采用异质集成技术的透光微波威尔金森功率分配器

0 ENGINEERING, ELECTRICAL & ELECTRONIC
Rui Geng;Xiaolian Chen;Zhao-Hua Xu;Xiao-Liang Ge;Zhi-Jun Qin;Liu Zhang;Guowei Fan;Yang Zhu;Wenming Su;Su Xu
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引用次数: 0

摘要

在开发用于智慧城市和光电共孔径集成无线通信的大孔径透明天线阵列过程中,透明电磁器件受到广泛关注。作为透明天线阵列的关键部件,光学透明微波功率分配器需要不同片状电阻的导电薄膜来实现高传输和低相互耦合,在实际应用中仍面临挑战。在这里,我们通过异构集成低损耗金属网和高损耗氧化铟锡(ITO),实验演示了一种高性能的光学透明八通道威尔金森功率分配器。在 1.7 至 2.5 GHz 的无线电频段(中心频率为 2.1 GHz)和 380 至 760 nm 的光学频段上,功率分配器的隔离度高于 20 dB,透明度高于 72%,传输系数约为 -9.6 至 -10.7 dB。我们的演示为未来的可调谐透明阵列天线系统和光电共孔集成多功能应用铺平了道路。
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 Microwave Wilkinson Power Divider With Heterogeneous Integration
Transparent electromagnetic devices have received extensive attention in the development of large-aperture transparent antenna arrays for smart cities and optoelectronic co- aperture integrated wireless communication. As the key component of transparent antenna arrays, an optically transparent microwave power divider that requires conductive films with various sheet resistances for high transmission and low mutual coupling still remains challenges in practical realization. Here, we experimentally demonstrate a high-performance optically transparent eight-channel Wilkinson power divider by heterogeneously integrated low-loss metal mesh and high-loss indium tin oxide (ITO). Over the radio frequency band from 1.7 to 2.5 GHz (the center frequency is 2.1 GHz) and optical band from 380 to 760 nm, the isolation of the power divider is higher than 20 dB, the transparency is higher than 72%, and the transmission coefficient is around −9.6 to −10.7 dB. Our demonstration paves the way for future tunable transparent array antenna systems and optoelectronic co- aperture integrated multifunctional applications.
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CiteScore
6.00
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