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Design of High Sensitivity Radiofrequency Energy Harvesters Dedicated to Low-Power Applications

机译:专用于低功耗应用的高灵敏度射频能量收集器的设计

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The Radiofrequency (RF) energy harvesting is a widespread technique to extend the lifetime of devices in low power applications such as Wireless Sensor Networks (WSNs). This paper presents the comparison between a n-stage traditional CMOS voltage multiplier and a n-stage voltage multiplier using bulk biasing to overcome the threshold voltage drop. The two rectifiers operate at 900 MHz ISM band and are prototyped using a standard CMOS 130 nm process. The rectifier circuits were placed into a quad flat no leads (QFN) package and mounted on a standard FR4 board with commercially available devices. The bulk-biased rectifier achieves a significant increase in power efficiency and low voltage-drop. Loaded by a 400 kΩ resistor, typically 3.6 μW/1.2 V, the power efficiency reaches 58%, which is an improvement of about 50% compared with the traditional circuit. Concerning the RF energy harvesters, they are able to deliver an output voltage of 1 V at approximately 900 MHz requiring an available input power of - 25.5 dBm and -23 dBm using the bulk-biased and traditional architectures, respectively. Furthermore, the harvesters operate at 3 meters delivering an output power of 1 μW when a power source radiates 19 and 20.5 dBm EIRP, for bulk-biased and traditional circuit, respectively.
机译:射频(RF)能量收集是一种广泛的技术,可以延长诸如无线传感器网络(WSN)等低功耗应用中设备的寿命。本文介绍了n级传统CMOS电压倍增器与n级电压倍增器之间的比较,后者使用体偏置来克服阈值电压降。这两个整流器工作在900 MHz ISM频段,并使用标准CMOS 130 nm工艺进行原型制作。整流器电路被放置在方形扁平无引线(QFN)封装中,并安装在带有市售器件的标准FR4板上。体偏置整流器可显着提高功率效率和低压降。由400kΩ电阻(通常为3.6μW/ 1.2 V)负载,功率效率达到58%,与传统电路相比,提高了约50%。关于RF能量采集器,它们能够使用体偏置和传统架构分别在大约900 MHz的频率下提供1 V的输出电压,分别需要-25.5 dBm和-23 dBm的可用输入功率。此外,当电源分别辐射19和20.5 dBm EIRP时,收割机工作在3米处,输出功率为1μW,分别适用于体偏置电路和传统电路。

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