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An ultra-low-power 2.4 GHz receiver RF front-end employing a RF quadrature Gm-stage for Bluetooth low energy applications

机译:采用RF正交G m 级的超低功耗2.4 GHz接收机RF前端,用于蓝牙低功耗应用

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In this paper, an ultra-low-power 2.4 GHz receiver RF front-end adopting a RF quadrature Gm-stage for Bluetooth low energy applications is proposed. The proposed quadrature Gm-stage in a mixer performs a single-to-differential conversion and minimizes power consumption of the LO path because the block generating quadrature signals such as a divider-by-2, a poly-phase filter and a quadrature voltage controlled oscillator are not required. The proposed quadrature Gm-stage adopting the gain and phase mismatch compensator generates adequate quadrature signals at 2.4 GHz. The prototype, realized in 65 nm CMOS process, achieves a conversion gain of 36 dB, a NF of 2.1 dB, and an IIP3 of -26 dBm while consuming 0.9 mA at supply voltage of 1 V.
机译:本文针对蓝牙低功耗应用,提出了采用射频正交G m 级的超低功耗2.4 GHz接收机RF前端。混频器中拟议的正交G m 级执行单至差分转换,并最大限度地降低了LO路径的功耗,因为生成正交信号的模块(例如2分频器,多路复用器)不需要相位滤波器和正交压控振荡器。拟议的采用增益和相位失配补偿器的正交G m 级在2.4 GHz频率下产生足够的正交信号。该原型以65 nm CMOS工艺实现,实现了36 dB的转换增益,2.1 dB的NF和-26 dBm的IIP3,同时在1 V的电源电压下消耗0.9 mA的电流。

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