Title :
Self-Calibrating Infrared Thermometer for Low-Temperature Measurement
Author :
Barry, Tim ; Fuller, Gary ; Hayatleh, Khaled ; Lidgey, John
Author_Institution :
Calex Electron. Ltd., Leighton Buzzard, UK
fDate :
6/1/2011 12:00:00 AM
Abstract :
This paper presents a self-calibration technique for the removal of measurement errors caused by thermal gradients in thermopile-based infrared thermometry, particularly when measuring low temperatures. Applications for this self-calibration method include low-temperature measurement in the food industry and infrared thermometers for remote temperature monitoring in cold climates. The self-calibration technique reported in this paper is shown to reduce the measurement error to within ±1°C within 5 s of an extreme thermal shock, compared with an uncompensated thermometer that does not recover until the thermal gradient is removed. The root-mean-square temperature noise for the duration of the thermal shock test is less than 0.2°C. This technique is the subject of a patent application and can be applied to any infrared thermometer utilizing a thermopile, regardless of the thermopile size and geometry.
Keywords :
calibration; measurement errors; remote sensing; spectral methods of temperature measurement; thermometers; thermopiles; low temperature measurement; measurement error; remote temperature monitoring; root mean square temperature noise; self calibrating infrared thermometer; thermal gradient; thermopile based infrared thermometry; Adaptive optics; Assembly; Heating; Optical detectors; Temperature measurement; Temperature sensors; Calibration; IR radiation effects; infrared (IR) detectors; temperature measurement; thermoelectric devices;
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2011.2113123