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Broadband Synthetic Transmission-Line N-Path Filter Design

机译:宽带合成传输线N路径滤波器设计

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摘要

A synthetic transmission-line N-path bandpass filter technique that lowers the in-band insertion loss and increases the out-of-band rejection of the traditional N-path filter is analyzed. The performance limitations of the traditional N-path filter in terms of in-band insertion loss and limited rejection are reviewed. Measurement results from 0.1 to 1.6 GHz of a single-ended, four-stage synthetic transmission-line N-path filter fabricated in a 65-nm CMOS technology that achieves less than 5-dB insertion loss across the tuning range, 30–50-dB out-of-band rejection, in-band third-order distortion input-referred intercept point (IIP3) of 29 dBm, and a 11-dBm input-referred 1-dB compression point out-of-band jammer tolerance are presented.
机译:分析了一种合成传输线N路径带通滤波器技术,该技术可降低传统N路径滤波器的带内插入损耗并增加带外抑制。回顾了传统N路径滤波器在带内插入损耗和受限抑制方面的性能局限性。采用65 nm CMOS技术制造的单端,四级合成传输线N路径滤波器在0.1至1.6 GHz范围内的测量结果,在30–50-dB的调谐范围内插入损耗小于5dB。提出了dB带外抑制,29 dBm带内三阶失真输入参考截点(IIP3)和11 dBm输入参考1-dB压缩点带外干扰容限。

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