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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A Novel Compact Forward-Wave Directional Coupler Design Using Periodical Patterned Ground Structure
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A Novel Compact Forward-Wave Directional Coupler Design Using Periodical Patterned Ground Structure

机译:基于周期模式接地结构的新型紧凑型前向定向耦合器设计

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摘要

A novel forward-wave directional coupler with periodical patterned ground structures is proposed. The input impedance of the even and odd mode of the proposed coupler can be matched, and the phase difference between the even and odd mode is also strongly enhanced. The equivalent models are constructed to predict the propagation properties based on the Bloch–Floquet theorem. A completed design procedure is also proposed based on the equivalent models. This two-layer structure is fabricated on Duroid substrate. 0.5-dB coupling level can be measured at 1.5 GHz, and the coupler length is 0.5 $lambda_{g}$. Compared to previous studies, the proposed coupler can be designed at a lower frequency range with a smaller size.
机译:提出了一种新型的具有周期性图案化接地结构的前向波定向耦合器。所提出的耦合器的偶数和奇数模式的输入阻抗可以匹配,并且偶数和奇数模式之间的相位差也大大增强。构造了等效模型以根据Bloch-Floquet定理预测传播特性。基于等效模型,还提出了完整的设计程序。这种两层结构是在Duroid基板上制造的。 0.5 dB的耦合电平可以在1.5 GHz处测量,耦合器长度为0.5λ_{g} $。与以前的研究相比,可以在较低的频率范围内以较小的尺寸设计所提出的耦合器。

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