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An RF-Powered DLL-Based 2.4-GHz Transmitter for Autonomous Wireless Sensor Nodes

机译:基于 DLL 的射频供电 2.4GHz 发送器,用于自主无线传感器节点

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摘要

This paper presents the system and circuit design of a compact radio frequency (RF)-powered 2.4-GHz CMOS transmitter (TX) to be used for autonomous wireless sensor nodes (WSNs). The proposed TX utilizes the received dedicated RF signal for both energy harvesting as well as frequency synthesis. A TX RF carrier is derived from the received RF signal by means of a delay locked loop and XOR-based frequency multiplier. The 50-Omega load is subsequently driven by a tuned switching RF power amplifier (PA) with 25 duty cycle input for high global efficiency. The design is fabricated in 40-nm CMOS technology and occupies a die area of 0.16 mm(2). Experimental results show a rectifier with 36.83 peak efficiency and power management circuit with 120-nA current consumption that enables a low start-up power of -18.4 dBm. The TX outputs a continuous 2.44-GHz RF signal at -2.57 dBm with 36.5 PA drain efficiency and 23.9 global efficiency from a 915-MHz RF input and supports ON-OFF keying modulation.
机译:本文介绍了用于自主无线传感器节点 (WSN) 的紧凑型射频 (RF) 供电的 2.4 GHz CMOS 发射器 (TX) 的系统和电路设计。所提出的TX利用接收到的专用RF信号进行能量收集和频率合成。TX RF载波通过延迟锁相环和基于XOR的倍频器从接收到的RF信号中得出。50 Omega 负载随后由具有 25% 占空比输入的调谐开关射频功率放大器 (PA) 驱动,以实现高全局效率。该设计采用 40nm CMOS 技术制造,芯片面积为 0.16 mm(2)。实验结果表明,该整流器具有 36.83% 的峰值效率,电源管理电路的电流消耗为 120nA,可实现 -18.4 dBm 的低启动功率。TX 以 -2.57dBm 的频率输出连续的 2.44GHz 射频信号,915MHz 射频输入的漏极效率为 36.5%,全局效率为 23.9%,并支持 ON-OFF 键控调制。

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