DocumentCode :
429969
Title :
Optimised asynchronous self-timing for superconducting RSFQ logic circuits
Author :
Gerber, H. Retief ; Fourie, Coenrad J. ; Perold, Willem J.
Volume :
1
fYear :
2004
fDate :
17-17 Sept. 2004
Firstpage :
551
Abstract :
Rapid single flux quantum (RSFQ) logic is a digital circuit technology that in recent years has presented itself as an alternative to semiconductors in the application of ultra high speed, very low power applications. The optimal timing of digital circuits operating at hundreds of GHz is still a complex problem for both RSFQ and semiconductor technologies. The fact that most RSFQ gates require a clock signal to function makes this even more complex. Various RSFQ timing schemes have been adapted from semiconductor design methodologies, and some have been designed specifically for RSFQ. Currently, synchronous clocking schemes outperform other schemes, but with the scale of RSFQ circuits ever increasing, the proper use of timing schemes are becoming more crucial. This paper describes a new asynchronous self-timing scheme where the details of clock distribution and clocking are built into the logic gates. Tests were done on the newly developed asynchronous logic gates and an asynchronous full adder was implemented and tested
Keywords :
adders; asynchronous circuits; circuit optimisation; clocks; logic design; low-power electronics; superconducting logic circuits; Josephson junctions; RSFQ gate clock signal; RSFQ logic; asynchronous full adder; clock distribution; optimised asynchronous self-timing circuits; pulse based logic; rapid single flux quantum logic; superconducting RSFQ logic circuits; ultra high speed logic; very low power circuits; Adders; Circuit testing; Clocks; Design methodology; Digital circuits; Logic circuits; Logic gates; Logic testing; Superconducting logic circuits; Timing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
AFRICON, 2004. 7th AFRICON Conference in Africa
Conference_Location :
Gaborone
Print_ISBN :
0-7803-8605-1
Type :
conf
DOI :
10.1109/AFRICON.2004.1406739
Filename :
1406739
Link To Document :
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