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Implementation of Field Programmable Gate Arrays (FPGAs) in Extremely Cold Environments for Space and Cryogenic Computing Applications
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The operation of CMOS Field Programmable Gate Arrays (FPGAs) at extremely cold environments as low as 4 K is demonstrated. Various FPGA and periphery hardware design techniques spanning from HDL design to improvements of peripheral circuitry such as discrete voltage regulators are displayed, and their respective performances are reported. While general operating conditions for voltage regulators are widened, FPGAs see a broader temperature range with improved jitter performance, reduced LUT delays, and enhanced transceiver performance at extremely low temperatures.
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Cited by 1 Pith paper
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Stream Decoding with Confidence Scores at Room and Cryogenic Temperatures
A streaming surface-code decoder called Snowflake runs on commercial FPGAs with sub-microsecond simulated throughput up to distance 21, validated in hardware up to distance 9 at room and cryogenic temperatures.
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