用于医疗物联网应用的双频柔性平面倒f天线

I. Marasco, G. Niro, F. Rizzi, A. D’orazio, M. de Vittorio, M. Grande
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引用次数: 1

摘要

平面倒f天线(PIFAs)由于其平面拓扑结构和紧凑的尺寸以及多频段工作频率的特点,越来越受到科学界和科技界的重视。在创新基板上设计和制造pifa对于促进其在无线传感器网络系统中的集成以及增强医疗保健物联网(IoHT)网络节点的连通性至关重要。在这项工作中,我们提出了一种紧凑型(13×26 mm2) PIF a的制造和表征,该PIF a放置在柔性250 μ m厚的聚萘二甲酸乙二醇酯(PEN)衬底上,可在5G频谱的sub-6GHz和6GHz频段工作。该天线是通过纳米尺寸公司的蜻蜓LTM多材料3D打印机实现的。使用3D打印机需要快速成型,并增加了过程的可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual band flexible Planar Inverted-F antenna for Internet of Healthcare Things applications
Planar Inverted-F antennas (PIFAs), due to their planar topology and compact dimensions combined with multi-band working frequencies, are becoming increasingly popular in the scientific community and the technology industry places so much emphasis on them. The design and the fabrication of PIFAs on innovative substrates become crucial to facilitate their integration in wireless sensor network systems and to enhance the connectivity of Internet of Healthcare Things (IoHT) network nodes. In this work we propose the fabrication and characterization of a compact (13×26 mm2) PIF A placed on a flexible 250 um-thick Polyethylene Naphthalate (PEN) substrate working in both the sub-6GHz and 6GHz bands of 5G spectrum. The antenna has been realized by means of a multi-material 3D printer, NanoDimension's Dragonfly LTM. The use of the 3D printer entails the rapid prototyping and increases the scalability of the process.
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