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Electronically Re-Writable Chipless RFID Tag Using Solid State Metal-Insulator-Metal Switches on Paper Substrate

机译:使用纸基上的固态金属-绝缘体-金属开关的电子可重写无芯片RFID标签

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In this article, we present the design and results of an electronically re-writable chipless RFID tag on paper substrate. This tag consists of two resonators build around a modified shorted dipole, integrated with a non-volatile Metal-Insulator-Metal (MIM) switch, which tunes the electrical length of each resonator to resonate at two different frequencies, depending on state of the switch. One can electronically reconfigure the tag using low power DC pulses to change its RF signature. The integrated MIM switch has a layer architecture of Silver-Nafion-Aluminum, formed exclusively using an in-house process in ambient laboratory conditions, notably without the use of any `clean room' facilities. Operating mechanism of the tag is validated with the help of developed electrical equivalent model. This study proves the concept of realizing `electronically reconfigurable' chipless tags on flexible and low cost substrates, with a fabrication process compatible with mass production.
机译:在本文中,我们介绍了在纸基材上的电子可重标记的ChipleS RFID标签的设计和结果。该标签由两个谐振器构成,围绕改进的短路偶极子构建,与非易失性金属 - 绝缘体 - 金属(MIM)开关集成,该开关调谐每个谐振器的电长以在两个不同的频率下谐振,这取决于开关的状态。可以使用低功率直流脉冲以电子方式重新配置标签以改变其RF签名。集成的MIM开关具有银铝的层架构,专门在环境实验室条件下使用内部过程,特别是在不使用任何“洁净室”设施的情况下。在发达的电力等效模型的帮助下验证了标签的操作机制。本研究证明了在柔性和低成本基板上实现“电子可重新配置”芯片标签的概念,具有与批量生产兼容的制造工艺。

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