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Testing of Diode-Clamping in an Inductive Pulsed Plasma Thruster Circuit

机译:电感脉冲等离子体推进器电路中二极管夹紧的测试

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摘要

Testing of a 5.5 kV silicon (Si) diode and 5.8 kV prototype silicon carbide (SiC) diode in an inductive pulsed plasma thruster (IPPT) circuit was performed to obtain a comparison of the resulting circuit recapture efficiency,eta(sub r), defined as the percentage of the initial charge energy remaining on the capacitor bank after the diode interrupts the current. The diode was placed in a pulsed circuit in series with a silicon controlled rectifier (SCR) switch, and the voltages across different components and current waveforms were collected over a range of capacitor charge voltages. Reverse recovery parameters, including turn-off time and peak reverse recovery current, were measured and capacitor voltage waveforms were used to determine the recapture efficiency for each case. The Si fast recovery diode in the circuit was shown to yield a recapture efficiency of up to 20% for the conditions tested, while the SiC diode further increased recapture efficiency to nearly 30%. The data presented show that fast recovery diodes operate on a timescale that permits them to clamp the discharge quickly after the first half cycle, supporting the idea that diode-clamping in IPPT circuit reduces energy dissipation that occurs after the first half cycle
机译:在电感脉冲推进器(IPPT)电路中测试5.5 kV硅(Si)二极管和5.8kV原型碳化硅(SiC)二极管,以获得所得电路再捕获效率,ETA(Sub R)定义的比较作为在二极管中断电流之后,作为电容器组上剩余的初始电荷能量的百分比。二极管置于与硅控制整流器(SCR)开关串联的脉冲电路中,并且在一系列电容器电荷电压上收集不同分量和电流波形的电压。测量反向恢复参数,包括关闭时间和峰值反向恢复电流,并使用电容电压波形来确定每种情况的重新捕获效率。该电路中的SI快速恢复二极管显示出测试的条件的恢复效率高达20%,而SiC二极管进一步增加了额外恢复效率至近30%。提出的数据显示,快速恢复二极管在允许它们在上半个周期之后快速夹紧放电的时间恢复,支持IPPT电路中的二极管电路的思想降低了前半周期之后发生的能量耗散

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