A Fully-Printed Organic Smart Temperature Sensor for Cold Chain Monitoring Applications

M. Fattori, C. D. Costa, Joost A. Fijn, E. Genco, P. Harpe, E. Cantatore, M. Charbonneau
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引用次数: 8

Abstract

This paper presents a printed smart temperature sensor on RFID manufactured with organic materials. The system-on-foil exploits printed resistors and a time-based printed OTFT interface to convert temperature to a PWM representation and enable wireless RF communication at 13.56 MHz. The system is also equipped with a dedicated harvesting circuit for wireless power transfer, allowing stand-alone operation. The smart sensor achieves 0.27 KRMS resolution for a 2 $s$ conversion time, a resolution FOM of 294 10-6·J· K2 and a 3 sigma inaccuracy of ±1.2° C over the food monitoring temperature range 3° C to 27° C, after systematic non linearity removal and 3-point calibration. These results demonstrate that inexpensive electronic devices suitable for fresh food monitoring applications can be developed with unipolar printed organic transistor technologies, allowing e.g. integration of smart sensors in food packaging material.
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用于冷链监测应用的全印刷有机智能温度传感器
介绍了一种用有机材料制作的RFID打印智能温度传感器。系统箔利用印刷电阻和基于时间的印刷OTFT接口将温度转换为PWM表示,并实现13.56 MHz的无线射频通信。该系统还配备了用于无线电力传输的专用收集电路,允许独立操作。该智能传感器在2 $s$转换时间内实现0.27 KRMS分辨率,在3°C至27°C的食品监测温度范围内,分辨率FOM为294 10-6·J·K2, 3西格玛误差为±1.2°C。这些结果表明,使用单极印刷有机晶体管技术可以开发出适合新鲜食品监测应用的廉价电子设备,例如,可以将智能传感器集成到食品包装材料中。
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