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An integrated thermal and RF energy harvesting system with rectifying combination and storage controller for IoT devices

机译:集成式热能和射频能量收集系统,具有整流组合和存储控制器,适用于物联网设备

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This work presents an integrated thermal/RF energy harvester. The harvesting system can combine energy from two sources simultaneously (one DC and one AC) and deliver a regulated combined voltage of 1.75 V to a load and a storage controller. The output power of the harvester is in the range of hundreds of μWatts which is suitable for low-power wireless sensor networks. Maximum power point tracking (MPPT) is achieved by reconfiguring the number of stages of the DC path, the frequency driving the charge pump, and the capacitors of the matching network in the RF-path. The storage controller charges a supercapacitor to 3.5 V to power up the system during power shortage periods. The system is implemented in a 180 nm CMOS technology and utilizes a total on-chip capacitance of 2.4 nF. The peak end-to-end efficiency of the system reaches 60.3 at output load power of 1.275 mW.
机译:这项工作提出了一个集成的热/射频能量收集器。收集系统可以同时组合来自两个来源(一个直流和一个交流)的能量,并向负载和存储控制器提供 1.75 V 的稳压组合电压。收割机的输出功率在数百μWatts范围内,适用于低功耗无线传感器网络。最大功率点跟踪 (MPPT) 是通过重新配置直流路径的级数、电荷泵的驱动频率以及 RF 路径中匹配网络的电容器来实现的。存储控制器将超级电容器充电至 3.5 V,以在电力短缺期间为系统供电。该系统采用180 nm CMOS技术,总片上电容为2.4 nF。在输出负载功率为1.275 mW时,系统的峰值端到端效率达到60.3%。

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