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Resonant Rectifier ICs for Piezoelectric Energy Harvesting Using Low-Voltage Drop Diode Equivalents

机译:使用低压降二极管等效电路的压电能量收集谐振整流器IC

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摘要

Herein, we present the design technique of a resonant rectifier for piezoelectric (PE) energy harvesting. We propose two diode equivalents to reduce the voltage drop in the rectifier operation, a minuscule-drop-diode equivalent (MDDE) and a low-drop-diode equivalent (LDDE). The diode equivalents are embedded in resonant rectifier integrated circuits (ICs), which use symmetric bias-flip to reduce the power used for charging and discharging the internal capacitance of a PE transducer. The self-startup function is supported by synchronously generating control pulses for the bias-flip from the PE transducer. Two resonant rectifier ICs, using both MDDE and LDDE, are fabricated in a 0.18 μm CMOS process and their performances are characterized under external and self-power conditions. Under the external-power condition, the rectifier using LDDE delivers an output power POUT of 564 μW and a rectifier output voltage VRECT of 3.36 V with a power transfer efficiency of 68.1%. Under self-power conditions, the rectifier using MDDE delivers a POUT of 288 μW and a VRECT of 2.4 V with a corresponding efficiency of 78.4%. Using the proposed bias-flip technique, the power extraction capability of the proposed rectifier is 5.9 and 3.0 times higher than that of a conventional full-bridge rectifier.
机译:在这里,我们介绍用于压电(PE)能量收集的谐振整流器的设计技术。我们提出了两个二极管等效值以减小整流器工作中的电压降,分别是微小液滴二极管等效值(MDDE)和低压降二极管等效值(LDDE)。二极管等效物嵌入谐振整流器集成电路(IC)中,该集成电路使用对称偏置翻转来减少用于对PE换能器的内部电容进行充电和放电的功率。通过从PE传感器同步生成用于偏置翻转的控制脉冲,可以支持自启动功能。使用0.18μmCMOS工艺制造了两个同时使用MDDE和LDDE的谐振整流器IC,并在外部和自供电条件下表征了其性能。在外部电源条件下,使用LDDE的整流器可提供564μW的输出功率POUT和3.36 V的整流器输出电压VRECT,功率传输效率为68.1%。在自供电条件下,使用MDDE的整流器提供288μW的POUT和2.4 V的VRECT,对应效率为78.4%。使用提出的偏置翻转技术,提出的整流器的功率提取能力是传统全桥整流器的5.9和3.0倍。

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