论文标题

金属网格的红外透明电磁屏蔽窗具有在广泛范围内平衡的屏蔽特性

Metal Mesh-Based Infrared Transparent Electromagnetic Shielding Windows with Balanced Shielding Properties over a Wide Frequency Range

论文作者

Liang, Yuanlong, Wen, Kui, Wu, Zhaofeng, Pan, Jisheng, Liu, Wencong, Yao, Lixiang, Liu, Peiguo, Huang, Xianjun

论文摘要

随着电磁环境的复杂性的增加,电磁干扰已经成为光电系统的重要问题。金属网膜是一种广泛使用的电磁屏蔽材料,具有可见和红外透明度。但是,先前报道的网格材料的屏蔽性能取决于频率。在这里,我们报告了一个基于金属网格的红外透明电磁屏蔽窗,并具有不规则的图案。使用紫外线光刻技术在蓝宝石底物上制备网状涂层,并在维持高红外光学透明度的同时,在1.7〜18 GHz的宽频率范围内提供有效的电磁屏蔽有效性。此外,低频和高频范围之间的屏蔽效率没有明显的变化,在整个频率带中都表现出平衡的屏蔽特性。这项工作对于保护红外光电设备免受电磁干扰可能很重要。

With the increasing complexity of the electromagnetic environment, electromagnetic interference has already been an important problem for optoelectronic systems to be reckoned with. The metal mesh film is a kind of widely used electromagnetic shielding material with both visible and infrared transparency. However, the shielding performance of previously reported mesh materials is frequency dependent. Here, we report an infrared-transparent electromagnetic shielding windows based on metal mesh with irregular patterns. The mesh coatings are prepared on sapphire substrate using ultraviolet photolithography technology, and provide efficient electromagnetic shielding effectiveness of more than 20 dB in the wide frequency range of 1.7~18 GHz while maintaining high infrared optical transparency. In addition, there is no distinct variation in shielding effectiveness between low and high frequency range, exhibiting a balanced shielding characteristic throughout a broad frequency band. This work could be significant in protecting infrared optoelectronic devices from electromagnetic interference.

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