Title :
Interface electronics for resistive and piezoelectric polymer gas sensors
Author :
Dyer, David C. ; Gardner, Julian W.
Author_Institution :
Dept. of Eng., Warwick Univ., Coventry, UK
Abstract :
An electronic interface has been designed and built which allows changes in the properties of hybrid conducting polymer sensors to be measured by a host computer. It has analogue circuitry which is used to measure polymer resistance, and digital circuitry which provides a measure of the period of oscillation of piezoelectric element (PZE) with a polymer deposit. Initial tests were made with physically separate sensor types but the design is intended for a hybrid sensor with a single polymer deposit on a PZE. A Field Programmable Gate Array (FPGA) has been configured to act as a period meter, which achieves a resolution of better than 1 part in 2 million. An embedded single-chip microcontroller accepts simple commands from a host computer and coordinates the activity of analogue multiplexers, a precision ADC, and the FPGA to give 1 reading per second from and array of 6 hybrid sensors. Other features have been included which allow for temperature measurement and control, numerical pre-processing as well as programmable gain and offset. The result is a superior instrument which aims to meet the emerging needs of industrial and research applications
Keywords :
gas sensors; FPGA; Field Programmable Gate Array; analogue circuitry; analogue multiplexers; digital circuitry; electronic interface; embedded single-chip microcontroller; host computer; hybrid conducting polymer sensors; hybrid sensor; hybrid sensors; interface electronics; numerical pre-processing; period meter; piezoelectric element; piezoelectric polymer gas sensors; polymer deposit; precision ADC; resistive gas sensors; temperature measurement; temperature measurement and control; tests;
Conference_Titel :
Conducting Polymers and Their Applications in Transducers and Instrumentation (Digest No: 1996/242), IEE Colloquium on
Conference_Location :
London
DOI :
10.1049/ic:19961296