DocumentCode :
1540715
Title :
Experimental digital SQUID with integrated feedback circuit
Author :
Fath, U. ; Hundhausen, R. ; Fregin, T. ; Gerigk, P. ; Eschner, W. ; Schindler, A. ; Uhlmann, F.H.
Author_Institution :
Dornier GmbH, Friedrichshafen, Germany
Volume :
7
Issue :
2
fYear :
1997
fDate :
6/1/1997 12:00:00 AM
Firstpage :
2747
Lastpage :
2751
Abstract :
A digital SQUID with the feedback loop closed on chip was simulated, designed, fabricated and tested. The basic architecture of a delta modulator A/D converter with coarse quantization was implemented using a latching comparator and a write gate which acts in conjunction with the pickup loop as an integrator. The digital data stream was amplified at 4.2 K using a current amplifier stage, a voltage driver gate and a GaAs FET impedance transformer. The analog input signal was reconstructed at room temperature by integrating the data stream using a 17 bit up/down counter at a clock frequency of about 10 MHz. Noise measurements of the D/A converted signal have been taken indicating that bit errors cause a 1/f/sup 2/ like excess noise. Numerical simulations have been performed in parallel to the design and experimental verification. Operation margins of all gates, except for the voltage driver have been estimated using a circuit-orientated simulator. Models to estimate noise and linearity of the feedback loop arrangement have been developed.
Keywords :
1/f noise; SQUIDs; analogue-digital conversion; circuit feedback; comparators (circuits); delta modulation; signal reconstruction; superconducting device testing; superconducting integrated circuits; 1/f/sup 2/ like excess noise; 10 MHz; 4.2 K; FET impedance transformer; analog input signal reconstruction; bit errors; coarse quantization; current amplifier stage; delta modulator A/D converter; digital SQUID; digital data stream; feedback loop; feedback loop arrangement; integrated feedback circuit; latching comparator; pickup loop; up/down counter; voltage driver gate; write gate; Circuit noise; Circuit simulation; Circuit testing; Delta modulation; Driver circuits; Feedback circuits; Feedback loop; Gallium arsenide; Quantization; SQUIDs;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.621806
Filename :
621806
Link To Document :
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