Design and optimization of a wide dynamic range Programmable Power Supply for data center applications

R. Christen, J. Smajic, A. Sridhar, T. Brunschwiler
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引用次数: 4

Abstract

A point-of-load (PoL) voltage regulator module (VRM) with high efficiency, conversion ratio and power density can enable dense integration of CPUs in data centers, and subsequently increase the overall data center energy efficiency. State-of-the-art VRMs are already quite small and achieve high peak efficiencies. However, given the variable nominal load currents of these VRMs in response to changing computational loads of the data centers, a flat high-efficiency response is more desirable. This paper presents a programmable VRM with a flat < 90 % efficiency response over a wide load dynamic range. The proposed programmable VRM is based on multiphase interleaved synchronous buck topology with phase shedding. An extensive exploration of different power switch technologies has been performed in order to obtain the most suitable MOSFET technology for this topology. Our design space exploration also included sweeping the voltage conversion ratio, passive components and switching frequency. The finalized programmable VRM, using discrete Si-MOSFETs, performs a 12–1 V DC-DC conversion with an operating load range of 10 – 200 A and a switching frequency of 200 kHz. Experimental characterization of the VRM demonstrates an efficiency of 92.2 % across the wide load range of 10 – 200 A, confirming design simulations with a maximum relative error of 0.7 %.
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用于数据中心应用的大动态范围可编程电源的设计与优化
PoL (point-of-load)电压调节模块VRM (point-of-load)具有高效率、高转换率、高功率密度的特点,可以实现数据中心内cpu的密集集成,从而提高数据中心的整体能效。最先进的vrm已经相当小,并且达到了很高的峰值效率。然而,考虑到这些vrm的标称负载电流随数据中心计算负载的变化而变化,一个平坦的高效响应是更可取的。本文提出了一种可编程的VRM,在很宽的负载动态范围内,效率响应平坦小于90%。所提出的可编程VRM是基于相位脱落的多相交错同步降压拓扑结构。为了获得最适合这种拓扑结构的MOSFET技术,已经对不同的功率开关技术进行了广泛的探索。我们的设计空间探索还包括扫描电压转换比、无源元件和开关频率。最终完成的可编程VRM采用离散si - mosfet,工作负载范围为10 - 200 a,开关频率为200 kHz,可执行12-1 V DC-DC转换。在10 - 200a的宽负载范围内,VRM的实验特性证明了92.2%的效率,证实了设计模拟的最大相对误差为0.7%。
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