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A HIGHLY EFFICIENT AND ADAPTIVE SOLAR-ENERGY HARVESTING CIRCUIT FOR BATTERYLESS IOT DEVICES

机译:高效的电池式物联网太阳能收集系统

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摘要

In this paper a new on-chip 2nd generation solar energy harvesting DC-DC converter has been proposed for a battery-less Internet of Things (IoTs) Devices. The propose circuit is design to maximize the transfer efficiency and stability as well as enough high power supply to the back-end loads. Altogether the proposed circuit consists of a cross-coupled charge pump, a maximum power point tracking (MPPT) circuit, a timing control circuit and regulator. The range of input voltage is from 0.5V to 3 V. Required boosted output voltage is in the range of 1V to 3.3V. The maximum transfer efficiency is more than 60% and the maximum throughout power is 200μW. A gated clock frequency modulation circuit has been designed and employed in the maximum power point tracking (MPPT) unit to lock the input resistance of the charge pump. In addition, to provide a stable voltage to the load a low dropout (LDO) regulator circuit is used. The experimental results show that the maximum power conversion efficiency (PCE) is 78% at 52μW input power condition.
机译:本文提出了一种新型的第二代片上太阳能采集DC-DC转换器,用于无电池的物联网(IoTs)设备。所建议的电路旨在最大程度地提高传输效率和稳定性,并为后端负载提供足够的高电源。拟议的电路总共由交叉耦合电荷泵,最大功率点跟踪(MPPT)电路,时序控制电路和调节器组成。输入电压范围为0.5V至3V。所需的升压输出电压范围为1V至3.3V。最大传输效率超过60%,最大整个功率为200μW。已设计出门控时钟频率调制电路,并将其用于最大功率点跟踪(MPPT)单元,以锁定电荷泵的输入电阻。另外,为了向负载提供稳定的电压,使用了低压差(LDO)调节器电路。实验结果表明,在52μW输入功率条件下,最大功率转换效率(PCE)为78%。

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