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Analysis of Glass-Reinforced Epoxy Material for Radio Frequency Resonator

机译:射频谐振器用玻璃纤维增​​强环氧树脂材料的分析

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摘要

A radio frequency (RF) resonator using glass-reinforced epoxy material for C and X band is proposed in this paper. Microstrip line technology for RF over glass-reinforced epoxy material is analyzed. Coupling mechanism over RF material and parasitic coupling performance is explained utilizing even and odd mode impedance with relevant equivalent circuit. Babinet's principle is deployed to explicate the circular slot ground plane of the proposed resonator. The resonator is designed over four materials from different backgrounds which are glass-reinforced epoxy, polyester, gallium arsenide (GaAs), and rogers RO 4350B. Parametric studies and optimization algorithm are applied over the geometry of the microstrip resonator to achieve dual band response for C and X band. Resonator behaviors for different materials are concluded and compared for the same structure. The final design is fabricated over glass-reinforced epoxy material. The fabricated resonator shows a maximum directivity of 5.65 dBi and 6.62 dBi at 5.84 GHz and 8.16 GHz, respectively. The lowest resonance response is less than −20 dB for C band and −34 dB for X band. The resonator is prototyped using LPKF (S63) drilling machine to study the material behavior.
机译:本文提出了一种使用玻璃纤维增​​强环氧材料的C和X波段的射频(RF)谐振器。分析了玻璃纤维增​​强环氧树脂材料上射频的微带线技术。利用偶数和奇数模式阻抗以及相关等效电路,说明了射频材料与寄生耦合性能之间的耦合机制。运用巴比涅原理来说明所提出的谐振器的圆形槽接地平面。该谐振器由来自不同背景的四种材料设计而成,分别是玻璃增强的环氧树脂,聚酯,砷化镓(GaAs)和罗格斯RO 4350B。将参数研究和优化算法应用于微带谐振器的几何结构,以实现C和X波段的双波段响应。总结了不同材料的谐振器行为,并对相同结构进行了比较。最终设计是在玻璃增强环氧树脂材料上制成的。制成的谐振器在5.84 GHz和8.16 GHz处的最大方向性分别为5.65 dBi和6.62 dBi。最低的谐振响应对于C波段小于-20 dB,对于X波段小于-34 dB。使用LPKF(S63)钻孔机对谐振器进行原型设计,以研究材料性能。

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