Allen-Bradley MicroLogix 1200 User Manual page 121

Thermocouple/mv input module
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Thermocouple Descriptions
C-21
[44] Burley, N. A.; Powell, R. L.; Burns, G. W.; Scroger, M. G. The
nicrosil versus nisil thermocouple: properties and thermoelectric
reference data. Natl. Bur. Stand. (U.S.) Monogr. 161; 1978 April.
167p.
[45] Burley, N. A.; Jones, T. P. Practical performance of nicrosil-nisil
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Quinn, T. J., ed.; London and Bristol: Institute of Physics; 1975.
172-180.
[46] Burley, N. A.; Hess, R. M.; Howie, C. F. Nicrosil and nisil: new
nickel-based thermocouple alloys of ultra-high thermoelectric stability.
High Temperatures- High Pressures 12, 403-410; 1980.
[47] Burley, N. A.; Cocking, J. L.; Burns, G. W.; Scroger, M. G. The
nicrosil versus nisil thermocouple: the influence of magnesium on the
thermoelectric stability and oxidation resistance of the alloys.
Temperature: Its Measurement and Control in Science and Industry;
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1982. 1129-1145.
[48] Wang, T. P.; Starr, C. D. Nicrosil-nisil thermocouples in
production furnaces in the 538°C (1000°F) to 1177°C (2150°F) range.
ISA Transactions 18(4), 83-99; 1979.
[49] Wang, T. P.; Starr, C. D. Oxidation resistance and stability of
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Measurement and Control in Science and Industry; Vol. 5, Schooley,
J. F., ed.; New York: American Institute of Physics; 1982. 1147-1157.
[50] Hess, T. G. Nicrosil-nisil: high-performance thermocouple
alloys. ISA Transactions 16(3), 81-84; 1977.
[51] Anderson, R. L.; Lyons, J. D.; Kollie, T. G.; Christie, W. H.; Eby, R.
Decalibration of sheathed thermocouples. Temperature: Its
Measurement and Control in Science and Industry; Vol. 5., Schooley,
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[52] Bentley, R. E.; Morgan, T. L. Ni-based thermocouples in the
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to 1100°C. J. Phys. E: Sci. Instrum. 19, 262-268; 1986.
[53] Wang, T. P.; Bediones, D. 10,000 hr. stability test of types K, N,
and a Ni-Mo/Ni-Co thermocouple in air and short-term tests in
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Science and Industry; Vol. 6; Schooley, J. F., ed.; New York:
American Institute of Physics; 1992. 595-600.
AB Parts
Publication 1762-UM002A-EN-P - July 2002

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