forked from sinara-hw/datasheets
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@ -19,6 +19,7 @@
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\usepackage{tikz}
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\usepackage{tikz}
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\usepackage{pgfplots}
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\usepackage{pgfplots}
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\usepackage{circuitikz}
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\usepackage{circuitikz}
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\usepackage{pifont}
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\usetikzlibrary{calc}
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\usetikzlibrary{calc}
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\usetikzlibrary{fit,backgrounds}
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\usetikzlibrary{fit,backgrounds}
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@ -395,6 +396,32 @@ All specifications are in $0\degree C \leq T_A \leq 70\degree C$ unless otherwis
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\newpage
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\newpage
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\section{Configuring IO Direction \& Termination}
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The termination and IO direction can be configured by switches.
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The per-channel termination and per-bank IO direction switches are found at the middle-left and middle-right of both cards respectively.
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Termination switches selects the termination of each channel, between high impedence (OFF) and 50\textOmega~(ON).
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IO direction switches partly decides the IO direction of each bank.
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\begin{itemize}
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\itemsep0em
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\item Closed switch (ON) \\
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Fix the corresponding bank to output. The direction cannot be changed by I\textsuperscript{2}C.
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\item Opened switch (OFF) \\
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Leave the direction configurable by I\textsuperscript{2}C.
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\end{itemize}
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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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}}%
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\subfloat[\centering SMA-TTL]{{
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\includegraphics[height=1.5in]{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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\section{Example ARTIQ code}
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\section{Example ARTIQ code}
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The sections below demonstrate simple usage scenarios of the 2118 BNC-TTL/2128 SMA-TTL card with the ARTIQ control system.
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The sections below demonstrate simple usage scenarios of the 2118 BNC-TTL/2128 SMA-TTL card with the ARTIQ control system.
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They do not exhaustively demonstrate all the features of the ARTIQ system.
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They do not exhaustively demonstrate all the features of the ARTIQ system.
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@ -414,6 +441,8 @@ def run(self):
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delay(500*ms)
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delay(500*ms)
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\end{minted}
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\end{minted}
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\newpage
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\subsection{Morse code}
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\subsection{Morse code}
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This example demonstrates some basic algorithmic features of the ARTIQ-Python language.
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This example demonstrates some basic algorithmic features of the ARTIQ-Python language.
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\begin{minted}{python}
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\begin{minted}{python}
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@ -437,8 +466,6 @@ def run(self):
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delay(700*ms)
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delay(700*ms)
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\end{minted}
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\end{minted}
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\newpage
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\subsection{Counting rising edges in a 1ms window}
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\subsection{Counting rising edges in a 1ms window}
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The channel should be configured as input in both the gateware and hardware.
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The channel should be configured as input in both the gateware and hardware.
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@ -462,6 +489,8 @@ def run(self):
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print(counts)
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print(counts)
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\end{minted}
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\end{minted}
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\newpage
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\subsection{Responding to an external trigger}
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\subsection{Responding to an external trigger}
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One channel needs to be configured as input, and the other as output.
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One channel needs to be configured as input, and the other as output.
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22
2238.tex
22
2238.tex
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@ -524,6 +524,28 @@ All specifications are in the recommended operating temperature range unless oth
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\end{threeparttable}
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\end{threeparttable}
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\end{table}
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\end{table}
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\section{Configuring IO Direction \& Termination}
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The termination and IO direction can be configured by switches.
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The per-channel termination and per-bank IO direction switches are found at the top and middle of the card respectively.
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\begin{multicols}{2}
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Termination switches selects the termination of each channel, between high impedence (OFF) and 50\textOmega~(ON).
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IO direction switches partly decides the IO direction of each bank.
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\begin{itemize}
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\itemsep0em
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\item Closed switch (ON) \\
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Fix the corresponding bank to output. The direction cannot be changed by I\textsuperscript{2}C.
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\item Opened switch (OFF) \\
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Leave the direction configurable by I\textsuperscript{2}C.
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\end{itemize}
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\columnbreak
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\begin{center}
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\centering
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\includegraphics[height=1.8in]{mcx_ttl_switches.jpg}
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\captionof{figure}{Position of switches}
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\end{center}
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\end{multicols}
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\newpage
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\newpage
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\section{Example ARTIQ code}
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\section{Example ARTIQ code}
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The sections below demonstrate simple usage scenarios of the 2245 LVDS-TTL card with the ARTIQ control system.
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The sections below demonstrate simple usage scenarios of the 2245 LVDS-TTL card with the ARTIQ control system.
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27
2245.tex
27
2245.tex
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@ -443,6 +443,27 @@ All typical values of AC specifications are at $T_A = 25\degree C$, $V_{ID} = 30
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\end{threeparttable}
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\end{threeparttable}
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\end{table}
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\end{table}
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\section{Configuring IO Direction \& Termination}
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The IO direction can be configured by switches, which are found at the top of the card.
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\begin{multicols}{2}
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IO direction switches partly decides the IO direction of each bank.
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\begin{itemize}
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\itemsep0em
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\item Closed switch (ON) \\
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Fix the corresponding channel to output. The direction cannot be changed by I\textsuperscript{2}C.
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\item Opened switch (OFF) \\
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Leave the direction configurable by I\textsuperscript{2}C.
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\end{itemize}
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\columnbreak
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\begin{center}
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\centering
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\includegraphics[height=1.5in]{lvds_ttl_switches.jpg}
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\captionof{figure}{Position of switches}
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\end{center}
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\end{multicols}
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\newpage
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\section{Example ARTIQ code}
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\section{Example ARTIQ code}
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The sections below demonstrate simple usage scenarios of the 2245 LVDS-TTL card with the ARTIQ control system.
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The sections below demonstrate simple usage scenarios of the 2245 LVDS-TTL card with the ARTIQ control system.
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They do not exhaustively demonstrate all the features of the ARTIQ system.
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They do not exhaustively demonstrate all the features of the ARTIQ system.
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@ -462,8 +483,6 @@ def run(self):
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delay(500*ms)
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delay(500*ms)
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\end{minted}
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\end{minted}
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\newpage
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\subsection{Morse code}
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\subsection{Morse code}
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This example demonstrates some basic algorithmic features of the ARTIQ-Python language.
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This example demonstrates some basic algorithmic features of the ARTIQ-Python language.
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\begin{minted}{python}
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\begin{minted}{python}
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@ -487,6 +506,8 @@ def run(self):
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delay(700*ms)
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delay(700*ms)
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\end{minted}
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\end{minted}
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\newpage
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\subsection{Counting rising edges in a 1ms window}
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\subsection{Counting rising edges in a 1ms window}
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The channel should be configured as input in both the gateware and hardware.
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The channel should be configured as input in both the gateware and hardware.
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@ -510,8 +531,6 @@ def run(self):
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print(counts)
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print(counts)
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\end{minted}
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\end{minted}
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\newpage
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\subsection{Responding to an external trigger}
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\subsection{Responding to an external trigger}
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One channel needs to be configured as input, and the other as output.
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One channel needs to be configured as input, and the other as output.
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