Design of stacked Blumlein PFNs with photoconductive semiconductor switches
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摘要: 为了驱动重复频率运行高阻抗X光管,设计了基于光导开关的级联Blumlein型脉冲形成网络。采用数值模拟方法优化网络参数,从网络充电电压一致性、输出脉冲波形畸变、电压叠加效率、负载预脉冲幅值出发确定了充电电感和支撑电感设计原则。实验表明:光导开关工作场强23.2 kV/cm,激光触发能量3.5 mJ时,阻抗约15.6 的Blumlein型脉冲形成网络电压转换效率为0.71,2级级联网络电压叠加效率0.96。
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关键词:
- 光导开关 /
- 级联Blumlein型脉冲形成网络 /
- 脉冲X光机 /
- 功率合成
Abstract: A stacked Blumlein pulse forming network(B-PFN) was designed to drive repetitive high-Z X-ray diode. Numerical simulation was adopted to optimize the system parameters, through which inductance design principle was aquired. B-PFN performance was analyzed from several aspects: consistency of charging voltage, distortion of output wave, efficiency of stacked voltage and amplitude of load pre-pulse. Experiments showed that the single B-PFN voltage efficiency was 0.71, the two-stage stacked voltage efficiency was 0.96, when PCSS electric field was 23.2 kV/cm and trigger laser energy was 3.5 mJ.
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