DocumentCode
940834
Title
Modeling and optimization of a fast response capacitive humidity sensor
Author
Tetelin, Angie ; Pellet, Claude
Author_Institution
IXL Microelectron. Lab., Bordeaux I Univ., Talence
Volume
6
Issue
3
fYear
2006
fDate
6/1/2006 12:00:00 AM
Firstpage
714
Lastpage
720
Abstract
This paper presents a model which predicts the temporal response of capacitive humidity sensors made of parallel electrodes and a polymer sensitive coating. This model is used for the simulation of the response of the sensor subjected to specific conditions. The model includes electrostatic and molecular diffusion calculation. As a validation, the model is confronted with finite-element simulation and experimental results. Experiments were carried out for divinyl siloxane benzocyclobutene (DVS-BCB) polymer films with different film thicknesses and upper electrode dimensions. As an application example, the model is used to simulate the response of several humidity sensor structures exposed to the conditions of a medical application related to breath analysis. The model may also be helpful to predict the effects of fabrication process uncertainties. Because the model used to describe water diffusion in DVS-BCB is based on Henry´s law and Fick´s law, it could be extended to the optimization of capacitive sensors for other vapors
Keywords
capacitive sensors; finite element analysis; humidity sensors; polymer films; Fick law; Henry law; capacitive sensor; divinyl siloxane benzocyclobutene polymer films; finite-element simulation; humidity sensor; molecular diffusion calculation; parallel electrodes; polymer sensitive coating; Analytical models; Biomedical electrodes; Capacitive sensors; Coatings; Electrostatics; Finite element methods; Humidity; Medical simulation; Polymer films; Predictive models; Fast response sensor; humidity sensor; sensor transient response modeling;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2006.874446
Filename
1634425
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