DocumentCode :
2675891
Title :
Mechanically Driven Compact High Voltage Generator
Author :
Jung, Markus ; Schünemann, Bernd ; Wollmann, Gerd
Author_Institution :
Rheinmetall Waffe Munition GmbH, Unterlub
fYear :
2006
fDate :
14-18 May 2006
Firstpage :
526
Lastpage :
528
Abstract :
For autonomous high voltage loads very compact high voltage generators are needed. Several technologies have been investigated in the past, starting from magnetic flux compression generators, up to Marx generators and tesla transformators. A new approach is to use piezo technology and a compact mechanical pressure generator. The main advantage in mechanical pressure generation is the possibility to store the needed energy in chemical propellants with highest energy density. It is, therefore, possible to reduce the size of the main energy source. The Piezo elements itself are used as a modulator and behave like a loaded capacitance with which high power pulses of several tens of Megawatts are generated. The paper will describe basic design rules to generate voltages of several 100 Kilovolts on a capacitive load. It covers also the correlation of the output voltage and the pressure close to the depolarization of the single ceramic. The influence of the aging and of the load behaviour on a single element after several 1000 load cycles will be explained. Miniaturized repetitive and single-shot HPEM sources are shown and future prospects of the application are discussed
Keywords :
pulse generators; pulsed power supplies; Marx generator; chemical propellant; mechanical driven high voltage generator; mechanical pressure generator; piezo technology; single-shot HPEM source; Capacitance; Ceramics; Chemical elements; Chemical technology; Magnetic flux; Power generation; Propellants; Pulse generation; Pulse modulation; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Modulator Symposium, 2006. Conference Record of the 2006 Twenty-Seventh International
Conference_Location :
Arlington, VA
Print_ISBN :
1-4244-0018-X
Electronic_ISBN :
1-4244-0019-8
Type :
conf
DOI :
10.1109/MODSYM.2006.365302
Filename :
4216254
Link To Document :
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