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5108: add 'ADC' to title
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5108.tex
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5108.tex
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@ -20,7 +20,7 @@
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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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\title{5108 Sampler}
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\title{5108 ADC Sampler}
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\author{M-Labs Limited}
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\author{M-Labs Limited}
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\date{January 2022}
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\date{January 2022}
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\revision{Revision 1}
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\revision{Revision 1}
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@ -49,14 +49,14 @@
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\end{itemize}
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\end{itemize}
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\section{General Description}
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\section{General Description}
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The 5108 Sampler is a 8hp EEM module part of the ARTIQ Sinara family.
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The 5108 ADC Sampler is a 8hp EEM module part of the ARTIQ Sinara family.
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It adds analog-digital converting capabilities to carrier cards such as 1124 Kasli and 1125 Kasli-SoC.
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It adds analog-digital converting capabilities to carrier cards such as 1124 Kasli and 1125 Kasli-SoC.
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It provides 8 analog-to-digital channels, each exposed by a BNC connector.
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It provides 8 analog-to-digital channels, each exposed by a BNC connector.
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Each channel supports input voltage ranges from \textpm 10mV to \textpm 10V.
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Each channel supports input voltage ranges from \textpm 10mV to \textpm 10V.
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All channels can be sampled simultaneously.
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All channels can be sampled simultaneously.
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5108 Sampler provides a sample rate of 1.5 MSPS.
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5108 ADC Sampler provides a sample rate of 1.5 MSPS.
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However, the sample rate in practice is typically limited by the use of ARTIQ-Python kernel code.
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However, the sample rate in practice is typically limited by the use of ARTIQ-Python kernel code.
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% Switch to next column
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% Switch to next column
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@ -380,7 +380,7 @@ The electrical characteristics are based on various test results\footnote{\label
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\newpage
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\newpage
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Crosstalk between ADC channels of 5108 Sampler is shown below\repeatfootnote{sinara489}.
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Crosstalk between ADC channels of 5108 ADC Sampler is shown below\repeatfootnote{sinara489}.
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A 10 V\textsubscript{pp} signal is the input.
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A 10 V\textsubscript{pp} signal is the input.
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The aggressor channel always has 1x gain.
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The aggressor channel always has 1x gain.
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@ -543,7 +543,7 @@ Bandwidth of small signal and large signal input is shown below\repeatfootnote{s
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\begin{center}
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\begin{center}
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\centering
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\centering
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\includegraphics[height=2.7in]{sampler_drawings.pdf}
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\includegraphics[height=2.7in]{sampler_drawings.pdf}
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\captionof{figure}{5108 Sampler front panel drawings}
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\captionof{figure}{5108 ADC Sampler front panel drawings}
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\end{center}
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\end{center}
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\columnbreak
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\columnbreak
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@ -551,7 +551,7 @@ Bandwidth of small signal and large signal input is shown below\repeatfootnote{s
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\begin{center}
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\begin{center}
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\centering
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\centering
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\includegraphics[height=2.7in]{sampler_assembly.pdf}
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\includegraphics[height=2.7in]{sampler_assembly.pdf}
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\captionof{figure}{5108 Sampler front panel assembly}
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\captionof{figure}{5108 ADC Sampler front panel assembly}
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\end{center}
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\end{center}
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\end{multicols}
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\end{multicols}
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@ -608,7 +608,7 @@ Regardless of the switch configurations, the differential input signals are sepa
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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 5108 Sampler card with the ARTIQ control system.
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The sections below demonstrate simple usage scenarios of the 5108 ADC Sampler 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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The full documentation for the ARTIQ software and gateware is available at \url{https://m-labs.hk}.
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The full documentation for the ARTIQ software and gateware is available at \url{https://m-labs.hk}.
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@ -619,7 +619,7 @@ Sample all ADC channels at the end.
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\inputcolorboxminted{firstline=9,lastline=21}{examples/sampler.py}
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\inputcolorboxminted{firstline=9,lastline=21}{examples/sampler.py}
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\subsection{Voltage-controlled DDS Amplitude (SU-Servo Only)}
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\subsection{Voltage-controlled DDS Amplitude (SU-Servo Only)}
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The SU-Servo feature can be enabled by integrating the 5108 Sampler with 4410 DDS Urukuls.
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The SU-Servo feature can be enabled by integrating the 5108 ADC Sampler with 4410 DDS Urukuls.
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Amplitude of the DDS output can be controlled by the ADC input of the Sampler through PI control, characterised by the following transfer function.
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Amplitude of the DDS output can be controlled by the ADC input of the Sampler through PI control, characterised by the following transfer function.
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\[H(s)=k_p+\frac{k_i}{s+\frac{k_i}{g}}\]
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\[H(s)=k_p+\frac{k_i}{s+\frac{k_i}{g}}\]
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In the following example, the amplitude of DDS is proportional to the ADC input from Sampler.
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In the following example, the amplitude of DDS is proportional to the ADC input from Sampler.
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@ -684,7 +684,7 @@ High output power affects the linearity due to the 1 dB compression point of the
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15 dB attenuation at the digital attenuator was applied in this example.
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15 dB attenuation at the digital attenuator was applied in this example.
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\section{Ordering Information}
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\section{Ordering Information}
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To order, please visit \url{https://m-labs.hk} and select the 5108 Sampler in the ARTIQ Sinara crate configuration tool. The card may also be ordered separately by writing to \url{mailto:sales@m-labs.hk}.
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To order, please visit \url{https://m-labs.hk} and select the 5108 ADC Sampler in the ARTIQ Sinara crate configuration tool. The card may also be ordered separately by writing to \url{mailto:sales@m-labs.hk}.
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\section*{}
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\section*{}
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\vspace*{\fill}
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\vspace*{\fill}
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