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首页> 外文期刊>Terahertz Science and Technology, IEEE Transactions on >Miniaturized-Element Frequency Selective Surfaces for Millimeter-Wave to Terahertz Applications
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Miniaturized-Element Frequency Selective Surfaces for Millimeter-Wave to Terahertz Applications

机译:毫米波至太赫兹应用的小型化元件频率选择表面

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摘要

This paper presents a single-face, membrane-supported, miniaturized-element frequency selective surface (MEFSS) for image rejection of a J-band upconvertor mixer. In this design, a new miniaturized-element patch-wire MEFSS configuration is proposed to select the upper-side band (USB) response of a wave radiated from an upconvertor. The proposed MEFSS produces a single pole and an adjacent transmission zero to suppress the lower sideband. It is shown that the frequency response of this MEFSS can be predicted by an equivalent circuit model and that the location of pole and zero can be tuned independently with physical parameters. MEFSS elements are supported and protected by a 10 μm thick low-loss polymer membrane which allows flexible handling and minimizes substrate losses. Thickness of the metallic traces is increased to reduce the conductor loss. A salient feature of this design is low sensitivity of its frequency response to the angle of incidence and the absence of a harmonic response. This feature allows placement of the spatial filter in close proximity to radiating elements with spherical wavefronts. The membrane-supported MEFSS is fabricated using a microfabrication method with tolerances that allow such filter implementations up to terahertz frequencies. Performance of the fabricated device is experimentally verified using a free-space measurement setup. Experimental results show that the transmission response has 0.6 dB insertion loss in the passband (221-223 GHz) and more than 25 dB rejection out-of-band (206-208 GHz) which is in good agreement with full-wave simulation and its circuit model prediction.
机译:本文提出了一种用于J波段上变频器混频器的图像抑制的单面膜支撑微型元件频率选择表面(MEFSS)。在此设计中,提出了一种新的小型化单元跳线MEFSS配置,以选择从上变频器发射的波的上边带(USB)响应。提出的MEFSS产生一个单极点和一个相邻的传输零点以抑制下边带。结果表明,该MEFSS的频率响应可以通过等效电路模型进行预测,并且极点和零点的位置可以通过物理参数独立地进行调整。 MEFSS元件由10μm厚的低损耗聚合物膜支撑和保护,该膜可灵活处理并最大程度地减少基板损耗。金属迹线的厚度增加以减少导体损耗。该设计的显着特征是其频率响应对入射角的灵敏度低,并且没有谐波响应。此功能允许将空间滤波器放置在具有球形波前的辐射元件附近。膜支撑的MEFSS是使用微制造方法制造的,其公差允许这种滤波器的实现频率高达太赫兹频率。使用自由空间测量设置通过实验验证了所制造设备的性能。实验结果表明,传输响应在通带(221-223 GHz)中具有0.6 dB的插入损耗,在带外(206-208 GHz)具有25 dB以上的抑制比,这与全波仿真及其仿真结果吻合良好。电路模型预测。

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