DocumentCode :
1543244
Title :
HTS SFQ T-flip flop with directly coupled readout
Author :
Sun, A.G. ; Durand, D.J. ; Murduck, J.M. ; Rylov, S.V. ; Forrester, M.G. ; Hunt, B.D. ; Talvacchio, J.
Author_Institution :
Space & Electron. Group, TRW Inc., Redondo Beach, CA, USA
Volume :
9
Issue :
2
fYear :
1999
fDate :
6/1/1999 12:00:00 AM
Firstpage :
3825
Lastpage :
3828
Abstract :
The authors report the design, fabrication, and test results of single flux quantum (SFQ) toggle flip flop circuits. These circuits, investigated as building blocks of an HTS counting ADC, feature a directly coupled readout junction stack similar to those used in LTS RSFQ circuits. The directly coupled circuit delivers higher readout voltage, hence potentially higher operating speed than magnetically coupled alternatives. The circuits were fabricated using two multilayer HTS SNS junction integrated circuit technologies (one at Northrop Grumman and the other at TRW) featuring three YBCO depositions. Initial testing demonstrated toggling of a T-flip flop in response to SFQ pulses generated by integrated dc/SFQ converters. The readout voltage is shown to approach 40% of the junction I/sub C/R/sub N/ product, and as high as 100 /spl mu/V at 65K. Test results are compared with predicted fabrication process parameter requirements. To increase margins and tolerance to process parameter variations, improvements to the design have been made using JSpice and MALT.
Keywords :
flip-flops; high-temperature superconductors; readout electronics; superconducting logic circuits; superconductor-normal-superconductor devices; 65 K; JSpice; MALT; SFQ T-flip flop; YBCO deposition; YBaCuO; design; directly coupled readout junction; fabrication; multilayer HTS SNS junction integrated circuit; single flux quantum toggle flip flop; Circuit testing; Coupling circuits; Fabrication; High temperature superconductors; Integrated circuit technology; Magnetic circuits; Magnetic flux; Magnetic multilayers; Voltage; Yttrium barium copper oxide;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.783861
Filename :
783861
Link To Document :
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