DocumentCode :
1421196
Title :
100-GHz Single-Flux-Quantum Bit-Serial Adder Based on 10- {\\rm kA/cm}^{2} Niobium Process
Author :
Tanaka, Masamitsu ; Akaike, Hiroyuki ; Fujimaki, Akira ; Yamanashi, Yuki ; Yoshikawa, Nobuyuki ; Nagasawa, Shuichi ; Takagi, Kazuyoshi ; Takagi, Naofumi
Volume :
21
Issue :
3
fYear :
2011
fDate :
6/1/2011 12:00:00 AM
Firstpage :
792
Lastpage :
796
Abstract :
This paper reports the design and test results of a single-flux-quantum (SFQ) bit-serial adder, which we designed with a target-clock frequency of 100 GHz, to investigate several techniques for producing ultra-high-speed computations using SFQ circuits. The bit-serial adder was designed based on a new cell library developed for the ISTEC Advanced Process, where the critical current density and McCumber-Stewart parameters of Josephson junctions were increased to 10 kA/cm2 and 2.0, respectively, to obtain higher operating frequencies. In addition, we adopted a circuit-design technique based on state transitions excluding a feedback loop in a typical bit-serial adder, and redesigned the NOR gate with the McCumber-Stewart parameter increased to 4.0 to improve performance. As a result, we experimentally obtained a sufficient dc bias margin of ±18% from low frequencies to 60 GHz, and verified the correctness of operations up to 93 GHz. We also demonstrated that the introduction of a higher bias voltage or large inductors in series with bias resistors is effective for achieving faster operation.
Keywords :
adders; inductors; logic design; logic gates; niobium; superconducting junction devices; superconducting logic circuits; Josephson junction; McCumber-Stewart parameter; NOR gate; bias resistor; cell library; circuit-design technique; frequency 100 GHz; frequency 60 GHz; frequency 93 GHz; inductor; niobium process; single-flux-quantum bit-serial adder; Adders; Clocks; Delay; Libraries; Logic gates; Switches; Digital arithmetic; single-flux-quantum logic; superconducting integrated circuits;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2010.2101034
Filename :
5682059
Link To Document :
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