DocumentCode
1892771
Title
SOI diode temperature sensor operated at ultra high temperatures - a critical analysis
Author
Santra, S. ; Guha, P.K. ; Ali, S.Z. ; Haneef, I. ; Udrea, F. ; Gardner, J.W.
Author_Institution
Eng. Dept., Univ. of Cambridge, Cambridge
fYear
2008
fDate
26-29 Oct. 2008
Firstpage
78
Lastpage
81
Abstract
This paper investigates the performance of diode temperature sensors when operated at ultra high temperatures (above 250degC). A low leakage silicon on insulator (SOI) diode was designed and fabricated in a 1 mum CMOS process and suspended within a dielectric membrane for efficient thermal insulation. The diode can be used for accurate temperature monitoring in a variety of sensors such as microcalorimeters, IR detectors, or thermal flow sensors. A CMOS compatible micro-heater was integrated with the diode for local heating. It was found that the diode forward voltage exhibited a linear dependence on temperature as long as the reverse saturation current remained below the forward driving current. We have proven experimentally that the maximum temperature can be as high as 550degC. Long term continuous operation at high temperatures (400degC) showed good stability of the voltage drop. Furthermore, we carried out a detailed theoretical analysis to determine the maximum operating temperature and explain the presence of nonlinearity factors at ultra high temperatures.
Keywords
CMOS integrated circuits; high-temperature electronics; silicon-on-insulator; temperature sensors; CMOS compatible microheater; CMOS process; IR detectors; SOI diode temperature sensor; microcalorimeters; nonlinearity factors; silicon on insulator; temperature monitoring; thermal flow sensors; thermal insulation; ultrahigh temperatures; Biomembranes; CMOS process; Dielectrics and electrical insulation; Diodes; Infrared sensors; Silicon on insulator technology; Temperature measurement; Temperature sensors; Thermal sensors; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Sensors, 2008 IEEE
Conference_Location
Lecce
ISSN
1930-0395
Print_ISBN
978-1-4244-2580-8
Electronic_ISBN
1930-0395
Type
conf
DOI
10.1109/ICSENS.2008.4716387
Filename
4716387
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