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A CMOS power amplifier with reconfigurable power cells and matching network for 2.4 GHz wireless communications

机译:具有可重新配置功率电池的CMOS功率放大器和2.4 GHz无线通信的匹配网络

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This paper presents a twelve-mode 130 nm CMOS power amplifier with reconfigurable output matching network (OMN) and supply voltage selection. To select operation modes, nine inputs enable or disable individually a set of power cells in the power stage and capacitors in the OMN. The gain stage is a cascode structure while the power stage is composed of three differently sized parallel cascode power cells with a voltage supply ranging from 1.1 V to 1.8 V. The OMN is composed of two reconfigurable capacitor banks and a fixed inductor. Each bank is composed of three capacitance cells. When a different combination of power cells is enabled, the OMN is altered to match impedances and so improve efficiency. The low-power mode achieves an output 1 dB compression point (OCP1dB) of 10.1 dBm, a DC power (PDC) consumption of 94.7 mW, and 10.6% power added efficiency (PAE) at OCP1dB. The high-power mode achieves an OCP1dB of 18.22 dBm, 341.4 mW PDC and 19.4% PAE at OCP1dB. Employing IEEE 802.11n, IEEE 802.11ax and LTE signals for each mode, digital channel simulations were performed to determine the maximum output power in compliance with the respective Error Vector Magnitude and Adjacent Channel Power Ratio. (C) 2019 Elsevier GmbH. All rights reserved.
机译:本文介绍了12个模式130nm CMOS功率放大器,具有可重新配置的输出匹配网络(OMN)和电源电压选择。要选择操作模式,九个输入可以在OMN中的功率级和电容器中单独启用或禁用一组电力电池。增益阶段是共源共栅结构,而功率级由三个不同大小的并联级联电池组成,其电压供应范围为1.1V至1.8V。OMN由两个可重新配置的电容器组和固定电感器组成。每个存储体由三个电容单元组成。当启用不同的电池电池组合时,OMN被改变以匹配阻抗,因此提高效率。低功耗模式实现了10.1dBm的输出1 DB压缩点(OCP1DB),DC功率(PDC)消耗为94.7 MW,OCP1DB的10.6%的功率添加效率(PAE)。高功率模式在OCP1DB上达到18.22 dBm,341.4mW PDC和19.4%PAE的OCP1DB。采用IEEE 802.11n,IEEE 802.11n和用于每种模式的LTE信号,执行数字信道模拟以确定符合各个误差矢量幅度和相邻信道功率比的最大输出功率。 (c)2019年Elsevier GmbH。版权所有。

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