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Antiphase Method of the CMOS Power Amplifier Using PMOS Driver Stage to Enhance Linearity

机译:CMOS功率放大器使用PMOS驱动器级增强线性度的反相方法

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摘要

We present the possibility of a complementary metal-oxide semiconductor (CMOS) power amplifier (PA) using a driver stage composed of p-channel metal oxide semiconductor (PMOS) to enhance linearity. The PMOS driver stage is designed as a cascode structure to adapt the antiphase technique to the CMOS PA. By biasing the common-source transistor of the driver stage at the subthreshold region, we obtain a g(m3) value with a positive sign to cancel out the negative g(m3) of the power stage, thereby enhancing the linearity. We also investigate the effect of the bias of the cascode transistor of the driver stage on third-order intermodulation distortion and amplitude-to-phase distortion. Consequently, we show that the PMOS driver stage itself acts as a pre-distorter of the power stage. To verify the possibility of the PMOS driver stage and the proposed biasing method for the antiphase technique, we design a 2.42 GHz PA using a 180 nm RFCMOS process for wireless local area network applications. We obtain a measured maximum linear output power of 21.5 dBm with a 23.4% power-added efficiency and an error vector magnitude of 3.14%. We use an 802.11 n modulated signal with 64-quadrature amplitude modulation (QAM) (MCS7) at 65 Mb/s.
机译:我们使用由P沟道金属氧化物半导体(PMOS)组成的驱动器级来呈现互补金属氧化物半导体(CMOS)功率放大器(PA)以增强线性度。 PMOS驱动程序级被设计为共级结构,以使防序技术适应CMOS PA。通过偏置亚阈值区域的驱动器级的公共源晶体管,我们通过正符号获得G(m3)值以消除功率级的负g(m3),从而增强线性度。我们还研究了驾驶员阶段的偏差对三阶互调失真和幅度与相失真的影响。因此,我们表明PMOS驱动程序阶段本身充当功率级的预失真。为了验证PMOS驱动程序阶段的可能性和用于反相技术的提出的偏置方法,我们使用180nm RFCMOS工艺设计2.42GHz PA,用于无线局域网应用。我们获得21.5 dBm的测量最大线性输出功率,功率增加23.4%,误差矢量幅度为3.14%。我们使用802.11 n调制信号,64-正交幅度调制(QAM)(MCS7),在65 MB / s。

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