DocumentCode :
1079228
Title :
Linear and nonlinear filters suppressing UWB pulses
Author :
Weber, Thomas ; Krzikalla, Roland ; Ter Haseborg, Jan Luiken
Author_Institution :
Jenoptik Group, Extel Syst. Wedel, Germany
Volume :
46
Issue :
3
fYear :
2004
Firstpage :
423
Lastpage :
430
Abstract :
In order to protect electronic systems against natural or man-made electromagnetic interferences with high energies and amplitudes nonlinear protection elements like spark gaps, varistors or Z-diodes are state-of-the-art countermeasures. Most of these protection circuits are designed for well studied transient interferences like lightning electromagnetic pulse, nuclear electromagnetic pulse or electrostatic discharge pulses. It is of special interest to investigate the response of common nonlinear protection elements at ultrawideband (UWB) pulses with significant amplitudes, rise times in the picosecond range and pulse durations of a few nanoseconds. It is discussed whether traditional protection concepts provide a sufficient protection against such extremely fast pulses. Furthermore the possibility of linear filtering is presented with focus on the protection of high frequency datalines.
Keywords :
electromagnetic interference; electromagnetic pulse; interference suppression; nonlinear filters; power system protection; electromagnetic interference; electronic systems; lightning electromagnetic pulse; nonlinear filters; ultrawideband pulses; Circuits; EMP radiation effects; Electromagnetic interference; Electromagnetic transients; Electronic countermeasures; Electrostatic interference; Nonlinear filters; Protection; Spark gaps; Varistors; EMP; Electromagnetic pulse; HPEM; IEMI; UWB; hardening; high-power electromagnetic effects; intentional electromagnetic interference; linear filter; nonlinear filter; protection; suppressor; ultrawideband;
fLanguage :
English
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9375
Type :
jour
DOI :
10.1109/TEMC.2004.831887
Filename :
1325797
Link To Document :
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