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NOVEL GASEOUS PHASE ETHANOL SENSOR IMPLEMENTED WITH UNDERLOADED RF RESONATOR FOR SENSOR-EMBEDDED PASSIVE CHIPLESS RFIDS

Abstract

This paper presents a novel gaseous phase ethanol resonant sensor implemented with underloaded LC-resonator. The device exhibits large variations in S11 and Group Delay under ethanol exposures. By operating the OV-225 and OV-275 polymer-coated chemi-capacitors at RF frequencies, the E-field confined around the conductor surface sees a maximized polymer exposure surface, thereby improving both the response time and sensitivity. Under exposures of various ethanol concentrations, the OV −225 sensor showed a transient response time constant of ~60s an frequency shift of 24.5MHz, and respective ${\rm S}_{11}$ and Group Delay sensitivities of 3.12e-2 mdB/ppm and 9.49e-2 ps/ppm across the 0–5000ppm ethanol concentration span; the OV-275 version exhibited transient time constant of~30s a frequency shift of 22.5MHz, an S11 and Group Delay sensitivities of 3.71e-1 mdB/ppm and 1.94 e-1 ps/ppm, respectively.

Authors

Chen WT; Stewart KME; Carroll J; Mansour R; Abdel-Rahman E; Penlidis A

Pagination

pp. 2059-2062

Publisher

Institute of Electrical and Electronics Engineers (IEEE)

Publication Date

June 1, 2013

DOI

10.1109/transducers.2013.6627204

Name of conference

2013 Transducers & Eurosensors XXVII: The 17th International Conference on Solid-State Sensors, Actuators and Microsystems (TRANSDUCERS & EUROSENSORS XXVII)

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