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Design of single and coupled microwave meta-material resonators in microsystem technology

机译:微系统技术中的单耦合微波超材料谐振器设计

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In this paper Coupled Triangular Resonators in coplanar waveguide have been studied for S (2-4 GHz) and C (4-8 GHz) Band microwave applications. The peculiarity of the triangular structure to exhibit multiple resonances is usually proposed for dual and three-band purposes, to obtain efficient unit cells for high performance microwave tunable oscillators. One more characteristic of the triangular shape is the meta-material behavior, which allows a significant size decrease of the device. Coupled resonating configurations are proposed in this contribution, to be manufactured in Microsystem Technology by using polymeric layers as spacers between individual resonators organized in a vertical stack. Electromagnetic simulations have been performed to study narrow-band filters characterized by reduced dimensions, low insertion loss and steep band edges. Lumped element models are presented which can be easily implemented in commercial circuital software packages for the design of networks using these resonators.
机译:在本文中,共面波导中的耦合三角谐振器已针对S(2-4 GHz)和C(4-8 GHz)波段微波应用进行了研究。通常提出将三角结构表现出多重谐振的特性用于双频和三频目的,以获得用于高性能微波可调谐振荡器的有效单位单元。三角形的另一个特征是超材料性能,这使得器件的尺寸大大减小。在该贡献中提出了耦合谐振配置,该耦合谐振配置将以微系统技术通过使用聚合物层作为在垂直堆叠中组织的各个谐振器之间的间隔物来制造。已经进行了电磁仿真来研究以减小尺寸,低插入损耗和陡峭的边缘为特征的窄带滤波器。提出了集总元件模型,可以很容易地在商业电路软件包中使用这些谐振器来设计网络。

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