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Research on performance of an integrated component with the three-electrode planar switch and the exploding foil bridge

机译:三电极平面开关与爆炸箔桥集成部件的性能研究

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In this paper, an integrated component of the three-electrode planar switch and the exploding foil bridge was fabricated on the ceramic substrate by the magnetron sputtering process and wet etching process, which was beneficial to the miniaturization, low energy and integration of the explosion foil initiator system. We discussed the self-breakdown voltage of the three-electrode planar switch under different structural parameters and established the formula of self-breakdown voltage. By testing the discharge performance of the integrated component under a charging voltage of 1300 V similar to 1500 V, we obtained a delay time of about 300 ns for the component, which is lower than the delay time when the spark gap switch is used. This result showed that the inductance of the entire circuit was lower than the inductance of the conventional circuit. We conducted a preliminary study on whether the integrated components are affected by changing of the working environment. Finally, based on this integrated component, we have used LTCC technology to produce a new highly integrated EFI system.
机译:本文通过磁控溅射和湿法刻蚀工艺在陶瓷基板上制备了三电极平面开关和爆炸箔桥的集成部件,有利于爆炸箔的小型化,低能耗和一体化。启动器系统。讨论了三电极平面开关在不同结构参数下的自击穿电压,并建立了自击穿电压的公式。通过在1300 V的类似于1500 V的充电电压下测试集成组件的放电性能,我们获得了该组件的大约300 ns的延迟时间,该延迟时间小于使用火花隙开关时的延迟时间。该结果表明,整个电路的电感低于常规电路的电感。我们对集成组件是否受到工作环境变化的影响进行了初步研究。最后,基于此集成组件,我们使用了LTCC技术来生产新的高度集成的EFI系统。

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