONS = { - URL_ROOT:'../', - VERSION:'open hardware resistivity-meter', - COLLAPSE_INDEX:false, - FILE_SUFFIX:'.html', - HAS_SOURCE: true - 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a/public/Ohmpi_V2_00/V2_00_step_02.html +++ b/public/Ohmpi_V2_00/V2_00_step_02.html @@ -17,6 +17,7 @@ <script src="../_static/js/theme.js"></script> <link rel="index" title="Index" href="../genindex.html" /> <link rel="search" title="Search" href="../search.html" /> + <link rel="next" title="STEP n°3: MUX board" href="V2_00_step_03.html" /> <link rel="prev" title="STEP n°1 : Raspberry Pi configuration" href="V2_00_step_01.html" /> </head> @@ -39,7 +40,7 @@ <li class="toctree-l1"><a class="reference internal" href="../Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="../V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="../V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1 current"><a class="reference internal" href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul class="current"> +<li class="toctree-l1 current"><a class="reference internal" href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a><ul class="current"> <li class="toctree-l2"><a class="reference internal" href="../V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="../V2_00.html#technical-data">Technical data</a></li> <li class="toctree-l2 current"><a class="reference internal" href="../V2_00.html#ohmpi-2-step-by-step">Ohmpi 2 step by step</a><ul class="current"> @@ -50,6 +51,7 @@ <li class="toctree-l4"><a class="reference internal" href="#part-c-check-the-measurement-board"><strong>PART C</strong> Check the measurement board</a></li> </ul> </li> +<li class="toctree-l3"><a class="reference internal" href="V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a></li> </ul> </li> </ul> @@ -70,7 +72,7 @@ <div role="navigation" aria-label="Page navigation"> <ul class="wy-breadcrumbs"> <li><a href="../index.html" class="icon icon-home"></a> »</li> - <li><a href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a> »</li> + <li><a href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a> »</li> <li><strong>STEP n°2</strong>: Measurement board</li> <li class="wy-breadcrumbs-aside"> <a href="../_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt" rel="nofollow"> View page source</a> @@ -316,7 +318,7 @@ <div class="section" id="description"> <h3>Description<a class="headerlink" href="#description" title="Permalink to this headline">¶</a></h3> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/schema_measurement_board1.jpg"><img alt="alternate text" src="../_images/schema_measurement_board1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/schema_measurement_board.jpg"><img alt="alternate text" src="../_images/schema_measurement_board.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>Figure shows the general schematics for the electronic measurement board developed. We have developed a complete “plug and play†measurement board. To measure electrical resistivity with Raspberry Pi. @@ -859,7 +861,7 @@ on the screen.</p></td> <td><img alt="../_images/20210905_122820.jpg" src="../_images/20210905_122820.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Préparer le circuit équivalent</p></td> +<tr class="row-even"><td><p>Prepare the equivalent electronic circuit test</p></td> </tr> </tbody> </table> @@ -873,7 +875,7 @@ on the screen.</p></td> <td><img alt="../_images/20210905_123034.jpg" src="../_images/20210905_123034.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Préparer les cables de connexion aux batterie et les cosses</p></td> +<tr class="row-even"><td><p>Prepare the battery connections and the terminals.</p></td> </tr> </tbody> </table> @@ -887,7 +889,7 @@ on the screen.</p></td> <td><img alt="../_images/20210905_132856.jpg" src="../_images/20210905_132856.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Souder les câbles et les cosses</p></td> +<tr class="row-even"><td><p>Soldering cables and terminals</p></td> </tr> </tbody> </table> @@ -898,11 +900,11 @@ on the screen.</p></td> </colgroup> <tbody> <tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="../_images/20210905_210045.jpg" src="../_images/20210905_210045.jpg" /> +<td><img alt="../_images/Inked20211206_150522_LI.jpg" src="../_images/Inked20211206_150522_LI.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Installer les cables rouges sur la borne +12V et cable noir -sur la borne ground.</p></td> +<tr class="row-even"><td><p>Install the red cables on the +12V terminal and black cable +on the ground terminal.</p></td> </tr> </tbody> </table> @@ -913,14 +915,42 @@ sur la borne ground.</p></td> </colgroup> <tbody> <tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="../_images/20210905_210045.jpg" src="../_images/20210905_210045.jpg" /> +<td><img alt="../_images/Inked20211206_150522_LI2.jpg" src="../_images/Inked20211206_150522_LI2.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Installer le circuit de référence</p></td> +<tr class="row-even"><td><p>Connect the equivalent electronic circuit test</p></td> +</tr> +</tbody> +</table> +<table class="docutils align-center"> +<colgroup> +<col style="width: 12%" /> +<col style="width: 88%" /> +</colgroup> +<tbody> +<tr class="row-odd"><td rowspan="2"><p>7</p></td> +<td><img alt="../_images/thonny_first_interface2.jpg" src="../_images/thonny_first_interface2.jpg" /> +</td> +</tr> +<tr class="row-even"><td><p>Run Tonny Interpreter</p></td> +</tr> +</tbody> +</table> +<table class="docutils align-center"> +<colgroup> +<col style="width: 12%" /> +<col style="width: 88%" /> +</colgroup> +<tbody> +<tr class="row-odd"><td rowspan="2"><p>7</p></td> +<td><img alt="../_images/20211206_144334.jpg" src="../_images/20211206_144334.jpg" /> +</td> +</tr> +<tr class="row-even"><td><p>Run Ohmpi_4elec.py, if everything works you should +get the following result</p></td> </tr> </tbody> </table> -<p>Run the Thonny IDE and load the code Ohmpy4elec.pi</p> </div> </div> @@ -929,6 +959,7 @@ sur la borne ground.</p></td> </div> <footer><div class="rst-footer-buttons" role="navigation" aria-label="Footer"> <a href="V2_00_step_01.html" class="btn btn-neutral float-left" title="STEP n°1 : Raspberry Pi configuration" accesskey="p" rel="prev"><span class="fa fa-arrow-circle-left" aria-hidden="true"></span> Previous</a> + <a href="V2_00_step_03.html" class="btn btn-neutral float-right" title="STEP n°3: MUX board" accesskey="n" rel="next">Next <span class="fa fa-arrow-circle-right" aria-hidden="true"></span></a> </div> <hr/> diff --git a/public/Ohmpi_V2_00/V2_00_step_03.html b/public/Ohmpi_V2_00/V2_00_step_03.html new file mode 100644 index 0000000000000000000000000000000000000000..55294eecec2c06101ef5a9ff2775d347795e79ef --- /dev/null +++ b/public/Ohmpi_V2_00/V2_00_step_03.html @@ -0,0 +1,292 @@ +<!DOCTYPE html> +<html class="writer-html5" lang="en" > +<head> + <meta charset="utf-8" /> + <meta name="viewport" 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<link rel="prev" title="STEP n°2: Measurement board" href="V2_00_step_02.html" /> +</head> + +<body class="wy-body-for-nav"> + <div class="wy-grid-for-nav"> + <nav data-toggle="wy-nav-shift" class="wy-nav-side"> + <div class="wy-side-scroll"> + <div class="wy-side-nav-search" > + <a href="../index.html" class="icon icon-home"> Ohmpi: + </a> +<div role="search"> + <form id="rtd-search-form" class="wy-form" action="../search.html" method="get"> + <input type="text" name="q" placeholder="Search docs" /> + <input type="hidden" name="check_keywords" value="yes" /> + <input type="hidden" name="area" value="default" /> + </form> +</div> + </div><div class="wy-menu wy-menu-vertical" data-spy="affix" role="navigation" aria-label="Navigation menu"> + <ul class="current"> +<li class="toctree-l1"><a class="reference internal" href="../Ohmpi.html">OhmPi project</a></li> +<li class="toctree-l1"><a class="reference internal" href="../V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> +<li 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+ <hr/> +</div> + <div role="main" class="document" itemscope="itemscope" itemtype="http://schema.org/Article"> + <div itemprop="articleBody"> + + <div class="section" id="step-n3-mux-board"> +<h1><strong>STEP n°3</strong>: MUX board<a class="headerlink" href="#step-n3-mux-board" title="Permalink to this headline">¶</a></h1> +<div class="section" id="part-a-assembly-of-mux-board"> +<h2><strong>PART A</strong> Assembly of MUX board<a class="headerlink" href="#part-a-assembly-of-mux-board" title="Permalink to this headline">¶</a></h2> +<div class="section" id="required-components"> +<h3>Required components<a class="headerlink" href="#required-components" title="Permalink to this headline">¶</a></h3> +<div class="align-center figure"> +<a class="reference internal image-reference" href="../_images/00_mes_board_components1.jpg"><img alt="alternate text" src="../_images/00_mes_board_components1.jpg" style="width: 600px; height: 450px;" /></a> +</div> +<table class="colwidths-given docutils align-default" id="id1"> +<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id1" title="Permalink to this table">¶</a></caption> +<colgroup> +<col style="width: 8%" /> +<col style="width: 18%" /> +<col style="width: 18%" /> +<col style="width: 18%" /> +<col style="width: 18%" /> +<col style="width: 9%" /> +<col style="width: 9%" /> +</colgroup> +<thead> +<tr class="row-odd"><th class="head"><p>Component</p></th> +<th class="head"><p>Number</p></th> +<th class="head"><p>Cost per unit €</p></th> +<th class="head"><p>Total cost €</p></th> +<th class="head"><p>Manufacturer</p></th> +<th class="head"><p>Manufacturer s reference</p></th> +<th class="head"><p>Web reference</p></th> +</tr> +</thead> +<tbody> +<tr class="row-even"><td><p>Printed circuit board</p></td> +<td><p>4</p></td> +<td><p>140</p></td> +<td><p>560</p></td> +<td><p>Asler</p></td> +<td><ul class="simple"> +<li></li> +</ul> +</td> +<td><ul class="simple"> +<li></li> +</ul> +</td> +</tr> +<tr class="row-odd"><td><p>Pin strip no ejector 16 pins</p></td> +<td><p>16</p></td> +<td><p>0.62</p></td> +<td><p>9.92</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120550</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994">https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994</a></p></td> +</tr> +<tr class="row-even"><td><p>diode-1n4007</p></td> +<td><p>256</p></td> +<td><p>0.091</p></td> +<td><p>23.296</p></td> +<td><p>Diodes Incorporated</p></td> +<td><p>1N4007-T</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Diodes-Incorporated/1N4007-T?qs=sGAEpiMZZMueQxo7L%2FBPyAkbORUUMREn">https://www.mouser.fr/ProductDetail/Diodes-Incorporated/1N4007-T?qs=sGAEpiMZZMueQxo7L%2FBPyAkbORUUMREn</a></p></td> +</tr> +<tr class="row-odd"><td><p>Pin strip no ejector 6 pins</p></td> +<td><p>4</p></td> +<td><p>0.39</p></td> +<td><p>1.56</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120550</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994">https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994</a></p></td> +</tr> +<tr class="row-even"><td><p>Dual screw terminal (5.08-mm pitch)</p></td> +<td><p>12</p></td> +<td><p>0.648</p></td> +<td><p>7.776</p></td> +<td><p>CUI Devices</p></td> +<td><p>TB009-508-02BE</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D">https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>Generic male header - 3 pins</p></td> +<td><p>12</p></td> +<td><p>0.205</p></td> +<td><p>2.46</p></td> +<td><p>TE Connectivity</p></td> +<td><p>4-103321-5</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity/4-103321-5?qs=5TwgZeq9E7HSYLqaljJYrw%3D%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity/4-103321-5?qs=5TwgZeq9E7HSYLqaljJYrw%3D%3D</a></p></td> +</tr> +<tr class="row-even"><td><p>MCP23017 I2C I/O Expander</p></td> +<td><p>16</p></td> +<td><p>2.5</p></td> +<td><p>40</p></td> +<td><p>Adafruit</p></td> +<td><p>732</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/732?qs=sGAEpiMZZMsKEdP9slC0Yfx16nYdMpXJueeOGoLBlDI%3D">https://www.mouser.fr/ProductDetail/Adafruit/732?qs=sGAEpiMZZMsKEdP9slC0Yfx16nYdMpXJueeOGoLBlDI%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>Omron G5LE-1-VD 12 VDC PCB relay 12 V DC 8 A 1</p></td> +<td><p>256</p></td> +<td><p>1.27</p></td> +<td><p>325.12</p></td> +<td><p>Omron</p></td> +<td><p>G5LE-1-VD 12 VDC</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/omron-g5le-1-vd-12-vdc-pcb-relay-12-v-dc-8-a-1-change-over-1-pcs-503811">https://www.conrad.com/p/omron-g5le-1-vd-12-vdc-pcb-relay-12-v-dc-8-a-1-change-over-1-pcs-503811</a></p></td> +</tr> +<tr class="row-even"><td><p>ZVN4206A MOSFET-NCHANNEL</p></td> +<td><p>256</p></td> +<td><p>0.471</p></td> +<td><p>120.576</p></td> +<td><p>Diodes Incorporated</p></td> +<td><p>ZVN4206A</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Diodes-Incorporated/ZVN4206A?qs=vHuUswq2%252Bsz9b%2Ff6fcXt7g%3D%3D">https://www.mouser.fr/ProductDetail/Diodes-Incorporated/ZVN4206A?qs=vHuUswq2%252Bsz9b%2Ff6fcXt7g%3D%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>100k? Resistor</p></td> +<td><p>256</p></td> +<td><p>0.061</p></td> +<td><p>15.616</p></td> +<td><p>Vishay / Beyschlag</p></td> +<td><p>MBA02040C1003FRP00</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Beyschlag/MBA02040C1003FRP00?qs=mzRxyRlhVdt9crF7Zyf%2F5Q%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Beyschlag/MBA02040C1003FRP00?qs=mzRxyRlhVdt9crF7Zyf%2F5Q%3D%3D</a></p></td> +</tr> +<tr class="row-even"><td><p>Adafruit TCA9548A</p></td> +<td><p>4</p></td> +<td><p>5.89</p></td> +<td><p>23.56</p></td> +<td><p>Adafruit</p></td> +<td><p>2717</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/2717?qs=sGAEpiMZZMsyYdr3R27aV4EQf73yOH%252Baqg%252BZ3hVktao%3D">https://www.mouser.fr/ProductDetail/Adafruit/2717?qs=sGAEpiMZZMsyYdr3R27aV4EQf73yOH%252Baqg%252BZ3hVktao%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>BKL Electronic 10120558 Pin strip no ejector Contact spacing: 2.54 mm Total number of pins: 16 No. of rows: 2 1 pc(s)</p></td> +<td><p>16</p></td> +<td><p>0.51</p></td> +<td><p>8.16</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120558</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-10120558-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-741727?searchTerm=741727&searchType=suggest&searchSuggest=product">https://www.conrad.com/p/bkl-electronic-10120558-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-741727?searchTerm=741727&searchType=suggest&searchSuggest=product</a></p></td> +</tr> +<tr class="row-even"><td><p>BKL Electronic 10120862 Pin connector + strain relief Contact spacing: 2.54 mm Total number of pins: 6 No. of rows: 2 1</p></td> +<td><p>16</p></td> +<td><p>0.84</p></td> +<td><p>13.44</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120862</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-10120862-pin-connector-strain-relief-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-742063">https://www.conrad.com/p/bkl-electronic-10120862-pin-connector-strain-relief-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-742063</a></p></td> +</tr> +<tr class="row-odd"><td><p>BKL Electronic 10120158/10 Ribbon cable Contact spacing: 1.27 mm 16 x 0.08 mm Multi-coloured 10 m</p></td> +<td><p>1</p></td> +<td><p>27</p></td> +<td><p>27</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120158/10</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-1012015810-ribbon-cable-contact-spacing-127-mm-16-x-008-mm-multi-coloured-10-m-1548658?searchTerm=1548658&searchType=suggest&searchSuggest=product">https://www.conrad.com/p/bkl-electronic-1012015810-ribbon-cable-contact-spacing-127-mm-16-x-008-mm-multi-coloured-10-m-1548658?searchTerm=1548658&searchType=suggest&searchSuggest=product</a></p></td> +</tr> +<tr class="row-even"><td><p>spacer 5.5 HEX 25 mm M3 male/female</p></td> +<td><p>31</p></td> +<td><p>2.79</p></td> +<td><p>86.49</p></td> +<td><p>Keystone Electronics</p></td> +<td><p>24300</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Keystone-Electronics/24300?qs=UWqYQ%2F2cZWu0ejpOzmZC2A%3D%3D">https://www.mouser.fr/ProductDetail/Keystone-Electronics/24300?qs=UWqYQ%2F2cZWu0ejpOzmZC2A%3D%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>Screw</p></td> +<td><p>9</p></td> +<td><p>0.305</p></td> +<td><p>2.745</p></td> +<td><p>APM HEXSEAL</p></td> +<td><p>RM3X8MM-2701</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D">https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D</a></p></td> +</tr> +<tr class="row-even"><td><p>spacer 5.5 HEX 25 mm M3 female/female</p></td> +<td><p>9</p></td> +<td><p>0.846</p></td> +<td><p>7.614</p></td> +<td><p>Keystone Electronics</p></td> +<td><p>25515</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Keystone-Electronics/25515?qs=UWqYQ%2F2cZWuxuhUmfr%252BZuQ%3D%3D">https://www.mouser.fr/ProductDetail/Keystone-Electronics/25515?qs=UWqYQ%2F2cZWuxuhUmfr%252BZuQ%3D%3D</a></p></td> +</tr> +</tbody> +</table> +</div> +</div> +</div> + + + </div> + </div> + <footer><div class="rst-footer-buttons" role="navigation" aria-label="Footer"> + <a href="V2_00_step_02.html" class="btn btn-neutral float-left" title="STEP n°2: Measurement board" accesskey="p" rel="prev"><span class="fa fa-arrow-circle-left" aria-hidden="true"></span> Previous</a> + </div> + + <hr/> + + <div role="contentinfo"> + <p>© Copyright 2020, INRAE, Rémi CLEMENT.</p> + </div> + + Built with <a href="https://www.sphinx-doc.org/">Sphinx</a> using a + <a href="https://github.com/readthedocs/sphinx_rtd_theme">theme</a> + provided by <a href="https://readthedocs.org">Read the Docs</a>. + + +</footer> + </div> + </div> + </section> + </div> + <script> + jQuery(function () { + SphinxRtdTheme.Navigation.enable(true); + }); + </script> + +</body> +</html> \ No newline at end of file diff --git a/public/V1_01.html b/public/V1_01.html index 0b1776c6e1f1652b0b9a740d5b907bdeb3537b29..768b87788f9e05441e6aa679a3656b983bab73da 100644 --- a/public/V1_01.html +++ b/public/V1_01.html @@ -69,7 +69,7 @@ </ul> </li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> @@ -181,7 +181,7 @@ For this step, the installation instructions are well described on the Raspberry <p class="admonition-title">Note</p> <p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/raspbian_version.jpg"><img alt="alternate text" src="_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> +<a class="reference internal image-reference" href="_images/raspbian_version1.jpg"><img alt="alternate text" src="_images/raspbian_version1.jpg" style="width: 800px; height: 400px;" /></a> </div> </div> <div class="admonition warning"> @@ -259,21 +259,21 @@ to leave the virtual environment simply type:</p> <p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> <p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_first_interface.jpg"><img alt="alternate text" src="_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_first_interface1.jpg"><img alt="alternate text" src="_images/thonny_first_interface1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_option.jpg"><img alt="alternate text" src="_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_option1.jpg"><img alt="alternate text" src="_images/thonny_option1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter.jpg"><img alt="alternate text" src="_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_interpreter1.jpg"><img alt="alternate text" src="_images/thonny_interpreter1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> <p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> <p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_interpreter_folder1.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>8- Close the window by clicking on <strong>ok</strong>.</p> <p>9- Close thonny to save modifications</p> @@ -317,7 +317,7 @@ A shortcut between Electrodes A and B will generate excessive currents, whose in A lithium ion battery or automobile-type lead-acid battery can deliver a strong enough current to damage the board and, as such, constitutes a potential hazard. We therefore recommend adding a 1.5-A fuse between the battery and resistor R9.</p> <div class="align-center figure" id="id1"> -<a class="reference internal image-reference" href="_images/schema_measurement_board.jpg"><img alt="alternate text" src="_images/schema_measurement_board.jpg" style="width: 800px; height: 400px;" /></a> +<a class="reference internal image-reference" href="_images/schema_measurement_board1.jpg"><img alt="alternate text" src="_images/schema_measurement_board1.jpg" style="width: 800px; height: 400px;" /></a> <p class="caption"><span class="caption-text">Measurement board</span><a class="headerlink" href="#id1" title="Permalink to this image">¶</a></p> </div> </div> diff --git a/public/V1_02.html b/public/V1_02.html index 00192dc4e1a22f390063773a9edf1138185a7291..f286a04154eeac868d53bdac51de90383680598c 100644 --- a/public/V1_02.html +++ b/public/V1_02.html @@ -17,7 +17,7 @@ <script src="_static/js/theme.js"></script> <link rel="index" title="Index" href="genindex.html" /> <link rel="search" title="Search" href="search.html" /> - <link rel="next" title="OhmPi V 2.xx (64 or 128 electrodes)" href="V2_00.html" /> + <link rel="next" title="OhmPi V 2.xx (64 or 128 electrodes and 12V)" href="V2_00.html" /> <link rel="prev" title="OhmPi V 1.01 (limited to 32 electrodes)" href="V1_01.html" /> </head> @@ -69,7 +69,7 @@ <li class="toctree-l2"><a class="reference internal" href="#complete-list-of-components">Complete list of components</a></li> </ul> </li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> @@ -179,7 +179,7 @@ For this step, the installation instructions are well described on the Raspberry <p class="admonition-title">Note</p> <p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/raspbian_version.jpg"><img alt="alternate text" src="_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> +<a class="reference internal image-reference" href="_images/raspbian_version1.jpg"><img alt="alternate text" src="_images/raspbian_version1.jpg" style="width: 800px; height: 400px;" /></a> </div> </div> <div class="admonition warning"> @@ -257,21 +257,21 @@ to leave the virtual environment simply type:</p> <p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> <p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_first_interface.jpg"><img alt="alternate text" src="_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_first_interface1.jpg"><img alt="alternate text" src="_images/thonny_first_interface1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_option.jpg"><img alt="alternate text" src="_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_option1.jpg"><img alt="alternate text" src="_images/thonny_option1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter.jpg"><img alt="alternate text" src="_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_interpreter1.jpg"><img alt="alternate text" src="_images/thonny_interpreter1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> <p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> <p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_interpreter_folder1.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>8- Close the window by clicking on <strong>ok</strong>.</p> <p>9- Close thonny to save modifications</p> @@ -758,7 +758,7 @@ are displayed on the screen. A measurement file is automatically created and nam </div> <footer><div class="rst-footer-buttons" role="navigation" aria-label="Footer"> <a href="V1_01.html" class="btn btn-neutral float-left" title="OhmPi V 1.01 (limited to 32 electrodes)" accesskey="p" rel="prev"><span class="fa fa-arrow-circle-left" aria-hidden="true"></span> Previous</a> - <a href="V2_00.html" class="btn btn-neutral float-right" title="OhmPi V 2.xx (64 or 128 electrodes)" accesskey="n" rel="next">Next <span class="fa fa-arrow-circle-right" aria-hidden="true"></span></a> + <a href="V2_00.html" class="btn btn-neutral float-right" title="OhmPi V 2.xx (64 or 128 electrodes and 12V)" accesskey="n" rel="next">Next <span class="fa fa-arrow-circle-right" aria-hidden="true"></span></a> </div> <hr/> diff --git a/public/V2_00.html b/public/V2_00.html index ea9a8dac0fd6a193d2a14af65f5a006e7c8bd2df..e6c583e736844a9a707b0951d334e648b8cb021d 100644 --- a/public/V2_00.html +++ b/public/V2_00.html @@ -3,7 +3,7 @@ <head> <meta charset="utf-8" /> <meta name="viewport" content="width=device-width, initial-scale=1.0" /> - <title>OhmPi V 2.xx (64 or 128 electrodes) — Ohmpi: open hardware resistivity-meter documentation</title><link rel="stylesheet" href="_static/css/theme.css" type="text/css" /> + <title>OhmPi V 2.xx (64 or 128 electrodes and 12V) — Ohmpi: open hardware resistivity-meter documentation</title><link rel="stylesheet" href="_static/css/theme.css" type="text/css" /> <link rel="stylesheet" href="_static/pygments.css" type="text/css" /> <!--[if lt IE 9]> <script src="_static/js/html5shiv.min.js"></script> @@ -40,12 +40,13 @@ <li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1 current"><a class="current reference internal" href="#">OhmPi V 2.xx (64 or 128 electrodes)</a><ul> +<li class="toctree-l1 current"><a class="current reference internal" href="#">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a><ul> <li class="toctree-l2"><a class="reference internal" href="#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="#technical-data">Technical data</a></li> <li class="toctree-l2"><a class="reference internal" href="#ohmpi-2-step-by-step">Ohmpi 2 step by step</a><ul> <li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html"><strong>STEP n°1</strong> : Raspberry Pi configuration</a></li> <li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_02.html"><strong>STEP n°2</strong>: Measurement board</a></li> +<li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a></li> </ul> </li> </ul> @@ -66,7 +67,7 @@ <div role="navigation" aria-label="Page navigation"> <ul class="wy-breadcrumbs"> <li><a href="index.html" class="icon icon-home"></a> »</li> - <li>OhmPi V 2.xx (64 or 128 electrodes)</li> + <li>OhmPi V 2.xx (64 or 128 electrodes and 12V)</li> <li class="wy-breadcrumbs-aside"> <a href="_sources/V2_00.rst.txt" rel="nofollow"> View page source</a> </li> @@ -76,8 +77,8 @@ <div role="main" class="document" itemscope="itemscope" itemtype="http://schema.org/Article"> <div itemprop="articleBody"> - <div class="section" id="ohmpi-v-2-xx-64-or-128-electrodes"> -<h1>OhmPi V 2.xx (64 or 128 electrodes)<a class="headerlink" href="#ohmpi-v-2-xx-64-or-128-electrodes" title="Permalink to this headline">¶</a></h1> + <div class="section" id="ohmpi-v-2-xx-64-or-128-electrodes-and-12v"> +<h1>OhmPi V 2.xx (64 or 128 electrodes and 12V)<a class="headerlink" href="#ohmpi-v-2-xx-64-or-128-electrodes-and-12v" title="Permalink to this headline">¶</a></h1> <div class="align-center figure"> <a class="reference internal image-reference" href="_images/Under-Construction.png"><img alt="Ohmpi 2" src="_images/Under-Construction.png" style="width: 500px; height: 250px;" /></a> </div> @@ -195,9 +196,9 @@ control system</p></td> <div class="toctree-wrapper compound"> <ul> <li class="toctree-l1"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html"><strong>STEP n°1</strong> : Raspberry Pi configuration</a><ul> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#os-installation">OS installation</a></li> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#virtual-environnement-and-packages">Virtual Environnement and packages</a></li> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi">Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)</a></li> +<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#part-a-os-installation"><strong>PART A</strong> OS installation</a></li> +<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#part-b-virtual-environnement-and-packages"><strong>PART B</strong> Virtual Environnement and packages</a></li> +<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#part-c-activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"><strong>PART C</strong> Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)</a></li> </ul> </li> <li class="toctree-l1"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_02.html"><strong>STEP n°2</strong>: Measurement board</a><ul> @@ -210,6 +211,13 @@ control system</p></td> <li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_02.html#part-c-check-the-measurement-board"><strong>PART C</strong> Check the measurement board</a></li> </ul> </li> +<li class="toctree-l1"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a><ul> +<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html#part-a-assembly-of-mux-board"><strong>PART A</strong> Assembly of MUX board</a><ul> +<li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html#required-components">Required components</a></li> +</ul> +</li> +</ul> +</li> </ul> </div> </div> diff --git a/public/V2_00_step_01.html b/public/V2_00_step_01.html deleted file mode 100644 index 287305fef100e720ec5b701cb94829b6c6af46e5..0000000000000000000000000000000000000000 --- a/public/V2_00_step_01.html +++ /dev/null @@ -1,1207 +0,0 @@ - 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- - - - </div> - - </nav> - <section data-toggle="wy-nav-shift" class="wy-nav-content-wrap"> - - <nav class="wy-nav-top" id="barra-mobile" role="navigation" aria-label="top navigation"> - <i data-toggle="wy-nav-top" class="fa fa-bars"></i> - <a href="#">Porão do Juca</a> - </nav> - - <div class="wy-nav-content"> - <div class="fundo-claro"> - </div> - <div class="fundo-escuro"> - </div> - - <div class="rst-content"> - <div role="navigation" aria-label="breadcrumbs navigation"> - - <!-- <ul class="wy-breadcrumbs"> --> - <!-- <li><a href="#">Docs</a> »</li> --> - - <!-- <li>Features</li> --> - <!-- <li class="wy-breadcrumbs-aside"> --> - - <!-- <a href="_sources/index.txt" rel="nofollow"> View page source</a> --> - - <!-- </li> --> - <!-- </ul> --> - <!-- <hr/> --> - </div> - - <div role="main" class=""> - - <div id="content" class="hfeed entry-container hentry"> - <div class="section" id="step-n1-raspberry-pi-configuration"> -<h1><strong>STEP n°1</strong> : Raspberry Pi configuration<a class="headerlink" href="#step-n1-raspberry-pi-configuration" title="Permalink to this headline">¶</a></h1> -<div class="section" id="os-installation"> -<h2>OS installation<a class="headerlink" href="#os-installation" title="Permalink to this headline">¶</a></h2> -<table class="docutils align-default"> -<colgroup> -<col style="width: 78%" /> -<col style="width: 22%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -<td><p><strong>Quantity</strong></p></td> -</tr> -<tr class="row-even"><td><p>Raspberry Pi 4 Model B</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-odd"><td><p>Micro SD 32 Go</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-even"><td><p>HDMI Cable</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-odd"><td><p>Computer mouse</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-even"><td><p>Computer Keyboard</p></td> -<td><p>1</p></td> -</tr> -</tbody> -</table> -<p>The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). -For this step, the installation instructions are well described on the Raspberry website</p> -<ol class="arabic simple"> -<li><p>Watch the vidéo “how to set up your raspberry Pi†(<a class="reference external" href="https://www.youtube.com/watch?v=wjWZhV1v3Pk">https://www.youtube.com/watch?v=wjWZhV1v3Pk</a>)</p></li> -<li><p>The authors recommend installing the latest stable and complete version of Raspbian by using NOOBS (a simple-to-use operating system installer).</p></li> -<li><p>or you can visit this website : (<a class="reference external" href="https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up">https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up</a>)</p></li> -</ol> -<div class="admonition note"> -<p class="admonition-title">Note</p> -<p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/raspbian_version.jpg"><img alt="alternate text" src="_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> -</div> -</div> -<div class="admonition warning"> -<p class="admonition-title">Warning</p> -<p>Once the OS has been installed, <strong>1-wire, spi and GPIO remote option</strong> must be deactivated via the Raspbian GUI settings menu. Failure to carry out this task may cause damage to the relay shield cards during measurements.</p> -</div> -<p>3. When the relays are connected to the GPIO, make sure that all the GPIOs are in the low position when the raspberry starts up. If not, the relays will activate unexpectedly. -To ensure that the GPIOs are in Low position, you will need to modify the /boot/config.txt file.</p> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">cd</span> <span class="o">/</span><span class="n">boot</span><span class="o">/</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="4"> -<li><p>Open config.txt with GNU nano editor</p></li> -</ol> -<blockquote> -<div><div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">sudo</span> <span class="n">nano</span> <span class="n">config</span><span class="o">.</span><span class="n">txt</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="5"> -<li><p>At the end of the file write :</p></li> -</ol> -<blockquote> -<div><div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">gpio</span><span class="o">=</span><span class="mi">8</span><span class="o">=</span><span class="n">op</span><span class="p">,</span><span class="n">dl</span> -<span class="n">gpio</span><span class="o">=</span><span class="mi">7</span><span class="o">=</span><span class="n">op</span><span class="p">,</span><span class="n">dl</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="6"> -<li><p>Press Ctrl +O to save the modifications and press enter</p></li> -<li><p>Press Ctrl +x to escap and return to the terminal</p></li> -<li><p>Close the terminal</p></li> -</ol> -</div> -<div class="section" id="virtual-environnement-and-packages"> -<h2>Virtual Environnement and packages<a class="headerlink" href="#virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> -<p>A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. -Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages.</p> -<p>All dependencies are specified in requirements.txt</p> -<div class="admonition note"> -<p class="admonition-title">Note</p> -<p>All instructions below should be typed in the terminal</p> -</div> -<p>It is first necessary to ensure that the libatlas-base-dev library is installed:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">sudo</span> <span class="n">apt</span><span class="o">-</span><span class="n">get</span> <span class="n">install</span> <span class="n">libatlas</span><span class="o">-</span><span class="n">base</span><span class="o">-</span><span class="n">dev</span> -</pre></div> -</div> -<p>We strongly recommend users to create a virtual environment to run the code and installed all required dependencies. It can be done either in a directory gathering all virtual environments used on the computer or within the ohmpy directory.</p> -<p>Create the virtual environment:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">python3</span> <span class="o">-</span><span class="n">m</span> <span class="n">venv</span> <span class="n">ohmpy</span> -</pre></div> -</div> -<p>Activate it using the following command:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">source</span> <span class="n">ohmpy</span><span class="o">/</span><span class="nb">bin</span><span class="o">/</span><span class="n">activate</span> -</pre></div> -</div> -<p>Install packages within the virtual environment. Installing the following package should be sufficient to meet dependencies:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">pip</span> <span class="n">install</span> <span class="n">RPi</span><span class="o">.</span><span class="n">GPIO</span> <span class="n">adafruit</span><span class="o">-</span><span class="n">blinka</span> <span class="n">numpy</span> <span class="n">adafruit</span><span class="o">-</span><span class="n">circuitpython</span><span class="o">-</span><span class="n">ads1x15</span> <span class="n">pandas</span> -</pre></div> -</div> -<p>Check that requirements are met using</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">pip</span> <span class="nb">list</span> -</pre></div> -</div> -<p>You should run you code within the virtual environment -to leave the virtual environment simply type:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">deactivate</span> -</pre></div> -</div> -</div> -<div class="section" id="activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> -<h2>Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)<a class="headerlink" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> -<p>If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it.</p> -<p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> -<p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_first_interface.jpg"><img alt="alternate text" src="_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_option.jpg"><img alt="alternate text" src="_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter.jpg"><img alt="alternate text" src="_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> -<p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> -<p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>8- Close the window by clicking on <strong>ok</strong>.</p> -<p>9- Close thonny to save modifications</p> -</div> -</div> -<div class="section" id="step-n2-assembly-of-the-measurement-board"> -<h1><strong>STEP n°2</strong>: Assembly of the measurement board<a class="headerlink" href="#step-n2-assembly-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/00_mes_board_components.jpg"><img alt="alternate text" src="_images/00_mes_board_components.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<table class="colwidths-given docutils align-default" id="id1"> -<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id1" title="Permalink to this table">¶</a></caption> -<colgroup> -<col style="width: 8%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 9%" /> -<col style="width: 9%" /> -</colgroup> -<thead> -<tr class="row-odd"><th class="head"><p>Component</p></th> -<th class="head"><p>Number</p></th> -<th class="head"><p>Cost per unit €</p></th> -<th class="head"><p>Total cost €</p></th> -<th class="head"><p>Manufacturer</p></th> -<th class="head"><p>Manufacturer s reference</p></th> -<th class="head"><p>Web reference</p></th> -</tr> -</thead> -<tbody> -<tr class="row-even"><td><p>Raspberry Pi 4 Model B</p></td> -<td><p>1</p></td> -<td><p>58.75</p></td> -<td><p>58.75</p></td> -<td><p>Raspberry</p></td> -<td><p>Raspberry Pi 4 Model B</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D">https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>LM158N AMP-o</p></td> -<td><p>4</p></td> -<td><p>14.5</p></td> -<td><p>58</p></td> -<td><p>Texas Instruments</p></td> -<td><p>LM358AN/NOPB</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Texas-Instruments/LM158J?qs=X1J7HmVL2ZH8vpEfMl8%2FFQ%3D%3D">https://www.mouser.fr/ProductDetail/Texas-Instruments/LM158J?qs=X1J7HmVL2ZH8vpEfMl8%2FFQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Printed circuit board</p></td> -<td><p>1</p></td> -<td><p>12</p></td> -<td><p>12</p></td> -<td><p>Asler</p></td> -<td><ul class="simple"> -<li></li> -</ul> -</td> -<td><ul class="simple"> -<li></li> -</ul> -</td> -</tr> -<tr class="row-odd"><td><p>ADS1115</p></td> -<td><p>2</p></td> -<td><p>11.9</p></td> -<td><p>23.8</p></td> -<td><p>Adafruit</p></td> -<td><p>1085</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/1085?qs=%2Fha2pyFaduhE%2FOGzuTWIQ9Iz5VjaqFOYugqAlGxpEcKiGrQvF4hn%252Bg%3D%3D">https://www.mouser.fr/ProductDetail/Adafruit/1085?qs=%2Fha2pyFaduhE%2FOGzuTWIQ9Iz5VjaqFOYugqAlGxpEcKiGrQvF4hn%252Bg%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Capacitor 100nF 50Vdc 10% Ceramic</p></td> -<td><p>4</p></td> -<td><p>0.2</p></td> -<td><p>0.8</p></td> -<td><p>KEMET</p></td> -<td><p>C320C104K1</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/KEMET/C320C104K1R5TA7303?qs=c4UyoTs%2FLq1th4mcyOeTmA%3D%3D">https://www.mouser.fr/ProductDetail/KEMET/C320C104K1R5TA7303?qs=c4UyoTs%2FLq1th4mcyOeTmA%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Resistor 1 Kohm 0.5W +- 0.1%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>TE Connectivity</p></td> -<td><p>H81K0BYA</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K0BYA?qs=%2Fha2pyFaduhUylh7Az%2FmjFH2XjOUms6wZtUX4sOM%252BII%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K0BYA?qs=%2Fha2pyFaduhUylh7Az%2FmjFH2XjOUms6wZtUX4sOM%252BII%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Resistor 1.5 Kohms +- 0.1%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>TE Connectivity</p></td> -<td><p>H81K5BYA</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K5BYA?qs=%2Fha2pyFadugy9tWham3rU9HmIJOhyWhBIN95kNm%252BX%2FM%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K5BYA?qs=%2Fha2pyFadugy9tWham3rU9HmIJOhyWhBIN95kNm%252BX%2FM%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Resistor 1.5 Kohms +- 5%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>Vishay</p></td> -<td><p>CCF071K50GKE36</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Dale/CCF071K50GKE36?qs=QKEOZdL6EQpA6LZRLQFVOw%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Dale/CCF071K50GKE36?qs=QKEOZdL6EQpA6LZRLQFVOw%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Resistor 10 Mohms +-5%</p></td> -<td><p>2</p></td> -<td><p>0.762</p></td> -<td><p>1.524</p></td> -<td><p>VISHAY</p></td> -<td><p>CMF651M0000FKEK143</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Dale/CMF651M0000FKEK143?qs=CiayqK2gdcKzIA2LEVaLkg%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Dale/CMF651M0000FKEK143?qs=CiayqK2gdcKzIA2LEVaLkg%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>2 ohm shunt resistor+- 1%</p></td> -<td><p>1</p></td> -<td><p>2.42</p></td> -<td><p>2.42</p></td> -<td><p>Ohmite</p></td> -<td><p>41F2R0E</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Ohmite/41F2R0E?qs=IM6ToxQzGOAuEDprb19mHA%3D%3D">https://www.mouser.fr/ProductDetail/Ohmite/41F2R0E?qs=IM6ToxQzGOAuEDprb19mHA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Dual screw terminal (5.08-mm pitch)</p></td> -<td><p>5</p></td> -<td><p>0.648</p></td> -<td><p>3.24</p></td> -<td><p>CUI Devices</p></td> -<td><p>TB009-508-02BE</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D">https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>DC/DC converter 12 to 24V</p></td> -<td><p>2</p></td> -<td><p>15.58</p></td> -<td><p>31.16</p></td> -<td><p>TracoPower</p></td> -<td><p>TRN 3-1215</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TRACO-Power/TRN-3-1215?qs=YCa%2FAAYMW02gqUicGQj0tA%3D%3D">https://www.mouser.fr/ProductDetail/TRACO-Power/TRN-3-1215?qs=YCa%2FAAYMW02gqUicGQj0tA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>DIP Dual In Line Socket 2*4</p></td> -<td><p>3</p></td> -<td><p>0.72</p></td> -<td><p>2.16</p></td> -<td><p>Mill-Max</p></td> -<td><p>110-43-308-41-001000</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Mill-Max/110-43-308-41-001000?qs=IGgAdOvCTsTu%2FqaUr8NArg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIn_TAxbCx8wIVQ5nVCh2QaQFpEAYYCCABEgJk1_D_BwE">https://www.mouser.fr/ProductDetail/Mill-Max/110-43-308-41-001000?qs=IGgAdOvCTsTu%2FqaUr8NArg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIn_TAxbCx8wIVQ5nVCh2QaQFpEAYYCCABEgJk1_D_BwE</a></p></td> -</tr> -<tr class="row-odd"><td><p>AQY211EH</p></td> -<td><p>4</p></td> -<td><p>3.84</p></td> -<td><p>15.36</p></td> -<td><p>Panasonic Industrial Devices</p></td> -<td><p>AQY211EH</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Panasonic-Industrial-Devices/AQY211EH?qs=wKtUvITRialGIU8hcM7DvQ%3D%3D">https://www.mouser.fr/ProductDetail/Panasonic-Industrial-Devices/AQY211EH?qs=wKtUvITRialGIU8hcM7DvQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>DIP Dual In Line Socket 2*2</p></td> -<td><p>4</p></td> -<td><p>0.449</p></td> -<td><p>1.796</p></td> -<td><p>Preci-dip</p></td> -<td><p>110-83-304-41-001101</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Preci-dip/110-83-304-41-001101?qs=%2Fha2pyFadujQKqx4wAuiG%2FMGNdxMCNv%2F33Nj0gBxRocuLUcYnpyONg%3D%3D">https://www.mouser.fr/ProductDetail/Preci-dip/110-83-304-41-001101?qs=%2Fha2pyFadujQKqx4wAuiG%2FMGNdxMCNv%2F33Nj0gBxRocuLUcYnpyONg%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>SSQ-103-03-G-D</p></td> -<td><p>1</p></td> -<td><p>2.06</p></td> -<td><p>2.06</p></td> -<td><p>Samtec</p></td> -<td><p>SSQ-103-03-G-D</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSQ-103-03-G-D?qs=rU5fayqh%252BE2Z%252BZTchcPoHQ%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSQ-103-03-G-D?qs=rU5fayqh%252BE2Z%252BZTchcPoHQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>MCP23008</p></td> -<td><p>1</p></td> -<td><p>1.72</p></td> -<td><p>1.72</p></td> -<td><p>Adafruit</p></td> -<td><p>593</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/593?qs=sGAEpiMZZMsKEdP9slC0YYV4kPdpMD1Hts4SLctIVmw%3D">https://www.mouser.fr/ProductDetail/Adafruit/593?qs=sGAEpiMZZMsKEdP9slC0YYV4kPdpMD1Hts4SLctIVmw%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Header sets 1x10</p></td> -<td><p>2</p></td> -<td><p>2.12</p></td> -<td><p>4.24</p></td> -<td><p>Samtec</p></td> -<td><p>SSW-110-02-G-S</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSW-110-02-G-S?qs=rU5fayqh%252BE0w1ORXZiBQpw%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSW-110-02-G-S?qs=rU5fayqh%252BE0w1ORXZiBQpw%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>SMT Breakout PCB for SOIC-8</p></td> -<td><p>1</p></td> -<td><p>2.5</p></td> -<td><p>2.5</p></td> -<td><p>Adafruit</p></td> -<td><p>1212</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/1212?qs=GURawfaeGuCAqqfvnVtyeg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIt8zJzr6x8wIVGdnVCh2vBwVsEAQYAyABEgJqG_D_BwE">https://www.mouser.fr/ProductDetail/Adafruit/1212?qs=GURawfaeGuCAqqfvnVtyeg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIt8zJzr6x8wIVGdnVCh2vBwVsEAQYAyABEgJqG_D_BwE</a></p></td> -</tr> -<tr class="row-odd"><td><p>INA282AID</p></td> -<td><p>1</p></td> -<td><p>4.11</p></td> -<td><p>4.11</p></td> -<td><p>Texas Instruments</p></td> -<td><p>INA282AID</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Texas-Instruments/INA282AID?qs=Ze4%2FuFuz19ILFayZXOCfrA%3D%3D">https://www.mouser.fr/ProductDetail/Texas-Instruments/INA282AID?qs=Ze4%2FuFuz19ILFayZXOCfrA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>THD 15-1211N</p></td> -<td><p>1</p></td> -<td><p>39.72</p></td> -<td><p>39.72</p></td> -<td><p>TracoPower</p></td> -<td><p>THD 15-1211N</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TRACO-Power/THD-15-1211N?qs=%2Fha2pyFadugpyEG4IDvm%2FMSR%252B7aN%2F0T3rUIs9PCAqJlT4%252BnRpUOOeQ%3D%3D">https://www.mouser.fr/ProductDetail/TRACO-Power/THD-15-1211N?qs=%2Fha2pyFadugpyEG4IDvm%2FMSR%252B7aN%2F0T3rUIs9PCAqJlT4%252BnRpUOOeQ%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>DIP Dual In Line Socket 2*20</p></td> -<td><p>1</p></td> -<td><p>8.53</p></td> -<td><p>8.53</p></td> -<td><p>Samtec</p></td> -<td><p>SSQ-120-23-G-D</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSQ-120-23-G-D?qs=rU5fayqh%252BE1BMVd%252BDZONqg%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSQ-120-23-G-D?qs=rU5fayqh%252BE1BMVd%252BDZONqg%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Pin strip no ejector</p></td> -<td><p>1</p></td> -<td><p>0.35</p></td> -<td><p>0.35</p></td> -<td><p>BLK electronic</p></td> -<td><p>10120550</p></td> -<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-10120550-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-pcs-741435?searchTerm=741435&searchType=suggest&searchSuggest=product">https://www.conrad.com/p/bkl-electronic-10120550-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-pcs-741435?searchTerm=741435&searchType=suggest&searchSuggest=product</a></p></td> -</tr> -<tr class="row-odd"><td><p>Male Female spacer 2.5M HEXAGONALE</p></td> -<td><p> 4</p></td> -<td><p> 0.87</p></td> -<td><p> 3.48</p></td> -<td><p> HARWIN</p></td> -<td><p> R25-3002002</p></td> -<td><p> <a class="reference external" href="https://www.mouser.fr/ProductDetail/Harwin/R25-3002002?qs=W0yvOO0ixfENUv0hsdC4%2FQ%3D%3D">https://www.mouser.fr/ProductDetail/Harwin/R25-3002002?qs=W0yvOO0ixfENUv0hsdC4%2FQ%3D%3D</a></p></td> -</tr> -</tbody> -</table> -<div class="section" id="description"> -<h2>Description<a class="headerlink" href="#description" title="Permalink to this headline">¶</a></h2> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/schema_measurement_board.jpg"><img alt="alternate text" src="_images/schema_measurement_board.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete “plug and play†measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps:</p> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/01_mes_board.jpg" src="_images/01_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installation of female header, 1 by10 pins, for ADS1115</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/02_mes_board.jpg" src="_images/02_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 4 dual-in-line- socket (2 by 2 pins) for -optical relay, AQY211EH.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/03_mes_board.jpg" src="_images/03_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 9 pins) -for INA282.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/04_mes_board.jpg" src="_images/04_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/05_mes_board.jpg" src="_images/05_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 2 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/06_mes_board.jpg" src="_images/06_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco Power Supply 12V to 5V, TDH15 - 1211N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="_images/07_mes_board.jpg" src="_images/07_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals for 12V inpout et 5V outpout</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>8</p></td> -<td><img alt="_images/08_mes_board.jpg" src="_images/08_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco power Supply 12V to 24V, TRN-1215</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>9</p></td> -<td><img alt="_images/09_mes_board.jpg" src="_images/09_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Two screw terminals electrodes M and N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>10</p></td> -<td><img alt="_images/10_mes_board.jpg" src="_images/10_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals, for 12V power supply and for -electrodes A and B</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>11</p></td> -<td><img alt="_images/11_mes_board.jpg" src="_images/11_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering three capacitors (100nF)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>12</p></td> -<td><img alt="_images/12_mes_board.jpg" src="_images/12_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>2 ohms shunt resistor pre-adjustment</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>13</p></td> -<td><img alt="_images/13_mes_board.jpg" src="_images/13_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering 2 ohms shunt resistor</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>14</p></td> -<td><img alt="_images/14_mes_board.jpg" src="_images/14_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>1 Mohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>15</p></td> -<td><img alt="_images/15_mes_board.jpg" src="_images/15_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1 Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>16</p></td> -<td><img alt="_images/16_mes_board.jpg" src="_images/16_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>17</p></td> -<td><img alt="_images/17_mes_board.jpg" src="_images/17_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>18</p></td> -<td><img alt="_images/18_mes_board.jpg" src="_images/18_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Female header 2 by 20 pins for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>19</p></td> -<td><img alt="_images/19_mes_board.jpg" src="_images/19_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>View of the female header 2 by 20 pins installation -for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>20</p></td> -<td><img alt="_images/20_mes_board.jpg" src="_images/20_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing MCP23008 component</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>21</p></td> -<td><img alt="_images/21_mes_board.jpg" src="_images/21_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting optical relay, AQY211EH</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>22</p></td> -<td><img alt="_images/22_mes_board.jpg" src="_images/22_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting LM158 operational amplificator</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>23</p></td> -<td><img alt="_images/23_mes_board.jpg" src="_images/23_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting ADS115 board</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>24</p></td> -<td><img alt="_images/24_mes_board.jpg" src="_images/24_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing the INA282</p></td> -</tr> -</tbody> -</table> -</div> -</div> -<div class="section" id="step-n3-start-up-of-the-measurement-board"> -<h1><strong>STEP n°3</strong>: Start-up of the measurement board.<a class="headerlink" href="#step-n3-start-up-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<table class="colwidths-given docutils align-default" id="id2"> -<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id2" title="Permalink to this table">¶</a></caption> -<colgroup> -<col style="width: 8%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 9%" /> -<col style="width: 9%" /> -</colgroup> -<thead> -<tr class="row-odd"><th class="head"><p>Component</p></th> -<th class="head"><p>Number</p></th> -<th class="head"><p>Cost per unit €</p></th> -<th class="head"><p>Total cost €</p></th> -<th class="head"><p>Manufacturer</p></th> -<th class="head"><p>Manufacturer s reference</p></th> -<th class="head"><p>Web reference</p></th> -</tr> -</thead> -<tbody> -<tr class="row-even"><td><p>Spacer 3x11 mm</p></td> -<td><p>8</p></td> -<td><p>0.39</p></td> -<td><p>3.12</p></td> -<td><p>Wurth Elektronik</p></td> -<td><p>971110321</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D">https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Screw</p></td> -<td><p>4</p></td> -<td><p>0.305</p></td> -<td><p>1.22</p></td> -<td><p>APM HEXSEAL</p></td> -<td><p>RM3X8MM-2701</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D">https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D</a></p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/001.jpg" src="_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Shutdown the raspberry Pi and unplug the power supply</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/001.jpg" src="_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/002.jpg" src="_images/002.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/003.jpg" src="_images/003.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/004.jpg" src="_images/004.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/005.jpg" src="_images/005.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Plug the power supply into a socket and connect it to your -Raspberry Pi’s power port.</p></td> -</tr> -</tbody> -</table> -</div> -<div class="section" id="step-n4-measurement-board-validation"> -<h1><strong>STEP n°4</strong>: Measurement board validation<a class="headerlink" href="#step-n4-measurement-board-validation" title="Permalink to this headline">¶</a></h1> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">i2cdetect</span> <span class="o">-</span><span class="n">y</span> <span class="mi">1</span> -</pre></div> -</div> -</div></blockquote> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/i2cdetect.png" src="_images/i2cdetect.png" /> -</td> -</tr> -<tr class="row-even"><td><p>If everything is working, three I2C addresses should appear -on the screen.</p></td> -</tr> -</tbody> -</table> -<dl> -<dt>Setting up an equivalent electronic circuit, for this you will need:</dt><dd><ul class="simple"> -<li><p>4 1kohm resistor (R2)</p></li> -<li><p>1 220 ohm resistor (R1)</p></li> -<li><p>1 small padboard</p></li> -<li><p>Spool of solder</p></li> -</ul> -<table class="docutils align-left"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/ref_circuit.png" src="_images/ref_circuit.png" /> -</td> -</tr> -<tr class="row-even"><td><p>Schematic of equivalent electronic circuit test</p></td> -</tr> -</tbody> -</table> -</dd> -</dl> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/20210905_122820.jpg" src="_images/20210905_122820.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer le circuit équivalent</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/20210905_123034.jpg" src="_images/20210905_123034.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer les cables de connexion aux batterie et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/20210905_132856.jpg" src="_images/20210905_132856.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Souder les câbles et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/20210905_210045.jpg" src="_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer les cables rouges sur la borne +12V et cable noir -sur la borne ground.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="_images/20210905_210045.jpg" src="_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer le circuit de référence</p></td> -</tr> -</tbody> -</table> -<p>Run the Thonny IDE and load the code Ohmpy4elec.pi</p> -</div> -<div class="section" id="step-n5-assembly-of-the-mux-board"> -<h1><strong>STEP n°5</strong>: Assembly of the MUX board<a class="headerlink" href="#step-n5-assembly-of-the-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n6-check-mux-board"> -<h1><strong>STEP n°6</strong>: Check Mux Board<a class="headerlink" href="#step-n6-check-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n7-assemble-ohmpi"> -<h1><strong>STEP n°7</strong>: Assemble Ohmpi<a class="headerlink" href="#step-n7-assemble-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n8-boxing-ohmpi"> 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class="wy-breadcrumbs"> --> - <!-- <li><a href="#">Docs</a> »</li> --> - - <!-- <li>Features</li> --> - <!-- <li class="wy-breadcrumbs-aside"> --> - - <!-- <a href="_sources/index.txt" rel="nofollow"> View page source</a> --> - - <!-- </li> --> - <!-- </ul> --> - <!-- <hr/> --> - </div> - - <div role="main" class=""> - - <div id="content" class="hfeed entry-container hentry"> - <div class="section" id="step-n1-raspberry-pi-configuration"> -<h1><strong>STEP n°1</strong> : Raspberry Pi configuration<a class="headerlink" href="#step-n1-raspberry-pi-configuration" title="Permalink to this headline">¶</a></h1> -<div class="section" id="os-installation"> -<h2>OS installation<a class="headerlink" href="#os-installation" title="Permalink to this headline">¶</a></h2> -<table class="docutils align-default"> -<colgroup> -<col style="width: 78%" /> -<col style="width: 22%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -<td><p><strong>Quantity</strong></p></td> -</tr> -<tr class="row-even"><td><p>Raspberry Pi 4 Model B</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-odd"><td><p>Micro SD 32 Go</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-even"><td><p>HDMI Cable</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-odd"><td><p>Computer mouse</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-even"><td><p>Computer Keyboard</p></td> -<td><p>1</p></td> -</tr> -</tbody> -</table> -<p>The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). -For this step, the installation instructions are well described on the Raspberry website</p> -<ol class="arabic simple"> -<li><p>Watch the vidéo “how to set up your raspberry Pi†(<a class="reference external" href="https://www.youtube.com/watch?v=wjWZhV1v3Pk">https://www.youtube.com/watch?v=wjWZhV1v3Pk</a>)</p></li> -<li><p>The authors recommend installing the latest stable and complete version of Raspbian by using NOOBS (a simple-to-use operating system installer).</p></li> -<li><p>or you can visit this website : (<a class="reference external" href="https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up">https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up</a>)</p></li> -</ol> -<div class="admonition note"> -<p class="admonition-title">Note</p> -<p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/raspbian_version.jpg"><img alt="alternate text" src="_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> -</div> -</div> -<div class="admonition warning"> -<p class="admonition-title">Warning</p> -<p>Once the OS has been installed, <strong>1-wire, spi and GPIO remote option</strong> must be deactivated via the Raspbian GUI settings menu. Failure to carry out this task may cause damage to the relay shield cards during measurements.</p> -</div> -<p>3. When the relays are connected to the GPIO, make sure that all the GPIOs are in the low position when the raspberry starts up. If not, the relays will activate unexpectedly. -To ensure that the GPIOs are in Low position, you will need to modify the /boot/config.txt file.</p> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">cd</span> <span class="o">/</span><span class="n">boot</span><span class="o">/</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="4"> -<li><p>Open config.txt with GNU nano editor</p></li> -</ol> -<blockquote> -<div><div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">sudo</span> <span class="n">nano</span> <span class="n">config</span><span class="o">.</span><span class="n">txt</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="5"> -<li><p>At the end of the file write :</p></li> -</ol> -<blockquote> -<div><div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">gpio</span><span class="o">=</span><span class="mi">8</span><span class="o">=</span><span class="n">op</span><span class="p">,</span><span class="n">dl</span> -<span class="n">gpio</span><span class="o">=</span><span class="mi">7</span><span class="o">=</span><span class="n">op</span><span class="p">,</span><span class="n">dl</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="6"> -<li><p>Press Ctrl +O to save the modifications and press enter</p></li> -<li><p>Press Ctrl +x to escap and return to the terminal</p></li> -<li><p>Close the terminal</p></li> -</ol> -</div> -<div class="section" id="virtual-environnement-and-packages"> -<h2>Virtual Environnement and packages<a class="headerlink" href="#virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> -<p>A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. -Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages.</p> -<p>All dependencies are specified in requirements.txt</p> -<div class="admonition note"> -<p class="admonition-title">Note</p> -<p>All instructions below should be typed in the terminal</p> -</div> -<p>It is first necessary to ensure that the libatlas-base-dev library is installed:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">sudo</span> <span class="n">apt</span><span class="o">-</span><span class="n">get</span> <span class="n">install</span> <span class="n">libatlas</span><span class="o">-</span><span class="n">base</span><span class="o">-</span><span class="n">dev</span> -</pre></div> -</div> -<p>We strongly recommend users to create a virtual environment to run the code and installed all required dependencies. It can be done either in a directory gathering all virtual environments used on the computer or within the ohmpy directory.</p> -<p>Create the virtual environment:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">python3</span> <span class="o">-</span><span class="n">m</span> <span class="n">venv</span> <span class="n">ohmpy</span> -</pre></div> -</div> -<p>Activate it using the following command:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">source</span> <span class="n">ohmpy</span><span class="o">/</span><span class="nb">bin</span><span class="o">/</span><span class="n">activate</span> -</pre></div> -</div> -<p>Install packages within the virtual environment. Installing the following package should be sufficient to meet dependencies:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">pip</span> <span class="n">install</span> <span class="n">RPi</span><span class="o">.</span><span class="n">GPIO</span> <span class="n">adafruit</span><span class="o">-</span><span class="n">blinka</span> <span class="n">numpy</span> <span class="n">adafruit</span><span class="o">-</span><span class="n">circuitpython</span><span class="o">-</span><span class="n">ads1x15</span> <span class="n">pandas</span> -</pre></div> -</div> -<p>Check that requirements are met using</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">pip</span> <span class="nb">list</span> -</pre></div> -</div> -<p>You should run you code within the virtual environment -to leave the virtual environment simply type:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">deactivate</span> -</pre></div> -</div> -</div> -<div class="section" id="activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> -<h2>Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)<a class="headerlink" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> -<p>If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it.</p> -<p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> -<p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_first_interface.jpg"><img alt="alternate text" src="_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_option.jpg"><img alt="alternate text" src="_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter.jpg"><img alt="alternate text" src="_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> -<p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> -<p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>8- Close the window by clicking on <strong>ok</strong>.</p> -<p>9- Close thonny to save modifications</p> -</div> -</div> -<div class="section" id="step-n2-assembly-of-the-measurement-board"> -<h1><strong>STEP n°2</strong>: Assembly of the measurement board<a class="headerlink" href="#step-n2-assembly-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/00_mes_board_components.jpg"><img alt="alternate text" src="_images/00_mes_board_components.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<table class="colwidths-given docutils align-default" id="id1"> -<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id1" title="Permalink to this table">¶</a></caption> -<colgroup> -<col style="width: 8%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 9%" /> -<col style="width: 9%" /> -</colgroup> -<thead> -<tr class="row-odd"><th class="head"><p>Component</p></th> -<th class="head"><p>Number</p></th> -<th class="head"><p>Cost per unit €</p></th> -<th class="head"><p>Total cost €</p></th> -<th class="head"><p>Manufacturer</p></th> -<th class="head"><p>Manufacturer s reference</p></th> -<th class="head"><p>Web reference</p></th> -</tr> -</thead> -<tbody> -<tr class="row-even"><td><p>Raspberry Pi 4 Model B</p></td> -<td><p>1</p></td> -<td><p>58.75</p></td> -<td><p>58.75</p></td> -<td><p>Raspberry</p></td> -<td><p>Raspberry Pi 4 Model B</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D">https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>LM158N AMP-o</p></td> -<td><p>4</p></td> -<td><p>14.5</p></td> -<td><p>58</p></td> -<td><p>Texas Instruments</p></td> -<td><p>LM358AN/NOPB</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Texas-Instruments/LM158J?qs=X1J7HmVL2ZH8vpEfMl8%2FFQ%3D%3D">https://www.mouser.fr/ProductDetail/Texas-Instruments/LM158J?qs=X1J7HmVL2ZH8vpEfMl8%2FFQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Printed circuit board</p></td> -<td><p>1</p></td> -<td><p>12</p></td> -<td><p>12</p></td> -<td><p>Asler</p></td> -<td><ul class="simple"> -<li></li> -</ul> -</td> -<td><ul class="simple"> -<li></li> -</ul> -</td> -</tr> -<tr class="row-odd"><td><p>ADS1115</p></td> -<td><p>2</p></td> -<td><p>11.9</p></td> -<td><p>23.8</p></td> -<td><p>Adafruit</p></td> -<td><p>1085</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/1085?qs=%2Fha2pyFaduhE%2FOGzuTWIQ9Iz5VjaqFOYugqAlGxpEcKiGrQvF4hn%252Bg%3D%3D">https://www.mouser.fr/ProductDetail/Adafruit/1085?qs=%2Fha2pyFaduhE%2FOGzuTWIQ9Iz5VjaqFOYugqAlGxpEcKiGrQvF4hn%252Bg%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Capacitor 100nF 50Vdc 10% Ceramic</p></td> -<td><p>4</p></td> -<td><p>0.2</p></td> -<td><p>0.8</p></td> -<td><p>KEMET</p></td> -<td><p>C320C104K1</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/KEMET/C320C104K1R5TA7303?qs=c4UyoTs%2FLq1th4mcyOeTmA%3D%3D">https://www.mouser.fr/ProductDetail/KEMET/C320C104K1R5TA7303?qs=c4UyoTs%2FLq1th4mcyOeTmA%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Resistor 1 Kohm 0.5W +- 0.1%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>TE Connectivity</p></td> -<td><p>H81K0BYA</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K0BYA?qs=%2Fha2pyFaduhUylh7Az%2FmjFH2XjOUms6wZtUX4sOM%252BII%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K0BYA?qs=%2Fha2pyFaduhUylh7Az%2FmjFH2XjOUms6wZtUX4sOM%252BII%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Resistor 1.5 Kohms +- 0.1%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>TE Connectivity</p></td> -<td><p>H81K5BYA</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K5BYA?qs=%2Fha2pyFadugy9tWham3rU9HmIJOhyWhBIN95kNm%252BX%2FM%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K5BYA?qs=%2Fha2pyFadugy9tWham3rU9HmIJOhyWhBIN95kNm%252BX%2FM%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Resistor 1.5 Kohms +- 5%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>Vishay</p></td> -<td><p>CCF071K50GKE36</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Dale/CCF071K50GKE36?qs=QKEOZdL6EQpA6LZRLQFVOw%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Dale/CCF071K50GKE36?qs=QKEOZdL6EQpA6LZRLQFVOw%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Resistor 10 Mohms +-5%</p></td> -<td><p>2</p></td> -<td><p>0.762</p></td> -<td><p>1.524</p></td> -<td><p>VISHAY</p></td> -<td><p>CMF651M0000FKEK143</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Dale/CMF651M0000FKEK143?qs=CiayqK2gdcKzIA2LEVaLkg%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Dale/CMF651M0000FKEK143?qs=CiayqK2gdcKzIA2LEVaLkg%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>2 ohm shunt resistor+- 1%</p></td> -<td><p>1</p></td> -<td><p>2.42</p></td> -<td><p>2.42</p></td> -<td><p>Ohmite</p></td> -<td><p>41F2R0E</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Ohmite/41F2R0E?qs=IM6ToxQzGOAuEDprb19mHA%3D%3D">https://www.mouser.fr/ProductDetail/Ohmite/41F2R0E?qs=IM6ToxQzGOAuEDprb19mHA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Dual screw terminal (5.08-mm pitch)</p></td> -<td><p>5</p></td> -<td><p>0.648</p></td> -<td><p>3.24</p></td> -<td><p>CUI Devices</p></td> -<td><p>TB009-508-02BE</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D">https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>DC/DC converter 12 to 24V</p></td> -<td><p>2</p></td> -<td><p>15.58</p></td> -<td><p>31.16</p></td> -<td><p>TracoPower</p></td> -<td><p>TRN 3-1215</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TRACO-Power/TRN-3-1215?qs=YCa%2FAAYMW02gqUicGQj0tA%3D%3D">https://www.mouser.fr/ProductDetail/TRACO-Power/TRN-3-1215?qs=YCa%2FAAYMW02gqUicGQj0tA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>DIP Dual In Line Socket 2*4</p></td> -<td><p>3</p></td> -<td><p>0.72</p></td> -<td><p>2.16</p></td> -<td><p>Mill-Max</p></td> -<td><p>110-43-308-41-001000</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Mill-Max/110-43-308-41-001000?qs=IGgAdOvCTsTu%2FqaUr8NArg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIn_TAxbCx8wIVQ5nVCh2QaQFpEAYYCCABEgJk1_D_BwE">https://www.mouser.fr/ProductDetail/Mill-Max/110-43-308-41-001000?qs=IGgAdOvCTsTu%2FqaUr8NArg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIn_TAxbCx8wIVQ5nVCh2QaQFpEAYYCCABEgJk1_D_BwE</a></p></td> -</tr> -<tr class="row-odd"><td><p>AQY211EH</p></td> -<td><p>4</p></td> -<td><p>3.84</p></td> -<td><p>15.36</p></td> -<td><p>Panasonic Industrial Devices</p></td> -<td><p>AQY211EH</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Panasonic-Industrial-Devices/AQY211EH?qs=wKtUvITRialGIU8hcM7DvQ%3D%3D">https://www.mouser.fr/ProductDetail/Panasonic-Industrial-Devices/AQY211EH?qs=wKtUvITRialGIU8hcM7DvQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>DIP Dual In Line Socket 2*2</p></td> -<td><p>4</p></td> -<td><p>0.449</p></td> -<td><p>1.796</p></td> -<td><p>Preci-dip</p></td> -<td><p>110-83-304-41-001101</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Preci-dip/110-83-304-41-001101?qs=%2Fha2pyFadujQKqx4wAuiG%2FMGNdxMCNv%2F33Nj0gBxRocuLUcYnpyONg%3D%3D">https://www.mouser.fr/ProductDetail/Preci-dip/110-83-304-41-001101?qs=%2Fha2pyFadujQKqx4wAuiG%2FMGNdxMCNv%2F33Nj0gBxRocuLUcYnpyONg%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>SSQ-103-03-G-D</p></td> -<td><p>1</p></td> -<td><p>2.06</p></td> -<td><p>2.06</p></td> -<td><p>Samtec</p></td> -<td><p>SSQ-103-03-G-D</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSQ-103-03-G-D?qs=rU5fayqh%252BE2Z%252BZTchcPoHQ%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSQ-103-03-G-D?qs=rU5fayqh%252BE2Z%252BZTchcPoHQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>MCP23008</p></td> -<td><p>1</p></td> -<td><p>1.72</p></td> -<td><p>1.72</p></td> -<td><p>Adafruit</p></td> -<td><p>593</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/593?qs=sGAEpiMZZMsKEdP9slC0YYV4kPdpMD1Hts4SLctIVmw%3D">https://www.mouser.fr/ProductDetail/Adafruit/593?qs=sGAEpiMZZMsKEdP9slC0YYV4kPdpMD1Hts4SLctIVmw%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Header sets 1x10</p></td> -<td><p>2</p></td> -<td><p>2.12</p></td> -<td><p>4.24</p></td> -<td><p>Samtec</p></td> -<td><p>SSW-110-02-G-S</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSW-110-02-G-S?qs=rU5fayqh%252BE0w1ORXZiBQpw%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSW-110-02-G-S?qs=rU5fayqh%252BE0w1ORXZiBQpw%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>SMT Breakout PCB for SOIC-8</p></td> -<td><p>1</p></td> -<td><p>2.5</p></td> -<td><p>2.5</p></td> -<td><p>Adafruit</p></td> -<td><p>1212</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/1212?qs=GURawfaeGuCAqqfvnVtyeg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIt8zJzr6x8wIVGdnVCh2vBwVsEAQYAyABEgJqG_D_BwE">https://www.mouser.fr/ProductDetail/Adafruit/1212?qs=GURawfaeGuCAqqfvnVtyeg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIt8zJzr6x8wIVGdnVCh2vBwVsEAQYAyABEgJqG_D_BwE</a></p></td> -</tr> -<tr class="row-odd"><td><p>INA282AID</p></td> -<td><p>1</p></td> -<td><p>4.11</p></td> -<td><p>4.11</p></td> -<td><p>Texas Instruments</p></td> -<td><p>INA282AID</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Texas-Instruments/INA282AID?qs=Ze4%2FuFuz19ILFayZXOCfrA%3D%3D">https://www.mouser.fr/ProductDetail/Texas-Instruments/INA282AID?qs=Ze4%2FuFuz19ILFayZXOCfrA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>THD 15-1211N</p></td> -<td><p>1</p></td> -<td><p>39.72</p></td> -<td><p>39.72</p></td> -<td><p>TracoPower</p></td> -<td><p>THD 15-1211N</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TRACO-Power/THD-15-1211N?qs=%2Fha2pyFadugpyEG4IDvm%2FMSR%252B7aN%2F0T3rUIs9PCAqJlT4%252BnRpUOOeQ%3D%3D">https://www.mouser.fr/ProductDetail/TRACO-Power/THD-15-1211N?qs=%2Fha2pyFadugpyEG4IDvm%2FMSR%252B7aN%2F0T3rUIs9PCAqJlT4%252BnRpUOOeQ%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>DIP Dual In Line Socket 2*20</p></td> -<td><p>1</p></td> -<td><p>8.53</p></td> -<td><p>8.53</p></td> -<td><p>Samtec</p></td> -<td><p>SSQ-120-23-G-D</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSQ-120-23-G-D?qs=rU5fayqh%252BE1BMVd%252BDZONqg%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSQ-120-23-G-D?qs=rU5fayqh%252BE1BMVd%252BDZONqg%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Pin strip no ejector</p></td> -<td><p>1</p></td> -<td><p>0.35</p></td> -<td><p>0.35</p></td> -<td><p>BLK electronic</p></td> -<td><p>10120550</p></td> -<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-10120550-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-pcs-741435?searchTerm=741435&searchType=suggest&searchSuggest=product">https://www.conrad.com/p/bkl-electronic-10120550-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-pcs-741435?searchTerm=741435&searchType=suggest&searchSuggest=product</a></p></td> -</tr> -<tr class="row-odd"><td><p>Male Female spacer 2.5M HEXAGONALE</p></td> -<td><p> 4</p></td> -<td><p> 0.87</p></td> -<td><p> 3.48</p></td> -<td><p> HARWIN</p></td> -<td><p> R25-3002002</p></td> -<td><p> <a class="reference external" href="https://www.mouser.fr/ProductDetail/Harwin/R25-3002002?qs=W0yvOO0ixfENUv0hsdC4%2FQ%3D%3D">https://www.mouser.fr/ProductDetail/Harwin/R25-3002002?qs=W0yvOO0ixfENUv0hsdC4%2FQ%3D%3D</a></p></td> -</tr> -</tbody> -</table> -<div class="section" id="description"> -<h2>Description<a class="headerlink" href="#description" title="Permalink to this headline">¶</a></h2> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/schema_measurement_board.jpg"><img alt="alternate text" src="_images/schema_measurement_board.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete “plug and play†measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps:</p> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/01_mes_board.jpg" src="_images/01_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installation of female header, 1 by10 pins, for ADS1115</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/02_mes_board.jpg" src="_images/02_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 4 dual-in-line- socket (2 by 2 pins) for -optical relay, AQY211EH.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/03_mes_board.jpg" src="_images/03_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 9 pins) -for INA282.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/04_mes_board.jpg" src="_images/04_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/05_mes_board.jpg" src="_images/05_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 2 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/06_mes_board.jpg" src="_images/06_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco Power Supply 12V to 5V, TDH15 - 1211N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="_images/07_mes_board.jpg" src="_images/07_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals for 12V inpout et 5V outpout</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>8</p></td> -<td><img alt="_images/08_mes_board.jpg" src="_images/08_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco power Supply 12V to 24V, TRN-1215</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>9</p></td> -<td><img alt="_images/09_mes_board.jpg" src="_images/09_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Two screw terminals electrodes M and N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>10</p></td> -<td><img alt="_images/10_mes_board.jpg" src="_images/10_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals, for 12V power supply and for -electrodes A and B</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>11</p></td> -<td><img alt="_images/11_mes_board.jpg" src="_images/11_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering three capacitors (100nF)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>12</p></td> -<td><img alt="_images/12_mes_board.jpg" src="_images/12_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>2 ohms shunt resistor pre-adjustment</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>13</p></td> -<td><img alt="_images/13_mes_board.jpg" src="_images/13_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering 2 ohms shunt resistor</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>14</p></td> -<td><img alt="_images/14_mes_board.jpg" src="_images/14_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>1 Mohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>15</p></td> -<td><img alt="_images/15_mes_board.jpg" src="_images/15_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1 Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>16</p></td> -<td><img alt="_images/16_mes_board.jpg" src="_images/16_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>17</p></td> -<td><img alt="_images/17_mes_board.jpg" src="_images/17_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>18</p></td> -<td><img alt="_images/18_mes_board.jpg" src="_images/18_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Female header 2 by 20 pins for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>19</p></td> -<td><img alt="_images/19_mes_board.jpg" src="_images/19_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>View of the female header 2 by 20 pins installation -for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>20</p></td> -<td><img alt="_images/20_mes_board.jpg" src="_images/20_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing MCP23008 component</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>21</p></td> -<td><img alt="_images/21_mes_board.jpg" src="_images/21_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting optical relay, AQY211EH</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>22</p></td> -<td><img alt="_images/22_mes_board.jpg" src="_images/22_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting LM158 operational amplificator</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>23</p></td> -<td><img alt="_images/23_mes_board.jpg" src="_images/23_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting ADS115 board</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>24</p></td> -<td><img alt="_images/24_mes_board.jpg" src="_images/24_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing the INA282</p></td> -</tr> -</tbody> -</table> -</div> -</div> -<div class="section" id="step-n3-start-up-of-the-measurement-board"> -<h1><strong>STEP n°3</strong>: Start-up of the measurement board.<a class="headerlink" href="#step-n3-start-up-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<table class="colwidths-given docutils align-default" id="id2"> -<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id2" title="Permalink to this table">¶</a></caption> -<colgroup> -<col style="width: 8%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 9%" /> -<col style="width: 9%" /> -</colgroup> -<thead> -<tr class="row-odd"><th class="head"><p>Component</p></th> -<th class="head"><p>Number</p></th> -<th class="head"><p>Cost per unit €</p></th> -<th class="head"><p>Total cost €</p></th> -<th class="head"><p>Manufacturer</p></th> -<th class="head"><p>Manufacturer s reference</p></th> -<th class="head"><p>Web reference</p></th> -</tr> -</thead> -<tbody> -<tr class="row-even"><td><p>Spacer 3x11 mm</p></td> -<td><p>8</p></td> -<td><p>0.39</p></td> -<td><p>3.12</p></td> -<td><p>Wurth Elektronik</p></td> -<td><p>971110321</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D">https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Screw</p></td> -<td><p>4</p></td> -<td><p>0.305</p></td> -<td><p>1.22</p></td> -<td><p>APM HEXSEAL</p></td> -<td><p>RM3X8MM-2701</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D">https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D</a></p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/001.jpg" src="_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Shutdown the raspberry Pi and unplug the power supply</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/001.jpg" src="_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/002.jpg" src="_images/002.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/003.jpg" src="_images/003.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/004.jpg" src="_images/004.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/005.jpg" src="_images/005.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Plug the power supply into a socket and connect it to your -Raspberry Pi’s power port.</p></td> -</tr> -</tbody> -</table> -</div> -<div class="section" id="step-n4-measurement-board-validation"> -<h1><strong>STEP n°4</strong>: Measurement board validation<a class="headerlink" href="#step-n4-measurement-board-validation" title="Permalink to this headline">¶</a></h1> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">i2cdetect</span> <span class="o">-</span><span class="n">y</span> <span class="mi">1</span> -</pre></div> -</div> -</div></blockquote> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/i2cdetect.png" src="_images/i2cdetect.png" /> -</td> -</tr> -<tr class="row-even"><td><p>If everything is working, three I2C addresses should appear -on the screen.</p></td> -</tr> -</tbody> -</table> -<dl> -<dt>Setting up an equivalent electronic circuit, for this you will need:</dt><dd><ul class="simple"> -<li><p>4 1kohm resistor (R2)</p></li> -<li><p>1 220 ohm resistor (R1)</p></li> -<li><p>1 small padboard</p></li> -<li><p>Spool of solder</p></li> -</ul> -<table class="docutils align-left"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/ref_circuit.png" src="_images/ref_circuit.png" /> -</td> -</tr> -<tr class="row-even"><td><p>Schematic of equivalent electronic circuit test</p></td> -</tr> -</tbody> -</table> -</dd> -</dl> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/20210905_122820.jpg" src="_images/20210905_122820.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer le circuit équivalent</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/20210905_123034.jpg" src="_images/20210905_123034.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer les cables de connexion aux batterie et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/20210905_132856.jpg" src="_images/20210905_132856.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Souder les câbles et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/20210905_210045.jpg" src="_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer les cables rouges sur la borne +12V et cable noir -sur la borne ground.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="_images/20210905_210045.jpg" src="_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer le circuit de référence</p></td> -</tr> -</tbody> -</table> -<p>Run the Thonny IDE and load the code Ohmpy4elec.pi</p> -</div> -<div class="section" id="step-n5-assembly-of-the-mux-board"> -<h1><strong>STEP n°5</strong>: Assembly of the MUX board<a class="headerlink" href="#step-n5-assembly-of-the-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n6-check-mux-board"> -<h1><strong>STEP n°6</strong>: Check Mux Board<a class="headerlink" href="#step-n6-check-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n7-assemble-ohmpi"> -<h1><strong>STEP n°7</strong>: Assemble Ohmpi<a class="headerlink" href="#step-n7-assemble-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n8-boxing-ohmpi"> -<h1><strong>STEP n°8</strong>: Boxing Ohmpi<a class="headerlink" href="#step-n8-boxing-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n9-field-measurement"> -<h1><strong>STEP n°9</strong>: Field measurement<a class="headerlink" href="#step-n9-field-measurement" title="Permalink to this headline">¶</a></h1> -</div> - - - </div> - <footer> - - - <hr/> - - <div role="contentinfo"> - <p> - © Copyright 2020, INRAE, Rémi CLEMENT. - </p> - </div> - - Built with <a href="http://sphinx-doc.org/">Sphinx</a> using a <a href="https://github.com/jucacrispim/sphinx_pdj_theme">theme</a> provided by <a href="http://poraodojuca.net">Porão do Juca</a>. - -</footer> - </div> - </div> - - - <script type="text/javascript"> - var DOCUMENTATION_OPTIONS = { - URL_ROOT:'./', - VERSION:'open hardware resistivity-meter', - COLLAPSE_INDEX:false, - FILE_SUFFIX:'.html', - HAS_SOURCE: true - }; - </script> - <script type="text/javascript" src="_static/jquery.js"> - - 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b/public/_images/thonny_first_interface2.jpg differ diff --git a/public/_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt b/public/_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt index 263e01b7a46bda0801898e491497bc4722529e80..51db436b12ff9740083e543f8be4a2ed566be331 100644 --- a/public/_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt +++ b/public/_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt @@ -2,8 +2,8 @@ ******************************************* -OS installation -================ +**PART A** OS installation +========================== +----------------------------------------------------+---------------+ | **Required components** | **Quantity** | @@ -70,8 +70,8 @@ To ensure that the GPIOs are in Low position, you will need to modify the /boot/ 8. Close the terminal -Virtual Environnement and packages -================================== +**PART B** Virtual Environnement and packages +============================================= A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages. @@ -121,8 +121,8 @@ to leave the virtual environment simply type: deactivate -Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) -======================================================================== +**PART C** Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) +================================================================================== If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it. diff --git a/public/_sources/Ohmpi_V2_00/V2_00_step_02 - Copie.rst.txt b/public/_sources/Ohmpi_V2_00/V2_00_step_02 - Copie.rst.txt deleted file mode 100644 index c98864a23f267342179258e203608484e10d167a..0000000000000000000000000000000000000000 --- a/public/_sources/Ohmpi_V2_00/V2_00_step_02 - Copie.rst.txt +++ /dev/null @@ -1,467 +0,0 @@ - -**STEP n°2**: Assembly of the measurement board -**************************************************** - -+----------------------------------------------------+ -| **Required components** | -+----------------------------------------------------+ - -.. figure:: step_n_2/00_mes_board_components.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - - - - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_2\Mesure_board_list_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -Description -========================================== - -.. figure:: schema_measurement_board.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete "plug and play" measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps: - - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/01_mes_board.jpg | - | 1 +------------------------------------------------------------+ - | | Installation of female header, 1 by10 pins, for ADS1115 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/02_mes_board.jpg | - |2 +------------------------------------------------------------+ - | | Soldering of 4 dual-in-line- socket (2 by 2 pins) for | - | | optical relay, AQY211EH. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/03_mes_board.jpg | - |3 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 9 pins) | - | | for INA282. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/04_mes_board.jpg | - | 4 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/05_mes_board.jpg | - |5 +------------------------------------------------------------+ - | | Soldering of 2 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/06_mes_board.jpg | - | 6 +------------------------------------------------------------+ - | | Traco Power Supply 12V to 5V, TDH15 - 1211N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/07_mes_board.jpg | - |7 +------------------------------------------------------------+ - | | Four screw terminals for 12V inpout et 5V outpout | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/08_mes_board.jpg | - |8 +------------------------------------------------------------+ - | | Traco power Supply 12V to 24V, TRN-1215 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/09_mes_board.jpg | - |9 +------------------------------------------------------------+ - | | Two screw terminals electrodes M and N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/10_mes_board.jpg | - |10 +------------------------------------------------------------+ - | | Four screw terminals, for 12V power supply and for | - | | electrodes A and B | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/11_mes_board.jpg | - |11 +------------------------------------------------------------+ - | | Soldering three capacitors (100nF) | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/12_mes_board.jpg | - | 12 +------------------------------------------------------------+ - | | 2 ohms shunt resistor pre-adjustment | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/13_mes_board.jpg | - |13 +------------------------------------------------------------+ - | | Soldering 2 ohms shunt resistor | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/14_mes_board.jpg | - |14 +------------------------------------------------------------+ - | | 1 Mohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/15_mes_board.jpg | - |15 +------------------------------------------------------------+ - | | Soldering tow 1 Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/16_mes_board.jpg | - |16 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/17_mes_board.jpg | - |17 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/18_mes_board.jpg | - |18 +------------------------------------------------------------+ - | | Female header 2 by 20 pins for Raspberry Pi connection | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/19_mes_board.jpg | - |19 +------------------------------------------------------------+ - | | View of the female header 2 by 20 pins installation | - | | for Raspberry Pi connection | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/20_mes_board.jpg | - |20 +------------------------------------------------------------+ - | | Fixing MCP23008 component | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/21_mes_board.jpg | - |21 +------------------------------------------------------------+ - | |Mounting optical relay, AQY211EH | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/22_mes_board.jpg | - |22 +------------------------------------------------------------+ - | | Mounting LM158 operational amplificator | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/23_mes_board.jpg | - |23 +------------------------------------------------------------+ - | | Mounting ADS115 board | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/24_mes_board.jpg | - |24 +------------------------------------------------------------+ - | | Fixing the INA282 | - | | | - +---------+------------------------------------------------------------+ - - - -**STEP n°3**: Start-up of the measurement board. -**************************************************** - -+------------------------------------------------------------------------+ -| **Required components** | -+------------------------------------------------------------------------+ - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_3\test_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |1 +------------------------------------------------------------+ - | | Shutdown the raspberry Pi and unplug the power supply | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |2 +--------------------------------------------------------------------------+ - | | Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/002.jpg | - |3 +--------------------------------------------------------------------------+ - | | Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/003.jpg | - |4 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/004.jpg | - |5 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/005.jpg | - |6 +------------------------------------------------------------+ - | | Plug the power supply into a socket and connect it to your | - | | Raspberry Pi's power port. | - +--------+------------------------------------------------------------+ - - -**STEP n°4**: Measurement board validation -**************************************************** - - Run the terminal, and write - - .. code-block:: python - - i2cdetect -y 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/i2cdetect.png | - |1 +------------------------------------------------------------+ - | |If everything is working, three I2C addresses should appear | - | |on the screen. | - +--------+------------------------------------------------------------+ - - - -Setting up an equivalent electronic circuit, for this you will need: - * 4 1kohm resistor (R2) - * 1 220 ohm resistor (R1) - * 1 small padboard - * Spool of solder - - .. table:: - :align: left - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/ref_circuit.png | - |2 +------------------------------------------------------------+ - | | Schematic of equivalent electronic circuit test | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_122820.jpg | - |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_123034.jpg | - |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_132856.jpg | - |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | - | | | - +--------+------------------------------------------------------------+ - - -Run the Thonny IDE and load the code Ohmpy4elec.pi - - -**STEP n°5**: Assembly of the MUX board -**************************************************** - - - -**STEP n°6**: Check Mux Board -**************************************************** - - - -**STEP n°7**: Assemble Ohmpi -**************************************************** - - - -**STEP n°8**: Boxing Ohmpi -**************************************************** - - - -**STEP n°9**: Field measurement -**************************************************** - \ No newline at end of file diff --git a/public/_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt b/public/_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt index ef6a21b71ac5851da1ca362f135e389485940f46..63caad89aa3c0842f9f7846f3f92878576f08345 100644 --- a/public/_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt +++ b/public/_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt @@ -398,7 +398,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_122820.jpg | |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | + | | Prepare the equivalent electronic circuit test | +--------+------------------------------------------------------------+ @@ -408,7 +408,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_123034.jpg | |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| + | | Prepare the battery connections and the terminals. | +--------+------------------------------------------------------------+ @@ -418,7 +418,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_132856.jpg | |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | + | | Soldering cables and terminals | +--------+------------------------------------------------------------+ @@ -426,24 +426,40 @@ Setting up an equivalent electronic circuit, for this you will need: :align: center +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/c/20210905_210045.jpg | + | | .. image:: step_n_2/c/Inked20211206_150522_LI.jpg | |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | + | |Install the red cables on the +12V terminal and black cable | + | |on the ground terminal. | +--------+------------------------------------------------------------+ .. table:: :align: center +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/c/20210905_210045.jpg | + | | .. image:: step_n_2/c/Inked20211206_150522_LI2.jpg | |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | + | | Connect the equivalent electronic circuit test | | | | +--------+------------------------------------------------------------+ + + +.. table:: + :align: center + + +--------+------------------------------------------------------------+ + | | .. image:: step_n_2/c/thonny_first_interface.jpg | + |7 +------------------------------------------------------------+ + | | Run Tonny Interpreter | + | | | + +--------+------------------------------------------------------------+ -Run the Thonny IDE and load the code Ohmpy4elec.pi - - - \ No newline at end of file +.. table:: + :align: center + + +--------+------------------------------------------------------------+ + | | .. image:: step_n_2/c/20211206_144334.jpg | + |7 +------------------------------------------------------------+ + | | Run Ohmpi_4elec.py, if everything works you should | + | | get the following result | + +--------+------------------------------------------------------------+ diff --git a/public/_sources/V2_00.rst.txt b/public/_sources/V2_00.rst.txt index 5263c54b0263fac5142fd21a07d6a8e4424ca1d5..f08420d7b0f7a6c81f78eeb0e0ebd6f2ad13a758 100644 --- a/public/_sources/V2_00.rst.txt +++ b/public/_sources/V2_00.rst.txt @@ -1,6 +1,6 @@ -***************************************** -OhmPi V 2.xx (64 or 128 electrodes) -***************************************** +******************************************** +OhmPi V 2.xx (64 or 128 electrodes and 12V) +******************************************** .. figure:: Under-Construction.png :width: 500px @@ -70,6 +70,7 @@ Ohmpi 2 step by step Ohmpi_V2_00/V2_00_step_01 Ohmpi_V2_00/V2_00_step_02 + Ohmpi_V2_00/V2_00_step_03 diff --git a/public/_sources/V2_00_step_01.rst.txt b/public/_sources/V2_00_step_01.rst.txt deleted file mode 100644 index 8d16637f82c00ff3d9495e4f2e577c2ce0400bc1..0000000000000000000000000000000000000000 --- a/public/_sources/V2_00_step_01.rst.txt +++ /dev/null @@ -1,641 +0,0 @@ -**STEP n°1** : Raspberry Pi configuration -******************************************* - - -OS installation -================ - -+----------------------------------------------------+---------------+ -| **Required components** | **Quantity** | -+----------------------------------------------------+---------------+ -|Raspberry Pi 4 Model B | 1| -+----------------------------------------------------+---------------+ -|Micro SD 32 Go | 1| -+----------------------------------------------------+---------------+ -|HDMI Cable | 1| -+----------------------------------------------------+---------------+ -|Computer mouse | 1| -+----------------------------------------------------+---------------+ -|Computer Keyboard | 1| -+----------------------------------------------------+---------------+ - -The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). -For this step, the installation instructions are well described on the Raspberry website - -1. Watch the vidéo "how to set up your raspberry Pi" (https://www.youtube.com/watch?v=wjWZhV1v3Pk) - -2. The authors recommend installing the latest stable and complete version of Raspbian by using NOOBS (a simple-to-use operating system installer). - -3. or you can visit this website : (https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up) - -.. note:: - All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian: - - .. figure:: raspbian_version.jpg - :width: 800px - :align: center - :height: 400px - :alt: alternate text - :figclass: align-center - - - -.. warning:: - Once the OS has been installed, **1-wire, spi and GPIO remote option** must be deactivated via the Raspbian GUI settings menu. Failure to carry out this task may cause damage to the relay shield cards during measurements. - -3. When the relays are connected to the GPIO, make sure that all the GPIOs are in the low position when the raspberry starts up. If not, the relays will activate unexpectedly. -To ensure that the GPIOs are in Low position, you will need to modify the /boot/config.txt file. - - Run the terminal, and write - - .. code-block:: python - - cd /boot/ - -4. Open config.txt with GNU nano editor - - .. code-block:: python - - sudo nano config.txt - -5. At the end of the file write : - - .. code-block:: python - - gpio=8=op,dl - gpio=7=op,dl - -6. Press Ctrl +O to save the modifications and press enter -7. Press Ctrl +x to escap and return to the terminal -8. Close the terminal - - -Virtual Environnement and packages -================================== - -A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. -Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages. - -All dependencies are specified in requirements.txt - -.. note:: - All instructions below should be typed in the terminal - -It is first necessary to ensure that the libatlas-base-dev library is installed: - -.. code-block:: python - - sudo apt-get install libatlas-base-dev - -We strongly recommend users to create a virtual environment to run the code and installed all required dependencies. It can be done either in a directory gathering all virtual environments used on the computer or within the ohmpy directory. - -Create the virtual environment: - -.. code-block:: python - - python3 -m venv ohmpy - -Activate it using the following command: - -.. code-block:: python - - source ohmpy/bin/activate - -Install packages within the virtual environment. Installing the following package should be sufficient to meet dependencies: - -.. code-block:: python - - pip install RPi.GPIO adafruit-blinka numpy adafruit-circuitpython-ads1x15 pandas - -Check that requirements are met using - -.. code-block:: python - - pip list - -You should run you code within the virtual environment -to leave the virtual environment simply type: - -.. code-block:: python - - deactivate - - -Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) -======================================================================== - -If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it. - -1- Run the Thonny Python IDE software, Click on raspebrry acces **menu > programming> Thonny pythonIDE** - -2- Thonny's interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3)) - -.. figure:: thonny_first_interface.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -3-Click on **Run>select interpreter**, a new window opens click on interpret - -.. figure:: thonny_option.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -4-On the new open windows select **alternative Pyhton3 or virtual environnement** - -.. figure:: thonny_interpreter.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -5- New buttons appeared, selected **"locate another python executable "** - -6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created **/home/pi/ohmpi/bin/python3**. - -7- In the **known interpreter** tab the path of the virtual environnementshould appear - -.. figure:: thonny_interpreter_folder.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -8- Close the window by clicking on **ok**. - -9- Close thonny to save modifications - - -**STEP n°2**: Assembly of the measurement board -**************************************************** - -+----------------------------------------------------+ -| **Required components** | -+----------------------------------------------------+ - -.. figure:: step_n_2/00_mes_board_components.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - - - - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_2\Mesure_board_list_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -Description -========================================== - -.. figure:: schema_measurement_board.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete "plug and play" measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps: - - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/01_mes_board.jpg | - | 1 +------------------------------------------------------------+ - | | Installation of female header, 1 by10 pins, for ADS1115 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/02_mes_board.jpg | - |2 +------------------------------------------------------------+ - | | Soldering of 4 dual-in-line- socket (2 by 2 pins) for | - | | optical relay, AQY211EH. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/03_mes_board.jpg | - |3 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 9 pins) | - | | for INA282. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/04_mes_board.jpg | - | 4 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/05_mes_board.jpg | - |5 +------------------------------------------------------------+ - | | Soldering of 2 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/06_mes_board.jpg | - | 6 +------------------------------------------------------------+ - | | Traco Power Supply 12V to 5V, TDH15 - 1211N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/07_mes_board.jpg | - |7 +------------------------------------------------------------+ - | | Four screw terminals for 12V inpout et 5V outpout | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/08_mes_board.jpg | - |8 +------------------------------------------------------------+ - | | Traco power Supply 12V to 24V, TRN-1215 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/09_mes_board.jpg | - |9 +------------------------------------------------------------+ - | | Two screw terminals electrodes M and N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/10_mes_board.jpg | - |10 +------------------------------------------------------------+ - | | Four screw terminals, for 12V power supply and for | - | | electrodes A and B | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/11_mes_board.jpg | - |11 +------------------------------------------------------------+ - | | Soldering three capacitors (100nF) | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/12_mes_board.jpg | - | 12 +------------------------------------------------------------+ - | | 2 ohms shunt resistor pre-adjustment | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/13_mes_board.jpg | - |13 +------------------------------------------------------------+ - | | Soldering 2 ohms shunt resistor | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/14_mes_board.jpg | - |14 +------------------------------------------------------------+ - | | 1 Mohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/15_mes_board.jpg | - |15 +------------------------------------------------------------+ - | | Soldering tow 1 Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/16_mes_board.jpg | - |16 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/17_mes_board.jpg | - |17 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/18_mes_board.jpg | - |18 +------------------------------------------------------------+ - | | Female header 2 by 20 pins for Raspberry Pi connection | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/19_mes_board.jpg | - |19 +------------------------------------------------------------+ - | | View of the female header 2 by 20 pins installation | - | | for Raspberry Pi connection | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/20_mes_board.jpg | - |20 +------------------------------------------------------------+ - | | Fixing MCP23008 component | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/21_mes_board.jpg | - |21 +------------------------------------------------------------+ - | |Mounting optical relay, AQY211EH | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/22_mes_board.jpg | - |22 +------------------------------------------------------------+ - | | Mounting LM158 operational amplificator | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/23_mes_board.jpg | - |23 +------------------------------------------------------------+ - | | Mounting ADS115 board | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/24_mes_board.jpg | - |24 +------------------------------------------------------------+ - | | Fixing the INA282 | - | | | - +---------+------------------------------------------------------------+ - - - -**STEP n°3**: Start-up of the measurement board. -**************************************************** - -+------------------------------------------------------------------------+ -| **Required components** | -+------------------------------------------------------------------------+ - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_3\test_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |1 +------------------------------------------------------------+ - | | Shutdown the raspberry Pi and unplug the power supply | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |2 +--------------------------------------------------------------------------+ - | | Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/002.jpg | - |3 +--------------------------------------------------------------------------+ - | | Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/003.jpg | - |4 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/004.jpg | - |5 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/005.jpg | - |6 +------------------------------------------------------------+ - | | Plug the power supply into a socket and connect it to your | - | | Raspberry Pi's power port. | - +--------+------------------------------------------------------------+ - - -**STEP n°4**: Measurement board validation -**************************************************** - - Run the terminal, and write - - .. code-block:: python - - i2cdetect -y 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/i2cdetect.png | - |1 +------------------------------------------------------------+ - | |If everything is working, three I2C addresses should appear | - | |on the screen. | - +--------+------------------------------------------------------------+ - - - -Setting up an equivalent electronic circuit, for this you will need: - * 4 1kohm resistor (R2) - * 1 220 ohm resistor (R1) - * 1 small padboard - * Spool of solder - - .. table:: - :align: left - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/ref_circuit.png | - |2 +------------------------------------------------------------+ - | | Schematic of equivalent electronic circuit test | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_122820.jpg | - |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_123034.jpg | - |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_132856.jpg | - |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | - | | | - +--------+------------------------------------------------------------+ - - -Run the Thonny IDE and load the code Ohmpy4elec.pi - - -**STEP n°5**: Assembly of the MUX board -**************************************************** - - - -**STEP n°6**: Check Mux Board -**************************************************** - - - -**STEP n°7**: Assemble Ohmpi -**************************************************** - - - -**STEP n°8**: Boxing Ohmpi -**************************************************** - - - -**STEP n°9**: Field measurement -**************************************************** - \ No newline at end of file diff --git a/public/_sources/V2_00_stpe_01.rst.txt b/public/_sources/V2_00_stpe_01.rst.txt deleted file mode 100644 index 8d16637f82c00ff3d9495e4f2e577c2ce0400bc1..0000000000000000000000000000000000000000 --- a/public/_sources/V2_00_stpe_01.rst.txt +++ /dev/null @@ -1,641 +0,0 @@ -**STEP n°1** : Raspberry Pi configuration -******************************************* - - -OS installation -================ - -+----------------------------------------------------+---------------+ -| **Required components** | **Quantity** | -+----------------------------------------------------+---------------+ -|Raspberry Pi 4 Model B | 1| -+----------------------------------------------------+---------------+ -|Micro SD 32 Go | 1| -+----------------------------------------------------+---------------+ -|HDMI Cable | 1| -+----------------------------------------------------+---------------+ -|Computer mouse | 1| -+----------------------------------------------------+---------------+ -|Computer Keyboard | 1| -+----------------------------------------------------+---------------+ - -The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). -For this step, the installation instructions are well described on the Raspberry website - -1. Watch the vidéo "how to set up your raspberry Pi" (https://www.youtube.com/watch?v=wjWZhV1v3Pk) - -2. The authors recommend installing the latest stable and complete version of Raspbian by using NOOBS (a simple-to-use operating system installer). - -3. or you can visit this website : (https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up) - -.. note:: - All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian: - - .. figure:: raspbian_version.jpg - :width: 800px - :align: center - :height: 400px - :alt: alternate text - :figclass: align-center - - - -.. warning:: - Once the OS has been installed, **1-wire, spi and GPIO remote option** must be deactivated via the Raspbian GUI settings menu. Failure to carry out this task may cause damage to the relay shield cards during measurements. - -3. When the relays are connected to the GPIO, make sure that all the GPIOs are in the low position when the raspberry starts up. If not, the relays will activate unexpectedly. -To ensure that the GPIOs are in Low position, you will need to modify the /boot/config.txt file. - - Run the terminal, and write - - .. code-block:: python - - cd /boot/ - -4. Open config.txt with GNU nano editor - - .. code-block:: python - - sudo nano config.txt - -5. At the end of the file write : - - .. code-block:: python - - gpio=8=op,dl - gpio=7=op,dl - -6. Press Ctrl +O to save the modifications and press enter -7. Press Ctrl +x to escap and return to the terminal -8. Close the terminal - - -Virtual Environnement and packages -================================== - -A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. -Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages. - -All dependencies are specified in requirements.txt - -.. note:: - All instructions below should be typed in the terminal - -It is first necessary to ensure that the libatlas-base-dev library is installed: - -.. code-block:: python - - sudo apt-get install libatlas-base-dev - -We strongly recommend users to create a virtual environment to run the code and installed all required dependencies. It can be done either in a directory gathering all virtual environments used on the computer or within the ohmpy directory. - -Create the virtual environment: - -.. code-block:: python - - python3 -m venv ohmpy - -Activate it using the following command: - -.. code-block:: python - - source ohmpy/bin/activate - -Install packages within the virtual environment. Installing the following package should be sufficient to meet dependencies: - -.. code-block:: python - - pip install RPi.GPIO adafruit-blinka numpy adafruit-circuitpython-ads1x15 pandas - -Check that requirements are met using - -.. code-block:: python - - pip list - -You should run you code within the virtual environment -to leave the virtual environment simply type: - -.. code-block:: python - - deactivate - - -Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) -======================================================================== - -If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it. - -1- Run the Thonny Python IDE software, Click on raspebrry acces **menu > programming> Thonny pythonIDE** - -2- Thonny's interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3)) - -.. figure:: thonny_first_interface.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -3-Click on **Run>select interpreter**, a new window opens click on interpret - -.. figure:: thonny_option.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -4-On the new open windows select **alternative Pyhton3 or virtual environnement** - -.. figure:: thonny_interpreter.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -5- New buttons appeared, selected **"locate another python executable "** - -6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created **/home/pi/ohmpi/bin/python3**. - -7- In the **known interpreter** tab the path of the virtual environnementshould appear - -.. figure:: thonny_interpreter_folder.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -8- Close the window by clicking on **ok**. - -9- Close thonny to save modifications - - -**STEP n°2**: Assembly of the measurement board -**************************************************** - -+----------------------------------------------------+ -| **Required components** | -+----------------------------------------------------+ - -.. figure:: step_n_2/00_mes_board_components.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - - - - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_2\Mesure_board_list_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -Description -========================================== - -.. figure:: schema_measurement_board.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete "plug and play" measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps: - - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/01_mes_board.jpg | - | 1 +------------------------------------------------------------+ - | | Installation of female header, 1 by10 pins, for ADS1115 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/02_mes_board.jpg | - |2 +------------------------------------------------------------+ - | | Soldering of 4 dual-in-line- socket (2 by 2 pins) for | - | | optical relay, AQY211EH. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/03_mes_board.jpg | - |3 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 9 pins) | - | | for INA282. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/04_mes_board.jpg | - | 4 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/05_mes_board.jpg | - |5 +------------------------------------------------------------+ - | | Soldering of 2 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/06_mes_board.jpg | - | 6 +------------------------------------------------------------+ - | | Traco Power Supply 12V to 5V, TDH15 - 1211N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/07_mes_board.jpg | - |7 +------------------------------------------------------------+ - | | Four screw terminals for 12V inpout et 5V outpout | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/08_mes_board.jpg | - |8 +------------------------------------------------------------+ - | | Traco power Supply 12V to 24V, TRN-1215 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/09_mes_board.jpg | - |9 +------------------------------------------------------------+ - | | Two screw terminals electrodes M and N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/10_mes_board.jpg | - |10 +------------------------------------------------------------+ - | | Four screw terminals, for 12V power supply and for | - | | electrodes A and B | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/11_mes_board.jpg | - |11 +------------------------------------------------------------+ - | | Soldering three capacitors (100nF) | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/12_mes_board.jpg | - | 12 +------------------------------------------------------------+ - | | 2 ohms shunt resistor pre-adjustment | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/13_mes_board.jpg | - |13 +------------------------------------------------------------+ - | | Soldering 2 ohms shunt resistor | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/14_mes_board.jpg | - |14 +------------------------------------------------------------+ - | | 1 Mohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/15_mes_board.jpg | - |15 +------------------------------------------------------------+ - | | Soldering tow 1 Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/16_mes_board.jpg | - |16 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/17_mes_board.jpg | - |17 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/18_mes_board.jpg | - |18 +------------------------------------------------------------+ - | | Female header 2 by 20 pins for Raspberry Pi connection | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/19_mes_board.jpg | - |19 +------------------------------------------------------------+ - | | View of the female header 2 by 20 pins installation | - | | for Raspberry Pi connection | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/20_mes_board.jpg | - |20 +------------------------------------------------------------+ - | | Fixing MCP23008 component | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/21_mes_board.jpg | - |21 +------------------------------------------------------------+ - | |Mounting optical relay, AQY211EH | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/22_mes_board.jpg | - |22 +------------------------------------------------------------+ - | | Mounting LM158 operational amplificator | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/23_mes_board.jpg | - |23 +------------------------------------------------------------+ - | | Mounting ADS115 board | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/24_mes_board.jpg | - |24 +------------------------------------------------------------+ - | | Fixing the INA282 | - | | | - +---------+------------------------------------------------------------+ - - - -**STEP n°3**: Start-up of the measurement board. -**************************************************** - -+------------------------------------------------------------------------+ -| **Required components** | -+------------------------------------------------------------------------+ - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_3\test_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |1 +------------------------------------------------------------+ - | | Shutdown the raspberry Pi and unplug the power supply | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |2 +--------------------------------------------------------------------------+ - | | Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/002.jpg | - |3 +--------------------------------------------------------------------------+ - | | Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/003.jpg | - |4 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/004.jpg | - |5 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/005.jpg | - |6 +------------------------------------------------------------+ - | | Plug the power supply into a socket and connect it to your | - | | Raspberry Pi's power port. | - +--------+------------------------------------------------------------+ - - -**STEP n°4**: Measurement board validation -**************************************************** - - Run the terminal, and write - - .. code-block:: python - - i2cdetect -y 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/i2cdetect.png | - |1 +------------------------------------------------------------+ - | |If everything is working, three I2C addresses should appear | - | |on the screen. | - +--------+------------------------------------------------------------+ - - - -Setting up an equivalent electronic circuit, for this you will need: - * 4 1kohm resistor (R2) - * 1 220 ohm resistor (R1) - * 1 small padboard - * Spool of solder - - .. table:: - :align: left - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/ref_circuit.png | - |2 +------------------------------------------------------------+ - | | Schematic of equivalent electronic circuit test | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_122820.jpg | - |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_123034.jpg | - |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_132856.jpg | - |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | - | | | - +--------+------------------------------------------------------------+ - - -Run the Thonny IDE and load the code Ohmpy4elec.pi - - -**STEP n°5**: Assembly of the MUX board -**************************************************** - - - -**STEP n°6**: Check Mux Board -**************************************************** - - - -**STEP n°7**: Assemble Ohmpi -**************************************************** - - - -**STEP n°8**: Boxing Ohmpi -**************************************************** - - - -**STEP n°9**: Field measurement -**************************************************** - \ No newline at end of file diff --git a/public/_sources/test.rst.txt b/public/_sources/test.rst.txt deleted file mode 100644 index 1163db63e49ef6639c2454c10662a8d0a0deebbf..0000000000000000000000000000000000000000 --- a/public/_sources/test.rst.txt +++ /dev/null @@ -1,42 +0,0 @@ -.. Ohmpi documentation master file, created by - sphinx-quickstart on Tue Jun 30 20:22:03 2020. - You can adapt this file completely to your liking, but it should at least - contain the root `toctree` directive. - -OHMPI: Open source and open hardware resitivity-meter -===================================================== - -.. sidebar:: Summary - - :Release: |release| - :Date: |today| - :Date start: July 2016 - :Authors: **Rémi CLEMENT, Nicolas FORQUET, Julien GANCE, Yannick FARGIER, Vivien DUBOIS, Hélène GUYARD, Olivier KAUFMANN** - :Target: users, researchers and developers - :status: some mature, some in progress - -.. topic:: OhmPi Document Center - - * OhmPi offcial documents - * Release guidelines - * General tutorials - -.. image:: logo_ohmpi.JPG - :width: 200px - :height: 150px - :align: center - -Contents: - -.. toctree:: - :maxdepth: 2 - - Ohmpi - V1_01 - V1_02 - V2_00 - - - - - diff --git a/public/_static/classic.css b/public/_static/classic.css deleted file mode 100644 index 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module.exports = factory() : - typeof define === 'function' && define.amd ? define('underscore', factory) : - (global = typeof globalThis !== 'undefined' ? globalThis : global || self, (function () { - var current = global._; - var exports = global._ = factory(); - exports.noConflict = function () { global._ = current; return exports; }; - }())); -}(this, (function () { - // Underscore.js 1.13.1 - // https://underscorejs.org - // (c) 2009-2021 Jeremy Ashkenas, Julian Gonggrijp, and DocumentCloud and Investigative Reporters & Editors - // Underscore may be freely distributed under the MIT license. - - // Current version. - var VERSION = '1.13.1'; - - // Establish the root object, `window` (`self`) in the browser, `global` - // on the server, or `this` in some virtual machines. We use `self` - // instead of `window` for `WebWorker` support. - var root = typeof self == 'object' && self.self === self && self || - typeof global == 'object' && global.global === global && global || - Function('return this')() || - {}; - - // Save bytes in the minified (but not gzipped) version: - var ArrayProto = Array.prototype, ObjProto = Object.prototype; - var SymbolProto = typeof Symbol !== 'undefined' ? Symbol.prototype : null; - - // Create quick reference variables for speed access to core prototypes. - var push = ArrayProto.push, - slice = ArrayProto.slice, - toString = ObjProto.toString, - hasOwnProperty = ObjProto.hasOwnProperty; - - // Modern feature detection. - var supportsArrayBuffer = typeof ArrayBuffer !== 'undefined', - supportsDataView = typeof DataView !== 'undefined'; - - // All **ECMAScript 5+** native function implementations that we hope to use - // are declared here. - var nativeIsArray = Array.isArray, - nativeKeys = Object.keys, - nativeCreate = Object.create, - nativeIsView = supportsArrayBuffer && ArrayBuffer.isView; - - // Create references to these builtin functions because we override them. - var _isNaN = isNaN, - _isFinite = isFinite; - - // Keys in IE < 9 that won't be iterated by `for key in ...` and thus missed. - var hasEnumBug = !{toString: null}.propertyIsEnumerable('toString'); - var nonEnumerableProps = ['valueOf', 'isPrototypeOf', 'toString', - 'propertyIsEnumerable', 'hasOwnProperty', 'toLocaleString']; - - // The largest integer that can be represented exactly. - var MAX_ARRAY_INDEX = Math.pow(2, 53) - 1; - - // Some functions take a variable number of arguments, or a few expected - // arguments at the beginning and then a variable number of values to operate - // on. This helper accumulates all remaining arguments past the function’s - // argument length (or an explicit `startIndex`), into an array that becomes - // the last argument. Similar to ES6’s "rest parameter". - function restArguments(func, startIndex) { - startIndex = startIndex == null ? func.length - 1 : +startIndex; - return function() { - var length = Math.max(arguments.length - startIndex, 0), - rest = Array(length), - index = 0; - for (; index < length; index++) { - rest[index] = arguments[index + startIndex]; - } - switch (startIndex) { - case 0: return func.call(this, rest); - case 1: return func.call(this, arguments[0], rest); - case 2: return func.call(this, arguments[0], arguments[1], rest); - } - var args = Array(startIndex + 1); - for (index = 0; index < startIndex; index++) { - args[index] = arguments[index]; - } - args[startIndex] = rest; - return func.apply(this, args); - }; - } - - // Is a given variable an object? - function isObject(obj) { - var type = typeof obj; - return type === 'function' || type === 'object' && !!obj; - } - - // Is a given value equal to null? - function isNull(obj) { - return obj === null; - } - - // Is a given variable undefined? - function isUndefined(obj) { - return obj === void 0; - } - - // Is a given value a boolean? - function isBoolean(obj) { - return obj === true || obj === false || toString.call(obj) === '[object Boolean]'; - } - - // Is a given value a DOM element? - function isElement(obj) { - return !!(obj && obj.nodeType === 1); - } - - // Internal function for creating a `toString`-based type tester. - function tagTester(name) { - var tag = '[object ' + name + ']'; - return function(obj) { - return toString.call(obj) === tag; - }; - } - - var isString = tagTester('String'); - - var isNumber = tagTester('Number'); - - var isDate = tagTester('Date'); - - var isRegExp = tagTester('RegExp'); - - var isError = tagTester('Error'); - - var isSymbol = tagTester('Symbol'); - - var isArrayBuffer = tagTester('ArrayBuffer'); - - var isFunction = tagTester('Function'); - - // Optimize `isFunction` if appropriate. Work around some `typeof` bugs in old - // v8, IE 11 (#1621), Safari 8 (#1929), and PhantomJS (#2236). - var nodelist = root.document && root.document.childNodes; - if (typeof /./ != 'function' && typeof Int8Array != 'object' && typeof nodelist != 'function') { - isFunction = function(obj) { - return typeof obj == 'function' || false; - }; - } - - var isFunction$1 = isFunction; - - var hasObjectTag = tagTester('Object'); - - // In IE 10 - Edge 13, `DataView` has string tag `'[object Object]'`. - // In IE 11, the most common among them, this problem also applies to - // `Map`, `WeakMap` and `Set`. - var hasStringTagBug = ( - supportsDataView && hasObjectTag(new DataView(new ArrayBuffer(8))) - ), - isIE11 = (typeof Map !== 'undefined' && hasObjectTag(new Map)); - - var isDataView = tagTester('DataView'); - - // In IE 10 - Edge 13, we need a different heuristic - // to determine whether an object is a `DataView`. - function ie10IsDataView(obj) { - return obj != null && isFunction$1(obj.getInt8) && isArrayBuffer(obj.buffer); - } - - var isDataView$1 = (hasStringTagBug ? ie10IsDataView : isDataView); - - // Is a given value an array? - // Delegates to ECMA5's native `Array.isArray`. - var isArray = nativeIsArray || tagTester('Array'); - - // Internal function to check whether `key` is an own property name of `obj`. - function has$1(obj, key) { - return obj != null && hasOwnProperty.call(obj, key); - } - - var isArguments = tagTester('Arguments'); - - // Define a fallback version of the method in browsers (ahem, IE < 9), where - // there isn't any inspectable "Arguments" type. - (function() { - if (!isArguments(arguments)) { - isArguments = function(obj) { - return has$1(obj, 'callee'); - }; - } - }()); - - var isArguments$1 = isArguments; - - // Is a given object a finite number? - function isFinite$1(obj) { - return !isSymbol(obj) && _isFinite(obj) && !isNaN(parseFloat(obj)); - } - - // Is the given value `NaN`? - function isNaN$1(obj) { - return isNumber(obj) && _isNaN(obj); - } - - // Predicate-generating function. Often useful outside of Underscore. - function constant(value) { - return function() { - return value; - }; - } - - // Common internal logic for `isArrayLike` and `isBufferLike`. - function createSizePropertyCheck(getSizeProperty) { - return function(collection) { - var sizeProperty = getSizeProperty(collection); - return typeof sizeProperty == 'number' && sizeProperty >= 0 && sizeProperty <= MAX_ARRAY_INDEX; - } - } - - // Internal helper to generate a function to obtain property `key` from `obj`. - function shallowProperty(key) { - return function(obj) { - return obj == null ? void 0 : obj[key]; - }; - } - - // Internal helper to obtain the `byteLength` property of an object. - var getByteLength = shallowProperty('byteLength'); - - // Internal helper to determine whether we should spend extensive checks against - // `ArrayBuffer` et al. - var isBufferLike = createSizePropertyCheck(getByteLength); - - // Is a given value a typed array? - var typedArrayPattern = /\[object ((I|Ui)nt(8|16|32)|Float(32|64)|Uint8Clamped|Big(I|Ui)nt64)Array\]/; - function isTypedArray(obj) { - // `ArrayBuffer.isView` is the most future-proof, so use it when available. - // Otherwise, fall back on the above regular expression. - return nativeIsView ? (nativeIsView(obj) && !isDataView$1(obj)) : - isBufferLike(obj) && typedArrayPattern.test(toString.call(obj)); - } - - var isTypedArray$1 = supportsArrayBuffer ? isTypedArray : constant(false); - - // Internal helper to obtain the `length` property of an object. - var getLength = shallowProperty('length'); - - // Internal helper to create a simple lookup structure. - // `collectNonEnumProps` used to depend on `_.contains`, but this led to - // circular imports. `emulatedSet` is a one-off solution that only works for - // arrays of strings. - function emulatedSet(keys) { - var hash = {}; - for (var l = keys.length, i = 0; i < l; ++i) hash[keys[i]] = true; - return { - contains: function(key) { return hash[key]; }, - push: function(key) { - hash[key] = true; - return keys.push(key); - } - }; - } - - // Internal helper. Checks `keys` for the presence of keys in IE < 9 that won't - // be iterated by `for key in ...` and thus missed. Extends `keys` in place if - // needed. - function collectNonEnumProps(obj, keys) { - keys = emulatedSet(keys); - var nonEnumIdx = nonEnumerableProps.length; - var constructor = obj.constructor; - var proto = isFunction$1(constructor) && constructor.prototype || ObjProto; - - // Constructor is a special case. - var prop = 'constructor'; - if (has$1(obj, prop) && !keys.contains(prop)) keys.push(prop); - - while (nonEnumIdx--) { - prop = nonEnumerableProps[nonEnumIdx]; - if (prop in obj && obj[prop] !== proto[prop] && !keys.contains(prop)) { - keys.push(prop); - } - } - } - - // Retrieve the names of an object's own properties. - // Delegates to **ECMAScript 5**'s native `Object.keys`. - function keys(obj) { - if (!isObject(obj)) return []; - if (nativeKeys) return nativeKeys(obj); - var keys = []; - for (var key in obj) if (has$1(obj, key)) keys.push(key); - // Ahem, IE < 9. - if (hasEnumBug) collectNonEnumProps(obj, keys); - return keys; - } - - // Is a given array, string, or object empty? - // An "empty" object has no enumerable own-properties. - function isEmpty(obj) { - if (obj == null) return true; - // Skip the more expensive `toString`-based type checks if `obj` has no - // `.length`. - var length = getLength(obj); - if (typeof length == 'number' && ( - isArray(obj) || isString(obj) || isArguments$1(obj) - )) return length === 0; - return getLength(keys(obj)) === 0; - } - - // Returns whether an object has a given set of `key:value` pairs. - function isMatch(object, attrs) { - var _keys = keys(attrs), length = _keys.length; - if (object == null) return !length; - var obj = Object(object); - for (var i = 0; i < length; i++) { - var key = _keys[i]; - if (attrs[key] !== obj[key] || !(key in obj)) return false; - } - return true; - } - - // If Underscore is called as a function, it returns a wrapped object that can - // be used OO-style. This wrapper holds altered versions of all functions added - // through `_.mixin`. Wrapped objects may be chained. - function _$1(obj) { - if (obj instanceof _$1) return obj; - if (!(this instanceof _$1)) return new _$1(obj); - this._wrapped = obj; - } - - _$1.VERSION = VERSION; - - // Extracts the result from a wrapped and chained object. - _$1.prototype.value = function() { - return this._wrapped; - }; - - // Provide unwrapping proxies for some methods used in engine operations - // such as arithmetic and JSON stringification. - _$1.prototype.valueOf = _$1.prototype.toJSON = _$1.prototype.value; - - _$1.prototype.toString = function() { - return String(this._wrapped); - }; - - // Internal function to wrap or shallow-copy an ArrayBuffer, - // typed array or DataView to a new view, reusing the buffer. - function toBufferView(bufferSource) { - return new Uint8Array( - bufferSource.buffer || bufferSource, - bufferSource.byteOffset || 0, - getByteLength(bufferSource) - ); - } - - // We use this string twice, so give it a name for minification. - var tagDataView = '[object DataView]'; - - // Internal recursive comparison function for `_.isEqual`. - function eq(a, b, aStack, bStack) { - // Identical objects are equal. `0 === -0`, but they aren't identical. - // See the [Harmony `egal` proposal](https://wiki.ecmascript.org/doku.php?id=harmony:egal). - if (a === b) return a !== 0 || 1 / a === 1 / b; - // `null` or `undefined` only equal to itself (strict comparison). - if (a == null || b == null) return false; - // `NaN`s are equivalent, but non-reflexive. - if (a !== a) return b !== b; - // Exhaust primitive checks - var type = typeof a; - if (type !== 'function' && type !== 'object' && typeof b != 'object') return false; - return deepEq(a, b, aStack, bStack); - } - - // Internal recursive comparison function for `_.isEqual`. - function deepEq(a, b, aStack, bStack) { - // Unwrap any wrapped objects. - if (a instanceof _$1) a = a._wrapped; - if (b instanceof _$1) b = b._wrapped; - // Compare `[[Class]]` names. - var className = toString.call(a); - if (className !== toString.call(b)) return false; - // Work around a bug in IE 10 - Edge 13. - if (hasStringTagBug && className == '[object Object]' && isDataView$1(a)) { - if (!isDataView$1(b)) return false; - className = tagDataView; - } - switch (className) { - // These types are compared by value. - case '[object RegExp]': - // RegExps are coerced to strings for comparison (Note: '' + /a/i === '/a/i') - case '[object String]': - // Primitives and their corresponding object wrappers are equivalent; thus, `"5"` is - // equivalent to `new String("5")`. - return '' + a === '' + b; - case '[object Number]': - // `NaN`s are equivalent, but non-reflexive. - // Object(NaN) is equivalent to NaN. - if (+a !== +a) return +b !== +b; - // An `egal` comparison is performed for other numeric values. - return +a === 0 ? 1 / +a === 1 / b : +a === +b; - case '[object Date]': - case '[object Boolean]': - // Coerce dates and booleans to numeric primitive values. Dates are compared by their - // millisecond representations. Note that invalid dates with millisecond representations - // of `NaN` are not equivalent. - return +a === +b; - case '[object Symbol]': - return SymbolProto.valueOf.call(a) === SymbolProto.valueOf.call(b); - case '[object ArrayBuffer]': - case tagDataView: - // Coerce to typed array so we can fall through. - return deepEq(toBufferView(a), toBufferView(b), aStack, bStack); - } - - var areArrays = className === '[object Array]'; - if (!areArrays && isTypedArray$1(a)) { - var byteLength = getByteLength(a); - if (byteLength !== getByteLength(b)) return false; - if (a.buffer === b.buffer && a.byteOffset === b.byteOffset) return true; - areArrays = true; - } - if (!areArrays) { - if (typeof a != 'object' || typeof b != 'object') return false; - - // Objects with different constructors are not equivalent, but `Object`s or `Array`s - // from different frames are. - var aCtor = a.constructor, bCtor = b.constructor; - if (aCtor !== bCtor && !(isFunction$1(aCtor) && aCtor instanceof aCtor && - isFunction$1(bCtor) && bCtor instanceof bCtor) - && ('constructor' in a && 'constructor' in b)) { - return false; - } - } - // Assume equality for cyclic structures. The algorithm for detecting cyclic - // structures is adapted from ES 5.1 section 15.12.3, abstract operation `JO`. - - // Initializing stack of traversed objects. - // It's done here since we only need them for objects and arrays comparison. - aStack = aStack || []; - bStack = bStack || []; - var length = aStack.length; - while (length--) { - // Linear search. Performance is inversely proportional to the number of - // unique nested structures. - if (aStack[length] === a) return bStack[length] === b; - } - - // Add the first object to the stack of traversed objects. - aStack.push(a); - bStack.push(b); - - // Recursively compare objects and arrays. - if (areArrays) { - // Compare array lengths to determine if a deep comparison is necessary. - length = a.length; - if (length !== b.length) return false; - // Deep compare the contents, ignoring non-numeric properties. - while (length--) { - if (!eq(a[length], b[length], aStack, bStack)) return false; - } - } else { - // Deep compare objects. - var _keys = keys(a), key; - length = _keys.length; - // Ensure that both objects contain the same number of properties before comparing deep equality. - if (keys(b).length !== length) return false; - while (length--) { - // Deep compare each member - key = _keys[length]; - if (!(has$1(b, key) && eq(a[key], b[key], aStack, bStack))) return false; - } - } - // Remove the first object from the stack of traversed objects. - aStack.pop(); - bStack.pop(); - return true; - } - - // Perform a deep comparison to check if two objects are equal. - function isEqual(a, b) { - return eq(a, b); - } - - // Retrieve all the enumerable property names of an object. - function allKeys(obj) { - if (!isObject(obj)) return []; - var keys = []; - for (var key in obj) keys.push(key); - // Ahem, IE < 9. - if (hasEnumBug) collectNonEnumProps(obj, keys); - return keys; - } - - // Since the regular `Object.prototype.toString` type tests don't work for - // some types in IE 11, we use a fingerprinting heuristic instead, based - // on the methods. It's not great, but it's the best we got. - // The fingerprint method lists are defined below. - function ie11fingerprint(methods) { - var length = getLength(methods); - return function(obj) { - if (obj == null) return false; - // `Map`, `WeakMap` and `Set` have no enumerable keys. - var keys = allKeys(obj); - if (getLength(keys)) return false; - for (var i = 0; i < length; i++) { - if (!isFunction$1(obj[methods[i]])) return false; - } - // If we are testing against `WeakMap`, we need to ensure that - // `obj` doesn't have a `forEach` method in order to distinguish - // it from a regular `Map`. - return methods !== weakMapMethods || !isFunction$1(obj[forEachName]); - }; - } - - // In the interest of compact minification, we write - // each string in the fingerprints only once. - var forEachName = 'forEach', - hasName = 'has', - commonInit = ['clear', 'delete'], - mapTail = ['get', hasName, 'set']; - - // `Map`, `WeakMap` and `Set` each have slightly different - // combinations of the above sublists. - var mapMethods = commonInit.concat(forEachName, mapTail), - weakMapMethods = commonInit.concat(mapTail), - setMethods = ['add'].concat(commonInit, forEachName, hasName); - - var isMap = isIE11 ? ie11fingerprint(mapMethods) : tagTester('Map'); - - var isWeakMap = isIE11 ? ie11fingerprint(weakMapMethods) : tagTester('WeakMap'); - - var isSet = isIE11 ? ie11fingerprint(setMethods) : tagTester('Set'); - - var isWeakSet = tagTester('WeakSet'); - - // Retrieve the values of an object's properties. - function values(obj) { - var _keys = keys(obj); - var length = _keys.length; - var values = Array(length); - for (var i = 0; i < length; i++) { - values[i] = obj[_keys[i]]; - } - return values; - } - - // Convert an object into a list of `[key, value]` pairs. - // The opposite of `_.object` with one argument. - function pairs(obj) { - var _keys = keys(obj); - var length = _keys.length; - var pairs = Array(length); - for (var i = 0; i < length; i++) { - pairs[i] = [_keys[i], obj[_keys[i]]]; - } - return pairs; - } - - // Invert the keys and values of an object. The values must be serializable. - function invert(obj) { - var result = {}; - var _keys = keys(obj); - for (var i = 0, length = _keys.length; i < length; i++) { - result[obj[_keys[i]]] = _keys[i]; - } - return result; - } - - // Return a sorted list of the function names available on the object. - function functions(obj) { - var names = []; - for (var key in obj) { - if (isFunction$1(obj[key])) names.push(key); - } - return names.sort(); - } - - // An internal function for creating assigner functions. - function createAssigner(keysFunc, defaults) { - return function(obj) { - var length = arguments.length; - if (defaults) obj = Object(obj); - if (length < 2 || obj == null) return obj; - for (var index = 1; index < length; index++) { - var source = arguments[index], - keys = keysFunc(source), - l = keys.length; - for (var i = 0; i < l; i++) { - var key = keys[i]; - if (!defaults || obj[key] === void 0) obj[key] = source[key]; - } - } - return obj; - }; - } - - // Extend a given object with all the properties in passed-in object(s). - var extend = createAssigner(allKeys); - - // Assigns a given object with all the own properties in the passed-in - // object(s). - // (https://developer.mozilla.org/docs/Web/JavaScript/Reference/Global_Objects/Object/assign) - var extendOwn = createAssigner(keys); - - // Fill in a given object with default properties. - var defaults = createAssigner(allKeys, true); - - // Create a naked function reference for surrogate-prototype-swapping. - function ctor() { - return function(){}; - } - - // An internal function for creating a new object that inherits from another. - function baseCreate(prototype) { - if (!isObject(prototype)) return {}; - if (nativeCreate) return nativeCreate(prototype); - var Ctor = ctor(); - Ctor.prototype = prototype; - var result = new Ctor; - Ctor.prototype = null; - return result; - } - - // Creates an object that inherits from the given prototype object. - // If additional properties are provided then they will be added to the - // created object. - function create(prototype, props) { - var result = baseCreate(prototype); - if (props) extendOwn(result, props); - return result; - } - - // Create a (shallow-cloned) duplicate of an object. - function clone(obj) { - if (!isObject(obj)) return obj; - return isArray(obj) ? obj.slice() : extend({}, obj); - } - - // Invokes `interceptor` with the `obj` and then returns `obj`. - // The primary purpose of this method is to "tap into" a method chain, in - // order to perform operations on intermediate results within the chain. - function tap(obj, interceptor) { - interceptor(obj); - return obj; - } - - // Normalize a (deep) property `path` to array. - // Like `_.iteratee`, this function can be customized. - function toPath$1(path) { - return isArray(path) ? path : [path]; - } - _$1.toPath = toPath$1; - - // Internal wrapper for `_.toPath` to enable minification. - // Similar to `cb` for `_.iteratee`. - function toPath(path) { - return _$1.toPath(path); - } - - // Internal function to obtain a nested property in `obj` along `path`. - function deepGet(obj, path) { - var length = path.length; - for (var i = 0; i < length; i++) { - if (obj == null) return void 0; - obj = obj[path[i]]; - } - return length ? obj : void 0; - } - - // Get the value of the (deep) property on `path` from `object`. - // If any property in `path` does not exist or if the value is - // `undefined`, return `defaultValue` instead. - // The `path` is normalized through `_.toPath`. - function get(object, path, defaultValue) { - var value = deepGet(object, toPath(path)); - return isUndefined(value) ? defaultValue : value; - } - - // Shortcut function for checking if an object has a given property directly on - // itself (in other words, not on a prototype). Unlike the internal `has` - // function, this public version can also traverse nested properties. - function has(obj, path) { - path = toPath(path); - var length = path.length; - for (var i = 0; i < length; i++) { - var key = path[i]; - if (!has$1(obj, key)) return false; - obj = obj[key]; - } - return !!length; - } - - // Keep the identity function around for default iteratees. - function identity(value) { - return value; - } - - // Returns a predicate for checking whether an object has a given set of - // `key:value` pairs. - function matcher(attrs) { - attrs = extendOwn({}, attrs); - return function(obj) { - return isMatch(obj, attrs); - }; - } - - // Creates a function that, when passed an object, will traverse that object’s - // properties down the given `path`, specified as an array of keys or indices. - function property(path) { - path = toPath(path); - return function(obj) { - return deepGet(obj, path); - }; - } - - // Internal function that returns an efficient (for current engines) version - // of the passed-in callback, to be repeatedly applied in other Underscore - // functions. - function optimizeCb(func, context, argCount) { - if (context === void 0) return func; - switch (argCount == null ? 3 : argCount) { - case 1: return function(value) { - return func.call(context, value); - }; - // The 2-argument case is omitted because we’re not using it. - case 3: return function(value, index, collection) { - return func.call(context, value, index, collection); - }; - case 4: return function(accumulator, value, index, collection) { - return func.call(context, accumulator, value, index, collection); - }; - } - return function() { - return func.apply(context, arguments); - }; - } - - // An internal function to generate callbacks that can be applied to each - // element in a collection, returning the desired result — either `_.identity`, - // an arbitrary callback, a property matcher, or a property accessor. - function baseIteratee(value, context, argCount) { - if (value == null) return identity; - if (isFunction$1(value)) return optimizeCb(value, context, argCount); - if (isObject(value) && !isArray(value)) return matcher(value); - return property(value); - } - - // External wrapper for our callback generator. Users may customize - // `_.iteratee` if they want additional predicate/iteratee shorthand styles. - // This abstraction hides the internal-only `argCount` argument. - function iteratee(value, context) { - return baseIteratee(value, context, Infinity); - } - _$1.iteratee = iteratee; - - // The function we call internally to generate a callback. It invokes - // `_.iteratee` if overridden, otherwise `baseIteratee`. - function cb(value, context, argCount) { - if (_$1.iteratee !== iteratee) return _$1.iteratee(value, context); - return baseIteratee(value, context, argCount); - } - - // Returns the results of applying the `iteratee` to each element of `obj`. - // In contrast to `_.map` it returns an object. - function mapObject(obj, iteratee, context) { - iteratee = cb(iteratee, context); - var _keys = keys(obj), - length = _keys.length, - results = {}; - for (var index = 0; index < length; index++) { - var currentKey = _keys[index]; - results[currentKey] = iteratee(obj[currentKey], currentKey, obj); - } - return results; - } - - // Predicate-generating function. Often useful outside of Underscore. - function noop(){} - - // Generates a function for a given object that returns a given property. - function propertyOf(obj) { - if (obj == null) return noop; - return function(path) { - return get(obj, path); - }; - } - - // Run a function **n** times. - function times(n, iteratee, context) { - var accum = Array(Math.max(0, n)); - iteratee = optimizeCb(iteratee, context, 1); - for (var i = 0; i < n; i++) accum[i] = iteratee(i); - return accum; - } - - // Return a random integer between `min` and `max` (inclusive). - function random(min, max) { - if (max == null) { - max = min; - min = 0; - } - return min + Math.floor(Math.random() * (max - min + 1)); - } - - // A (possibly faster) way to get the current timestamp as an integer. - var now = Date.now || function() { - return new Date().getTime(); - }; - - // Internal helper to generate functions for escaping and unescaping strings - // to/from HTML interpolation. - function createEscaper(map) { - var escaper = function(match) { - return map[match]; - }; - // Regexes for identifying a key that needs to be escaped. - var source = '(?:' + keys(map).join('|') + ')'; - var testRegexp = RegExp(source); - var replaceRegexp = RegExp(source, 'g'); - return function(string) { - string = string == null ? '' : '' + string; - return testRegexp.test(string) ? string.replace(replaceRegexp, escaper) : string; - }; - } - - // Internal list of HTML entities for escaping. - var escapeMap = { - '&': '&', - '<': '<', - '>': '>', - '"': '"', - "'": ''', - '`': '`' - }; - - // Function for escaping strings to HTML interpolation. - var _escape = createEscaper(escapeMap); - - // Internal list of HTML entities for unescaping. - var unescapeMap = invert(escapeMap); - - // Function for unescaping strings from HTML interpolation. - var _unescape = createEscaper(unescapeMap); - - // By default, Underscore uses ERB-style template delimiters. Change the - // following template settings to use alternative delimiters. - var templateSettings = _$1.templateSettings = { - evaluate: /<%([\s\S]+?)%>/g, - interpolate: /<%=([\s\S]+?)%>/g, - escape: /<%-([\s\S]+?)%>/g - }; - - // When customizing `_.templateSettings`, if you don't want to define an - // interpolation, evaluation or escaping regex, we need one that is - // guaranteed not to match. - var noMatch = /(.)^/; - - // Certain characters need to be escaped so that they can be put into a - // string literal. - var escapes = { - "'": "'", - '\\': '\\', - '\r': 'r', - '\n': 'n', - '\u2028': 'u2028', - '\u2029': 'u2029' - }; - - var escapeRegExp = /\\|'|\r|\n|\u2028|\u2029/g; - - function escapeChar(match) { - return '\\' + escapes[match]; - } - - // In order to prevent third-party code injection through - // `_.templateSettings.variable`, we test it against the following regular - // expression. It is intentionally a bit more liberal than just matching valid - // identifiers, but still prevents possible loopholes through defaults or - // destructuring assignment. - var bareIdentifier = /^\s*(\w|\$)+\s*$/; - - // JavaScript micro-templating, similar to John Resig's implementation. - // Underscore templating handles arbitrary delimiters, preserves whitespace, - // and correctly escapes quotes within interpolated code. - // NB: `oldSettings` only exists for backwards compatibility. - function template(text, settings, oldSettings) { - if (!settings && oldSettings) settings = oldSettings; - settings = defaults({}, settings, _$1.templateSettings); - - // Combine delimiters into one regular expression via alternation. - var matcher = RegExp([ - (settings.escape || noMatch).source, - (settings.interpolate || noMatch).source, - (settings.evaluate || noMatch).source - ].join('|') + '|$', 'g'); - - // Compile the template source, escaping string literals appropriately. - var index = 0; - var source = "__p+='"; - text.replace(matcher, function(match, escape, interpolate, evaluate, offset) { - source += text.slice(index, offset).replace(escapeRegExp, escapeChar); - index = offset + match.length; - - if (escape) { - source += "'+\n((__t=(" + escape + "))==null?'':_.escape(__t))+\n'"; - } else if (interpolate) { - source += "'+\n((__t=(" + interpolate + "))==null?'':__t)+\n'"; - } else if (evaluate) { - source += "';\n" + evaluate + "\n__p+='"; - } - - // Adobe VMs need the match returned to produce the correct offset. - return match; - }); - source += "';\n"; - - var argument = settings.variable; - if (argument) { - // Insure against third-party code injection. (CVE-2021-23358) - if (!bareIdentifier.test(argument)) throw new Error( - 'variable is not a bare identifier: ' + argument - ); - } else { - // If a variable is not specified, place data values in local scope. - source = 'with(obj||{}){\n' + source + '}\n'; - argument = 'obj'; - } - - source = "var __t,__p='',__j=Array.prototype.join," + - "print=function(){__p+=__j.call(arguments,'');};\n" + - source + 'return __p;\n'; - - var render; - try { - render = new Function(argument, '_', source); - } catch (e) { - e.source = source; - throw e; - } - - var template = function(data) { - return render.call(this, data, _$1); - }; - - // Provide the compiled source as a convenience for precompilation. - template.source = 'function(' + argument + '){\n' + source + '}'; - - return template; - } - - // Traverses the children of `obj` along `path`. If a child is a function, it - // is invoked with its parent as context. Returns the value of the final - // child, or `fallback` if any child is undefined. - function result(obj, path, fallback) { - path = toPath(path); - var length = path.length; - if (!length) { - return isFunction$1(fallback) ? fallback.call(obj) : fallback; - } - for (var i = 0; i < length; i++) { - var prop = obj == null ? void 0 : obj[path[i]]; - if (prop === void 0) { - prop = fallback; - i = length; // Ensure we don't continue iterating. - } - obj = isFunction$1(prop) ? prop.call(obj) : prop; - } - return obj; - } - - // Generate a unique integer id (unique within the entire client session). - // Useful for temporary DOM ids. - var idCounter = 0; - function uniqueId(prefix) { - var id = ++idCounter + ''; - return prefix ? prefix + id : id; - } - - // Start chaining a wrapped Underscore object. - function chain(obj) { - var instance = _$1(obj); - instance._chain = true; - return instance; - } - - // Internal function to execute `sourceFunc` bound to `context` with optional - // `args`. Determines whether to execute a function as a constructor or as a - // normal function. - function executeBound(sourceFunc, boundFunc, context, callingContext, args) { - if (!(callingContext instanceof boundFunc)) return sourceFunc.apply(context, args); - var self = baseCreate(sourceFunc.prototype); - var result = sourceFunc.apply(self, args); - if (isObject(result)) return result; - return self; - } - - // Partially apply a function by creating a version that has had some of its - // arguments pre-filled, without changing its dynamic `this` context. `_` acts - // as a placeholder by default, allowing any combination of arguments to be - // pre-filled. Set `_.partial.placeholder` for a custom placeholder argument. - var partial = restArguments(function(func, boundArgs) { - var placeholder = partial.placeholder; - var bound = function() { - var position = 0, length = boundArgs.length; - var args = Array(length); - for (var i = 0; i < length; i++) { - args[i] = boundArgs[i] === placeholder ? arguments[position++] : boundArgs[i]; - } - while (position < arguments.length) args.push(arguments[position++]); - return executeBound(func, bound, this, this, args); - }; - return bound; - }); - - partial.placeholder = _$1; - - // Create a function bound to a given object (assigning `this`, and arguments, - // optionally). - var bind = restArguments(function(func, context, args) { - if (!isFunction$1(func)) throw new TypeError('Bind must be called on a function'); - var bound = restArguments(function(callArgs) { - return executeBound(func, bound, context, this, args.concat(callArgs)); - }); - return bound; - }); - - // Internal helper for collection methods to determine whether a collection - // should be iterated as an array or as an object. - // Related: https://people.mozilla.org/~jorendorff/es6-draft.html#sec-tolength - // Avoids a very nasty iOS 8 JIT bug on ARM-64. #2094 - var isArrayLike = createSizePropertyCheck(getLength); - - // Internal implementation of a recursive `flatten` function. - function flatten$1(input, depth, strict, output) { - output = output || []; - if (!depth && depth !== 0) { - depth = Infinity; - } else if (depth <= 0) { - return output.concat(input); - } - var idx = output.length; - for (var i = 0, length = getLength(input); i < length; i++) { - var value = input[i]; - if (isArrayLike(value) && (isArray(value) || isArguments$1(value))) { - // Flatten current level of array or arguments object. - if (depth > 1) { - flatten$1(value, depth - 1, strict, output); - idx = output.length; - } else { - var j = 0, len = value.length; - while (j < len) output[idx++] = value[j++]; - } - } else if (!strict) { - output[idx++] = value; - } - } - return output; - } - - // Bind a number of an object's methods to that object. Remaining arguments - // are the method names to be bound. Useful for ensuring that all callbacks - // defined on an object belong to it. - var bindAll = restArguments(function(obj, keys) { - keys = flatten$1(keys, false, false); - var index = keys.length; - if (index < 1) throw new Error('bindAll must be passed function names'); - while (index--) { - var key = keys[index]; - obj[key] = bind(obj[key], obj); - } - return obj; - }); - - // Memoize an expensive function by storing its results. - function memoize(func, hasher) { - var memoize = function(key) { - var cache = memoize.cache; - var address = '' + (hasher ? hasher.apply(this, arguments) : key); - if (!has$1(cache, address)) cache[address] = func.apply(this, arguments); - return cache[address]; - }; - memoize.cache = {}; - return memoize; - } - - // Delays a function for the given number of milliseconds, and then calls - // it with the arguments supplied. - var delay = restArguments(function(func, wait, args) { - return setTimeout(function() { - return func.apply(null, args); - }, wait); - }); - - // Defers a function, scheduling it to run after the current call stack has - // cleared. - var defer = partial(delay, _$1, 1); - - // Returns a function, that, when invoked, will only be triggered at most once - // during a given window of time. Normally, the throttled function will run - // as much as it can, without ever going more than once per `wait` duration; - // but if you'd like to disable the execution on the leading edge, pass - // `{leading: false}`. To disable execution on the trailing edge, ditto. - function throttle(func, wait, options) { - var timeout, context, args, result; - var previous = 0; - if (!options) options = {}; - - var later = function() { - previous = options.leading === false ? 0 : now(); - timeout = null; - result = func.apply(context, args); - if (!timeout) context = args = null; - }; - - var throttled = function() { - var _now = now(); - if (!previous && options.leading === false) previous = _now; - var remaining = wait - (_now - previous); - context = this; - args = arguments; - if (remaining <= 0 || remaining > wait) { - if (timeout) { - clearTimeout(timeout); - timeout = null; - } - previous = _now; - result = func.apply(context, args); - if (!timeout) context = args = null; - } else if (!timeout && options.trailing !== false) { - timeout = setTimeout(later, remaining); - } - return result; - }; - - throttled.cancel = function() { - clearTimeout(timeout); - previous = 0; - timeout = context = args = null; - }; - - return throttled; - } - - // When a sequence of calls of the returned function ends, the argument - // function is triggered. The end of a sequence is defined by the `wait` - // parameter. If `immediate` is passed, the argument function will be - // triggered at the beginning of the sequence instead of at the end. - function debounce(func, wait, immediate) { - var timeout, previous, args, result, context; - - var later = function() { - var passed = now() - previous; - if (wait > passed) { - timeout = setTimeout(later, wait - passed); - } else { - timeout = null; - if (!immediate) result = func.apply(context, args); - // This check is needed because `func` can recursively invoke `debounced`. - if (!timeout) args = context = null; - } - }; - - var debounced = restArguments(function(_args) { - context = this; - args = _args; - previous = now(); - if (!timeout) { - timeout = setTimeout(later, wait); - if (immediate) result = func.apply(context, args); - } - return result; - }); - - debounced.cancel = function() { - clearTimeout(timeout); - timeout = args = context = null; - }; - - return debounced; - } - - // Returns the first function passed as an argument to the second, - // allowing you to adjust arguments, run code before and after, and - // conditionally execute the original function. - function wrap(func, wrapper) { - return partial(wrapper, func); - } - - // Returns a negated version of the passed-in predicate. - function negate(predicate) { - return function() { - return !predicate.apply(this, arguments); - }; - } - - // Returns a function that is the composition of a list of functions, each - // consuming the return value of the function that follows. - function compose() { - var args = arguments; - var start = args.length - 1; - return function() { - var i = start; - var result = args[start].apply(this, arguments); - while (i--) result = args[i].call(this, result); - return result; - }; - } - - // Returns a function that will only be executed on and after the Nth call. - function after(times, func) { - return function() { - if (--times < 1) { - return func.apply(this, arguments); - } - }; - } - - // Returns a function that will only be executed up to (but not including) the - // Nth call. - function before(times, func) { - var memo; - return function() { - if (--times > 0) { - memo = func.apply(this, arguments); - } - if (times <= 1) func = null; - return memo; - }; - } - - // Returns a function that will be executed at most one time, no matter how - // often you call it. Useful for lazy initialization. - var once = partial(before, 2); - - // Returns the first key on an object that passes a truth test. - function findKey(obj, predicate, context) { - predicate = cb(predicate, context); - var _keys = keys(obj), key; - for (var i = 0, length = _keys.length; i < length; i++) { - key = _keys[i]; - if (predicate(obj[key], key, obj)) return key; - } - } - - // Internal function to generate `_.findIndex` and `_.findLastIndex`. - function createPredicateIndexFinder(dir) { - return function(array, predicate, context) { - predicate = cb(predicate, context); - var length = getLength(array); - var index = dir > 0 ? 0 : length - 1; - for (; index >= 0 && index < length; index += dir) { - if (predicate(array[index], index, array)) return index; - } - return -1; - }; - } - - // Returns the first index on an array-like that passes a truth test. - var findIndex = createPredicateIndexFinder(1); - - // Returns the last index on an array-like that passes a truth test. - var findLastIndex = createPredicateIndexFinder(-1); - - // Use a comparator function to figure out the smallest index at which - // an object should be inserted so as to maintain order. Uses binary search. - function sortedIndex(array, obj, iteratee, context) { - iteratee = cb(iteratee, context, 1); - var value = iteratee(obj); - var low = 0, high = getLength(array); - while (low < high) { - var mid = Math.floor((low + high) / 2); - if (iteratee(array[mid]) < value) low = mid + 1; else high = mid; - } - return low; - } - - // Internal function to generate the `_.indexOf` and `_.lastIndexOf` functions. - function createIndexFinder(dir, predicateFind, sortedIndex) { - return function(array, item, idx) { - var i = 0, length = getLength(array); - if (typeof idx == 'number') { - if (dir > 0) { - i = idx >= 0 ? idx : Math.max(idx + length, i); - } else { - length = idx >= 0 ? Math.min(idx + 1, length) : idx + length + 1; - } - } else if (sortedIndex && idx && length) { - idx = sortedIndex(array, item); - return array[idx] === item ? idx : -1; - } - if (item !== item) { - idx = predicateFind(slice.call(array, i, length), isNaN$1); - return idx >= 0 ? idx + i : -1; - } - for (idx = dir > 0 ? i : length - 1; idx >= 0 && idx < length; idx += dir) { - if (array[idx] === item) return idx; - } - return -1; - }; - } - - // Return the position of the first occurrence of an item in an array, - // or -1 if the item is not included in the array. - // If the array is large and already in sort order, pass `true` - // for **isSorted** to use binary search. - var indexOf = createIndexFinder(1, findIndex, sortedIndex); - - // Return the position of the last occurrence of an item in an array, - // or -1 if the item is not included in the array. - var lastIndexOf = createIndexFinder(-1, findLastIndex); - - // Return the first value which passes a truth test. - function find(obj, predicate, context) { - var keyFinder = isArrayLike(obj) ? findIndex : findKey; - var key = keyFinder(obj, predicate, context); - if (key !== void 0 && key !== -1) return obj[key]; - } - - // Convenience version of a common use case of `_.find`: getting the first - // object containing specific `key:value` pairs. - function findWhere(obj, attrs) { - return find(obj, matcher(attrs)); - } - - // The cornerstone for collection functions, an `each` - // implementation, aka `forEach`. - // Handles raw objects in addition to array-likes. Treats all - // sparse array-likes as if they were dense. - function each(obj, iteratee, context) { - iteratee = optimizeCb(iteratee, context); - var i, length; - if (isArrayLike(obj)) { - for (i = 0, length = obj.length; i < length; i++) { - iteratee(obj[i], i, obj); - } - } else { - var _keys = keys(obj); - for (i = 0, length = _keys.length; i < length; i++) { - iteratee(obj[_keys[i]], _keys[i], obj); - } - } - return obj; - } - - // Return the results of applying the iteratee to each element. - function map(obj, iteratee, context) { - iteratee = cb(iteratee, context); - var _keys = !isArrayLike(obj) && keys(obj), - length = (_keys || obj).length, - results = Array(length); - for (var index = 0; index < length; index++) { - var currentKey = _keys ? _keys[index] : index; - results[index] = iteratee(obj[currentKey], currentKey, obj); - } - return results; - } - - // Internal helper to create a reducing function, iterating left or right. - function createReduce(dir) { - // Wrap code that reassigns argument variables in a separate function than - // the one that accesses `arguments.length` to avoid a perf hit. (#1991) - var reducer = function(obj, iteratee, memo, initial) { - var _keys = !isArrayLike(obj) && keys(obj), - length = (_keys || obj).length, - index = dir > 0 ? 0 : length - 1; - if (!initial) { - memo = obj[_keys ? _keys[index] : index]; - index += dir; - } - for (; index >= 0 && index < length; index += dir) { - var currentKey = _keys ? _keys[index] : index; - memo = iteratee(memo, obj[currentKey], currentKey, obj); - } - return memo; - }; - - return function(obj, iteratee, memo, context) { - var initial = arguments.length >= 3; - return reducer(obj, optimizeCb(iteratee, context, 4), memo, initial); - }; - } - - // **Reduce** builds up a single result from a list of values, aka `inject`, - // or `foldl`. - var reduce = createReduce(1); - - // The right-associative version of reduce, also known as `foldr`. - var reduceRight = createReduce(-1); - - // Return all the elements that pass a truth test. - function filter(obj, predicate, context) { - var results = []; - predicate = cb(predicate, context); - each(obj, function(value, index, list) { - if (predicate(value, index, list)) results.push(value); - }); - return results; - } - - // Return all the elements for which a truth test fails. - function reject(obj, predicate, context) { - return filter(obj, negate(cb(predicate)), context); - } - - // Determine whether all of the elements pass a truth test. - function every(obj, predicate, context) { - predicate = cb(predicate, context); - var _keys = !isArrayLike(obj) && keys(obj), - length = (_keys || obj).length; - for (var index = 0; index < length; index++) { - var currentKey = _keys ? _keys[index] : index; - if (!predicate(obj[currentKey], currentKey, obj)) return false; - } - return true; - } - - // Determine if at least one element in the object passes a truth test. - function some(obj, predicate, context) { - predicate = cb(predicate, context); - var _keys = !isArrayLike(obj) && keys(obj), - length = (_keys || obj).length; - for (var index = 0; index < length; index++) { - var currentKey = _keys ? _keys[index] : index; - if (predicate(obj[currentKey], currentKey, obj)) return true; - } - return false; - } - - // Determine if the array or object contains a given item (using `===`). - function contains(obj, item, fromIndex, guard) { - if (!isArrayLike(obj)) obj = values(obj); - if (typeof fromIndex != 'number' || guard) fromIndex = 0; - return indexOf(obj, item, fromIndex) >= 0; - } - - // Invoke a method (with arguments) on every item in a collection. - var invoke = restArguments(function(obj, path, args) { - var contextPath, func; - if (isFunction$1(path)) { - func = path; - } else { - path = toPath(path); - contextPath = path.slice(0, -1); - path = path[path.length - 1]; - } - return map(obj, function(context) { - var method = func; - if (!method) { - if (contextPath && contextPath.length) { - context = deepGet(context, contextPath); - } - if (context == null) return void 0; - method = context[path]; - } - return method == null ? method : method.apply(context, args); - }); - }); - - // Convenience version of a common use case of `_.map`: fetching a property. - function pluck(obj, key) { - return map(obj, property(key)); - } - - // Convenience version of a common use case of `_.filter`: selecting only - // objects containing specific `key:value` pairs. - function where(obj, attrs) { - return filter(obj, matcher(attrs)); - } - - // Return the maximum element (or element-based computation). - function max(obj, iteratee, context) { - var result = -Infinity, lastComputed = -Infinity, - value, computed; - if (iteratee == null || typeof iteratee == 'number' && typeof obj[0] != 'object' && obj != null) { - obj = isArrayLike(obj) ? obj : values(obj); - for (var i = 0, length = obj.length; i < length; i++) { - value = obj[i]; - if (value != null && value > result) { - result = value; - } - } - } else { - iteratee = cb(iteratee, context); - each(obj, function(v, index, list) { - computed = iteratee(v, index, list); - if (computed > lastComputed || computed === -Infinity && result === -Infinity) { - result = v; - lastComputed = computed; - } - }); - } - return result; - } - - // Return the minimum element (or element-based computation). - function min(obj, iteratee, context) { - var result = Infinity, lastComputed = Infinity, - value, computed; - if (iteratee == null || typeof iteratee == 'number' && typeof obj[0] != 'object' && obj != null) { - obj = isArrayLike(obj) ? obj : values(obj); - for (var i = 0, length = obj.length; i < length; i++) { - value = obj[i]; - if (value != null && value < result) { - result = value; - } - } - } else { - iteratee = cb(iteratee, context); - each(obj, function(v, index, list) { - computed = iteratee(v, index, list); - if (computed < lastComputed || computed === Infinity && result === Infinity) { - result = v; - lastComputed = computed; - } - }); - } - return result; - } - - // Sample **n** random values from a collection using the modern version of the - // [Fisher-Yates shuffle](https://en.wikipedia.org/wiki/Fisher–Yates_shuffle). - // If **n** is not specified, returns a single random element. - // The internal `guard` argument allows it to work with `_.map`. - function sample(obj, n, guard) { - if (n == null || guard) { - if (!isArrayLike(obj)) obj = values(obj); - return obj[random(obj.length - 1)]; - } - var sample = isArrayLike(obj) ? clone(obj) : values(obj); - var length = getLength(sample); - n = Math.max(Math.min(n, length), 0); - var last = length - 1; - for (var index = 0; index < n; index++) { - var rand = random(index, last); - var temp = sample[index]; - sample[index] = sample[rand]; - sample[rand] = temp; - } - return sample.slice(0, n); - } - - // Shuffle a collection. - function shuffle(obj) { - return sample(obj, Infinity); - } - - // Sort the object's values by a criterion produced by an iteratee. - function sortBy(obj, iteratee, context) { - var index = 0; - iteratee = cb(iteratee, context); - return pluck(map(obj, function(value, key, list) { - return { - value: value, - index: index++, - criteria: iteratee(value, key, list) - }; - }).sort(function(left, right) { - var a = left.criteria; - var b = right.criteria; - if (a !== b) { - if (a > b || a === void 0) return 1; - if (a < b || b === void 0) return -1; - } - return left.index - right.index; - }), 'value'); - } - - // An internal function used for aggregate "group by" operations. - function group(behavior, partition) { - return function(obj, iteratee, context) { - var result = partition ? [[], []] : {}; - iteratee = cb(iteratee, context); - each(obj, function(value, index) { - var key = iteratee(value, index, obj); - behavior(result, value, key); - }); - return result; - }; - } - - // Groups the object's values by a criterion. Pass either a string attribute - // to group by, or a function that returns the criterion. - var groupBy = group(function(result, value, key) { - if (has$1(result, key)) result[key].push(value); else result[key] = [value]; - }); - - // Indexes the object's values by a criterion, similar to `_.groupBy`, but for - // when you know that your index values will be unique. - var indexBy = group(function(result, value, key) { - result[key] = value; - }); - - // Counts instances of an object that group by a certain criterion. Pass - // either a string attribute to count by, or a function that returns the - // criterion. - var countBy = group(function(result, value, key) { - if (has$1(result, key)) result[key]++; else result[key] = 1; - }); - - // Split a collection into two arrays: one whose elements all pass the given - // truth test, and one whose elements all do not pass the truth test. - var partition = group(function(result, value, pass) { - result[pass ? 0 : 1].push(value); - }, true); - - // Safely create a real, live array from anything iterable. - var reStrSymbol = /[^\ud800-\udfff]|[\ud800-\udbff][\udc00-\udfff]|[\ud800-\udfff]/g; - function toArray(obj) { - if (!obj) return []; - if (isArray(obj)) return slice.call(obj); - if (isString(obj)) { - // Keep surrogate pair characters together. - return obj.match(reStrSymbol); - } - if (isArrayLike(obj)) return map(obj, identity); - return values(obj); - } - - // Return the number of elements in a collection. - function size(obj) { - if (obj == null) return 0; - return isArrayLike(obj) ? obj.length : keys(obj).length; - } - - // Internal `_.pick` helper function to determine whether `key` is an enumerable - // property name of `obj`. - function keyInObj(value, key, obj) { - return key in obj; - } - - // Return a copy of the object only containing the allowed properties. - var pick = restArguments(function(obj, keys) { - var result = {}, iteratee = keys[0]; - if (obj == null) return result; - if (isFunction$1(iteratee)) { - if (keys.length > 1) iteratee = optimizeCb(iteratee, keys[1]); - keys = allKeys(obj); - } else { - iteratee = keyInObj; - keys = flatten$1(keys, false, false); - obj = Object(obj); - } - for (var i = 0, length = keys.length; i < length; i++) { - var key = keys[i]; - var value = obj[key]; - if (iteratee(value, key, obj)) result[key] = value; - } - return result; - }); - - // Return a copy of the object without the disallowed properties. - var omit = restArguments(function(obj, keys) { - var iteratee = keys[0], context; - if (isFunction$1(iteratee)) { - iteratee = negate(iteratee); - if (keys.length > 1) context = keys[1]; - } else { - keys = map(flatten$1(keys, false, false), String); - iteratee = function(value, key) { - return !contains(keys, key); - }; - } - return pick(obj, iteratee, context); - }); - - // Returns everything but the last entry of the array. Especially useful on - // the arguments object. Passing **n** will return all the values in - // the array, excluding the last N. - function initial(array, n, guard) { - return slice.call(array, 0, Math.max(0, array.length - (n == null || guard ? 1 : n))); - } - - // Get the first element of an array. Passing **n** will return the first N - // values in the array. The **guard** check allows it to work with `_.map`. - function first(array, n, guard) { - if (array == null || array.length < 1) return n == null || guard ? void 0 : []; - if (n == null || guard) return array[0]; - return initial(array, array.length - n); - } - - // Returns everything but the first entry of the `array`. Especially useful on - // the `arguments` object. Passing an **n** will return the rest N values in the - // `array`. - function rest(array, n, guard) { - return slice.call(array, n == null || guard ? 1 : n); - } - - // Get the last element of an array. Passing **n** will return the last N - // values in the array. - function last(array, n, guard) { - if (array == null || array.length < 1) return n == null || guard ? void 0 : []; - if (n == null || guard) return array[array.length - 1]; - return rest(array, Math.max(0, array.length - n)); - } - - // Trim out all falsy values from an array. - function compact(array) { - return filter(array, Boolean); - } - - // Flatten out an array, either recursively (by default), or up to `depth`. - // Passing `true` or `false` as `depth` means `1` or `Infinity`, respectively. - function flatten(array, depth) { - return flatten$1(array, depth, false); - } - - // Take the difference between one array and a number of other arrays. - // Only the elements present in just the first array will remain. - var difference = restArguments(function(array, rest) { - rest = flatten$1(rest, true, true); - return filter(array, function(value){ - return !contains(rest, value); - }); - }); - - // Return a version of the array that does not contain the specified value(s). - var without = restArguments(function(array, otherArrays) { - return difference(array, otherArrays); - }); - - // Produce a duplicate-free version of the array. If the array has already - // been sorted, you have the option of using a faster algorithm. - // The faster algorithm will not work with an iteratee if the iteratee - // is not a one-to-one function, so providing an iteratee will disable - // the faster algorithm. - function uniq(array, isSorted, iteratee, context) { - if (!isBoolean(isSorted)) { - context = iteratee; - iteratee = isSorted; - isSorted = false; - } - if (iteratee != null) iteratee = cb(iteratee, context); - var result = []; - var seen = []; - for (var i = 0, length = getLength(array); i < length; i++) { - var value = array[i], - computed = iteratee ? iteratee(value, i, array) : value; - if (isSorted && !iteratee) { - if (!i || seen !== computed) result.push(value); - seen = computed; - } else if (iteratee) { - if (!contains(seen, computed)) { - seen.push(computed); - result.push(value); - } - } else if (!contains(result, value)) { - result.push(value); - } - } - return result; - } - - // Produce an array that contains the union: each distinct element from all of - // the passed-in arrays. - var union = restArguments(function(arrays) { - return uniq(flatten$1(arrays, true, true)); - }); - - // Produce an array that contains every item shared between all the - // passed-in arrays. - function intersection(array) { - var result = []; - var argsLength = arguments.length; - for (var i = 0, length = getLength(array); i < length; i++) { - var item = array[i]; - if (contains(result, item)) continue; - var j; - for (j = 1; j < argsLength; j++) { - if (!contains(arguments[j], item)) break; - } - if (j === argsLength) result.push(item); - } - return result; - } - - // Complement of zip. Unzip accepts an array of arrays and groups - // each array's elements on shared indices. - function unzip(array) { - var length = array && max(array, getLength).length || 0; - var result = Array(length); - - for (var index = 0; index < length; index++) { - result[index] = pluck(array, index); - } - return result; - } - - // Zip together multiple lists into a single array -- elements that share - // an index go together. - var zip = restArguments(unzip); - - // Converts lists into objects. Pass either a single array of `[key, value]` - // pairs, or two parallel arrays of the same length -- one of keys, and one of - // the corresponding values. Passing by pairs is the reverse of `_.pairs`. - function object(list, values) { - var result = {}; - for (var i = 0, length = getLength(list); i < length; i++) { - if (values) { - result[list[i]] = values[i]; - } else { - result[list[i][0]] = list[i][1]; - } - } - return result; - } - - // Generate an integer Array containing an arithmetic progression. A port of - // the native Python `range()` function. See - // [the Python documentation](https://docs.python.org/library/functions.html#range). - function range(start, stop, step) { - if (stop == null) { - stop = start || 0; - start = 0; - } - if (!step) { - step = stop < start ? -1 : 1; - } - - var length = Math.max(Math.ceil((stop - start) / step), 0); - var range = Array(length); - - for (var idx = 0; idx < length; idx++, start += step) { - range[idx] = start; - } - - return range; - } - - // Chunk a single array into multiple arrays, each containing `count` or fewer - // items. - function chunk(array, count) { - if (count == null || count < 1) return []; - var result = []; - var i = 0, length = array.length; - while (i < length) { - result.push(slice.call(array, i, i += count)); - } - return result; - } - - // Helper function to continue chaining intermediate results. - function chainResult(instance, obj) { - return instance._chain ? _$1(obj).chain() : obj; - } - - // Add your own custom functions to the Underscore object. - function mixin(obj) { - each(functions(obj), function(name) { - var func = _$1[name] = obj[name]; - _$1.prototype[name] = function() { - var args = [this._wrapped]; - push.apply(args, arguments); - return chainResult(this, func.apply(_$1, args)); - }; - }); - return _$1; - } - - // Add all mutator `Array` functions to the wrapper. - each(['pop', 'push', 'reverse', 'shift', 'sort', 'splice', 'unshift'], function(name) { - var method = ArrayProto[name]; - _$1.prototype[name] = function() { - var obj = this._wrapped; - if (obj != null) { - method.apply(obj, arguments); - if ((name === 'shift' || name === 'splice') && obj.length === 0) { - delete obj[0]; - } - } - return chainResult(this, obj); - }; - }); - - // Add all accessor `Array` functions to the wrapper. - each(['concat', 'join', 'slice'], function(name) { - var method = ArrayProto[name]; - _$1.prototype[name] = function() { - var obj = this._wrapped; - if (obj != null) obj = method.apply(obj, arguments); - return chainResult(this, obj); - }; - }); - - // Named Exports - - var allExports = { - __proto__: null, - VERSION: VERSION, - restArguments: restArguments, - isObject: isObject, - isNull: isNull, - isUndefined: isUndefined, - isBoolean: isBoolean, - isElement: isElement, - isString: isString, - isNumber: isNumber, - isDate: isDate, - isRegExp: isRegExp, - isError: isError, - isSymbol: isSymbol, - isArrayBuffer: isArrayBuffer, - isDataView: isDataView$1, - isArray: isArray, - isFunction: isFunction$1, - isArguments: isArguments$1, - isFinite: isFinite$1, - isNaN: isNaN$1, - isTypedArray: isTypedArray$1, - isEmpty: isEmpty, - isMatch: isMatch, - isEqual: isEqual, - isMap: isMap, - isWeakMap: isWeakMap, - isSet: isSet, - isWeakSet: isWeakSet, - keys: keys, - allKeys: allKeys, - values: values, - pairs: pairs, - invert: invert, - functions: functions, - methods: functions, - extend: extend, - extendOwn: extendOwn, - assign: extendOwn, - defaults: defaults, - create: create, - clone: clone, - tap: tap, - get: get, - has: has, - mapObject: mapObject, - identity: identity, - constant: constant, - noop: noop, - toPath: toPath$1, - property: property, - propertyOf: propertyOf, - matcher: matcher, - matches: matcher, - times: times, - random: random, - now: now, - escape: _escape, - unescape: _unescape, - templateSettings: templateSettings, - template: template, - result: result, - uniqueId: uniqueId, - chain: chain, - iteratee: iteratee, - partial: partial, - bind: bind, - bindAll: bindAll, - memoize: memoize, - delay: delay, - defer: defer, - throttle: throttle, - debounce: debounce, - wrap: wrap, - negate: negate, - compose: compose, - after: after, - before: before, - once: once, - findKey: findKey, - findIndex: findIndex, - findLastIndex: findLastIndex, - sortedIndex: sortedIndex, - indexOf: indexOf, - lastIndexOf: lastIndexOf, - find: find, - detect: find, - findWhere: findWhere, - each: each, - forEach: each, - map: map, - collect: map, - reduce: reduce, - foldl: reduce, - inject: reduce, - reduceRight: reduceRight, - foldr: reduceRight, - filter: filter, - select: filter, - reject: reject, - every: every, - all: every, - some: some, - any: some, - contains: contains, - includes: contains, - include: contains, - invoke: invoke, - pluck: pluck, - where: where, - max: max, - min: min, - shuffle: shuffle, - sample: sample, - sortBy: sortBy, - groupBy: groupBy, - indexBy: indexBy, - countBy: countBy, - partition: partition, - toArray: toArray, - size: size, - pick: pick, - omit: omit, - first: first, - head: first, - take: first, - initial: initial, - last: last, - rest: rest, - tail: rest, - drop: rest, - compact: compact, - flatten: flatten, - without: without, - uniq: uniq, - unique: uniq, - union: union, - intersection: intersection, - difference: difference, - unzip: unzip, - transpose: unzip, - zip: zip, - object: object, - range: range, - chunk: chunk, - mixin: mixin, - 'default': _$1 - }; - - // Default Export - - // Add all of the Underscore functions to the wrapper object. - var _ = mixin(allExports); - // Legacy Node.js API. - _._ = _; - - return _; - -}))); -//# sourceMappingURL=underscore-umd.js.map diff --git a/public/genindex.html b/public/genindex.html index fa7d93c0627bfbd37d3f44b34fc6506d1d685883..be2042b303e8c7fe1435974da59f574bcd02cb1c 100644 --- a/public/genindex.html +++ b/public/genindex.html @@ -38,7 +38,7 @@ <li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> diff --git a/public/index.html b/public/index.html index 3abce634ca68ab17ce586496d273a287c0e92bd0..b3a51168f849a36a8fb3401a1e8af0ec0854e187 100644 --- a/public/index.html +++ b/public/index.html @@ -39,7 +39,7 @@ <li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> @@ -163,12 +163,13 @@ <li class="toctree-l2"><a class="reference internal" href="V1_02.html#complete-list-of-components">Complete list of components</a></li> </ul> </li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a><ul> <li class="toctree-l2"><a class="reference internal" href="V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="V2_00.html#technical-data">Technical data</a></li> <li class="toctree-l2"><a class="reference internal" href="V2_00.html#ohmpi-2-step-by-step">Ohmpi 2 step by step</a><ul> <li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html"><strong>STEP n°1</strong> : Raspberry Pi configuration</a></li> <li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_02.html"><strong>STEP n°2</strong>: Measurement board</a></li> +<li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a></li> </ul> </li> </ul> 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62bbee27edbcba1b67141c174edcdd4ee6808f6f..689efaf19a81c3cc2fd0f1924e0652254b61119a 100644 --- a/public/search.html +++ b/public/search.html @@ -41,7 +41,7 @@ <li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> diff --git a/public/searchindex.js b/public/searchindex.js index 53a8a4708f405795133ead8dc1c3aaee4bc67cb5..57c3b7441e3f5e281c71ee4be8dde6276e594d37 100644 --- a/public/searchindex.js +++ b/public/searchindex.js @@ -1 +1 @@ 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href="V2_00.html#step-n3-start-up-of-the-measurement-board"><strong>STEP n°3</strong>: Start-up of the measurement board.</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n4-measurement-board-validation"><strong>STEP n°4</strong>: Measurement board validation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n5-assembly-of-the-mux-board"><strong>STEP n°5</strong>: Assembly of the MUX board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n6-check-mux-board"><strong>STEP n°6</strong>: Check Mux Board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n7-assemble-ohmpi"><strong>STEP n°7</strong>: Assemble Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n8-boxing-ohmpi"><strong>STEP n°8</strong>: Boxing Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n9-field-measurement"><strong>STEP n°9</strong>: Field measurement</a></li> -</ul> -</li> -<li class="toctree-l1 current"><a class="current reference internal" href="#">OHMPI: Open source and open hardware resitivity-meter</a><ul> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> -</ul> -</li> -</ul> - - - - - </div> - - </nav> - <section data-toggle="wy-nav-shift" class="wy-nav-content-wrap"> - - <nav class="wy-nav-top" id="barra-mobile" role="navigation" aria-label="top navigation"> - <i data-toggle="wy-nav-top" class="fa fa-bars"></i> - <a href="#">Porão do Juca</a> - </nav> - - <div class="wy-nav-content"> - <div class="fundo-claro"> - </div> - <div class="fundo-escuro"> - </div> - - <div class="rst-content"> - <div role="navigation" aria-label="breadcrumbs navigation"> - - <!-- <ul class="wy-breadcrumbs"> --> - <!-- <li><a href="#">Docs</a> »</li> --> - - <!-- <li>Features</li> --> - <!-- <li class="wy-breadcrumbs-aside"> --> - - <!-- <a href="_sources/index.txt" rel="nofollow"> View page source</a> --> - - <!-- </li> --> - <!-- </ul> --> - <!-- <hr/> --> - </div> - - <div role="main" class=""> - - <div id="content" class="hfeed entry-container hentry"> - <div class="section" id="ohmpi-open-source-and-open-hardware-resitivity-meter"> -<h1>OHMPI: Open source and open hardware resitivity-meter<a class="headerlink" href="#ohmpi-open-source-and-open-hardware-resitivity-meter" title="Permalink to this headline">¶</a></h1> -<div class="sidebar"> -<p class="sidebar-title">Summary</p> -<dl class="field-list simple"> -<dt class="field-odd">Release</dt> -<dd class="field-odd"><p>open hardware resistivity-meter</p> -</dd> -<dt class="field-even">Date</dt> -<dd class="field-even"><p>Dec 05, 2021</p> -</dd> -<dt class="field-odd">Date start</dt> -<dd class="field-odd"><p>July 2016</p> -</dd> -<dt class="field-even">Authors</dt> -<dd class="field-even"><p><strong>Rémi CLEMENT, Nicolas FORQUET, Julien GANCE, Yannick FARGIER, Vivien DUBOIS, Hélène GUYARD, Olivier KAUFMANN</strong></p> -</dd> -<dt class="field-odd">Target</dt> -<dd class="field-odd"><p>users, researchers and developers</p> -</dd> -<dt class="field-even">status</dt> -<dd class="field-even"><p>some mature, some in progress</p> -</dd> -</dl> -</div> -<div class="topic"> -<p class="topic-title">OhmPi Document Center</p> -<ul class="simple"> -<li><p>OhmPi offcial documents</p></li> -<li><p>Release guidelines</p></li> -<li><p>General tutorials</p></li> -</ul> -</div> -<a class="reference internal image-reference" href="_images/logo_ohmpi.JPG"><img alt="_images/logo_ohmpi.JPG" class="align-center" src="_images/logo_ohmpi.JPG" style="width: 200px; height: 150px;" /></a> -<p>Contents:</p> -<div class="toctree-wrapper compound"> -<ul> -<li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a><ul> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi.html#partenaires"><strong>Partenaires</strong></a></li> -</ul> -</li> -<li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a><ul> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#raspberry-pi-configuration">Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#assembly-of-the-measuring-current-injection-cards-and-connection-with-the-raspberry-pi">Assembly of the measuring/current injection cards, and connection with the Raspberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#multiplexer-implentation">Multiplexer implentation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#electrode-connection">Electrode connection</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#operating-instruction">Operating instruction</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#complete-list-of-components">Complete list of components</a></li> -</ul> -</li> -<li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a><ul> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#raspberry-pi-configuration">Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#assembly-of-the-measuring-current-injection-cards-and-connection-with-the-raspberry-pi">Assembly of the measuring/current injection cards, and connection with the Raspberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#multiplexer-implentation">Multiplexer implentation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#electrode-connection">Electrode connection</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#operating-instruction">Operating instruction</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#complete-list-of-components">Complete list of components</a></li> -</ul> -</li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n1-raspberry-pi-configuration"><strong>STEP n°1</strong> : Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n2-assembly-of-the-measurement-board"><strong>STEP n°2</strong>: Assembly of the measurement board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n3-start-up-of-the-measurement-board"><strong>STEP n°3</strong>: Start-up of the measurement board.</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n4-measurement-board-validation"><strong>STEP n°4</strong>: Measurement board validation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n5-assembly-of-the-mux-board"><strong>STEP n°5</strong>: Assembly of the MUX board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n6-check-mux-board"><strong>STEP n°6</strong>: Check Mux Board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n7-assemble-ohmpi"><strong>STEP n°7</strong>: Assemble Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n8-boxing-ohmpi"><strong>STEP n°8</strong>: Boxing Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n9-field-measurement"><strong>STEP n°9</strong>: Field measurement</a></li> -</ul> -</li> -</ul> -</div> -</div> - - - </div> - <footer> - - <div class="rst-footer-buttons" role="navigation" aria-label="footer navigation"> - - - <a href="V2_00.html" class="btn btn-neutral" title="OhmPi V 2.xx (64 or 128 electrodes)"><span class="fa fa-arrow-circle-left"></span> Previous</a> - - </div> - - - <hr/> - - <div role="contentinfo"> - <p> - © Copyright 2020, INRAE, Rémi CLEMENT. - </p> - </div> - - Built with <a href="http://sphinx-doc.org/">Sphinx</a> using a <a href="https://github.com/jucacrispim/sphinx_pdj_theme">theme</a> provided by <a href="http://poraodojuca.net">Porão do Juca</a>. - -</footer> - </div> - </div> - - - <script type="text/javascript"> - var DOCUMENTATION_OPTIONS = { - URL_ROOT:'./', - VERSION:'open hardware resistivity-meter', - COLLAPSE_INDEX:false, - FILE_SUFFIX:'.html', - HAS_SOURCE: true - }; - </script> - <script type="text/javascript" src="_static/jquery.js"> - - </script> - <script type="text/javascript" src="_static/underscore.js"> - - </script> - <script type="text/javascript" src="_static/doctools.js"> - - </script> - <script type="text/javascript" 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ec74431e75df631dff1942873ffd22e9eac9259c..c536a30b560a49b0a4611c797c683d3a13c18cf7 100644 Binary files a/sphinx/build/doctrees/environment.pickle and b/sphinx/build/doctrees/environment.pickle differ diff --git a/sphinx/build/html/Ohmpi.html b/sphinx/build/html/Ohmpi.html index 4fde6656d2ef3f2f7a2d6ced18913f8546256d48..2fca021c02e78844afa25bcc637fba48e1d1ae8f 100644 --- a/sphinx/build/html/Ohmpi.html +++ b/sphinx/build/html/Ohmpi.html @@ -47,7 +47,7 @@ </li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> diff --git a/sphinx/build/html/Ohmpi_V2_00/V2_00_step_01.html b/sphinx/build/html/Ohmpi_V2_00/V2_00_step_01.html index 31ff3e2e8d40b0fd31fb1b9f79c43a6d76575347..5ac23f2ae4def4663826454fb9ad9eb197667ce5 100644 --- a/sphinx/build/html/Ohmpi_V2_00/V2_00_step_01.html +++ b/sphinx/build/html/Ohmpi_V2_00/V2_00_step_01.html @@ -18,7 +18,7 @@ <link rel="index" title="Index" href="../genindex.html" /> <link rel="search" title="Search" href="../search.html" /> <link rel="next" title="STEP n°2: Measurement board" href="V2_00_step_02.html" /> - <link rel="prev" title="OhmPi V 2.xx (64 or 128 electrodes)" href="../V2_00.html" /> + <link rel="prev" title="OhmPi V 2.xx (64 or 128 electrodes and 12V)" href="../V2_00.html" /> </head> <body class="wy-body-for-nav"> @@ -40,17 +40,18 @@ <li class="toctree-l1"><a class="reference internal" href="../Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="../V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="../V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1 current"><a class="reference internal" href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul class="current"> +<li class="toctree-l1 current"><a class="reference internal" href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a><ul class="current"> <li class="toctree-l2"><a class="reference internal" href="../V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="../V2_00.html#technical-data">Technical data</a></li> <li class="toctree-l2 current"><a class="reference internal" href="../V2_00.html#ohmpi-2-step-by-step">Ohmpi 2 step by step</a><ul class="current"> <li class="toctree-l3 current"><a class="current reference internal" href="#"><strong>STEP n°1</strong> : Raspberry Pi configuration</a><ul> -<li class="toctree-l4"><a class="reference internal" href="#os-installation">OS installation</a></li> -<li class="toctree-l4"><a class="reference internal" href="#virtual-environnement-and-packages">Virtual Environnement and packages</a></li> -<li class="toctree-l4"><a class="reference internal" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi">Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)</a></li> +<li class="toctree-l4"><a class="reference internal" href="#part-a-os-installation"><strong>PART A</strong> OS installation</a></li> +<li class="toctree-l4"><a class="reference internal" href="#part-b-virtual-environnement-and-packages"><strong>PART B</strong> Virtual Environnement and packages</a></li> +<li class="toctree-l4"><a class="reference internal" href="#part-c-activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"><strong>PART C</strong> Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)</a></li> </ul> </li> <li class="toctree-l3"><a class="reference internal" href="V2_00_step_02.html"><strong>STEP n°2</strong>: Measurement board</a></li> +<li class="toctree-l3"><a class="reference internal" href="V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a></li> </ul> </li> </ul> @@ -71,7 +72,7 @@ <div role="navigation" aria-label="Page navigation"> <ul class="wy-breadcrumbs"> <li><a href="../index.html" class="icon icon-home"></a> »</li> - <li><a href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a> »</li> + <li><a href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a> »</li> <li><strong>STEP n°1</strong> : Raspberry Pi configuration</li> <li class="wy-breadcrumbs-aside"> <a href="../_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt" rel="nofollow"> View page source</a> @@ -84,8 +85,8 @@ <div class="section" id="step-n1-raspberry-pi-configuration"> <h1><strong>STEP n°1</strong> : Raspberry Pi configuration<a class="headerlink" href="#step-n1-raspberry-pi-configuration" title="Permalink to this headline">¶</a></h1> -<div class="section" id="os-installation"> -<h2>OS installation<a class="headerlink" href="#os-installation" title="Permalink to this headline">¶</a></h2> +<div class="section" id="part-a-os-installation"> +<h2><strong>PART A</strong> OS installation<a class="headerlink" href="#part-a-os-installation" title="Permalink to this headline">¶</a></h2> <table class="docutils align-default"> <colgroup> <col style="width: 78%" /> @@ -123,7 +124,7 @@ For this step, the installation instructions are well described on the Raspberry <p class="admonition-title">Note</p> <p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/raspbian_version1.jpg"><img alt="alternate text" src="../_images/raspbian_version1.jpg" style="width: 800px; height: 400px;" /></a> +<a class="reference internal image-reference" href="../_images/raspbian_version.jpg"><img alt="alternate text" src="../_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> </div> </div> <div class="admonition warning"> @@ -161,8 +162,8 @@ To ensure that the GPIOs are in Low position, you will need to modify the /boot/ <li><p>Close the terminal</p></li> </ol> </div> -<div class="section" id="virtual-environnement-and-packages"> -<h2>Virtual Environnement and packages<a class="headerlink" href="#virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> +<div class="section" id="part-b-virtual-environnement-and-packages"> +<h2><strong>PART B</strong> Virtual Environnement and packages<a class="headerlink" href="#part-b-virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> <p>A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages.</p> <p>All dependencies are specified in requirements.txt</p> @@ -197,27 +198,27 @@ to leave the virtual environment simply type:</p> </pre></div> </div> </div> -<div class="section" id="activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> -<h2>Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)<a class="headerlink" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> +<div class="section" id="part-c-activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> +<h2><strong>PART C</strong> Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)<a class="headerlink" href="#part-c-activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> <p>If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it.</p> <p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> <p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/thonny_first_interface1.jpg"><img alt="alternate text" src="../_images/thonny_first_interface1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/thonny_first_interface.jpg"><img alt="alternate text" src="../_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/thonny_option1.jpg"><img alt="alternate text" src="../_images/thonny_option1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/thonny_option.jpg"><img alt="alternate text" src="../_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/thonny_interpreter1.jpg"><img alt="alternate text" src="../_images/thonny_interpreter1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/thonny_interpreter.jpg"><img alt="alternate text" src="../_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> <p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> <p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/thonny_interpreter_folder1.jpg"><img alt="alternate text" src="../_images/thonny_interpreter_folder1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="../_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>8- Close the window by clicking on <strong>ok</strong>.</p> <p>9- Close thonny to save modifications</p> @@ -228,7 +229,7 @@ to leave the virtual environment simply type:</p> </div> </div> <footer><div class="rst-footer-buttons" role="navigation" aria-label="Footer"> - 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- - - - </div> - - </nav> - <section data-toggle="wy-nav-shift" class="wy-nav-content-wrap"> - - <nav class="wy-nav-top" id="barra-mobile" role="navigation" aria-label="top navigation"> - <i data-toggle="wy-nav-top" class="fa fa-bars"></i> - <a href="#">Porão do Juca</a> - </nav> - - <div class="wy-nav-content"> - <div class="fundo-claro"> - </div> - <div class="fundo-escuro"> - </div> - - <div class="rst-content"> - <div role="navigation" aria-label="breadcrumbs navigation"> - - <!-- <ul class="wy-breadcrumbs"> --> - <!-- <li><a href="#">Docs</a> »</li> --> - - <!-- <li>Features</li> --> - <!-- <li class="wy-breadcrumbs-aside"> --> - - <!-- <a href="_sources/index.txt" rel="nofollow"> View page source</a> --> - - <!-- </li> --> - <!-- </ul> --> - <!-- <hr/> --> - </div> - - <div role="main" class=""> - - <div id="content" class="hfeed entry-container hentry"> - <div class="section" id="step-n2-assembly-of-the-measurement-board"> -<h1><strong>STEP n°2</strong>: Assembly of the measurement board<a class="headerlink" href="#step-n2-assembly-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<div class="align-center figure"> -<a class="reference internal image-reference" href="Ohmpi_V2_00\step_n_2/00_mes_board_components.jpg"><img alt="alternate text" src="Ohmpi_V2_00\step_n_2/00_mes_board_components.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<div class="section" id="description"> -<h2>Description<a class="headerlink" href="#description" title="Permalink to this headline">¶</a></h2> -<div class="align-center figure"> -<a class="reference internal image-reference" href="Ohmpi_V2_00\schema_measurement_board.jpg"><img alt="alternate text" src="Ohmpi_V2_00\schema_measurement_board.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete “plug and play†measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps:</p> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/01_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/01_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installation of female header, 1 by10 pins, for ADS1115</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/02_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/02_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 4 dual-in-line- socket (2 by 2 pins) for -optical relay, AQY211EH.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/03_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/03_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 9 pins) -for INA282.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/04_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/04_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/05_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/05_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 2 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/06_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/06_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco Power Supply 12V to 5V, TDH15 - 1211N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/07_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/07_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals for 12V inpout et 5V outpout</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>8</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/08_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/08_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco power Supply 12V to 24V, TRN-1215</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>9</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/09_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/09_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Two screw terminals electrodes M and N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>10</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/10_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/10_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals, for 12V power supply and for -electrodes A and B</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>11</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/11_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/11_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering three capacitors (100nF)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>12</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/12_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/12_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>2 ohms shunt resistor pre-adjustment</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>13</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/13_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/13_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering 2 ohms shunt resistor</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>14</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/14_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/14_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>1 Mohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>15</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/15_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/15_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1 Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>16</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/16_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/16_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>17</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/17_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/17_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>18</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/18_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/18_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Female header 2 by 20 pins for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>19</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/19_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/19_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>View of the female header 2 by 20 pins installation -for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>20</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/20_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/20_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing MCP23008 component</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>21</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/21_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/21_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting optical relay, AQY211EH</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>22</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/22_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/22_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting LM158 operational amplificator</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>23</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/23_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/23_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting ADS115 board</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>24</p></td> -<td><img alt="Ohmpi_V2_00\step_n_2/24_mes_board.jpg" src="Ohmpi_V2_00\step_n_2/24_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing the INA282</p></td> -</tr> -</tbody> -</table> -</div> -</div> -<div class="section" id="step-n3-start-up-of-the-measurement-board"> -<h1><strong>STEP n°3</strong>: Start-up of the measurement board.<a class="headerlink" href="#step-n3-start-up-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="../_images/001.jpg" src="../_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Shutdown the raspberry Pi and unplug the power supply</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="../_images/001.jpg" src="../_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="../_images/002.jpg" src="../_images/002.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="../_images/003.jpg" src="../_images/003.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="../_images/004.jpg" src="../_images/004.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="../_images/005.jpg" src="../_images/005.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Plug the power supply into a socket and connect it to your -Raspberry Pi’s power port.</p></td> -</tr> -</tbody> -</table> -</div> -<div class="section" id="step-n4-measurement-board-validation"> -<h1><strong>STEP n°4</strong>: Measurement board validation<a class="headerlink" href="#step-n4-measurement-board-validation" title="Permalink to this headline">¶</a></h1> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">i2cdetect</span> <span class="o">-</span><span class="n">y</span> <span class="mi">1</span> -</pre></div> -</div> -</div></blockquote> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="../_images/i2cdetect.png" src="../_images/i2cdetect.png" /> -</td> -</tr> -<tr class="row-even"><td><p>If everything is working, three I2C addresses should appear -on the screen.</p></td> -</tr> -</tbody> -</table> -<dl> -<dt>Setting up an equivalent electronic circuit, for this you will need:</dt><dd><ul class="simple"> -<li><p>4 1kohm resistor (R2)</p></li> -<li><p>1 220 ohm resistor (R1)</p></li> -<li><p>1 small padboard</p></li> -<li><p>Spool of solder</p></li> -</ul> -<table class="docutils align-left"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="../_images/ref_circuit.png" src="../_images/ref_circuit.png" /> -</td> -</tr> -<tr class="row-even"><td><p>Schematic of equivalent electronic circuit test</p></td> -</tr> -</tbody> -</table> -</dd> -</dl> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="../_images/20210905_122820.jpg" src="../_images/20210905_122820.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer le circuit équivalent</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="../_images/20210905_123034.jpg" src="../_images/20210905_123034.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer les cables de connexion aux batterie et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="../_images/20210905_132856.jpg" src="../_images/20210905_132856.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Souder les câbles et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="../_images/20210905_210045.jpg" src="../_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer les cables rouges sur la borne +12V et cable noir -sur la borne ground.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="../_images/20210905_210045.jpg" src="../_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer le circuit de référence</p></td> -</tr> -</tbody> -</table> -<p>Run the Thonny IDE and load the code Ohmpy4elec.pi</p> -</div> -<div class="section" id="step-n5-assembly-of-the-mux-board"> -<h1><strong>STEP n°5</strong>: Assembly of the MUX board<a class="headerlink" href="#step-n5-assembly-of-the-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n6-check-mux-board"> -<h1><strong>STEP n°6</strong>: Check Mux Board<a class="headerlink" href="#step-n6-check-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n7-assemble-ohmpi"> -<h1><strong>STEP n°7</strong>: Assemble Ohmpi<a class="headerlink" href="#step-n7-assemble-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n8-boxing-ohmpi"> -<h1><strong>STEP n°8</strong>: Boxing Ohmpi<a class="headerlink" href="#step-n8-boxing-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n9-field-measurement"> -<h1><strong>STEP n°9</strong>: Field measurement<a class="headerlink" href="#step-n9-field-measurement" title="Permalink to this headline">¶</a></h1> -</div> - - - </div> - <footer> - - - <hr/> - - <div role="contentinfo"> - <p> - © Copyright 2020, INRAE, Rémi CLEMENT. - </p> - </div> - - Built with <a href="http://sphinx-doc.org/">Sphinx</a> using a <a href="https://github.com/jucacrispim/sphinx_pdj_theme">theme</a> provided by <a href="http://poraodojuca.net">Porão do Juca</a>. - -</footer> - </div> - </div> - - - <script type="text/javascript"> - var DOCUMENTATION_OPTIONS = { - URL_ROOT:'../', - VERSION:'open hardware resistivity-meter', - COLLAPSE_INDEX:false, - FILE_SUFFIX:'.html', - HAS_SOURCE: true - }; - </script> - <script type="text/javascript" src="../_static/jquery.js"> - - </script> - <script type="text/javascript" src="../_static/underscore.js"> - - </script> - <script type="text/javascript" src="../_static/doctools.js"> - - </script> - <script type="text/javascript" src="../_static/language_data.js"> - - </script> - <script type="text/javascript" src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.7/latest.js?config=TeX-AMS-MML_HTMLorMML"> - - </script> - - - - <script type="text/javascript" - src="../_static/js/theme.js"></script> - - <script type="text/javascript" - src="../_static/js/pdj.js"></script> - - - - <script type="text/javascript"> - jQuery(function () { - SphinxRtdTheme.StickyNav.enable(); - }); - </script> - - - </body> -</html> \ No newline at end of file diff --git a/sphinx/build/html/Ohmpi_V2_00/V2_00_step_02.html b/sphinx/build/html/Ohmpi_V2_00/V2_00_step_02.html index 7954fd69195fe57ca99848ebc1149aba669e9dc2..3b2db4300821cb523f44bb2408fbb3fa1756e399 100644 --- a/sphinx/build/html/Ohmpi_V2_00/V2_00_step_02.html +++ b/sphinx/build/html/Ohmpi_V2_00/V2_00_step_02.html @@ -17,6 +17,7 @@ <script src="../_static/js/theme.js"></script> <link rel="index" title="Index" href="../genindex.html" /> <link rel="search" title="Search" href="../search.html" /> + <link rel="next" title="STEP n°3: MUX board" href="V2_00_step_03.html" /> <link rel="prev" title="STEP n°1 : Raspberry Pi configuration" href="V2_00_step_01.html" /> </head> @@ -39,7 +40,7 @@ <li class="toctree-l1"><a class="reference internal" href="../Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="../V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="../V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1 current"><a class="reference internal" href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul class="current"> +<li class="toctree-l1 current"><a class="reference internal" href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a><ul class="current"> <li class="toctree-l2"><a class="reference internal" href="../V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="../V2_00.html#technical-data">Technical data</a></li> <li class="toctree-l2 current"><a class="reference internal" href="../V2_00.html#ohmpi-2-step-by-step">Ohmpi 2 step by step</a><ul class="current"> @@ -50,6 +51,7 @@ <li class="toctree-l4"><a class="reference internal" href="#part-c-check-the-measurement-board"><strong>PART C</strong> Check the measurement board</a></li> </ul> </li> +<li class="toctree-l3"><a class="reference internal" href="V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a></li> </ul> </li> </ul> @@ -70,7 +72,7 @@ <div role="navigation" aria-label="Page navigation"> <ul class="wy-breadcrumbs"> <li><a href="../index.html" class="icon icon-home"></a> »</li> - <li><a href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a> »</li> + <li><a href="../V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a> »</li> <li><strong>STEP n°2</strong>: Measurement board</li> <li class="wy-breadcrumbs-aside"> <a href="../_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt" rel="nofollow"> View page source</a> @@ -316,7 +318,7 @@ <div class="section" id="description"> <h3>Description<a class="headerlink" href="#description" title="Permalink to this headline">¶</a></h3> <div class="align-center figure"> -<a class="reference internal image-reference" href="../_images/schema_measurement_board1.jpg"><img alt="alternate text" src="../_images/schema_measurement_board1.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="../_images/schema_measurement_board.jpg"><img alt="alternate text" src="../_images/schema_measurement_board.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>Figure shows the general schematics for the electronic measurement board developed. We have developed a complete “plug and play†measurement board. To measure electrical resistivity with Raspberry Pi. @@ -859,7 +861,7 @@ on the screen.</p></td> <td><img alt="../_images/20210905_122820.jpg" src="../_images/20210905_122820.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Préparer le circuit équivalent</p></td> +<tr class="row-even"><td><p>Prepare the equivalent electronic circuit test</p></td> </tr> </tbody> </table> @@ -873,7 +875,7 @@ on the screen.</p></td> <td><img alt="../_images/20210905_123034.jpg" src="../_images/20210905_123034.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Préparer les cables de connexion aux batterie et les cosses</p></td> +<tr class="row-even"><td><p>Prepare the battery connections and the terminals.</p></td> </tr> </tbody> </table> @@ -887,7 +889,7 @@ on the screen.</p></td> <td><img alt="../_images/20210905_132856.jpg" src="../_images/20210905_132856.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Souder les câbles et les cosses</p></td> +<tr class="row-even"><td><p>Soldering cables and terminals</p></td> </tr> </tbody> </table> @@ -898,11 +900,11 @@ on the screen.</p></td> </colgroup> <tbody> <tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="../_images/20210905_210045.jpg" src="../_images/20210905_210045.jpg" /> +<td><img alt="../_images/Inked20211206_150522_LI.jpg" src="../_images/Inked20211206_150522_LI.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Installer les cables rouges sur la borne +12V et cable noir -sur la borne ground.</p></td> +<tr class="row-even"><td><p>Install the red cables on the +12V terminal and black cable +on the ground terminal.</p></td> </tr> </tbody> </table> @@ -913,14 +915,42 @@ sur la borne ground.</p></td> </colgroup> <tbody> <tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="../_images/20210905_210045.jpg" src="../_images/20210905_210045.jpg" /> +<td><img alt="../_images/Inked20211206_150522_LI2.jpg" src="../_images/Inked20211206_150522_LI2.jpg" /> </td> </tr> -<tr class="row-even"><td><p>Installer le circuit de référence</p></td> +<tr class="row-even"><td><p>Connect the equivalent electronic circuit test</p></td> +</tr> +</tbody> +</table> +<table class="docutils align-center"> +<colgroup> +<col style="width: 12%" /> +<col style="width: 88%" /> +</colgroup> +<tbody> +<tr class="row-odd"><td rowspan="2"><p>7</p></td> +<td><img alt="../_images/thonny_first_interface2.jpg" src="../_images/thonny_first_interface2.jpg" /> +</td> +</tr> +<tr class="row-even"><td><p>Run Tonny Interpreter</p></td> +</tr> +</tbody> +</table> +<table class="docutils align-center"> +<colgroup> +<col style="width: 12%" /> +<col style="width: 88%" /> +</colgroup> +<tbody> +<tr class="row-odd"><td rowspan="2"><p>7</p></td> +<td><img alt="../_images/20211206_144334.jpg" src="../_images/20211206_144334.jpg" /> +</td> +</tr> +<tr class="row-even"><td><p>Run Ohmpi_4elec.py, if everything works you should +get the following result</p></td> </tr> </tbody> </table> -<p>Run the Thonny IDE and load the code Ohmpy4elec.pi</p> </div> </div> @@ -929,6 +959,7 @@ sur la borne ground.</p></td> </div> <footer><div class="rst-footer-buttons" role="navigation" aria-label="Footer"> <a href="V2_00_step_01.html" class="btn btn-neutral float-left" title="STEP n°1 : Raspberry Pi configuration" accesskey="p" rel="prev"><span class="fa fa-arrow-circle-left" aria-hidden="true"></span> Previous</a> + <a href="V2_00_step_03.html" class="btn btn-neutral float-right" title="STEP n°3: MUX board" accesskey="n" rel="next">Next <span class="fa fa-arrow-circle-right" aria-hidden="true"></span></a> </div> <hr/> diff --git a/sphinx/build/html/Ohmpi_V2_00/V2_00_step_03.html b/sphinx/build/html/Ohmpi_V2_00/V2_00_step_03.html new file mode 100644 index 0000000000000000000000000000000000000000..55294eecec2c06101ef5a9ff2775d347795e79ef --- /dev/null +++ b/sphinx/build/html/Ohmpi_V2_00/V2_00_step_03.html @@ -0,0 +1,292 @@ +<!DOCTYPE html> +<html class="writer-html5" lang="en" > +<head> + <meta charset="utf-8" /> + <meta 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source</a> + </li> + </ul> + <hr/> +</div> + <div role="main" class="document" itemscope="itemscope" itemtype="http://schema.org/Article"> + <div itemprop="articleBody"> + + <div class="section" id="step-n3-mux-board"> +<h1><strong>STEP n°3</strong>: MUX board<a class="headerlink" href="#step-n3-mux-board" title="Permalink to this headline">¶</a></h1> +<div class="section" id="part-a-assembly-of-mux-board"> +<h2><strong>PART A</strong> Assembly of MUX board<a class="headerlink" href="#part-a-assembly-of-mux-board" title="Permalink to this headline">¶</a></h2> +<div class="section" id="required-components"> +<h3>Required components<a class="headerlink" href="#required-components" title="Permalink to this headline">¶</a></h3> +<div class="align-center figure"> +<a class="reference internal image-reference" href="../_images/00_mes_board_components1.jpg"><img alt="alternate text" src="../_images/00_mes_board_components1.jpg" style="width: 600px; height: 450px;" /></a> +</div> +<table class="colwidths-given docutils align-default" id="id1"> +<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id1" title="Permalink to this table">¶</a></caption> +<colgroup> +<col style="width: 8%" /> +<col style="width: 18%" /> +<col style="width: 18%" /> +<col style="width: 18%" /> +<col style="width: 18%" /> +<col style="width: 9%" /> +<col style="width: 9%" /> +</colgroup> +<thead> +<tr class="row-odd"><th class="head"><p>Component</p></th> +<th class="head"><p>Number</p></th> +<th class="head"><p>Cost per unit €</p></th> +<th class="head"><p>Total cost €</p></th> +<th class="head"><p>Manufacturer</p></th> +<th class="head"><p>Manufacturer s reference</p></th> +<th class="head"><p>Web reference</p></th> +</tr> +</thead> +<tbody> +<tr class="row-even"><td><p>Printed circuit board</p></td> +<td><p>4</p></td> +<td><p>140</p></td> +<td><p>560</p></td> +<td><p>Asler</p></td> +<td><ul class="simple"> +<li></li> +</ul> +</td> +<td><ul class="simple"> +<li></li> +</ul> +</td> +</tr> +<tr class="row-odd"><td><p>Pin strip no ejector 16 pins</p></td> +<td><p>16</p></td> +<td><p>0.62</p></td> +<td><p>9.92</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120550</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994">https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994</a></p></td> +</tr> +<tr class="row-even"><td><p>diode-1n4007</p></td> +<td><p>256</p></td> +<td><p>0.091</p></td> +<td><p>23.296</p></td> +<td><p>Diodes Incorporated</p></td> +<td><p>1N4007-T</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Diodes-Incorporated/1N4007-T?qs=sGAEpiMZZMueQxo7L%2FBPyAkbORUUMREn">https://www.mouser.fr/ProductDetail/Diodes-Incorporated/1N4007-T?qs=sGAEpiMZZMueQxo7L%2FBPyAkbORUUMREn</a></p></td> +</tr> +<tr class="row-odd"><td><p>Pin strip no ejector 6 pins</p></td> +<td><p>4</p></td> +<td><p>0.39</p></td> +<td><p>1.56</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120550</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994">https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994</a></p></td> +</tr> +<tr class="row-even"><td><p>Dual screw terminal (5.08-mm pitch)</p></td> +<td><p>12</p></td> +<td><p>0.648</p></td> +<td><p>7.776</p></td> +<td><p>CUI Devices</p></td> +<td><p>TB009-508-02BE</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D">https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>Generic male header - 3 pins</p></td> +<td><p>12</p></td> +<td><p>0.205</p></td> +<td><p>2.46</p></td> +<td><p>TE Connectivity</p></td> +<td><p>4-103321-5</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity/4-103321-5?qs=5TwgZeq9E7HSYLqaljJYrw%3D%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity/4-103321-5?qs=5TwgZeq9E7HSYLqaljJYrw%3D%3D</a></p></td> +</tr> +<tr class="row-even"><td><p>MCP23017 I2C I/O Expander</p></td> +<td><p>16</p></td> +<td><p>2.5</p></td> +<td><p>40</p></td> +<td><p>Adafruit</p></td> +<td><p>732</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/732?qs=sGAEpiMZZMsKEdP9slC0Yfx16nYdMpXJueeOGoLBlDI%3D">https://www.mouser.fr/ProductDetail/Adafruit/732?qs=sGAEpiMZZMsKEdP9slC0Yfx16nYdMpXJueeOGoLBlDI%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>Omron G5LE-1-VD 12 VDC PCB relay 12 V DC 8 A 1</p></td> +<td><p>256</p></td> +<td><p>1.27</p></td> +<td><p>325.12</p></td> +<td><p>Omron</p></td> +<td><p>G5LE-1-VD 12 VDC</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/omron-g5le-1-vd-12-vdc-pcb-relay-12-v-dc-8-a-1-change-over-1-pcs-503811">https://www.conrad.com/p/omron-g5le-1-vd-12-vdc-pcb-relay-12-v-dc-8-a-1-change-over-1-pcs-503811</a></p></td> +</tr> +<tr class="row-even"><td><p>ZVN4206A MOSFET-NCHANNEL</p></td> +<td><p>256</p></td> +<td><p>0.471</p></td> +<td><p>120.576</p></td> +<td><p>Diodes Incorporated</p></td> +<td><p>ZVN4206A</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Diodes-Incorporated/ZVN4206A?qs=vHuUswq2%252Bsz9b%2Ff6fcXt7g%3D%3D">https://www.mouser.fr/ProductDetail/Diodes-Incorporated/ZVN4206A?qs=vHuUswq2%252Bsz9b%2Ff6fcXt7g%3D%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>100k? Resistor</p></td> +<td><p>256</p></td> +<td><p>0.061</p></td> +<td><p>15.616</p></td> +<td><p>Vishay / Beyschlag</p></td> +<td><p>MBA02040C1003FRP00</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Beyschlag/MBA02040C1003FRP00?qs=mzRxyRlhVdt9crF7Zyf%2F5Q%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Beyschlag/MBA02040C1003FRP00?qs=mzRxyRlhVdt9crF7Zyf%2F5Q%3D%3D</a></p></td> +</tr> +<tr class="row-even"><td><p>Adafruit TCA9548A</p></td> +<td><p>4</p></td> +<td><p>5.89</p></td> +<td><p>23.56</p></td> +<td><p>Adafruit</p></td> +<td><p>2717</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/2717?qs=sGAEpiMZZMsyYdr3R27aV4EQf73yOH%252Baqg%252BZ3hVktao%3D">https://www.mouser.fr/ProductDetail/Adafruit/2717?qs=sGAEpiMZZMsyYdr3R27aV4EQf73yOH%252Baqg%252BZ3hVktao%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>BKL Electronic 10120558 Pin strip no ejector Contact spacing: 2.54 mm Total number of pins: 16 No. of rows: 2 1 pc(s)</p></td> +<td><p>16</p></td> +<td><p>0.51</p></td> +<td><p>8.16</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120558</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-10120558-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-741727?searchTerm=741727&searchType=suggest&searchSuggest=product">https://www.conrad.com/p/bkl-electronic-10120558-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-741727?searchTerm=741727&searchType=suggest&searchSuggest=product</a></p></td> +</tr> +<tr class="row-even"><td><p>BKL Electronic 10120862 Pin connector + strain relief Contact spacing: 2.54 mm Total number of pins: 6 No. of rows: 2 1</p></td> +<td><p>16</p></td> +<td><p>0.84</p></td> +<td><p>13.44</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120862</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-10120862-pin-connector-strain-relief-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-742063">https://www.conrad.com/p/bkl-electronic-10120862-pin-connector-strain-relief-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-742063</a></p></td> +</tr> +<tr class="row-odd"><td><p>BKL Electronic 10120158/10 Ribbon cable Contact spacing: 1.27 mm 16 x 0.08 mm Multi-coloured 10 m</p></td> +<td><p>1</p></td> +<td><p>27</p></td> +<td><p>27</p></td> +<td><p>BLK electronic</p></td> +<td><p>10120158/10</p></td> +<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-1012015810-ribbon-cable-contact-spacing-127-mm-16-x-008-mm-multi-coloured-10-m-1548658?searchTerm=1548658&searchType=suggest&searchSuggest=product">https://www.conrad.com/p/bkl-electronic-1012015810-ribbon-cable-contact-spacing-127-mm-16-x-008-mm-multi-coloured-10-m-1548658?searchTerm=1548658&searchType=suggest&searchSuggest=product</a></p></td> +</tr> +<tr class="row-even"><td><p>spacer 5.5 HEX 25 mm M3 male/female</p></td> +<td><p>31</p></td> +<td><p>2.79</p></td> +<td><p>86.49</p></td> +<td><p>Keystone Electronics</p></td> +<td><p>24300</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Keystone-Electronics/24300?qs=UWqYQ%2F2cZWu0ejpOzmZC2A%3D%3D">https://www.mouser.fr/ProductDetail/Keystone-Electronics/24300?qs=UWqYQ%2F2cZWu0ejpOzmZC2A%3D%3D</a></p></td> +</tr> +<tr class="row-odd"><td><p>Screw</p></td> +<td><p>9</p></td> +<td><p>0.305</p></td> +<td><p>2.745</p></td> +<td><p>APM HEXSEAL</p></td> +<td><p>RM3X8MM-2701</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D">https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D</a></p></td> +</tr> +<tr class="row-even"><td><p>spacer 5.5 HEX 25 mm M3 female/female</p></td> +<td><p>9</p></td> +<td><p>0.846</p></td> +<td><p>7.614</p></td> +<td><p>Keystone Electronics</p></td> +<td><p>25515</p></td> +<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Keystone-Electronics/25515?qs=UWqYQ%2F2cZWuxuhUmfr%252BZuQ%3D%3D">https://www.mouser.fr/ProductDetail/Keystone-Electronics/25515?qs=UWqYQ%2F2cZWuxuhUmfr%252BZuQ%3D%3D</a></p></td> +</tr> +</tbody> +</table> +</div> +</div> +</div> + + + </div> + </div> + <footer><div class="rst-footer-buttons" role="navigation" aria-label="Footer"> + <a href="V2_00_step_02.html" class="btn btn-neutral float-left" title="STEP n°2: Measurement board" accesskey="p" rel="prev"><span class="fa fa-arrow-circle-left" aria-hidden="true"></span> Previous</a> + </div> + + <hr/> + + <div role="contentinfo"> + <p>© Copyright 2020, INRAE, Rémi CLEMENT.</p> + </div> + + Built with <a href="https://www.sphinx-doc.org/">Sphinx</a> using a + <a href="https://github.com/readthedocs/sphinx_rtd_theme">theme</a> + provided by <a href="https://readthedocs.org">Read the Docs</a>. + + +</footer> + </div> + </div> + </section> + </div> + <script> + jQuery(function () { + SphinxRtdTheme.Navigation.enable(true); + }); + </script> + +</body> +</html> \ No newline at end of file diff --git a/sphinx/build/html/V1_01.html b/sphinx/build/html/V1_01.html index 0b1776c6e1f1652b0b9a740d5b907bdeb3537b29..768b87788f9e05441e6aa679a3656b983bab73da 100644 --- a/sphinx/build/html/V1_01.html +++ b/sphinx/build/html/V1_01.html @@ -69,7 +69,7 @@ </ul> </li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> @@ -181,7 +181,7 @@ For this step, the installation instructions are well described on the Raspberry <p class="admonition-title">Note</p> <p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/raspbian_version.jpg"><img alt="alternate text" src="_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> +<a class="reference internal image-reference" href="_images/raspbian_version1.jpg"><img alt="alternate text" src="_images/raspbian_version1.jpg" style="width: 800px; height: 400px;" /></a> </div> </div> <div class="admonition warning"> @@ -259,21 +259,21 @@ to leave the virtual environment simply type:</p> <p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> <p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_first_interface.jpg"><img alt="alternate text" src="_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_first_interface1.jpg"><img alt="alternate text" src="_images/thonny_first_interface1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_option.jpg"><img alt="alternate text" src="_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_option1.jpg"><img alt="alternate text" src="_images/thonny_option1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter.jpg"><img alt="alternate text" src="_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_interpreter1.jpg"><img alt="alternate text" src="_images/thonny_interpreter1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> <p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> <p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_interpreter_folder1.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>8- Close the window by clicking on <strong>ok</strong>.</p> <p>9- Close thonny to save modifications</p> @@ -317,7 +317,7 @@ A shortcut between Electrodes A and B will generate excessive currents, whose in A lithium ion battery or automobile-type lead-acid battery can deliver a strong enough current to damage the board and, as such, constitutes a potential hazard. We therefore recommend adding a 1.5-A fuse between the battery and resistor R9.</p> <div class="align-center figure" id="id1"> -<a class="reference internal image-reference" href="_images/schema_measurement_board.jpg"><img alt="alternate text" src="_images/schema_measurement_board.jpg" style="width: 800px; height: 400px;" /></a> +<a class="reference internal image-reference" href="_images/schema_measurement_board1.jpg"><img alt="alternate text" src="_images/schema_measurement_board1.jpg" style="width: 800px; height: 400px;" /></a> <p class="caption"><span class="caption-text">Measurement board</span><a class="headerlink" href="#id1" title="Permalink to this image">¶</a></p> </div> </div> diff --git a/sphinx/build/html/V1_02.html b/sphinx/build/html/V1_02.html index 00192dc4e1a22f390063773a9edf1138185a7291..f286a04154eeac868d53bdac51de90383680598c 100644 --- a/sphinx/build/html/V1_02.html +++ b/sphinx/build/html/V1_02.html @@ -17,7 +17,7 @@ <script src="_static/js/theme.js"></script> <link rel="index" title="Index" href="genindex.html" /> <link rel="search" title="Search" href="search.html" /> - <link rel="next" title="OhmPi V 2.xx (64 or 128 electrodes)" href="V2_00.html" /> + <link rel="next" title="OhmPi V 2.xx (64 or 128 electrodes and 12V)" href="V2_00.html" /> <link rel="prev" title="OhmPi V 1.01 (limited to 32 electrodes)" href="V1_01.html" /> </head> @@ -69,7 +69,7 @@ <li class="toctree-l2"><a class="reference internal" href="#complete-list-of-components">Complete list of components</a></li> </ul> </li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> @@ -179,7 +179,7 @@ For this step, the installation instructions are well described on the Raspberry <p class="admonition-title">Note</p> <p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/raspbian_version.jpg"><img alt="alternate text" src="_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> +<a class="reference internal image-reference" href="_images/raspbian_version1.jpg"><img alt="alternate text" src="_images/raspbian_version1.jpg" style="width: 800px; height: 400px;" /></a> </div> </div> <div class="admonition warning"> @@ -257,21 +257,21 @@ to leave the virtual environment simply type:</p> <p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> <p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_first_interface.jpg"><img alt="alternate text" src="_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_first_interface1.jpg"><img alt="alternate text" src="_images/thonny_first_interface1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_option.jpg"><img alt="alternate text" src="_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_option1.jpg"><img alt="alternate text" src="_images/thonny_option1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter.jpg"><img alt="alternate text" src="_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_interpreter1.jpg"><img alt="alternate text" src="_images/thonny_interpreter1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> <p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> <p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> <div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> +<a class="reference internal image-reference" href="_images/thonny_interpreter_folder1.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder1.jpg" style="width: 600px; height: 450px;" /></a> </div> <p>8- Close the window by clicking on <strong>ok</strong>.</p> <p>9- Close thonny to save modifications</p> @@ -758,7 +758,7 @@ are displayed on the screen. A measurement file is automatically created and nam </div> <footer><div class="rst-footer-buttons" role="navigation" aria-label="Footer"> <a href="V1_01.html" class="btn btn-neutral float-left" title="OhmPi V 1.01 (limited to 32 electrodes)" accesskey="p" rel="prev"><span class="fa fa-arrow-circle-left" aria-hidden="true"></span> Previous</a> - <a href="V2_00.html" class="btn btn-neutral float-right" title="OhmPi V 2.xx (64 or 128 electrodes)" accesskey="n" rel="next">Next <span class="fa fa-arrow-circle-right" aria-hidden="true"></span></a> + <a href="V2_00.html" class="btn btn-neutral float-right" title="OhmPi V 2.xx (64 or 128 electrodes and 12V)" accesskey="n" rel="next">Next <span class="fa fa-arrow-circle-right" aria-hidden="true"></span></a> </div> <hr/> diff --git a/sphinx/build/html/V2_00.html b/sphinx/build/html/V2_00.html index ea9a8dac0fd6a193d2a14af65f5a006e7c8bd2df..e6c583e736844a9a707b0951d334e648b8cb021d 100644 --- a/sphinx/build/html/V2_00.html +++ b/sphinx/build/html/V2_00.html @@ -3,7 +3,7 @@ <head> <meta charset="utf-8" /> <meta name="viewport" content="width=device-width, initial-scale=1.0" /> - <title>OhmPi V 2.xx (64 or 128 electrodes) — Ohmpi: open hardware resistivity-meter documentation</title><link rel="stylesheet" href="_static/css/theme.css" type="text/css" /> + <title>OhmPi V 2.xx (64 or 128 electrodes and 12V) — Ohmpi: open hardware resistivity-meter documentation</title><link rel="stylesheet" href="_static/css/theme.css" type="text/css" /> <link rel="stylesheet" href="_static/pygments.css" type="text/css" /> <!--[if lt IE 9]> <script src="_static/js/html5shiv.min.js"></script> @@ -40,12 +40,13 @@ <li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1 current"><a class="current reference internal" href="#">OhmPi V 2.xx (64 or 128 electrodes)</a><ul> +<li class="toctree-l1 current"><a class="current reference internal" href="#">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a><ul> <li class="toctree-l2"><a class="reference internal" href="#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="#technical-data">Technical data</a></li> <li class="toctree-l2"><a class="reference internal" href="#ohmpi-2-step-by-step">Ohmpi 2 step by step</a><ul> <li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html"><strong>STEP n°1</strong> : Raspberry Pi configuration</a></li> <li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_02.html"><strong>STEP n°2</strong>: Measurement board</a></li> +<li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a></li> </ul> </li> </ul> @@ -66,7 +67,7 @@ <div role="navigation" aria-label="Page navigation"> <ul class="wy-breadcrumbs"> <li><a href="index.html" class="icon icon-home"></a> »</li> - <li>OhmPi V 2.xx (64 or 128 electrodes)</li> + <li>OhmPi V 2.xx (64 or 128 electrodes and 12V)</li> <li class="wy-breadcrumbs-aside"> <a href="_sources/V2_00.rst.txt" rel="nofollow"> View page source</a> </li> @@ -76,8 +77,8 @@ <div role="main" class="document" itemscope="itemscope" itemtype="http://schema.org/Article"> <div itemprop="articleBody"> - <div class="section" id="ohmpi-v-2-xx-64-or-128-electrodes"> -<h1>OhmPi V 2.xx (64 or 128 electrodes)<a class="headerlink" href="#ohmpi-v-2-xx-64-or-128-electrodes" title="Permalink to this headline">¶</a></h1> + <div class="section" id="ohmpi-v-2-xx-64-or-128-electrodes-and-12v"> +<h1>OhmPi V 2.xx (64 or 128 electrodes and 12V)<a class="headerlink" href="#ohmpi-v-2-xx-64-or-128-electrodes-and-12v" title="Permalink to this headline">¶</a></h1> <div class="align-center figure"> <a class="reference internal image-reference" href="_images/Under-Construction.png"><img alt="Ohmpi 2" src="_images/Under-Construction.png" style="width: 500px; height: 250px;" /></a> </div> @@ -195,9 +196,9 @@ control system</p></td> <div class="toctree-wrapper compound"> <ul> <li class="toctree-l1"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html"><strong>STEP n°1</strong> : Raspberry Pi configuration</a><ul> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#os-installation">OS installation</a></li> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#virtual-environnement-and-packages">Virtual Environnement and packages</a></li> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi">Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)</a></li> +<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#part-a-os-installation"><strong>PART A</strong> OS installation</a></li> +<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#part-b-virtual-environnement-and-packages"><strong>PART B</strong> Virtual Environnement and packages</a></li> +<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html#part-c-activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"><strong>PART C</strong> Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)</a></li> </ul> </li> <li class="toctree-l1"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_02.html"><strong>STEP n°2</strong>: Measurement board</a><ul> @@ -210,6 +211,13 @@ control system</p></td> <li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_02.html#part-c-check-the-measurement-board"><strong>PART C</strong> Check the measurement board</a></li> </ul> </li> +<li class="toctree-l1"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a><ul> +<li class="toctree-l2"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html#part-a-assembly-of-mux-board"><strong>PART A</strong> Assembly of MUX board</a><ul> +<li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html#required-components">Required components</a></li> +</ul> +</li> +</ul> +</li> </ul> </div> </div> diff --git a/sphinx/build/html/V2_00_step_01.html b/sphinx/build/html/V2_00_step_01.html deleted file mode 100644 index 287305fef100e720ec5b701cb94829b6c6af46e5..0000000000000000000000000000000000000000 --- a/sphinx/build/html/V2_00_step_01.html +++ /dev/null @@ -1,1207 +0,0 @@ - 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- - - - </div> - - </nav> - <section data-toggle="wy-nav-shift" class="wy-nav-content-wrap"> - - <nav class="wy-nav-top" id="barra-mobile" role="navigation" aria-label="top navigation"> - <i data-toggle="wy-nav-top" class="fa fa-bars"></i> - <a href="#">Porão do Juca</a> - </nav> - - <div class="wy-nav-content"> - <div class="fundo-claro"> - </div> - <div class="fundo-escuro"> - </div> - - <div class="rst-content"> - <div role="navigation" aria-label="breadcrumbs navigation"> - - <!-- <ul class="wy-breadcrumbs"> --> - <!-- <li><a href="#">Docs</a> »</li> --> - - <!-- <li>Features</li> --> - <!-- <li class="wy-breadcrumbs-aside"> --> - - <!-- <a href="_sources/index.txt" rel="nofollow"> View page source</a> --> - - <!-- </li> --> - <!-- </ul> --> - <!-- <hr/> --> - </div> - - <div role="main" class=""> - - <div id="content" class="hfeed entry-container hentry"> - <div class="section" id="step-n1-raspberry-pi-configuration"> -<h1><strong>STEP n°1</strong> : Raspberry Pi configuration<a class="headerlink" href="#step-n1-raspberry-pi-configuration" title="Permalink to this headline">¶</a></h1> -<div class="section" id="os-installation"> -<h2>OS installation<a class="headerlink" href="#os-installation" title="Permalink to this headline">¶</a></h2> -<table class="docutils align-default"> -<colgroup> -<col style="width: 78%" /> -<col style="width: 22%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -<td><p><strong>Quantity</strong></p></td> -</tr> -<tr class="row-even"><td><p>Raspberry Pi 4 Model B</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-odd"><td><p>Micro SD 32 Go</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-even"><td><p>HDMI Cable</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-odd"><td><p>Computer mouse</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-even"><td><p>Computer Keyboard</p></td> -<td><p>1</p></td> -</tr> -</tbody> -</table> -<p>The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). -For this step, the installation instructions are well described on the Raspberry website</p> -<ol class="arabic simple"> -<li><p>Watch the vidéo “how to set up your raspberry Pi†(<a class="reference external" href="https://www.youtube.com/watch?v=wjWZhV1v3Pk">https://www.youtube.com/watch?v=wjWZhV1v3Pk</a>)</p></li> -<li><p>The authors recommend installing the latest stable and complete version of Raspbian by using NOOBS (a simple-to-use operating system installer).</p></li> -<li><p>or you can visit this website : (<a class="reference external" href="https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up">https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up</a>)</p></li> -</ol> -<div class="admonition note"> -<p class="admonition-title">Note</p> -<p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/raspbian_version.jpg"><img alt="alternate text" src="_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> -</div> -</div> -<div class="admonition warning"> -<p class="admonition-title">Warning</p> -<p>Once the OS has been installed, <strong>1-wire, spi and GPIO remote option</strong> must be deactivated via the Raspbian GUI settings menu. Failure to carry out this task may cause damage to the relay shield cards during measurements.</p> -</div> -<p>3. When the relays are connected to the GPIO, make sure that all the GPIOs are in the low position when the raspberry starts up. If not, the relays will activate unexpectedly. -To ensure that the GPIOs are in Low position, you will need to modify the /boot/config.txt file.</p> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">cd</span> <span class="o">/</span><span class="n">boot</span><span class="o">/</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="4"> -<li><p>Open config.txt with GNU nano editor</p></li> -</ol> -<blockquote> -<div><div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">sudo</span> <span class="n">nano</span> <span class="n">config</span><span class="o">.</span><span class="n">txt</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="5"> -<li><p>At the end of the file write :</p></li> -</ol> -<blockquote> -<div><div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">gpio</span><span class="o">=</span><span class="mi">8</span><span class="o">=</span><span class="n">op</span><span class="p">,</span><span class="n">dl</span> -<span class="n">gpio</span><span class="o">=</span><span class="mi">7</span><span class="o">=</span><span class="n">op</span><span class="p">,</span><span class="n">dl</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="6"> -<li><p>Press Ctrl +O to save the modifications and press enter</p></li> -<li><p>Press Ctrl +x to escap and return to the terminal</p></li> -<li><p>Close the terminal</p></li> -</ol> -</div> -<div class="section" id="virtual-environnement-and-packages"> -<h2>Virtual Environnement and packages<a class="headerlink" href="#virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> -<p>A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. -Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages.</p> -<p>All dependencies are specified in requirements.txt</p> -<div class="admonition note"> -<p class="admonition-title">Note</p> -<p>All instructions below should be typed in the terminal</p> -</div> -<p>It is first necessary to ensure that the libatlas-base-dev library is installed:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">sudo</span> <span class="n">apt</span><span class="o">-</span><span class="n">get</span> <span class="n">install</span> <span class="n">libatlas</span><span class="o">-</span><span class="n">base</span><span class="o">-</span><span class="n">dev</span> -</pre></div> -</div> -<p>We strongly recommend users to create a virtual environment to run the code and installed all required dependencies. It can be done either in a directory gathering all virtual environments used on the computer or within the ohmpy directory.</p> -<p>Create the virtual environment:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">python3</span> <span class="o">-</span><span class="n">m</span> <span class="n">venv</span> <span class="n">ohmpy</span> -</pre></div> -</div> -<p>Activate it using the following command:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">source</span> <span class="n">ohmpy</span><span class="o">/</span><span class="nb">bin</span><span class="o">/</span><span class="n">activate</span> -</pre></div> -</div> -<p>Install packages within the virtual environment. Installing the following package should be sufficient to meet dependencies:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">pip</span> <span class="n">install</span> <span class="n">RPi</span><span class="o">.</span><span class="n">GPIO</span> <span class="n">adafruit</span><span class="o">-</span><span class="n">blinka</span> <span class="n">numpy</span> <span class="n">adafruit</span><span class="o">-</span><span class="n">circuitpython</span><span class="o">-</span><span class="n">ads1x15</span> <span class="n">pandas</span> -</pre></div> -</div> -<p>Check that requirements are met using</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">pip</span> <span class="nb">list</span> -</pre></div> -</div> -<p>You should run you code within the virtual environment -to leave the virtual environment simply type:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">deactivate</span> -</pre></div> -</div> -</div> -<div class="section" id="activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> -<h2>Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)<a class="headerlink" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> -<p>If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it.</p> -<p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> -<p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_first_interface.jpg"><img alt="alternate text" src="_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_option.jpg"><img alt="alternate text" src="_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter.jpg"><img alt="alternate text" src="_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> -<p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> -<p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>8- Close the window by clicking on <strong>ok</strong>.</p> -<p>9- Close thonny to save modifications</p> -</div> -</div> -<div class="section" id="step-n2-assembly-of-the-measurement-board"> -<h1><strong>STEP n°2</strong>: Assembly of the measurement board<a class="headerlink" href="#step-n2-assembly-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/00_mes_board_components.jpg"><img alt="alternate text" src="_images/00_mes_board_components.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<table class="colwidths-given docutils align-default" id="id1"> -<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id1" title="Permalink to this table">¶</a></caption> -<colgroup> -<col style="width: 8%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 9%" /> -<col style="width: 9%" /> -</colgroup> -<thead> -<tr class="row-odd"><th class="head"><p>Component</p></th> -<th class="head"><p>Number</p></th> -<th class="head"><p>Cost per unit €</p></th> -<th class="head"><p>Total cost €</p></th> -<th class="head"><p>Manufacturer</p></th> -<th class="head"><p>Manufacturer s reference</p></th> -<th class="head"><p>Web reference</p></th> -</tr> -</thead> -<tbody> -<tr class="row-even"><td><p>Raspberry Pi 4 Model B</p></td> -<td><p>1</p></td> -<td><p>58.75</p></td> -<td><p>58.75</p></td> -<td><p>Raspberry</p></td> -<td><p>Raspberry Pi 4 Model B</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D">https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>LM158N AMP-o</p></td> -<td><p>4</p></td> -<td><p>14.5</p></td> -<td><p>58</p></td> -<td><p>Texas Instruments</p></td> -<td><p>LM358AN/NOPB</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Texas-Instruments/LM158J?qs=X1J7HmVL2ZH8vpEfMl8%2FFQ%3D%3D">https://www.mouser.fr/ProductDetail/Texas-Instruments/LM158J?qs=X1J7HmVL2ZH8vpEfMl8%2FFQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Printed circuit board</p></td> -<td><p>1</p></td> -<td><p>12</p></td> -<td><p>12</p></td> -<td><p>Asler</p></td> -<td><ul class="simple"> -<li></li> -</ul> -</td> -<td><ul class="simple"> -<li></li> -</ul> -</td> -</tr> -<tr class="row-odd"><td><p>ADS1115</p></td> -<td><p>2</p></td> -<td><p>11.9</p></td> -<td><p>23.8</p></td> -<td><p>Adafruit</p></td> -<td><p>1085</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/1085?qs=%2Fha2pyFaduhE%2FOGzuTWIQ9Iz5VjaqFOYugqAlGxpEcKiGrQvF4hn%252Bg%3D%3D">https://www.mouser.fr/ProductDetail/Adafruit/1085?qs=%2Fha2pyFaduhE%2FOGzuTWIQ9Iz5VjaqFOYugqAlGxpEcKiGrQvF4hn%252Bg%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Capacitor 100nF 50Vdc 10% Ceramic</p></td> -<td><p>4</p></td> -<td><p>0.2</p></td> -<td><p>0.8</p></td> -<td><p>KEMET</p></td> -<td><p>C320C104K1</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/KEMET/C320C104K1R5TA7303?qs=c4UyoTs%2FLq1th4mcyOeTmA%3D%3D">https://www.mouser.fr/ProductDetail/KEMET/C320C104K1R5TA7303?qs=c4UyoTs%2FLq1th4mcyOeTmA%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Resistor 1 Kohm 0.5W +- 0.1%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>TE Connectivity</p></td> -<td><p>H81K0BYA</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K0BYA?qs=%2Fha2pyFaduhUylh7Az%2FmjFH2XjOUms6wZtUX4sOM%252BII%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K0BYA?qs=%2Fha2pyFaduhUylh7Az%2FmjFH2XjOUms6wZtUX4sOM%252BII%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Resistor 1.5 Kohms +- 0.1%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>TE Connectivity</p></td> -<td><p>H81K5BYA</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K5BYA?qs=%2Fha2pyFadugy9tWham3rU9HmIJOhyWhBIN95kNm%252BX%2FM%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K5BYA?qs=%2Fha2pyFadugy9tWham3rU9HmIJOhyWhBIN95kNm%252BX%2FM%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Resistor 1.5 Kohms +- 5%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>Vishay</p></td> -<td><p>CCF071K50GKE36</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Dale/CCF071K50GKE36?qs=QKEOZdL6EQpA6LZRLQFVOw%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Dale/CCF071K50GKE36?qs=QKEOZdL6EQpA6LZRLQFVOw%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Resistor 10 Mohms +-5%</p></td> -<td><p>2</p></td> -<td><p>0.762</p></td> -<td><p>1.524</p></td> -<td><p>VISHAY</p></td> -<td><p>CMF651M0000FKEK143</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Dale/CMF651M0000FKEK143?qs=CiayqK2gdcKzIA2LEVaLkg%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Dale/CMF651M0000FKEK143?qs=CiayqK2gdcKzIA2LEVaLkg%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>2 ohm shunt resistor+- 1%</p></td> -<td><p>1</p></td> -<td><p>2.42</p></td> -<td><p>2.42</p></td> -<td><p>Ohmite</p></td> -<td><p>41F2R0E</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Ohmite/41F2R0E?qs=IM6ToxQzGOAuEDprb19mHA%3D%3D">https://www.mouser.fr/ProductDetail/Ohmite/41F2R0E?qs=IM6ToxQzGOAuEDprb19mHA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Dual screw terminal (5.08-mm pitch)</p></td> -<td><p>5</p></td> -<td><p>0.648</p></td> -<td><p>3.24</p></td> -<td><p>CUI Devices</p></td> -<td><p>TB009-508-02BE</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D">https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>DC/DC converter 12 to 24V</p></td> -<td><p>2</p></td> -<td><p>15.58</p></td> -<td><p>31.16</p></td> -<td><p>TracoPower</p></td> -<td><p>TRN 3-1215</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TRACO-Power/TRN-3-1215?qs=YCa%2FAAYMW02gqUicGQj0tA%3D%3D">https://www.mouser.fr/ProductDetail/TRACO-Power/TRN-3-1215?qs=YCa%2FAAYMW02gqUicGQj0tA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>DIP Dual In Line Socket 2*4</p></td> -<td><p>3</p></td> -<td><p>0.72</p></td> -<td><p>2.16</p></td> -<td><p>Mill-Max</p></td> -<td><p>110-43-308-41-001000</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Mill-Max/110-43-308-41-001000?qs=IGgAdOvCTsTu%2FqaUr8NArg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIn_TAxbCx8wIVQ5nVCh2QaQFpEAYYCCABEgJk1_D_BwE">https://www.mouser.fr/ProductDetail/Mill-Max/110-43-308-41-001000?qs=IGgAdOvCTsTu%2FqaUr8NArg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIn_TAxbCx8wIVQ5nVCh2QaQFpEAYYCCABEgJk1_D_BwE</a></p></td> -</tr> -<tr class="row-odd"><td><p>AQY211EH</p></td> -<td><p>4</p></td> -<td><p>3.84</p></td> -<td><p>15.36</p></td> -<td><p>Panasonic Industrial Devices</p></td> -<td><p>AQY211EH</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Panasonic-Industrial-Devices/AQY211EH?qs=wKtUvITRialGIU8hcM7DvQ%3D%3D">https://www.mouser.fr/ProductDetail/Panasonic-Industrial-Devices/AQY211EH?qs=wKtUvITRialGIU8hcM7DvQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>DIP Dual In Line Socket 2*2</p></td> -<td><p>4</p></td> -<td><p>0.449</p></td> -<td><p>1.796</p></td> -<td><p>Preci-dip</p></td> -<td><p>110-83-304-41-001101</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Preci-dip/110-83-304-41-001101?qs=%2Fha2pyFadujQKqx4wAuiG%2FMGNdxMCNv%2F33Nj0gBxRocuLUcYnpyONg%3D%3D">https://www.mouser.fr/ProductDetail/Preci-dip/110-83-304-41-001101?qs=%2Fha2pyFadujQKqx4wAuiG%2FMGNdxMCNv%2F33Nj0gBxRocuLUcYnpyONg%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>SSQ-103-03-G-D</p></td> -<td><p>1</p></td> -<td><p>2.06</p></td> -<td><p>2.06</p></td> -<td><p>Samtec</p></td> -<td><p>SSQ-103-03-G-D</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSQ-103-03-G-D?qs=rU5fayqh%252BE2Z%252BZTchcPoHQ%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSQ-103-03-G-D?qs=rU5fayqh%252BE2Z%252BZTchcPoHQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>MCP23008</p></td> -<td><p>1</p></td> -<td><p>1.72</p></td> -<td><p>1.72</p></td> -<td><p>Adafruit</p></td> -<td><p>593</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/593?qs=sGAEpiMZZMsKEdP9slC0YYV4kPdpMD1Hts4SLctIVmw%3D">https://www.mouser.fr/ProductDetail/Adafruit/593?qs=sGAEpiMZZMsKEdP9slC0YYV4kPdpMD1Hts4SLctIVmw%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Header sets 1x10</p></td> -<td><p>2</p></td> -<td><p>2.12</p></td> -<td><p>4.24</p></td> -<td><p>Samtec</p></td> -<td><p>SSW-110-02-G-S</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSW-110-02-G-S?qs=rU5fayqh%252BE0w1ORXZiBQpw%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSW-110-02-G-S?qs=rU5fayqh%252BE0w1ORXZiBQpw%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>SMT Breakout PCB for SOIC-8</p></td> -<td><p>1</p></td> -<td><p>2.5</p></td> -<td><p>2.5</p></td> -<td><p>Adafruit</p></td> -<td><p>1212</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/1212?qs=GURawfaeGuCAqqfvnVtyeg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIt8zJzr6x8wIVGdnVCh2vBwVsEAQYAyABEgJqG_D_BwE">https://www.mouser.fr/ProductDetail/Adafruit/1212?qs=GURawfaeGuCAqqfvnVtyeg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIt8zJzr6x8wIVGdnVCh2vBwVsEAQYAyABEgJqG_D_BwE</a></p></td> -</tr> -<tr class="row-odd"><td><p>INA282AID</p></td> -<td><p>1</p></td> -<td><p>4.11</p></td> -<td><p>4.11</p></td> -<td><p>Texas Instruments</p></td> -<td><p>INA282AID</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Texas-Instruments/INA282AID?qs=Ze4%2FuFuz19ILFayZXOCfrA%3D%3D">https://www.mouser.fr/ProductDetail/Texas-Instruments/INA282AID?qs=Ze4%2FuFuz19ILFayZXOCfrA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>THD 15-1211N</p></td> -<td><p>1</p></td> -<td><p>39.72</p></td> -<td><p>39.72</p></td> -<td><p>TracoPower</p></td> -<td><p>THD 15-1211N</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TRACO-Power/THD-15-1211N?qs=%2Fha2pyFadugpyEG4IDvm%2FMSR%252B7aN%2F0T3rUIs9PCAqJlT4%252BnRpUOOeQ%3D%3D">https://www.mouser.fr/ProductDetail/TRACO-Power/THD-15-1211N?qs=%2Fha2pyFadugpyEG4IDvm%2FMSR%252B7aN%2F0T3rUIs9PCAqJlT4%252BnRpUOOeQ%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>DIP Dual In Line Socket 2*20</p></td> -<td><p>1</p></td> -<td><p>8.53</p></td> -<td><p>8.53</p></td> -<td><p>Samtec</p></td> -<td><p>SSQ-120-23-G-D</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSQ-120-23-G-D?qs=rU5fayqh%252BE1BMVd%252BDZONqg%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSQ-120-23-G-D?qs=rU5fayqh%252BE1BMVd%252BDZONqg%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Pin strip no ejector</p></td> -<td><p>1</p></td> -<td><p>0.35</p></td> -<td><p>0.35</p></td> -<td><p>BLK electronic</p></td> -<td><p>10120550</p></td> -<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-10120550-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-pcs-741435?searchTerm=741435&searchType=suggest&searchSuggest=product">https://www.conrad.com/p/bkl-electronic-10120550-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-pcs-741435?searchTerm=741435&searchType=suggest&searchSuggest=product</a></p></td> -</tr> -<tr class="row-odd"><td><p>Male Female spacer 2.5M HEXAGONALE</p></td> -<td><p> 4</p></td> -<td><p> 0.87</p></td> -<td><p> 3.48</p></td> -<td><p> HARWIN</p></td> -<td><p> R25-3002002</p></td> -<td><p> <a class="reference external" href="https://www.mouser.fr/ProductDetail/Harwin/R25-3002002?qs=W0yvOO0ixfENUv0hsdC4%2FQ%3D%3D">https://www.mouser.fr/ProductDetail/Harwin/R25-3002002?qs=W0yvOO0ixfENUv0hsdC4%2FQ%3D%3D</a></p></td> -</tr> -</tbody> -</table> -<div class="section" id="description"> -<h2>Description<a class="headerlink" href="#description" title="Permalink to this headline">¶</a></h2> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/schema_measurement_board.jpg"><img alt="alternate text" src="_images/schema_measurement_board.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete “plug and play†measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps:</p> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/01_mes_board.jpg" src="_images/01_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installation of female header, 1 by10 pins, for ADS1115</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/02_mes_board.jpg" src="_images/02_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 4 dual-in-line- socket (2 by 2 pins) for -optical relay, AQY211EH.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/03_mes_board.jpg" src="_images/03_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 9 pins) -for INA282.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/04_mes_board.jpg" src="_images/04_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/05_mes_board.jpg" src="_images/05_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 2 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/06_mes_board.jpg" src="_images/06_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco Power Supply 12V to 5V, TDH15 - 1211N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="_images/07_mes_board.jpg" src="_images/07_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals for 12V inpout et 5V outpout</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>8</p></td> -<td><img alt="_images/08_mes_board.jpg" src="_images/08_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco power Supply 12V to 24V, TRN-1215</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>9</p></td> -<td><img alt="_images/09_mes_board.jpg" src="_images/09_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Two screw terminals electrodes M and N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>10</p></td> -<td><img alt="_images/10_mes_board.jpg" src="_images/10_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals, for 12V power supply and for -electrodes A and B</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>11</p></td> -<td><img alt="_images/11_mes_board.jpg" src="_images/11_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering three capacitors (100nF)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>12</p></td> -<td><img alt="_images/12_mes_board.jpg" src="_images/12_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>2 ohms shunt resistor pre-adjustment</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>13</p></td> -<td><img alt="_images/13_mes_board.jpg" src="_images/13_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering 2 ohms shunt resistor</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>14</p></td> -<td><img alt="_images/14_mes_board.jpg" src="_images/14_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>1 Mohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>15</p></td> -<td><img alt="_images/15_mes_board.jpg" src="_images/15_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1 Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>16</p></td> -<td><img alt="_images/16_mes_board.jpg" src="_images/16_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>17</p></td> -<td><img alt="_images/17_mes_board.jpg" src="_images/17_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>18</p></td> -<td><img alt="_images/18_mes_board.jpg" src="_images/18_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Female header 2 by 20 pins for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>19</p></td> -<td><img alt="_images/19_mes_board.jpg" src="_images/19_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>View of the female header 2 by 20 pins installation -for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>20</p></td> -<td><img alt="_images/20_mes_board.jpg" src="_images/20_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing MCP23008 component</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>21</p></td> -<td><img alt="_images/21_mes_board.jpg" src="_images/21_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting optical relay, AQY211EH</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>22</p></td> -<td><img alt="_images/22_mes_board.jpg" src="_images/22_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting LM158 operational amplificator</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>23</p></td> -<td><img alt="_images/23_mes_board.jpg" src="_images/23_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting ADS115 board</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>24</p></td> -<td><img alt="_images/24_mes_board.jpg" src="_images/24_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing the INA282</p></td> -</tr> -</tbody> -</table> -</div> -</div> -<div class="section" id="step-n3-start-up-of-the-measurement-board"> -<h1><strong>STEP n°3</strong>: Start-up of the measurement board.<a class="headerlink" href="#step-n3-start-up-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<table class="colwidths-given docutils align-default" id="id2"> -<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id2" title="Permalink to this table">¶</a></caption> -<colgroup> -<col style="width: 8%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 9%" /> -<col style="width: 9%" /> -</colgroup> -<thead> -<tr class="row-odd"><th class="head"><p>Component</p></th> -<th class="head"><p>Number</p></th> -<th class="head"><p>Cost per unit €</p></th> -<th class="head"><p>Total cost €</p></th> -<th class="head"><p>Manufacturer</p></th> -<th class="head"><p>Manufacturer s reference</p></th> -<th class="head"><p>Web reference</p></th> -</tr> -</thead> -<tbody> -<tr class="row-even"><td><p>Spacer 3x11 mm</p></td> -<td><p>8</p></td> -<td><p>0.39</p></td> -<td><p>3.12</p></td> -<td><p>Wurth Elektronik</p></td> -<td><p>971110321</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D">https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Screw</p></td> -<td><p>4</p></td> -<td><p>0.305</p></td> -<td><p>1.22</p></td> -<td><p>APM HEXSEAL</p></td> -<td><p>RM3X8MM-2701</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D">https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D</a></p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/001.jpg" src="_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Shutdown the raspberry Pi and unplug the power supply</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/001.jpg" src="_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/002.jpg" src="_images/002.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/003.jpg" src="_images/003.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/004.jpg" src="_images/004.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/005.jpg" src="_images/005.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Plug the power supply into a socket and connect it to your -Raspberry Pi’s power port.</p></td> -</tr> -</tbody> -</table> -</div> -<div class="section" id="step-n4-measurement-board-validation"> -<h1><strong>STEP n°4</strong>: Measurement board validation<a class="headerlink" href="#step-n4-measurement-board-validation" title="Permalink to this headline">¶</a></h1> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">i2cdetect</span> <span class="o">-</span><span class="n">y</span> <span class="mi">1</span> -</pre></div> -</div> -</div></blockquote> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/i2cdetect.png" src="_images/i2cdetect.png" /> -</td> -</tr> -<tr class="row-even"><td><p>If everything is working, three I2C addresses should appear -on the screen.</p></td> -</tr> -</tbody> -</table> -<dl> -<dt>Setting up an equivalent electronic circuit, for this you will need:</dt><dd><ul class="simple"> -<li><p>4 1kohm resistor (R2)</p></li> -<li><p>1 220 ohm resistor (R1)</p></li> -<li><p>1 small padboard</p></li> -<li><p>Spool of solder</p></li> -</ul> -<table class="docutils align-left"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/ref_circuit.png" src="_images/ref_circuit.png" /> -</td> -</tr> -<tr class="row-even"><td><p>Schematic of equivalent electronic circuit test</p></td> -</tr> -</tbody> -</table> -</dd> -</dl> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/20210905_122820.jpg" src="_images/20210905_122820.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer le circuit équivalent</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/20210905_123034.jpg" src="_images/20210905_123034.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer les cables de connexion aux batterie et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/20210905_132856.jpg" src="_images/20210905_132856.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Souder les câbles et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/20210905_210045.jpg" src="_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer les cables rouges sur la borne +12V et cable noir -sur la borne ground.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="_images/20210905_210045.jpg" src="_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer le circuit de référence</p></td> -</tr> -</tbody> -</table> -<p>Run the Thonny IDE and load the code Ohmpy4elec.pi</p> -</div> -<div class="section" id="step-n5-assembly-of-the-mux-board"> -<h1><strong>STEP n°5</strong>: Assembly of the MUX board<a class="headerlink" href="#step-n5-assembly-of-the-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n6-check-mux-board"> -<h1><strong>STEP n°6</strong>: Check Mux Board<a class="headerlink" href="#step-n6-check-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n7-assemble-ohmpi"> -<h1><strong>STEP n°7</strong>: Assemble Ohmpi<a class="headerlink" href="#step-n7-assemble-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n8-boxing-ohmpi"> 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aria-label="breadcrumbs navigation"> - - <!-- <ul class="wy-breadcrumbs"> --> - <!-- <li><a href="#">Docs</a> »</li> --> - - <!-- <li>Features</li> --> - <!-- <li class="wy-breadcrumbs-aside"> --> - - <!-- <a href="_sources/index.txt" rel="nofollow"> View page source</a> --> - - <!-- </li> --> - <!-- </ul> --> - <!-- <hr/> --> - </div> - - <div role="main" class=""> - - <div id="content" class="hfeed entry-container hentry"> - <div class="section" id="step-n1-raspberry-pi-configuration"> -<h1><strong>STEP n°1</strong> : Raspberry Pi configuration<a class="headerlink" href="#step-n1-raspberry-pi-configuration" title="Permalink to this headline">¶</a></h1> -<div class="section" id="os-installation"> -<h2>OS installation<a class="headerlink" href="#os-installation" title="Permalink to this headline">¶</a></h2> -<table class="docutils align-default"> -<colgroup> -<col style="width: 78%" /> -<col style="width: 22%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -<td><p><strong>Quantity</strong></p></td> -</tr> -<tr class="row-even"><td><p>Raspberry Pi 4 Model B</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-odd"><td><p>Micro SD 32 Go</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-even"><td><p>HDMI Cable</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-odd"><td><p>Computer mouse</p></td> -<td><p>1</p></td> -</tr> -<tr class="row-even"><td><p>Computer Keyboard</p></td> -<td><p>1</p></td> -</tr> -</tbody> -</table> -<p>The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). -For this step, the installation instructions are well described on the Raspberry website</p> -<ol class="arabic simple"> -<li><p>Watch the vidéo “how to set up your raspberry Pi†(<a class="reference external" href="https://www.youtube.com/watch?v=wjWZhV1v3Pk">https://www.youtube.com/watch?v=wjWZhV1v3Pk</a>)</p></li> -<li><p>The authors recommend installing the latest stable and complete version of Raspbian by using NOOBS (a simple-to-use operating system installer).</p></li> -<li><p>or you can visit this website : (<a class="reference external" href="https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up">https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up</a>)</p></li> -</ol> -<div class="admonition note"> -<p class="admonition-title">Note</p> -<p>All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian:</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/raspbian_version.jpg"><img alt="alternate text" src="_images/raspbian_version.jpg" style="width: 800px; height: 400px;" /></a> -</div> -</div> -<div class="admonition warning"> -<p class="admonition-title">Warning</p> -<p>Once the OS has been installed, <strong>1-wire, spi and GPIO remote option</strong> must be deactivated via the Raspbian GUI settings menu. Failure to carry out this task may cause damage to the relay shield cards during measurements.</p> -</div> -<p>3. When the relays are connected to the GPIO, make sure that all the GPIOs are in the low position when the raspberry starts up. If not, the relays will activate unexpectedly. -To ensure that the GPIOs are in Low position, you will need to modify the /boot/config.txt file.</p> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">cd</span> <span class="o">/</span><span class="n">boot</span><span class="o">/</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="4"> -<li><p>Open config.txt with GNU nano editor</p></li> -</ol> -<blockquote> -<div><div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">sudo</span> <span class="n">nano</span> <span class="n">config</span><span class="o">.</span><span class="n">txt</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="5"> -<li><p>At the end of the file write :</p></li> -</ol> -<blockquote> -<div><div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">gpio</span><span class="o">=</span><span class="mi">8</span><span class="o">=</span><span class="n">op</span><span class="p">,</span><span class="n">dl</span> -<span class="n">gpio</span><span class="o">=</span><span class="mi">7</span><span class="o">=</span><span class="n">op</span><span class="p">,</span><span class="n">dl</span> -</pre></div> -</div> -</div></blockquote> -<ol class="arabic simple" start="6"> -<li><p>Press Ctrl +O to save the modifications and press enter</p></li> -<li><p>Press Ctrl +x to escap and return to the terminal</p></li> -<li><p>Close the terminal</p></li> -</ol> -</div> -<div class="section" id="virtual-environnement-and-packages"> -<h2>Virtual Environnement and packages<a class="headerlink" href="#virtual-environnement-and-packages" title="Permalink to this headline">¶</a></h2> -<p>A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. -Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages.</p> -<p>All dependencies are specified in requirements.txt</p> -<div class="admonition note"> -<p class="admonition-title">Note</p> -<p>All instructions below should be typed in the terminal</p> -</div> -<p>It is first necessary to ensure that the libatlas-base-dev library is installed:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">sudo</span> <span class="n">apt</span><span class="o">-</span><span class="n">get</span> <span class="n">install</span> <span class="n">libatlas</span><span class="o">-</span><span class="n">base</span><span class="o">-</span><span class="n">dev</span> -</pre></div> -</div> -<p>We strongly recommend users to create a virtual environment to run the code and installed all required dependencies. It can be done either in a directory gathering all virtual environments used on the computer or within the ohmpy directory.</p> -<p>Create the virtual environment:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">python3</span> <span class="o">-</span><span class="n">m</span> <span class="n">venv</span> <span class="n">ohmpy</span> -</pre></div> -</div> -<p>Activate it using the following command:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">source</span> <span class="n">ohmpy</span><span class="o">/</span><span class="nb">bin</span><span class="o">/</span><span class="n">activate</span> -</pre></div> -</div> -<p>Install packages within the virtual environment. Installing the following package should be sufficient to meet dependencies:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">pip</span> <span class="n">install</span> <span class="n">RPi</span><span class="o">.</span><span class="n">GPIO</span> <span class="n">adafruit</span><span class="o">-</span><span class="n">blinka</span> <span class="n">numpy</span> <span class="n">adafruit</span><span class="o">-</span><span class="n">circuitpython</span><span class="o">-</span><span class="n">ads1x15</span> <span class="n">pandas</span> -</pre></div> -</div> -<p>Check that requirements are met using</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">pip</span> <span class="nb">list</span> -</pre></div> -</div> -<p>You should run you code within the virtual environment -to leave the virtual environment simply type:</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">deactivate</span> -</pre></div> -</div> -</div> -<div class="section" id="activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi"> -<h2>Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi)<a class="headerlink" href="#activate-virtual-environnement-on-thonny-python-ide-on-rapberry-pi" title="Permalink to this headline">¶</a></h2> -<p>If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it.</p> -<p>1- Run the Thonny Python IDE software, Click on raspebrry acces <strong>menu > programming> Thonny pythonIDE</strong></p> -<p>2- Thonny’s interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3))</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_first_interface.jpg"><img alt="alternate text" src="_images/thonny_first_interface.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>3-Click on <strong>Run>select interpreter</strong>, a new window opens click on interpret</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_option.jpg"><img alt="alternate text" src="_images/thonny_option.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>4-On the new open windows select <strong>alternative Pyhton3 or virtual environnement</strong></p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter.jpg"><img alt="alternate text" src="_images/thonny_interpreter.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>5- New buttons appeared, selected <strong>“locate another python executable “</strong></p> -<p>6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created <strong>/home/pi/ohmpi/bin/python3</strong>.</p> -<p>7- In the <strong>known interpreter</strong> tab the path of the virtual environnementshould appear</p> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/thonny_interpreter_folder.jpg"><img alt="alternate text" src="_images/thonny_interpreter_folder.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>8- Close the window by clicking on <strong>ok</strong>.</p> -<p>9- Close thonny to save modifications</p> -</div> -</div> -<div class="section" id="step-n2-assembly-of-the-measurement-board"> -<h1><strong>STEP n°2</strong>: Assembly of the measurement board<a class="headerlink" href="#step-n2-assembly-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/00_mes_board_components.jpg"><img alt="alternate text" src="_images/00_mes_board_components.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<table class="colwidths-given docutils align-default" id="id1"> -<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id1" title="Permalink to this table">¶</a></caption> -<colgroup> -<col style="width: 8%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 9%" /> -<col style="width: 9%" /> -</colgroup> -<thead> -<tr class="row-odd"><th class="head"><p>Component</p></th> -<th class="head"><p>Number</p></th> -<th class="head"><p>Cost per unit €</p></th> -<th class="head"><p>Total cost €</p></th> -<th class="head"><p>Manufacturer</p></th> -<th class="head"><p>Manufacturer s reference</p></th> -<th class="head"><p>Web reference</p></th> -</tr> -</thead> -<tbody> -<tr class="row-even"><td><p>Raspberry Pi 4 Model B</p></td> -<td><p>1</p></td> -<td><p>58.75</p></td> -<td><p>58.75</p></td> -<td><p>Raspberry</p></td> -<td><p>Raspberry Pi 4 Model B</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D">https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>LM158N AMP-o</p></td> -<td><p>4</p></td> -<td><p>14.5</p></td> -<td><p>58</p></td> -<td><p>Texas Instruments</p></td> -<td><p>LM358AN/NOPB</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Texas-Instruments/LM158J?qs=X1J7HmVL2ZH8vpEfMl8%2FFQ%3D%3D">https://www.mouser.fr/ProductDetail/Texas-Instruments/LM158J?qs=X1J7HmVL2ZH8vpEfMl8%2FFQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Printed circuit board</p></td> -<td><p>1</p></td> -<td><p>12</p></td> -<td><p>12</p></td> -<td><p>Asler</p></td> -<td><ul class="simple"> -<li></li> -</ul> -</td> -<td><ul class="simple"> -<li></li> -</ul> -</td> -</tr> -<tr class="row-odd"><td><p>ADS1115</p></td> -<td><p>2</p></td> -<td><p>11.9</p></td> -<td><p>23.8</p></td> -<td><p>Adafruit</p></td> -<td><p>1085</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/1085?qs=%2Fha2pyFaduhE%2FOGzuTWIQ9Iz5VjaqFOYugqAlGxpEcKiGrQvF4hn%252Bg%3D%3D">https://www.mouser.fr/ProductDetail/Adafruit/1085?qs=%2Fha2pyFaduhE%2FOGzuTWIQ9Iz5VjaqFOYugqAlGxpEcKiGrQvF4hn%252Bg%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Capacitor 100nF 50Vdc 10% Ceramic</p></td> -<td><p>4</p></td> -<td><p>0.2</p></td> -<td><p>0.8</p></td> -<td><p>KEMET</p></td> -<td><p>C320C104K1</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/KEMET/C320C104K1R5TA7303?qs=c4UyoTs%2FLq1th4mcyOeTmA%3D%3D">https://www.mouser.fr/ProductDetail/KEMET/C320C104K1R5TA7303?qs=c4UyoTs%2FLq1th4mcyOeTmA%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Resistor 1 Kohm 0.5W +- 0.1%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>TE Connectivity</p></td> -<td><p>H81K0BYA</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K0BYA?qs=%2Fha2pyFaduhUylh7Az%2FmjFH2XjOUms6wZtUX4sOM%252BII%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K0BYA?qs=%2Fha2pyFaduhUylh7Az%2FmjFH2XjOUms6wZtUX4sOM%252BII%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Resistor 1.5 Kohms +- 0.1%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>TE Connectivity</p></td> -<td><p>H81K5BYA</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K5BYA?qs=%2Fha2pyFadugy9tWham3rU9HmIJOhyWhBIN95kNm%252BX%2FM%3D">https://www.mouser.fr/ProductDetail/TE-Connectivity-Holsworthy/H81K5BYA?qs=%2Fha2pyFadugy9tWham3rU9HmIJOhyWhBIN95kNm%252BX%2FM%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Resistor 1.5 Kohms +- 5%</p></td> -<td><p>2</p></td> -<td><p>1.3</p></td> -<td><p>2.6</p></td> -<td><p>Vishay</p></td> -<td><p>CCF071K50GKE36</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Dale/CCF071K50GKE36?qs=QKEOZdL6EQpA6LZRLQFVOw%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Dale/CCF071K50GKE36?qs=QKEOZdL6EQpA6LZRLQFVOw%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Resistor 10 Mohms +-5%</p></td> -<td><p>2</p></td> -<td><p>0.762</p></td> -<td><p>1.524</p></td> -<td><p>VISHAY</p></td> -<td><p>CMF651M0000FKEK143</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Vishay-Dale/CMF651M0000FKEK143?qs=CiayqK2gdcKzIA2LEVaLkg%3D%3D">https://www.mouser.fr/ProductDetail/Vishay-Dale/CMF651M0000FKEK143?qs=CiayqK2gdcKzIA2LEVaLkg%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>2 ohm shunt resistor+- 1%</p></td> -<td><p>1</p></td> -<td><p>2.42</p></td> -<td><p>2.42</p></td> -<td><p>Ohmite</p></td> -<td><p>41F2R0E</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Ohmite/41F2R0E?qs=IM6ToxQzGOAuEDprb19mHA%3D%3D">https://www.mouser.fr/ProductDetail/Ohmite/41F2R0E?qs=IM6ToxQzGOAuEDprb19mHA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Dual screw terminal (5.08-mm pitch)</p></td> -<td><p>5</p></td> -<td><p>0.648</p></td> -<td><p>3.24</p></td> -<td><p>CUI Devices</p></td> -<td><p>TB009-508-02BE</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D">https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>DC/DC converter 12 to 24V</p></td> -<td><p>2</p></td> -<td><p>15.58</p></td> -<td><p>31.16</p></td> -<td><p>TracoPower</p></td> -<td><p>TRN 3-1215</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TRACO-Power/TRN-3-1215?qs=YCa%2FAAYMW02gqUicGQj0tA%3D%3D">https://www.mouser.fr/ProductDetail/TRACO-Power/TRN-3-1215?qs=YCa%2FAAYMW02gqUicGQj0tA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>DIP Dual In Line Socket 2*4</p></td> -<td><p>3</p></td> -<td><p>0.72</p></td> -<td><p>2.16</p></td> -<td><p>Mill-Max</p></td> -<td><p>110-43-308-41-001000</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Mill-Max/110-43-308-41-001000?qs=IGgAdOvCTsTu%2FqaUr8NArg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIn_TAxbCx8wIVQ5nVCh2QaQFpEAYYCCABEgJk1_D_BwE">https://www.mouser.fr/ProductDetail/Mill-Max/110-43-308-41-001000?qs=IGgAdOvCTsTu%2FqaUr8NArg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIn_TAxbCx8wIVQ5nVCh2QaQFpEAYYCCABEgJk1_D_BwE</a></p></td> -</tr> -<tr class="row-odd"><td><p>AQY211EH</p></td> -<td><p>4</p></td> -<td><p>3.84</p></td> -<td><p>15.36</p></td> -<td><p>Panasonic Industrial Devices</p></td> -<td><p>AQY211EH</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Panasonic-Industrial-Devices/AQY211EH?qs=wKtUvITRialGIU8hcM7DvQ%3D%3D">https://www.mouser.fr/ProductDetail/Panasonic-Industrial-Devices/AQY211EH?qs=wKtUvITRialGIU8hcM7DvQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>DIP Dual In Line Socket 2*2</p></td> -<td><p>4</p></td> -<td><p>0.449</p></td> -<td><p>1.796</p></td> -<td><p>Preci-dip</p></td> -<td><p>110-83-304-41-001101</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Preci-dip/110-83-304-41-001101?qs=%2Fha2pyFadujQKqx4wAuiG%2FMGNdxMCNv%2F33Nj0gBxRocuLUcYnpyONg%3D%3D">https://www.mouser.fr/ProductDetail/Preci-dip/110-83-304-41-001101?qs=%2Fha2pyFadujQKqx4wAuiG%2FMGNdxMCNv%2F33Nj0gBxRocuLUcYnpyONg%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>SSQ-103-03-G-D</p></td> -<td><p>1</p></td> -<td><p>2.06</p></td> -<td><p>2.06</p></td> -<td><p>Samtec</p></td> -<td><p>SSQ-103-03-G-D</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSQ-103-03-G-D?qs=rU5fayqh%252BE2Z%252BZTchcPoHQ%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSQ-103-03-G-D?qs=rU5fayqh%252BE2Z%252BZTchcPoHQ%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>MCP23008</p></td> -<td><p>1</p></td> -<td><p>1.72</p></td> -<td><p>1.72</p></td> -<td><p>Adafruit</p></td> -<td><p>593</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/593?qs=sGAEpiMZZMsKEdP9slC0YYV4kPdpMD1Hts4SLctIVmw%3D">https://www.mouser.fr/ProductDetail/Adafruit/593?qs=sGAEpiMZZMsKEdP9slC0YYV4kPdpMD1Hts4SLctIVmw%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Header sets 1x10</p></td> -<td><p>2</p></td> -<td><p>2.12</p></td> -<td><p>4.24</p></td> -<td><p>Samtec</p></td> -<td><p>SSW-110-02-G-S</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSW-110-02-G-S?qs=rU5fayqh%252BE0w1ORXZiBQpw%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSW-110-02-G-S?qs=rU5fayqh%252BE0w1ORXZiBQpw%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>SMT Breakout PCB for SOIC-8</p></td> -<td><p>1</p></td> -<td><p>2.5</p></td> -<td><p>2.5</p></td> -<td><p>Adafruit</p></td> -<td><p>1212</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Adafruit/1212?qs=GURawfaeGuCAqqfvnVtyeg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIt8zJzr6x8wIVGdnVCh2vBwVsEAQYAyABEgJqG_D_BwE">https://www.mouser.fr/ProductDetail/Adafruit/1212?qs=GURawfaeGuCAqqfvnVtyeg%3D%3D&mgh=1&vip=1&gclid=EAIaIQobChMIt8zJzr6x8wIVGdnVCh2vBwVsEAQYAyABEgJqG_D_BwE</a></p></td> -</tr> -<tr class="row-odd"><td><p>INA282AID</p></td> -<td><p>1</p></td> -<td><p>4.11</p></td> -<td><p>4.11</p></td> -<td><p>Texas Instruments</p></td> -<td><p>INA282AID</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Texas-Instruments/INA282AID?qs=Ze4%2FuFuz19ILFayZXOCfrA%3D%3D">https://www.mouser.fr/ProductDetail/Texas-Instruments/INA282AID?qs=Ze4%2FuFuz19ILFayZXOCfrA%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>THD 15-1211N</p></td> -<td><p>1</p></td> -<td><p>39.72</p></td> -<td><p>39.72</p></td> -<td><p>TracoPower</p></td> -<td><p>THD 15-1211N</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/TRACO-Power/THD-15-1211N?qs=%2Fha2pyFadugpyEG4IDvm%2FMSR%252B7aN%2F0T3rUIs9PCAqJlT4%252BnRpUOOeQ%3D%3D">https://www.mouser.fr/ProductDetail/TRACO-Power/THD-15-1211N?qs=%2Fha2pyFadugpyEG4IDvm%2FMSR%252B7aN%2F0T3rUIs9PCAqJlT4%252BnRpUOOeQ%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>DIP Dual In Line Socket 2*20</p></td> -<td><p>1</p></td> -<td><p>8.53</p></td> -<td><p>8.53</p></td> -<td><p>Samtec</p></td> -<td><p>SSQ-120-23-G-D</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Samtec/SSQ-120-23-G-D?qs=rU5fayqh%252BE1BMVd%252BDZONqg%3D%3D">https://www.mouser.fr/ProductDetail/Samtec/SSQ-120-23-G-D?qs=rU5fayqh%252BE1BMVd%252BDZONqg%3D%3D</a></p></td> -</tr> -<tr class="row-even"><td><p>Pin strip no ejector</p></td> -<td><p>1</p></td> -<td><p>0.35</p></td> -<td><p>0.35</p></td> -<td><p>BLK electronic</p></td> -<td><p>10120550</p></td> -<td><p><a class="reference external" href="https://www.conrad.com/p/bkl-electronic-10120550-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-pcs-741435?searchTerm=741435&searchType=suggest&searchSuggest=product">https://www.conrad.com/p/bkl-electronic-10120550-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-pcs-741435?searchTerm=741435&searchType=suggest&searchSuggest=product</a></p></td> -</tr> -<tr class="row-odd"><td><p>Male Female spacer 2.5M HEXAGONALE</p></td> -<td><p> 4</p></td> -<td><p> 0.87</p></td> -<td><p> 3.48</p></td> -<td><p> HARWIN</p></td> -<td><p> R25-3002002</p></td> -<td><p> <a class="reference external" href="https://www.mouser.fr/ProductDetail/Harwin/R25-3002002?qs=W0yvOO0ixfENUv0hsdC4%2FQ%3D%3D">https://www.mouser.fr/ProductDetail/Harwin/R25-3002002?qs=W0yvOO0ixfENUv0hsdC4%2FQ%3D%3D</a></p></td> -</tr> -</tbody> -</table> -<div class="section" id="description"> -<h2>Description<a class="headerlink" href="#description" title="Permalink to this headline">¶</a></h2> -<div class="align-center figure"> -<a class="reference internal image-reference" href="_images/schema_measurement_board.jpg"><img alt="alternate text" src="_images/schema_measurement_board.jpg" style="width: 600px; height: 450px;" /></a> -</div> -<p>Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete “plug and play†measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps:</p> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/01_mes_board.jpg" src="_images/01_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installation of female header, 1 by10 pins, for ADS1115</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/02_mes_board.jpg" src="_images/02_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 4 dual-in-line- socket (2 by 2 pins) for -optical relay, AQY211EH.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/03_mes_board.jpg" src="_images/03_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 9 pins) -for INA282.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/04_mes_board.jpg" src="_images/04_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 1 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/05_mes_board.jpg" src="_images/05_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering of 2 dual-in-line- socket (2 by 4 pins)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/06_mes_board.jpg" src="_images/06_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco Power Supply 12V to 5V, TDH15 - 1211N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="_images/07_mes_board.jpg" src="_images/07_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals for 12V inpout et 5V outpout</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>8</p></td> -<td><img alt="_images/08_mes_board.jpg" src="_images/08_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Traco power Supply 12V to 24V, TRN-1215</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>9</p></td> -<td><img alt="_images/09_mes_board.jpg" src="_images/09_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Two screw terminals electrodes M and N</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>10</p></td> -<td><img alt="_images/10_mes_board.jpg" src="_images/10_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Four screw terminals, for 12V power supply and for -electrodes A and B</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>11</p></td> -<td><img alt="_images/11_mes_board.jpg" src="_images/11_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering three capacitors (100nF)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>12</p></td> -<td><img alt="_images/12_mes_board.jpg" src="_images/12_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>2 ohms shunt resistor pre-adjustment</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>13</p></td> -<td><img alt="_images/13_mes_board.jpg" src="_images/13_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering 2 ohms shunt resistor</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>14</p></td> -<td><img alt="_images/14_mes_board.jpg" src="_images/14_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>1 Mohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>15</p></td> -<td><img alt="_images/15_mes_board.jpg" src="_images/15_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1 Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>16</p></td> -<td><img alt="_images/16_mes_board.jpg" src="_images/16_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>17</p></td> -<td><img alt="_images/17_mes_board.jpg" src="_images/17_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Soldering tow 1.5Kohms resistors</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>18</p></td> -<td><img alt="_images/18_mes_board.jpg" src="_images/18_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Female header 2 by 20 pins for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>19</p></td> -<td><img alt="_images/19_mes_board.jpg" src="_images/19_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>View of the female header 2 by 20 pins installation -for Raspberry Pi connection</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>20</p></td> -<td><img alt="_images/20_mes_board.jpg" src="_images/20_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing MCP23008 component</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>21</p></td> -<td><img alt="_images/21_mes_board.jpg" src="_images/21_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting optical relay, AQY211EH</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>22</p></td> -<td><img alt="_images/22_mes_board.jpg" src="_images/22_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting LM158 operational amplificator</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>23</p></td> -<td><img alt="_images/23_mes_board.jpg" src="_images/23_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting ADS115 board</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 13%" /> -<col style="width: 87%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>24</p></td> -<td><img alt="_images/24_mes_board.jpg" src="_images/24_mes_board.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Fixing the INA282</p></td> -</tr> -</tbody> -</table> -</div> -</div> -<div class="section" id="step-n3-start-up-of-the-measurement-board"> -<h1><strong>STEP n°3</strong>: Start-up of the measurement board.<a class="headerlink" href="#step-n3-start-up-of-the-measurement-board" title="Permalink to this headline">¶</a></h1> -<table class="docutils align-default"> -<colgroup> -<col style="width: 100%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td><p><strong>Required components</strong></p></td> -</tr> -</tbody> -</table> -<table class="colwidths-given docutils align-default" id="id2"> -<caption><span class="caption-text">List of components</span><a class="headerlink" href="#id2" title="Permalink to this table">¶</a></caption> -<colgroup> -<col style="width: 8%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 18%" /> -<col style="width: 9%" /> -<col style="width: 9%" /> -</colgroup> -<thead> -<tr class="row-odd"><th class="head"><p>Component</p></th> -<th class="head"><p>Number</p></th> -<th class="head"><p>Cost per unit €</p></th> -<th class="head"><p>Total cost €</p></th> -<th class="head"><p>Manufacturer</p></th> -<th class="head"><p>Manufacturer s reference</p></th> -<th class="head"><p>Web reference</p></th> -</tr> -</thead> -<tbody> -<tr class="row-even"><td><p>Spacer 3x11 mm</p></td> -<td><p>8</p></td> -<td><p>0.39</p></td> -<td><p>3.12</p></td> -<td><p>Wurth Elektronik</p></td> -<td><p>971110321</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D">https://www.mouser.fr/ProductDetail/Seeed-Studio/102110421?qs=7MVldsJ5UaxeN3LYyh3sqw%3D%3D</a></p></td> -</tr> -<tr class="row-odd"><td><p>Screw</p></td> -<td><p>4</p></td> -<td><p>0.305</p></td> -<td><p>1.22</p></td> -<td><p>APM HEXSEAL</p></td> -<td><p>RM3X8MM-2701</p></td> -<td><p><a class="reference external" href="https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D">https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D</a></p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/001.jpg" src="_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Shutdown the raspberry Pi and unplug the power supply</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/001.jpg" src="_images/001.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 10%" /> -<col style="width: 90%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/002.jpg" src="_images/002.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3)</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/003.jpg" src="_images/003.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/004.jpg" src="_images/004.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Mounting the Ohmpi’s measurement board on the Raspberry Pi</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/005.jpg" src="_images/005.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Plug the power supply into a socket and connect it to your -Raspberry Pi’s power port.</p></td> -</tr> -</tbody> -</table> -</div> -<div class="section" id="step-n4-measurement-board-validation"> -<h1><strong>STEP n°4</strong>: Measurement board validation<a class="headerlink" href="#step-n4-measurement-board-validation" title="Permalink to this headline">¶</a></h1> -<blockquote> -<div><p>Run the terminal, and write</p> -<div class="highlight-python notranslate"><div class="highlight"><pre><span></span><span class="n">i2cdetect</span> <span class="o">-</span><span class="n">y</span> <span class="mi">1</span> -</pre></div> -</div> -</div></blockquote> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>1</p></td> -<td><img alt="_images/i2cdetect.png" src="_images/i2cdetect.png" /> -</td> -</tr> -<tr class="row-even"><td><p>If everything is working, three I2C addresses should appear -on the screen.</p></td> -</tr> -</tbody> -</table> -<dl> -<dt>Setting up an equivalent electronic circuit, for this you will need:</dt><dd><ul class="simple"> -<li><p>4 1kohm resistor (R2)</p></li> -<li><p>1 220 ohm resistor (R1)</p></li> -<li><p>1 small padboard</p></li> -<li><p>Spool of solder</p></li> -</ul> -<table class="docutils align-left"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>2</p></td> -<td><img alt="_images/ref_circuit.png" src="_images/ref_circuit.png" /> -</td> -</tr> -<tr class="row-even"><td><p>Schematic of equivalent electronic circuit test</p></td> -</tr> -</tbody> -</table> -</dd> -</dl> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>3</p></td> -<td><img alt="_images/20210905_122820.jpg" src="_images/20210905_122820.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer le circuit équivalent</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>4</p></td> -<td><img alt="_images/20210905_123034.jpg" src="_images/20210905_123034.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Préparer les cables de connexion aux batterie et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>5</p></td> -<td><img alt="_images/20210905_132856.jpg" src="_images/20210905_132856.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Souder les câbles et les cosses</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>6</p></td> -<td><img alt="_images/20210905_210045.jpg" src="_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer les cables rouges sur la borne +12V et cable noir -sur la borne ground.</p></td> -</tr> -</tbody> -</table> -<table class="docutils align-center"> -<colgroup> -<col style="width: 12%" /> -<col style="width: 88%" /> -</colgroup> -<tbody> -<tr class="row-odd"><td rowspan="2"><p>7</p></td> -<td><img alt="_images/20210905_210045.jpg" src="_images/20210905_210045.jpg" /> -</td> -</tr> -<tr class="row-even"><td><p>Installer le circuit de référence</p></td> -</tr> -</tbody> -</table> -<p>Run the Thonny IDE and load the code Ohmpy4elec.pi</p> -</div> -<div class="section" id="step-n5-assembly-of-the-mux-board"> -<h1><strong>STEP n°5</strong>: Assembly of the MUX board<a class="headerlink" href="#step-n5-assembly-of-the-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n6-check-mux-board"> -<h1><strong>STEP n°6</strong>: Check Mux Board<a class="headerlink" href="#step-n6-check-mux-board" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n7-assemble-ohmpi"> -<h1><strong>STEP n°7</strong>: Assemble Ohmpi<a class="headerlink" href="#step-n7-assemble-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n8-boxing-ohmpi"> -<h1><strong>STEP n°8</strong>: Boxing Ohmpi<a class="headerlink" href="#step-n8-boxing-ohmpi" title="Permalink to this headline">¶</a></h1> -</div> -<div class="section" id="step-n9-field-measurement"> -<h1><strong>STEP n°9</strong>: Field measurement<a class="headerlink" href="#step-n9-field-measurement" title="Permalink to this headline">¶</a></h1> -</div> - - - </div> - <footer> - - - <hr/> - - <div role="contentinfo"> - <p> - © Copyright 2020, INRAE, Rémi CLEMENT. - </p> - </div> - - Built with <a href="http://sphinx-doc.org/">Sphinx</a> using a <a href="https://github.com/jucacrispim/sphinx_pdj_theme">theme</a> provided by <a href="http://poraodojuca.net">Porão do Juca</a>. - -</footer> - </div> - </div> - - - <script type="text/javascript"> - var DOCUMENTATION_OPTIONS = { - URL_ROOT:'./', - VERSION:'open hardware resistivity-meter', - COLLAPSE_INDEX:false, - FILE_SUFFIX:'.html', - HAS_SOURCE: true - }; - </script> - <script type="text/javascript" src="_static/jquery.js"> - - 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b/sphinx/build/html/_images/thonny_first_interface2.jpg new file mode 100644 index 0000000000000000000000000000000000000000..1456c9172429ec3676a9485707b557df4315b26f Binary files /dev/null and b/sphinx/build/html/_images/thonny_first_interface2.jpg differ diff --git a/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt b/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt index 263e01b7a46bda0801898e491497bc4722529e80..51db436b12ff9740083e543f8be4a2ed566be331 100644 --- a/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt +++ b/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_01.rst.txt @@ -2,8 +2,8 @@ ******************************************* -OS installation -================ +**PART A** OS installation +========================== +----------------------------------------------------+---------------+ | **Required components** | **Quantity** | @@ -70,8 +70,8 @@ To ensure that the GPIOs are in Low position, you will need to modify the /boot/ 8. Close the terminal -Virtual Environnement and packages -================================== +**PART B** Virtual Environnement and packages +============================================= A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages. @@ -121,8 +121,8 @@ to leave the virtual environment simply type: deactivate -Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) -======================================================================== +**PART C** Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) +================================================================================== If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it. diff --git a/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_02 - Copie.rst.txt b/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_02 - Copie.rst.txt deleted file mode 100644 index c98864a23f267342179258e203608484e10d167a..0000000000000000000000000000000000000000 --- a/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_02 - Copie.rst.txt +++ /dev/null @@ -1,467 +0,0 @@ - -**STEP n°2**: Assembly of the measurement board -**************************************************** - -+----------------------------------------------------+ -| **Required components** | -+----------------------------------------------------+ - -.. figure:: step_n_2/00_mes_board_components.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - - - - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_2\Mesure_board_list_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -Description -========================================== - -.. figure:: schema_measurement_board.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete "plug and play" measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps: - - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/01_mes_board.jpg | - | 1 +------------------------------------------------------------+ - | | Installation of female header, 1 by10 pins, for ADS1115 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/02_mes_board.jpg | - |2 +------------------------------------------------------------+ - | | Soldering of 4 dual-in-line- socket (2 by 2 pins) for | - | | optical relay, AQY211EH. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/03_mes_board.jpg | - |3 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 9 pins) | - | | for INA282. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/04_mes_board.jpg | - | 4 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/05_mes_board.jpg | - |5 +------------------------------------------------------------+ - | | Soldering of 2 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/06_mes_board.jpg | - | 6 +------------------------------------------------------------+ - | | Traco Power Supply 12V to 5V, TDH15 - 1211N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/07_mes_board.jpg | - |7 +------------------------------------------------------------+ - | | Four screw terminals for 12V inpout et 5V outpout | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/08_mes_board.jpg | - |8 +------------------------------------------------------------+ - | | Traco power Supply 12V to 24V, TRN-1215 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/09_mes_board.jpg | - |9 +------------------------------------------------------------+ - | | Two screw terminals electrodes M and N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/10_mes_board.jpg | - |10 +------------------------------------------------------------+ - | | Four screw terminals, for 12V power supply and for | - | | electrodes A and B | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/11_mes_board.jpg | - |11 +------------------------------------------------------------+ - | | Soldering three capacitors (100nF) | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/12_mes_board.jpg | - | 12 +------------------------------------------------------------+ - | | 2 ohms shunt resistor pre-adjustment | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/13_mes_board.jpg | - |13 +------------------------------------------------------------+ - | | Soldering 2 ohms shunt resistor | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/14_mes_board.jpg | - |14 +------------------------------------------------------------+ - | | 1 Mohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/15_mes_board.jpg | - |15 +------------------------------------------------------------+ - | | Soldering tow 1 Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/16_mes_board.jpg | - |16 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/17_mes_board.jpg | - |17 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/18_mes_board.jpg | - |18 +------------------------------------------------------------+ - | | Female header 2 by 20 pins for Raspberry Pi connection | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/19_mes_board.jpg | - |19 +------------------------------------------------------------+ - | | View of the female header 2 by 20 pins installation | - | | for Raspberry Pi connection | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/20_mes_board.jpg | - |20 +------------------------------------------------------------+ - | | Fixing MCP23008 component | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/21_mes_board.jpg | - |21 +------------------------------------------------------------+ - | |Mounting optical relay, AQY211EH | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/22_mes_board.jpg | - |22 +------------------------------------------------------------+ - | | Mounting LM158 operational amplificator | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/23_mes_board.jpg | - |23 +------------------------------------------------------------+ - | | Mounting ADS115 board | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/24_mes_board.jpg | - |24 +------------------------------------------------------------+ - | | Fixing the INA282 | - | | | - +---------+------------------------------------------------------------+ - - - -**STEP n°3**: Start-up of the measurement board. -**************************************************** - -+------------------------------------------------------------------------+ -| **Required components** | -+------------------------------------------------------------------------+ - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_3\test_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |1 +------------------------------------------------------------+ - | | Shutdown the raspberry Pi and unplug the power supply | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |2 +--------------------------------------------------------------------------+ - | | Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/002.jpg | - |3 +--------------------------------------------------------------------------+ - | | Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/003.jpg | - |4 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/004.jpg | - |5 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/005.jpg | - |6 +------------------------------------------------------------+ - | | Plug the power supply into a socket and connect it to your | - | | Raspberry Pi's power port. | - +--------+------------------------------------------------------------+ - - -**STEP n°4**: Measurement board validation -**************************************************** - - Run the terminal, and write - - .. code-block:: python - - i2cdetect -y 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/i2cdetect.png | - |1 +------------------------------------------------------------+ - | |If everything is working, three I2C addresses should appear | - | |on the screen. | - +--------+------------------------------------------------------------+ - - - -Setting up an equivalent electronic circuit, for this you will need: - * 4 1kohm resistor (R2) - * 1 220 ohm resistor (R1) - * 1 small padboard - * Spool of solder - - .. table:: - :align: left - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/ref_circuit.png | - |2 +------------------------------------------------------------+ - | | Schematic of equivalent electronic circuit test | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_122820.jpg | - |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_123034.jpg | - |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_132856.jpg | - |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | - | | | - +--------+------------------------------------------------------------+ - - -Run the Thonny IDE and load the code Ohmpy4elec.pi - - -**STEP n°5**: Assembly of the MUX board -**************************************************** - - - -**STEP n°6**: Check Mux Board -**************************************************** - - - -**STEP n°7**: Assemble Ohmpi -**************************************************** - - - -**STEP n°8**: Boxing Ohmpi -**************************************************** - - - -**STEP n°9**: Field measurement -**************************************************** - \ No newline at end of file diff --git a/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt b/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt index ef6a21b71ac5851da1ca362f135e389485940f46..63caad89aa3c0842f9f7846f3f92878576f08345 100644 --- a/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt +++ b/sphinx/build/html/_sources/Ohmpi_V2_00/V2_00_step_02.rst.txt @@ -398,7 +398,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_122820.jpg | |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | + | | Prepare the equivalent electronic circuit test | +--------+------------------------------------------------------------+ @@ -408,7 +408,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_123034.jpg | |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| + | | Prepare the battery connections and the terminals. | +--------+------------------------------------------------------------+ @@ -418,7 +418,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_132856.jpg | |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | + | | Soldering cables and terminals | +--------+------------------------------------------------------------+ @@ -426,24 +426,40 @@ Setting up an equivalent electronic circuit, for this you will need: :align: center +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/c/20210905_210045.jpg | + | | .. image:: step_n_2/c/Inked20211206_150522_LI.jpg | |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | + | |Install the red cables on the +12V terminal and black cable | + | |on the ground terminal. | +--------+------------------------------------------------------------+ .. table:: :align: center +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/c/20210905_210045.jpg | + | | .. image:: step_n_2/c/Inked20211206_150522_LI2.jpg | |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | + | | Connect the equivalent electronic circuit test | | | | +--------+------------------------------------------------------------+ + + +.. table:: + :align: center + + +--------+------------------------------------------------------------+ + | | .. image:: step_n_2/c/thonny_first_interface.jpg | + |7 +------------------------------------------------------------+ + | | Run Tonny Interpreter | + | | | + +--------+------------------------------------------------------------+ -Run the Thonny IDE and load the code Ohmpy4elec.pi - - - \ No newline at end of file +.. table:: + :align: center + + +--------+------------------------------------------------------------+ + | | .. image:: step_n_2/c/20211206_144334.jpg | + |7 +------------------------------------------------------------+ + | | Run Ohmpi_4elec.py, if everything works you should | + | | get the following result | + +--------+------------------------------------------------------------+ diff --git a/sphinx/build/html/_sources/V2_00.rst.txt b/sphinx/build/html/_sources/V2_00.rst.txt index 5263c54b0263fac5142fd21a07d6a8e4424ca1d5..f08420d7b0f7a6c81f78eeb0e0ebd6f2ad13a758 100644 --- a/sphinx/build/html/_sources/V2_00.rst.txt +++ b/sphinx/build/html/_sources/V2_00.rst.txt @@ -1,6 +1,6 @@ -***************************************** -OhmPi V 2.xx (64 or 128 electrodes) -***************************************** +******************************************** +OhmPi V 2.xx (64 or 128 electrodes and 12V) +******************************************** .. figure:: Under-Construction.png :width: 500px @@ -70,6 +70,7 @@ Ohmpi 2 step by step Ohmpi_V2_00/V2_00_step_01 Ohmpi_V2_00/V2_00_step_02 + Ohmpi_V2_00/V2_00_step_03 diff --git a/sphinx/build/html/_sources/V2_00_step_01.rst.txt b/sphinx/build/html/_sources/V2_00_step_01.rst.txt deleted file mode 100644 index 8d16637f82c00ff3d9495e4f2e577c2ce0400bc1..0000000000000000000000000000000000000000 --- a/sphinx/build/html/_sources/V2_00_step_01.rst.txt +++ /dev/null @@ -1,641 +0,0 @@ -**STEP n°1** : Raspberry Pi configuration -******************************************* - - -OS installation -================ - -+----------------------------------------------------+---------------+ -| **Required components** | **Quantity** | -+----------------------------------------------------+---------------+ -|Raspberry Pi 4 Model B | 1| -+----------------------------------------------------+---------------+ -|Micro SD 32 Go | 1| -+----------------------------------------------------+---------------+ -|HDMI Cable | 1| -+----------------------------------------------------+---------------+ -|Computer mouse | 1| -+----------------------------------------------------+---------------+ -|Computer Keyboard | 1| -+----------------------------------------------------+---------------+ - -The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). -For this step, the installation instructions are well described on the Raspberry website - -1. Watch the vidéo "how to set up your raspberry Pi" (https://www.youtube.com/watch?v=wjWZhV1v3Pk) - -2. The authors recommend installing the latest stable and complete version of Raspbian by using NOOBS (a simple-to-use operating system installer). - -3. or you can visit this website : (https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up) - -.. note:: - All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian: - - .. figure:: raspbian_version.jpg - :width: 800px - :align: center - :height: 400px - :alt: alternate text - :figclass: align-center - - - -.. warning:: - Once the OS has been installed, **1-wire, spi and GPIO remote option** must be deactivated via the Raspbian GUI settings menu. Failure to carry out this task may cause damage to the relay shield cards during measurements. - -3. When the relays are connected to the GPIO, make sure that all the GPIOs are in the low position when the raspberry starts up. If not, the relays will activate unexpectedly. -To ensure that the GPIOs are in Low position, you will need to modify the /boot/config.txt file. - - Run the terminal, and write - - .. code-block:: python - - cd /boot/ - -4. Open config.txt with GNU nano editor - - .. code-block:: python - - sudo nano config.txt - -5. At the end of the file write : - - .. code-block:: python - - gpio=8=op,dl - gpio=7=op,dl - -6. Press Ctrl +O to save the modifications and press enter -7. Press Ctrl +x to escap and return to the terminal -8. Close the terminal - - -Virtual Environnement and packages -================================== - -A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. -Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages. - -All dependencies are specified in requirements.txt - -.. note:: - All instructions below should be typed in the terminal - -It is first necessary to ensure that the libatlas-base-dev library is installed: - -.. code-block:: python - - sudo apt-get install libatlas-base-dev - -We strongly recommend users to create a virtual environment to run the code and installed all required dependencies. It can be done either in a directory gathering all virtual environments used on the computer or within the ohmpy directory. - -Create the virtual environment: - -.. code-block:: python - - python3 -m venv ohmpy - -Activate it using the following command: - -.. code-block:: python - - source ohmpy/bin/activate - -Install packages within the virtual environment. Installing the following package should be sufficient to meet dependencies: - -.. code-block:: python - - pip install RPi.GPIO adafruit-blinka numpy adafruit-circuitpython-ads1x15 pandas - -Check that requirements are met using - -.. code-block:: python - - pip list - -You should run you code within the virtual environment -to leave the virtual environment simply type: - -.. code-block:: python - - deactivate - - -Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) -======================================================================== - -If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it. - -1- Run the Thonny Python IDE software, Click on raspebrry acces **menu > programming> Thonny pythonIDE** - -2- Thonny's interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3)) - -.. figure:: thonny_first_interface.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -3-Click on **Run>select interpreter**, a new window opens click on interpret - -.. figure:: thonny_option.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -4-On the new open windows select **alternative Pyhton3 or virtual environnement** - -.. figure:: thonny_interpreter.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -5- New buttons appeared, selected **"locate another python executable "** - -6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created **/home/pi/ohmpi/bin/python3**. - -7- In the **known interpreter** tab the path of the virtual environnementshould appear - -.. figure:: thonny_interpreter_folder.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -8- Close the window by clicking on **ok**. - -9- Close thonny to save modifications - - -**STEP n°2**: Assembly of the measurement board -**************************************************** - -+----------------------------------------------------+ -| **Required components** | -+----------------------------------------------------+ - -.. figure:: step_n_2/00_mes_board_components.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - - - - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_2\Mesure_board_list_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -Description -========================================== - -.. figure:: schema_measurement_board.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete "plug and play" measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps: - - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/01_mes_board.jpg | - | 1 +------------------------------------------------------------+ - | | Installation of female header, 1 by10 pins, for ADS1115 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/02_mes_board.jpg | - |2 +------------------------------------------------------------+ - | | Soldering of 4 dual-in-line- socket (2 by 2 pins) for | - | | optical relay, AQY211EH. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/03_mes_board.jpg | - |3 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 9 pins) | - | | for INA282. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/04_mes_board.jpg | - | 4 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/05_mes_board.jpg | - |5 +------------------------------------------------------------+ - | | Soldering of 2 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/06_mes_board.jpg | - | 6 +------------------------------------------------------------+ - | | Traco Power Supply 12V to 5V, TDH15 - 1211N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/07_mes_board.jpg | - |7 +------------------------------------------------------------+ - | | Four screw terminals for 12V inpout et 5V outpout | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/08_mes_board.jpg | - |8 +------------------------------------------------------------+ - | | Traco power Supply 12V to 24V, TRN-1215 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/09_mes_board.jpg | - |9 +------------------------------------------------------------+ - | | Two screw terminals electrodes M and N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/10_mes_board.jpg | - |10 +------------------------------------------------------------+ - | | Four screw terminals, for 12V power supply and for | - | | electrodes A and B | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/11_mes_board.jpg | - |11 +------------------------------------------------------------+ - | | Soldering three capacitors (100nF) | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/12_mes_board.jpg | - | 12 +------------------------------------------------------------+ - | | 2 ohms shunt resistor pre-adjustment | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/13_mes_board.jpg | - |13 +------------------------------------------------------------+ - | | Soldering 2 ohms shunt resistor | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/14_mes_board.jpg | - |14 +------------------------------------------------------------+ - | | 1 Mohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/15_mes_board.jpg | - |15 +------------------------------------------------------------+ - | | Soldering tow 1 Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/16_mes_board.jpg | - |16 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/17_mes_board.jpg | - |17 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/18_mes_board.jpg | - |18 +------------------------------------------------------------+ - | | Female header 2 by 20 pins for Raspberry Pi connection | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/19_mes_board.jpg | - |19 +------------------------------------------------------------+ - | | View of the female header 2 by 20 pins installation | - | | for Raspberry Pi connection | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/20_mes_board.jpg | - |20 +------------------------------------------------------------+ - | | Fixing MCP23008 component | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/21_mes_board.jpg | - |21 +------------------------------------------------------------+ - | |Mounting optical relay, AQY211EH | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/22_mes_board.jpg | - |22 +------------------------------------------------------------+ - | | Mounting LM158 operational amplificator | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/23_mes_board.jpg | - |23 +------------------------------------------------------------+ - | | Mounting ADS115 board | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/24_mes_board.jpg | - |24 +------------------------------------------------------------+ - | | Fixing the INA282 | - | | | - +---------+------------------------------------------------------------+ - - - -**STEP n°3**: Start-up of the measurement board. -**************************************************** - -+------------------------------------------------------------------------+ -| **Required components** | -+------------------------------------------------------------------------+ - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_3\test_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |1 +------------------------------------------------------------+ - | | Shutdown the raspberry Pi and unplug the power supply | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |2 +--------------------------------------------------------------------------+ - | | Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/002.jpg | - |3 +--------------------------------------------------------------------------+ - | | Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/003.jpg | - |4 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/004.jpg | - |5 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/005.jpg | - |6 +------------------------------------------------------------+ - | | Plug the power supply into a socket and connect it to your | - | | Raspberry Pi's power port. | - +--------+------------------------------------------------------------+ - - -**STEP n°4**: Measurement board validation -**************************************************** - - Run the terminal, and write - - .. code-block:: python - - i2cdetect -y 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/i2cdetect.png | - |1 +------------------------------------------------------------+ - | |If everything is working, three I2C addresses should appear | - | |on the screen. | - +--------+------------------------------------------------------------+ - - - -Setting up an equivalent electronic circuit, for this you will need: - * 4 1kohm resistor (R2) - * 1 220 ohm resistor (R1) - * 1 small padboard - * Spool of solder - - .. table:: - :align: left - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/ref_circuit.png | - |2 +------------------------------------------------------------+ - | | Schematic of equivalent electronic circuit test | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_122820.jpg | - |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_123034.jpg | - |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_132856.jpg | - |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | - | | | - +--------+------------------------------------------------------------+ - - -Run the Thonny IDE and load the code Ohmpy4elec.pi - - -**STEP n°5**: Assembly of the MUX board -**************************************************** - - - -**STEP n°6**: Check Mux Board -**************************************************** - - - -**STEP n°7**: Assemble Ohmpi -**************************************************** - - - -**STEP n°8**: Boxing Ohmpi -**************************************************** - - - -**STEP n°9**: Field measurement -**************************************************** - \ No newline at end of file diff --git a/sphinx/build/html/_sources/V2_00_stpe_01.rst.txt b/sphinx/build/html/_sources/V2_00_stpe_01.rst.txt deleted file mode 100644 index 8d16637f82c00ff3d9495e4f2e577c2ce0400bc1..0000000000000000000000000000000000000000 --- a/sphinx/build/html/_sources/V2_00_stpe_01.rst.txt +++ /dev/null @@ -1,641 +0,0 @@ -**STEP n°1** : Raspberry Pi configuration -******************************************* - - -OS installation -================ - -+----------------------------------------------------+---------------+ -| **Required components** | **Quantity** | -+----------------------------------------------------+---------------+ -|Raspberry Pi 4 Model B | 1| -+----------------------------------------------------+---------------+ -|Micro SD 32 Go | 1| -+----------------------------------------------------+---------------+ -|HDMI Cable | 1| -+----------------------------------------------------+---------------+ -|Computer mouse | 1| -+----------------------------------------------------+---------------+ -|Computer Keyboard | 1| -+----------------------------------------------------+---------------+ - -The first step is to start up the Raspberry Pi board, including installation of an OS (operating system). -For this step, the installation instructions are well described on the Raspberry website - -1. Watch the vidéo "how to set up your raspberry Pi" (https://www.youtube.com/watch?v=wjWZhV1v3Pk) - -2. The authors recommend installing the latest stable and complete version of Raspbian by using NOOBS (a simple-to-use operating system installer). - -3. or you can visit this website : (https://projects.raspberrypi.org/en/projects/raspberry-pi-setting-up) - -.. note:: - All the development tests were performed on Raspberry Pi 3 Model B, we used the following version of Raspbian: - - .. figure:: raspbian_version.jpg - :width: 800px - :align: center - :height: 400px - :alt: alternate text - :figclass: align-center - - - -.. warning:: - Once the OS has been installed, **1-wire, spi and GPIO remote option** must be deactivated via the Raspbian GUI settings menu. Failure to carry out this task may cause damage to the relay shield cards during measurements. - -3. When the relays are connected to the GPIO, make sure that all the GPIOs are in the low position when the raspberry starts up. If not, the relays will activate unexpectedly. -To ensure that the GPIOs are in Low position, you will need to modify the /boot/config.txt file. - - Run the terminal, and write - - .. code-block:: python - - cd /boot/ - -4. Open config.txt with GNU nano editor - - .. code-block:: python - - sudo nano config.txt - -5. At the end of the file write : - - .. code-block:: python - - gpio=8=op,dl - gpio=7=op,dl - -6. Press Ctrl +O to save the modifications and press enter -7. Press Ctrl +x to escap and return to the terminal -8. Close the terminal - - -Virtual Environnement and packages -================================== - -A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. -Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages. - -All dependencies are specified in requirements.txt - -.. note:: - All instructions below should be typed in the terminal - -It is first necessary to ensure that the libatlas-base-dev library is installed: - -.. code-block:: python - - sudo apt-get install libatlas-base-dev - -We strongly recommend users to create a virtual environment to run the code and installed all required dependencies. It can be done either in a directory gathering all virtual environments used on the computer or within the ohmpy directory. - -Create the virtual environment: - -.. code-block:: python - - python3 -m venv ohmpy - -Activate it using the following command: - -.. code-block:: python - - source ohmpy/bin/activate - -Install packages within the virtual environment. Installing the following package should be sufficient to meet dependencies: - -.. code-block:: python - - pip install RPi.GPIO adafruit-blinka numpy adafruit-circuitpython-ads1x15 pandas - -Check that requirements are met using - -.. code-block:: python - - pip list - -You should run you code within the virtual environment -to leave the virtual environment simply type: - -.. code-block:: python - - deactivate - - -Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) -======================================================================== - -If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it. - -1- Run the Thonny Python IDE software, Click on raspebrry acces **menu > programming> Thonny pythonIDE** - -2- Thonny's interface opens, Python runs on the Root (Python 3.7.3 (/usr/bin/python3)) - -.. figure:: thonny_first_interface.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -3-Click on **Run>select interpreter**, a new window opens click on interpret - -.. figure:: thonny_option.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -4-On the new open windows select **alternative Pyhton3 or virtual environnement** - -.. figure:: thonny_interpreter.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -5- New buttons appeared, selected **"locate another python executable "** - -6- A new window opens, find the folder where there is the python 3 file in the virtual environment folder previously created **/home/pi/ohmpi/bin/python3**. - -7- In the **known interpreter** tab the path of the virtual environnementshould appear - -.. figure:: thonny_interpreter_folder.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -8- Close the window by clicking on **ok**. - -9- Close thonny to save modifications - - -**STEP n°2**: Assembly of the measurement board -**************************************************** - -+----------------------------------------------------+ -| **Required components** | -+----------------------------------------------------+ - -.. figure:: step_n_2/00_mes_board_components.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - - - - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_2\Mesure_board_list_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -Description -========================================== - -.. figure:: schema_measurement_board.jpg - :width: 600px - :align: center - :height: 450px - :alt: alternate text - :figclass: align-center - -Figure shows the general schematics for the electronic measurement board developed. -We have developed a complete "plug and play" measurement board. To measure electrical resistivity with Raspberry Pi. -two ADS1115 were used,one for the voltage measurement one for the current measurement, as proposed by Florsch [7]. The ADS1115 -is a 16-bit ADC (Analog-to-Digital Converter), with an adaptable gain. The advantage of ADS1115 is that the -input signal value could lie between - to + 6.114 V. For the current measurement we have directly integrated the INA282 component, -which allows to realize precise current measurement around a shunt resistor. The assembly steps are described in the following steps: - - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/01_mes_board.jpg | - | 1 +------------------------------------------------------------+ - | | Installation of female header, 1 by10 pins, for ADS1115 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/02_mes_board.jpg | - |2 +------------------------------------------------------------+ - | | Soldering of 4 dual-in-line- socket (2 by 2 pins) for | - | | optical relay, AQY211EH. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/03_mes_board.jpg | - |3 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 9 pins) | - | | for INA282. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/04_mes_board.jpg | - | 4 +------------------------------------------------------------+ - | | Soldering of 1 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/05_mes_board.jpg | - |5 +------------------------------------------------------------+ - | | Soldering of 2 dual-in-line- socket (2 by 4 pins) | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/06_mes_board.jpg | - | 6 +------------------------------------------------------------+ - | | Traco Power Supply 12V to 5V, TDH15 - 1211N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/07_mes_board.jpg | - |7 +------------------------------------------------------------+ - | | Four screw terminals for 12V inpout et 5V outpout | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/08_mes_board.jpg | - |8 +------------------------------------------------------------+ - | | Traco power Supply 12V to 24V, TRN-1215 | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/09_mes_board.jpg | - |9 +------------------------------------------------------------+ - | | Two screw terminals electrodes M and N | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/10_mes_board.jpg | - |10 +------------------------------------------------------------+ - | | Four screw terminals, for 12V power supply and for | - | | electrodes A and B | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/11_mes_board.jpg | - |11 +------------------------------------------------------------+ - | | Soldering three capacitors (100nF) | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/12_mes_board.jpg | - | 12 +------------------------------------------------------------+ - | | 2 ohms shunt resistor pre-adjustment | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/13_mes_board.jpg | - |13 +------------------------------------------------------------+ - | | Soldering 2 ohms shunt resistor | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/14_mes_board.jpg | - |14 +------------------------------------------------------------+ - | | 1 Mohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/15_mes_board.jpg | - |15 +------------------------------------------------------------+ - | | Soldering tow 1 Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/16_mes_board.jpg | - |16 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/17_mes_board.jpg | - |17 +------------------------------------------------------------+ - | | Soldering tow 1.5Kohms resistors | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/18_mes_board.jpg | - |18 +------------------------------------------------------------+ - | | Female header 2 by 20 pins for Raspberry Pi connection | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/19_mes_board.jpg | - |19 +------------------------------------------------------------+ - | | View of the female header 2 by 20 pins installation | - | | for Raspberry Pi connection | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/20_mes_board.jpg | - |20 +------------------------------------------------------------+ - | | Fixing MCP23008 component | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/21_mes_board.jpg | - |21 +------------------------------------------------------------+ - | |Mounting optical relay, AQY211EH | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/22_mes_board.jpg | - |22 +------------------------------------------------------------+ - | | Mounting LM158 operational amplificator | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/23_mes_board.jpg | - |23 +------------------------------------------------------------+ - | | Mounting ADS115 board | - | | | - +---------+------------------------------------------------------------+ - -.. table:: - :align: center - - +---------+------------------------------------------------------------+ - | | .. image:: step_n_2/24_mes_board.jpg | - |24 +------------------------------------------------------------+ - | | Fixing the INA282 | - | | | - +---------+------------------------------------------------------------+ - - - -**STEP n°3**: Start-up of the measurement board. -**************************************************** - -+------------------------------------------------------------------------+ -| **Required components** | -+------------------------------------------------------------------------+ - -.. csv-table:: List of components - :file: C:\Users\remi.clement\Documents\28_ohmpi_all_git\master2\sphinx\source\step_n_3\test_2_xx.csv - :widths: 30, 70, 70, 70, 70, 35, 35 - :header-rows: 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |1 +------------------------------------------------------------+ - | | Shutdown the raspberry Pi and unplug the power supply | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/001.jpg | - |2 +--------------------------------------------------------------------------+ - | | Mounting the bottom spacers on the Raspberry Pi (male/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+--------------------------------------------------------------------------+ - | | .. image:: step_n_3/002.jpg | - |3 +--------------------------------------------------------------------------+ - | | Mounting the upper spacers on the Raspberry Pi (female/female, 11mm, M3) | - | | | - +--------+--------------------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/003.jpg | - |4 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/004.jpg | - |5 +------------------------------------------------------------+ - | | Mounting the Ohmpi's measurement board on the Raspberry Pi | - | | | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_3/005.jpg | - |6 +------------------------------------------------------------+ - | | Plug the power supply into a socket and connect it to your | - | | Raspberry Pi's power port. | - +--------+------------------------------------------------------------+ - - -**STEP n°4**: Measurement board validation -**************************************************** - - Run the terminal, and write - - .. code-block:: python - - i2cdetect -y 1 - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/i2cdetect.png | - |1 +------------------------------------------------------------+ - | |If everything is working, three I2C addresses should appear | - | |on the screen. | - +--------+------------------------------------------------------------+ - - - -Setting up an equivalent electronic circuit, for this you will need: - * 4 1kohm resistor (R2) - * 1 220 ohm resistor (R1) - * 1 small padboard - * Spool of solder - - .. table:: - :align: left - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/ref_circuit.png | - |2 +------------------------------------------------------------+ - | | Schematic of equivalent electronic circuit test | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_122820.jpg | - |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_123034.jpg | - |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_132856.jpg | - |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | - +--------+------------------------------------------------------------+ - - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | - +--------+------------------------------------------------------------+ - -.. table:: - :align: center - - +--------+------------------------------------------------------------+ - | | .. image:: step_n_4/20210905_210045.jpg | - |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | - | | | - +--------+------------------------------------------------------------+ - - -Run the Thonny IDE and load the code Ohmpy4elec.pi - - -**STEP n°5**: Assembly of the MUX board -**************************************************** - - - -**STEP n°6**: Check Mux Board -**************************************************** - - - -**STEP n°7**: Assemble Ohmpi -**************************************************** - - - -**STEP n°8**: Boxing Ohmpi -**************************************************** - - - -**STEP n°9**: Field measurement -**************************************************** - \ No newline at end of file diff --git a/sphinx/build/html/_sources/test.rst.txt b/sphinx/build/html/_sources/test.rst.txt deleted file mode 100644 index 1163db63e49ef6639c2454c10662a8d0a0deebbf..0000000000000000000000000000000000000000 --- a/sphinx/build/html/_sources/test.rst.txt +++ /dev/null @@ -1,42 +0,0 @@ -.. Ohmpi documentation master file, created by - sphinx-quickstart on Tue Jun 30 20:22:03 2020. - You can adapt this file completely to your liking, but it should at least - contain the root `toctree` directive. - -OHMPI: Open source and open hardware resitivity-meter -===================================================== - -.. sidebar:: Summary - - :Release: |release| - :Date: |today| - :Date start: July 2016 - :Authors: **Rémi CLEMENT, Nicolas FORQUET, Julien GANCE, Yannick FARGIER, Vivien DUBOIS, Hélène GUYARD, Olivier KAUFMANN** - :Target: users, researchers and developers - :status: some mature, some in progress - -.. topic:: OhmPi Document Center - - * OhmPi offcial documents - * Release guidelines - * General tutorials - -.. image:: logo_ohmpi.JPG - :width: 200px - :height: 150px - :align: center - -Contents: - -.. toctree:: - :maxdepth: 2 - - Ohmpi - V1_01 - V1_02 - V2_00 - - - - - diff --git a/sphinx/build/html/_static/classic.css b/sphinx/build/html/_static/classic.css deleted 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This helper accumulates all remaining arguments past the function’s - // argument length (or an explicit `startIndex`), into an array that becomes - // the last argument. Similar to ES6’s "rest parameter". - function restArguments(func, startIndex) { - startIndex = startIndex == null ? func.length - 1 : +startIndex; - return function() { - var length = Math.max(arguments.length - startIndex, 0), - rest = Array(length), - index = 0; - for (; index < length; index++) { - rest[index] = arguments[index + startIndex]; - } - switch (startIndex) { - case 0: return func.call(this, rest); - case 1: return func.call(this, arguments[0], rest); - case 2: return func.call(this, arguments[0], arguments[1], rest); - } - var args = Array(startIndex + 1); - for (index = 0; index < startIndex; index++) { - args[index] = arguments[index]; - } - args[startIndex] = rest; - return func.apply(this, args); - }; - } - - // Is a given variable an object? - function isObject(obj) { - var type = typeof obj; - return type === 'function' || type === 'object' && !!obj; - } - - // Is a given value equal to null? - function isNull(obj) { - return obj === null; - } - - // Is a given variable undefined? - function isUndefined(obj) { - return obj === void 0; - } - - // Is a given value a boolean? - function isBoolean(obj) { - return obj === true || obj === false || toString.call(obj) === '[object Boolean]'; - } - - // Is a given value a DOM element? - function isElement(obj) { - return !!(obj && obj.nodeType === 1); - } - - // Internal function for creating a `toString`-based type tester. - function tagTester(name) { - var tag = '[object ' + name + ']'; - return function(obj) { - return toString.call(obj) === tag; - }; - } - - var isString = tagTester('String'); - - var isNumber = tagTester('Number'); - - var isDate = tagTester('Date'); - - var isRegExp = tagTester('RegExp'); - - var isError = tagTester('Error'); - - var isSymbol = tagTester('Symbol'); - - var isArrayBuffer = tagTester('ArrayBuffer'); - - var isFunction = tagTester('Function'); - - // Optimize `isFunction` if appropriate. Work around some `typeof` bugs in old - // v8, IE 11 (#1621), Safari 8 (#1929), and PhantomJS (#2236). - var nodelist = root.document && root.document.childNodes; - if (typeof /./ != 'function' && typeof Int8Array != 'object' && typeof nodelist != 'function') { - isFunction = function(obj) { - return typeof obj == 'function' || false; - }; - } - - var isFunction$1 = isFunction; - - var hasObjectTag = tagTester('Object'); - - // In IE 10 - Edge 13, `DataView` has string tag `'[object Object]'`. - // In IE 11, the most common among them, this problem also applies to - // `Map`, `WeakMap` and `Set`. - var hasStringTagBug = ( - supportsDataView && hasObjectTag(new DataView(new ArrayBuffer(8))) - ), - isIE11 = (typeof Map !== 'undefined' && hasObjectTag(new Map)); - - var isDataView = tagTester('DataView'); - - // In IE 10 - Edge 13, we need a different heuristic - // to determine whether an object is a `DataView`. - function ie10IsDataView(obj) { - return obj != null && isFunction$1(obj.getInt8) && isArrayBuffer(obj.buffer); - } - - var isDataView$1 = (hasStringTagBug ? ie10IsDataView : isDataView); - - // Is a given value an array? - // Delegates to ECMA5's native `Array.isArray`. - var isArray = nativeIsArray || tagTester('Array'); - - // Internal function to check whether `key` is an own property name of `obj`. - function has$1(obj, key) { - return obj != null && hasOwnProperty.call(obj, key); - } - - var isArguments = tagTester('Arguments'); - - // Define a fallback version of the method in browsers (ahem, IE < 9), where - // there isn't any inspectable "Arguments" type. - (function() { - if (!isArguments(arguments)) { - isArguments = function(obj) { - return has$1(obj, 'callee'); - }; - } - }()); - - var isArguments$1 = isArguments; - - // Is a given object a finite number? - function isFinite$1(obj) { - return !isSymbol(obj) && _isFinite(obj) && !isNaN(parseFloat(obj)); - } - - // Is the given value `NaN`? - function isNaN$1(obj) { - return isNumber(obj) && _isNaN(obj); - } - - // Predicate-generating function. Often useful outside of Underscore. - function constant(value) { - return function() { - return value; - }; - } - - // Common internal logic for `isArrayLike` and `isBufferLike`. - function createSizePropertyCheck(getSizeProperty) { - return function(collection) { - var sizeProperty = getSizeProperty(collection); - return typeof sizeProperty == 'number' && sizeProperty >= 0 && sizeProperty <= MAX_ARRAY_INDEX; - } - } - - // Internal helper to generate a function to obtain property `key` from `obj`. - function shallowProperty(key) { - return function(obj) { - return obj == null ? void 0 : obj[key]; - }; - } - - // Internal helper to obtain the `byteLength` property of an object. - var getByteLength = shallowProperty('byteLength'); - - // Internal helper to determine whether we should spend extensive checks against - // `ArrayBuffer` et al. - var isBufferLike = createSizePropertyCheck(getByteLength); - - // Is a given value a typed array? - var typedArrayPattern = /\[object ((I|Ui)nt(8|16|32)|Float(32|64)|Uint8Clamped|Big(I|Ui)nt64)Array\]/; - function isTypedArray(obj) { - // `ArrayBuffer.isView` is the most future-proof, so use it when available. - // Otherwise, fall back on the above regular expression. - return nativeIsView ? (nativeIsView(obj) && !isDataView$1(obj)) : - isBufferLike(obj) && typedArrayPattern.test(toString.call(obj)); - } - - var isTypedArray$1 = supportsArrayBuffer ? isTypedArray : constant(false); - - // Internal helper to obtain the `length` property of an object. - var getLength = shallowProperty('length'); - - // Internal helper to create a simple lookup structure. - // `collectNonEnumProps` used to depend on `_.contains`, but this led to - // circular imports. `emulatedSet` is a one-off solution that only works for - // arrays of strings. - function emulatedSet(keys) { - var hash = {}; - for (var l = keys.length, i = 0; i < l; ++i) hash[keys[i]] = true; - return { - contains: function(key) { return hash[key]; }, - push: function(key) { - hash[key] = true; - return keys.push(key); - } - }; - } - - // Internal helper. Checks `keys` for the presence of keys in IE < 9 that won't - // be iterated by `for key in ...` and thus missed. Extends `keys` in place if - // needed. - function collectNonEnumProps(obj, keys) { - keys = emulatedSet(keys); - var nonEnumIdx = nonEnumerableProps.length; - var constructor = obj.constructor; - var proto = isFunction$1(constructor) && constructor.prototype || ObjProto; - - // Constructor is a special case. - var prop = 'constructor'; - if (has$1(obj, prop) && !keys.contains(prop)) keys.push(prop); - - while (nonEnumIdx--) { - prop = nonEnumerableProps[nonEnumIdx]; - if (prop in obj && obj[prop] !== proto[prop] && !keys.contains(prop)) { - keys.push(prop); - } - } - } - - // Retrieve the names of an object's own properties. - // Delegates to **ECMAScript 5**'s native `Object.keys`. - function keys(obj) { - if (!isObject(obj)) return []; - if (nativeKeys) return nativeKeys(obj); - var keys = []; - for (var key in obj) if (has$1(obj, key)) keys.push(key); - // Ahem, IE < 9. - if (hasEnumBug) collectNonEnumProps(obj, keys); - return keys; - } - - // Is a given array, string, or object empty? - // An "empty" object has no enumerable own-properties. - function isEmpty(obj) { - if (obj == null) return true; - // Skip the more expensive `toString`-based type checks if `obj` has no - // `.length`. - var length = getLength(obj); - if (typeof length == 'number' && ( - isArray(obj) || isString(obj) || isArguments$1(obj) - )) return length === 0; - return getLength(keys(obj)) === 0; - } - - // Returns whether an object has a given set of `key:value` pairs. - function isMatch(object, attrs) { - var _keys = keys(attrs), length = _keys.length; - if (object == null) return !length; - var obj = Object(object); - for (var i = 0; i < length; i++) { - var key = _keys[i]; - if (attrs[key] !== obj[key] || !(key in obj)) return false; - } - return true; - } - - // If Underscore is called as a function, it returns a wrapped object that can - // be used OO-style. This wrapper holds altered versions of all functions added - // through `_.mixin`. Wrapped objects may be chained. - function _$1(obj) { - if (obj instanceof _$1) return obj; - if (!(this instanceof _$1)) return new _$1(obj); - this._wrapped = obj; - } - - _$1.VERSION = VERSION; - - // Extracts the result from a wrapped and chained object. - _$1.prototype.value = function() { - return this._wrapped; - }; - - // Provide unwrapping proxies for some methods used in engine operations - // such as arithmetic and JSON stringification. - _$1.prototype.valueOf = _$1.prototype.toJSON = _$1.prototype.value; - - _$1.prototype.toString = function() { - return String(this._wrapped); - }; - - // Internal function to wrap or shallow-copy an ArrayBuffer, - // typed array or DataView to a new view, reusing the buffer. - function toBufferView(bufferSource) { - return new Uint8Array( - bufferSource.buffer || bufferSource, - bufferSource.byteOffset || 0, - getByteLength(bufferSource) - ); - } - - // We use this string twice, so give it a name for minification. - var tagDataView = '[object DataView]'; - - // Internal recursive comparison function for `_.isEqual`. - function eq(a, b, aStack, bStack) { - // Identical objects are equal. `0 === -0`, but they aren't identical. - // See the [Harmony `egal` proposal](https://wiki.ecmascript.org/doku.php?id=harmony:egal). - if (a === b) return a !== 0 || 1 / a === 1 / b; - // `null` or `undefined` only equal to itself (strict comparison). - if (a == null || b == null) return false; - // `NaN`s are equivalent, but non-reflexive. - if (a !== a) return b !== b; - // Exhaust primitive checks - var type = typeof a; - if (type !== 'function' && type !== 'object' && typeof b != 'object') return false; - return deepEq(a, b, aStack, bStack); - } - - // Internal recursive comparison function for `_.isEqual`. - function deepEq(a, b, aStack, bStack) { - // Unwrap any wrapped objects. - if (a instanceof _$1) a = a._wrapped; - if (b instanceof _$1) b = b._wrapped; - // Compare `[[Class]]` names. - var className = toString.call(a); - if (className !== toString.call(b)) return false; - // Work around a bug in IE 10 - Edge 13. - if (hasStringTagBug && className == '[object Object]' && isDataView$1(a)) { - if (!isDataView$1(b)) return false; - className = tagDataView; - } - switch (className) { - // These types are compared by value. - case '[object RegExp]': - // RegExps are coerced to strings for comparison (Note: '' + /a/i === '/a/i') - case '[object String]': - // Primitives and their corresponding object wrappers are equivalent; thus, `"5"` is - // equivalent to `new String("5")`. - return '' + a === '' + b; - case '[object Number]': - // `NaN`s are equivalent, but non-reflexive. - // Object(NaN) is equivalent to NaN. - if (+a !== +a) return +b !== +b; - // An `egal` comparison is performed for other numeric values. - return +a === 0 ? 1 / +a === 1 / b : +a === +b; - case '[object Date]': - case '[object Boolean]': - // Coerce dates and booleans to numeric primitive values. Dates are compared by their - // millisecond representations. Note that invalid dates with millisecond representations - // of `NaN` are not equivalent. - return +a === +b; - case '[object Symbol]': - return SymbolProto.valueOf.call(a) === SymbolProto.valueOf.call(b); - case '[object ArrayBuffer]': - case tagDataView: - // Coerce to typed array so we can fall through. - return deepEq(toBufferView(a), toBufferView(b), aStack, bStack); - } - - var areArrays = className === '[object Array]'; - if (!areArrays && isTypedArray$1(a)) { - var byteLength = getByteLength(a); - if (byteLength !== getByteLength(b)) return false; - if (a.buffer === b.buffer && a.byteOffset === b.byteOffset) return true; - areArrays = true; - } - if (!areArrays) { - if (typeof a != 'object' || typeof b != 'object') return false; - - // Objects with different constructors are not equivalent, but `Object`s or `Array`s - // from different frames are. - var aCtor = a.constructor, bCtor = b.constructor; - if (aCtor !== bCtor && !(isFunction$1(aCtor) && aCtor instanceof aCtor && - isFunction$1(bCtor) && bCtor instanceof bCtor) - && ('constructor' in a && 'constructor' in b)) { - return false; - } - } - // Assume equality for cyclic structures. The algorithm for detecting cyclic - // structures is adapted from ES 5.1 section 15.12.3, abstract operation `JO`. - - // Initializing stack of traversed objects. - // It's done here since we only need them for objects and arrays comparison. - aStack = aStack || []; - bStack = bStack || []; - var length = aStack.length; - while (length--) { - // Linear search. Performance is inversely proportional to the number of - // unique nested structures. - if (aStack[length] === a) return bStack[length] === b; - } - - // Add the first object to the stack of traversed objects. - aStack.push(a); - bStack.push(b); - - // Recursively compare objects and arrays. - if (areArrays) { - // Compare array lengths to determine if a deep comparison is necessary. - length = a.length; - if (length !== b.length) return false; - // Deep compare the contents, ignoring non-numeric properties. - while (length--) { - if (!eq(a[length], b[length], aStack, bStack)) return false; - } - } else { - // Deep compare objects. - var _keys = keys(a), key; - length = _keys.length; - // Ensure that both objects contain the same number of properties before comparing deep equality. - if (keys(b).length !== length) return false; - while (length--) { - // Deep compare each member - key = _keys[length]; - if (!(has$1(b, key) && eq(a[key], b[key], aStack, bStack))) return false; - } - } - // Remove the first object from the stack of traversed objects. - aStack.pop(); - bStack.pop(); - return true; - } - - // Perform a deep comparison to check if two objects are equal. - function isEqual(a, b) { - return eq(a, b); - } - - // Retrieve all the enumerable property names of an object. - function allKeys(obj) { - if (!isObject(obj)) return []; - var keys = []; - for (var key in obj) keys.push(key); - // Ahem, IE < 9. - if (hasEnumBug) collectNonEnumProps(obj, keys); - return keys; - } - - // Since the regular `Object.prototype.toString` type tests don't work for - // some types in IE 11, we use a fingerprinting heuristic instead, based - // on the methods. It's not great, but it's the best we got. - // The fingerprint method lists are defined below. - function ie11fingerprint(methods) { - var length = getLength(methods); - return function(obj) { - if (obj == null) return false; - // `Map`, `WeakMap` and `Set` have no enumerable keys. - var keys = allKeys(obj); - if (getLength(keys)) return false; - for (var i = 0; i < length; i++) { - if (!isFunction$1(obj[methods[i]])) return false; - } - // If we are testing against `WeakMap`, we need to ensure that - // `obj` doesn't have a `forEach` method in order to distinguish - // it from a regular `Map`. - return methods !== weakMapMethods || !isFunction$1(obj[forEachName]); - }; - } - - // In the interest of compact minification, we write - // each string in the fingerprints only once. - var forEachName = 'forEach', - hasName = 'has', - commonInit = ['clear', 'delete'], - mapTail = ['get', hasName, 'set']; - - // `Map`, `WeakMap` and `Set` each have slightly different - // combinations of the above sublists. - var mapMethods = commonInit.concat(forEachName, mapTail), - weakMapMethods = commonInit.concat(mapTail), - setMethods = ['add'].concat(commonInit, forEachName, hasName); - - var isMap = isIE11 ? ie11fingerprint(mapMethods) : tagTester('Map'); - - var isWeakMap = isIE11 ? ie11fingerprint(weakMapMethods) : tagTester('WeakMap'); - - var isSet = isIE11 ? ie11fingerprint(setMethods) : tagTester('Set'); - - var isWeakSet = tagTester('WeakSet'); - - // Retrieve the values of an object's properties. - function values(obj) { - var _keys = keys(obj); - var length = _keys.length; - var values = Array(length); - for (var i = 0; i < length; i++) { - values[i] = obj[_keys[i]]; - } - return values; - } - - // Convert an object into a list of `[key, value]` pairs. - // The opposite of `_.object` with one argument. - function pairs(obj) { - var _keys = keys(obj); - var length = _keys.length; - var pairs = Array(length); - for (var i = 0; i < length; i++) { - pairs[i] = [_keys[i], obj[_keys[i]]]; - } - return pairs; - } - - // Invert the keys and values of an object. The values must be serializable. - function invert(obj) { - var result = {}; - var _keys = keys(obj); - for (var i = 0, length = _keys.length; i < length; i++) { - result[obj[_keys[i]]] = _keys[i]; - } - return result; - } - - // Return a sorted list of the function names available on the object. - function functions(obj) { - var names = []; - for (var key in obj) { - if (isFunction$1(obj[key])) names.push(key); - } - return names.sort(); - } - - // An internal function for creating assigner functions. - function createAssigner(keysFunc, defaults) { - return function(obj) { - var length = arguments.length; - if (defaults) obj = Object(obj); - if (length < 2 || obj == null) return obj; - for (var index = 1; index < length; index++) { - var source = arguments[index], - keys = keysFunc(source), - l = keys.length; - for (var i = 0; i < l; i++) { - var key = keys[i]; - if (!defaults || obj[key] === void 0) obj[key] = source[key]; - } - } - return obj; - }; - } - - // Extend a given object with all the properties in passed-in object(s). - var extend = createAssigner(allKeys); - - // Assigns a given object with all the own properties in the passed-in - // object(s). - // (https://developer.mozilla.org/docs/Web/JavaScript/Reference/Global_Objects/Object/assign) - var extendOwn = createAssigner(keys); - - // Fill in a given object with default properties. - var defaults = createAssigner(allKeys, true); - - // Create a naked function reference for surrogate-prototype-swapping. - function ctor() { - return function(){}; - } - - // An internal function for creating a new object that inherits from another. - function baseCreate(prototype) { - if (!isObject(prototype)) return {}; - if (nativeCreate) return nativeCreate(prototype); - var Ctor = ctor(); - Ctor.prototype = prototype; - var result = new Ctor; - Ctor.prototype = null; - return result; - } - - // Creates an object that inherits from the given prototype object. - // If additional properties are provided then they will be added to the - // created object. - function create(prototype, props) { - var result = baseCreate(prototype); - if (props) extendOwn(result, props); - return result; - } - - // Create a (shallow-cloned) duplicate of an object. - function clone(obj) { - if (!isObject(obj)) return obj; - return isArray(obj) ? obj.slice() : extend({}, obj); - } - - // Invokes `interceptor` with the `obj` and then returns `obj`. - // The primary purpose of this method is to "tap into" a method chain, in - // order to perform operations on intermediate results within the chain. - function tap(obj, interceptor) { - interceptor(obj); - return obj; - } - - // Normalize a (deep) property `path` to array. - // Like `_.iteratee`, this function can be customized. - function toPath$1(path) { - return isArray(path) ? path : [path]; - } - _$1.toPath = toPath$1; - - // Internal wrapper for `_.toPath` to enable minification. - // Similar to `cb` for `_.iteratee`. - function toPath(path) { - return _$1.toPath(path); - } - - // Internal function to obtain a nested property in `obj` along `path`. - function deepGet(obj, path) { - var length = path.length; - for (var i = 0; i < length; i++) { - if (obj == null) return void 0; - obj = obj[path[i]]; - } - return length ? obj : void 0; - } - - // Get the value of the (deep) property on `path` from `object`. - // If any property in `path` does not exist or if the value is - // `undefined`, return `defaultValue` instead. - // The `path` is normalized through `_.toPath`. - function get(object, path, defaultValue) { - var value = deepGet(object, toPath(path)); - return isUndefined(value) ? defaultValue : value; - } - - // Shortcut function for checking if an object has a given property directly on - // itself (in other words, not on a prototype). Unlike the internal `has` - // function, this public version can also traverse nested properties. - function has(obj, path) { - path = toPath(path); - var length = path.length; - for (var i = 0; i < length; i++) { - var key = path[i]; - if (!has$1(obj, key)) return false; - obj = obj[key]; - } - return !!length; - } - - // Keep the identity function around for default iteratees. - function identity(value) { - return value; - } - - // Returns a predicate for checking whether an object has a given set of - // `key:value` pairs. - function matcher(attrs) { - attrs = extendOwn({}, attrs); - return function(obj) { - return isMatch(obj, attrs); - }; - } - - // Creates a function that, when passed an object, will traverse that object’s - // properties down the given `path`, specified as an array of keys or indices. - function property(path) { - path = toPath(path); - return function(obj) { - return deepGet(obj, path); - }; - } - - // Internal function that returns an efficient (for current engines) version - // of the passed-in callback, to be repeatedly applied in other Underscore - // functions. - function optimizeCb(func, context, argCount) { - if (context === void 0) return func; - switch (argCount == null ? 3 : argCount) { - case 1: return function(value) { - return func.call(context, value); - }; - // The 2-argument case is omitted because we’re not using it. - case 3: return function(value, index, collection) { - return func.call(context, value, index, collection); - }; - case 4: return function(accumulator, value, index, collection) { - return func.call(context, accumulator, value, index, collection); - }; - } - return function() { - return func.apply(context, arguments); - }; - } - - // An internal function to generate callbacks that can be applied to each - // element in a collection, returning the desired result — either `_.identity`, - // an arbitrary callback, a property matcher, or a property accessor. - function baseIteratee(value, context, argCount) { - if (value == null) return identity; - if (isFunction$1(value)) return optimizeCb(value, context, argCount); - if (isObject(value) && !isArray(value)) return matcher(value); - return property(value); - } - - // External wrapper for our callback generator. Users may customize - // `_.iteratee` if they want additional predicate/iteratee shorthand styles. - // This abstraction hides the internal-only `argCount` argument. - function iteratee(value, context) { - return baseIteratee(value, context, Infinity); - } - _$1.iteratee = iteratee; - - // The function we call internally to generate a callback. It invokes - // `_.iteratee` if overridden, otherwise `baseIteratee`. - function cb(value, context, argCount) { - if (_$1.iteratee !== iteratee) return _$1.iteratee(value, context); - return baseIteratee(value, context, argCount); - } - - // Returns the results of applying the `iteratee` to each element of `obj`. - // In contrast to `_.map` it returns an object. - function mapObject(obj, iteratee, context) { - iteratee = cb(iteratee, context); - var _keys = keys(obj), - length = _keys.length, - results = {}; - for (var index = 0; index < length; index++) { - var currentKey = _keys[index]; - results[currentKey] = iteratee(obj[currentKey], currentKey, obj); - } - return results; - } - - // Predicate-generating function. Often useful outside of Underscore. - function noop(){} - - // Generates a function for a given object that returns a given property. - function propertyOf(obj) { - if (obj == null) return noop; - return function(path) { - return get(obj, path); - }; - } - - // Run a function **n** times. - function times(n, iteratee, context) { - var accum = Array(Math.max(0, n)); - iteratee = optimizeCb(iteratee, context, 1); - for (var i = 0; i < n; i++) accum[i] = iteratee(i); - return accum; - } - - // Return a random integer between `min` and `max` (inclusive). - function random(min, max) { - if (max == null) { - max = min; - min = 0; - } - return min + Math.floor(Math.random() * (max - min + 1)); - } - - // A (possibly faster) way to get the current timestamp as an integer. - var now = Date.now || function() { - return new Date().getTime(); - }; - - // Internal helper to generate functions for escaping and unescaping strings - // to/from HTML interpolation. - function createEscaper(map) { - var escaper = function(match) { - return map[match]; - }; - // Regexes for identifying a key that needs to be escaped. - var source = '(?:' + keys(map).join('|') + ')'; - var testRegexp = RegExp(source); - var replaceRegexp = RegExp(source, 'g'); - return function(string) { - string = string == null ? '' : '' + string; - return testRegexp.test(string) ? string.replace(replaceRegexp, escaper) : string; - }; - } - - // Internal list of HTML entities for escaping. - var escapeMap = { - '&': '&', - '<': '<', - '>': '>', - '"': '"', - "'": ''', - '`': '`' - }; - - // Function for escaping strings to HTML interpolation. - var _escape = createEscaper(escapeMap); - - // Internal list of HTML entities for unescaping. - var unescapeMap = invert(escapeMap); - - // Function for unescaping strings from HTML interpolation. - var _unescape = createEscaper(unescapeMap); - - // By default, Underscore uses ERB-style template delimiters. Change the - // following template settings to use alternative delimiters. - var templateSettings = _$1.templateSettings = { - evaluate: /<%([\s\S]+?)%>/g, - interpolate: /<%=([\s\S]+?)%>/g, - escape: /<%-([\s\S]+?)%>/g - }; - - // When customizing `_.templateSettings`, if you don't want to define an - // interpolation, evaluation or escaping regex, we need one that is - // guaranteed not to match. - var noMatch = /(.)^/; - - // Certain characters need to be escaped so that they can be put into a - // string literal. - var escapes = { - "'": "'", - '\\': '\\', - '\r': 'r', - '\n': 'n', - '\u2028': 'u2028', - '\u2029': 'u2029' - }; - - var escapeRegExp = /\\|'|\r|\n|\u2028|\u2029/g; - - function escapeChar(match) { - return '\\' + escapes[match]; - } - - // In order to prevent third-party code injection through - // `_.templateSettings.variable`, we test it against the following regular - // expression. It is intentionally a bit more liberal than just matching valid - // identifiers, but still prevents possible loopholes through defaults or - // destructuring assignment. - var bareIdentifier = /^\s*(\w|\$)+\s*$/; - - // JavaScript micro-templating, similar to John Resig's implementation. - // Underscore templating handles arbitrary delimiters, preserves whitespace, - // and correctly escapes quotes within interpolated code. - // NB: `oldSettings` only exists for backwards compatibility. - function template(text, settings, oldSettings) { - if (!settings && oldSettings) settings = oldSettings; - settings = defaults({}, settings, _$1.templateSettings); - - // Combine delimiters into one regular expression via alternation. - var matcher = RegExp([ - (settings.escape || noMatch).source, - (settings.interpolate || noMatch).source, - (settings.evaluate || noMatch).source - ].join('|') + '|$', 'g'); - - // Compile the template source, escaping string literals appropriately. - var index = 0; - var source = "__p+='"; - text.replace(matcher, function(match, escape, interpolate, evaluate, offset) { - source += text.slice(index, offset).replace(escapeRegExp, escapeChar); - index = offset + match.length; - - if (escape) { - source += "'+\n((__t=(" + escape + "))==null?'':_.escape(__t))+\n'"; - } else if (interpolate) { - source += "'+\n((__t=(" + interpolate + "))==null?'':__t)+\n'"; - } else if (evaluate) { - source += "';\n" + evaluate + "\n__p+='"; - } - - // Adobe VMs need the match returned to produce the correct offset. - return match; - }); - source += "';\n"; - - var argument = settings.variable; - if (argument) { - // Insure against third-party code injection. (CVE-2021-23358) - if (!bareIdentifier.test(argument)) throw new Error( - 'variable is not a bare identifier: ' + argument - ); - } else { - // If a variable is not specified, place data values in local scope. - source = 'with(obj||{}){\n' + source + '}\n'; - argument = 'obj'; - } - - source = "var __t,__p='',__j=Array.prototype.join," + - "print=function(){__p+=__j.call(arguments,'');};\n" + - source + 'return __p;\n'; - - var render; - try { - render = new Function(argument, '_', source); - } catch (e) { - e.source = source; - throw e; - } - - var template = function(data) { - return render.call(this, data, _$1); - }; - - // Provide the compiled source as a convenience for precompilation. - template.source = 'function(' + argument + '){\n' + source + '}'; - - return template; - } - - // Traverses the children of `obj` along `path`. If a child is a function, it - // is invoked with its parent as context. Returns the value of the final - // child, or `fallback` if any child is undefined. - function result(obj, path, fallback) { - path = toPath(path); - var length = path.length; - if (!length) { - return isFunction$1(fallback) ? fallback.call(obj) : fallback; - } - for (var i = 0; i < length; i++) { - var prop = obj == null ? void 0 : obj[path[i]]; - if (prop === void 0) { - prop = fallback; - i = length; // Ensure we don't continue iterating. - } - obj = isFunction$1(prop) ? prop.call(obj) : prop; - } - return obj; - } - - // Generate a unique integer id (unique within the entire client session). - // Useful for temporary DOM ids. - var idCounter = 0; - function uniqueId(prefix) { - var id = ++idCounter + ''; - return prefix ? prefix + id : id; - } - - // Start chaining a wrapped Underscore object. - function chain(obj) { - var instance = _$1(obj); - instance._chain = true; - return instance; - } - - // Internal function to execute `sourceFunc` bound to `context` with optional - // `args`. Determines whether to execute a function as a constructor or as a - // normal function. - function executeBound(sourceFunc, boundFunc, context, callingContext, args) { - if (!(callingContext instanceof boundFunc)) return sourceFunc.apply(context, args); - var self = baseCreate(sourceFunc.prototype); - var result = sourceFunc.apply(self, args); - if (isObject(result)) return result; - return self; - } - - // Partially apply a function by creating a version that has had some of its - // arguments pre-filled, without changing its dynamic `this` context. `_` acts - // as a placeholder by default, allowing any combination of arguments to be - // pre-filled. Set `_.partial.placeholder` for a custom placeholder argument. - var partial = restArguments(function(func, boundArgs) { - var placeholder = partial.placeholder; - var bound = function() { - var position = 0, length = boundArgs.length; - var args = Array(length); - for (var i = 0; i < length; i++) { - args[i] = boundArgs[i] === placeholder ? arguments[position++] : boundArgs[i]; - } - while (position < arguments.length) args.push(arguments[position++]); - return executeBound(func, bound, this, this, args); - }; - return bound; - }); - - partial.placeholder = _$1; - - // Create a function bound to a given object (assigning `this`, and arguments, - // optionally). - var bind = restArguments(function(func, context, args) { - if (!isFunction$1(func)) throw new TypeError('Bind must be called on a function'); - var bound = restArguments(function(callArgs) { - return executeBound(func, bound, context, this, args.concat(callArgs)); - }); - return bound; - }); - - // Internal helper for collection methods to determine whether a collection - // should be iterated as an array or as an object. - // Related: https://people.mozilla.org/~jorendorff/es6-draft.html#sec-tolength - // Avoids a very nasty iOS 8 JIT bug on ARM-64. #2094 - var isArrayLike = createSizePropertyCheck(getLength); - - // Internal implementation of a recursive `flatten` function. - function flatten$1(input, depth, strict, output) { - output = output || []; - if (!depth && depth !== 0) { - depth = Infinity; - } else if (depth <= 0) { - return output.concat(input); - } - var idx = output.length; - for (var i = 0, length = getLength(input); i < length; i++) { - var value = input[i]; - if (isArrayLike(value) && (isArray(value) || isArguments$1(value))) { - // Flatten current level of array or arguments object. - if (depth > 1) { - flatten$1(value, depth - 1, strict, output); - idx = output.length; - } else { - var j = 0, len = value.length; - while (j < len) output[idx++] = value[j++]; - } - } else if (!strict) { - output[idx++] = value; - } - } - return output; - } - - // Bind a number of an object's methods to that object. Remaining arguments - // are the method names to be bound. Useful for ensuring that all callbacks - // defined on an object belong to it. - var bindAll = restArguments(function(obj, keys) { - keys = flatten$1(keys, false, false); - var index = keys.length; - if (index < 1) throw new Error('bindAll must be passed function names'); - while (index--) { - var key = keys[index]; - obj[key] = bind(obj[key], obj); - } - return obj; - }); - - // Memoize an expensive function by storing its results. - function memoize(func, hasher) { - var memoize = function(key) { - var cache = memoize.cache; - var address = '' + (hasher ? hasher.apply(this, arguments) : key); - if (!has$1(cache, address)) cache[address] = func.apply(this, arguments); - return cache[address]; - }; - memoize.cache = {}; - return memoize; - } - - // Delays a function for the given number of milliseconds, and then calls - // it with the arguments supplied. - var delay = restArguments(function(func, wait, args) { - return setTimeout(function() { - return func.apply(null, args); - }, wait); - }); - - // Defers a function, scheduling it to run after the current call stack has - // cleared. - var defer = partial(delay, _$1, 1); - - // Returns a function, that, when invoked, will only be triggered at most once - // during a given window of time. Normally, the throttled function will run - // as much as it can, without ever going more than once per `wait` duration; - // but if you'd like to disable the execution on the leading edge, pass - // `{leading: false}`. To disable execution on the trailing edge, ditto. - function throttle(func, wait, options) { - var timeout, context, args, result; - var previous = 0; - if (!options) options = {}; - - var later = function() { - previous = options.leading === false ? 0 : now(); - timeout = null; - result = func.apply(context, args); - if (!timeout) context = args = null; - }; - - var throttled = function() { - var _now = now(); - if (!previous && options.leading === false) previous = _now; - var remaining = wait - (_now - previous); - context = this; - args = arguments; - if (remaining <= 0 || remaining > wait) { - if (timeout) { - clearTimeout(timeout); - timeout = null; - } - previous = _now; - result = func.apply(context, args); - if (!timeout) context = args = null; - } else if (!timeout && options.trailing !== false) { - timeout = setTimeout(later, remaining); - } - return result; - }; - - throttled.cancel = function() { - clearTimeout(timeout); - previous = 0; - timeout = context = args = null; - }; - - return throttled; - } - - // When a sequence of calls of the returned function ends, the argument - // function is triggered. The end of a sequence is defined by the `wait` - // parameter. If `immediate` is passed, the argument function will be - // triggered at the beginning of the sequence instead of at the end. - function debounce(func, wait, immediate) { - var timeout, previous, args, result, context; - - var later = function() { - var passed = now() - previous; - if (wait > passed) { - timeout = setTimeout(later, wait - passed); - } else { - timeout = null; - if (!immediate) result = func.apply(context, args); - // This check is needed because `func` can recursively invoke `debounced`. - if (!timeout) args = context = null; - } - }; - - var debounced = restArguments(function(_args) { - context = this; - args = _args; - previous = now(); - if (!timeout) { - timeout = setTimeout(later, wait); - if (immediate) result = func.apply(context, args); - } - return result; - }); - - debounced.cancel = function() { - clearTimeout(timeout); - timeout = args = context = null; - }; - - return debounced; - } - - // Returns the first function passed as an argument to the second, - // allowing you to adjust arguments, run code before and after, and - // conditionally execute the original function. - function wrap(func, wrapper) { - return partial(wrapper, func); - } - - // Returns a negated version of the passed-in predicate. - function negate(predicate) { - return function() { - return !predicate.apply(this, arguments); - }; - } - - // Returns a function that is the composition of a list of functions, each - // consuming the return value of the function that follows. - function compose() { - var args = arguments; - var start = args.length - 1; - return function() { - var i = start; - var result = args[start].apply(this, arguments); - while (i--) result = args[i].call(this, result); - return result; - }; - } - - // Returns a function that will only be executed on and after the Nth call. - function after(times, func) { - return function() { - if (--times < 1) { - return func.apply(this, arguments); - } - }; - } - - // Returns a function that will only be executed up to (but not including) the - // Nth call. - function before(times, func) { - var memo; - return function() { - if (--times > 0) { - memo = func.apply(this, arguments); - } - if (times <= 1) func = null; - return memo; - }; - } - - // Returns a function that will be executed at most one time, no matter how - // often you call it. Useful for lazy initialization. - var once = partial(before, 2); - - // Returns the first key on an object that passes a truth test. - function findKey(obj, predicate, context) { - predicate = cb(predicate, context); - var _keys = keys(obj), key; - for (var i = 0, length = _keys.length; i < length; i++) { - key = _keys[i]; - if (predicate(obj[key], key, obj)) return key; - } - } - - // Internal function to generate `_.findIndex` and `_.findLastIndex`. - function createPredicateIndexFinder(dir) { - return function(array, predicate, context) { - predicate = cb(predicate, context); - var length = getLength(array); - var index = dir > 0 ? 0 : length - 1; - for (; index >= 0 && index < length; index += dir) { - if (predicate(array[index], index, array)) return index; - } - return -1; - }; - } - - // Returns the first index on an array-like that passes a truth test. - var findIndex = createPredicateIndexFinder(1); - - // Returns the last index on an array-like that passes a truth test. - var findLastIndex = createPredicateIndexFinder(-1); - - // Use a comparator function to figure out the smallest index at which - // an object should be inserted so as to maintain order. Uses binary search. - function sortedIndex(array, obj, iteratee, context) { - iteratee = cb(iteratee, context, 1); - var value = iteratee(obj); - var low = 0, high = getLength(array); - while (low < high) { - var mid = Math.floor((low + high) / 2); - if (iteratee(array[mid]) < value) low = mid + 1; else high = mid; - } - return low; - } - - // Internal function to generate the `_.indexOf` and `_.lastIndexOf` functions. - function createIndexFinder(dir, predicateFind, sortedIndex) { - return function(array, item, idx) { - var i = 0, length = getLength(array); - if (typeof idx == 'number') { - if (dir > 0) { - i = idx >= 0 ? idx : Math.max(idx + length, i); - } else { - length = idx >= 0 ? Math.min(idx + 1, length) : idx + length + 1; - } - } else if (sortedIndex && idx && length) { - idx = sortedIndex(array, item); - return array[idx] === item ? idx : -1; - } - if (item !== item) { - idx = predicateFind(slice.call(array, i, length), isNaN$1); - return idx >= 0 ? idx + i : -1; - } - for (idx = dir > 0 ? i : length - 1; idx >= 0 && idx < length; idx += dir) { - if (array[idx] === item) return idx; - } - return -1; - }; - } - - // Return the position of the first occurrence of an item in an array, - // or -1 if the item is not included in the array. - // If the array is large and already in sort order, pass `true` - // for **isSorted** to use binary search. - var indexOf = createIndexFinder(1, findIndex, sortedIndex); - - // Return the position of the last occurrence of an item in an array, - // or -1 if the item is not included in the array. - var lastIndexOf = createIndexFinder(-1, findLastIndex); - - // Return the first value which passes a truth test. - function find(obj, predicate, context) { - var keyFinder = isArrayLike(obj) ? findIndex : findKey; - var key = keyFinder(obj, predicate, context); - if (key !== void 0 && key !== -1) return obj[key]; - } - - // Convenience version of a common use case of `_.find`: getting the first - // object containing specific `key:value` pairs. - function findWhere(obj, attrs) { - return find(obj, matcher(attrs)); - } - - // The cornerstone for collection functions, an `each` - // implementation, aka `forEach`. - // Handles raw objects in addition to array-likes. Treats all - // sparse array-likes as if they were dense. - function each(obj, iteratee, context) { - iteratee = optimizeCb(iteratee, context); - var i, length; - if (isArrayLike(obj)) { - for (i = 0, length = obj.length; i < length; i++) { - iteratee(obj[i], i, obj); - } - } else { - var _keys = keys(obj); - for (i = 0, length = _keys.length; i < length; i++) { - iteratee(obj[_keys[i]], _keys[i], obj); - } - } - return obj; - } - - // Return the results of applying the iteratee to each element. - function map(obj, iteratee, context) { - iteratee = cb(iteratee, context); - var _keys = !isArrayLike(obj) && keys(obj), - length = (_keys || obj).length, - results = Array(length); - for (var index = 0; index < length; index++) { - var currentKey = _keys ? _keys[index] : index; - results[index] = iteratee(obj[currentKey], currentKey, obj); - } - return results; - } - - // Internal helper to create a reducing function, iterating left or right. - function createReduce(dir) { - // Wrap code that reassigns argument variables in a separate function than - // the one that accesses `arguments.length` to avoid a perf hit. (#1991) - var reducer = function(obj, iteratee, memo, initial) { - var _keys = !isArrayLike(obj) && keys(obj), - length = (_keys || obj).length, - index = dir > 0 ? 0 : length - 1; - if (!initial) { - memo = obj[_keys ? _keys[index] : index]; - index += dir; - } - for (; index >= 0 && index < length; index += dir) { - var currentKey = _keys ? _keys[index] : index; - memo = iteratee(memo, obj[currentKey], currentKey, obj); - } - return memo; - }; - - return function(obj, iteratee, memo, context) { - var initial = arguments.length >= 3; - return reducer(obj, optimizeCb(iteratee, context, 4), memo, initial); - }; - } - - // **Reduce** builds up a single result from a list of values, aka `inject`, - // or `foldl`. - var reduce = createReduce(1); - - // The right-associative version of reduce, also known as `foldr`. - var reduceRight = createReduce(-1); - - // Return all the elements that pass a truth test. - function filter(obj, predicate, context) { - var results = []; - predicate = cb(predicate, context); - each(obj, function(value, index, list) { - if (predicate(value, index, list)) results.push(value); - }); - return results; - } - - // Return all the elements for which a truth test fails. - function reject(obj, predicate, context) { - return filter(obj, negate(cb(predicate)), context); - } - - // Determine whether all of the elements pass a truth test. - function every(obj, predicate, context) { - predicate = cb(predicate, context); - var _keys = !isArrayLike(obj) && keys(obj), - length = (_keys || obj).length; - for (var index = 0; index < length; index++) { - var currentKey = _keys ? _keys[index] : index; - if (!predicate(obj[currentKey], currentKey, obj)) return false; - } - return true; - } - - // Determine if at least one element in the object passes a truth test. - function some(obj, predicate, context) { - predicate = cb(predicate, context); - var _keys = !isArrayLike(obj) && keys(obj), - length = (_keys || obj).length; - for (var index = 0; index < length; index++) { - var currentKey = _keys ? _keys[index] : index; - if (predicate(obj[currentKey], currentKey, obj)) return true; - } - return false; - } - - // Determine if the array or object contains a given item (using `===`). - function contains(obj, item, fromIndex, guard) { - if (!isArrayLike(obj)) obj = values(obj); - if (typeof fromIndex != 'number' || guard) fromIndex = 0; - return indexOf(obj, item, fromIndex) >= 0; - } - - // Invoke a method (with arguments) on every item in a collection. - var invoke = restArguments(function(obj, path, args) { - var contextPath, func; - if (isFunction$1(path)) { - func = path; - } else { - path = toPath(path); - contextPath = path.slice(0, -1); - path = path[path.length - 1]; - } - return map(obj, function(context) { - var method = func; - if (!method) { - if (contextPath && contextPath.length) { - context = deepGet(context, contextPath); - } - if (context == null) return void 0; - method = context[path]; - } - return method == null ? method : method.apply(context, args); - }); - }); - - // Convenience version of a common use case of `_.map`: fetching a property. - function pluck(obj, key) { - return map(obj, property(key)); - } - - // Convenience version of a common use case of `_.filter`: selecting only - // objects containing specific `key:value` pairs. - function where(obj, attrs) { - return filter(obj, matcher(attrs)); - } - - // Return the maximum element (or element-based computation). - function max(obj, iteratee, context) { - var result = -Infinity, lastComputed = -Infinity, - value, computed; - if (iteratee == null || typeof iteratee == 'number' && typeof obj[0] != 'object' && obj != null) { - obj = isArrayLike(obj) ? obj : values(obj); - for (var i = 0, length = obj.length; i < length; i++) { - value = obj[i]; - if (value != null && value > result) { - result = value; - } - } - } else { - iteratee = cb(iteratee, context); - each(obj, function(v, index, list) { - computed = iteratee(v, index, list); - if (computed > lastComputed || computed === -Infinity && result === -Infinity) { - result = v; - lastComputed = computed; - } - }); - } - return result; - } - - // Return the minimum element (or element-based computation). - function min(obj, iteratee, context) { - var result = Infinity, lastComputed = Infinity, - value, computed; - if (iteratee == null || typeof iteratee == 'number' && typeof obj[0] != 'object' && obj != null) { - obj = isArrayLike(obj) ? obj : values(obj); - for (var i = 0, length = obj.length; i < length; i++) { - value = obj[i]; - if (value != null && value < result) { - result = value; - } - } - } else { - iteratee = cb(iteratee, context); - each(obj, function(v, index, list) { - computed = iteratee(v, index, list); - if (computed < lastComputed || computed === Infinity && result === Infinity) { - result = v; - lastComputed = computed; - } - }); - } - return result; - } - - // Sample **n** random values from a collection using the modern version of the - // [Fisher-Yates shuffle](https://en.wikipedia.org/wiki/Fisher–Yates_shuffle). - // If **n** is not specified, returns a single random element. - // The internal `guard` argument allows it to work with `_.map`. - function sample(obj, n, guard) { - if (n == null || guard) { - if (!isArrayLike(obj)) obj = values(obj); - return obj[random(obj.length - 1)]; - } - var sample = isArrayLike(obj) ? clone(obj) : values(obj); - var length = getLength(sample); - n = Math.max(Math.min(n, length), 0); - var last = length - 1; - for (var index = 0; index < n; index++) { - var rand = random(index, last); - var temp = sample[index]; - sample[index] = sample[rand]; - sample[rand] = temp; - } - return sample.slice(0, n); - } - - // Shuffle a collection. - function shuffle(obj) { - return sample(obj, Infinity); - } - - // Sort the object's values by a criterion produced by an iteratee. - function sortBy(obj, iteratee, context) { - var index = 0; - iteratee = cb(iteratee, context); - return pluck(map(obj, function(value, key, list) { - return { - value: value, - index: index++, - criteria: iteratee(value, key, list) - }; - }).sort(function(left, right) { - var a = left.criteria; - var b = right.criteria; - if (a !== b) { - if (a > b || a === void 0) return 1; - if (a < b || b === void 0) return -1; - } - return left.index - right.index; - }), 'value'); - } - - // An internal function used for aggregate "group by" operations. - function group(behavior, partition) { - return function(obj, iteratee, context) { - var result = partition ? [[], []] : {}; - iteratee = cb(iteratee, context); - each(obj, function(value, index) { - var key = iteratee(value, index, obj); - behavior(result, value, key); - }); - return result; - }; - } - - // Groups the object's values by a criterion. Pass either a string attribute - // to group by, or a function that returns the criterion. - var groupBy = group(function(result, value, key) { - if (has$1(result, key)) result[key].push(value); else result[key] = [value]; - }); - - // Indexes the object's values by a criterion, similar to `_.groupBy`, but for - // when you know that your index values will be unique. - var indexBy = group(function(result, value, key) { - result[key] = value; - }); - - // Counts instances of an object that group by a certain criterion. Pass - // either a string attribute to count by, or a function that returns the - // criterion. - var countBy = group(function(result, value, key) { - if (has$1(result, key)) result[key]++; else result[key] = 1; - }); - - // Split a collection into two arrays: one whose elements all pass the given - // truth test, and one whose elements all do not pass the truth test. - var partition = group(function(result, value, pass) { - result[pass ? 0 : 1].push(value); - }, true); - - // Safely create a real, live array from anything iterable. - var reStrSymbol = /[^\ud800-\udfff]|[\ud800-\udbff][\udc00-\udfff]|[\ud800-\udfff]/g; - function toArray(obj) { - if (!obj) return []; - if (isArray(obj)) return slice.call(obj); - if (isString(obj)) { - // Keep surrogate pair characters together. - return obj.match(reStrSymbol); - } - if (isArrayLike(obj)) return map(obj, identity); - return values(obj); - } - - // Return the number of elements in a collection. - function size(obj) { - if (obj == null) return 0; - return isArrayLike(obj) ? obj.length : keys(obj).length; - } - - // Internal `_.pick` helper function to determine whether `key` is an enumerable - // property name of `obj`. - function keyInObj(value, key, obj) { - return key in obj; - } - - // Return a copy of the object only containing the allowed properties. - var pick = restArguments(function(obj, keys) { - var result = {}, iteratee = keys[0]; - if (obj == null) return result; - if (isFunction$1(iteratee)) { - if (keys.length > 1) iteratee = optimizeCb(iteratee, keys[1]); - keys = allKeys(obj); - } else { - iteratee = keyInObj; - keys = flatten$1(keys, false, false); - obj = Object(obj); - } - for (var i = 0, length = keys.length; i < length; i++) { - var key = keys[i]; - var value = obj[key]; - if (iteratee(value, key, obj)) result[key] = value; - } - return result; - }); - - // Return a copy of the object without the disallowed properties. - var omit = restArguments(function(obj, keys) { - var iteratee = keys[0], context; - if (isFunction$1(iteratee)) { - iteratee = negate(iteratee); - if (keys.length > 1) context = keys[1]; - } else { - keys = map(flatten$1(keys, false, false), String); - iteratee = function(value, key) { - return !contains(keys, key); - }; - } - return pick(obj, iteratee, context); - }); - - // Returns everything but the last entry of the array. Especially useful on - // the arguments object. Passing **n** will return all the values in - // the array, excluding the last N. - function initial(array, n, guard) { - return slice.call(array, 0, Math.max(0, array.length - (n == null || guard ? 1 : n))); - } - - // Get the first element of an array. Passing **n** will return the first N - // values in the array. The **guard** check allows it to work with `_.map`. - function first(array, n, guard) { - if (array == null || array.length < 1) return n == null || guard ? void 0 : []; - if (n == null || guard) return array[0]; - return initial(array, array.length - n); - } - - // Returns everything but the first entry of the `array`. Especially useful on - // the `arguments` object. Passing an **n** will return the rest N values in the - // `array`. - function rest(array, n, guard) { - return slice.call(array, n == null || guard ? 1 : n); - } - - // Get the last element of an array. Passing **n** will return the last N - // values in the array. - function last(array, n, guard) { - if (array == null || array.length < 1) return n == null || guard ? void 0 : []; - if (n == null || guard) return array[array.length - 1]; - return rest(array, Math.max(0, array.length - n)); - } - - // Trim out all falsy values from an array. - function compact(array) { - return filter(array, Boolean); - } - - // Flatten out an array, either recursively (by default), or up to `depth`. - // Passing `true` or `false` as `depth` means `1` or `Infinity`, respectively. - function flatten(array, depth) { - return flatten$1(array, depth, false); - } - - // Take the difference between one array and a number of other arrays. - // Only the elements present in just the first array will remain. - var difference = restArguments(function(array, rest) { - rest = flatten$1(rest, true, true); - return filter(array, function(value){ - return !contains(rest, value); - }); - }); - - // Return a version of the array that does not contain the specified value(s). - var without = restArguments(function(array, otherArrays) { - return difference(array, otherArrays); - }); - - // Produce a duplicate-free version of the array. If the array has already - // been sorted, you have the option of using a faster algorithm. - // The faster algorithm will not work with an iteratee if the iteratee - // is not a one-to-one function, so providing an iteratee will disable - // the faster algorithm. - function uniq(array, isSorted, iteratee, context) { - if (!isBoolean(isSorted)) { - context = iteratee; - iteratee = isSorted; - isSorted = false; - } - if (iteratee != null) iteratee = cb(iteratee, context); - var result = []; - var seen = []; - for (var i = 0, length = getLength(array); i < length; i++) { - var value = array[i], - computed = iteratee ? iteratee(value, i, array) : value; - if (isSorted && !iteratee) { - if (!i || seen !== computed) result.push(value); - seen = computed; - } else if (iteratee) { - if (!contains(seen, computed)) { - seen.push(computed); - result.push(value); - } - } else if (!contains(result, value)) { - result.push(value); - } - } - return result; - } - - // Produce an array that contains the union: each distinct element from all of - // the passed-in arrays. - var union = restArguments(function(arrays) { - return uniq(flatten$1(arrays, true, true)); - }); - - // Produce an array that contains every item shared between all the - // passed-in arrays. - function intersection(array) { - var result = []; - var argsLength = arguments.length; - for (var i = 0, length = getLength(array); i < length; i++) { - var item = array[i]; - if (contains(result, item)) continue; - var j; - for (j = 1; j < argsLength; j++) { - if (!contains(arguments[j], item)) break; - } - if (j === argsLength) result.push(item); - } - return result; - } - - // Complement of zip. Unzip accepts an array of arrays and groups - // each array's elements on shared indices. - function unzip(array) { - var length = array && max(array, getLength).length || 0; - var result = Array(length); - - for (var index = 0; index < length; index++) { - result[index] = pluck(array, index); - } - return result; - } - - // Zip together multiple lists into a single array -- elements that share - // an index go together. - var zip = restArguments(unzip); - - // Converts lists into objects. Pass either a single array of `[key, value]` - // pairs, or two parallel arrays of the same length -- one of keys, and one of - // the corresponding values. Passing by pairs is the reverse of `_.pairs`. - function object(list, values) { - var result = {}; - for (var i = 0, length = getLength(list); i < length; i++) { - if (values) { - result[list[i]] = values[i]; - } else { - result[list[i][0]] = list[i][1]; - } - } - return result; - } - - // Generate an integer Array containing an arithmetic progression. A port of - // the native Python `range()` function. See - // [the Python documentation](https://docs.python.org/library/functions.html#range). - function range(start, stop, step) { - if (stop == null) { - stop = start || 0; - start = 0; - } - if (!step) { - step = stop < start ? -1 : 1; - } - - var length = Math.max(Math.ceil((stop - start) / step), 0); - var range = Array(length); - - for (var idx = 0; idx < length; idx++, start += step) { - range[idx] = start; - } - - return range; - } - - // Chunk a single array into multiple arrays, each containing `count` or fewer - // items. - function chunk(array, count) { - if (count == null || count < 1) return []; - var result = []; - var i = 0, length = array.length; - while (i < length) { - result.push(slice.call(array, i, i += count)); - } - return result; - } - - // Helper function to continue chaining intermediate results. - function chainResult(instance, obj) { - return instance._chain ? _$1(obj).chain() : obj; - } - - // Add your own custom functions to the Underscore object. - function mixin(obj) { - each(functions(obj), function(name) { - var func = _$1[name] = obj[name]; - _$1.prototype[name] = function() { - var args = [this._wrapped]; - push.apply(args, arguments); - return chainResult(this, func.apply(_$1, args)); - }; - }); - return _$1; - } - - // Add all mutator `Array` functions to the wrapper. - each(['pop', 'push', 'reverse', 'shift', 'sort', 'splice', 'unshift'], function(name) { - var method = ArrayProto[name]; - _$1.prototype[name] = function() { - var obj = this._wrapped; - if (obj != null) { - method.apply(obj, arguments); - if ((name === 'shift' || name === 'splice') && obj.length === 0) { - delete obj[0]; - } - } - return chainResult(this, obj); - }; - }); - - // Add all accessor `Array` functions to the wrapper. - each(['concat', 'join', 'slice'], function(name) { - var method = ArrayProto[name]; - _$1.prototype[name] = function() { - var obj = this._wrapped; - if (obj != null) obj = method.apply(obj, arguments); - return chainResult(this, obj); - }; - }); - - // Named Exports - - var allExports = { - __proto__: null, - VERSION: VERSION, - restArguments: restArguments, - isObject: isObject, - isNull: isNull, - isUndefined: isUndefined, - isBoolean: isBoolean, - isElement: isElement, - isString: isString, - isNumber: isNumber, - isDate: isDate, - isRegExp: isRegExp, - isError: isError, - isSymbol: isSymbol, - isArrayBuffer: isArrayBuffer, - isDataView: isDataView$1, - isArray: isArray, - isFunction: isFunction$1, - isArguments: isArguments$1, - isFinite: isFinite$1, - isNaN: isNaN$1, - isTypedArray: isTypedArray$1, - isEmpty: isEmpty, - isMatch: isMatch, - isEqual: isEqual, - isMap: isMap, - isWeakMap: isWeakMap, - isSet: isSet, - isWeakSet: isWeakSet, - keys: keys, - allKeys: allKeys, - values: values, - pairs: pairs, - invert: invert, - functions: functions, - methods: functions, - extend: extend, - extendOwn: extendOwn, - assign: extendOwn, - defaults: defaults, - create: create, - clone: clone, - tap: tap, - get: get, - has: has, - mapObject: mapObject, - identity: identity, - constant: constant, - noop: noop, - toPath: toPath$1, - property: property, - propertyOf: propertyOf, - matcher: matcher, - matches: matcher, - times: times, - random: random, - now: now, - escape: _escape, - unescape: _unescape, - templateSettings: templateSettings, - template: template, - result: result, - uniqueId: uniqueId, - chain: chain, - iteratee: iteratee, - partial: partial, - bind: bind, - bindAll: bindAll, - memoize: memoize, - delay: delay, - defer: defer, - throttle: throttle, - debounce: debounce, - wrap: wrap, - negate: negate, - compose: compose, - after: after, - before: before, - once: once, - findKey: findKey, - findIndex: findIndex, - findLastIndex: findLastIndex, - sortedIndex: sortedIndex, - indexOf: indexOf, - lastIndexOf: lastIndexOf, - find: find, - detect: find, - findWhere: findWhere, - each: each, - forEach: each, - map: map, - collect: map, - reduce: reduce, - foldl: reduce, - inject: reduce, - reduceRight: reduceRight, - foldr: reduceRight, - filter: filter, - select: filter, - reject: reject, - every: every, - all: every, - some: some, - any: some, - contains: contains, - includes: contains, - include: contains, - invoke: invoke, - pluck: pluck, - where: where, - max: max, - min: min, - shuffle: shuffle, - sample: sample, - sortBy: sortBy, - groupBy: groupBy, - indexBy: indexBy, - countBy: countBy, - partition: partition, - toArray: toArray, - size: size, - pick: pick, - omit: omit, - first: first, - head: first, - take: first, - initial: initial, - last: last, - rest: rest, - tail: rest, - drop: rest, - compact: compact, - flatten: flatten, - without: without, - uniq: uniq, - unique: uniq, - union: union, - intersection: intersection, - difference: difference, - unzip: unzip, - transpose: unzip, - zip: zip, - object: object, - range: range, - chunk: chunk, - mixin: mixin, - 'default': _$1 - }; - - // Default Export - - // Add all of the Underscore functions to the wrapper object. - var _ = mixin(allExports); - // Legacy Node.js API. - _._ = _; - - return _; - -}))); -//# sourceMappingURL=underscore-umd.js.map diff --git a/sphinx/build/html/genindex.html b/sphinx/build/html/genindex.html index fa7d93c0627bfbd37d3f44b34fc6506d1d685883..be2042b303e8c7fe1435974da59f574bcd02cb1c 100644 --- a/sphinx/build/html/genindex.html +++ b/sphinx/build/html/genindex.html @@ -38,7 +38,7 @@ <li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> diff --git a/sphinx/build/html/index.html b/sphinx/build/html/index.html index 3abce634ca68ab17ce586496d273a287c0e92bd0..b3a51168f849a36a8fb3401a1e8af0ec0854e187 100644 --- a/sphinx/build/html/index.html +++ b/sphinx/build/html/index.html @@ -39,7 +39,7 @@ <li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> @@ -163,12 +163,13 @@ <li class="toctree-l2"><a class="reference internal" href="V1_02.html#complete-list-of-components">Complete list of components</a></li> </ul> </li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a><ul> <li class="toctree-l2"><a class="reference internal" href="V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> <li class="toctree-l2"><a class="reference internal" href="V2_00.html#technical-data">Technical data</a></li> <li class="toctree-l2"><a class="reference internal" href="V2_00.html#ohmpi-2-step-by-step">Ohmpi 2 step by step</a><ul> <li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_01.html"><strong>STEP n°1</strong> : Raspberry Pi configuration</a></li> <li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_02.html"><strong>STEP n°2</strong>: Measurement board</a></li> +<li class="toctree-l3"><a class="reference internal" href="Ohmpi_V2_00/V2_00_step_03.html"><strong>STEP n°3</strong>: MUX board</a></li> </ul> </li> </ul> diff --git a/sphinx/build/html/objects.inv b/sphinx/build/html/objects.inv index 3c4574e131527c183ca4a3a3bf0f503dba8b8702..6b0933bf2a8e020bbb47a037cd04e679f081e95f 100644 --- a/sphinx/build/html/objects.inv +++ b/sphinx/build/html/objects.inv @@ -2,6 +2,5 @@ # Project: Ohmpi: # Version: # The remainder of this file is compressed using zlib. -xÚ‘ÍNƒ@…÷<Å]ÖE+ŒÆö&vÑ@Ô°%SæZÆÀ\rgÐòV>ƒO&K[6d8çžï\†¤¬ Ö©XQË/¬JWWþ˜jh˜^°pÁ`ä™ÈÃðrxæÖa“‡ÑIúÜÐH||ºKÁ|¼Gô͙;èK ó¬w-K§ÉüØ%þÓ%æ]"† JÛ2ÖhlI² -²èhñA8üì¢U?²¨t*pW°ê¯‚I¡½â˜!NâW†ß{ÆðÂœ!Vû=,n®"q;ËïÐh£p? *¹ÅÊC¾Ô‘³öÇà{lj:˜Hî7é:†¤A–Z.¤Q@þ½ì¯ëM2£ÕN¿j×-ktÈAMêLwÓÛ“1Â7¤Ú -§-Ü?biçJ2ó´EÉE9ŽÚôËG?•;>’ñ¾ \ No newline at end of file +xÚ‘Knƒ0†÷œb–É"i0UU±¯Ô,¨Ôrð4¸Ù¦…[õ=Ym *äÑfƒÌ?3ßg㢪9hÃB&sXù»`]˜ªtÇ„CäæÆëYJ²ÍæªÿfÚ`mü£éSMññé.ñõéCT×;Tª+\ŠW¾o5\Š³.r‰‹Ì]$„©nV(ì$Uì¬ ¸DÌ<¿ŒàÔ?ØHL÷™‚¿¶-‹’WÜ #! €¥Ý±’õ²gC9b?î¾3†æ²n[XÜ\ƒTà“ÛÉ<PÁl”.½= +.¶=ª¤;,ì'x[wô~ÛFã¤#¾’mq´lTŽ½Aºÿ®íƒ*…šþÎM·ªÐ ò*ÉN¸k[<’¬)q¼Å¤úÏXÒ™BŠù´Fªòb>8dã“õ„îÑû6,V \ No newline at end of file diff --git a/sphinx/build/html/search.html b/sphinx/build/html/search.html index 62bbee27edbcba1b67141c174edcdd4ee6808f6f..689efaf19a81c3cc2fd0f1924e0652254b61119a 100644 --- a/sphinx/build/html/search.html +++ b/sphinx/build/html/search.html @@ -41,7 +41,7 @@ <li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> <li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> +<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes and 12V)</a></li> </ul> </div> diff --git a/sphinx/build/html/searchindex.js b/sphinx/build/html/searchindex.js 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index 2eb2948ee903dbc55e42fba75d7e487828d8d5b3..0000000000000000000000000000000000000000 --- a/sphinx/build/html/test.html +++ /dev/null @@ -1,301 +0,0 @@ - - - -<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.1//EN" "http://www.w3.org/TR/xhtml11/DTD/xhtml11.dtd"> -<html xml:lang="" lang="" version="-//W3C//DTD XHTML 1.1//EN" xmlns="http://www.w3.org/1999/xhtml"> - <head> - <meta charset="utf-8"> - <meta name="viewport" content="width=device-width, initial-scale=1.0"> - - - <title>OHMPI: Open source and open hardware resitivity-meter — Ohmpi: open hardware resistivity-meter documentation</title> - - - - - - - <link href='https://fonts.googleapis.com/css?family=Lato:400,700,400italic,700italic|Roboto+Slab:400,700|Inconsolata:400,700' rel='stylesheet' type='text/css'/> - <link rel="stylesheet" href="_static/css/pdj.css" type="text/css" /> - - - - - - - <link rel="index" title="Index" - href="genindex.html"/> - <link rel="search" title="Search" href="search.html"/> - <link rel="top" 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href="V1_01.html#raspberry-pi-configuration">Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#assembly-of-the-measuring-current-injection-cards-and-connection-with-the-raspberry-pi">Assembly of the measuring/current injection cards, and connection with the Raspberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#multiplexer-implentation">Multiplexer implentation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#electrode-connection">Electrode connection</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#operating-instruction">Operating instruction</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#complete-list-of-components">Complete list of components</a></li> -</ul> -</li> -<li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a><ul> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#raspberry-pi-configuration">Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#assembly-of-the-measuring-current-injection-cards-and-connection-with-the-raspberry-pi">Assembly of the measuring/current injection cards, and connection with the Raspberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#multiplexer-implentation">Multiplexer implentation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#electrode-connection">Electrode connection</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#operating-instruction">Operating instruction</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#complete-list-of-components">Complete list of components</a></li> -</ul> -</li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n1-raspberry-pi-configuration"><strong>STEP n°1</strong> : Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n2-assembly-of-the-measurement-board"><strong>STEP n°2</strong>: Assembly of the measurement board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n3-start-up-of-the-measurement-board"><strong>STEP n°3</strong>: Start-up of the measurement board.</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n4-measurement-board-validation"><strong>STEP n°4</strong>: Measurement board validation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n5-assembly-of-the-mux-board"><strong>STEP n°5</strong>: Assembly of the MUX board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n6-check-mux-board"><strong>STEP n°6</strong>: Check Mux Board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n7-assemble-ohmpi"><strong>STEP n°7</strong>: Assemble Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n8-boxing-ohmpi"><strong>STEP n°8</strong>: Boxing Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n9-field-measurement"><strong>STEP n°9</strong>: Field measurement</a></li> -</ul> -</li> -<li class="toctree-l1 current"><a class="current reference internal" href="#">OHMPI: Open source and open hardware resitivity-meter</a><ul> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi.html">OhmPi project</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a></li> -</ul> -</li> -</ul> - - - - - </div> - - </nav> - <section data-toggle="wy-nav-shift" class="wy-nav-content-wrap"> - - <nav class="wy-nav-top" id="barra-mobile" role="navigation" aria-label="top navigation"> - <i data-toggle="wy-nav-top" class="fa fa-bars"></i> - <a href="#">Porão do Juca</a> - </nav> - - <div class="wy-nav-content"> - <div class="fundo-claro"> - </div> - <div class="fundo-escuro"> - </div> - - <div class="rst-content"> - <div role="navigation" aria-label="breadcrumbs navigation"> - - <!-- <ul class="wy-breadcrumbs"> --> - <!-- <li><a href="#">Docs</a> »</li> --> - - <!-- <li>Features</li> --> - <!-- <li class="wy-breadcrumbs-aside"> --> - - <!-- <a href="_sources/index.txt" rel="nofollow"> View page source</a> --> - - <!-- </li> --> - <!-- </ul> --> - <!-- <hr/> --> - </div> - - <div role="main" class=""> - - <div id="content" class="hfeed entry-container hentry"> - <div class="section" id="ohmpi-open-source-and-open-hardware-resitivity-meter"> -<h1>OHMPI: Open source and open hardware resitivity-meter<a class="headerlink" href="#ohmpi-open-source-and-open-hardware-resitivity-meter" title="Permalink to this headline">¶</a></h1> -<div class="sidebar"> -<p class="sidebar-title">Summary</p> -<dl class="field-list simple"> -<dt class="field-odd">Release</dt> -<dd class="field-odd"><p>open hardware resistivity-meter</p> -</dd> -<dt class="field-even">Date</dt> -<dd class="field-even"><p>Dec 05, 2021</p> -</dd> -<dt class="field-odd">Date start</dt> -<dd class="field-odd"><p>July 2016</p> -</dd> -<dt class="field-even">Authors</dt> -<dd class="field-even"><p><strong>Rémi CLEMENT, Nicolas FORQUET, Julien GANCE, Yannick FARGIER, Vivien DUBOIS, Hélène GUYARD, Olivier KAUFMANN</strong></p> -</dd> -<dt class="field-odd">Target</dt> -<dd class="field-odd"><p>users, researchers and developers</p> -</dd> -<dt class="field-even">status</dt> -<dd class="field-even"><p>some mature, some in progress</p> -</dd> -</dl> -</div> -<div class="topic"> -<p class="topic-title">OhmPi Document Center</p> -<ul class="simple"> -<li><p>OhmPi offcial documents</p></li> -<li><p>Release guidelines</p></li> -<li><p>General tutorials</p></li> -</ul> -</div> -<a class="reference internal image-reference" href="_images/logo_ohmpi.JPG"><img alt="_images/logo_ohmpi.JPG" class="align-center" src="_images/logo_ohmpi.JPG" style="width: 200px; height: 150px;" /></a> -<p>Contents:</p> -<div class="toctree-wrapper compound"> -<ul> -<li class="toctree-l1"><a class="reference internal" href="Ohmpi.html">OhmPi project</a><ul> -<li class="toctree-l2"><a class="reference internal" href="Ohmpi.html#partenaires"><strong>Partenaires</strong></a></li> -</ul> -</li> -<li class="toctree-l1"><a class="reference internal" href="V1_01.html">OhmPi V 1.01 (limited to 32 electrodes)</a><ul> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#raspberry-pi-configuration">Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#assembly-of-the-measuring-current-injection-cards-and-connection-with-the-raspberry-pi">Assembly of the measuring/current injection cards, and connection with the Raspberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#multiplexer-implentation">Multiplexer implentation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#electrode-connection">Electrode connection</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#operating-instruction">Operating instruction</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_01.html#complete-list-of-components">Complete list of components</a></li> -</ul> -</li> -<li class="toctree-l1"><a class="reference internal" href="V1_02.html">OhmPi V 1.02 (limited to 32 electrodes)</a><ul> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#raspberry-pi-configuration">Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#assembly-of-the-measuring-current-injection-cards-and-connection-with-the-raspberry-pi">Assembly of the measuring/current injection cards, and connection with the Raspberry Pi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#multiplexer-implentation">Multiplexer implentation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#electrode-connection">Electrode connection</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#operating-instruction">Operating instruction</a></li> -<li class="toctree-l2"><a class="reference internal" href="V1_02.html#complete-list-of-components">Complete list of components</a></li> -</ul> -</li> -<li class="toctree-l1"><a class="reference internal" href="V2_00.html">OhmPi V 2.xx (64 or 128 electrodes)</a><ul> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#the-philosophy-of-ohmpi">The philosophy of Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#technical-data">Technical data</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n1-raspberry-pi-configuration"><strong>STEP n°1</strong> : Raspberry Pi configuration</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n2-assembly-of-the-measurement-board"><strong>STEP n°2</strong>: Assembly of the measurement board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n3-start-up-of-the-measurement-board"><strong>STEP n°3</strong>: Start-up of the measurement board.</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n4-measurement-board-validation"><strong>STEP n°4</strong>: Measurement board validation</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n5-assembly-of-the-mux-board"><strong>STEP n°5</strong>: Assembly of the MUX board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n6-check-mux-board"><strong>STEP n°6</strong>: Check Mux Board</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n7-assemble-ohmpi"><strong>STEP n°7</strong>: Assemble Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n8-boxing-ohmpi"><strong>STEP n°8</strong>: Boxing Ohmpi</a></li> -<li class="toctree-l2"><a class="reference internal" href="V2_00.html#step-n9-field-measurement"><strong>STEP n°9</strong>: Field measurement</a></li> -</ul> -</li> -</ul> -</div> -</div> - - - </div> - <footer> - - <div class="rst-footer-buttons" role="navigation" aria-label="footer navigation"> - - - <a href="V2_00.html" class="btn btn-neutral" title="OhmPi V 2.xx (64 or 128 electrodes)"><span class="fa fa-arrow-circle-left"></span> Previous</a> - - </div> - - - <hr/> - - <div role="contentinfo"> - <p> - © Copyright 2020, INRAE, Rémi CLEMENT. - </p> - </div> - - Built with <a href="http://sphinx-doc.org/">Sphinx</a> using a <a href="https://github.com/jucacrispim/sphinx_pdj_theme">theme</a> provided by <a href="http://poraodojuca.net">Porão do Juca</a>. - -</footer> - </div> - </div> - - - <script type="text/javascript"> - var DOCUMENTATION_OPTIONS = { - URL_ROOT:'./', - VERSION:'open hardware resistivity-meter', - COLLAPSE_INDEX:false, - FILE_SUFFIX:'.html', - HAS_SOURCE: true - }; - </script> - <script type="text/javascript" src="_static/jquery.js"> - - </script> - <script type="text/javascript" src="_static/underscore.js"> - - </script> - <script type="text/javascript" src="_static/doctools.js"> - - </script> - <script type="text/javascript" src="_static/language_data.js"> - - </script> - <script type="text/javascript" src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.7/latest.js?config=TeX-AMS-MML_HTMLorMML"> - - </script> - - - - <script type="text/javascript" - src="_static/js/theme.js"></script> - - <script type="text/javascript" - src="_static/js/pdj.js"></script> - - - - <script type="text/javascript"> - jQuery(function () { - SphinxRtdTheme.StickyNav.enable(); - }); - </script> - - - </body> -</html> \ No newline at end of file diff --git a/sphinx/source/Ohmpi_V2_00/V2_00_step_01.rst b/sphinx/source/Ohmpi_V2_00/V2_00_step_01.rst index 263e01b7a46bda0801898e491497bc4722529e80..51db436b12ff9740083e543f8be4a2ed566be331 100644 --- a/sphinx/source/Ohmpi_V2_00/V2_00_step_01.rst +++ b/sphinx/source/Ohmpi_V2_00/V2_00_step_01.rst @@ -2,8 +2,8 @@ ******************************************* -OS installation -================ +**PART A** OS installation +========================== +----------------------------------------------------+---------------+ | **Required components** | **Quantity** | @@ -70,8 +70,8 @@ To ensure that the GPIOs are in Low position, you will need to modify the /boot/ 8. Close the terminal -Virtual Environnement and packages -================================== +**PART B** Virtual Environnement and packages +============================================= A virtual environment is a way to have multiple, parallel instances of the Python interpreter, each with different package sets and different configurations. Each virtual environment contains a discrete copy of the Python interpreter, including copies of its support utilities. It also protects your system in case of problems with the packages. @@ -121,8 +121,8 @@ to leave the virtual environment simply type: deactivate -Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) -======================================================================== +**PART C** Activate virtual environnement on Thonny (Python IDE) (on Rapberry Pi) +================================================================================== If you decided to use a virtual environment, it is necessary to setup Thonny Python IDE the first time you use it. diff --git a/sphinx/source/Ohmpi_V2_00/V2_00_step_02.rst b/sphinx/source/Ohmpi_V2_00/V2_00_step_02.rst index ef6a21b71ac5851da1ca362f135e389485940f46..63caad89aa3c0842f9f7846f3f92878576f08345 100644 --- a/sphinx/source/Ohmpi_V2_00/V2_00_step_02.rst +++ b/sphinx/source/Ohmpi_V2_00/V2_00_step_02.rst @@ -398,7 +398,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_122820.jpg | |3 +------------------------------------------------------------+ - | | Préparer le circuit équivalent | + | | Prepare the equivalent electronic circuit test | +--------+------------------------------------------------------------+ @@ -408,7 +408,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_123034.jpg | |4 +------------------------------------------------------------+ - | | Préparer les cables de connexion aux batterie et les cosses| + | | Prepare the battery connections and the terminals. | +--------+------------------------------------------------------------+ @@ -418,7 +418,7 @@ Setting up an equivalent electronic circuit, for this you will need: +--------+------------------------------------------------------------+ | | .. image:: step_n_2/c/20210905_132856.jpg | |5 +------------------------------------------------------------+ - | | Souder les câbles et les cosses | + | | Soldering cables and terminals | +--------+------------------------------------------------------------+ @@ -426,24 +426,40 @@ Setting up an equivalent electronic circuit, for this you will need: :align: center +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/c/20210905_210045.jpg | + | | .. image:: step_n_2/c/Inked20211206_150522_LI.jpg | |6 +------------------------------------------------------------+ - | | Installer les cables rouges sur la borne +12V et cable noir| - | | sur la borne ground. | + | |Install the red cables on the +12V terminal and black cable | + | |on the ground terminal. | +--------+------------------------------------------------------------+ .. table:: :align: center +--------+------------------------------------------------------------+ - | | .. image:: step_n_2/c/20210905_210045.jpg | + | | .. image:: step_n_2/c/Inked20211206_150522_LI2.jpg | |7 +------------------------------------------------------------+ - | | Installer le circuit de référence | + | | Connect the equivalent electronic circuit test | | | | +--------+------------------------------------------------------------+ + + +.. table:: + :align: center + + +--------+------------------------------------------------------------+ + | | .. image:: step_n_2/c/thonny_first_interface.jpg | + |7 +------------------------------------------------------------+ + | | Run Tonny Interpreter | + | | | + +--------+------------------------------------------------------------+ -Run the Thonny IDE and load the code Ohmpy4elec.pi - - - \ No newline at end of file +.. table:: + :align: center + + +--------+------------------------------------------------------------+ + | | .. image:: step_n_2/c/20211206_144334.jpg | + |7 +------------------------------------------------------------+ + | | Run Ohmpi_4elec.py, if everything works you should | + | | get the following result | + +--------+------------------------------------------------------------+ diff --git a/sphinx/source/Ohmpi_V2_00/V2_00_step_03.rst b/sphinx/source/Ohmpi_V2_00/V2_00_step_03.rst new file mode 100644 index 0000000000000000000000000000000000000000..4684d5a143c3a16e2c534a45eb33b8f40da80fd3 --- /dev/null +++ b/sphinx/source/Ohmpi_V2_00/V2_00_step_03.rst @@ -0,0 +1,24 @@ + +**STEP n°3**: MUX board +**************************************************** + + +**PART A** Assembly of MUX board +====================================================== + + +Required components +---------------------------------------------------- + +.. figure:: step_n_3/a/00_mes_board_components.jpg + :width: 600px + :align: center + :height: 450px + :alt: alternate text + :figclass: align-center + + +.. csv-table:: List of components + :file: step_n_3/a/MUX_board_list_2_xx.csv + :widths: 30, 70, 70, 70, 70, 35, 35 + :header-rows: 1 \ No 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sphinx/source/Ohmpi_V2_00/step_n_5/MUX_board_list_2_xx.csv rename to sphinx/source/Ohmpi_V2_00/step_n_3/MUX_board_list_2_xx.csv diff --git a/sphinx/source/Ohmpi_V2_00/step_n_3/a/00_mes_board_components.jpg b/sphinx/source/Ohmpi_V2_00/step_n_3/a/00_mes_board_components.jpg new file mode 100644 index 0000000000000000000000000000000000000000..a04c9abdf2e35f6793c3ca0230c0a6f81a7ceb5d Binary files /dev/null and b/sphinx/source/Ohmpi_V2_00/step_n_3/a/00_mes_board_components.jpg differ diff --git a/sphinx/source/Ohmpi_V2_00/step_n_3/a/00_mes_board_components.jpg.gsr2 b/sphinx/source/Ohmpi_V2_00/step_n_3/a/00_mes_board_components.jpg.gsr2 new file mode 100644 index 0000000000000000000000000000000000000000..82debe82cd36ab709ea3bd43b495b47d0530264a --- /dev/null +++ b/sphinx/source/Ohmpi_V2_00/step_n_3/a/00_mes_board_components.jpg.gsr2 @@ -0,0 +1,9 @@ +Golden Software Cartographic Reference Information : Version 2.00 +System Type : GCS +Georef Method : Affine With Coefficients +Georef Coefficient A : 3.98232497892982 +Georef Coefficient B : 0 +Georef Coefficient C : 0 +Georef Coefficient D : 0 +Georef Coefficient E : 3.98093587521664 +Georef Coefficient F : 0 diff --git a/sphinx/source/Ohmpi_V2_00/step_n_5/IMG_20211026_123517.jpg b/sphinx/source/Ohmpi_V2_00/step_n_3/a/IMG_20211026_123517.jpg similarity index 100% rename from sphinx/source/Ohmpi_V2_00/step_n_5/IMG_20211026_123517.jpg rename to sphinx/source/Ohmpi_V2_00/step_n_3/a/IMG_20211026_123517.jpg diff --git a/sphinx/source/Ohmpi_V2_00/step_n_5/IMG_20211026_131345.jpg b/sphinx/source/Ohmpi_V2_00/step_n_3/a/IMG_20211026_131345.jpg similarity index 100% rename from sphinx/source/Ohmpi_V2_00/step_n_5/IMG_20211026_131345.jpg rename to sphinx/source/Ohmpi_V2_00/step_n_3/a/IMG_20211026_131345.jpg diff --git a/sphinx/source/Ohmpi_V2_00/step_n_5/IMG_20211026_135840.jpg b/sphinx/source/Ohmpi_V2_00/step_n_3/a/IMG_20211026_135840.jpg similarity index 100% rename from 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a/sphinx/source/Ohmpi_V2_00/step_n_5/IMG_20211102_145223.jpg b/sphinx/source/Ohmpi_V2_00/step_n_3/a/IMG_20211102_145223.jpg similarity index 100% rename from sphinx/source/Ohmpi_V2_00/step_n_5/IMG_20211102_145223.jpg rename to sphinx/source/Ohmpi_V2_00/step_n_3/a/IMG_20211102_145223.jpg diff --git a/sphinx/source/Ohmpi_V2_00/step_n_3/a/MUX_board_list_2_xx.csv b/sphinx/source/Ohmpi_V2_00/step_n_3/a/MUX_board_list_2_xx.csv new file mode 100644 index 0000000000000000000000000000000000000000..71f507bbb0314dfd0a32a0aa42ac86b9925ecef5 --- /dev/null +++ b/sphinx/source/Ohmpi_V2_00/step_n_3/a/MUX_board_list_2_xx.csv @@ -0,0 +1,18 @@ +Component,Number,Cost per unit € ,Total cost €,Manufacturer,Manufacturer s reference,Web reference +Printed circuit board ,4,140,560,Asler,-,- +Pin strip no ejector 16 pins,16,0.62,9.92,BLK electronic,10120550,https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994 +diode-1n4007,256,0.091,23.296,Diodes Incorporated,1N4007-T,https://www.mouser.fr/ProductDetail/Diodes-Incorporated/1N4007-T?qs=sGAEpiMZZMueQxo7L%2FBPyAkbORUUMREn +Pin strip no ejector 6 pins,4,0.39,1.56,BLK electronic,10120550,https://www.conrad.com/p/tru-components-1580994-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-1580994 +Dual screw terminal (5.08-mm pitch),12,0.648,7.776,CUI Devices,TB009-508-02BE,https://www.mouser.fr/ProductDetail/CUI-Devices/TB009-508-02BE?qs=vLWxofP3U2wCFk5uCkWTkA%3D%3D +Generic male header - 3 pins,12,0.205,2.46,TE Connectivity,4-103321-5,https://www.mouser.fr/ProductDetail/TE-Connectivity/4-103321-5?qs=5TwgZeq9E7HSYLqaljJYrw%3D%3D +MCP23017 I2C I/O Expander,16,2.5,40,Adafruit,732,https://www.mouser.fr/ProductDetail/Adafruit/732?qs=sGAEpiMZZMsKEdP9slC0Yfx16nYdMpXJueeOGoLBlDI%3D +Omron G5LE-1-VD 12 VDC PCB relay 12 V DC 8 A 1,256,1.27,325.12,Omron,G5LE-1-VD 12 VDC,https://www.conrad.com/p/omron-g5le-1-vd-12-vdc-pcb-relay-12-v-dc-8-a-1-change-over-1-pcs-503811 +ZVN4206A MOSFET-NCHANNEL,256,0.471,120.576,Diodes Incorporated ,ZVN4206A,https://www.mouser.fr/ProductDetail/Diodes-Incorporated/ZVN4206A?qs=vHuUswq2%252Bsz9b%2Ff6fcXt7g%3D%3D +100k? Resistor,256,0.061,15.616,Vishay / Beyschlag ,MBA02040C1003FRP00 ,https://www.mouser.fr/ProductDetail/Vishay-Beyschlag/MBA02040C1003FRP00?qs=mzRxyRlhVdt9crF7Zyf%2F5Q%3D%3D +Adafruit TCA9548A,4,5.89,23.56,Adafruit ,2717,https://www.mouser.fr/ProductDetail/Adafruit/2717?qs=sGAEpiMZZMsyYdr3R27aV4EQf73yOH%252Baqg%252BZ3hVktao%3D +BKL Electronic 10120558 Pin strip no ejector Contact spacing: 2.54 mm Total number of pins: 16 No. of rows: 2 1 pc(s),16,0.51,8.16,BLK electronic,10120558,https://www.conrad.com/p/bkl-electronic-10120558-pin-strip-no-ejector-contact-spacing-254-mm-total-number-of-pins-16-no-of-rows-2-1-pcs-741727?searchTerm=741727&searchType=suggest&searchSuggest=product +BKL Electronic 10120862 Pin connector + strain relief Contact spacing: 2.54 mm Total number of pins: 6 No. of rows: 2 1,16,0.84,13.44,BLK electronic,10120862,https://www.conrad.com/p/bkl-electronic-10120862-pin-connector-strain-relief-contact-spacing-254-mm-total-number-of-pins-6-no-of-rows-2-1-742063 +BKL Electronic 10120158/10 Ribbon cable Contact spacing: 1.27 mm 16 x 0.08 mm Multi-coloured 10 m,1,27,27,BLK electronic,10120158/10,https://www.conrad.com/p/bkl-electronic-1012015810-ribbon-cable-contact-spacing-127-mm-16-x-008-mm-multi-coloured-10-m-1548658?searchTerm=1548658&searchType=suggest&searchSuggest=product +spacer 5.5 HEX 25 mm M3 male/female,31,2.79,86.49,Keystone Electronics ,24300,https://www.mouser.fr/ProductDetail/Keystone-Electronics/24300?qs=UWqYQ%2F2cZWu0ejpOzmZC2A%3D%3D +Screw,9,0.305,2.745,APM HEXSEAL,RM3X8MM-2701,https://www.mouser.fr/ProductDetail/APM-HEXSEAL/RM3X8MM-2701?qs=JJSE%2F12mKnS3VxSDrYXUHw%3D%3D +spacer 5.5 HEX 25 mm M3 female/female,9,0.846,7.614,Keystone Electronics ,25515,https://www.mouser.fr/ProductDetail/Keystone-Electronics/25515?qs=UWqYQ%2F2cZWuxuhUmfr%252BZuQ%3D%3D diff --git a/sphinx/source/Ohmpi_V2_00/step_n_5/MUX_board_list_2_xx.xlsx b/sphinx/source/Ohmpi_V2_00/step_n_3/a/MUX_board_list_2_xx.xlsx similarity index 100% rename from sphinx/source/Ohmpi_V2_00/step_n_5/MUX_board_list_2_xx.xlsx rename to sphinx/source/Ohmpi_V2_00/step_n_3/a/MUX_board_list_2_xx.xlsx diff --git a/sphinx/source/V2_00.rst b/sphinx/source/V2_00.rst index 5263c54b0263fac5142fd21a07d6a8e4424ca1d5..f08420d7b0f7a6c81f78eeb0e0ebd6f2ad13a758 100644 --- a/sphinx/source/V2_00.rst +++ b/sphinx/source/V2_00.rst @@ -1,6 +1,6 @@ -***************************************** -OhmPi V 2.xx (64 or 128 electrodes) -***************************************** +******************************************** +OhmPi V 2.xx (64 or 128 electrodes and 12V) +******************************************** .. figure:: Under-Construction.png :width: 500px @@ -70,6 +70,7 @@ Ohmpi 2 step by step Ohmpi_V2_00/V2_00_step_01 Ohmpi_V2_00/V2_00_step_02 + Ohmpi_V2_00/V2_00_step_03