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The Characteristics of Film Capacitors at Room Temperature and in Liquid Nitrogen

机译:室温和液氮中薄膜电容器的特性

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One of the key candidate technologies for future electric aircrafts is high-temperature superconductivity (HTS), which could drastically increases the power density by reducing volume and weight of power systems and devices. HTS devices require cryogenic operating temperature. Over the past several decades, HTS motors, generators, and cables technologies have been successfully demonstrated. However, the cryogenic operation of power electronics technology requires further research and development. Among the key components of power electronics devices, capacitors, an indispensable component, are one of the greatest challenges for successfully operating the cryogenic power electronics devices. The purpose of the study is exploring the behavior of various types of film capacitors at cryogenic temperatures. Here, we used liquid nitrogen to obtain 77 K as it is the representative cryogenic temperature. Both the capacitance and voltage rating of film capacitors were compared at room temperature and in liquid nitrogen.
机译:未来电气飞机的关键候选技术之一是高温超导性(HTS),通过减少电力系统和装置的体积和重量,可以通过减小功率密度来大幅增加功率密度。 HTS设备需要低温工作温度。在过去的几十年中,已经成功地证明了HTS电机,发电机和电缆技术。然而,电力电子技术的低温操作需要进一步的研发。在电力电子设备的关键部件中,电容器,一种不可或缺的组件,是成功操作低温电力电子设备的最大挑战之一。该研究的目的在于在低温温度下探索各种类型的薄膜电容器的行为。这里,我们使用液氮以获得77 k,因为它是代表性低温温度。在室温和液氮中比较薄膜电容器的电容和电压额定值。

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