DocumentCode :
1246400
Title :
A DC-powered Josephson logic family that uses hybrid unlatching flip-flop logic elements (Huffles)
Author :
Hasegawa, H. ; Nagaishi, H. ; Kominami, S. ; Yamada, H. ; Nishino, T.
Author_Institution :
Central Res. Lab., Hitachi Ltd., Kokubunji, Japan
Volume :
5
Issue :
4
fYear :
1995
Firstpage :
3504
Lastpage :
3510
Abstract :
This paper describes the development of a dc-powered Josephson logic family that uses hybrid unlatching flip-flop logic elements (Huffles). The Huffle circuit used in this study is modified by adding a parallel resistor to the original Hebard-type Huffle circuit. Analysis of the circuit´s operation shows that the undesirable hung-up phenomena are prevented by this modification. Based on the result of the analysis, the circuit´s parameters are derived and a typical operating margin of /spl plusmn/26% is obtained. Besides AND/OR operations using a threshold logic operation, two-input exclusive OR (XOR), two-input multiplexor (MUX), and three-input majority (MAJ) operations are realized using a Huffle gate in which 2-Josephson-interferometers (2JI) in the standard Huffle gate are replaced by stacked-2JI´s. Thus, a Huffle logic family, formed from NOT, AND, OR, XOR, MUX, MAJ, and flip-flop (FF), are constructed. By using this Huffle logic family, a 6-b arithmetic logic operating unit (ALU), a 6-b analog-to-digital converter (ADC), and a 6-b gray-to-binary converter (GBC) have been successfully operated. During high-speed testing, a 1-b comparator was operated up to an input bandwidth of 6 GHz.
Keywords :
analogue-digital conversion; comparators (circuits); flip-flops; majority logic; multiplexing; superconducting logic circuits; threshold logic; 1 bit; 6 GHz; 6 bit; AND gate; DC-powered Josephson logic circuits; Huffles; OR gate; analog-to-digital converter; arithmetic logic operating unit; comparator; gray-to-binary converter; high-speed testing; hung-up phenomena; hybrid unlatching flip-flop logic elements; parallel resistor; stacked 2-Josephson-interferometers; three-input majority logic; threshold logic; two-input XOR gate; two-input multiplexor; Analog-digital conversion; Arithmetic; Circuit analysis; Circuit testing; Flip-flops; Inductors; Josephson junctions; Large-scale systems; Resistors; Voltage;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.482141
Filename :
482141
Link To Document :
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