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Efficiency Study of a 2.2 kV, 1 ns, 1 MHz Pulsed Power Generator Based on a Drift-Step-Recovery Diode

机译:基于漂移逐步恢复二极管的2.2 kV,1 ns,1 MHz脉冲功率发生器的效率研究

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摘要

Drift-step-recovery diodes (DSRDs) are used in pulsed-power generators to produce nanosecond-scale pulses with a rise rate of the order of 1 kVs. A 2.2 kV, 1 ns pulsed power circuit is presented. The circuit features a single prime switch that utilizes a low-voltage dc power supply to pump and pulse the DSRD in the forward and reverse directions. An additional low-current dc power supply is used to provide a voltage bias in order to balance the DSRD forward with respect to its reverse charge. The DSRD was connected in parallel to the load. In order to study the circuit's efficiency, it was operated over a wide range of operating parameters, including the main and bias source voltages, and the trigger duration of the prime switch. A peak voltage of 2.2 kV with a rise time of less than 1 ns and a rise rate of 3 kVs was obtained, where the efficiency was 24%. A higher efficiency of 52% was obtained when the circuit was optimized to an output peak voltage of 1.15 kV. The circuit was operated in single-shot mode as well as in bursts of up to 100 pulses at a repetition rate of 1 MHz. The experimental results are supported by a PSPICE simulation of the circuit. An analysis of the circuit input and output energies with respect to the MOSFET and DSRD losses is provided.
机译:漂移功率恢复二极管(DSRD)用于脉冲发电机中,以产生纳秒级脉冲,上升速率约为1 kV / ns。提出了一个2.2 kV,1 ns脉冲功率电路。该电路具有一个单电源开关,该开关利用低压直流电源在正向和反向方向上泵浦和脉冲DSRD。附加的低电流直流电源用于提供电压偏置,以平衡DSRD的反向电荷。 DSRD与负载并联连接。为了研究电路的效率,它在很宽的工作参数范围内工作,包括主电源和偏置电源电压,以及原开关的触发持续时间。获得的峰值电压为2.2 kV,上升时间小于1 ns,上升速率为3 kV / ns,效率为24%。当将电路优化至1.15 kV的输出峰值电压时,可获得52%的更高效率。该电路以单脉冲模式运行,并以1 MHz的重复频率运行高达100个脉冲的脉冲串。实验结果得到电路的PSPICE仿真的支持。提供了关于MOSFET和DSRD损耗的电路输入和输出能量的分析。

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