射频识别用聚合物天线线圈的性能分析

S. Cichos, J. Haberland, H. Reichl
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引用次数: 63

摘要

感应耦合RFID(射频识别)系统的应答器标签、标签或模块通常由衬底组成,衬底上安装有适当的应答器芯片或应答器模块。天线线圈结构在这种基板上,通常由PET, PVC或聚酰亚胺制成,通常由绕线或蚀刻铜或铝结构组成。作为一种低成本的替代品,导电聚合物厚膜浆料可用于生产电感耦合应答器的天线线圈。这些浆料是通过丝网印刷或点胶应用的。在批量生产中,其结果是减少了材料成本和加工时间。导电聚合物糊中最常用的填料是银片,它们在固化过程中相互连接。这些化合物的电导率比铜或铝低。因此,由导电聚合物糊制成的应答器线圈具有实质上较高的欧姆损耗,从而影响RFID应答器的功能。本文详细地考虑了应答器的最小工作磁场强度和功率范围。采用了智能卡嵌体尺寸(47 /spl倍/ 74 mm/sup 2/)的选定参考设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of polymer based antenna-coils for RFID
Transponder-labels, -tags or -modules of inductively coupled RFID (Radio Frequency Identification)-systems commonly consist of a substrate with an appropriate transponder-chip or transponder-module mounted on top. The antenna coil is structured on this substrate, usually made of PET, PVC or polyimide and usually consists of a wound wire or etched copper or aluminium structures. As a low cost alternative, conductive polymeric thick film pastes can be used for the production of antenna coils for inductively coupled transponders. These pastes are applied by screen printing or dispensing. In mass production the consequence is a reduction of material costs and processing time. Most popular fillers of the conductive polymer pastes are silver flakes which get connected during the curing process. The conductivities of these compounds are lower in comparison with copper or aluminium. Therefore, the transponder coils made of conductive polymer pastes have substantially higher ohmic losses which influence the functionality of RFID transponders. In this paper, the minimum operating magnetic field strength and powering range of the transponder is considered in detail. A selected reference design with the size of a smart card inlay (47 /spl times/ 74 mm/sup 2/) is used.
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