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A Wideband High Linearity and Low-Noise CMOS Active Mixer Using the Derivative Superposition and Noise Cancellation Techniques

机译:利用导数叠加和噪声消除技术的宽带高线性度低噪声CMOS有源混频器

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Using the derivative superposition and noise cancellation techniques, a high linearity, enhanced conversion gain, and low noise figure (NF) CMOS active mixer is presented for wideband applications. The third-order input intercept point (IIP3) of the proposed mixer is improved by cancelling the intrinsic second-order derivative transconductance (gof the main transistor. This is achieved by using an auxiliary transistor which is biased in the weak inversion region to create g with the same amplitude and opposite sign relative to the main transistor. A linear path consisting of two parallel transistors is utilized to cancel the thermal noise of the input transistors. A constant transconductance (G(m)) bias circuit is employed to achieve robust performance against process, voltage and temperature variations. Detailed analysis of the proposed mixer is presented, and extensive simulation results are provided to evaluate the efficiency of the utilized techniques. The simulated mixer operates from 500MHz to 3.1GHz RF input frequency. Post-layout circuit-level simulation results using a 90-nm RF CMOS process with Spectre-RF reveal that the IIP3 and conversion gain of the proposed mixer are improved about 6.1dB and 6.2dB, respectively, compared to the conventional CMOS active mixer. Also, the NF of the proposed mixer is decreased about 2dB. The simulated S-11 is less than -12dB in whole RF range. It consumes 13.9mW from a single 1.1V power supply which is approximately 60% more than that of the conventional active mixer.
机译:利用导数叠加和噪声消除技术,提出了一种适用于宽带应用的高线性度,增强的转换增益和低噪声系数(NF)CMOS有源混频器。通过消除固有的二阶导数跨导(主晶体管的g

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