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Multi-Ratio DC-DC Converter Based on Resonant Switched-Capacitor and Sigma Architecture

  • Yu Fu
  • , Jieyun Zhao
  • , Yucheng Zhao
  • , Jingjing Qi
  • , Di Fan
  • , Shouxiang Li*
  • , Wenhao Xie
  • *Corresponding author for this work
  • Beijing Institute of Technology
  • Tsinghua University
  • Wenzhou University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

In data centers, the 48 V two-stage vertical power distribution architecture operates within the 36 V–60 V voltage range of backup batteries under emergency conditions, leading to significant intermediate bus voltage fluctuations. To address this challenge, this paper proposes a switched-capacitor based multi-ratio DC-DC converter as an intermediate bus converter (IBC), which suppresses voltage fluctuations by dynamically adjusting its step-down ratio. Derived from the Sigma architecture, the proposed IBC employs modulation schemes that enable zero-current switching (ZCS) in each submodule, ensuring high conversion efficiency. To further enhance gain flexibility, an optimized topology is introduced, incorporating an auxiliary switch to optimize current distribution among submodules. Experimental results demonstrate that the proposed IBC can seamlessly reconfigured during bus voltage fluctuations, effectively stabilizing the output voltage within the range of 5.14 V to 6 V. Additionally, both power density and conversion efficiency are superior in comparison to conventional solutions.

Original languageEnglish
Title of host publicationThe Proceedings of 2025 International Conference of Electrical, Electronic and Networked Energy Systems - Volume 3
EditorsYong Li, Zhihong Xu, Longfei Tang, Kai Song, Zhengmao Li, Yonghui Liu
PublisherSpringer Science and Business Media Deutschland GmbH
Pages613-623
Number of pages11
ISBN (Print)9789819592869
DOIs
Publication statusPublished - 2026
Externally publishedYes
EventInternational Conference of Electrical, Electronic and Networked Energy Systems, EENES 2025 - Hangzhou, China
Duration: 31 Oct 20252 Nov 2025

Publication series

NameLecture Notes in Electrical Engineering
Volume1615 LNEE
ISSN (Print)1876-1100
ISSN (Electronic)1876-1119

Conference

ConferenceInternational Conference of Electrical, Electronic and Networked Energy Systems, EENES 2025
Country/TerritoryChina
CityHangzhou
Period31/10/252/11/25

Keywords

  • DC-DC converter
  • Switched-capacitor
  • zero-current switching

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