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Time Delay of a Field-Breakdown Triggered Vacuum Switch with Flat Electrodes

机译:带有平面电极的击穿触发真空开关的时间延迟

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Triggered vacuum switch (TVS) is one of the important switch apparatuses in the field of pulsed power system. The field-breakdown will bring long lifetime of TVS under rated working conditions. However, the load of trigger will be heavy, leading to the large time delay and jitter time. In this paper, a field-breakdown TVS sample with flat electrodes was fabricated and its time delay was tested. Initial plasmas play an important role in the turning-on process of TVS, so the time delay from the control signal to the switching-on of TVS-is discussed in the trigger system time, the motion time and the collapse time, where the motion time and the collapse time are the needed time for the generation and development of the initial plasmas. Test results show that, under positive working mode, the trigger system time is about 34 - 36 μs with positive trigger pulse, while 39 - 41 μs with negative trigger pulse, which prove that the polarities of trigger pulse have nothing to do with the trigger system time almost, and the long trigger system time is mainly owing to the limited performances of trigger pulse transformer: The motion time is about 50 ns and almost stable, due to the definite trigger gap. The collapse time is about 100 - 300 μs, which is decreased with the rise up of main gap voltage, exponentially. In negative working mode, both of the motion time and collapse time are about 10 us, due to the ions of initial plasmas becoming the main moving particles in the main gap, no longer the electrons as positive working mode.
机译:触发真空开关(TVS)是脉冲电源系统领域中的重要开关设备之一。现场故障将在额定工作条件下延长TVS的使用寿命。但是,触发器的负担将很重,导致较大的时间延迟和抖动时间。在本文中,制备了具有平面电极的击穿TVS样品,并测试了其时延。初始等离子体在TVS的开启过程中起着重要的作用,因此在触发系统时间,运动时间和崩溃时间中讨论了从控制信号到TVS开启的时间延迟。时间和崩溃时间是生成和发展初始等离子体所需的时间。测试结果表明,在正向工作模式下,正向触发脉冲的触发系统时间约为34-36μs,负向触发脉冲的触发系统时间约为39-41μs,这证明了触发脉冲的极性与触发无关几乎是系统时间,而较长的触发系统时间主要是由于触发脉冲变压器的性能有限所致:由于确定的触发间隙,运动时间约为50 ns,并且几乎是稳定的。崩溃时间约为100-300μs,随着主间隙电压的升高呈指数下降。在负工作模式下,运动时间和崩溃时间均约为10 us,这是因为初始等离子体的离子成为主间隙中的主要移动粒子,不再将电子作为正工作模式。

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