Digital single-flux quantum (SFQ) technology promises to meet the demands of ultra low power and high speed computing needed for future exascale supercomputing platforms. However, clocking SFQ logic circuits remains a challenge due to the presence of a large number of on-chip clock sinks, and hence, decomposing large designs into multiple independent clock domains similar to CMOS, have been proposed. However, such clock domains demand efficient synchronizing First-in-first-out (FIFO) buffers and robust interfaces to safely transfer data from one clock domain to another. In this brief, we propose such a FIFO synchronizer and clock-domain crossing interface for both uni and bi-directional data transfer without any significant degradation of the clock frequency. Our proposal scales to complex gate-level pipelined SFQ logic cores while demonstrating extremely low Bit Error Rate (BER) and is unaffected by noise, given current SFQ lithography feature sizes.
Cite
@article{arxiv.2108.03719,
title = {A High Performance and Robust FIFO Synchronizer-Interface for Crossing Clock Domains in SFQ Logic},
author = {Gourav Datta and Shidie Lin and Peter A. Beerel},
journal= {arXiv preprint arXiv:2108.03719},
year = {2021}
}
Comments
5 pages, 5 figures, under review in IEEE Transactions on Circuits and Systems-II