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Design of Pass Band Filter in Hybrid Architecture Planar/Non-Radiative Dielectric Waveguide Integration Technology | Science Publications

机译:混合架构平面/无辐射介质波导集成技术中的通带滤波器设计科学出版物

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> Problem statement: The expansion of RF, microwave and millimeter devices has revolutionized today?s ommunication and sensor systems. Low-cost, high-performance and mass producible millimeter wave technologies are vital for commercial broadband systems. Challenging issues are commonly faced in the design of low-loss integrated circuits for example high-Q band pass filter, which the planar technique is fundamentally limited in performance. Approach: In this study, we present a design of a nonradiative dielectric waveguide band pass filter based on hybrid architecture of micro strip line and non-radiative dielectric waveguide. Results: The simulation with High Frequency Structure Simulator (HFSS) three dimensional analyses is presented. Conclusion: The non radiative dielectric resolves most of the drawbacks of dielectric waveguide in connection with the radiation loss."
机译: > 问题陈述: RF,微波和毫米波设备的扩展彻底改变了当今的通讯和传感器系统。低成本,高性能和可批量生产的毫米波技术对于商业宽带系统至关重要。在诸如高Q带通滤波器的低损耗集成电路的设计中通常面临挑战性的问题,平面技术从根本上限制了其性能。 方法:在这项研究中,我们提出了一种基于微带线和非辐射介质波导的混合架构的非辐射介质波导带通滤波器的设计。 结果:提出了使用高频结构仿真器(HFSS)进行三维分析的仿真方法。 结论:非辐射电介质解决了与辐射损耗有关的电介质波导的大多数缺点。”

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