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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Design Equations for Lumped Element Balun With Inherent Complex Impedance Transformation
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Design Equations for Lumped Element Balun With Inherent Complex Impedance Transformation

机译:具有固有复阻抗变换的集总巴伦的设计方程

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摘要

This paper demonstrates a novel lumped design approach for complex impedance transformation, based on symmetry relaxation in the out-of-phase-compensated power splitter. In the modified topology, a total of four component values are used, of which two values analytically depend upon the other two, keeping the balance parameter maximally flat and independent of the source and load impedance, as well as of the balun internal components. From the condition of zero input reflection loss, the two other component values are also determined analytically, hence specifying all component values uniquely. A Monte Carlo sensitivity analysis predicts an amplitude imbalance, which in practice defines the limit in balance operational bandwidth, of better than ±1 dB, over a 20% bandwidth at 925 MHz operating frequency. Based on the design equations, demonstrators for four different design cases are fabricated, verifying the simulated performance.
机译:本文演示了一种基于异相补偿功率分配器中对称弛豫的复杂阻抗转换的集总设计方法。在修改的拓扑中,总共使用了四个分量值,其中两个值在分析上取决于其他两个值,从而使平衡参数最大程度保持平坦,并且独立于源阻抗和负载阻抗以及巴伦内部分量。从零输入反射损耗的条件出发,还可以解析地确定其他两个分量值,从而唯一地指定所有分量值。蒙特卡洛灵敏度分析可预测振幅不平衡,实际上,在925 MHz工作频率下,在20%的带宽上,平衡不平衡的实际带宽限制优于±1 dB。根据设计方程,制造了四个不同设计案例的演示器,验证了仿真性能。

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