DocumentCode
1523004
Title
Photoconductive semiconductor switch experiments for pulsed power applications
Author
Zutavern, Fred J. ; Loubriel, Guillermo M. ; O´Malley, M.W. ; Shanwald, L.P. ; Helgeson, W.D. ; McLaughlin, D.L. ; McKenzie, B.B.
Author_Institution
Sandia Nat. Lab., Albuquerque, NM, USA
Volume
37
Issue
12
fYear
1990
fDate
12/1/1990 12:00:00 AM
Firstpage
2472
Lastpage
2477
Abstract
Experiments have been performed to develop photoconductive semiconductor switches (PCSSs) for pulsed power applications that cannot be implemented with traditional high-power switching technology. A scalable lateral PCSS configuration has been tested and has demonstrated a potential for faster risetimes, less jitter, lower inductance, faster recovery, and optical triggering for new pulse power projects. These switches have been used as both closing and toggling switches at repetition rates up to 40 MHz. A high-field, gain mechanism (lock-on) was explored and tested which may eliminate the major disadvantage of this type of switch, its requirement for large optical trigger energies
Keywords
photoconducting devices; pulsed power technology; semiconductor switches; gain mechanism; inductance; jitter; optical triggering; photoconductive semiconductor switches; pulsed power applications; recovery; repetition rates; risetimes; scalable lateral PCSS configuration; toggling switches; Coilguns; Conductivity; Electrodes; Gallium arsenide; Laser radar; Optical pulses; Optical surface waves; Optical switches; Photoconducting devices; Power semiconductor switches;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/16.64520
Filename
64520
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