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A 60 μW Low-Power Low-Voltage Power Management Unit for a Self-Powered System based on Low-Cost Piezoelectric Powering Generators

机译:基于低成本压电动力发电机的自动系统为60μW低功耗低压电源管理单元

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This paper presents the architecture of a novel implementation of an integrated self-powered system based on piezoelectric vibrations in a 0.13μm technology. The electromechanical transduction is performed by using a low-cost commercial piezoelectric, working at low frequencies, with voltages up to 2.5V. The system is conceived as a System In a Package (SiP). The full integrated system is adapted to work with low-voltage and low-power conditions. The full custom power management circuit is used to charge a storage capacitor (super capacitor), from which the stored energy will be used to power, by controlled cycles of discharge operation of a very low power wireless sensor node that could be used in heavy machinery monitoring. Each circuitry block of the power management circuitry is presented and discussed. The simulated studies are fully validated by experimental tests. The experimental consumption of the power management unit is 67μW, approach to the theoretical expected value of 60μW.
机译:本文介绍了基于0.13μm技术的压电振动的集成自动系统的新颖实现的架构。通过使用低成本的商业压电,在低频下工作,电压高达2.5V来进行机电转导。系统被认为是包中的系统(SIP)。完整的集成系统适用于低电压和低功耗条件。完整的自定义电源管理电路用于对存储电容器(超级电容器)充电,通过可在重型机械中使用的非常低的功率无线传感器节点的放电操作的控制循环来为存储电容器(超级电容器)。监测。呈现和讨论了电源管理电路的每个电路块。通过实验测试完全验证模拟研究。电源管理单元的实验消耗为67μW,接近理论预期值60μW。

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