DocumentCode :
744076
Title :
Increasing the Flux Measurement Range of an RF-SQUID Resonant Detection Circuit Using the Robust Symmetrical Number System
Author :
Wicht, M. ; Schott, M. ; Pace, P.E.
Author_Institution :
Fed. Office for Armament & Procurement, Koblenz, Germany
Volume :
23
Issue :
2
fYear :
2013
fDate :
4/1/2013 12:00:00 AM
Firstpage :
1602910
Lastpage :
1602910
Abstract :
The design and simulation of a new low temperature Niobium radio frequency superconducting quantum interference devices (RF-SQUID) flux measurement architecture concept that uses N = 3 RF-SQUID rings (or channels) to significantly extend the range of the flux measurement capability beyond ±Φ0/4 is presented. A resonant detection method based on a robust symmetrical number system (RSNS) preprocessing technique is shown to provide a large increase in the flux measurement range while producing a high-resolution representation of the input magnetic field. The RSNS preprocessing is a modular scheme in which a modulus number of comparators is used at the output of each RF SQUID. The number of comparators with logic 1 in each channel represents the integer values within each RSNS modulus sequence. When considered together, the integers within each sequence change one at a time at the next code position, resulting in an integer Gray code property. We show that the RSNS preprocessing has the feature that the maximum nonlinearity is less than a least significant bit.
Keywords :
Gray codes; SQUIDs; comparators (circuits); magnetic flux; niobium; radiofrequency measurement; type II superconductors; Nb; RF-SQUID resonant detection circuit; comparators; high-resolution representation; integer Gray code property; low temperature niobium RF-SQUID flux measurement; modular scheme; modulus number; radio frequency; robust symmetrical number system; superconducting quantum interference devices; Current measurement; Dynamic range; Inductance; Noise; RLC circuits; Radio frequency; SQUIDs; Flux measurement; low-temperature superconductor (LTS); radio frequency superconducting quantum interference devices (RF SQUIDs); robust symmetrical number system (RSNS);
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2013.2250283
Filename :
6484247
Link To Document :
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