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Effects of Combined Stressing on the Electrical Properties of Film and Ceramic Capacitors

机译:复合应力对薄膜电容器和陶瓷电容器电性能的影响

摘要

Advanced power systems which generate, control, and distribute electrical power to many large loads are a requirement for future space exploration missions. The development of high temperature insulating materials and power components constitute a key element in systems which are lightweight, efficient, and are capable of surviving the hostile space environment. In previous work, experiments were carried out to evaluate film and ceramic capacitors for potential use in high temperature applications. The effects of thermal stressing, in air and without electrical bias, on the electrical properties of the capacitors as a function of thermal aging up to 12 weeks were determined. In this work, the combined effects of thermal aging and electrical stresses on the properties of teflon film and ceramic power capacitors were examined. The ceramic capacitors were thermally aged for 35 weeks and the teflon capacitors for 15 weeks at 200 C under full electrical bias and were characterized, on a weekly basis, in terms of their capacitance stability and electrical loss in the frequency range of 50 Hz to 100 kHz. DC leakage current measurements were also obtained. The results obtained represent the influence that short-term thermal aging and electrical bias have on the electrical properties of the power capacitors characterized.
机译:未来的太空探索任务需要产生,控制和分配电力到许多大负载的先进动力系统。高温绝缘材料和功率组件的开发是轻便,高效且能够在恶劣的太空环境中生存的系统中的关键要素。在先前的工作中,进行了实验来评估薄膜和陶瓷电容器在高温应用中的潜在用途。确定了在空气中且没有电偏压的情况下,热应力对电容器电学性能的影响,该影响是长达12周的热老化的函数。在这项工作中,研究了热老化和电应力对聚四氟乙烯薄膜和陶瓷功率电容器性能的综合影响。陶瓷电容器在完全电偏压下于200 C进行热老化35周,聚四氟乙烯电容器进行15周,并在50 Hz至100 Hz频率范围内每周进行一次电容稳定性和电损耗方面的表征千赫。还获得了直流泄漏电流测量值。获得的结果代表了短期热老化和电偏置对所表征的功率电容器的电性能的影响。

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