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Design and characterization of the BVX : an 8-channel CMOS preamplifier-shaper for silicon strips.

Author: Oak Ridge National Laboratory.; United States. Department of Energy.; United States. Department of Energy. Office of Scientific and Technical Information.
Publisher: Washington, D.C. : United States. Dept. of Energy, 1992.
Edition/Format:   eBook : Document : Conference publication : National government publication : English
Summary:
This paper presents the design and characterization of an 8channel preamplifier-shaper intended for use with silicon strip detectors ranging in capacitance from 1 to 20pF. The nominal peaking time of the circuit is 200ns with an adjustment range of ±50ns. The circuit has a pitch (width) of 84[mu]channel with a power dissipation of 1.2mW/channel and has been fabricated in 2[mu]m p-well CMOS. The 0pF noise is 330e  Read more...
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Material Type: Conference publication, Document, Government publication, National government publication, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Oak Ridge National Laboratory.; United States. Department of Energy.; United States. Department of Energy. Office of Scientific and Technical Information.
OCLC Number: 873486881
Notes: Published through the Information Bridge: DOE Scientific and Technical Information.
12/31/1992.
"Fnal/c--92/314."
"Conf-921005--5."
"DE93003619."
Institute of Electrical and Electronic Engineers (IEEE) nuclear science symposium and medical imaging conference, Orlando, FL (United States),25-31 Oct 1992.
Description: 1 online resource (4 pages : digital, PDF file.)

Abstract:

This paper presents the design and characterization of an 8channel preamplifier-shaper intended for use with silicon strip detectors ranging in capacitance from 1 to 20pF. The nominal peaking time of the circuit is 200ns with an adjustment range of ±50ns. The circuit has a pitch (width) of 84[mu]channel with a power dissipation of 1.2mW/channel and has been fabricated in 2[mu]m p-well CMOS. The 0pF noise is 330e with a noise slope of 64e/pF. The design approach is presented as well as both test bench and strip detector measurements.

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