DocumentCode :
2209
Title :
A Direct Digital Readout Circuit for Impedance Sensors
Author :
Vooka, Prashanth ; George, Boby
Author_Institution :
Dept. of Electr. Eng., IIT Madras, Chennai, India
Volume :
64
Issue :
4
fYear :
2015
fDate :
Apr-15
Firstpage :
902
Lastpage :
912
Abstract :
A new, simple and high-accuracy impedance-to-digital converter (IDC) is proposed in this paper. Conventionally, the parameters of sensors that can be modeled using a parallel combination of a capacitor (C) and a resistor (R) are measured using ac bridges, excited from a sinusoidal source. Recently, with the widespread use of digital systems in instrumentation, capacitance-to-digital converters and resistance-to-digital converters gained a lot of importance. An IDC that accepts sensors having C and R in parallel and provides digital outputs directly proportional to the C and R values is presented in this paper. This can be used not only for sensors whose C and R values vary with the measurand but also when C or R of a sensor needs to be measured keeping the output not affected by parasitic R or C present in parallel with the sensing element. Another application of the IDC is in the measurement of the dissipation factor of dielectric materials. The proposed IDC is based on a dual-slope technique, and hence provides high accuracy and immunity to noise and interference. A prototype of the proposed IDC has been developed and tested in the laboratory. Accuracy of the prototype IDC developed was 0.15% for the measurement of C and 0.04% for the measurement of R. The total conversion time of the prototype converter developed is 3 s, and its total power dissipation is 175.8 mW. The IDC was also interfaced with a polymer-based impedance humidity sensor, measured its C and R values for a range of humidity, computed the humidity, and compared its performance with another instrument, showing the practicality of the proposed IDC.
Keywords :
capacitance measurement; capacitive sensors; convertors; dielectric materials; dielectric measurement; electric resistance measurement; electric sensing devices; humidity measurement; humidity sensors; polymers; readout electronics; AC bridge; IDC; capacitance-to-digital converter; capacitor measurement; dielectric material; direct digital readout circuit; dissipation factor measurement; dual-slope technique; impedance sensor; impedance-to-digital converter; polymer-based impedance humidity sensor; power 175.8 mW; resistance-to-digital converter; resistor measurement; Capacitance; Capacitive sensors; Capacitors; Impedance; Radio frequency; Resistors; Capacitance-to-digital converter (CDC); capacitive sensor; dissipation factor; humidity sensor; impedance-to-digital converter (IDC); resistance-to-digital converter (RDC); resistive sensor; resistive sensor.;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/TIM.2014.2361552
Filename :
6928447
Link To Document :
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