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Improving the frequency response of ceramic dielectrics for high power applications in power electronic converters

机译:改善功率电子转换器中大功率应用的陶瓷电介质的频率响应

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摘要

High-voltage (1000 V) distributed and lumped ceramic capacitors are under development for diverse applications in integrated power-electronics structures and systems for cost-efficient production. These applications range from systems involving new integrated packaging and manufacturing technologies such as for dc-dc converters, to optimal power-component designs such as in dissipative RCD turn-off snubber circuits for high-power transistor or thyristor switch protection. Their design requires an understanding of the interacting ferroelectric, grain-boundary, and space-charge mechanisms controlling the high-voltage and low-frequency response. This paper relates to an experimental and theoretical study of high-voltage (0 to 1000 VDC) acceptor-doped barium-titanate BaTiO/sub 3/ ceramic capacitors, for several possible uses in integrated power-electronic converters with flat voltage and frequency response up to 1 MHz. The paper includes interpretations, based on experiment, of the inter-dependence of (a) ferroelectric-grain, (b) semiconductor-compensation-insulator-compensation-semiconductor (n-c-i-c-n) grain-boundary, and (c) Debye space-charge contributions to capacitance, as functions of acceptor doping.
机译:高压(1000 V)分布式集总陶瓷电容器正在开发中,可用于集成电力电子结构和系统中的各种应用,以实现具有成本效益的生产。这些应用范围从涉及新的集成封装和制造技术的系统(例如用于dc-dc转换器的系统)到最佳功率组件设计(例如用于大功率晶体管或晶闸管开关保护的耗散RCD关断缓冲电路)。他们的设计需要了解控制高压和低频响应的相互作用的铁电,晶界和空间电荷机制。本文涉及高压(0至1000 VDC)掺杂受体的钛酸钡BaTiO / sub 3 /陶瓷电容器的实验和理论研究,可用于具有平坦电压和频率响应的集成功率电子转换器中的几种可能的用途到1 MHz本文基于实验对(a)铁电晶粒,(b)半导体补偿绝缘体补偿半导体(ncicn)晶界和(c)德拜空间电荷贡献的相互依赖性进行了解释。电容,作为受体掺杂的功能。

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