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Bandpass Filter Based on Skeleton-like Monobloc Dielectric Pucks Made by Additive Manufacturing

机译:基于增材制造的骨架状整体电介质塞的带通滤波器

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This paper presents a 6th order quasi-elliptic bandpass filter working at 11.75 GHz and based on dielectric hollow resonators (pucks). The resonators and their supporting elements have been fabricated altogether in a single part using ceramic (Alumina) additive manufacturing. This part is simply placed in the filter metal housing and therefore limits the number of pieces to be assembled. An important aspect of this work is that no specific, and potentially lossy, third materials (supports, glue) are needed. This assembly route easily allows the dielectric resonators to be placed in the middle of their cavities in order to maximize their Q factor. The proposed principle has been experimentally validated using, for the fast prototyping of this proof of concept, metallized and low cost plastic 3D printing.
机译:本文提出了6 阶椭圆形带通滤波器,工作在11.75 GHz频率下,基于介电空心谐振器(混频器)。谐振器及其支撑元件已经使用陶瓷(Alumina)增材制造技术整体制成。该零件仅放置在过滤金属外壳中,因此限制了要组装的零件数量。这项工作的一个重要方面是,不需要特殊的,可能有损的第三种材料(支撑,胶水)。这种组装路线很容易将介电谐振器放置在其腔体的中间,以最大化其Q因子。为了快速制作此概念验证的原型,已金属化且低成本的塑料3D打印已通过实验验证了所提出的原理。

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