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  4. Performance characterization of Altera and Xilinx 28 nm FPGAs at cryogenic temperatures
 
conference paper

Performance characterization of Altera and Xilinx 28 nm FPGAs at cryogenic temperatures

Homulle, Harald
•
Charbon, Edoardo
February 5, 2018
2017 International Conference on Field Programmable Technology (ICFPT)
2017 International Conference on Field Programmable Technology (ICFPT)

Quantum computers enable a massive speed-up in calculations, thanks to the nature of quantum operations. To unlock quantum computation, a classical system infrastructure is required for the control of qubits and processing of their data. While qubits are generally operating at extremely low temperatures, the implementation of such a control interface is especially challenging for large scale systems, requiring significant physical interconnects between room temperature and the quantum devices. A cryogenic control interface is beneficial due to the closer qubit proximity, reduced thermal heat load, and potentially the integration with qubits at a single temperature. The basis for any such control interface is the error-correction loop, required for a longer coherence time of the qubits. The data processing, in the digital domain, can be completely implemented on an FPGA, operating at cryogenic temperatures. We report on the performance of FPGAs from Altera and Xilinx operating at cryogenic temperatures. A Cyclone V and Artix 7 were implemented on dedicated PCBs and extensive logic characterization was executed to investigate performance changes from room temperature towards 4 Kelvin. According to our extensive and systematic analysis, the Cyclone V is limited in operation down to 30 K, whereas the Artix 7 is fully functional down to 4 K.

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Type
conference paper
DOI
10.1109/FPT.2017.8280117
Author(s)
Homulle, Harald
Charbon, Edoardo
Date Issued

2018-02-05

Published in
2017 International Conference on Field Programmable Technology (ICFPT)
Start page

25

End page

31

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
AQUA  
Event nameEvent placeEvent date
2017 International Conference on Field Programmable Technology (ICFPT)

Melbourne, VIC, Australia

December 11-13, 2017

Available on Infoscience
August 13, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/147718
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