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Solar energy harvesting system with integrated battery management and startup using single inductor and 3.2nW quiescent power

机译:具有集成电池管理和启动功能的太阳能收集系统,使用单个电感器和3.2nW静态功率启动

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This paper presents a 3.2nW quiescent power solar energy harvesting system. The control circuit is designed in an asynchronous fashion that scales the effective switching frequency of the converter with the level of the power transferred. The on-time of the converter switches adapts dynamically to the input and output voltages for peak-current control and zero-current switching. The chip integrates self-startup, battery management, supplies 1V regulated rail with single inductor and supports power range of 10nW to 1μW. For input power of 500nW, the proposed system achieves an efficiency of 82%, including the control circuit overhead, while charging a battery at 3V from 0.5V input. In buck mode, it achieves a peak efficiency of 87% and maintains efficiency greater than 80% for output power of 50nW-1μW with input voltage of 3V and output voltage of 1V.
机译:本文提出了一种3.2nW静态功率太阳能收集系统。控制电路以异步方式设计,可根据所传输功率的大小来缩放转换器的有效开关频率。转换器开关的导通时间可动态适应输入和输出电压,以实现峰值电流控制和零电流开关。该芯片集成了自启动,电池管理功能,可通过单个电感器提供1V稳压轨,并支持10nW至1μW的功率范围。对于500nW的输入功率,所提出的系统实现了82%的效率(包括控制电路开销),同时以0.5V的输入为3V的电池充电。在降压模式下,对于50nW-1μW的输出功率,3V的输入电压和1V的输出电压,它的峰值效率达到87%,并保持高于80%的效率。

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