Progress in the development of large-area modular 64x64 CdZnTe imaging arrays for nuclear medicine

Previous efforts by our group have demonstrated the potential of hybrid semiconductor detector arrays for use in gamma-ray imaging applications. In this paper, we describe progress in the development of a prototype imaging system consisting of a 64x64-pixel CdZnTe detector array mated to a multiplex...

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Veröffentlicht in:IEEE transactions on nuclear science 1998-06, Vol.45 (3), p.354-358
Hauptverfasser: Matherson, K J, Barber, H B, Barrett, H H, Eskin, J D, Dereniak, E L, Marks, D G, Woolfenden, J M, Young, E T, Augustine, F L
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Sprache:eng
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Zusammenfassung:Previous efforts by our group have demonstrated the potential of hybrid semiconductor detector arrays for use in gamma-ray imaging applications. In this paper, we describe progress in the development of a prototype imaging system consisting of a 64x64-pixel CdZnTe detector array mated to a multiplexer readout circuit that was custom designed for our nuclear medicine application. The detector array consists of a 0.15 cm thick slab of CdZnTe which has a 64x64 array of 380 mum square pixel electrodes on one side produced by photolithography; the other side has a continuous electrode biased at -150 V. Electrical connections between the detector electrodes and corresponding multiplexer bump pads are made with indium bump bonds. Although the CdZnTe detector arrays characterized in this paper are room-temperature devices, a slight amount of cooling is necessary to reduce thermally generated dark current in the detectors. Initial tests show that this prototype imager functions well with more than 90% of its pixels operating. The device is an excellent imager; phantom images have a spatial resolution of 1.5 mm, limited by the collimator bore
ISSN:0018-9499
DOI:10.1109/23.682407