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A Parallel-Strip Ring Power Divider With High Isolation and Arbitrary Power-Dividing Ratio

机译:具有高隔离度和任意功率分配比的并联带环形功率分配器

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摘要

In this paper, a new power divider concept, which provides high flexibility of transmission line characteristic impedance and port impedance, is proposed. This power divider is implemented on a parallel-strip line, which is a balanced transmission line. By implementing the advantages and uniqueness of the parallel-strip line, the divider outperforms the conventional divider in terms of isolation bandwidths. A swap structure of the two lines of the parallel-strip line is employed in this design, which is critical for the isolation enhancements. A lumped-circuit model of the parallel-strip swap including all parasitic effects has been analyzed. An equal power divider with center frequency of 2 GHz was designed to demonstrate the idea. The experimental results show that the equal power divider has 96.5% -10-dB impedance bandwidth with more than 25-dB isolation and less than 0.7-dB insertion loss. In order to generalize the concept with an arbitrary power ratio, we also realize unequal power dividers with the same isolation characteristics. The impedance bandwidth of the proposed power divider will increase with the dividing ratio, which is opposite to the conventional Wilkinson power divider. Unequal dividers with dividing ratios of 1 : 2 and 1 : 12 are designed and measured. Additionally, a frequency independent 180 power divider has been realized with less than 2 phase errors.
机译:本文提出了一种新的功率分配器概念,它提供了传输线特性阻抗和端口阻抗的高度灵活性。该功率分配器在并行传输线上实现,并行传输线上是平衡传输线。通过实现并行带状线路的优点和独特性,分频器在隔离带宽方面优于传统的分频器。在此设计中,采用了并行带状线的两条线的交换结构,这对隔离增强至关重要。分析了包含所有寄生效应的并行-带交换的集总电路模型。设计了一个中心频率为2 GHz的等效功率分配器来演示这一想法。实验结果表明,等功率分配器的阻抗带宽为96.5%-10-dB,隔离度大于25dB,插入损耗小于0.7dB。为了用任意功率比来概括该概念,我们还实现了具有相同隔离特性的不相等功率分配器。所提出的功率分配器的阻抗带宽将随着分配比而增加,这与常规的威尔金森功率分配器相反。设计和测量分频比为1:2和1:12的不等分频器。此外,已经实现了频率独立的180功率分配器,其相位误差小于2。

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