Low power consumptive mixed mode MMIC power amplifier module for WCDMA Handset Applications

Min Park, Y. Choi, T.Y. Kang, K. Park, Seong-Su Park, S. Hyun
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Abstract

A high average-efficient MMIC power amplifier is implemented utilizing mixed mode power stage techniques with proper linearity. The average power efficiency, which is more important fact to save the battery in handsets, is improved about three times than commercial PAs with only supply voltage of 3.0-V. The power amplifier has been optimized for different P1 dB (1-dB compression point) value: one for 16 dBm for the low power mode, targeting the most probable transmission power, and the other for 28 dBm for the high power mode. A PAE of 29.0% at 16 dBm of out power, which is the maximum bound of the most probable transmission power in IS-95 systems, was obtained, as well as 46.7% at 28.2 dBm for the high power mode. The measured adjacent channel leakage power ratios (ACLR) at the high and low power mode of PldB are -36.17 and -36.16 dBc, respectively, and satisfy the Third-Generation Partnership Project (3GPP) WCDMA specification.
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用于WCDMA手机应用的低功耗混合模式MMIC功率放大器模块
利用适当线性度的混合模式功率级技术实现了一种平均效率高的MMIC功率放大器。平均功率效率,这是更重要的事实,节省电池在手机上,提高了约三倍的商业pa只有3.0 v的电源电压。功率放大器针对不同的P1 dB (1-dB压缩点)值进行了优化:一个用于低功率模式的16 dBm,目标是最可能的传输功率,另一个用于高功率模式的28 dBm。在输出功率为16 dBm (is -95系统最可能传输功率的最大边界)时,PAE为29.0%,在高功率模式下,PAE为46.7%。在PldB高、低功耗模式下测量到的相邻通道漏功率比(ACLR)分别为-36.17和-36.16 dBc,满足3GPP WCDMA规范。
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