DocumentCode :
323176
Title :
Readout for a 64×64 pixel matrix with 15-bit single photon counting
Author :
Campbell, M. ; Heijne, E.H.M. ; Meddeler, G. ; Pemigotti, E. ; Snoeys, W.
Author_Institution :
CERN, Geneva, Switzerland
fYear :
1997
fDate :
9-15 Nov 1997
Firstpage :
189
Abstract :
A single photon counting pixel detector readout chip (PCC) has been derived from previous work in the CERN RD19 collaboration for particle physics tracking devices, recently developed for high energy physics experiments. The readout chip is a 64×64 matrix of identical 170 μm×170 μm cells. It is to be bump-bonded to an equally segmented 1 cm2 matrix of semiconductor sensors, e.g. Si or GaAs. Each readout cell comprises a preamplifier, a discriminator and a 15-bit counter. The input noise is 170 e- rms. At the lowest nominal threshold of 1 400 e- (5.1 keV in Si) the cells exhibit a threshold distribution with a spread before adjustment of 350 e- rms. Each cell has a 5-bit register which allows masking, test-enable and 3-bit individual threshold adjust. After adjustment the threshold spread is reduced to 80 e- rms. Absolute calibration of the electrically measured equivalent charge can be done once the readout chip is bump-bonded to a detector
Keywords :
discriminators; nuclear electronics; preamplifiers; semiconductor counters; 3-bit individual threshold adjust; CERN RD19 collaboration; GaAs; Si; discriminator; electrically measured equivalent charge; masking; particle physics tracking devices; preamplifier; semiconductor sensors; single photon counting pixel detector readout chip; test-enable; threshold distribution; Calibration; Collaborative work; Counting circuits; Detectors; Gallium arsenide; Particle tracking; Preamplifiers; Registers; Semiconductor device noise; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium, 1997. IEEE
Conference_Location :
Albuquerque, NM
ISSN :
1082-3654
Print_ISBN :
0-7803-4258-5
Type :
conf
DOI :
10.1109/NSSMIC.1997.672566
Filename :
672566
Link To Document :
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