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3.54GHz 10W envelope tracking amplifier with 43 efficiency utilizing the 1.5 bit-high efficiency envelope amplifier

机译:3.54GHz 10W包络跟踪放大器,采用1.5位高效包络放大器,效率为43%

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This paper presents a 1.5 bit (3-level) envelope amplifier to improve the overall efficiency of wideband high linearity envelope tracking power amplifier. The proposed envelope amplifier has been devised with two switches providing the different supply voltages. Since the unnecessary current (ripple current) induced by a switching stage can be reduced by the multi-level quantization, the efficiency of a proposed envelope amplifier is 5% higher compared with that of a conventional architecture. With the proposed envelope amplifier, we have designed and implemented the 3.54 GHz high efficiency envelope tracking power amplifier using a commercial 60 W PEP GaN device. The efficiency boosting effect is further verified by the measured results. The experiment results show that the envelope tracking power amplifier operates at drain efficiency (DE) of 43.6% and power added efficiency (PAE) of 39.2% and a gain of 10.1 dB at average output power of 40 dBm for a 10 MHz WiMAX signal with 8.5 dB peak-to-average power ratio (PAPR). By using digital predistortion function, the adjacent channel leakage ratio (ACLR) is less than -45.4 dBc at 20 MHz offset.
机译:本文提出了一种1.5位(3级)包络放大器,以提高宽带高线性度包络跟踪功率放大器的整体效率。所提出的包络放大器已经设计成具有两个提供不同电源电压的开关。由于可以通过多级量化来减少由开关级引起的不必要的电流(纹波电流),因此与常规架构相比,所提出的包络放大器的效率提高了5%。利用建议的包络放大器,我们已经设计并实现了使用商用60 W PEP GaN器件的3.54 GHz高效包络跟踪功率放大器。测量结果进一步验证了效率提升效果。实验结果表明,对于10 MHz WiMAX信号,包络跟踪功率放大器的漏极效率(DE)为43.6%,功率附加效率(PAE)为39.2%,平均输出功率为40 dBm时增益为10.1 dB。 8.5 dB峰均功率比(PAPR)。通过使用数字预失真功能,在20 MHz偏移时,相邻信道泄漏比(ACLR)小于-45.4 dBc。

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