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Highly Linear and Highly Efficient Dual-Carrier Power Amplifier Based on Low-Loss RF Carrier Combiner

机译:基于低损耗RF载波合成器的高线性度和高效双载波功率放大器

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摘要

This paper presents a novel power amplifier (PA) architecture for amplifying dual-carrier signals with simultaneous high efficiency and high linearity. This dual-carrier PA is based on two high-efficiency PAs and an innovative RF carrier combiner, which is a diplexer implemented with bandstop filters (BSFs). This special BSF diplexer is capable of combining two carriers with ultra-narrow frequency spacings, e.g., down to 0.25% fractional bandwidth, while maintaining a low combining loss of $<$1 dB. Compared to conventional diplexers implemented with bandpass filters, this new technology leads to minimized resource usage for achieving the same combining performance. The integrated PA exhibits excellent performance when amplifying dual-carrier signals in terms of linearity and efficiency. Specifically, third-order intermodulations of $<$40 dBc were measured with 70.2% (60.8%) power-added efficiency for carrier spacing of 10 MHz (5 MHz).
机译:本文提出了一种新颖的功率放大器(PA)架构,用于同时放大高效率和高线性度的双载波信号。该双载波功率放大器基于两个高效功率放大器和一个创新的射频载波组合器,该组合器是通过带阻滤波器(BSF)实现的双工器。这种特殊的BSF双工器能够合并两个具有超窄频率间隔(例如低至0.25%的分数带宽)的载波,同时保持$ <$ 1 dB的低合并损耗。与通过带通滤波器实现的传统双工器相比,这项新技术可将用于实现相同合并性能的资源占用降至最低。当放大双载波信号的线性度和效率时,集成的PA表现出出色的性能。具体来说,对于10 MHz(5 MHz)的载波间隔,测量了$ <$ 40 dBc的三阶互调,功率附加效率为70.2%(60.8%)。

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