247 lines
12 KiB
TeX
247 lines
12 KiB
TeX
\input{preamble.tex}
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\graphicspath{{images/5518-5528}{images}}
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\title{5518 BNC-IDC / 5528 SMA-IDC}
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\author{M-Labs Limited}
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\date{January 2022}
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\revision{Revision 1}
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\companylogo{\includegraphics[height=0.73in]{artiq_sinara.pdf}}
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\begin{document}
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\maketitle
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\section{Features}
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\begin{itemize}
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\item{8 channels}
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\item{Internal IDC connector}
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\item{External BNC or SMA connectors}
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\end{itemize}
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\section{Applications}
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\begin{itemize}
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\item{Break out analog signals}
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\item{BNC or SMA adapters for: \begin{itemize}
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\item{5432 DAC Zotino}
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\item{5632 DAC Fastino}
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\end{itemize}}
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\item{(5528 only) SMA adapter for 5108 Sampler}
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\item{Convert from/to HD68 with 5568 HD68-IDC}
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\end{itemize}
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\section{General Description}
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The 5518 BNC-IDC card is a 8hp EEM module; the 5528 SMA-IDC card is a 4hp EEM module. Both adapter cards break out analog signals from IDC connectors to BNC (5518) or SMA (5528). IDC connectors can be found on 5108 Sampler, 5432 DAC Zotino, 5632 DAC Fastino and 5568 HD68-IDC.
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Each card provides 8 channels, with respectively BNC or SMA connectors. Breaking out all 32 channels of 5432 DAC Zotino, 5632 DAC Fastino or 5568 HD68-IDC requires four BNC/SMA-IDC cards. Breaking out all 8 ADC channels of 5108 Sampler requires only one BNC/SMA-IDC card.
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% Switch to next column
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\vfill\break
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\begin{figure}[h]
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\centering
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\scalebox{0.95}{
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\begin{circuitikz}[european, scale=1.2, every label/.append style={align=center}]
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\begin{scope}[]
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% Node to pin-point the locations of IO symbols
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\draw[color=white, text=black] (-0.1, 2.45) node[twoportshape, circuitikz/bipoles/twoport/width=1.2, scale=0.4 ] (io0) {};
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\draw[color=white, text=black] (-0.1, 1.75) node[twoportshape, circuitikz/bipoles/twoport/width=1.2, scale=0.4 ] (io1) {};
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\draw[color=white, text=black] (-0.1, 1.05) node[twoportshape, circuitikz/bipoles/twoport/width=1.2, scale=0.4 ] (io2) {};
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\draw[color=white, text=black] (-0.1, 0.35) node[twoportshape, circuitikz/bipoles/twoport/width=1.2, scale=0.4 ] (io3) {};
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\draw[color=white, text=black] (-0.1, -0.35) node[twoportshape, circuitikz/bipoles/twoport/width=1.2, scale=0.4 ] (io4) {};
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\draw[color=white, text=black] (-0.1, -1.05) node[twoportshape, circuitikz/bipoles/twoport/width=1.2, scale=0.4 ] (io5) {};
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\draw[color=white, text=black] (-0.1, -1.75) node[twoportshape, circuitikz/bipoles/twoport/width=1.2, scale=0.4 ] (io6) {};
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\draw[color=white, text=black] (-0.1, -2.45) node[twoportshape, circuitikz/bipoles/twoport/width=1.2, scale=0.4 ] (io7) {};
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% Labels for all IO symbols
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\node [label=left:\tiny{IO 0}] at (0.25, 2.45) {};
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\node [label=left:\tiny{IO 1}] at (0.25, 1.75) {};
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\node [label=left:\tiny{IO 2}] at (0.25, 1.05) {};
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\node [label=left:\tiny{IO 3}] at (0.25, 0.35) {};
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\node [label=left:\tiny{IO 4}] at (0.25, -0.35) {};
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\node [label=left:\tiny{IO 5}] at (0.25, -1.05) {};
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\node [label=left:\tiny{IO 6}] at (0.25, -1.75) {};
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\node [label=left:\tiny{IO 7}] at (0.25, -2.45) {};
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% draw all IO symbols
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\begin{scope}[scale=0.07 , rotate=-90, xshift=35cm, yshift=2cm]
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\draw (0,0.65) -- (0,3);
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\clip (-1.5,0) rectangle (1.5,1.5);
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\draw (0,0) circle(1.5);
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\clip (-0.8,0) rectangle (0.8,0.8);
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\draw (0,0) circle(0.8);
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\end{scope}
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\begin{scope}[scale=0.07 , rotate=-90, xshift=25cm, yshift=2cm]
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\draw (0,0.65) -- (0,3);
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\clip (-1.5,0) rectangle (1.5,1.5);
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\draw (0,0) circle(1.5);
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\clip (-0.8,0) rectangle (0.8,0.8);
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\draw (0,0) circle(0.8);
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\end{scope}
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\begin{scope}[scale=0.07 , rotate=-90, xshift=15cm, yshift=2cm]
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\draw (0,0.65) -- (0,3);
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\clip (-1.5,0) rectangle (1.5,1.5);
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\draw (0,0) circle(1.5);
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\clip (-0.8,0) rectangle (0.8,0.8);
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\draw (0,0) circle(0.8);
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\end{scope}
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\begin{scope}[scale=0.07 , rotate=-90, xshift=5cm, yshift=2cm]
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\draw (0,0.65) -- (0,3);
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\clip (-1.5,0) rectangle (1.5,1.5);
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\draw (0,0) circle(1.5);
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\clip (-0.8,0) rectangle (0.8,0.8);
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\draw (0,0) circle(0.8);
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\end{scope}
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\begin{scope}[scale=0.07 , rotate=-90, xshift=-5cm, yshift=2cm]
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\draw (0,0.65) -- (0,3);
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\clip (-1.5,0) rectangle (1.5,1.5);
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\draw (0,0) circle(1.5);
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\clip (-0.8,0) rectangle (0.8,0.8);
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\draw (0,0) circle(0.8);
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\end{scope}
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\begin{scope}[scale=0.07 , rotate=-90, xshift=-15cm, yshift=2cm]
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\draw (0,0.65) -- (0,3);
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\clip (-1.5,0) rectangle (1.5,1.5);
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\draw (0,0) circle(1.5);
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\clip (-0.8,0) rectangle (0.8,0.8);
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\draw (0,0) circle(0.8);
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\end{scope}
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\begin{scope}[scale=0.07 , rotate=-90, xshift=-25cm, yshift=2cm]
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\draw (0,0.65) -- (0,3);
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\clip (-1.5,0) rectangle (1.5,1.5);
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\draw (0,0) circle(1.5);
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\clip (-0.8,0) rectangle (0.8,0.8);
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\draw (0,0) circle(0.8);
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\end{scope}
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\begin{scope}[scale=0.07 , rotate=-90, xshift=-35cm, yshift=2cm]
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\draw (0,0.65) -- (0,3);
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\clip (-1.5,0) rectangle (1.5,1.5);
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\draw (0,0) circle(1.5);
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\clip (-0.8,0) rectangle (0.8,0.8);
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\draw (0,0) circle(0.8);
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\end{scope}
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% Draw CH0, CH1 & CH7 CM chokes
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\draw (3, 1.2) node[twoportshape, t=\fourcm{Common Mode}{Line Filter}, circuitikz/bipoles/twoport/width=2.2, scale=0.6] (cm0) {};
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\draw (3, 0.4) node[twoportshape, t=\fourcm{Common Mode}{Line Filter}, circuitikz/bipoles/twoport/width=2.2, scale=0.6] (cm1) {};
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\draw (3, -1.1) node[twoportshape, t=\fourcm{Common Mode}{Line Filter}, circuitikz/bipoles/twoport/width=2.2, scale=0.6] (cm7) {};
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% Omission dots for other channels
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\node at (3, -0.15)[circle,fill,inner sep=0.7pt]{};
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\node at (3, -0.35)[circle,fill,inner sep=0.7pt]{};
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\node at (3, -0.55)[circle,fill,inner sep=0.7pt]{};
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% IDC26 connector
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\draw (5.13, 0) node[twoportshape, t={IDC Port}, circuitikz/bipoles/twoport/width=3.8, scale=0.7, rotate=-90] (idc) {};
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% Connect IO connectors to CM chokes
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\draw [latexslim-latexslim] (io0.east) -- (1.3, 2.45) -- (1.3, 1.2) -- (cm0.west);
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\draw [latexslim-latexslim] (io1.east) -- (1.2, 1.75) -- (1.2, 0.4) -- (cm1.west);
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\draw [latexslim-latexslim] (io2.east) -- (1.1, 1.05) -- (1.1, -0.15) -- (2.5, -0.15);
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\draw [latexslim-latexslim] (io3.east) -- (1.0, 0.35) -- (1.0, -0.25) -- (2.5, -0.25);
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\draw [latexslim-latexslim] (io4.east) -- (1.0, -0.35) -- (1.0, -0.35) -- (2.5, -0.35);
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\draw [latexslim-latexslim] (io5.east) -- (1.1, -1.05) -- (1.1, -0.45) -- (2.5, -0.45);
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\draw [latexslim-latexslim] (io6.east) -- (1.2, -1.75) -- (1.2, -0.55) -- (2.5, -0.55);
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\draw [latexslim-latexslim] (io7.east) -- (1.3, -2.45) -- (1.3, -1.1) -- (cm7.west);
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% Connect CM chokes to the IDC connector
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\draw [latexslim-latexslim] (cm0.east) -- (4.85, 1.2);
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\draw [latexslim-latexslim] (cm1.east) -- (4.85, 0.4);
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\draw [latexslim-latexslim] (3.5, -0.15) -- ++(1.35, 0);
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\draw [latexslim-latexslim] (3.5, -0.25) -- ++(1.35, 0);
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\draw [latexslim-latexslim] (3.5, -0.35) -- ++(1.35, 0);
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\draw [latexslim-latexslim] (3.5, -0.45) -- ++(1.35, 0);
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\draw [latexslim-latexslim] (3.5, -0.55) -- ++(1.35, 0);
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\draw [latexslim-latexslim] (cm7.east) -- (4.85, -1.1);
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\end{scope}
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\end{circuitikz}
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}
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\caption{Simplified Block Diagram}
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\end{figure}
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\begin{figure}[hbt!]
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\centering
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\subfloat[\centering BNC-IDC]{{
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\includegraphics[height=2.5in]{photo5518.jpg}
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}}%
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\subfloat[\centering SMA-IDC]{{
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\includegraphics[height=2.6in]{photo5528.jpg}
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}}%
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\caption{BNC-IDC/SMA-IDC card photos}%
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\label{fig:example}%
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\end{figure}
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% For wide tables, a single column layout is better. It can be switched
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% page-by-page.
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\onecolumn
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\sourcesectiond{5518 BNC-IDC}{5528 SMA-IDC}{https://github.com/sinara-hw/BNC\_IDC}{https://github.com/sinara-hw/SMA\_IDC\_Adapter}
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\section{Electrical Specifications}
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Specifications of parameters are based on the datasheet of the
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common mode line filter\footnote{\label{cm_choke}\url{https://www.we-online.com/catalog/datasheet/744229.pdf}}.
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\begin{table}[h]
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\centering
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\begin{threeparttable}
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\caption{Electrical Specifications}
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\begin{tabularx}{0.65\textwidth}{l | c | c | X}
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\thickhline
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\textbf{Parameter} & \textbf{Max. Value} & \textbf{Unit} & \textbf{Conditions} \\
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\hline
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Rated voltage & 80 & V & \\
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\hline
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Rated current & 400 & mA & $\Delta T^{*}=40K$ \\
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\thickhline
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\end{tabularx}
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*$\Delta T$ refers to the temperature of the CM line filter minus the ambient.
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\end{threeparttable}
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\end{table}
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Impedance characteristics of common mode \& differential mode signal at different frequencies are shown in the following graph:
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\begin{figure}[H]
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\centering
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\includegraphics[height=4.8in]{idc_cm_choke.jpg}
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\caption{Common Mode Line Filter Impedance Characteristics}
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\end{figure}
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\newpage
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\section{Channel Mapping}
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The following table shows the corresponding channel numbers of the BNC/SMA-IDC adapter IO ports when connected to Sinara cards that support IDC connections.
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\begin{table}[h]
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\caption{Channel Mapping of BNC/SMA-IDC to Zotino, Fastino \& HD68-IDC}
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\centering
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\begin{tabular}{|c|c|c|c|c|c|c|c|c|}
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\hline
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IDC Port Label & \multicolumn{1}{l|}{IO 0} & \multicolumn{1}{l|}{IO 1} & \multicolumn{1}{l|}{IO 2} & \multicolumn{1}{l|}{IO 3} & \multicolumn{1}{l|}{IO 4} & \multicolumn{1}{l|}{IO 5} & \multicolumn{1}{l|}{IO 6} & \multicolumn{1}{l|}{IO 7} \\ \hline
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CH 0-7 & 0 & 1 & 2 & 3 & 4 & 5 & 6 & 7 \\ \hline
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CH 8-15 & 8 & 9 & 10 & 11 & 12 & 13 & 14 & 15 \\ \hline
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CH 16-23 & 16 & 17 & 18 & 19 & 20 & 21 & 22 & 23 \\ \hline
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CH 24-31 & 24 & 25 & 26 & 27 & 28 & 29 & 30 & 31 \\ \hline
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\end{tabular}
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\end{table}
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\begin{table}[h]
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\caption{Channel Mapping of BNC/SMA-IDC to 5108 Sampler}
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\centering
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\begin{tabular}{|l|l|l|l|l|l|l|l|l|}
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\hline
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& IO 0 & IO 1 & IO 2 & IO 3 & IO 4 & IO 5 & IO 6 & IO 7 \\ \hline
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Sampler Ch. & \multicolumn{1}{c|}{7} & \multicolumn{1}{c|}{6} & \multicolumn{1}{c|}{5} & \multicolumn{1}{c|}{4} & \multicolumn{1}{c|}{3} & \multicolumn{1}{c|}{2} & \multicolumn{1}{c|}{1} & \multicolumn{1}{c|}{0} \\ \hline
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\end{tabular}
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\end{table}
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\ordersection{5518 BNC-IDC/5528 SMA-IDC}
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\finalfootnote
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\end{document}
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