An autonomous piezoelectric energy harvesting IC based on a synchronous multi-shots technique

P. Gasnier, J. Willemin, S. Boisseau, G. Despesse, C. Condemine, Guillaume Gouvernet, J. Chaillout
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引用次数: 17

Abstract

This paper presents a fully autonomous integrated circuit (IC) dedicated to piezoelectric harvesters. The IC implements a novel Synchronous Electric Charge Extraction (SECE) technique which optimizes the energy transfer from a highly charged piezoelectric harvester to a low voltage storage element. The system deals with piezoelectric powers in the range of 10 μW to 1mW and handles very high piezoelectric voltage values (>100V) limited by the off-chip components around the IC. The IC has been fabricated in AMS 0.35 μ m3.3V technology and its low power consumption (1 μW @ 5Hz) is particularly suitable for low frequency harvesters. The Multi-Shots SECE (MS-SECE) technique implemented in the IC increases the efficiency by up to 25% compared to a standard SECE technique and allows the use of small off-chip components. An efficiency of 61% has been reached with a 125mm3coupled inductor @ 40V. Moreover, the complete system self-starts and works without any battery.
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基于同步多镜头技术的自主压电能量采集集成电路
本文提出了一种用于压电采集器的全自动集成电路。该集成电路实现了一种新的同步电荷提取(SECE)技术,该技术优化了从高电荷压电收集器到低压存储元件的能量转移。该系统可处理10 μ w至1mW范围内的压电功率,并可处理受IC周围片外元件限制的非常高的压电电压值(>100V)。该IC采用AMS 0.35 μ m3.3V技术制造,其低功耗(1 μ w @ 5Hz)特别适用于低频采集器。与标准的SECE技术相比,在IC中实现的多镜头SECE (MS-SECE)技术将效率提高了25%,并允许使用小型片外组件。使用125mm3耦合电感器@ 40V时,效率达到61%。此外,整个系统自动启动和工作,不需要任何电池。
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