采用混合3D /喷墨增材制造技术的全打印多层孔耦合贴片天线

Kunal Nate, J. Hester, Michael Isakov, R. Bahr, M. Tentzeris
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引用次数: 20

摘要

本文演示了一种工作在2.4 GHz左右ISM频段的全增材制造多层孔径耦合贴片天线。首次利用混合增材制造技术在GHz频率天线制造中完整打印连续导电层和厚介电层,用于3D天线拓扑制造。通过喷墨打印导电油墨层,实现了3D打印塑料介质层的金属化。作为概念验证,多层醋酸二胺银(DSA)导电油墨沉积在Verowhite聚合物3D打印层的表面形成导电薄层。这种新颖的全印刷天线制造方法可以大规模生产低成本的印刷射频电路和天线,用于各种可扩展的无线传感器网络和物联网(IOT)以及快速RF组件原型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A fully printed multilayer aperture-coupled patch antenna using hybrid 3D / inkjet additive manufacturing technique
In this paper, a fully additively manufactured multilayer aperture-coupled patch antenna operating at the ISM band around 2.4 GHz is demonstrated. For the first time, a hybrid additive manufacturing technique was utilized to fully print consecutive conductive and thick dielectric layers for 3D antennas topologies fabrication in the GHz frequency antenna fabrication. The metallization of 3D printed plastic dielectric layers was performed by inkjet printing layers of conductive ink. As a proof of concept, multiple layers of Diamine Silver Acetate (DSA) conductive ink were deposited to form a conductive thin layer on the surface of the 3D printed layers of Verowhite polymer. This novel fully printed antenna fabrication methodology could enable mass production of low cost printed RF circuits and antennas for a variety of scalable wireless sensor network and Internet of Things (IOT) as well as quick RF component prototyping.
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