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On-Chip Inductor-Less Indoor Light Energy Harvester with Improved Efficiency for WSN/IoT Device Design

机译:用于WSN / IoT设备设计的片上电感少的室内光能收集器,具有更高的效率

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An on-chip inductor-less indoor light energy harvester circuit block for internet-of-things wireless sensor node device design is implemented in 65nm CMOS process technology. The design of the indoor light energy harvester comprises a bootstrapped ring oscillator, a two-phase non-overlapping clock generator, a tapered buffer, a multi-stage differential-drive CMOS rectifier, a charge controlling circuit and a voltage regulator. The system boosts an input of 500 mV from a photovoltaic cell without using a typical boost converter circuit that employs an inductor element. Hence, a simplified on-chip design charges an external 1.3-V rechargeable battery. The use of a multi-stage differential-drive rectifier eliminates the need for expensive on-chip inductors. A charge control circuit is implemented to maintain the battery voltage and avoid overcharging, thus improving battery life. A low-dropout voltage regulator further regulates the battery voltage to produce a stable dc voltage. The chip core design has a total area of 1342μm×1011μm. The output of the harvesting system is a regulated 0.9 V supply with 1.05 mA current at full load.
机译:在65nm CMOS工艺技术中实现了用于物联网无线传感器节点设备设计的片上无电感器室内光能采集器电路块。室内光能收集器的设计包括自举环形振荡器,两相不重叠时钟发生器,锥形缓冲器,多级差分驱动CMOS整流器,电荷控制电路和稳压器。该系统无需使用采用电感器元件的典型升压转换器电路即可将光伏电池的输入升压至500 mV。因此,简化的片上设计可为外部1.3V可充电电池充电。多级差动驱动整流器的使用消除了对昂贵的片上电感器的需求。实施充电控制电路以维持电池电压并避免过度充电,从而提高了电池寿命。低压差稳压器进一步调节电池电压以产生稳定的直流电压。芯片核心设计的总面积为1342μm×1011μm。收获系统的输出是满负载时的0.9 V稳压电源和1.05 mA电流。

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