DocumentCode
1252670
Title
Low-cost and minimal-conditioning interface for a PbSe photoconductor array
Author
Chavez, Juan A. ; Ortega, Juan A. ; Perez, Miguel A. ; Garcia, Manuel J.
Author_Institution
Electron. Eng. Dept., Polytech.. Univ. of Catalonia, Barecelona, Spain
Volume
46
Issue
4
fYear
1997
fDate
8/1/1997 12:00:00 AM
Firstpage
817
Lastpage
821
Abstract
A low cost conditioning structure for PbSe photoconductor arrays with few components is described. We use a PbSe array of 64 pixels in a simultaneous atmospheric pollutant detector of several gases. The sensor system is based on infrared optical absorption spectroscopy. The authors present a second version of the sensor. From the first version they deduced: i) it is necessary to work at high chopper frequencies to reduce the effect of 1/f noise, ii) it is necessary to provide a conditioning circuit for each channel, and iii) the conditioning interface must be near the array. Therefore, they propose to amplify and mix the incoming signal to produce a signal at a fixed intermediate frequency (IF), in their case 1 Hz. The fact that the circuit has few components makes possible to place 64 conditioners in a small volume (10×4.9×7.6 cm3) using the with SMT technique. The conditioner is divided into eight boards. Each board has eight channels and an analog multiplexor. These characteristics permit to approach the circuitry to the array. Each channel conditioner has up to 100 dB voltage gain. The low IF technique makes it possible to have high-performance circuits with low-cost components
Keywords
IV-VI semiconductors; air pollution measurement; gas sensors; infrared detectors; infrared spectroscopy; lead compounds; photoconducting devices; photodetectors; signal processing equipment; spectrochemical analysis; 1 Hz; 100 dB; PbSe; PbSe photoconductor array; analog multiplexor; atmospheric pollutant detector; channel conditioner; chopper frequencies; conditioning circuit; conditioning interface; fixed intermediate frequency; high-performance circuits; infrared optical absorption spectroscopy; low regency analysis; minimal-conditioning interface; offset; Circuits; Costs; Detectors; Frequency; Gases; Infrared spectra; Optical noise; Photoconductivity; Pollution; Sensor arrays;
fLanguage
English
Journal_Title
Instrumentation and Measurement, IEEE Transactions on
Publisher
ieee
ISSN
0018-9456
Type
jour
DOI
10.1109/19.650780
Filename
650780
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