A Single-Inductor Dual-Input Thermoelectric Energy Harvesting Interface Circuit Using Negative Voltage Transfer Technique
碩士 === 國立成功大學 === 電機工程學系 === 104 === In this thesis, TSMC 0.18-μm 1P6M process is applied to implement the design of the thermoelectric energy harvesting interface circuit. A negative voltage transfer technique is proposed to improve the conversion efficiency of harvesting and suppling power to a lo...
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ndltd-TW-104NCKU54421842019-05-15T22:54:12Z http://ndltd.ncl.edu.tw/handle/n8af8p A Single-Inductor Dual-Input Thermoelectric Energy Harvesting Interface Circuit Using Negative Voltage Transfer Technique 使用負電轉換技術之單電感雙輸入熱電獵能電路 Yi-LingYeh 葉怡伶 碩士 國立成功大學 電機工程學系 104 In this thesis, TSMC 0.18-μm 1P6M process is applied to implement the design of the thermoelectric energy harvesting interface circuit. A negative voltage transfer technique is proposed to improve the conversion efficiency of harvesting and suppling power to a load circuit. The loss of traditional two-stage harvesting and regulating circuit can be improved by adopting a three-switch negative voltage transfer structure. The overall thermoelectric energy harvesting interface circuit consists of a negative voltage transfer circuit, a transfer management circuit, a maximum power point tracking (MPPT) circuit, and a zero current sensing (ZCS) circuit. The overall chip die size is 1.040 mm* 1.042 mm. The peak conversion efficiency reaches 75%. Chin-Lung Yang 楊慶隆 2016 學位論文 ; thesis 58 zh-TW |
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碩士 === 國立成功大學 === 電機工程學系 === 104 === In this thesis, TSMC 0.18-μm 1P6M process is applied to implement the design of the thermoelectric energy harvesting interface circuit. A negative voltage transfer technique is proposed to improve the conversion efficiency of harvesting and suppling power to a load circuit. The loss of traditional two-stage harvesting and regulating circuit can be improved by adopting a three-switch negative voltage transfer structure. The overall thermoelectric energy harvesting interface circuit consists of a negative voltage transfer circuit, a transfer management circuit, a maximum power point tracking (MPPT) circuit, and a zero current sensing (ZCS) circuit. The overall chip die size is 1.040 mm* 1.042 mm. The peak conversion efficiency reaches 75%.
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Chin-Lung Yang |
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Chin-Lung Yang Yi-LingYeh 葉怡伶 |
author |
Yi-LingYeh 葉怡伶 |
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Yi-LingYeh 葉怡伶 A Single-Inductor Dual-Input Thermoelectric Energy Harvesting Interface Circuit Using Negative Voltage Transfer Technique |
author_sort |
Yi-LingYeh |
title |
A Single-Inductor Dual-Input Thermoelectric Energy Harvesting Interface Circuit Using Negative Voltage Transfer Technique |
title_short |
A Single-Inductor Dual-Input Thermoelectric Energy Harvesting Interface Circuit Using Negative Voltage Transfer Technique |
title_full |
A Single-Inductor Dual-Input Thermoelectric Energy Harvesting Interface Circuit Using Negative Voltage Transfer Technique |
title_fullStr |
A Single-Inductor Dual-Input Thermoelectric Energy Harvesting Interface Circuit Using Negative Voltage Transfer Technique |
title_full_unstemmed |
A Single-Inductor Dual-Input Thermoelectric Energy Harvesting Interface Circuit Using Negative Voltage Transfer Technique |
title_sort |
single-inductor dual-input thermoelectric energy harvesting interface circuit using negative voltage transfer technique |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/n8af8p |
work_keys_str_mv |
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