DocumentCode :
1792344
Title :
Characterization and optimization of a thermal flow sensor on circuit board level
Author :
Glatzl, Thomas ; Steiner, H. ; Kohl, F. ; Sauter, T. ; Keplinger, F.
Author_Institution :
CISS, Danube Univ. Krems, Wiener Neustadt, Austria
fYear :
2014
fDate :
16-19 Sept. 2014
Firstpage :
1
Lastpage :
7
Abstract :
The characterization and optimization of a low-cost thermal flow sensor optimized for the use in heating ventilating and air conditioning (HVAC) systems is presented. The fabrication of the transducer is exclusively based on printed circuit board technology to keep costs low and allow for easy handling and replacement. The measurement principle utilizes a calorimetric principle with thermoresistive heat transfer. The thermistors form a Wheatstone bridge while the heating element is supplied with a constant current. The AC bridge output voltage is a function of the flow offering adequate sensitivity and a suitable measurement range for HVAC systems. The main experiments focus on flow measurements with a Lock-In amplifier technique to evaluate the measurement range and sensitivity. Based on prior results for time constants, output voltage, sensitivity, etc., the sensor design has been optimized.
Keywords :
HVAC; amplifiers; bridge circuits; calorimetry; flow measurement; flow sensors; heat transfer; optimisation; printed circuits; temperature measurement; temperature sensors; thermistors; transducers; AC bridge output voltage; HVAC system; Wheatstone bridge; calorimetric principle; flow measurement; heating ventilating and air conditioning system; lock-in amplifier technique; optimization; printed circuit board technology; thermal flow sensor; thermistor; thermoresistive heat transfer; transducer; Bridge circuits; Electrical resistance measurement; Heating; Resistance; Sensors; Transducers; Voltage measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Emerging Technology and Factory Automation (ETFA), 2014 IEEE
Conference_Location :
Barcelona
Type :
conf
DOI :
10.1109/ETFA.2014.7005101
Filename :
7005101
Link To Document :
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