2218-2128: fix image imports
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@ -1,5 +1,6 @@
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\include{preamble.tex}
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\graphicspath{{images/2218-2128}{images}}
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\graphicspath{{images}}
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\title{2118 BNC-TTL / 2128 SMA-TTL}
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\author{M-Labs Limited}
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\date{January 2022}
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@ -38,19 +39,9 @@ Each channel supports 50\textOmega~terminations individually controllable using
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Outputs tolerate short circuits indefinitely.
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The card support a minimum pulse width of 3ns.
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% Switch to next column
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\vfill\break
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\newcommand*{\MyLabel}[3][2cm]{\parbox{#1}{\centering #2 \\ #3}}
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\newcommand*{\MymyLabel}[3][4cm]{\parbox{#1}{\centering #2 \\ #3}}
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\newcommand{\repeatfootnote}[1]{\textsuperscript{\ref{#1}}}
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\newcommand{\inputcolorboxminted}[2]{%
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\begin{tcolorbox}[colback=white]
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\inputminted[#1, gobble=4]{python}{#2}
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\end{tcolorbox}
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}
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\begin{figure}[h]
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\centering
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\scalebox{0.88}{
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@ -108,15 +99,15 @@ The card support a minimum pulse width of 3ns.
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\draw (3.05,-2.1) node[twoportshape,t={Isolator}, circuitikz/bipoles/twoport/width=1.3, scale=0.4] (iso4) {};
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\draw (3.05,-2.7) node[twoportshape,t={Isolator}, circuitikz/bipoles/twoport/width=1.3, scale=0.4] (i2ciso1) {};
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\draw (4.5,-1.15) node[twoportshape,t=\MymyLabel{4-Channel LVDS}{Line Transceiver}, circuitikz/bipoles/twoport/width=2.6, scale=0.7, rotate=-90] (lvds1) {};
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\draw (4.5,-1.15) node[twoportshape,t=\fourcm{4-Channel LVDS}{Line Transceiver}, circuitikz/bipoles/twoport/width=2.6, scale=0.7, rotate=-90] (lvds1) {};
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\draw (6.8,-0.9) -- ++(0.00001,0) node[twoportshape, anchor=left, t={EEM port}, circuitikz/bipoles/twoport/width=6, scale=0.6, rotate=-90] (kasli) {} ;
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\draw (0.8,-3.5) node[twoportshape,t=\MymyLabel{Per-bank \phantom{spac} }{Input/Output Switch}, circuitikz/bipoles/twoport/width=2.7, scale=0.44] (ioswitch) {};
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\draw (3.05,-3.5) node[twoportshape,t=\MymyLabel{IO Expander}{for I2C Bus}, circuitikz/bipoles/twoport/width=1.8, scale=0.5] (i2c) {};
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\draw (0.8,-3.5) node[twoportshape,t=\fourcm{Per-bank \phantom{spac} }{Input/Output Switch}, circuitikz/bipoles/twoport/width=2.7, scale=0.44] (ioswitch) {};
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\draw (3.05,-3.5) node[twoportshape,t=\fourcm{IO Expander}{for I2C Bus}, circuitikz/bipoles/twoport/width=1.8, scale=0.5] (i2c) {};
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\draw (5.68,-2.3) node[twoportshape,t=EEPROM, circuitikz/bipoles/twoport/width=1.2, scale=0.5] (eeprom) {};
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\draw (0.8,-2.7) node[twoportshape,t=\MymyLabel{High-Z/50\textOmega}{Switch \phantom{ssssss} }, circuitikz/bipoles/twoport/width=2, scale=0.4] (termswitch1) {};
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\draw (0.8,-2.7) node[twoportshape,t=\fourcm{High-Z/50\textOmega}{Switch \phantom{ssssss} }, circuitikz/bipoles/twoport/width=2, scale=0.4] (termswitch1) {};
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% Termination Switch 1,2,3,4
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\begin{scope}[xshift=0.9cm, yshift=-2.66cm, scale=0.12, every node/.style={scale=0.1}, rotate=-90 ]
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@ -154,7 +145,7 @@ The card support a minimum pulse width of 3ns.
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\draw (1.25,0)to[short,o-](1.6,0) ;
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\end{scope}
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\draw (0.8,-3.05) node[twoportshape,t=\MymyLabel{High-Z/50\textOmega}{Switch \phantom{ssssss} }, circuitikz/bipoles/twoport/width=2, scale=0.4] (termswitch2) {};
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\draw (0.8,-3.05) node[twoportshape,t=\fourcm{High-Z/50\textOmega}{Switch \phantom{ssssss} }, circuitikz/bipoles/twoport/width=2, scale=0.4] (termswitch2) {};
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% Termination Switch 5,6,7,8
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\begin{scope}[xshift=0.9cm, yshift=-3.02cm, scale=0.12, every node/.style={scale=0.1}, rotate=-90 ]
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@ -229,7 +220,7 @@ The card support a minimum pulse width of 3ns.
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\draw (3.05,-2.1) node[twoportshape,t={Isolator}, circuitikz/bipoles/twoport/width=1.3, scale=0.4] (iso8) {};
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\draw (3.05,0.6) node[twoportshape,t={Isolator}, circuitikz/bipoles/twoport/width=1.3, scale=0.4] (i2ciso2) {};
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\draw (4.5,-1.05) node[twoportshape,t=\MymyLabel{4-Channel LVDS}{Line Transceiver}, circuitikz/bipoles/twoport/width=2.6, scale=0.7, rotate=-90] (lvds2) {};
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\draw (4.5,-1.05) node[twoportshape,t=\fourcm{4-Channel LVDS}{Line Transceiver}, circuitikz/bipoles/twoport/width=2.6, scale=0.7, rotate=-90] (lvds2) {};
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\end{scope}
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@ -307,12 +298,12 @@ The card support a minimum pulse width of 3ns.
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\begin{figure}[hbt!]
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\centering
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\subfloat[\centering BNC-TTL]{{
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\includegraphics[height=1.8in]{DIO_BNC_FP.jpg}
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\includegraphics[height=1.8in]{photo2118.jpg}
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\includegraphics[height=1.8in]{2118-2128/DIO_BNC_FP.jpg}
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\includegraphics[height=1.8in]{2118-2128/photo2118.jpg}
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}}%
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\subfloat[\centering SMA-TTL]{{
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\includegraphics[height=1.8in]{DIO_SMA_FP.jpg}
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\includegraphics[height=1.8in]{photo2128.jpg}
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\includegraphics[height=1.8in]{2118-2128/DIO_SMA_FP.jpg}
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\includegraphics[height=1.8in]{2118-2128/photo2128.jpg}
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}}%
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\caption{BNC-TTL/SMA-TTL Card photos}%
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\label{fig:example}%
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@ -386,7 +377,7 @@ The output signal is measured and shown.
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\begin{figure}[h]
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\centering
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\includegraphics[height=3in]{bnc_ttl_min_pulse_width.png}
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\includegraphics[height=3in]{2118-2128/bnc_ttl_min_pulse_width.png}
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\caption{Minimum pulse width required for BNC-TTL card}
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\end{figure}
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@ -401,7 +392,7 @@ The first output (blue) pulse is the result of the second input (red, 3ns width)
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\begin{multicols}{2}
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\begin{center}
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\centering
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\includegraphics[height=2.8in]{bnc_ttl_drawings.pdf}
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\includegraphics[height=2.8in]{2118-2128/bnc_ttl_drawings.pdf}
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\captionof{figure}{2118 BNC-TTL front panel drawings}
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\end{center}
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@ -409,7 +400,7 @@ The first output (blue) pulse is the result of the second input (red, 3ns width)
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\begin{center}
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\centering
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\includegraphics[height=2.8in]{bnc_ttl_assembly.pdf}
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\includegraphics[height=2.8in]{2118-2128/bnc_ttl_assembly.pdf}
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\captionof{figure}{2118 BNC-TTL front panel assembly}
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\end{center}
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\end{multicols}
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@ -453,7 +444,7 @@ The first output (blue) pulse is the result of the second input (red, 3ns width)
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\begin{multicols}{2}
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\begin{center}
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\centering
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\includegraphics[height=3in]{sma_ttl_drawings.pdf}
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\includegraphics[height=3in]{2118-2128/sma_ttl_drawings.pdf}
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\captionof{figure}{2128 SMA-TTL front panel drawings}
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\end{center}
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@ -461,7 +452,7 @@ The first output (blue) pulse is the result of the second input (red, 3ns width)
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\begin{center}
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\centering
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\includegraphics[height=3in]{sma_ttl_assembly.pdf}
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\includegraphics[height=3in]{2118-2128/sma_ttl_assembly.pdf}
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\captionof{figure}{2128 SMA-TTL front panel assembly}
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\end{center}
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\end{multicols}
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@ -518,10 +509,10 @@ IO direction switches partly decides the IO direction of each bank.
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\begin{figure}[hbt!]
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\centering
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\subfloat[\centering BNC-TTL]{{
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\includegraphics[height=1.5in]{bnc_ttl_switches.jpg}
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\includegraphics[height=1.5in]{2118-2128/bnc_ttl_switches.jpg}
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}}%
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\subfloat[\centering SMA-TTL]{{
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\includegraphics[height=1.5in]{sma_ttl_switches.jpg}
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\includegraphics[height=1.5in]{2118-2128/sma_ttl_switches.jpg}
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}}%
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\caption{Position of switches}%
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\end{figure}
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