Flexible Passive near Field Communication Tag for Multigas Sensing Articles uri icon

authors

  • ESCOBEDO, P
  • ERENAS, M.M
  • LOPEZ RUIZ, NURIA
  • CARVAJAL, M.A
  • GONZALEZ CHOCANO, S
  • DE ORBE PAYA, I
  • CAPITAN VALLEY, L.F
  • PALMA, A.J
  • MARTÍNEZ OLMOS, A

publication date

  • February 2017

start page

  • 1697

end page

  • 1703

issue

  • 3

volume

  • 89

International Standard Serial Number (ISSN)

  • 0003-2700

Electronic International Standard Serial Number (EISSN)

  • 1520-6882

abstract

  • In this work we present a full-passive flexible multigas sensing tag for the determination of oxygen, carbon dioxide, ammonia, and relative humidity readable by a smartphone. This tag is based on near field communication (NFC) technology for energy harvesting and data transmission to a smartphone. The gas sensors show an optic response that is read through high-resolution digital color detectors. A white LED is used as the common optical excitation source for all the sensors. Only a reduced electronics with very low power consumption is required for the reading of the optical responses and data transmission to a remote user. An application for the Android operating system has been developed for the power supplying and data reception from the tag. The responses of the sensors have been calibrated and fitted to simple functions, allowing a fast prediction of the gases concentration. Cross-sensitivity has also been evaluated, finding that in most of the cases it is negligible or easily correctable using the rest of the readings. The election of the target gases has been due to their importance in the monitoring of modified atmosphere packaging. The resolutions, and limits of detection measured are suitable for such kinds of applications.

keywords

  • fish spoilage; food quality; radiofrequency identification; humidity sensor; carbon-dioxide; rfid tags; oxygen; frequency; temperature; products