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首页> 外文期刊>Proceedings >Evaluation of MOX Sensor Characteristics in Ultra-Low Power Operation Modes: Application to a Semi-Passive RFID Tag for Food Logistics
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Evaluation of MOX Sensor Characteristics in Ultra-Low Power Operation Modes: Application to a Semi-Passive RFID Tag for Food Logistics

机译:超低功率运行模式下MOX传感器特性的评估:在食品物流的半无源RFID标签中的应用

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Most of the battery powered systems with integrated sensors need low power consumption modes to enlarge the operation time. In the case of the fruit logistic chain, the fruit quality may be controlled by the detection of some gases as ethylene, acetaldehyde and ammonia, that are related to maturation, oxygen stress and refrigeration leakage. We report the integration of an ultra-low power (ULP) metal oxide (MOX) sensor array inside a Radio Frequency IDentification (RFID) 13.56 MHz ISO/IEC 15693 compliant tag with temperature, humidity and light sensors and data logging capabilities. Pulsed Temperature Operation (PTO), which consists in switching on and off the sensor heater, was used to reduce power consumption more than three orders of magnitude, from 14 mW down to 7 ??W. The sensor behavior was characterized in terms sensitivity for ammonia.
机译:大多数带有集成传感器的电池供电系统都需要低功耗模式来延长运行时间。就水果物流链而言,可以通过检测与成熟,氧气胁迫和冷藏泄漏有关的某些气体(如乙烯,乙醛和氨)来控制水果质量。我们报告了在符合温度/湿度和光传感器以及数据记录功能的符合射频识别(RFID)13.56 MHz ISO / IEC 15693的标签内集成了超低功耗(ULP)金属氧化物(MOX)传感器阵列。脉冲温度操作(PTO)包括打开和关闭传感器加热器,用于将功耗从14 mW降低到7ΩW超过三个数量级。用对氨的敏感性来表征传感器的行为。

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