Reliability Analysis of Screen-printed Tags with Low-power Electronics on Flexible Substrates

Moupali Chakraborty, Rudra Mukherjee, R. Dahiya
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引用次数: 1

Abstract

The additive manufacturing of RFID smart tags typically involves printing of antennas using electrically conductive materials along with the hybrid integration of the off-the-shelf low-power electronic components. In this case, the conductivity of printed material could significantly influence the reliable working of electronics as the electromagnetic performance of the antenna depends on it. In this research, we demonstrate the effect of conductive materials for printed antenna and show how their reliable operation could be attained by using suitable number of coatings. The printed antenna with its low-power electronics circuit is also compared with the conventional copper etched rigid and flexible tags to show the challenges regarding the electromagnetic performance. The printed tags are further subjected to different bending cycles to investigate their mechanical stability under varying strain conditions.
柔性基板上低功耗电子丝网印刷标签的可靠性分析
RFID智能标签的增材制造通常包括使用导电材料打印天线以及混合集成现成的低功耗电子元件。在这种情况下,印刷材料的导电性会显著影响电子设备的可靠工作,因为天线的电磁性能取决于它。在本研究中,我们展示了导电材料对印刷天线的影响,并展示了如何通过使用适当数量的涂层来获得其可靠的工作。并将具有低功耗电子电路的印刷天线与传统的铜蚀刻刚性和柔性标签进行了比较,以显示其在电磁性能方面的挑战。打印的标签进一步受到不同的弯曲循环,以研究其在不同应变条件下的机械稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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