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A variable step-down conversion ratio switched capacitor DC-DC converter for energy harvesting systems working in intermittent mode

A variable step-down conversion ratio switched capacitor DC-DC converter for energy harvesting systems working in intermittent mode
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摘要 Energy harvesting systems stimulate the development of power management for low power consumption applications. Improving the converter efficiency of power management circuits has become a significant issue in energy harvesting system design. This paper presents a variable step-down conversion ratio switched capacitor (SC) DC-DC converter to advance the converter efficiency of charge on the stored capacitor in a wireless monitoring system of orthopedic implants. The converter is designed to work at 1 MHz switching frequency and achieves 15 to 2 V conversion. Measurement results show that the converter efficiency can reach 42% including all circuit power consumption, which is much higher than previous work. Energy harvesting systems stimulate the development of power management for low power consumption applications. Improving the converter efficiency of power management circuits has become a significant issue in energy harvesting system design. This paper presents a variable step-down conversion ratio switched capacitor (SC) DC-DC converter to advance the converter efficiency of charge on the stored capacitor in a wireless monitoring system of orthopedic implants. The converter is designed to work at 1 MHz switching frequency and achieves 15 to 2 V conversion. Measurement results show that the converter efficiency can reach 42% including all circuit power consumption, which is much higher than previous work.
出处 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2009年第12期103-107,共5页 半导体学报(英文版)
关键词 energy harvesting system switched-capacitor DC-DC converter piezoelectric elements energy harvesting system switched-capacitor DC-DC converter piezoelectric elements
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参考文献5

  • 1Chen Hong, Jia Chen, Chen Yi, et al. A low-power IC design for the wireless monitoring system of the orthopedic implants. IEEE Custom Integrated Circuits Conference, 2008:363.
  • 2Kymissis J, Kendall C, Paradiso J, et al. Parasitic power har- vesting in shoes. Proc 2nd IEEE Int Conf Wearable Computing, Los Alamitos, CA, August 1998:132.
  • 3Shenck N S, Paradiso J A. Energy scavenging with shoe- mounted piezoelectric. IEEE Micro, 2001, 21(3): 30.
  • 4Makowski M S, Maksimovic D. Performance limits of Switched capacitor DC-DC converters. 26th Annual IEEE PESC'95 Record, 1995:1215.
  • 5Jia Chen, Chen Hong, Liu Ming, et al. Integrated power management circuit for piezoelectronic generator in wireless monitoring system of orthopaedic implants. IET Circuit, Device and System, 2008, 12(6): 485.

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