A 6.3–6.8GHz LNA with noise cancelling and adjacent channel rejection for wideband mobile communication

Hao Li, F. Huang, Youming Zhang, Xiaoyu Wang
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Abstract

This paper discusses a 6.3-6.8GHz single-ended-to-differential LNA with noise-cancelling and adjacent channel rejection for wideband mobile communication. Different from traditional noise-cancelling LNA, this circuit includes local feedback, current reuse and considering bond-wire effect. Besides, this design utilizes a couple of differential-to-single buffers to reduce the mismatch of the differential signal output from single-ended-to-differential LNA. Bond-wire inductance and ESD is inevitable for the chip, but they usually bring about some negative effects. However bond-wire inductance can also be used for impedance matching and acting as current-source. To boost the LNA performance, the layout should be optimized to minimize the device and interconnection parasitic effects. Fabricated in a TSMC 0.13μm RF CMOS process, the LNA achieves a gain of 25dB and a NF of 2.0 dB over the band. It consumes 7.8mA from 1.2V supply and occupies an area of 0.5mm2.
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用于宽带移动通信的具有噪声消除和相邻信道抑制功能的6.3-6.8GHz LNA
本文讨论了一种用于宽带移动通信的具有噪声消除和相邻信道抑制功能的6.3-6.8GHz单端差分LNA。与传统的降噪LNA不同,该电路包含了局部反馈、电流复用和考虑了键线效应。此外,本设计利用一对差分到单缓冲区来减少单端到差分LNA输出的差分信号的不匹配。键线电感和ESD对芯片来说是不可避免的,但它们通常会带来一些负面影响。然而,键线电感也可以用于阻抗匹配和作为电流源。为了提高LNA的性能,应该优化布局以最小化器件和互连的寄生效应。LNA采用台积电0.13μm射频CMOS工艺制造,增益为25dB, NF为2.0 dB。1.2V电源消耗7.8mA,占地面积0.5mm2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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