超高频RFID标签在潮湿环境中的可靠性

K. Saarinen, L. Frisk
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引用次数: 6

摘要

射频识别(RFID)是身份识别和安全领域的一项新兴技术。有了RFID标签,就可以利用无线电波单独可靠地识别物体。然而,由于众多的应用,RFID标签暴露在各种环境条件下,这可能会损害其可靠性。长期可靠性研究一般采用加速环境试验。在早期的研究中,高湿和高温的结合已经发现对RFID标签非常有害。因此,在本研究中,三个加速湿度测试之间的失败时间和机制进行了比较,以找到最适合RFID标签的测试。采用恒湿试验和湿循环试验对采用聚对苯二甲酸乙二醇酯(PET)衬底的无源超高频(UHF) RFID标签进行了测试。根据本研究,在潮湿环境下进行可靠性研究时,应慎重考虑试验条件的选择。当存在高湿度和高温的组合时,PET基材容易水解。因此,标准85°C/85%测试对于PET基板的RFID标签非常苛刻。另一方面,如果使用循环试验而不是恒定试验来加速试验,则失效机制可能会改变。因此,研究湿度变化的影响是很重要的,但由于试验产生的应力不同,恒湿试验不能直接被更快的湿度循环试验所取代。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability of UHF RFID tags in humid environments
Radio frequency identification (RFID) is an emerging technology in the field of identification and security. With RFID tags it is possible to identify objects individually and reliably using radio waves. However, due to numerous applications, RFID tags are exposed to various environmental conditions which may impair their reliability. Long-term reliability is generally studied using accelerated environmental tests. In earlier studies a combination of high humidity and high temperature has been found to be very harmful to RFID tags. Consequently, in this study failure times and mechanisms between three accelerated humidity tests were compared to find a test which is most suitable for RFID tags. A passive ultra high frequency (UHF) RFID tag with a polyethylene terephthalate (PET) substrate was tested using two constant humidity tests and a humidity cycling test. According to this study, the selection of test conditions for reliability studies in humid environments should be carefully considered. PET substrate is susceptible to hydrolysis when a combination of high humidity and high temperature is present. Consequently, a standard 85°C/85% test is very harsh for RFID tags with PET substrate. On the other hand if a cycling test is used instead of a constant test to acclerate the test, the failure mechanism may alter. Therefore it is important to investigate the effects of changing humidity, but a constant humidity test cannot be directly replaced by the faster humidity cycling test due to the different stresses caused by the tests.
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