A new linearization technique for CMOS low noise amplifiers with balun circuitry

M. Barati, B. Jafari, M. Yavari
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引用次数: 1

Abstract

In this paper, a new linearization technique for differential low noise amplifiers (LNAs) is introduced. It removes the common-mode current at all frequencies. One of its main advantages is that it allows the receiver to have a single-ended input and a differential output LNA which attenuates even-order inter-modulations. Also, this technique improves the LNA linearity in three ways. Firstly, it removes the common-mode current of all inter-modulations. Secondly, it attenuates even-order inter-modulations because of its balun circuitry operation. Finally, it improves the third input intercept point (IIP3) due to the possibility of different bias currents for input transistors. Simulation results using a 0.18μm RF-CMOS technology with HSPICE-RF show that the IIP3 improves about 13 dBm at the expense of increasing the noise figure about 0.7 dB in constant voltage gain and equal DC-power respected to the conventional differential LNA.
基于平衡电路的CMOS低噪声放大器线性化新技术
本文介绍了差分低噪声放大器的一种新的线性化技术。它消除了所有频率的共模电流。其主要优点之一是它允许接收器具有单端输入和差分输出LNA,该LNA衰减偶阶互调。此外,该技术在三个方面提高了LNA的线性度。首先,它消除了所有互调的共模电流。其次,由于其平衡电路工作,它可以衰减偶阶互调。最后,由于输入晶体管可能存在不同的偏置电流,该方法提高了第三输入截距点(IIP3)。基于HSPICE-RF的0.18μm RF-CMOS技术的仿真结果表明,与传统差分LNA相比,IIP3在恒压增益和等直流功率下提高了约13 dBm,但噪声系数提高了约0.7 dB。
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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