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Parasitic aware impedance matching techniques for RF amplifiers

机译:射频放大器的寄生感知阻抗匹配技术

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This paper analyzes the impact of non-idealities of the lumped passive elements (inductor and capacitor) in the matching networks of RF amplifiers. This work infers that the representation of performance matrices of a matching network like sensitivity and harmonic rejection; in terms of input reflection coefficient (S 11) is more convenient than the transfer functions. Expression of S 11 of widely used L-, π- and T-networks have been derived as a function of inductor quality factor (Q L ), capacitor quality factor (Q C ) and transformation ratio. This formulation shows that the matching performance degrades severely due to component non-idealities. To circumvent this degradation, a modified set of design equations have been proposed for the L-network and the same has been extended for π- and T-network. Simulation results show that network synthesized on the basis of proposed set of equations nullify the effect of non-idealities by 70–80% in L-network and 10–20% in π-network but minor improvement in T-network.
机译:本文分析了射频放大器匹配网络中集总的无源元件(电感器和电容器)的非理想性的影响。这项工作推断出匹配网络的性能矩阵的表示形式,例如灵敏度和谐波抑制。在输入反射系数(S 11 )方面比传递函数更方便。得出了广泛使用的L,π和T网络的S 11 的表达式,它是电感品质因数(Q L ),电容器品质因数(Q C )和转换率。该公式表明匹配性能由于组件的不理想而严重降低。为了避免这种退化,已经提出了针对L网络的一组修改的设计方程,并针对π网络和T网络对其进行了扩展。仿真结果表明,在建议的方程组基础上综合的网络使非理想状态的影响在L网络中无效,减少70–80%,在π网络中无效,减少10–20%,但在T网络中则略有改善。

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