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Experimental Study of the Protection Effect of the Short-wave RF Front-end Lightning Electromagnetic Pulse Protection Module Based on Switch-type and Voltage Limiting Type Protective Elements

机译:基于开关型和电压限制型保护元件的短波RF前端闪电电磁脉冲保护模块保护效果的实验研究

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摘要

This paper introduces the basic structure and protection effect test result of the short-wave RF front-end lightning electromagnetic pulse protection module based on the switch-type protective element (gas discharge tube, GDT) and voltage limiting type protection element (transient voltage suppressor, TVS), and analyzes the reasons for the waveform difference during measurement of the residual output voltage of the module with a high-voltage probe and an attenuator respectively. The study herein shows that the action delay of the protection module under development is less than 1 ns and its leakage pulse peak is less than 50 V when the lightning electromagnetic pulse with a peak voltage of 10 kV, a rising rate of 10 kV/μs and a peak current of 5 kA is applied, and in addition, the high-voltage probe, when adopted to measure the residual output voltage waveform of the module, is sensitive to the external electromagnetic radiation field, which will produce an interference signal hard to be eliminated, with its amplitude and oscillation period in direct proportion to the area of the high-voltage probe test circuit; while the coaxial attenuator enjoys a higher measurement accuracy.
机译:本文介绍了基于开关型保护元件(气体放电管,GDT)和电压限制型保护元件的短波RF前端闪电电磁脉冲保护模块的基本结构和保护效果测试结果(瞬态电压抑制器,电视),分别分别分别在测量模块的剩余输出电压和高压探头和衰减器期间分析波形差的原因。本文的研究表明,当闪电电磁脉冲10kV的闪电电压时,其泄漏电磁脉冲的泄漏电磁脉冲小于50V,漏电模块的动作延迟小于1ns,漏电脉冲峰值小于50V,其速度为10kV /μs的上升率应用5ka的峰值电流,另外,高压探头,当采用模块的剩余输出电压波形时对外部电磁辐射场敏感,这将产生干扰信号消除,其振幅和振荡周期直接与高压探头测试电路面积的比例。虽然同轴衰减器享有更高的测量精度。

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