CMOS RF mixer no-linearity design

Qiang Li, Jinlong Zhang, Wei Li, J. Yuan
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引用次数: 27

Abstract

Design equations for the 1 dB compression point and 3rd-order intermodulation point as a function of circuit and technology parameters are derived using a Volterra series expansion. Linearity analysis for both single and double-balanced CMOS Gilbert mixers is examined. The transconductance stage using inductive degeneration is more linear than that using capacitive or resistive degeneration, and the single-balanced mixer is more linear than the double-balanced one at the same bias current and transconductance. The analytical predictions are verified with the Cadence SpectreRF circuit simulation and experimental data. Good agreement between the model predictions and experimental data is obtained.
CMOS射频混频器非线性设计
利用Volterra级数展开,推导了1db压缩点和三阶互调点作为电路和技术参数函数的设计方程。对单平衡和双平衡CMOS吉尔伯特混频器进行了线性分析。在相同的偏置电流和跨导下,单平衡混频器比双平衡混频器更线性。用Cadence SpectreRF电路仿真和实验数据验证了分析预测的正确性。模型预测结果与实验数据吻合较好。
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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