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Ultra-low-power components for an RFID Tag with physical and chemical sensors

机译:具有物理和化学传感器的RFID标签的超低功耗组件

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摘要

In this work the development and optimization of the main components for a multisensing flexible Tag with RFID communication capabilities and integrated physical and chemical sensors for logistic datalogging applications will be reported. For this specific scenario, several constraints must be considered: power consumption must be limited for long-term operation, reliable ISO compliant RFID communication must be implemented, and special encapsulation issues must be faced for reliable sensor integration. In this work, the developments on application specific electronic interfaces and on ultra-low-power Metal OXdide semiconductor (MOX) gas sensors will be reported. The electronics for sensor control and readout as well as for RFID communication are based on an ultra-low-power MSP430 microcontroller from Texas Instruments together with a custom RFID front-end based on analog circuitry and a CPLD digital device, and are designed to guarantee a passive ISO15693 compliant RFID communication in a range up to 6 cm. A thin film battery for sensor operation is included, thus data acquisition and storage can be accomplished when no reader field is present. This design allows the user to access both the traceability and sensor information even when the on-board battery is exhausted. The physical sensors for light, temperature and humidity are commercially available devices, while for chemical gas sensing innovative MOX sensors are developed, based on ultra-low-power micromachined hotplate arrays specifically designed for flexible Tag integration purposes. A single MOX sensor requires only 8.9 mW for continuous operation, while temperature modulation and discontinuous sensor operation modes are implemented to further reduce the overall power consumption. The development of the custom control and RFID front-end electronics, together with innovative ultra-low-power MOX sensor arrays with flexible circuit encapsulation techniques will be described.
机译:在这项工作中,将报告开发和优化具有RFID通信功能的多感应柔性标签以及用于物流数据记录应用程序的集成物理和化学传感器的主要组件。对于这种特定情况,必须考虑几个约束条件:长期运行必须限制功耗,必须实现符合ISO要求的可靠RFID通信,并且必须实现特殊的封装问题以实现可靠的传感器集成。在这项工作中,将报告专用电子接口和超低功耗金属氧化物半导体(MOX)气体传感器的开发。用于传感器控制和读出以及RFID通信的电子设备基于德州仪器(TI)的超低功耗MSP430微控制器,以及基于模拟电路和CPLD数字设备的定制RFID前端,旨在确保符合ISO15693的无源RFID通信,最大范围为6 cm。包括用于传感器操作的薄膜电池,因此,当不存在读取器字段时,可以完成数据采集和存储。即使车载电池电量耗尽,该设计也允许用户访问可追溯性和传感器信息。用于光,温度和湿度的物理传感器是可商购的设备,而用于化学气体传感的创新型MOX传感器是基于专门为灵活标签集成目的而设计的超低功率微加工热板阵列而开发的。单个MOX传感器连续运行仅需要8.9 mW,而温度调制和不连续传感器运行模式则可进一步降低整体功耗。将描述定制控制和RFID前端电子设备以及具有灵活电路封装技术的创新型超低功耗MOX传感器阵列的开发。

著录项

  • 来源
    《Microsystem Technologies》 |2008年第5期|581-588|共8页
  • 作者单位

    CNR––IMM Bologna Via P. Gobetti 101 40129 Bologna Italy;

    CNR––IMM Bologna Via P. Gobetti 101 40129 Bologna Italy;

    CNR––IMM Bologna Via P. Gobetti 101 40129 Bologna Italy;

    CNR––IMM Bologna Via P. Gobetti 101 40129 Bologna Italy;

    Dipartimento di Ingegneria Elettronica e dell’Informazione Università di Perugia via Duranti 93 06125 Perugia Italy;

    Dipartimento di Ingegneria Elettronica e dell’Informazione Università di Perugia via Duranti 93 06125 Perugia Italy;

    Departament d’Electronica Universitat de Barcelona Martí i Franqués 1 08028 Barcelona Spain;

    Departament d’Electronica Universitat de Barcelona Martí i Franqués 1 08028 Barcelona Spain;

    Departament d’Electronica Universitat de Barcelona Martí i Franqués 1 08028 Barcelona Spain;

    Dept. IW-SI EADS Innovation Works 81663 München Germany;

    Dept. IW-SI EADS Innovation Works 81663 München Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    RFID; Ultra-low-power; MOX sensors; Logistics;

    机译:RFID;超低功耗;MOX传感器;物流;

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