一种用于宽带高PAPR应用的高性能CMOS混合包络跟踪功率放大器

Mehrdad Karimi, M. Ehsanian
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引用次数: 1

摘要

为了提高高PAPR信号驱动的射频功率放大器的平均效率和线性度,设计了一种高性能CMOS混合包络跟踪电路。采用180nm CMOS技术,在3.3V电压下,设计并仿真了0.9 GHz频率下的AB类放大器和可变包络信号动态电源。动态电源是一种混合并联结构,其中开关D类放大器提供大部分所需电流,线性运算跨导放大器满足高带宽要求,并消除开关放大器的输出纹波。该包络调制器在输出功率为24 dBm、PAPR为6 dB的20 MHz LTE信号下的效率为68%。与固定电源类AB放大器相比,所提出的ET放大器在6dB回调功率下处理20mhz LTE信号的平均效率从19%提高到37%。通过防止电源电压降到1V以下,ETPA的EVM从12%降低到7%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A High-Performance CMOS Hybrid Envelope Tracking Power Amplifier for Wideband High PAPR Applications
A high-performance CMOS hybrid Envelope Tracking circuit is designed to improve the average efficiency and linearity of an RF power amplifier driven by high PAPR signals. A class AB PA at 0.9 GHz and a dynamic power supply for variable envelope signals are designed and simulated with 180nm CMOS technology with 3.3V supply voltage. The dynamic power supply is a hybrid parallel structure that a switching class D amplifier supplies most of the required current and a linear operational Transconductance amplifier covers high bandwidth requirements and also eliminates output ripples of the switching amplifier. The Efficiency of the envelope modulator for 20 MHz LTE signal with 6 dB PAPR at 24 dBm output power is 68%. The average efficiency of proposed ET PA compared with fixed supply class AB PA for 20 MHz LTE signal at 6dB back-off power is increased from 19% to 37%. By prevention of falling the supply voltage below 1V, the EVM of ETPA is decreased from 12% to 7%.
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