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首页> 外文期刊>Journal of Imaging Science and Technology >Hybrid Stacked RFID Antenna Coil Fabricated by Ink Jet Printing of Catalyst with Self-assembled Polyelectrolytes and Electroless Plating
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Hybrid Stacked RFID Antenna Coil Fabricated by Ink Jet Printing of Catalyst with Self-assembled Polyelectrolytes and Electroless Plating

机译:自组装聚电解质和化学镀催化剂的喷墨印刷混合射频天线叠层线圈

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This article describes a method of forming a stacked hybrid metal structure and pattern to enhance radio-frequency identification antenna coil inductance. The essential strategies included the use of multilayer self-assembled polyelectrolytes to modify the surface property of substrates, an ink jet printing process for a Pd containing catalyst, and a stacked hybrid metal layer formed by electroless plating in subsequent processes. The results demonstrate that the minimum line width and line spacing can reach 100 μm/100 μm, and electrical performance is compared to prior research in employing different approaches. The method presented in this article enhances the capability by adapting to any substrate surface using the self-assembled polyelectrolyte technique. Therefore, results were verified on different substrates, such as PI, PET, and FR-4; satisfactory electric performance for application was obtained. In detail, the inductance of the antenna improved from 300 nH to 20 μH for a monolayer coil, and 600 nH to 50 μH for a double layer coil, depending on the metal thickness.
机译:本文介绍了一种形成堆叠式混合金属结构和图案以增强射频识别天线线圈电感的方法。基本策略包括使用多层自组装聚电解质来修饰基材的表面性能,用于含Pd催化剂的喷墨印刷工艺以及在后续工艺中通过化学镀形成的堆叠式杂化金属层。结果表明,最小线宽和线间距可以达到100μm/ 100μm,并且在采用不同方法的情况下,将电气性能与现有研究进行了比较。本文介绍的方法通过使用自组装聚电解质技术适应任何基材表面来增强功能。因此,在不同的基材(例如PI,PET和FR-4)上验证了结果;获得了令人满意的应用电性能。详细地说,取决于金属厚度,天线的电感对于单层线圈从300 nH提高到20μH,对于双层线圈从600 nH提高到50μH。

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