DocumentCode
2594797
Title
Novel switched-capacitor dual slope capacitance to digital converter for differential capacitive sensors
Author
George, Boby ; Kumar, Varadarajan Jagadeesh
Author_Institution
Graz Univ. of Technol., Graz, Austria
fYear
2009
fDate
5-7 May 2009
Firstpage
1
Lastpage
4
Abstract
A novel, simple and high accuracy dual slope direct digital converter suitable for differential capacitive sensors is presented in this work. The proposed technique provides a linear digital output proportional to the parameter being sensed by differential capacitive sensors irrespective of the fact that the sensor could possess either a linear or an inverse characteristic. In the proposed technique, the output is dependent only on, apart from the sensitivity of the sensor, a single DC reference voltage. Thus by employing a precision DC reference voltage, high accuracy is easily achieved. The proposed direct capacitance to digital converter is based on the popular dual-slope analog to digital converter structure and hence possesses all the advantages of the dual-slope technique, namely, high resolution, accuracy and immunity to noise and component parameter variations. A prototype built and tested for a typical differential capacitive sensor with a nominal value of 250 pF gave a worst-case error less than 0.05 %.
Keywords
analogue-digital conversion; capacitive sensors; switched capacitor networks; capacitance 250 pF; differential capacitive sensor; dual-slope analog to digital converter structure; linear digital output; switched-capacitor converter; Analog-digital conversion; Capacitance measurement; Capacitive sensors; Circuits; Sensor phenomena and characterization; Switches; Switching converters; Transducers; Virtual colonoscopy; Voltage; Capcitive sensors; capacitance to digital converters; dual slope; integrating type digital converters; signal conditioning;
fLanguage
English
Publisher
ieee
Conference_Titel
Instrumentation and Measurement Technology Conference, 2009. I2MTC '09. IEEE
Conference_Location
Singapore
ISSN
1091-5281
Print_ISBN
978-1-4244-3352-0
Type
conf
DOI
10.1109/IMTC.2009.5168406
Filename
5168406
Link To Document