DocumentCode
1894526
Title
Emissivity correcting pyrometer for temperature measurement in low pressure chemical vapor deposition
Author
Fordham, M.J. ; Gansman, R.F. ; Sorrell, F.Y.
Author_Institution
Dept. of Mech. & Aerosp. Eng., North Carolina State Univ., Raleigh, NC, USA
fYear
1993
fDate
18-19 May 1993
Firstpage
223
Lastpage
228
Abstract
Rapid thermal processing (RTP) low pressure chemical vapor deposition (LPCVD) requires accurate wafer temperature measurement to control film deposition during processing. The temperature sensor discussed detects a portion of the target radiance as a DC signal. The remainder of the target radiance is chopped, reflected back onto the target, and recollected by the sensor as an AC signal. Two versions of the sensor were developed. Unit 1 separates the pyrometer (DC) and chopper reflector components. Unit 2 combines both components into a single unit. The DC signal is calibrated to target radiance using a blackbody source. The ratio of AC to DC signals is related to target spectral emissivity via a second calibration using a prepared surface of known emissivity. After calibration, both units are evaluated against oxidizing steel surfaces. Unit 1 successfully tracks relative changes in oxidizing steel emissivity. Unit 2 suffers from internal reflections of the modulated AC signal which dominate those reflected off the target, preventing an evaluation of its sensitivity to alignment
Keywords
calibration; chemical vapour deposition; electric sensing devices; emissivity; pyrometers; rapid thermal processing; temperature measurement; AC signal; DC signal; RTP LPCVD; blackbody source; calibration; chopper reflector components; emissivity correcting pyrometer; film deposition control; internal reflections; low pressure chemical vapor deposition; oxidizing steel surfaces; rapid thermal processing; target radiance; target spectral emissivity; temperature sensor; wafer temperature measurement; Calibration; Chemical sensors; Chemical vapor deposition; Optical films; Pressure control; Rapid thermal processing; Steel; Temperature control; Temperature measurement; Temperature sensors;
fLanguage
English
Publisher
ieee
Conference_Titel
University/Government/Industry Microelectronics Symposium, 1993., Proceedings of the Tenth Biennial
Conference_Location
Research Triangle Park, NC
ISSN
0749-6877
Print_ISBN
0-7803-0990-1
Type
conf
DOI
10.1109/UGIM.1993.297057
Filename
297057
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