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TUNING OF ON-METAL UHF RFID INLAY TAGS LOADED WITH A THIN MAGNETO-DIELECTRIC SLAB

机译:薄电磁板加载的超高频RFID嵌体标签的调整

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The input impedance of UHF radio frequency identification (RFID) inlay tags is analyzed when a thin material slab is placed between the antenna and a metal surface. The two-layer slab is made of a thin magneto-dielectric Emerson&Cuming Eccosorb MCS-U layer with high permeability/permittivity and a thin Rohacell layer. Two common commercial UHF tag antennas are considered: the Alien ALN-9640 Squiggle and the ALN-9654 G inlays. The antenna impedance is evaluated both numerically and experimentally, and the power transmission coefficient is calculated in the whole UHF RFID frequency band. It is shown that a tag nonintrinsically suitable for on-metal applications (e.g. inlay tags) can be used on a conductive surface in a low-profile configuration. Indeed, when the above magnetic substrate is used, the antenna input impedance rises up from the very low values induced by the presence of a near conducting surface. Then, with a simple trimming applied to the antenna layout, it is possible to tune the antenna to achieve a conjugate impedance matching with the chip impedance. It is demonstrated how an effective tuning is possible through some simple straight cuts of some antenna parts, without requiring a redesign of a new optimized tag antenna.
机译:当在天线和金属表面之间放置一块薄材料平板时,将分析UHF射频识别(RFID)嵌入标签的输入阻抗。该两层平板由具有高磁导率/介电常数的薄磁电介质Emerson&Cuming Eccosorb MCS-U层和薄Rohacell层制成。考虑了两种常见的商用UHF标签天线:Alien ALN-9640 Squiggle和ALN-9654 G嵌体。通过数字和实验评估天线阻抗,并在整个UHF RFID频带中计算功率传输系数。示出了非本征地适合于金属上应用的标签(例如,嵌体标签)可以以低轮廓构造在导电表面上使用。实际上,当使用上述磁性基板时,天线输入阻抗从由于存在近导电表面而引起的非常低的值上升。然后,通过将简单的修整应用于天线布局,可以调谐天线以实现与芯片阻抗匹配的共轭阻抗。演示了如何通过对某些天线零件进行简单的直切即可实现有效的调谐,而无需重新设计新的优化标签天线。

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