DocumentCode
1852407
Title
A SPICE model of Si microstrip detectors
Author
Bacchetta, N. ; Bisello, D. ; Calgarotto, C. ; Candelori, A. ; Paccagnella, A.
Author_Institution
Istituto Nazionale di Fisica Nucl., Padova, Italy
Volume
1
fYear
1995
fDate
21-28 Oct 1995
Firstpage
510
Abstract
We have developed a SPICE model of an AC-coupled single-sided polysilicon-biased silicon microstrip detector and its associated read-out electronics. The detector SPICE model is based on a RC network, whose parameters have been determined by direct comparison with DC and AC measurements. The simulated interstrip and coupling impedance and phase angle are in good agreement with experimental results, up to a frequency of 1 MHz. The readout electronics is formed by the PreShaper 32 chip, consisting of a charge preamplifier followed by a shaping amplifier, which are the basis of its SPICE implementation. The propagation of an electrical signal, simulating the charge pulse of a ionizing particle, along strips and read-out electronics has been studied experimentally and compared to the SPICE results, in order to assess the quality of the model. A satisfactory agreement on the rising edge of the output signal has been found. Different read-out configurations have been investigated as well
Keywords
SPICE; detector circuits; nuclear electronics; physics computing; position sensitive particle detectors; silicon radiation detectors; AC-coupled single-sided polysilicon-biased silicon microstrip detector; RC network; SPICE model; Si; Si microstrip detectors; charge preamplifier; coupling impedance; read-out configurations; read-out electronics; shaping amplifier; Detectors; Frequency; Impedance; Microstrip; Preamplifiers; Pulse amplifiers; Readout electronics; SPICE; Semiconductor device measurement; Silicon;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium and Medical Imaging Conference Record, 1995., 1995 IEEE
Conference_Location
San Francisco, CA
Print_ISBN
0-7803-3180-X
Type
conf
DOI
10.1109/NSSMIC.1995.504278
Filename
504278
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