电子工程
功率增益
放大器
功率带宽
带宽(计算)
阻抗匹配
射频功率放大器
负载拉力
宽带
输入阻抗
输出阻抗
计算机科学
频带
晶体管
电气工程
电阻抗
工程类
CMOS芯片
电信
电压
作者
Sedat Kılınç,Malik Ehsan Ejaz,Binboğa Sıddık Yarman,Serdar Özoğuz,Saket Srivastava,Edmond Nurellari
摘要
Abstract Generation of proper source/load‐pull impedances for a selected active device is essential to design an RF power amplifier for optimum gain and power added efficiency. As they are obtained, these impedances may not be realizable network functions over the desired frequency band to yield the input and the output matching networks for the amplifier. Therefore, in this paper, first, we introduce a new method to test if a given impedance is realizable. Then, a novel “real frequency line‐segment technique” based numerical procedure is introduced to assess the gain‐bandwidth limitations of the given source and load impedances, which in turn results in the ultimate RF power‐intake and power‐delivery capacity of the amplifier. During the numerical performance assessments process, a robust tool called “virtual gain optimization” is presented. Finally, a new definition called “power performance product” is introduced to measure the quality of an active device. Examples are presented to test the realizability of the given source‐/load‐pull data and to assess the gain‐bandwidth limitations of the given source/load‐pull impedances for a 45 W‐GaN power transistor, namely, “Wolfspeed CG2H40045” over 0.8–3.8 GHz bandwidth.
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