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31.6 A SIDO/DISO VCF-Step-Reconfigurable Continuously Scalable-Conversion-Ratio SC Converter Achieving 91.4%/92.6% Peak Efficiency and Almost-lossless Channel Switching
Wang, Yuanfei1; Huang, Mo1; Martins, Rui Paulo1,2; Lu, Yan1
2024-03-13
Conference Name2024 IEEE International Solid-State Circuits Conference (ISSCC)
Source PublicationDigest of Technical Papers - IEEE International Solid-State Circuits Conference
Volume67
Pages506-508
Conference Date18-22 February 2024
Conference PlaceSan Francisco
CountryUSA
PublisherIEEE
Abstract

In an energy harvesting (EH) system for the internet of things (IoT), the input voltage VIN may vary within a wide range, e.g., from 0.3 to 1.8V from a solar cell, while the battery voltage VBAT and output voltage VOUT are usually higher than VIN. Figure 31.6.1 shows a dual-mode DC-DC converter for EH interface: Single-Input-Dual-Output (SIDO) and Dual-Input-Single-Output (DISO). In SIDO, the converter delivers power from source to both load and battery as POUT < PIN. Once POUT > PIN, the converter is in DISO mode, delivering both source and battery power to the load. A switched-capacitor (SC) converter is favorable for low-power EH interfaces. Previous works have used two-stage schemes [1, 2], i.e., not converting PIN directly to POUT or PBAT. This could isolate inputs or outputs, however, is not area efficient. In [3] and [4] a series multiplexer MUX for channel selection is employed, but the loss from MUX is considerable.

DOI10.1109/ISSCC49657.2024.10454453
URLView the original
Language英語English
Scopus ID2-s2.0-85188045866
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Citation statistics
Document TypeConference paper
CollectionINSTITUTE OF MICROELECTRONICS
DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING
Corresponding AuthorHuang, Mo
Affiliation1.University of Macau, Macao
2.University of Lisboa, Lisbon, Portugal
First Author AffilicationUniversity of Macau
Corresponding Author AffilicationUniversity of Macau
Recommended Citation
GB/T 7714
Wang, Yuanfei,Huang, Mo,Martins, Rui Paulo,et al. 31.6 A SIDO/DISO VCF-Step-Reconfigurable Continuously Scalable-Conversion-Ratio SC Converter Achieving 91.4%/92.6% Peak Efficiency and Almost-lossless Channel Switching[C]:IEEE, 2024, 506-508.
APA Wang, Yuanfei., Huang, Mo., Martins, Rui Paulo., & Lu, Yan (2024). 31.6 A SIDO/DISO VCF-Step-Reconfigurable Continuously Scalable-Conversion-Ratio SC Converter Achieving 91.4%/92.6% Peak Efficiency and Almost-lossless Channel Switching. Digest of Technical Papers - IEEE International Solid-State Circuits Conference, 67, 506-508.
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