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Fully Integrated Low-Power Energy Harvesting System With Simplified Ripple Correlation Control for System-on-a-Chip Applications

机译:全集成的低功耗能量收集系统,具有简化的桥接相关控制,用于系统芯片应用

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摘要

This paper presents a fully integrated energy harvesting (EH) system that even includes an input capacitor and a simplified ripple correlation control (RCC) maximum power point tracking (MPPT) method for low-power system-on-a-chip applications. The proposed system implements the RCC block with a charge pump (CP) that can be integrated into the chip, instead of the inductive switching converter that is commonly used for conventional RCC methods. The CP changes the input impedance by changing the size of the flying capacitor to ensure system reliability. The simplified RCC method is implemented using a low-power analog divider operated in a subthreshold region. A test chip fabricated in a 180 nm CMOS process achieves over 95% MPPT accuracy with a very small input capacitor of 5 nF and a low quiescent current of 2.6 mu A. The chip size of the entire system is 8 mm(2), and the harvested power range is from 6 mu W to 1.4 mW.
机译:本文介绍了一个完全集成的能量收集(EH)系统,甚至包括输入电容器和用于低功耗系统的应用程序的简化电容和简化的纹波相关控制(RCC)最大功率点跟踪(MPPT)方法。所提出的系统利用电荷泵(CP)实现了可以集成到芯片中的RCC块,而不是通常用于传统RCC方法的电感开关转换器。 CP通过改变飞行电容器的尺寸来改变输入阻抗,以确保系统可靠性。使用在亚阈值区域中操作的低功率模拟分频器来实现简化的RCC方法。在180nm CMOS过程中制造的测试芯片达到超过95%的MPPT精度,使用5 NF的非常小的输入电容和2.6μm的低静态电流。整个系统的芯片尺寸为8 mm(2),收获的功率范围为6μW至1.4兆瓦。

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