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Dual- and Triple-Band Wilkinson Power Dividers Based on Composite Right- and Left-Handed Transmission Lines

机译:基于左手和右手复合传输线的双频和三频威尔金森功率分配器

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摘要

This paper presents dual- and triple-band equal-split Wilkinson power dividers (WPDs) based on composite right- and left-handed transmission lines. Good isolation between output ports and impedance matching at input ports are achieved simultaneously at all pass-band frequencies for both dual- and triple-band WPDs. The theoretical closed-form design equations are derived, and the design allows a wide range of flexibility for the allocations of the passbands. To verify the proposed design, two prototypes are fabricated and measurements show good agreement with simulated data. The first design is a triple-band WPD with passbands centered at 0.8, 1.3, and 1.85 GHz, and the second one is a dual-band WPD with passbands centered at 0.7 and 1.5 GHz. The triple-band divider has a length of 0.66 wavelengths in the substrate and is more compact comparing to traditional WPDs. The dual-band power divider is designed to have a wide fractional bandwidth with more than 20% at the lower passband and 41% at the upper passband. Measurements also show a good insertion loss at each input port, which is less than 3.6 dB at the center of each passband.
机译:本文提出了基于复合右手和左手传输线的双频和三频等分威尔金森功率分配器(WPD)。对于双频和三频WPD,在所有通带频率上都可以同时实现输出端口之间的良好隔离和输入端口处的阻抗匹配。推导了理论上的封闭式设计方程,该设计为通带分配提供了很大的灵活性。为了验证所提出的设计,制造了两个原型,测量结果与模拟数据显示出良好的一致性。第一种设计是通带分别位于0.8、1.3和1.85 GHz的三频带WPD,第二种设计是通带分别位于0.7和1.5 GHz的双频带WPD。三频分频器在基板中的波长为0.66,与传统的WPD相比更加紧凑。双频带功率分配器设计为具有较宽的分数带宽,在较低的通带处超过20%,在较高的通带处超过41%。测量结果还表明,每个输入端口都有良好的插入损耗,在每个通带的中心都小于3.6 dB。

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