首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Additive Manufacturing of E-Plane Cut Dual-Mode X-Band Waveguide Filters With Mixed Topologies
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Additive Manufacturing of E-Plane Cut Dual-Mode X-Band Waveguide Filters With Mixed Topologies

机译:具有混合拓扑的E平面切割双模X波段波导过滤器的添加剂制造

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摘要

In this article, the design and realization of low-loss 3-D printed waveguide filters in the X-band are discussed. Multiple transmission zeros (TZs) are introduced by using symmetrical TE301/TE102 dual-mode cavities. The design flexibility is enlarged by adding classical triplet and quadruplet sections that are combined with the dual-mode blocks. The coupling matrices of all topologies are derived, and the fundamental limitations are presented. All proposed filter setups are symmetrical and can, therefore, be cut in the $E$ -plane. This allows the application of low-cost fused deposition modeling (commonly known as FDM) additive manufacturing techniques. The galvanization process to achieve a high conductivity surface will be discussed as well. The measurements show good agreement with the simulation, while Q-factors of up to 2000 can be achieved.
机译:在本文中,讨论了X波段中的低损耗3-D印刷波导滤波器的设计和实现。通过使用对称TE301 / TE102双模腔引入多个传输零(TZS)。通过添加与双模块组合的经典三重态和四倍体部分来放大设计灵活性。导出所有拓扑的耦合矩阵,并提出了基本限制。所有建议的过滤器设置都是对称的,因此可以在$ e $ -plane中切割。这允许应用低成本融合沉积建模(通常称为FDM)添加剂制造技术。将讨论实现高导电率表面的镀锌过程。测量结果表现出与模拟的良好一致性,而可以实现高达2000年的Q因素。

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