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A Common-Gate Amplifier With Transconductance Nonlinearity Cancellation and Its High-Frequency Analysis Using the Volterra Series

机译:具有跨导非线性抵消的共栅放大器及其基于Volterra级数的高频分析

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摘要

A common-gate (CG) amplifier employing a transconductance nonlinearity cancellation technique is designed for transmitter circuitry. The major contributor to the third-order nonlinearity in the CG amplifier is the second derivative of the transconductor (g m ''), which is the same case with a common-source (CS) amplifier. The multiple gated transistor (MGTR) technique, which was developed in the CS amplifier for transconductor nonlinearity cancellation, is applied to a CG amplifier. However, in the CG amplifier, the input driving impedance of a CG amplifier comprises a voltage-current feedback loop. Thus, a second-order interaction with feedback components generates a third-order distortion that limits input-referred third-order intercept point (IIP3) enhancement. This feedback influence on IIP3 can be relaxed by eliminating harmonic feedback components. Based on high-frequency analysis on a CG amplifier using the Volterra series, an RF current source is proposed to replace the conventional current source in the CG amplifier to eliminate harmonic feedback components at 2omega and Deltaomega. By adapting the CG MGTR technique combined with the RF current source, a 2.4-GHz driver amplifier for Wibro/Wimax applications was implemented using a 0.18-mum 1P 6M CMOS process. Measurement results show a 9-dB output third-order intercept point improvement at an output power of -3 dBm.
机译:采用跨导非线性抵消技术的共栅(CG)放大器被设计用于发射器电路。 CG放大器中三阶非线性的主要贡献是跨导的二阶导数(g m''),与共源(CS)放大器的情况相同。在CS放大器中开发的用于消除跨导非线性的多栅极晶体管(MGTR)技术应用于CG放大器。然而,在CG放大器中,CG放大器的输入驱动阻抗包括电压-电流反馈回路。因此,与反馈组件的二阶交互会生成三阶失真,从而限制了以输入为参考的三阶拦截点(IIP3)的增强。通过消除谐波反馈分量,可以减轻对IIP3的这种反馈影响。基于对使用Volterra系列的CG放大器的高频分析,提出了一种射频电流源来代替CG放大器中的常规电流源,以消除2omega和Deltaomega的谐波反馈分量。通过将CG MGTR技术与RF电流源相结合,采用0.18微米1P 6M CMOS工艺实现了用于Wibro / Wimax应用的2.4 GHz驱动放大器。测量结果表明,在-3 dBm的输出功率下,输出三阶交调点提高了9 dB。

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