DocumentCode :
774679
Title :
A hygrometer comprising a porous silicon humidity sensor with phase-detection electronics
Author :
Das, Jayoti ; Dey, Sagnik ; Hossain, Syed Minhaz ; Rittersma, Z. M Chris ; Saha, Hiranmay
Author_Institution :
Dept. of Electron. & Telecommun. Eng., Jadavpur Univ., Kolkata, India
Volume :
3
Issue :
4
fYear :
2003
Firstpage :
414
Lastpage :
420
Abstract :
A novel hygrometer is presented, comprising a capacitive humidity sensor with a porous silicon (PS) dielectric and electronics. The adsorption of water vapor by the PS layer leading to change of its effective dielectric constant is modeled with an effective medium approximation (EMA). A simple, but precise, phase-sensitive electronic circuit has been developed. This detects any change of phase of a sinusoidal signal transmitted through the PS dielectric and correlates to ambient humidity. It is outlined how the nonlinear response of the sensor is compensated through piecewise linearization. The sensor is tested in combination with the phase detection circuitry. Excellent linearity over the entire range of relative humidity is achieved. Experimental results show a resolution better than 0.1% and an accuracy of 2% (near the transition region) and better than 0.1% (otherwise). The response time is less than 10 s with good stability.
Keywords :
capacitive sensors; elemental semiconductors; humidity sensors; hygrometers; permittivity; phase detectors; piecewise linear techniques; porous semiconductors; silicon; 10 s; EMA; Si; ambient humidity; capacitive humidity sensor; compensation; effective dielectric constant change; effective medium approximation; hygrometer; phase-sensitive circuit; piecewise linearization; porous silicon dielectric; porous silicon humidity sensor; relative humidity; response time; sensor nonlinear response; sensor phase-detection electronics; sensor resolution; sensor stability; transition region sensor accuracy; water vapor adsorption; Capacitive sensors; Circuit stability; Circuit testing; Delay; Dielectric constant; Electronic circuits; Humidity; Linearity; Phase detection; Silicon;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2003.816261
Filename :
1226633
Link To Document :
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