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Second harmonic rejection based on feedback technique in CMOS mixer for multi-band DCR application

机译:基于反馈技术的CMOS混频器在二次谐波抑制中的应用

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摘要

This paper presents a broadband linearization technique for CMOS Gilbert-based mixer in zero IF receivers. In the proposed mixer the second order distortion is reduced by using feedback technique in the RF transconductance stage. Creating a negative feedback loop is better suited for achieving broadband IIP2 improvement compared to other technique. Moreover, the added circuit increases the conversion gain of the mixer. Simulation results, using 0.13 mu m CMOS TSMC model, show that the proposed technique improves IIP2 of more than 20 dB in the 900 MHz-6 GHz RF input frequency rang for 100 MHz output bandwidth in comparison with the conventional mixer. So this technique is suitable for multi-band DCR application. The total power consumption is 3.3 mW and the excess power consumption due to additional circuits used to implement cancellation mechanism is less than 1 mW.
机译:本文提出了一种用于零中频接收机中基于CMOS Gilbert的混频器的宽带线性化技术。在所提出的混频器中,通过在射频跨导阶段使用反馈技术来减少二阶失真。与其他技术相比,创建负反馈环路更适合实现宽带IIP2的改进。此外,增加的电路增加了混频器的转换增益。使用0.13μmCMOS TSMC模型的仿真结果表明,与传统混频器相比,在100 MHz输出带宽的900 MHz-6 GHz RF输入频率范围内,所提出的技术将IIP2提高了20 dB以上。因此,该技术适用于多频带DCR应用。总功耗为3.3 mW,由于用于实现抵消机制的附加电路而导致的多余功耗小于1 mW。

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