A 32-channel charge readout IC for programmable, nonlinear quantization of multichannel detector data

A Charge Readout Integrated Circuit (CRIC) which converts detector charges to digital codes is described. The CRIC provides 32 channels of circuitry needed to form charge-to-digital converters having a total dynamic range of 17 b comprised of 4 b of pre-amp gain control and a conversion range of 13...

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Veröffentlicht in:IEEE Journal of Solid-State Circuits 1995-05, Vol.30 (5), p.533-541
Hauptverfasser: Garverick, S.L., Skrenes, L., Baertsch, R.D.
Format: Artikel
Sprache:eng
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Zusammenfassung:A Charge Readout Integrated Circuit (CRIC) which converts detector charges to digital codes is described. The CRIC provides 32 channels of circuitry needed to form charge-to-digital converters having a total dynamic range of 17 b comprised of 4 b of pre-amp gain control and a conversion range of 13 b. Each channel includes a switched-capacitor integrator, a double-sampling amplifier, a sampling comparator, and a 12-b digital latch, forming a pipeline from which a new conversion result is readout every 50 /spl mu/s. The data conversion scheme implements a programmable compression curve, which is stored as a lookup table in an off-chip, digital memory. In addition to the lookup table, data conversion requires an off-chip digital-to-analog converter, both of which may be shared by any number of CRIC's. The CRIC was fabricated using a 3-/spl mu/m, n-well BiCMOS process, and occupies a die area of 5.1 mm/spl times/7.5 mm. It operates at 10 MHz, consumes 440 mW from /spl plusmn/5-V supplies, and has a demonstrated input-referred noise performance of 2.2 /spl mu/V r.m.s., i.e., 1400 e/sup -/ on 100 pF of shunt capacitance.< >
ISSN:0018-9200
1558-173X
DOI:10.1109/4.384166