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Behavior of low voltage varistors under very fast oscillatory type current impulse environment

机译:低压压敏电阻在非常快的振荡型电流冲击环境下的行为

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In this study, the behavior of low voltage varistors under very fast oscillatory type non standard current impulses were analyzed. The experiment was performed on 20 mm disk varistors with different nominal operating voltages of 14V, 30 V, 40 V, 75 V, 150 V, 250 V and 275 V. Non standard current impulses were generated using a Van De Graaff generator. The shape of the impulse was like a double exponential oscillatory type wave which has the oscillation frequency of 14.53 MHz. The rise time of the impulse was 8 ns with a maximum peak current rate-of-rise is of 2.41 × 10 A/s. According to the results, under vary fast non standard current impulse environment, clamping voltage could be depend on both nominal voltage of varistors as well as its disk diameter. Another important feature of the voltage signatures observed was the DC offset voltage causes between terminals of varistor immediately after it triggered due injected fast current impulses.
机译:在这项研究中,分析了低压变阻器在非常快的振荡型非标准电流脉冲下的行为。该实验是在20 mm圆盘压敏电阻上进行的,这些压敏电阻具有14V,30 V,40 V,75 V,150 V,250 V和275 V的不同标称工作电压。使用Van De Graaff发生器产生非标准电流脉冲。脉冲的形状像是双指数振荡型波,其振荡频率为14.53 MHz。脉冲的上升时间为8 ns,最大峰值电流上升率为2.41×10 A / s。根据结果​​,在变化迅速的非标准电流脉冲环境下,钳位电压可能取决于压敏电阻的标称电压及其圆盘直径。观察到的电压信号的另一个重要特征是,由于注入的快速电流脉冲触发后,压敏电阻端子之间立即产生直流偏移电压。

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