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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Design and implementation of evanescent mode waveguide filters using dielectrics and additive manufacturing techniques
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Design and implementation of evanescent mode waveguide filters using dielectrics and additive manufacturing techniques

机译:使用电介质和添加剂制造技术的渐逝模式波导滤波器的设计与实现

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In this contribution, we describe the design of bandpass filters using evanescent mode waveguides and dielectric resonators implemented with additive manufacturing techniques. Two C-band Chebyshev evanescent mode waveguide filters of order five have been designed using a low cost commercial dielectric material (ABSplus), widely used by Fused Deposition Modeling (FDM) 3D printers. The housings of the filters have been manufactured using traditional computer numerical control (CNC) machining techniques. Practical manufacturing considerations are also discussed, including the integration of dielectric and metallic parts. We first discuss two breadboards using two different resonator geometries. We then demonstrate how different transfer functions can be easily implemented by changing the 3D printed parts in the same metallic housing. Breadboards show fractional bandwidths between 3% and 4.6% with return losses better than RL = 18 dB, and spurious free ranges of SFR = 1 GHz. Insertion losses are better than IL = 4.3 dB. Even though dielectric losses from the plastic material are shown to be high, the measured results are quite satisfactory, thereby clearly showing that this strategy maybe useful for the fast production of low cost microwave filters implementing complex geometries. (C) 2020 Elsevier GmbH. All rights reserved.
机译:在这一贡献中,我们描述了使用具有添加剂制造技术的渐逝模式波导和电介质谐振器的带通滤波器的设计。使用低成本的商用介电材料(ABSPlus)设计了两种C频段Chebyshev Evanfercence模式波导滤波器,由融合沉积建模(FDM)3D打印机广泛使用。通过传统的计算机数控(CNC)加工技术,已经制造了过滤器的壳体。还讨论了实际制造考虑,包括介电和金属部件的集成。我们首先使用两个不同的谐振器几何形状讨论两个面包板。然后,我们通过在相同的金属外壳中改变3D印刷部件来展示如何轻松实现不同的传递函数。面包板在返回损耗比RL = 18 dB的返回损耗显示出小数和4.6%,并且SFR = 1 GHz的杂散范围。插入损耗优于IL = 4.3 dB。尽管从塑料材料的介电损耗被示出为高,但测量结果也非常令人满意,从而清楚地表明该策略可能对于实现复杂几何形状的低成本微波滤波器的快速生产。 (c)2020 Elsevier GmbH。版权所有。

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