Class-AB Power Amplifier Design Guidelines

F. Giannini, G. Leuzzi, E. Limiti, L. Scucchia
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引用次数: 4

Abstract

The design of high-power high-efficiency narrowband amplifiers implies a carefull choice of bias point, loading and power level. The choice of class A, AB, B, or C is based on a compromise between gain , output power, efficiency and total and/or specific distortion content[1]. Qualitative and quantitative considerations must therefore be made by the designer in order to obtain the best performances from a power stage [2-7]. A detailed study of a power amplifier can be performed either experimentally (load-pull measurements [9]). General guidelines and quick design procedure are however highly desirable for the sake of precious design time saving and of clarity of interpretation of the results; alternatively, they can be used to get an accurate staring poin for further optimisation. This is particularly important in the field of monolithic microwave integrated circuits where the optimisation procedure in the phase of the software "breadbording" represents a real crucial step. The contribution of this paper is to give design guidelines consisting of a simple and reliable anlysis method together with design tables; the results have been veritied by comparison with a more accurate but lengthy non-linear analysis programme.
ab类功率放大器设计指南
设计大功率高效窄带放大器需要仔细选择偏置点、负载和功率电平。A、AB、B或C级的选择是基于增益、输出功率、效率和总和/或特定失真含量[1]之间的折衷。因此,为了从功率级获得最佳性能,设计者必须进行定性和定量考虑[2-7]。功率放大器的详细研究可以通过实验(负载-拉力测量[9])进行。然而,为了节省宝贵的设计时间和清晰地解释结果,通用指南和快速设计过程是非常可取的;或者,它们可以用来获得进一步优化的准确起始点。这在单片微波集成电路领域尤其重要,其中软件“面包板”阶段的优化程序是真正关键的一步。本文的贡献在于给出了由简单可靠的分析方法和设计表组成的设计指南;通过与更精确但冗长的非线性分析程序的比较,结果得到了验证。
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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