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首页> 外文期刊>International Journal of Microwave and Wireless Technologies >Robust design of a broadband dual-polarized transition from PCB to circular dielectric waveguide for mm-wave applications
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Robust design of a broadband dual-polarized transition from PCB to circular dielectric waveguide for mm-wave applications

机译:从PCB到圆形电介质波导的宽带双极化过渡的鲁棒设计用于MM波应用

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摘要

A growing interest in dielectric waveguides (DWGs) as an alternative to commonly used waveguides (like coaxial or twisted-pair cables) for high data rate interconnects could be observed in the last few years. Especially in the mm-wave frequency range (30-300 GHz) applications with these waveguides benefit from low losses and low dispersion. Moreover, using both polarizations of the fundamental mode in such waveguides could theoretically double the data rate without the need of higher bandwidth or additional fibers. The connection between DWGs and commonly available transceiver chips requires broadband transitions from planar waveguides like microstrip lines to DWGs. In this paper, an overview of the current developments of such transitions is given and a novel low-complexity design is presented that reduces the space consumption by 35% related to recently published works. This allows an easy integration into a printed circuit board layout or a chip package. Furthermore, an extensive sensitivity analysis is presented to prove the robustness toward manufacturing tolerances. The transition is realized at W-band frequencies (75-110 GHz) and achieves a relative 10 dB-bandwidth of more than 25% with a minimum insertion loss of 1.2 dB. It is shown that these properties even hold for manufacturing tolerances of nowadays manufacturing processes.
机译:在过去几年中可以观察到介电波导(DWGS)作为常用波导(如同轴或双绞线电缆)的替代的介电波导(DWG)的替代感兴趣。特别是在MM波频率范围(30-300GHz)应用中,这些波导受益于低损耗和低分散。此外,在这种波导中使用基本模式的两极化可以理解数据速率而不需要更高的带宽或附加纤维。 DWG和常用的收发器芯片之间的连接需要从平面波导等微带线到DWG的宽带转换。在本文中,给出了这种转变的当前发展的概述,并提出了一种新的低复杂性设计,从而降低了与最近公布的作品相关的35%的空间消耗。这允许轻松集成到印刷电路板布局或芯片封装中。此外,提出了广泛的灵敏度分析以证明对制造公差的稳健性。在W波段频率(75-110GHz)中实现过渡,并且具有大于25%的相对10dB带宽,其最小插入损耗为1.2 dB。结果表明,这些特性甚至可以保持日本制造过程的制造公差。

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