A 48-to-12 V Cascaded Resonant Switched-Capacitor Converter for Data Centers with 99% Peak Efficiency and 2500 W/in3 Power Density

Zichao Ye, Y. Lei, R. Pilawa-Podgurski
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引用次数: 46

Abstract

Resonant switched-capacitor (ReSC) converters are promising alternatives for conventional SC and magnetic-based converters, with the potential to achieve simultaneously higher efficiency and higher power density. Since ReSC converters operate in resonant mode, zero current switching (ZCS) occurs naturally and the V-I overlap switching loss is eliminated. To further reduce the switching loss (transistor Coss loss) and improve the light-load efficiency, zero voltage switching (ZVS) is desired. In this work, a ZVS control technique is implemented on a cascaded resonant based intermediate bus converter for 48-to-12 V data center power delivery, on a 720 W hardware prototype. The efficiency is maintained above 97% starting from 3% of the rated load, and has a peak of 99% (including gate drive loss). In addition, the prototype has a very high power density of 2500 W/in3.
用于数据中心的48 ~ 12v级联谐振开关电容变换器,峰值效率99%,功率密度2500w /in3
谐振开关电容器(ReSC)变换器是传统SC和基于磁的变换器的有前途的替代品,具有同时实现更高效率和更高功率密度的潜力。由于ReSC变换器在谐振模式下工作,零电流开关(ZCS)自然发生,并且消除了V-I重叠开关损耗。为了进一步降低开关损耗(晶体管损耗)和提高轻载效率,需要零电压开关(ZVS)。在这项工作中,在一个720 W的硬件原型上,在一个基于级联谐振的中间总线转换器上实现了ZVS控制技术,用于48到12 V的数据中心供电。从额定负载的3%开始,效率保持在97%以上,峰值为99%(包括栅极驱动损耗)。此外,原型具有非常高的2500 W/in3的功率密度。
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