帕利烯
数码产品
天线(收音机)
材料科学
全向天线
微加工
可重构天线
柔性电子器件
电气工程
光电子学
电子工程
天线效率
工程类
制作
医学
替代医学
病理
复合材料
聚合物
作者
Yei Hwan Jung,Yijie Qiu,Subin Lee,Ting‐Yen Shih,Yuehang Xu,Ruimin Xu,Juhwan Lee,Amelia A. Schendel,Weigan Lin,Justin C. Williams,Nader Behdad,Zhenqiang Ma
标识
DOI:10.1109/lawp.2015.2510372
摘要
This letter presents a compact planar flexible antenna designed for wireless local area network (WLAN) using simple microfabrication techniques that are compatible with existing state-of-the-art flexible electronic devices. The antenna is fully insulated with biocompatible Parylene C film, which shows a cost-effective and highly feasible approach to making flexible antennas for implantable applications. Coating of ultrathin Parylene C film has shown negligible effects on the return loss and the radiation patterns of the antennas. The characteristics of the proposed antenna have also shown negligible change under different bending conditions. The original WLAN antenna working in air was successfully tuned to operate under implanted condition at 2.4 GHz by tuning the length of the radiator. The measured results showed that the tuned implantable antenna is suitable for integration with flexible and implantable electronics.
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