DocumentCode
1475275
Title
Superconducting second-order sigma-delta modulators utilizing multi-flux-quantum generators
Author
Hashimoto, Tatsunori ; Hasegawa, Haruhiro ; Nagasawa, Shuichi ; Suzuki, Hideo ; Miyahara, Kazunori ; Enomoto, Youichi
Author_Institution
Superconductivity Res. Lab., Int. Superconductivity Technol. Center, Inzai, Japan
Volume
11
Issue
1
fYear
2001
fDate
3/1/2001 12:00:00 AM
Firstpage
554
Lastpage
557
Abstract
We have been developing a superconducting second-order sigma-delta analog-to-digital converter with a large bandwidth and a large dynamic range for software radio applications. In a superconducting second-order sigma-delta modulator utilizing a passive integrator and single-flux-quantum (SFQ) feedback, gain to compensate the large attenuation in the passive integrator of the modulator is required to obtain a large dynamic range. In this paper, a second-order modulator utilizing multi-flux-quantum (MFQ) generators creating the needed gain is reported and the design and experimental test results of the elementary circuits including a comparator, a first-order modulator, and the MFQ generator are described. The digital outputs of the comparator and the first-order modulator were experimentally evaluated, where the input dependence of the comparator switching probability and the noise-shaping properties of the modulator were clearly observed. The low speed operation of the MFQ generator creating three SFQ pulses was experimentally confirmed. The other circuits were also tested at low frequencies
Keywords
sigma-delta modulation; superconducting integrated circuits; Josephson device; analog-to-digital converter; attenuation compensation; bandwidth; comparator; dynamic range; gain; multi-flux-quantum generator; noise shaping; passive integrator; single-flux-quantum feedback; software radio; superconducting second-order sigma-delta modulator; Analog-digital conversion; Application software; Attenuation; Bandwidth; Circuit testing; Delta-sigma modulation; Digital modulation; Dynamic range; Feedback; Software radio;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/77.919405
Filename
919405
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