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A Comprehensive Comparison of MHz GaN-Based ZVS Step-Down Converters for Low Power Integrated On-Chip Applications

机译:低功耗集成片上应用的基于MHz GaN的ZVS降压转换器的全面比较

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摘要

Non-isolated step-down converters are widely used as auxiliary power supplies. Active and passive components, excluding large magnetic components, are usually integrated in a single chip in the industry. High power density and high efficiency are always the most important requirements. High switching frequency, such as megahertz (MHz), can highly shrink the volume of passive components compared with kilohertz frequency, however, it will cause huge switching loss for hard switching converters. Zero-voltage-switching (ZVS) is able to highly reduce switching loss, especially under high switching frequency. In this paper, three ZVS buck-type converters operating at MHz frequency, including conventional buck, tapped-inductor buck and hybrid resonant buck converter, are compared. Finally, three hardware prototypes using gallium-nitride (GaN) devices with 24-48 V input and 3-A/5-V output are demonstrated and compared in terms of efficiency, size and thermal performance.
机译:非隔离降压转换器被广泛用作辅助电源。除大型磁性元件外,有源和无源元件通常集成在业界的单个芯片中。高功率密度和高效率始终是最重要的要求。与千赫兹频率相比,兆赫兹(MHz)之类的高开关频率可以极大地缩小无源元件的体积,但是,这将给硬开关转换器带来巨大的开关损耗。零电压开关(ZVS)能够大大降低开关损耗,尤其是在高开关频率下。在本文中,比较了三种以MHz频率工作的ZVS降压型转换器,包括传统的降压型,抽头电感式降压型和混合谐振降压型转换器。最后,展示了三个使用氮化镓(GaN)器件的硬件原型,这些器件具有24-48 V输入和3-A / 5-V输出,并在效率,尺寸和热性能方面进行了比较。

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