Title :
A novel integrated acoustic gas and temperature sensor
Author :
Sternhagen, Jason D. ; Wold, Cyle E. ; Kempf, Wade A. ; Karlgaard, Matt ; Mitzner, Kraig D. ; Mileham, Russell D. ; Galipeau, David W.
Author_Institution :
Dept. of Electr. Eng., South Dakota State Univ., Brookings, SD, USA
fDate :
8/1/2002 12:00:00 AM
Abstract :
Acoustic temperature sensors have the advantages of a high-resolution frequency output and ease of integration with other acoustic sensors but require hermetic packaging to prevent sensor contamination. Surface-skimming bulk-wave (SSBW) devices have been found to be much less sensitive to surface contamination than other acoustic devices, and although their temperature response has been studied extensively, they have not been studied specifically as temperature sensors. Surface acoustic wave (SAW) based chemical sensors requiring temperature measurement or control are susceptible to temperature measurement error because the temperature cannot be measured in the same location as the chemical sensor. The objectives of this work were to examine the temperature characteristics and performance of a SSBW temperature sensor when integrated with a SAW condensation and humidity sensor in a novel design. The SSBW temperature sensor had over an order of magnitude less sensitivity to condensation and water uptake in certain polyimide films than an integrated SAW gas sensor indicating that this design is practical for sensing films in the delay path where film thickness is carefully considered.
Keywords :
bulk acoustic wave devices; condensation; humidity sensors; measurement errors; polymer films; surface acoustic wave sensors; surface contamination; temperature sensors; SAW condensation/humidity sensor; SAW sensors; SSBW device temperature response; SSBW temperature sensors; acoustic temperature sensors; delay path; hermetic packaging; high-resolution frequency output; integrated SAW gas sensors; polyimide films; sensing film thickness; sensor surface contamination; surface acoustic wave based chemical sensors; surface-skimming bulk-wave devices; temperature measurement errors; water uptake sensitivity; Acoustic devices; Acoustic sensors; Chemical sensors; Frequency; Packaging; Surface acoustic wave devices; Surface acoustic waves; Surface contamination; Temperature measurement; Temperature sensors;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2002.803743