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A Current-Shared Cascade Structure With an Auxiliary Power Regulator for Switching Mode RF Power Amplifiers

机译:具有用于开关模式射频功率放大器的辅助功率调节器的均流级联结构

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摘要

In this study, we propose an auxiliary power regulator (APR) for the current-shared cascade (CSC) structure of the driver stages of RF CMOS power. Although the CSC structure provides a method to reduce the power consumption at the driver stages of a differential power amplifier (PA), it is difficult to obtain optimum levels of effective supply voltage for the first and second driver stages. Additionally, the transistor sizes of the first and second driver stages of the CSC structure must be identical to ensure the proper operation of the PA. Thus, in this work, we propose an APR structure that ensures the proper operation of a PA with different transistor sizes in its first and second driver stages. To prove the feasibility of the proposed technique, we designed the PA with a CSC structure using an APR. From the measured results, we successfully verify the feasibility of the proposed structure. Additionally, we provide experimental results for a typical CMOS PA to determine the optimum supply voltage for the second driver stage.
机译:在这项研究中,我们为RF CMOS电源的驱动器级的均流级联(CSC)结构提出了一种辅助功率调节器(APR)。尽管CSC结构提供了一种减少差分功率放大器(PA)的驱动器级功耗的方法,但是很难获得第一和第二驱动器级的有效电源电压的最佳水平。另外,CSC结构的第一和第二驱动器级的晶体管大小必须相同,以确保PA正常工作。因此,在这项工作中,我们提出了一种APR结构,该结构可确保具有不同晶体管尺寸的PA在其第一和第二驱动器级中的正常运行。为了证明所提出技术的可行性,我们使用APR设计了具有CSC结构的功率放大器。从测量结果,我们成功验证了该结构的可行性。此外,我们提供了典型CMOS PA的实验结果,以确定第二驱动器级的最佳电源电压。

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