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http://dx.doi.org/10.5369/JSST.2009.18.4.322

Uncertainty assessment of industrial platinum resistance thermometers for different lead-wire connection methods  

Kim, Yong-Gyoo (Div. Physical Metrology, Korea Research Institute of Standards and Science)
Gam, Kee-Sool (Div. Physical Metrology, Korea Research Institute of Standards and Science)
Yang, In-Seok (Div. Physical Metrology, Korea Research Institute of Standards and Science)
Publication Information
Journal of Sensor Science and Technology / v.18, no.4, 2009 , pp. 322-326 More about this Journal
Abstract
To estimate the measurement uncertainty for industrial platinum resistance thermometers(IPRTs) made with 3-wire connection, the immersion temperature profile was investigated using a liquid bath. Two types of IPRTs having lead wires made of silver and nickel were constructed and the immersion profiles were measured at temperatures from -50 $^{\circ}C$ to 250 $^{\circ}C$ using 3-wire and 4-wire method. As immersion depth and temperature increased, the resistances measured by 3-wire method increased linearly but not for 4-wire method. To calibrate a 3-wire IPRT, the immersion effect must be accounted for. We propose a linear equation to assess correctly the measurement uncertainty.
Keywords
industrial platinum resistance thermometer; 3-wire method; immersion effect; standard uncertainty; calibration;
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