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Tunable Selective Receiver Front-End with Impedance Transformation Filtering

机译:具有阻抗转换滤波功能的可调式选择性接收器前端

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摘要

A highly selective impedance transformation filtering technique suitable for tunable selective RF receivers is proposed in this paper. To achieve blocker rejection comparable to SAW filters, we use a two stage architecture based on a low noise trans-conductance amplifier (LNTA). The filter rejection is captured by a linear periodically varying (LPV) model that includes band limitation by the LNTA output impedance and the related parasitic capacitances of the impedance transformation circuit. This model is also used to estimate “back folding” by interferers placed at harmonic frequencies. Discussed is also the effect of thermal noise folding and phase noise on the circuit noise figure. As a proof of concept a chip design of a tunable RF front-end using 65 nm CMOS technology is presented. In measurements the circuit achieves blocker rejection competitive to SAW filters with noise figure 3.2-5.2 dB,out of bandIIP3 > +17 dBm and blocker P1dB > +5 dBm over frequency range of 0.5—3 GHz.
机译:本文提出了一种适用于可调选择性射频接收器的高选择性阻抗变换滤波技术。为了达到与SAW滤波器相当的阻塞抑制,我们使用了基于低噪声跨导放大器(LNTA)的两级架构。滤波器抑制是由线性周期性变化(LPV)模型捕获的,该模型包括LNTA输出阻抗和阻抗转换电路的相关寄生电容引起的频带限制。该模型还用于估计谐波频率下的干扰源的“向后折叠”。还讨论了热噪声折叠和相位噪声对电路噪声系数的影响。作为概念验证,提出了使用65 nm CMOS技术的可调谐RF前端的芯片设计。在测量中,该电路在0.5-3 GHz的频率范围内具有比噪声系数3.2-5.2 dB,带外IIP3> +17 dBm和阻滞器P1dB> +5 dBm更高的SAW滤波器,在竞争中达到了阻断器抑制。

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