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Cryogenic Integrated Offset Compensation for Time Domaine SQUID Multiplexing
Prêle D., Voisin F., Martino J., Bréelle E., Bordier G. et al
Journal of Low Temperature Physics 167, 5-6 (2012) 726-731 - http://hal.archives-ouvertes.fr/hal-00722970
Physique/Physique/Instrumentations et Détecteurs
Cryogenic Integrated Offset Compensation for Time Domaine SQUID Multiplexing
D. Prêle ()1, F. Voisin1, J. Martino1, E. Bréelle1, G. Bordier1, M. Piat1
1 :  APC - UMR 7164 - AstroParticule et Cosmologie
http://www.apc.univ-paris7.fr/
CNRS : UMR7164 – IN2P3 – Observatoire de Paris – Université Paris VII - Paris Diderot – CEA : DSM/IRFU
APC - UMR 7164, Université Paris Diderot, 10 rue Alice Domon et Léonie Duquet, case postale 7020, F-75205 Paris Cedex 13
France
APC - Cosmologie et Gravitation
Superconducting QUantum Interference Device (SQUID) multiplexing is an important issue in the use of large arrays of superconducting bolometers (TES). A Time Domain Multiplexer (TDM) combines input TES signals into one output signal using several SQUIDs. Different TESs, SQUIDs and amplifiers characteristics induce unavoidable different offsets on the multiplexed signal. Moreover, assuming the periodicity of the SQUID characteristic, the Flux Locked Loop (FLL) operating point is defined at modulo Phi_0 which could also leads to a large output offset. In multiplexed mode, offsets resulting from different pixels induce a parasitic signals often larger than the TES one. This offset signal drastically constrains the readout dynamic range and thus the maximum gain allowed. It also limits the signal-to-noise ratio, the FLL stability and the multiplexing frequency. Offset in SQUID readout is discussed and offset compensation for TDM is presented. Simulation shows the dynamic calibration and compensation on a simplified 4:1 TDM. Dynamic offset compensation is being implemented on a cryogenic BiCMOS SiGe integrated circuit operated at 4K for 128:1 TDM.
Anglais
29/07/2011

Journal of Low Temperature Physics (J. Low Temp. Phys.)
Publisher Springer Verlag (Germany)
ISSN 0022-2291 (eISSN : 1573-7357)
internationale
Articles dans des revues avec comité de lecture
06/2012
167
5-6
726-731

Offset-compensation – Flux locked loop – Time domain SQUID multiplexing – Cryogenic integrated circuit