DocumentCode :
1458351
Title :
Advanced semiconductor switches for EM launchers
Author :
Singh, Hardev ; Hummer, Charles R.
Author_Institution :
Army Res. Lab., Aberdeen Proving Ground, MD, USA
Volume :
37
Issue :
1
fYear :
2001
fDate :
1/1/2001 12:00:00 AM
Firstpage :
394
Lastpage :
397
Abstract :
Electric launchers may be energized by switching pulses of variable magnitude and time from a pulsed alternator or a pulse forming network. In order to achieve the desired muzzle energy, the switches must withstand the action of the current pulse: the square of current integrated over time. High pressure spark gap switches and vacuum switches of various architectures have been utilized in most of the launcher development programs. Advances in semiconductor technology hold a promise of replacing these large and bulky switches with solid state switches which may become leading candidates for future combat systems applications. The US Army Research Laboratory has been testing and evaluating solid state switches of various types for several different applications. One type of semiconductor switch that was tested and evaluated is a thyristor that is 125 mm in diameter made by Silicon Power Corporation (SPCO). When a thyristor with this large diameter is turned on, it is necessary to develop and spread plasma uniformly and quickly across the wafer. This ensures that the current from the anode to the cathode is uniformly distributed, and not concentrated in local hot spots where an excessive current density could cause overheating and damage. This plasma spread can be controlled by the design of the gate structure and the triggering technique. Thyristors with different gate structures were tested and compared. The experimental findings of the turn-on characteristics and the maximum current capabilities for each design are presented. The status of futuristic wide band gap semiconductor switch technology is also reviewed
Keywords :
current density; electromagnetic launchers; power semiconductor switches; pulsed power switches; thyristor applications; weapons; 125 mm; EM launchers; Silicon Power Corporation; US Army Research Laboratory; anode; cathode; combat systems; current pulse; excessive current density; gate structures; internal gate drivers; maximum current capabilities; muzzle energy; plasma spreading; pulse forming network; pulsed alternator; semiconductor switch; semiconductor switches; solid state switches; switching pulses energisation; thyristor; triggering; turn-on characteristics; wide band gap semiconductor switch technology; Alternators; Laboratories; Lead compounds; Plasma density; Power semiconductor switches; Solid state circuits; Sparks; Testing; Thyristors; Vacuum arcs;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.911862
Filename :
911862
Link To Document :
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