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platform_base.html
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<!DOCTYPE html>
<html>
<head>
<meta charset="utf-8">
<title>Construct your texture discrimination task setup!</title>
<meta http-equiv="X-UA-Compatible" content="IE=edge">
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<body>
<header class="site-header">
<div class="wrapper header-wrapper" >
<div class=header-text>
<h1 class="site-title">Construct your texture discrimination task setup!</h1>
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<div class="page-content">
<div>
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<a class="navhome" href="./">
Construct your texture discrimination task setup!
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<a class="not-active" href="./platform.html">
Construction of the elevated platform
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<a class="active" href="./platform_base.html">
Platform part 1: Base platform
</a>
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<a class="not-active" href="./mouse_tube.html">
Platform part 2: Mouse tube
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Platform part 3: Head fixation
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<a class="not-active" href="./lick_detection.html">
Platform part 4: Lick detection
</a>
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Construction of the peripherals
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Motor part 1: Horizontal motor
</a>
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Motor part 2: Rotational motor
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Set up of the electronics
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Electronics part 1: Set up
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Electronics part 2: Script initializing
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Electronics part 3: Program explanation
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Information about training
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<h1 id="platform-part-1-base-platform">Platform part 1: Base platform</h1>
<p>First start with the base for your setup.</p>
<div class="pagebom">
<h3 id="part">Parts</h3>
<ul>
<li>2 <a Class="bom" href="framework/MB1030_M.html">10 cm x 30 cm breadboard</a> </li>
<li>1 <a Class="bom" href="framework/MB3045_M.html">30 cm x 45 cm breadboard</a> </li>
<li>8 <a Class="bom" href="framework/RS4M.html">4mm post spacer</a> </li>
<li>4 <a Class="bom" href="framework/C1515_M.html">angle</a> </li>
<li>4 <a Class="bom" href="framework/SS6MS20.html">headless M6 screw</a> </li>
<li>8 <a Class="bom" href="screws/m6_screws.html">M6 screws</a> </li>
<li>4 <a Class="bom" href="framework/RS25/M.html">pillar</a> </li>
</ul>
</div>
<h2 class="page-step" id="prepare-the-pillars">Step 1: Prepare the pillars</h2>
<ul>
<li>
<p>Take four <a href="framework/RS25/M.html">pillar</a>s and place in each one <a href="framework/SS6MS20.html">headless M6 screw</a> at one end.</p>
</li>
<li>
<p>Due to the length of the <a href="framework/SS6MS20.html" title="">headless M6 screw</a>s place one <a href="framework/RS4M.html">4mm post spacer</a> at the end of each screw.</p>
</li>
<li>
<p>Now connect the two lower <a href="framework/MB1030_M.html">10 cm x 30 cm breadboard</a>s with the pillars.</p>
<ul>
<li>Screw in each breadboard two pillars, each on one short side of the board</li>
<li>Use a thread with one offset inwards</li>
</ul>
</li>
<li>
<p>Attach to the other end of each pillar an <a href="framework/C1515_M.html">angle</a> with the round clamp.</p>
<ul>
<li>The flat side needs to point away from the breadboard</li>
</ul>
</li>
</ul>
<h2 class="page-step" id="attach-the-upper-breadbaord">Step 2: Attach the upper breadbaord</h2>
<ul>
<li>Place the upper <a href="framework/MB3045_M.html">30 cm x 45 cm breadboard</a> on top of all angles</li>
<li>Use <a href="screws/m6_screws.html">M6 screws</a> to fixate the upper breadboard</li>
<li>Ensure that the pillars can raise above the platform if you need to lower the height</li>
</ul>
<p>You have now built the <a name="output__base-table"></a>base table. </p>
<p><img alt="" src="images/stuetze.png" title="" /></p>
<p>Version with only 2 pillars</p>
<h2 id="alternative-ground-level">Alternative ground level</h2>
<p>If you have an experimental setup of a table with threads and vibration decoupling, its recommened to use that instead of the lower breadboards. You need to check for thread and positional compatibility. </p>
<h2 id="optional-less-material">Optional: Less material</h2>
<p>You can use only two pillars and place them diagonal to save some material with the cost of some stability.
This version is also used in the picture above.</p>
<hr />
<p><a href="platform.html">Previous page</a> | <a href="mouse_tube.html">Next page</a></p>
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