test-bench-pd200/index.html

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<title>Voltage Amplifier PD200 - Test Bench</title>
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<h1 class="title">Voltage Amplifier PD200 - Test Bench</h1>
<div id="table-of-contents">
<h2>Table of Contents</h2>
<div id="text-table-of-contents">
<ul>
<li><a href="#org90ca17e">1. Voltage Amplifier Model</a></li>
<li><a href="#org26d3b73">2. Noise measurement</a></li>
<li><a href="#org83fb6ce">3. Transfer Function measurement</a></li>
</ul>
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</div>
<div id="outline-container-org90ca17e" class="outline-2">
<h2 id="org90ca17e"><span class="section-number-2">1</span> Voltage Amplifier Model</h2>
<div class="outline-text-2" id="text-1">
<p>
The Amplifier is characterized by its dynamics from voltage inputs \(V_{in}\) to voltage output \(V_{out}\).
Ideally, the gain from \(V_{in}\) to \(V_{out}\) is constant over a wide frequency band with very small phase drop.
</p>
<p>
It is also characterized by its input noise \(n\).
This noise is described by its Power Spectral Density.
</p>
<div id="org8977a85" class="figure">
<p><img src="figs/pd200-model-schematic.png" alt="pd200-model-schematic.png" />
</p>
</div>
</div>
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<div id="outline-container-org26d3b73" class="outline-2">
<h2 id="org26d3b73"><span class="section-number-2">2</span> Noise measurement</h2>
<div class="outline-text-2" id="text-2">
<div id="org11e9fa2" class="figure">
<p><img src="figs/setup-noise-measurement.png" alt="setup-noise-measurement.png" />
</p>
<p><span class="figure-number">Figure 2: </span>Figure caption</p>
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<h2 id="org83fb6ce"><span class="section-number-2">3</span> Transfer Function measurement</h2>
<div class="outline-text-2" id="text-3">
<div id="org6a1d091" class="figure">
<p><img src="figs/setup-dynamics-measurement.png" alt="setup-dynamics-measurement.png" />
</p>
<p><span class="figure-number">Figure 3: </span>Figure caption</p>
</div>
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<div id="postamble" class="status">
<p class="author">Author: Dehaeze Thomas</p>
<p class="date">Created: 2020-12-14 lun. 17:26</p>
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