DocumentCode :
1476457
Title :
Subranging digital SQUID ammeter
Author :
Gupta, Deepnarayan ; Radparvar, Masoud
Author_Institution :
HYPRES, Elmsford, NY, USA
Volume :
11
Issue :
1
fYear :
2001
fDate :
3/1/2001 12:00:00 AM
Firstpage :
1261
Lastpage :
1264
Abstract :
A digital SQUID (Superconducting Quantum Interference Device) has an extremely large dynamic range that makes it attractive for measurement of widely varying magnetic field or current. However, if we use a single digital SQUID device to simultaneously measure large and small signals that differ by 4-5 orders of magnitude, either resolution or input bandwidth must be compromised. We are implementing a subranging architecture, where multiple SQUID devices, coupled to a common input coil, are employed for different ranges of signal amplitude, to provide high-resolution digitization of signals with much higher bandwidth. The simplest subranging ammeter will consist of two digital SQUIDs, one with a fine resolution and the other with coarse resolution. The coarse resolution SQUID measures the current in larger steps leaving a smaller current, less than its step size (resolution) to be measured by the fine resolution SQUID with smaller steps. Each digital SQUID consists of an analog SQUID followed by a comparator gate that feeds a quantum of magnetic flux (+Φ0 or -Φ0 depending on the polarity of the net magnetic flux sensed by the SQUID) back to the SQUID upon clocking. The two SQUIDs are alternately clocked. The digital outputs from the two SQUIDs can be combined off chip
Keywords :
SQUIDs; ammeters; analogue-digital conversion; digital instrumentation; electric current measurement; RSFQ; alternate clocking; analog SQUID; common input coil; comparator gate; current measurement; high-resolution signal digitization; large dynamic range; magnetic flux quantum; multiple SQUID devices; signal amplitude range; subranging digital SQUID ammeter; Ammeters; Bandwidth; Clocks; Current measurement; Magnetic field measurement; Magnetic flux; SQUIDs; Signal resolution; Size measurement; Superconducting devices;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.919579
Filename :
919579
Link To Document :
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