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LTCC Flow Sensor with RFID Interface

机译:带有RFID接口的LTCC流量传感器

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摘要

The idea of battery-less flow sensors and their implementation in wireless measurement systems is presented in this research article. The authors take advantage of their latest achievements in the Low Temperature Co-fired Ceramic (LTCC) technology, RadioFrequency Identification (RFID) technique, and increasing availability of low power electronics in order to get rid of the need to use electrochemical cells in a power supply unit of the elaborated device. To reach this assumption, special care has to be put on the energy balance in such an autonomous sensor node. First of all, the new concept of an electromagnetic LTCC turbine transducer with a signal conditioner which only draws a current of around 15 µA, is proposed for measuring a flow rate of fluids. Next, the autonomy of the device is showed; measured data are gathered in a microcontroller memory and sent to a control unit via an RFID interface which enables both information exchange and power transfer. The energy harvested from the electromagnetic field is used to conduct a data transmission, but also its excess can be accumulated, so the proposed sensor operates as a semi-passive transponder. The total autonomy of the device is achieved by implementing a second harvester that continually gathers energy from the environmental electromagnetic field of common active radio systems (e.g., Global System for Mobile Communications (GSM), wireless network Wi-Fi).
机译:这篇研究文章介绍了无电池流量传感器的概念及其在无线测量系统中的实现。作者充分利用了在低温共烧陶瓷(LTCC)技术,射频识别(RFID)技术以及低功率电子产品可用性方面取得的最新成就,从而摆脱了在电源中使用电化学电池的需求精制设备的供应单元。为了达到这个假设,必须特别注意这种自主传感器节点中的能量平衡。首先,提出了一种带有信号调节器的电磁LTCC涡轮换能器的新概念,该信号调节器仅吸收约15 µA的电流,用于测量流体的流速。接下来,显示设备的自治性;测量数据收集在微控制器存储器中,并通过RFID接口发送到控制单元,该接口可实现信息交换和功率传输。从电磁场中收集的能量用于进行数据传输,但多余的能量也可以累积,因此建议的传感器用作半无源应答器。通过实施第二台收割机来实现设备的完全自主性,该收割机不断从普通有源无线电系统(例如,全球移动通信系统(GSM),无线网络Wi-Fi)的环境电磁场中收集能量。

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