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Automated antenna impedance adjustment for Near Field Communication (NFC)

机译:用于近场通信(NFC)的自动天线阻抗调整

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Near Field Communication (NFC) is a very intuitive way to open a communication link, to authenticate, or to implement a payment by simply bringing two mobile personal devices closely together. NFC is based upon reliable contactless card technology and combines most prominent protocol standards in a specification driven by the NFC Forum. Devices with a NFC interface operate at 13.56 MHz via inductive loop antennas. However, these operate operated in a very different environment than contactless cards. Metal, the presence of several other antennas, and market demands for compact electronic devices are driving requirements for antennas to operate on ferrite foils, resulting in significant tolerances on antenna impedance. In NFC Reader mode, the antennas operate in a resonance circuit, making this de-tuning critical. This paper presents a prototype implementation for automated antenna impedance adjustment based upon Digitally Tunable Capacitors (DTCs). To show the benefit, the paper explains efficiency for contactless power transfer by practical measurements, comparing three scenariosfixed impedance adjustment, matching with tolerance, and automated readjustment using a DTC.
机译:近场通信(NFC)是一种非常直观的方法,可以通过将两个移动个人设备紧密靠近在一起来打开通信链接,进行身份验证或执行付款。 NFC基于可靠的非接触卡技术,并在NFC论坛推动的规范中结合了最杰出的协议标准。具有NFC接口的设备通过感应环形天线以13.56 MHz的频率运行。但是,这些设备在与非接触卡不同的环境中运行。金属,其他几种天线的存在以及对紧凑型电子设备的市场需求正在推动天线在铁氧体箔片上运行的要求,从而导致天线阻抗存在很大的容差。在NFC阅读器模式下,天线工作在谐振电路中,这使得失谐变得至关重要。本文介绍了一种基于数字可调电容器(DTC)的天线阻抗自动调整的原型实现。为了展示其优势,本文通过实际测量,比较三种情况下的固定阻抗调整,匹配容差以及使用DTC的自动重新调整来说明非接触式功率传输的效率。

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