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A very low inductance triggered multichannel surface switch

机译:电感极低的多通道表面开关

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A very low inductance pressurized surface discharge switch has been developed for an inductive energy storage generator. This switch was developed as an integral part of a strip-line MARX assembly. This technology performed reliably up to 50 KV-700 kA with a switch inductance as low as the inductance of the equivalent strip-line. The measured inductance was less than 4.5 nH. Part of this development was done to improve the reliability of the switch and its electrical characteristics including the effects of the trigger pulse on the current distribution along the width of the strip-line. We will show that jitter and current distribution can be controlled by the trigger pulse voltage and rise time. For the first quarter period of the discharge we correlated the number of channels during operation with the trigger pulse parameters. We carried out experiments to estimate the main characteristics (self-breakdown voltage, number of channels, inductance, peak current discharge value) of such a switch for synthetic air dielectric gas. Optimized parameters are deduced. These studies give us a model of switch operation which enables this kind of design for very low inductance multi-megajoule systems.
机译:已经开发出用于电感储能器的非常低电感的加压表面放电开关。此开关是带状线MARX组件的组成部分。这项技术可靠地执行了高达50 KV-700 kA的电流,并且开关电感低至等效带状线的电感。测得的电感小于4.5 nH。进行了部分开发以改善开关及其电气特性的可靠性,包括触发脉冲对沿带状线宽度的电流分布的影响。我们将证明,抖动和电流分布可以通过触发脉冲电压和上升时间来控制。对于放电的前四分之一周期,我们将操作期间的通道数与触发脉冲参数相关联。我们进行了实验,以估算这种用于合成空气介电气体的开关的主要特性(自击穿电压,通道数,电感,峰值电流放电值)。推导优化参数。这些研究为我们提供了一种开关操作模型,该模型可以针对非常低电感的多兆焦耳系统进行这种设计。

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