Abstract

The basic principles of high repetition rate nanosecond pulsed power supplies, the design, and the implementation are presented. Voltage pulses of 20-30 kV with a rise time of 30 ns, a pulse duration of 200 ns, a pulse repetition rate of 1-2 kHz, an energy per pulse of 0.5-1 J, and the average power up to 0.5-1 kW have been achieved with total energy conversion efficiency of 90%. The protective circuit against overvoltage and the measurement of high-voltage output are described.

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