论文标题

用于MM波应用的间隙波导技术中的低损坏可重新配置相变

Low-Loss Reconfigurable Phase Shifter in Gap-Waveguide Technology for mm-Wave Applications

论文作者

Palomares-Caballero, Á., Alex-Amor, A., Escobedo, P., Valenzuela-Valdés, J., Padilla, P.

论文摘要

在此简介中,我们提出了用于MM波频率的间隙波导技术中实现的低损坏的可重新配置相位变速杆。所提出的设计提供了波导内部调整元件的实际实现,为高频使用电子平面拆分波导提供了替代方案,以避免泄漏损失。所描述的相移设计基于H平面拆分波导。相移通过调谐螺钉进行控制,该螺钉会在波导内插入的柔性金属带上施加压力。柔性条带有不同的曲率半径弯曲,并确定输出端口的相移。通过间隙波导设计实现了具有成本效益的制造和柔性金属带的简单实现。为验证目的制造了原型。从64 GHz到75 GHz实现了良好的阻抗匹配,提供15.8%的阻抗带宽。结果表明,最大相移为250 $^{O} $,最大和平均插入损失(IL)分别为3 dB和1.7 dB。

In this brief, we present a low-loss mechanically reconfigurable phase shifter implemented in gap-waveguide technology for mm-wave frequencies. The proposed design gives a practical implementation of tuning elements inside the waveguide providing alternatives to the use of the E-plane split waveguide at high frequencies in order to avoid leakage losses. The depicted phase shifter design is based on a H-plane split waveguide. The phase shift is controlled by means of a tuning screw, which exerts pressure on a flexible metallic strip inserted inside the waveguide. The flexible strip bends with different curvature radii and determines the phase shift at the output port. Cost-effective manufacturing and simple implementation of the flexible metallic strip are achieved by means of the gap-waveguide design. A prototype has been manufactured for validation purposes. Good impedance matching is achieved from 64 GHz to 75 GHz providing a 15.8% impedance bandwidth. The results show a maximum phase shift of 250$^{o}$ with a maximum and mean insertion loss (IL) of 3 dB and 1.7 dB, respectively.

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