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A Continually-Stepped Variable-Gain LNA in 65-nm CMOS Enabled by a Tunable-Transformer for mm-Wave 5G Communications

机译:由毫米波5G通信的可调变压器实现的65nm CMOS连续步进可变增益LNA

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This paper presents a new continually-stepped variable gain low-noise-amplifier (CSVG-LNA) for millimeter-wave (mm-wave) 5G communications. The proposed variable-gain functionality in a two-stage LNA is achieved by incorporating a tunable-transformer at the 2nd-stage. The tunability in coupling-coefficient of the transformer allows to change the output matching of the LNA in a continuous fashion thus enabling a design of CSVG-LNA. The proposed CSVG-LNA alleviates high power consumption and large noise-figure (NF) variation problems in traditional approaches. To validate the proposed idea, we fabricated a CSVG-LNA in 65-nm CMOS process. The CSVG-LNA achieves measured 6.2dB of gain-tunability range while producing 18.2dB of peak S21 and <;4.1dB of NF 28GHz. Further, the NF variation is only ~0.2dB across the entire 6.2dB gain-tuning range. The 3dB bandwidth of CSVG-LNA is about 12GHz (22-34GHz) while it consumes only 9.8mW of dc power. The CSVG-LNA occupies a compact core area of 0.2mm2. The proposed CSVG-LNA achieves 1.5X improvement in FoM in comparison to state-of-the-arts mm-wave variable-gain CMOS LNAs.
机译:本文提出了一种用于毫米波(mm-wave)5G通信的新型连续步进可变增益低噪声放大器(CSVG-LNA)。两级LNA中建议的可变增益功能是通过在第二级加入可调变压器来实现的。变压器耦合系数的可调性允许以连续的方式改变LNA的输出匹配,从而实现CSVG-LNA的设计。拟议的CSVG-LNA缓解了传统方法中的高功耗和较大的噪声系数(NF)变化问题。为了验证所提出的想法,我们在65纳米CMOS工艺中制造了CSVG-LNA。 CSVG-LNA实现了测得的6.2dB的增益可调范围,同时产生了18.2dB的峰值S21和<4.1dB的NF 28GHz。此外,在整个6.2dB增益调谐范围内,NF变化仅为〜0.2dB。 CSVG-LNA的3dB带宽约为12GHz(22-34GHz),而仅消耗9.8mW的直流功率。 CSVG-LNA占用0.2mm2的紧凑型核心区域。与最新的毫米波可变增益CMOS LNA相比,拟议的CSVG-LNA在FoM方面实现了1.5倍的改进。

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