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On-Chip Solar Energy Harvester and PMU With Cold Start-Up and Regulated Output Voltage for Biomedical Applications

机译:片上太阳能收割机和PMU,具有冷启动和生物医学应用的调节输出电压

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This paper presents experimental results from a system that comprises a fully autonomous energy harvester with a solar cell of 1 mm(2) as energy transducer and a Power Management Unit (PMU) on the same silicon substrate, and an output voltage regulator. Both chips are implemented in standard 0.18 mu m CMOS technology with total layout areas of 1.575 mm(2) and 0.0126 mm(2), respectively. The system also contains an off-the-shelf 3.2 mm x 2.5 mm 0.9 mm supercapacitor working as an off-chip battery or energy reservoir between the PMU and the voltage regulator. Experimental results show that the fast energy recovery of the on-chip solar cell and PMU permits the system to replenish the supercapacitor with enough charge as to sustain Bluetooth Low Energy (BLE) communications even with input light powers of 510 nW. The whole system is able to self-start-up without external mechanisms at 340 nW. This work is the first step towards a self-supplied sensor node with processing and communication capabilities. The small form factor and ultra-low power consumption of the system components is in compliance with biomedical applications requirements.
机译:本文介绍了一种系统的实验结果,该系统包括具有1mm(2)的太阳能电池作为能量换能器的太阳能电池和在同一硅衬底上的电源管理单元(PMU)和输出电压调节器。这两种芯片都以标准的0.18μmCMOS技术实施,分别具有1.575mm(2)和0.0126mm(2)的总布局区域。该系统还包含一个搁板的3.2 mm x 2.5 mm 0.9 mm超级电容器,作为PMU和电压调节器之间的片外电池或能量储存器。实验结果表明,片上太阳能电池和PMU的快速恢复允许系统补充超级电容器,以满足足够的电荷,以便即使输入光功率为510 NW的输入光功率,也可以为蓝牙低能量(BLE)通信提供足够的电荷。整个系统能够在340 NW的外部机制中自启动。这项工作是具有处理和通信功能的自提供传感器节点的第一步。系统组件的小型和超低功耗符合生物医学应用要求。

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