DocumentCode :
1434903
Title :
Generation of multiple pulses with extremely short pulse repetition interval
Author :
Takao, Kazuto ; Masugata, Katsumi ; Yatsui, Kiyoshi
Author_Institution :
Fac. of Eng., Toyama Univ., Japan
Volume :
28
Issue :
5
fYear :
2000
fDate :
10/1/2000 12:00:00 AM
Firstpage :
1382
Lastpage :
1385
Abstract :
A new type of multipulse generator is proposed for the generation of high power pulses with an extremely short interpulse repetition interval. In this system, an air-core step-up transformer is used with a magnetic switch and a pulse forming line, which is charged in the double-resonance mode. Numerical simulations of this system have shown that 600 kV, 56 ns pulses, matched to a 20 Ω impedance can be produced with a minimum pulse separation of 2.7 μs. A small system was constructed to demonstrate the production of double pulses experimentally. The system contains two first stage capacitors of 150 nF each, a 1:15 air-core step-up transformer, a magnetic switch using cobalt based material, a second stage capacitor of 1.6 nF, and an 80 Ω load. Double-pulses 100 ns wide, peak voltages of 85 kV (first pulse) and 90 kV (second pulse) have been successfully generated with an interval of 3.75 μs between pulses, when the first stage capacitors were charged to 14 kV (for the first pulse) and 17 kV (for the second pulse)
Keywords :
digital simulation; pulse generators; pulse transformers; 100 ns; 14 kV; 17 kV; 2.7 mus; 3.75 mus; 56 ns; 600 kV; 85 kV; 90 kV; air core step-up transformer; air-core step-up transformer; cobalt based material; double pulses; double resonance mode; extremely short pulse repetition interval; first stage capacitor; first stage capacitors; impedance; interpulse repetition interval; magnetic switch; multiple pulse generation; multipulse generator; numerical simulations; peak voltages; pulse forming line; pulse separation; second pulse; second stage capacitor; Capacitors; Impedance; Magnetic materials; Magnetic separation; Magnetic switching; Numerical simulation; Power generation; Pulse generation; Pulse transformers; Switches;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/27.901202
Filename :
901202
Link To Document :
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