基于亚微米厚微金属网格的光学透明、机械柔性共面波导馈电宽带天线

Jing Pan, Yuanqing Yao, Liu Yang, Hui Li, Sailing He
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引用次数: 0

摘要

提出了一种光学透明的(cid:13)柔性共面波导(CPW)馈电宽带天线,并进行了实验验证,该天线基于亚微米厚微金属网格(cid:22) - mm)。由于厚度仅为190 nm的银(cid:22) -MM具有高的可见光透过率(83.1%)和低片阻(1.75 Ω/sq),因此具有非常低的插入损耗,为高性能透明天线提供了良好的馈源。我们的天线测量的s11光谱与不透明的对应光谱匹配得很好。测量到的分数带宽在3.4 ~ 4.25 GHz范围内为22%。数值模拟结果表明,该透明天线在3.45 GHz频段的辐射效率和峰值增益分别为89.7%和3.03 dBi。除了良好的光学和电磁性能外,我们的透明天线还具有很高的(cid:13)灵活性。尽管透明天线的厚度为亚微米(cid:22) - mm,但其透明度、辐射效率和力学性能明显优于以往报道的透明天线,并且其整体尺寸和辐射增益也相当。因此,我们的透明天线具有优异的综合性能,在实际应用以及(cid:13)柔性和可穿戴电子(cid:12)领域的新兴应用中显示出巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optically Transparent and Mechanically Flexible Coplanar Waveguide-fed Wideband Antenna Based on Sub-micron Thick Micro-metallic Meshes
|An optically transparent and (cid:13)exible coplanar waveguide (CPW)-fed wideband antenna is proposed and demonstrated experimentally based on sub-micron thick micro-metallic meshes ( (cid:22) -MMs). Due to the high visible transmittance (83.1%) and low sheet resistance (1.75 Ω/sq) of the silver (cid:22) -MM with thickness of only 190 nm, the transparent CPW has very low insertion loss and provides a good feed to the high-performance transparent antenna. The measured S 11 spectrum of our antenna matches well with that of the opaque counterpart. The measured fractional bandwidth is 22% from 3.4 to 4.25 GHz. Based on numerical modeling, whose accuracy is experimentally veri(cid:12)ed, the radiation efficiency and peak gain of our transparent antenna at 3.45 GHz are calculated to be 89.7% and 3.03 dBi, respectively. Besides the good optical and electromagnetic properties, our transparent antenna is also highly (cid:13)exible. Despite the sub-micron thick (cid:22) -MMs, the transparency, radiation efficiency, and mechanical properties of our transparent antenna are obviously superior to those of the transparent antennas reported previously, and the overall size and radiation gain are also comparable. Therefore, our transparent antenna has an excellent comprehensive performance, showing great potential for practical applications as well as the emerging applications in the (cid:12)eld of (cid:13)exible and wearable electronics.
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