A 40nm-CMOS, 72 µW injection-locked timing reference and 1.8 Mbit/s coordination receiver for wireless sensor networks

V. D. Smedt, G. Gielen, W. Dehaene
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引用次数: 0

Abstract

A low-power, fully-integrated 40nm-CMOS timing and receiver circuit for wireless sensor networks is presented. The timing circuit locks on a 30 MHz injected signal which is amplitude modulated on a 2.4 GHz wirelessly received carrier. Phase shifts in the injected signal can be detected, which facilitates the possibility to use the circuit as a low-data-rate network coordination receiver. The oscillator circuit is able to lock to a -66 dBm RF signal with a 30 % modulation depth over a +/- 22 % lock range. The receiver data-rate is around 1.8 Mbit/s. The circuit can deliver a stable clock reference over a 0.7 to 1.5 V supply voltage range and a -20 to 100°C temperature range. The total power consumption of the clock reference and the receiver is 72 μW which makes it suitable for ultra-low-power applications such as RF-powered wireless sensor nodes. The injection-locked clock reference as well as the coordination receiver result in a large power savings compared to other, more inaccurate, timing and receiver solutions.
用于无线传感器网络的40nm cmos, 72µW注入锁定时基准和1.8 Mbit/s协调接收器
提出了一种低功耗、全集成的40nm cmos无线传感器网络定时与接收电路。定时电路锁定在2.4 GHz无线接收载波上进行幅度调制的30 MHz注入信号。注入信号中的相移可以被检测到,这使得将电路用作低数据速率网络协调接收器成为可能。振荡器电路能够锁定到-66 dBm的射频信号,在+/- 22%的锁定范围内具有30%的调制深度。接收端数据速率约为1.8 Mbit/s。该电路可以在0.7至1.5 V的电源电压范围和-20至100°C的温度范围内提供稳定的时钟参考。时钟基准和接收器的总功耗为72 μW,适用于rf供电无线传感器节点等超低功耗应用。与其他更不准确的定时和接收器解决方案相比,注入锁定时钟参考和协调接收器可以节省大量电力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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