DocumentCode :
861661
Title :
Performance of MVTL logic at multi-GHz frequencies
Author :
Leung, M. ; Spargo, J.W. ; Dalrymple, B.J. ; Durand, D.J. ; Wire, M.S. ; Spooner, A.
Author_Institution :
Space & Electron. Group, TRW Inc., Redondo Beach, CA, USA
Volume :
5
Issue :
2
fYear :
1995
fDate :
6/1/1995 12:00:00 AM
Firstpage :
2636
Lastpage :
2639
Abstract :
Demonstrating superconductive logic circuits at high speeds is crucial in gaining acceptance by potential users. We are taking an integrated approach toward demonstrating the potential of such circuits. Issues addressed include the effects that layout have upon a circuit and gate (particularly in scaling down the size of gates to increase density), testing limitations, designing for minimum crosstalk and ground ripple, and fundamental limitations to gate performance. In this paper, we report our progress in resolving and understanding these issues. Circuits such as shift registers were used to understand the influence of layout on performance, circuits such as gate chains and punchthrough detectors to explore fundamental gate limitations. We also report on signal processing circuits of several hundred gates tested at clock frequencies up to several hundred MHz and the relationship between these results and the fundamental gate performances.<>
Keywords :
digital signal processing chips; direct digital synthesis; integrated circuit layout; logic design; logic testing; shift registers; superconducting logic circuits; threshold logic; MVTL logic; application specific signal processor; asymmetric SQUID; clock frequencies; direct digital synthesizer; gate chains; gate performance; ground ripple; high speeds; latching logic; layout; minimum crosstalk; modified variable threshold logic; multi-GHz frequencies; punchthrough detectors; shift registers; signal processing circuits; size scaling; superconductive logic circuits; testing limitations; Circuit testing; Clocks; Crosstalk; Detectors; Frequency; Logic circuits; Shift registers; Signal processing; Signal resolution; Superconductivity;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.403131
Filename :
403131
Link To Document :
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