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A Digitally Modulated Polar CMOS Power Amplifier With a 20-MHz Channel Bandwidth

机译:具有20MHz通道带宽的数字调制极性CMOS功率放大器

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This paper presents a CMOS RF power amplifier that employs a digital polar architecture to improve the overall power efficiency when amplifying signals with high linearity requirements. The power amplifier comprises 64 parallel RF amplifiers that are driven by a constant envelope RF phase-modulated signal. The unit amplifiers are digitally activated by a 6-bit envelope code to construct a non-constant envelope RF output, thereby performing a digital-to-RF conversion. In order to suppress the spectral images resulting from the discrete-time to continuous-time conversion of the envelope, the use of oversampling and four-fold linear interpolation is explored. An experimental prototype of the polar amplifier has been integrated in a 0.18- mum CMOS technology, occupies a total die area of 1.8 mm2 , operates at a 1.6-GHz carrier frequency with a channel bandwidth of 20 MHz. For an OFDM signal, it achieves a power-added efficiency of 6.7% with an EVM of - 26.8 dB while delivering 13.6 dBm of linear output power and drawing 145 mA from a 1.7-V supply.
机译:本文提出了一种CMOS RF功率放大器,该放大器采用数字极性架构来改善对线性要求较高的信号进行放大时的整体功率效率。功率放大器包括64个并行RF放大器,这些放大器由恒定包络RF相位调制信号驱动。单位放大器由6位包络码数字激活,以构造非恒定包络RF输出,从而执行数字到RF转换。为了抑制由包络线的离散时间到连续时间转换而产生的光谱图像,探索了过采样和四重线性插值的使用。极性放大器的实验原型已集成在0.18um CMOS技术中,总管芯面积为1.8 mm2,工作在1.6 GHz载波频率,信道带宽为20 MHz。对于OFDM信号,它的EVM为-26.8 dB,可实现6.7%的功率增加效率,同时可提供13.6 dBm的线性输出功率和从1.7V电源汲取145 mA的电流。

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