A new circuit topology to realize high efficiency, high linearity, and high power microwave amplifiers

D. Upton, P. Maloney
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引用次数: 33

Abstract

The unexpected and unprecedented growth in demand for increased communications capacity by telecommunications consumers has led to the implementation of a variety of multi-spectral digital modulation techniques. All of these have in common the need for improved amplifier linearity in order to be practical or to co-exist with other users in the same spectrum. Many systems also mandate that the amplifier efficiency be as high as possible to extend the operating time of portable or self-contained power sources. In addition to the above, many systems desire relatively high power outputs to be obtained for improving reliability or availability. A workable compromise is difficult to achieve for any given set of parameters. Much effort in the literature is devoted to designs of amplifiers that seek to meet the above requirements. In this paper, work that was reported previously is extended to a more general higher power case by introducing a previously unknown circuit topology variation of a microwave Doherty amplifier. The new topology shown easily extends the load line modulation principle to higher power designs while also providing a design technique that avoids many of the complications of two tightly coupled interactive stages. A brief review of previous work is included for completeness.
一种新的电路拓扑结构,可实现高效率、高线性度、高功率的微波放大器
电信消费者对增加通信容量的需求的意外和前所未有的增长导致了各种多频谱数字调制技术的实施。所有这些都有一个共同点,即需要提高放大器的线性度,以便实用或与同一频谱中的其他用户共存。许多系统还要求放大器效率尽可能高,以延长便携式或独立电源的工作时间。除此之外,许多系统希望获得相对较高的功率输出,以提高可靠性或可用性。对于任何给定的一组参数,都很难达成可行的妥协。许多文献致力于放大器的设计,力求满足上述要求。在本文中,通过引入以前未知的微波多尔蒂放大器的电路拓扑变化,将先前报道的工作扩展到更一般的高功率情况。所示的新拓扑很容易将负载线调制原理扩展到更高功率的设计,同时还提供了一种设计技术,避免了两个紧密耦合交互级的许多复杂性。为了完整起见,还包括对以前工作的简要回顾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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