06.12.2012 Views

techniques for approximating the international temperature ... - BIPM

techniques for approximating the international temperature ... - BIPM

techniques for approximating the international temperature ... - BIPM

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

xviii<br />

11.3 Thermal Contact 111<br />

11.4 Response Time 111<br />

11.5 Influence of External Factors 112<br />

11.6 Stability and Reproducibility 113<br />

11.7 Calibration and Interpolation Formulae 114<br />

12. Carbon-Glass Resistance Thermometers 116<br />

12.1 Fabrication 116<br />

12.2 Resistance-Temperature Characteristics; Sensitivity; Calibration 116<br />

12.3 Stability 117<br />

13. Platinum-Cobalt Resistance Thermometers 119<br />

14. Diode Thermometers 120<br />

15. Liquid-in-Glass Thermometry 123<br />

16. Industrial Platinum Resistance Thermometers 129<br />

16.1 Quality of Industrial Platinum Resistance Thermometers 129<br />

16.1.1 Stability 132<br />

16.1.2 Self-heating 134<br />

16.1.3 Response Time 137<br />

16.2 Interpolation Equations <strong>for</strong> Industrial Platinum<br />

Resistance Thermometers 137<br />

16.3 National and International Specifications <strong>for</strong> IPRTs 139<br />

17. Thermistors 145<br />

18. Base-Metal Thermocouples 147<br />

18.1 General Remarks 147<br />

18.2 Types of Base-Metal Thermocouples 147<br />

18.2.1 Type T Thermocouple 148<br />

18.2.2 Type J Thermocouple 148<br />

18.2.3 Type K Thermocouple 148<br />

18.2.4 Type E Thermocouple 149<br />

18.2.5 Type N Thermocouple 149<br />

18.2.6 Tungsten-Rhenium Thermocouple 149<br />

18.3 Construction 150<br />

18.3.1 Thermoelements 150

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!