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A 96.7%-Efficient 2.5A Scalable DC-DC Converter Module with Complementary Dual-Mode Reconfigurable Hybrid Topology Achieving Always Inductor Current Reduction, Continuously Adjustable VCR Range, and Interleaving COUTAugmentation | |
Li, Huihua1; Ma, Qiaobo1; Jiang, Yang1; Martins, Rui1,2; Mak, Pui In1 | |
2024-05 | |
Conference Name | 44th Annual IEEE Custom Integrated Circuits Conference, CICC 2024 |
Source Publication | Proceedings of 2024 IEEE Custom Integrated Circuits Conference |
Pages | 22-2 |
Conference Date | 21 April 2024through 24 April 2024 |
Conference Place | Denver, Colorado |
Country | USA |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Abstract | Efficiency and load capacity are critical for stable computing system operation. To address the need for compact integration and scalability, miniaturized power modules with integrated power devices in chip-sized packages are essential. These modules reduce component count and board space while maintaining high conversion efficiency and scalability for varying system loads. This work introduces a reconfigurable switched-capacitor (SC) hybrid converter topology designed for system-in-package (SiP) power modules. The DC-DC module, featuring a single inductor and capacitor directly mounted over the silicon die, achieves an enhanced output current (IOUT) to inductor current (IL,DC) ratio of up to 2. It provides a continuous adjustable voltage conversion ratio (VCR) range, generating 0.4 to 1.5V output at 1.8V input, with 96.7% efficiency and the capability to deliver 2.5A with a single module. Interleaving three modules achieves 94.3% efficiency with a maximum 6A IOUT, and ?VOUT reduction up to 60% through intrinsic properties of output capacitance (COUT) augmentation. In addition, a fully integrated gate driving scheme utilizing an on-chip high-frequency charge pump (QP) and globally shared bootstrap capacitor (CBST) is proposed to generate domain-floating rails catering to gate voltage demands. |
DOI | 10.1109/CICC60959.2024.10529052 |
URL | View the original |
Indexed By | CPCI-S |
Language | 英語English |
WOS Research Area | Engineering ; Telecommunications |
WOS Subject | Engineering, Electrical & Electronic ; Telecommunications |
WOS ID | WOS:001230023800092 |
Scopus ID | 2-s2.0-85193910860 |
Fulltext Access | |
Citation statistics | |
Document Type | Conference paper |
Collection | Faculty of Science and Technology THE STATE KEY LABORATORY OF ANALOG AND MIXED-SIGNAL VLSI (UNIVERSITY OF MACAU) INSTITUTE OF MICROELECTRONICS DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING |
Corresponding Author | Jiang, Yang |
Affiliation | 1.University of Macau, Macao 2.Universidade de Lisboa, Portugal |
First Author Affilication | University of Macau |
Corresponding Author Affilication | University of Macau |
Recommended Citation GB/T 7714 | Li, Huihua,Ma, Qiaobo,Jiang, Yang,et al. A 96.7%-Efficient 2.5A Scalable DC-DC Converter Module with Complementary Dual-Mode Reconfigurable Hybrid Topology Achieving Always Inductor Current Reduction, Continuously Adjustable VCR Range, and Interleaving COUTAugmentation[C]:Institute of Electrical and Electronics Engineers Inc., 2024, 22-2. |
APA | Li, Huihua., Ma, Qiaobo., Jiang, Yang., Martins, Rui., & Mak, Pui In (2024). A 96.7%-Efficient 2.5A Scalable DC-DC Converter Module with Complementary Dual-Mode Reconfigurable Hybrid Topology Achieving Always Inductor Current Reduction, Continuously Adjustable VCR Range, and Interleaving COUTAugmentation. Proceedings of 2024 IEEE Custom Integrated Circuits Conference, 22-2. |
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