Add FIMDRAM slide
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20
main.tex
20
main.tex
@@ -111,16 +111,24 @@
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\end{itemize}
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\end{column}
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\begin{column}{0.6\textwidth}
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\only<1>{\includesvg[width=\textwidth]{images/pim_positions_0}}
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\only<2>{\includesvg[width=\textwidth]{images/pim_positions_1}}
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\only<3>{\includesvg[width=\textwidth]{images/pim_positions_2}}
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\only<4>{\includesvg[width=\textwidth]{images/pim_positions_3}}
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\only<5>{\includesvg[width=\textwidth]{images/pim_positions_4}}
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\only<1>{\includesvg[height=115px]{images/pim_positions_0}}
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\only<2>{\includesvg[height=115px]{images/pim_positions_1}}
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\only<3>{\includesvg[height=115px]{images/pim_positions_2}}
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\only<4>{\includesvg[height=115px]{images/pim_positions_3}}
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\only<5->{\includesvg[height=115px]{images/pim_positions_4}}
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\end{column}
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\end{columns}
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\visible<6>{\begin{block}{Remark}The nearer the computation is to the memory cells, the higher the achievable bandwidth!\end{block}}
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\end{frame}
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\begin{frame}{Samsung's HBM-PIM/FIMDRAM}
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\begin{frame}{Samsung's HBM-PIM/FIMDRAM\autocite{lee2021}}
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\begin{itemize}
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\item Real-world PIM implementation based on HBM2
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\item PIM units embedded at the bank level
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\end{itemize}
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\begin{figure}
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\includesvg[width=0.8\textwidth]{images/hbm-pim}
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\end{figure}
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\end{frame}
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\begin{frame}
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