DocumentCode :
1423852
Title :
Monte Carlo optimization of superconducting complementary output switching logic circuits
Author :
Jeffery, M. ; Perold, W.J. ; Zuoqin Wang ; Van Duzer, T.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., California Univ., Berkeley, CA, USA
Volume :
8
Issue :
3
fYear :
1998
Firstpage :
104
Lastpage :
119
Abstract :
The authors have previously proposed a new superconducting voltage-state logic family called complementary output switching logic (COSL). This logic family has been designed using a Monte Carlo optimization process such that circuits have a high theoretical yield at 5-10 Gb/s clock speeds in spite of existing Josephson process variations. In the present work the Monte Carlo optimization process is described and theoretical yields are calculated for the COSL 2- and 3-bit encoder circuits. The circuit simulations use 5-10-GHz sinusoidal clocks and measured global and local process variations. The 2-bit encoder results are compared to modified variable threshold logic (MVTL) circuits and demonstrate that COSL circuits should have a significantly higher theoretical yield than MVTL at 10 Gb/s. Design rules for optimal COSL circuit layouts are also given, and experimental data are presented for 2-bit encoder circuits operating at multigigahertz clock frequencies. HSPICE is used for all Monte Carlo simulations and the Josephson junction model is given in the Appendix.
Keywords :
Monte Carlo methods; SPICE; circuit optimisation; integrated circuit yield; superconducting logic circuits; 2 bit; 3 bit; 5 to 10 Gbit/s; COSL encoder; HSPICE; Josephson junction model; Monte Carlo optimization; circuit simulation; superconducting complementary output switching logic circuit; yield; Circuit simulation; Clocks; Design optimization; Frequency; Josephson junctions; Logic circuits; Logic design; Monte Carlo methods; Superconducting logic circuits; Voltage;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.712141
Filename :
712141
Link To Document :
بازگشت