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Analysis and Design of N-Path Filter Offset Tuning in a 0.7–2.7-GHz Receiver Front-End

机译:0.7-2.7 GHz接收机前端中的N路径滤波器失调调谐的分析和设计

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摘要

N-path techniques have become a popular candidate alternative to external pre-selection filtering in wireless receivers. Their main attraction lies in enabling tunable on-chip high- filters, with straightforward migration from one CMOS node to another. However, parasitic capacitance at the N-path filter input offsets the bandpass response from the desired center frequency in wideband circuits. In this paper, we focus on an LNA-first receiver and show that the offset at the LNA output varies in magnitude depending on LNA and filter load impedance properties. An offset-tuning approach is then evaluated for its effects on receiver gain and noise and to obtain design guidelines. We propose a digitally controllable implementation that preserves front-end gain and linearity, with a small penalty on receiver NF. A programmable 0.7–2.7-GHz front-end in 40-nm CMOS verifies the functionality. At 1.7 GHz, the front-end has a gain of 37 dB, a NF of 5.2 dB, and an out-of-band IIP3 of 1 dBm.
机译:N路径技术已成为无线接收器中外部预选过滤的流行替代方法。它们的主要吸引力在于启用可调谐的片上高滤波器,并且可以直接从一个CMOS节点迁移到另一个。但是,在宽带电路中,N路径滤波器输入端的寄生电容会使带通响应偏离所需的中心频率。在本文中,我们关注于LNA优先接收器,并显示LNA输出处的失调幅度取决于LNA和滤波器负载阻抗特性。然后评估偏移调谐方法对接收机增益和噪声的影响,并获得设计指南。我们提出了一种数字可控制的实现方案,该方案可保留前端增益和线性度,并且对接收器NF的影响很小。 40 nm CMOS中的可编程0.7–2.7 GHz前端可以验证功能。在1.7 GHz频率下,前端的增益为37 dB,NF为5.2 dB,带外IIP3为1 dBm。

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