⚡ 本页包含 AI 生成的分析内容,仅供参考
该论文实现了一个基于有机半导体的电感耦合64位RFID标签,工作在13.56MHz,数据率为787b/s,旨在以低成本塑料标签替代条形码。
M. J. Beenhakkers3, C. W. Sele3, N. A. J. M. van Aerle3, G. H. Gelinck4, J. Genoe1, P. Heremans1,2 1 IMEC, Leuven, Belgium, 2K. U. Leuven, Leuven, Belgium Polymer Vision, Eindhoven, The Netherlands 4 TNO Science and Industry, Eindhoven, The Netherlands 3 Research directed towards 13.56MHz organic RFID tags is one of the drivers for the field of organic electronics, because low-cost high-volume plastic RFID tags could replace barcodes in the future. A capacitively-coupled 64b organic RFID tag operating at 125kHz has been demonstrated in [1]. Inductively-coupled load modulation at 13.56MHz has been reported in [2]. However, the combination of both, a 64b organic RFID tag, inductively-coupled at 13.56MHz has not been reported before. The organic 64b transponder chip is fabricated on a 25μm thin plastic substrate using organic bottom-gate thin-film transistors. The organic electronics technology that is used, was developed by
K. Myny1, S. Van Winckel1,2, S. Steudel1, P. Vicca1, S. De Jonge1,