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Analysis and Design of I/Q Charge-Sharing Band-Pass-Filter for Superheterodyne Receivers

机译:超外差接收机的I / Q电荷共享带通滤波器的分析和设计

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摘要

A complex quadrature charge-sharing (CS) technique is proposed to implement a discrete-time band-pass filter (BPF) with a programmable bandwidth of 20-100 MHz. The BPF is part of a cellular superheterodyne receiver and completely determines the receiver frequency selectivity. It operates at the full sampling rate of up to 5.2 GHz corresponding to the 1.2 GHz RF input frequency, thus making it free from any aliasing or replicas in its transfer function. Furthermore, the advantage of CS-BPF over other band-pass filters such as N-path, active-RC, Gm-C, and biquad is described. A mathematical noise analysis of the CS-BPF and the comparison of simulations and calculations are presented. The entire 65 nm CMOS receiver, which does not include a front-end LNTA for test reasons, achieves a total gain of 35 dB, IRN of 1.5 nV/√(Hz), out-of-band IIP3 of +10 dBm. It consumes 24 mA at 1.2 V power supply.
机译:提出了一种复杂的正交电荷共享(CS)技术,以实现具有20-100 MHz可编程带宽的离散时间带通滤波器(BPF)。 BPF是蜂窝超外差接收机的一部分,它完全决定了接收机的频率选择性。它以高达5.2 GHz的完整采样率工作,对应于1.2 GHz RF输入频率,因此在传输函数中没有任何混叠或重复现象。此外,描述了CS-BPF相对于其他带通滤波器(例如N路径,active-RC,Gm-C和biquad)的优势。给出了CS-BPF的数学噪声分析以及仿真和计算的比较。整个65 nm CMOS接收器由于测试原因不包括前端LNTA,可实现35 dB的总增益,1.5 nV /√(Hz)的IRN,+ 10 dBm的带外IIP3。在1.2 V电源下消耗24 mA电流。

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