Escobedo Pablo, Carvajal Miguel A, Capitán-Vallvey Luis F, Fernández-Salmerón José, Martínez-Olmos Antonio, Palma Alberto J
ECsens, CITIC-UGR, Department of Electronic and Computer Technology, ETSIIT University of Granada, Granada E-18071, Spain.
ECsens, Department of Analytical Chemistry, Faculty of Sciences, University of Granada, Granada E-18071, Spain.
Sensors (Basel). 2016 Jul 14;16(7):1085. doi: 10.3390/s16071085.
This work presents the design, fabrication, and characterization of a passive printed radiofrequency identification tag in the ultra-high-frequency band with multiple optical sensing capabilities. This tag includes five photodiodes to cover a wide spectral range from near-infrared to visible and ultraviolet spectral regions. The tag antenna and circuit connections have been screen-printed on a flexible polymeric substrate. An ultra-low-power microcontroller-based switch has been included to measure the five magnitudes issuing from the optical sensors, providing a spectral fingerprint of the incident electromagnetic radiation from ultraviolet to infrared, without requiring energy from a battery. The normalization procedure has been designed applying illuminants, and the entire system was tested by measuring cards from a colour chart and sensing fruit ripening.
这项工作展示了一种具有多种光学传感能力的超高频波段无源印刷射频识别标签的设计、制造和特性。该标签包括五个光电二极管,以覆盖从近红外到可见光和紫外光谱区域的宽光谱范围。标签天线和电路连接已通过丝网印刷在柔性聚合物基板上。已包含一个基于超低功耗微控制器的开关,用于测量来自光学传感器的五个量值,从而提供从紫外到红外的入射电磁辐射的光谱指纹,而无需电池供电。已设计应用光源的归一化程序,并通过测量色卡和感知水果成熟度对整个系统进行了测试。