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The Gain Game: Using the Four Principal Amplifier Gain Metrics

机译:增益游戏:使用四个主要放大器增益度量

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In the ongoing quest to improve energy efficiency for power amplifiers (PAs), it is necessary to operate the amplifier transistors in both the cutoff and nonlinear compression operating regions [1], [2]. In these operation modes, the usual measures of amplifier gain can no longer be used indiscriminately [3]. Earlier work with the amplifier voltage transfer function shows how the slope and ratiometric gains of any amplifier diverge as nonlinear amplifier operation increases [4]. Here, the extended gain metrics, which also include the power transfer function [5], bring the total number of important gain metrics up to four. While many of these points may seem elementary, it is well documented that concepts regarding gain are actually not clearly understood. It is worthwhile to clarify these important differences because designs using intentional amplifier compression are becoming more common. We can then evaluate their relative effectiveness in support of design tasks such as PA linearizers.
机译:为了提高功率放大器(PA)的能量效率,有必要在截止和非线性压缩操作区域[1],[2]中操作放大器晶体管。在这些操作模式下,不能再随意使用放大器增益的常规度量[3]。放大器电压传递函数的早期工作表明,随着非线性放大器工作量的增加,任何放大器的斜率和比例增益如何发散[4]。在这里,扩展的增益指标(其中还包括功率传递函数[5])使重要增益指标的总数达到四个。尽管这些要点中的许多似乎是基本的,但有据可查的是,关于增益的概念实际上并未清楚地理解。有必要澄清这些重要差异,因为使用故意放大器压缩的设计正变得越来越普遍。然后,我们可以评估它们在支持PA线性化器等设计任务方面的相对有效性。

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