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首页> 外文期刊>Transactions on Electrical and Electronic Materials >Degradation Characteristics of Pr/Co/Cr/Er Co-doped Zinc Oxide Varistors by Impulse Current Stress
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Degradation Characteristics of Pr/Co/Cr/Er Co-doped Zinc Oxide Varistors by Impulse Current Stress

机译:脉冲电流应力对Pr / Co / Cr / Er共掺杂氧化锌压敏电阻的降解特性

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In light of the sure protection function, the most important factors of a varistor are the clamping voltage ratio and degradation characteristics. The degradation characteristics of Pr/Co/Cr/Er co-doped zinc oxide varistors were investigated by impulse currents (0.4~2.1 kA) stress for the specified content of (0.5 and 2.0 mol%). The varistor doped with 2.0 mol% exhibited the best clamp characteristics, with the clamp voltage ratio (K) in the range of K = 1.63~1.88 at the impulse currents of 5-50 A. However, the varistor doped with 0.5 mol% exhibited excellent electrical stability, with variation rates for the breakdown field, for the nonlinear coefficient, and for the leakage current density of -6.9%, -12.6%, and -14.3%, respectively, after application of an impulse current of 2.1 kA. In contrast, the varistor doped with 2.0 mol% was destroyed after application of an impulse current of 1.2 kA.
机译:考虑到可靠的保护功能,压敏电阻最重要的因素是钳位电压比和降级特性。通过脉冲电流(0.4〜2.1 kA)应力对指定含量(0.5和2.0 mol%)的Pr / Co / Cr / Er共掺杂氧化锌压敏电阻的降解特性进行了研究。掺有2.0 mol%的压敏电阻表现出最佳的钳位特性,在5-50 A的冲击电流下,钳位电压比(K)在K = 1.63〜1.88范围内。然而,掺有0.5 mol%的压敏电阻却表现出最佳的钳位特性。优异的电稳定性,在施加2.1 kA的脉冲电流后,击穿场,非线性系数和泄漏电流密度的变化率分别为-6.9%,-12.6%和-14.3%。相反,掺杂了2.0mol%的压敏电阻在施加1.2kA的脉冲电流后被破坏。

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