衰减器(电子)
材料科学
石墨烯
插入损耗
光电子学
衰减
回波损耗
共面波导
光衰减器
电阻抗
电气工程
微波食品加热
光学
计算机科学
电信
纳米技术
复合材料
工程类
物理
光纤传感器
天线(收音机)
纤维
作者
Lu Ju,Zhen‐Guo Liu,Buyun Yu,Hao Chen,Zhi-Da Xiao,Weibing Lu
标识
DOI:10.1109/tmtt.2022.3164708
摘要
In this article, a flexible, stretchable, and dynamically tunable attenuator based on coplanar waveguide (CPW) and graphene is proposed. Soft silicone elastomer and serpentine metal structure are used to realize the flexible, stretchable, and biocompatible characteristics of the CPW. A graphene sandwich structure (GSS) is placed on the upper surface of the CPW to dissipate the electromagnetic wave, achieving the dynamically adjustable characteristics of the stretchable attenuator. When the surface impedance of the GSS is tuned by applying a proper bias voltage, the simulated and measured results reveal that the attenuation tuning range is dynamically tuned from 4–11 dB with a low reflection below −10 dB. In addition, the fabricated attenuator is simultaneously optimized to work at conditions of the normal state, 180° bending and 130% stretching, with acceptable changes between insertion loss and return loss up to 6 GHz. The attenuator covers the medical frequency band of 2.4–2.483 GHz and the 5th generation (5G) communication frequency band of 3.5–3.8 GHz, which demonstrates that the attenuator has potential applications in stretchable electronic systems.
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