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A 24-GHz CMOS Power Amplifier With Dynamic Feedback and Adaptive Bias Controls

机译:具有动态反馈和自适应偏置控制的24-GHz CMOS功率放大器

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A 24-GHz power amplifier (PA) for 5G communication is implemented with a 65-nm bulk CMOS process, which adopts analog linearization techniques of dynamic feedback control (DFC) and an adaptive bias control (ADB). The DFC decreases feedbacks and the ADB increases a gate bias of common sources (CSs) with an increase of the input signal power so that the DFC improves gain flatness and peak efficiency, and the ADB increases high power gain, saturation power, and peak efficiency. These analog linearization techniques lower the IMD3 by improving the AM-AM and AM-phase modulation (PM) of the PA. The proposed PA shows a saturation power of 18.7 dBm, a 1-stage PA gain of 15.3 dB, and a peak PAE of 37.2% with the 24.29-GHz continuous wave signal measurement. It also shows a linear power of 12.9 dBm and a linear PAE of 14.8% with a two-tone signal measurement that has a center frequency of 24.49 GHz and a bandwidth of 80 MHz.
机译:用于5G通信的24-GHz功率放大器(PA)采用65纳米批量CMOS工艺实现,采用动态反馈控制(DFC)的模拟线性化技术和自适应偏置控制(ADB)。 DFC降低反馈,ADB随着输入信号功率的增加而增加公共源(CSS)的栅极偏压,使得DFC提高了增益平坦度和峰值效率,并且ADB增加了高功率增益,饱和功率和峰值效率。这些模拟线性化技术通过改善PA的AM-AM和AM相调制(PM)来降低IMD3。所提出的PA显示饱和功率为18.7dBm,1级PA增益为15.3dB,峰值PAE为37.2%,24.29GHz连续波信号测量。它还显示了12.9dBm的线性功率和线性PAE为14.8%,双音信号测量为24.49GHz的中心频率和80 MHz的带宽。

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