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首页> 外文期刊>International journal of microwave science and technology >Analysis and Compensation of the AM-AM and AM-PM Distortion for CMOS Cascode Class-E Power Amplifier
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Analysis and Compensation of the AM-AM and AM-PM Distortion for CMOS Cascode Class-E Power Amplifier

机译:CMOS级联E类功率放大器的AM-AM和AM-PM失真的分析和补偿

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Analysis and compensation methodology of the AM-AM and AM-PM distortion of cascode class-E power amplifiers are presented. A physical-based model is proposed to illustrate that the nonlinear capacitance and transconductance cause the AM-AM and AM-PM distortion when modulating the supply voltage of the PA. A novel methodology that can reduce the distortion is also proposed. By degenerating common-gate transistor into a resistor, the constant equivalent impedance is obtained so that the AM-AM and AM-PM distortion is compensated. An experimental prototype of 2.6 GHz cascode class-E power amplifier with the AM-AM and AM-PM compensation has been integrated in a 0.18 μm CMOS technology, occupies a total die area of 1.6 mm2. It achieves a drain efficiency of 17.8% and a power-added efficiency of 16.6% while delivering 12 dBm of linear output power and drawing 31 mA from a 1.8 V supply. Finally, a co-simulation result demonstrated that, when the distortion of the PA has been compensated, the EVM is improved from −17 dB to −19 dB with an IEEE802.11a-like signal source.
机译:提出了共源共栅E类功率放大器的AM-AM和AM-PM失真的分析和补偿方法。提出了一种基于物理的模型来说明,当调制PA的电源电压时,非线性电容和跨导会引起AM-AM和AM-PM失真。还提出了一种可以减少失真的新颖方法。通过将共栅晶体管退化为电阻器,可获得恒定的等效阻抗,从而补偿AM-AM和AM-PM失真。具有AM-AM和AM-PM补偿功能的2.6μGHz级联E类功率放大器的实验原型已集成到0.18μmCMOS技术中,总管芯面积为1.6μmm2。它提供17.8%的漏极效率和16.6%的功率附加效率,同时提供12µdBm的线性输出功率,并从1.8µV的电源汲取31µmA的电流。最终,共同仿真结果表明,在补偿了PA的失真之后,利用类IEEE802.11a的信号源,EVM从-17dB改善到-19dB。

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