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*.synctex.gz
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**/figs/*.tex
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# Emacs
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auto/
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# Simulink Real Time
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*bio.m
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*pt.m
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*ref.m
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*ri.m
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*.autosave
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octave-workspace
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doc/0900766b815ea422.pdf
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doc/0900766b815ea422.pdf
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doc/IO131-OEM-Datasheet.pdf
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doc/PD200-V7-R1.pdf
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<?xml version="1.0" encoding="utf-8"?>
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<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Strict//EN"
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"http://www.w3.org/TR/xhtml1/DTD/xhtml1-strict.dtd">
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<html xmlns="http://www.w3.org/1999/xhtml" lang="en" xml:lang="en">
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<head>
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<!-- 2020-12-14 lun. 17:26 -->
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<meta http-equiv="Content-Type" content="text/html;charset=utf-8" />
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<title>Voltage Amplifier PD200 - Test Bench</title>
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<meta name="generator" content="Org mode" />
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<meta name="author" content="Dehaeze Thomas" />
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<link rel="stylesheet" type="text/css" href="https://research.tdehaeze.xyz/css/style.css"/>
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<script type="text/javascript" src="https://research.tdehaeze.xyz/js/script.js"></script>
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<script>MathJax = {
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tex: {
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tags: 'ams',
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macros: {bm: ["\\boldsymbol{#1}",1],}
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}
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</script>
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<script type="text/javascript" src="https://cdn.jsdelivr.net/npm/mathjax@3/es5/tex-mml-chtml.js"></script>
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</head>
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<body>
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<div id="org-div-home-and-up">
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<a accesskey="h" href="../index.html"> UP </a>
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<a accesskey="H" href="../index.html"> HOME </a>
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</div><div id="content">
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<h1 class="title">Voltage Amplifier PD200 - Test Bench</h1>
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<div id="table-of-contents">
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<h2>Table of Contents</h2>
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<div id="text-table-of-contents">
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<ul>
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<li><a href="#org90ca17e">1. Voltage Amplifier Model</a></li>
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<li><a href="#org26d3b73">2. Noise measurement</a></li>
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<li><a href="#org83fb6ce">3. Transfer Function measurement</a></li>
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</ul>
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</div>
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</div>
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<div id="outline-container-org90ca17e" class="outline-2">
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<h2 id="org90ca17e"><span class="section-number-2">1</span> Voltage Amplifier Model</h2>
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<div class="outline-text-2" id="text-1">
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<p>
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The Amplifier is characterized by its dynamics from voltage inputs \(V_{in}\) to voltage output \(V_{out}\).
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Ideally, the gain from \(V_{in}\) to \(V_{out}\) is constant over a wide frequency band with very small phase drop.
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</p>
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<p>
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It is also characterized by its input noise \(n\).
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This noise is described by its Power Spectral Density.
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</p>
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<div id="org8977a85" class="figure">
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<p><img src="figs/pd200-model-schematic.png" alt="pd200-model-schematic.png" />
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</p>
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</div>
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</div>
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</div>
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<div id="outline-container-org26d3b73" class="outline-2">
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<h2 id="org26d3b73"><span class="section-number-2">2</span> Noise measurement</h2>
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<div class="outline-text-2" id="text-2">
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<div id="org11e9fa2" class="figure">
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<p><img src="figs/setup-noise-measurement.png" alt="setup-noise-measurement.png" />
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</p>
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<p><span class="figure-number">Figure 2: </span>Figure caption</p>
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</div>
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</div>
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</div>
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<div id="outline-container-org83fb6ce" class="outline-2">
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<h2 id="org83fb6ce"><span class="section-number-2">3</span> Transfer Function measurement</h2>
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<div class="outline-text-2" id="text-3">
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<div id="org6a1d091" class="figure">
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<p><img src="figs/setup-dynamics-measurement.png" alt="setup-dynamics-measurement.png" />
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</p>
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<p><span class="figure-number">Figure 3: </span>Figure caption</p>
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</div>
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</div>
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</div>
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</div>
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<div id="postamble" class="status">
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<p class="author">Author: Dehaeze Thomas</p>
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<p class="date">Created: 2020-12-14 lun. 17:26</p>
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</div>
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</body>
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</html>
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index.org
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#+TITLE: Voltage Amplifier PD200 - Test Bench
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:DRAWER:
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#+LANGUAGE: en
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#+EMAIL: dehaeze.thomas@gmail.com
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#+AUTHOR: Dehaeze Thomas
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#+HTML_LINK_HOME: ../index.html
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#+HTML_LINK_UP: ../index.html
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#+HTML_HEAD: <link rel="stylesheet" type="text/css" href="https://research.tdehaeze.xyz/css/style.css"/>
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#+HTML_HEAD: <script type="text/javascript" src="https://research.tdehaeze.xyz/js/script.js"></script>
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#+BIND: org-latex-image-default-option "scale=1"
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#+BIND: org-latex-image-default-width ""
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#+LaTeX_CLASS: scrreprt
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#+LaTeX_CLASS_OPTIONS: [a4paper, 10pt, DIV=12, parskip=full]
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#+LaTeX_HEADER_EXTRA: \input{preamble.tex}
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#+PROPERTY: header-args:matlab :session *MATLAB*
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#+PROPERTY: header-args:matlab+ :comments org
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#+PROPERTY: header-args:matlab+ :exports both
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#+PROPERTY: header-args:matlab+ :results none
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#+PROPERTY: header-args:matlab+ :eval no-export
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#+PROPERTY: header-args:matlab+ :noweb yes
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#+PROPERTY: header-args:matlab+ :mkdirp yes
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#+PROPERTY: header-args:matlab+ :output-dir figs
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#+PROPERTY: header-args:latex :headers '("\\usepackage{tikz}" "\\usepackage{import}" "\\import{$HOME/Cloud/tikz/org/}{config.tex}")
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#+PROPERTY: header-args:latex+ :imagemagick t :fit yes
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#+PROPERTY: header-args:latex+ :iminoptions -scale 100% -density 150
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#+PROPERTY: header-args:latex+ :imoutoptions -quality 100
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#+PROPERTY: header-args:latex+ :results file raw replace
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#+PROPERTY: header-args:latex+ :buffer no
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#+PROPERTY: header-args:latex+ :tangle no
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#+PROPERTY: header-args:latex+ :eval no-export
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#+PROPERTY: header-args:latex+ :exports results
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#+PROPERTY: header-args:latex+ :mkdirp yes
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#+PROPERTY: header-args:latex+ :output-dir figs
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#+PROPERTY: header-args:latex+ :post pdf2svg(file=*this*, ext="png")
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:END:
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* Introduction :ignore:
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The goal of this test bench is to characterize the Voltage amplifier [[https://www.piezodrive.com/drivers/pd200-60-watt-voltage-amplifier/][PD200]] from PiezoDrive.
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* Voltage Amplifier Model
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The Amplifier is characterized by its dynamics from voltage inputs $V_{in}$ to voltage output $V_{out}$.
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Ideally, the gain from $V_{in}$ to $V_{out}$ is constant over a wide frequency band with very small phase drop.
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It is also characterized by its input noise $n$.
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This noise is described by its Power Spectral Density.
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#+begin_src latex :file pd200-model-schematic.pdf
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\begin{tikzpicture}
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\node[block] (G) at (0,0){$G(s)$};
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\node[addb, left=0.8 of G] (add){};
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\draw[<-] (add.west) -- ++(-1.2, 0) node[above right]{$V_{in}$};
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\draw[->] (add.east) -- (G.west);
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\draw[->] (G.east) -- ++(1.2, 0) node[above left]{$V_{out}$};
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\draw[<-] (add.north) -- ++(0, 0.6) node[below right](n){$n$};
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\begin{scope}[on background layer]
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\node[fit={(add.west|-G.south) (n.north-|G.east)}, inner sep=8pt, draw, dashed, fill=black!20!white] (P) {};
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\node[below] at (P.north) {PD-200};
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\end{scope}
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\end{tikzpicture}
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#+end_src
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#+name: fig:pd200-model-schematic
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#+caption: Model of the voltage amplifier
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#+RESULTS:
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[[file:figs/pd200-model-schematic.png]]
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* Noise measurement
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#+begin_note
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Here are the documentation of the equipment used for this test bench:
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- Voltage Amplifier [[file:doc/PD200-V7-R1.pdf][PD200]]
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- Load Capacitor [[file:doc/0900766b815ea422.pdf][EPCOS 10μF Multilayer Ceramic Capacitor]]
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- Low Noise Voltage Amplifier [[file:doc/egg-5113-preamplifier.pdf][EG&G 5113]]
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- Speedgoat ADC [[file:doc/IO131-OEM-Datasheet.pdf][IO313]]
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#+end_note
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#+name: fig:setup-noise-measurement
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#+caption: Schematic of the test bench to measure the Power Spectral Density of the Voltage amplifier noise $n$
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#+attr_latex: :width \linewidth
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[[file:figs/setup-noise-measurement.png]]
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* Transfer Function measurement
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In order to measure the transfer function from the input voltage $V_{in}$ to the output voltage $V_{out}$, the test bench shown in Figure [[fig:setup-dynamics-measurement]] is used.
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#+begin_note
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Here are the documentation of the equipment used for this test bench:
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- Voltage Amplifier [[file:doc/PD200-V7-R1.pdf][PD200]]
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- Load Capacitor [[file:doc/0900766b815ea422.pdf][EPCOS 10μF Multilayer Ceramic Capacitor]]
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- Speedgoat DAC/ADC [[file:doc/IO131-OEM-Datasheet.pdf][IO313]]
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#+end_note
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#+name: fig:setup-dynamics-measurement
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#+caption: Schematic of the test bench to estimate the dynamics from voltage input $V_{in}$ to voltage output $V_{out}$
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[[file:figs/setup-dynamics-measurement.png]]
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