Thermodynamic modeling with experimental validation of the pulsed and periodic operation of a high power resistor

D. Muffoletto, M. Canty, J. Ulrich, D. Brim, T. DiSanto, K. Burke, J. Zirnheld, Erik Althoff, Bill Glodzik
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引用次数: 6

Abstract

The size and performance demands placed on high power resistors are increasing, in particular for their use in the growing electric vehicle industry. Ceramic composite resistors, which demonstrate high peak tempera-ture limits and high power handling capabilities in low inductance packages, are attractive choices for these applications. A thermodynamic model of one such resistor is presented to better understand their use under repetitive high power stresses and the operating conditions that lead to thermal failure. This model is used to simulate the peak temperatures generated by a series of maximum rated-energy impulses, periodically delivered as to meet the maximum rated average power of the device. To experimentally validate the model, the resistor was sub-jected to similar voltage stresses and the surface temper-atures are compared.
热力学建模与实验验证的脉冲和周期操作的高功率电阻
对大功率电阻器的尺寸和性能要求越来越高,特别是在不断发展的电动汽车行业中。陶瓷复合电阻器在低电感封装中具有高峰值温度限制和高功率处理能力,是这些应用的有吸引力的选择。提出了一个这样的电阻器的热力学模型,以便更好地理解它们在重复高功率应力和导致热失效的操作条件下的使用。该模型用于模拟由一系列最大额定能量脉冲产生的峰值温度,这些脉冲周期性地发送以满足器件的最大额定平均功率。为了验证该模型的有效性,将电阻置于相似的电压应力下,并对其表面温度进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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