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Improving the${Q}$-Factor of Printed HF RFID Loop Antennas on Flexible Substrates by Condensing the Microstructures of Conductors

机译:通过冷凝柔性基板上的HF RFID环形天线的印刷因子,改善 $ {Q} $ -印刷HF RFID环形天线的因子。导体

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摘要

High frequency (HF) radio frequency identification (RFID) loop antennas are popular for HF RFID, energy transfer and near field communication applications. One of the major parameters defining the working range of HF RFID antennas is theirn${Q}$n-factor. Printing techniques are the ideal method for mass fabrication of HF RFID loop antennas. However, due to the relatively low conductivity of the inks available on the market, then${Q}$n-factor of the printed HF loop antenna tends to be low and in many cases, fails to meet the working range requirements. This paper reports two methods to condense the microstructures of the conductors in order to improve then${Q}$n-factors of printed HF RFID loop antennas. Both thermal compression (pressing the sample at elevated temperature) and near-infrared annealing are studied, and the results have demonstrated that both approaches are efficient in improving then${Q}$n-factors of printed loop antennas.
机译:高频(HF)射频识别(RFID)环形天线广泛用于HF RFID,能量传输和近场通信应用。定义HF RFID天线工作范围的主要参数之一是它们的n $ {Q} $ n因子。打印技术是大规模制造HF RFID环形天线的理想方法。但是,由于市场上出售的油墨的电导率较低,因此 $ {Q} $ n因子往往很低,并且在许多情况下不能满足工作范围要求。本文报告了两种方法来凝缩导体的微观结构,以改善然后 $ {Q} $ n因子。研究了热压缩(在高温下对样品加压)和近红外退火,结果表明这两种方法都可以有效地改善当时的温度。在线式xmlns:xlink =“ http://www.w3.org / 1999 / xlink“> $ {Q} $ 印刷环形天线的n因子。

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