使用3D合成印刷基板的非均匀介电特性低通滤波器

S. Chaimool, Kamonpan Kaewheang, Chonnipa Thanomdumrongsak, Amornsak Rattanawongsawat
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引用次数: 0

摘要

为克服微带线高阻抗导致的线宽过窄的问题,分析和设计了不同填充率的非均匀介质衬底。随着三维(3D)打印技术的发展,它可以使用单个灯丝材料创建不同的介电常数值,用于微波器件的各个部分。本文介绍了利用非均匀印刷基板,结合无毒材料聚乳酸(PLA)制备新型介质基板,利用3D打印机制备平面低通滤波器。在0.01-6 GHz的频率范围内,衬底的介电常数和损耗正切可以用不同的填充密度进行定制。设计并实现了两个截止频率为2.2 GHz的低通滤波器,包括阶跃阻抗型和存根型。仿真结果与实测结果吻合良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lowpass Filters with Non-uniform Dielectric Properties using 3D Synthetic Printed Substrates
To overcome very narrow line widths from high impedances of microstrip line, non-uniform dielectric substrates with different infill percentages were analyzed and designed. With current development in three-dimensional (3D) printing technology, it can create the different permittivity values using a single filament material, which is used in the various portions of a microwave device. This paper presents the fabricated planar lowpass filters using non-uniform printed substrates that combines of nontoxic material polylactic acid (PLA) to produce novel dielectric substrates using 3D printer. Dielectric constant and loss tangent of the proposed substrate can be customed with different infill densities over a frequency range of 0.01-6 GHz. Two lowpass filters with a cutoff frequency of 2.2 GHz including a stepped impedance type and a stub type are designed and implemented. Good agreement between simulation and measurement results.
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