Conductivity Effect on the Capacitance Measurement of a Parallel-Plate Capacitive Sensor System

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Peyman Azimi Anaraki

Abstract

In this article design and operation of a parallel-plate capacitive sensor based on the dielectric capacitance and conductance change of the gap medium is reported. The designed system was used to determine characteristics of different water liquids as a result of the capacitance variations. The air gap capacitance is measured and then by filling the gap with a liquid the capacitance is monitored for different liquids. Proposed sensor is used for the distilled, tap, boiled, and salt water measurements and the capacitance results are compared. A big difference about 45.5µF in capacitance values for the salt and distilled water shows a high sensitivity, which can be used to recognize different water liquids. The experimental results are promising for water liquids and verify the successful operation of such a device as a liquid sensor, a useful method for checking the electrical quality of the water that is required for different applications.

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How to Cite
Anaraki, P. (2016). Conductivity Effect on the Capacitance Measurement of a Parallel-Plate Capacitive Sensor System. Indonesian Journal of Physics, 22(4), 107-114. https://doi.org/10.5614/itb.ijp.2011.22.4.2
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