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Microfabricated Thin-Film Inductors for High-Frequency DC-DC Power Conversion.

机译:用于高频DC-DC电源转换的超细薄膜电感器。

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摘要

Microfabricated V-groove inductors targeted to operate above 10 MHz are investigated. Multilayer nano-granular Co-Zr-O/ZrO2 magnetic thin films are used as the core material of the inductors to improve the magnetic performance of the films deposited on the sidewalls of V-grooves and to control eddy-current loss in the core, which goes up very quickly as frequency increases. A loss model is developed to estimate eddy-current loss in multilayer magnetic thin films considering the effect of displacement current at high frequencies, and the model is applied in the design of V-groove inductors.;V-groove inductors using multilayer magnetic thin films are co-optimized with power MOSFETs for 7-V to 3.3-V, 1-A DC-DC buck converters to maximize power handling capability per unit substrate area for given efficiencies. Prototype V-groove inductors are fabricated based on the optimization results, and measured and predicted performance of the inductors match well. The prototype inductors are a promising candidate for high-power-density high-efficiency DC-DC converters. The 7-V to 3.3-V, 1-A converters using prototype V-groove inductors are expected to exhibit power density of 2.5 W/mm2 and efficiency of 86% at 100 MHz, and power density of 0.36 W/mm2 and efficiency of 91% at 11 MHz.
机译:研究了旨在在10 MHz以上工作的超细V型槽电感。多层纳米颗粒状Co-Zr-O / ZrO2磁性薄膜用作电感器的芯材,以改善沉积在V型槽侧壁上的薄膜的磁性能,并控制芯中的涡流损耗,随着频率的增加,它会很快上升。考虑到高频位移电流的影响,建立了一种损耗模型来估算多层磁性薄膜的涡流损耗,并将该模型应用于V型槽电感的设计中。与7V至3.3V,1A DC-DC降压转换器的功率MOSFET共同优化,以在给定效率的情况下最大化单位基板面积的功率处理能力。基于优化结果制造了原型V形槽电感,并且电感的测量和预测性能非常匹配。原型电感器是高功率密度高效率DC-DC转换器的有希望的候选者。使用原型V型槽电感器的7V至3.3V,1A转换器在100 MHz频率下的功率密度预计为2.5 W / mm2,效率为86%,功率密度为0.36 W / mm2,效率为100%。在11 MHz时为91%。

著录项

  • 作者

    Yao, Di.;

  • 作者单位

    Dartmouth College.;

  • 授予单位 Dartmouth College.;
  • 学科 Engineering Materials Science.;Energy.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:45:32

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