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Experimental Control and Design of Low-Frequency Bias Networks for Dynamically Biased Amplifiers

机译:动态偏置放大器的低频偏置网络的实验控制和设计

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摘要

To reach the video bandwidth requirements on the supply paths, power amplifiers with dynamic bias schemes are constrained to reduce the values of the low-frequency (LF) decoupling capacitors on their bias lines. This can entail a decrease of the LF stability margins, among other negative effects. In this work, a methodology is proposed to experimentally monitor and control the dominant poles that govern the LF dynamics of both gate and drain bias lines from dc to high compression power. A specific topology for the bias observation accesses allows a consistent characterization in large-signal regimes. An automatic procedure to trace root contours versus four control parameters is also developed. The complete approach can be used to optimize the design of the bias lines in terms of video bandwidth, relative stability margins, and bias voltage transfer function characteristics. Moreover, the design can account for the effect of the large-signal RF drive on these LF performances. The methodology is exemplified and validated in a demonstrator prototype specifically built for that purpose.
机译:为了达到电源路径上的视频带宽要求,必须限制具有动态偏置方案的功率放大器,以减小其偏置线上的低频(LF)去耦电容器的值。除其他负面影响外,这可能会降低LF稳定裕度。在这项工作中,提出了一种方法,以实验方式监测和控制主导极,该主导极控制从直流到高压缩功率的栅极和漏极偏置线的LF动态。偏差观察访问的特定拓扑允许在大信号状态下进行一致的表征。还开发了一种自动程序来跟踪根轮廓与四个控制参数的关系。完整的方法可用于根据视频带宽,相对稳定性裕度和偏置电压传递函数特性来优化偏置线的设计。此外,设计可以考虑大信号RF驱动器对这些LF性能的影响。该方法在为此目的专门构建的演示器原型中得到了示例和验证。

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