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首页> 外文期刊>Electrical Engineers - Part I: General, Journal of the Institution of >Subsidence transients in circuits containing a non-linear resistor, with reference to the problem of spark-quenching
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Subsidence transients in circuits containing a non-linear resistor, with reference to the problem of spark-quenching

机译:包含非线性电阻的电路中的沉陷瞬变,涉及火花猝灭问题

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摘要

Ceramic non-linear resistance materials, possessing the valuable property of rapidly decreasing resistance with increasing voltage, have found application in spark-quenching. For this purpose, the non-linear resistor may be used either alone or in series with a capacitor. With one exception, analytical solution of the resulting circuits does not seem possible, but numerical solution in a somewhat generalized form, with the differential analyser, is practicable in all cases. Accordingly, solutions have been obtained in this way for a range of cases typical of those encountered in light-current engineering. In this paper, these solutions are presented in graphical form suitable for use by the designer: curves of current and gap voltage are shown as functions (indirectly) of time. An analytical solution of the single solvable case is given, together with an experimental check of representative calculations. The work is concluded with a study of the effect of temperature on the non-linear resistance material: a knowledge of this is essential to a correct application of the design data.
机译:陶瓷非线性电阻材料具有随电压增加而迅速减小电阻的有价值的特性,已在火花淬火中得到应用。为此,非线性电阻器可单独使用或与电容器串联使用。除了一个例外,似乎不可能对生成的电路进行解析解,但是在所有情况下都可以使用带有差分分析器的某种形式的数值化解。因此,已经以这种方式获得了解决在光电流工程中遇到的典型情况的一系列情况的解决方案。在本文中,这些解决方案以适合设计人员使用的图形形式呈现:电流和间隙电压的曲线显示为时间的函数(间接)。给出了单个可解决案例的解析解,并通过实验检查了代表性计算。这项工作是通过研究温度对非线性电阻材料的影响而得出的:了解这一点对于正确应用设计数据至关重要。

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