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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >3-D Printed Bandpass Filters With Coupled Vertically Extruded Split Ring Resonators
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3-D Printed Bandpass Filters With Coupled Vertically Extruded Split Ring Resonators

机译:具有耦合的垂直挤出开口环谐振器的3D打印带通滤波器

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摘要

The additive manufacturing process of multimaterial extrusion offers performance advantages using functional materials including conductors while making accessible the third dimension in the design of electronics. In this work, we show that the additional geometrical freedom offered by this technique can be exploited for the design and realization of filters made of 3-D resonators that exhibit enhanced characteristics. The coupling properties of 3-D grounded square split ring resonators (SRRs) are initially explored. We demonstrate by simulations and experiments that SRRs with finite height display significantly stronger coupling compared to equivalent thin printed circuit structures. The observed trend can be exploited for designing filters with wider operational bandwidths for a given footprint, or miniaturized layouts and enhanced compatibility with fabrication limits for minimum feature size and spacing without performance degradation. This concept is demonstrated by presenting results of full-wave simulations for sample bandpass filters with identical footprint but formed by coupled 3-D square SRRs of different heights, showing that filters with taller resonators exhibit increasingly wider bandwidths. Two filter prototypes with center frequencies at 1.6 and 2.45 GHz are manufactured by multimaterial 3-D printing. The measured characteristics of these prototypes are found to be in good agreement with numerical simulations taking into account the effect of the lossier metallic and dielectric materials used in 3-D printing and confirm the predicted larger bandwidth of the filters made of 3-D SRRs with marginally higher insertion losses.
机译:多材料挤压的增材制造工艺使用功能材料(包括导体)可提供性能优势,同时在电子设计中可访问三维尺寸。在这项工作中,我们证明了该技术提供的额外几何自由度可用于设计和实现由具有增强特性的3-D谐振器制成的滤波器。最初探讨了3-D接地方形开环谐振器(SRR)的耦合特性。我们通过仿真和实验证明,与等效的薄印刷电路结构相比,具有有限高度的SRR显示出明显更强的耦合。可以利用观察到的趋势来设计滤波器,以针对给定的占位面积设计更宽的工作带宽,或者缩小布局并增强与制造限制的兼容性,以最小化特征尺寸和间距,而不会降低性能。通过介绍具有相同覆盖区但由不同高度的耦合3-D正方形SRR形成的样品带通滤波器的全波仿真结果,可以证明这一概念,表明具有更高谐振器的滤波器表现出越来越宽的带宽。通过多材料3-D打印制造了两个中心频率分别为1.6和2.45 GHz的滤波器原型。考虑到3-D打印中使用的损耗性金属和介电材料的影响,发现这些原型的测量特性与数值模拟非常吻合,并确认了由3-D SRR制成的滤波器的预计更大带宽插入损耗略高。

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