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Implications of advanced capacitor dielectrics for performance of metallized film capacitor windings

机译:先进电容器电介质对金属化薄膜电容器绕组性能的影响

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A range of high dielectric capacitor films is under development with the objective of improving the energy density of pulsed discharge capacitors. A substantial change in capacitor film dielectric constant has implications for capacitor design and function. This paper develops formulas for equivalent series resistance (ESR) and equivalent series inductance (ESL) of a cylindrical capacitor winding as a function of material properties and winding design. A numerical approach is used to investigate the frequency-dependent ESR and ESL, after which formulas are developed for winding inductance based on a resistive current distribution in the winding. Analyses are carried out for a cylindrical metallized film winding in which the return conductor is brought either through the center of the core on which the film is wound or coaxially up the outside of the winding, so that both connections are made from the same end of the capacitor with minimal inductance. The implications of moving to high dielectric constant film are investigated on the basis of this analysis.
机译:为了提高脉冲放电电容器的能量密度,正在开发一系列高介电电容器薄膜。电容器膜介电常数的实质变化对电容器的设计和功能有影响。本文开发了圆柱电容器绕组等效串联电阻(ESR)和等效串联电感(ESL)的公式,该公式与材料性能和绕组设计有关。使用一种数值方法来研究频率相关的ESR和ESL,然后根据绕组中的电阻电流分布来开发绕组电感的公式。对圆柱形金属化薄膜绕组进行分析,在该绕组中,返回导体穿过缠绕薄膜的芯子中心,或者同轴地绕在绕组的外部,这样,两个连接都从绕组的同一端进行具有最小电感的电容器。在此分析的基础上,研究了迁移到高介电常数薄膜的含义。

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