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Miniaturization and enhancement performance of passive microwave components using HTS and thin film ferroelectric materials

机译:使用HTS和薄膜铁电材料的无源微波组件的小型化和增强性能

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Passive RF/microwave components (e.g. couplers, and filters) occupy big design area in the RF/microwave circuit and systems, especially when it work at low frequencies. This paper presents using of High Temperature Superconductor HTS for reducing the size of circuit design and maintains good performance, the surface impedance model is investigated and verified, branch-line coupler is designed on Lanthanum Aluminate (LaAlO) substrate which is more suitable for HTS, the CST Electromagnetic wave simulator is used for design the coupler, all parameters of the designed coupler (Insertion Loss, Return Loss, and Isolation) show good enhancement when compared to previously published result of the coupler made of copper material. Also the size of the HTS coupler is small four times than the coupler made of copper material. A tunable frequency branch-line coupler is designed by using thin film layer of Strontium Titanate(SrTiO3) ferroelectric material, the thin layer is sandwiched between the LAO substrate and HTS microstrip line, the response shows a variation of frequency work with changing applied electric field.
机译:无源RF /微波组件(例如耦合器和滤波器)在RF /微波电路和系统中占据很大的设计区域,尤其是在低频下工作时。本文提出了使用高温超导体HTS来减小电路设计尺寸并保持良好性能的方法,对表面阻抗模型进行了研究和验证,在铝酸镧(LaAlO)衬底上设计了更适合HTS的支线耦合器, CST电磁波模拟器用于设计耦合器,与先前发布的铜材料耦合器相比,所设计耦合器的所有参数(插入损耗,回波损耗和隔离度)均显示出良好的提高。同样,HTS耦合器的尺寸比铜材料制成的耦合器小四倍。利用钛酸锶(SrTiO3)铁电材料薄膜层设计了可调谐的频率支线耦合器,该薄膜层夹在LAO衬底和HTS微带线之间,响应表明频率随施加电场的变化而变化。 。

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