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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A 1.95 GHz Fully Integrated Envelope Elimination and Restoration CMOS Power Amplifier Using Timing Alignment Technique for WCDMA and LTE
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A 1.95 GHz Fully Integrated Envelope Elimination and Restoration CMOS Power Amplifier Using Timing Alignment Technique for WCDMA and LTE

机译:使用WCDMA和LTE的时序对准技术的1.95 GHz全集成式包络消除和恢复CMOS功率放大器

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摘要

A fully integrated envelope elimination and restoration (EER) CMOS power amplifier (PA) has been developed for WCDMA and LTE handsets. EER is a supply modulation technique that first divides modulated RF signal into envelope and phase signals and then restores it at a switching PA output. Supply voltage of the switching PA is modulated by the envelope signal through a high-speed supply modulator. EER PA is highly efficient due to the switching PA and the supply modulation. However, it generally has difficulty, especially for a wide bandwidth baseband application like LTE, achieving a wide bandwidth for phase signal path and highly accurate timing between envelope and phase signals. To overcome these challenges, an envelope/phase generator based on a mixer and a limiter was proposed to generate the wide bandwidth phase signal, and a timing aligner based on a delay locked loop with a variable high-pass filter (HPF) was proposed to compensate for the timing mismatch. The chip was implemented in 90 nm CMOS technology. Measured power-added efficiency (PAE) and adjacent channel leakage ratio (ACLR) were 39% and –41 dBc for WCDMA, and measured PAE and ACLR E-UTRA1 were 32% and –33 dBc for 20 MHz-BW LTE.
机译:已经为WCDMA和LTE手机开发了完全集成的包络消除和恢复(EER)CMOS功率放大器(PA)。 EER是一种电源调制技术,首先将已调制的RF信号分为包络和相位信号,然后将其恢复到开关PA输出。开关PA的电源电压通过高速电源调制器通过包络信号进行调制。由于开关功率放大器和电源调制,EER PA效率很高。但是,这通常存在困难,特别是对于像LTE这样的宽带基带应用而言,很难获得相位信号路径的宽带和包络信号与相位信号之间的高精度定时。为了克服这些挑战,提出了一种基于混频器和限幅器的包络/相位发生器来产生宽带相位信号,并提出了一种基于带有可变高通滤波器(HPF)的延迟锁定环的时序对准器。补偿时序不匹配。该芯片采用90 nm CMOS技术实现。对于WCDMA,测得的功率附加效率(PAE)和相邻信道泄漏比(ACLR)分别为39%和–41 dBc,对于20 MHz-BW LTE,测得的PAE和ACLR E-UTRA1为32%和–33 dBc。

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