优化高频电压调节器的相位设置为电力输送应用

Felipe de Jesús Leal-Romo, Jose L. Silva-Perales, Carlos López-Limón, J. Rayas-Sánchez
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引用次数: 1

摘要

市场上推出的每一台新的计算机服务器都旨在提供性能和功耗之间的最佳权衡。这个目标对于云计算硬件基础设施的服务器来说是至关重要的。在这种情况下,电力输送(PD)专家正在采用更高频率的开关稳压器(VR)来降低平台成本和总拥有成本(TCO)。因此,随着VR频率的增加,电压调节器和输出电感器等组件的实际面积正在缩小。因此,实现VR的最佳性能意味着研究减相方案,以及EM耦合电感设计,以及其他技术,以减轻功率损耗。本文通过探索轻负载场景下的角度设置,重点研究高频VR应用的最佳角度安排,以最大限度地降低VR的功率损耗和输出电压纹波。
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Optimizing phase settings of high-frequency voltage regulators for power delivery applications
Every new computer server introduced to the market aims at delivering the best tradeoff between performance and power consumption. This goal is crucial in the case of servers for cloud computing hardware infrastructure. In this context, power delivery (PD) experts are adopting higher frequency switching voltage regulators (VR) to reduce platform's cost as well as total cost of ownership (TCO). Because of this fact, the real estate of components, such as voltage regulators and output inductors, is shrinking as VR frequency increases. As a consequence, achieving the best performance of the VR implies looking into phase shedding schemes, as well as EM coupled inductor design, among other techniques, to mitigate power losses. This paper focuses on the study of the best angle arrangement possible for high frequency VR applications, by exploring angle settings under light load scenarios, aiming to minimize VR's power loss and output's voltage ripple.
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