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Design of a low-power ZigBee receiver front-end for wireless sensors

机译:用于无线传感器的低功耗ZigBee接收器前端的设计

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摘要

This paper describes the design of a low cost, low-power ZigBee receiver for wireless sensor networks. The receiver consists of a low-noise amplifier, a pair of down-conversion mixers, and a pair of variable-gain low-pass filters. The LNA has a single-ended input, eliminating the need for an off-chip balun, a differential output, allowing it to drive a double-balanced mixer, and it uses noise cancellation to improve its noise performance. The mixers are double-balanced passive mixers to improve the receiver linearity and decrease its power consumption and flicker noise. Finally, the filter is a third-order Butterworth G_m-C filter with a variable input transconductor to provide gain programmability for the receiver. The design is made using 130nm CMOS technology with 1.2 V supply. Simulation results show that the receiver can achieve a sensitivity level of -97 dBm while consuming only 6 mA.
机译:本文介绍了一种用于无线传感器网络的低成本,低功耗ZigBee接收器的设计。接收器由一个低噪声放大器,一对下变频混频器和一对可变增益低通滤波器组成。 LNA具有单端输入,无需片外平衡-不平衡变换器,差分输出,从而可以驱动双平衡混频器,并使用噪声消除来改善其噪声性能。混频器是双平衡无源混频器,可改善接收器的线性度并降低功耗和闪烁噪声。最后,该滤波器是具有可变输入跨导的三阶巴特沃斯G_m-C滤波器,可为接收器提供增益可编程性。该设计使用具有1.2 V电源的130nm CMOS技术进行。仿真结果表明,该接收器仅消耗6 mA的电流即可达到-97 dBm的灵敏度。

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