DocumentCode
1438019
Title
Design of Digital DROS With SFQ Up/Down Counter for Wide Dynamic Operation Range
Author
Myoren, Hiroaki ; Kimimoto, Yun ; Terui, Kosuke ; Taino, Tohru
Author_Institution
Grad. Sch. of Sci. & Eng., Saitama Univ., Saitama, Japan
Volume
21
Issue
3
fYear
2011
fDate
6/1/2011 12:00:00 AM
Firstpage
387
Lastpage
390
Abstract
We designed a digital double relaxation oscillation SQUID (DROS) with an SFQ up/down counter. The DROS is connected to a feedback SQUID loop and a signal magnetic flux is input to the feedback SQUID loop. The DROS generates two kinds of voltage pulses corresponding to the total magnetic flux in the feedback SQUID loop. Two kind of voltage pulses are converted to SFQ and anti-SFQ pulses and input to the feedback SQUID loop to keep the magnetic flux in the SQUID loop constant. The number of the generated SFQ pulses is counted using the SFQ up/down counter. Thus, the count corresponds to the input magnetic flux. Because the SFQ up/down counter is operated in the pulse driven mode, the digital DROS needs only dc bias current for operation. We designed and fabricated a digital DROS with a relaxation oscillation frequency of 3 GHz and an 8-bit SFQ up/down counter. Numerical simulation suggested the designed digital DROS has a dynamic range exceeding ±100 Φ0 and magnetic flux slew rate of 3 × 109 Φ0/s.
Keywords
SQUIDs; counting circuits; numerical analysis; relaxation oscillators; superconducting logic circuits; superconducting microwave devices; SFQ up-down counter; digital DROS design; digital double relaxation oscillation SQUID; feedback SQUID loop; frequency 3 GHz; numerical simulation; pulse driven mode; relaxation oscillation frequency; signal magnetic flux; voltage pulses; word length 8 bit; Dynamic range; Frequency locked loops; Oscillators; Radiation detectors; SQUIDs; Superconducting magnets; System-on-a-chip; DROS; Digital SQUID; SFQ circuit; dynamic range; slew rate; up/down counter;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2010.2100800
Filename
5704220
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