一种17ghz变压器中和电流复用LNA及其在低功率射频前端的应用

S. Kundu, J. Paramesh
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引用次数: 10

摘要

17ghz电流复用低噪声放大器(LNA)采用0.13µm CMOS设计,适用于无线传感器网络等低功耗应用。LNA还采用基于变压器的反馈来中和MOSFET的栅极漏极电容。LNA在50 Ω负载下实现15.4 dB增益,带宽为1.9 GHz。它具有4.5dB NF和- 12 dBm IIP3,功耗为7.8 mW。使用类似的两级LNA和混频器的17 GHz接收器前端也被演示,在70 MHz中频,7 dB NF, - 18 dBm IIP3下实现25 dB的电压转换增益,并从1.2 V电源消耗8 mW。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 17 GHz transformer-neutralized current re-use LNA and its application to a low-power RF front-end
A 17 GHz current re-use low noise amplifier (LNA) is designed in 0.13 µm CMOS for low power applications such as wireless sensor networks. The LNA also employs transformer based feedback to neutralize the gate-drain capacitance of a MOSFET. The LNA achieves 15.4 dB gain into a 50 Ω load along with 1.9 GHz bandwidth. It features 4.5dB NF and −12 dBm IIP3 while consuming 7.8 mW of power. A 17 GHz receiver frontend using a similar two-stage LNA and a mixer is also demonstrated which achieves 25 dB of voltage conversion gain at 70 MHz IF, 7 dB NF, −18 dBm IIP3 and consumes 8 mW from a 1.2 V supply.
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