DocumentCode :
1397594
Title :
Design Approach of Dynamically Reconfigurable Single Flux Quantum Logic Gates
Author :
Yamanashi, Y. ; Okawa, I. ; Yoshikawa, N.
Author_Institution :
Interdiscipl. Res. Center, Yokohama Nat. Univ., Yokohama, Japan
Volume :
21
Issue :
3
fYear :
2011
fDate :
6/1/2011 12:00:00 AM
Firstpage :
831
Lastpage :
834
Abstract :
Novel reconfigurable superconductive single flux quantum (SFQ) logic devices, the functions of which can be dynamically reconfigured by inputting control signals, have been investigated. The characteristics of single flux quantum circuits can be easily modulated by applying currents or magnetic fields because of the high sensitivity of superconductive circuits. We investigated several design approaches for the realization of dynamically reconfigurable SFQ logic devices. We employed direct current injection to the logic gate using a non-destructive read-out flip-flop. By changing the internal state of the non-destructive read-out flip-flop, the logic function can be dynamically reconfigured. We have designed and tested a dynamically reconfigurable Josephson transmission line (JTL)/delay flip-flop (DFF) circuit. The measured dc bias margin was 72.5-107.2%. Furthermore, we have demonstrated the operation of a variable bit-length shift register, composed of the dynamically reconfigurable JTL/DFF circuits. The investigated design approach can be applied to more sophisticated dynamically reconfigurable single flux quantum logic gates.
Keywords :
flip-flops; logic gates; delay flip-flop circuit; direct current injection; dynamically reconfigurable single flux quantum logic gate; logic function; magnetic field; nondestructive read-out flip-flop; reconfigurable Josephson transmission line; reconfigurable SFQ logic device; reconfigurable superconductive single flux quantum logic device; single flux quantum circuit; superconductive circuit; variable bit-length shift register; Logic gates; Magnetic circuits; Magnetic tunneling; Shift registers; Superconducting magnets; Josephson junction; reconfigurable logic device; single flux quantum circuit;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2010.2090856
Filename :
5659984
Link To Document :
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