Technology, construction and benefits of resistance temperature detectors (RTD)
When measuring temperature, the choice of the sensor is one of the most important decisions to make. Thermocouples (TCs) and resistance temperature detectors (RTDs) are commonly used in industrial applications. Proven in the process industry for decades, RTDs work on the principle that the electrical resistance of the sensor metal increases as the temperature rises. This change in resistance is measured and converted into temperature readings.
Nearly linear response, making them easy to calibrate and interpret
Suitable for a moderate temperature range: -200°C (300°F) to +850°C (1562°F)
Good long-term stability and repeatability
Low self-heating effect, resulting in minimal measurement errors
The Pt100 sensor is also known as a PTC, which stands for "positive temperature coefficient", meaning that the resistance increases as the temperature rises. A Pt100 RTD is suitable for the measurement of temperatures between -200°C (300°F) and +850°C (1562°F), depending on the sensor and the design. It is important to note that RTD sensors do not follow an ideal linear temperature-resistance curve and, unfortunately, the RTD becomes less linear as the temperature rises. The use of temperature transmitters can compensate these non-linearities. Endress+Hauser developed innovative, patented sensor technologies such as the iTHERM StrongSenswith highest vibration resistance, the fast-responding sensoriTHERM QuickSens and the iTHERM TrustSens with self-calibration function. Endress+Hauser RTD instruments meet the IEC 60751 accuracy class A as standard.
AccuracyClass AA acc. to IEC 60751 Class A acc. to IEC 60751 Class B acc. to IEC 60751 Class special or standard acc. to ASTM E230 Class 1 or 2 acc. to IEC 60584-2
Response timet90 starting at < 1,5 s iTHERM QuickSens depending on configuration
Max. process pressure (static)depending on the configuration
Operating temperature rangePT100 TF iTHERM StrongSens: -50 °C ...500 °C (-58 °F ...932 °F) PT100 TF iTHERM QuickSens: -50 °C …200 °C (-58 °F …392 °F) PT100 WW: -200 °C ...600 °C (-328 °F ...1.112 °F) PT100 basic TF: -50 °C ...200 °C (-58 °F ...392 °F) Typ K: max. 1.100 °C (max. 2.012 °F) Typ J: max. 800 °C (max. 1.472 °F) Typ N: max. 1.100 °C (max. 2.012 °F)
AccuracyClass AA acc. to IEC 60751 Class A acc. to IEC 60751 Class B acc. to IEC 60751 Class special or standard acc. to ASTM E230 Class 1 or 2 acc. to IEC 60584-2
Response timedepending on configuration
Max. process pressure (static)depending on the configuration up to 500 bar
Operating temperature rangePT100 TF iTHERM StrongSens: -50 °C ...500 °C (-58 °F ...932 °F) PT100 TF iTHERM QuickSens: -50 °C …200 °C (-58 °F …392 °F) PT100 WW: -200 °C ...600 °C (-328 °F ...1.112 °F) PT100 basic TF: -50 °C ...200 °C (-58 °F ...392 °F) Typ K: max. 1.100 °C (max. 2.012 °F) Typ J: max. 800 °C (max. 1.472 °F) Typ N: max. 1.100 °C (max. 2.012 °F)
Accuracydepending on application Class AA acc. to IEC 60751 Class A acc. to IEC 60751 Class B acc. to IEC 60751 Class special or standard acc. to ASTM E230 Class 1 or 2 acc. to IEC 60584-2
Response timedepending on application
Operating temperature range-196 °C…400 °C (-320,8 °F...752 °F)
AccuracyClass AA acc. to IEC 60751 Class A acc. to IEC 60751 Class B acc. to IEC 60751 Class special or standard acc. to ASTM E230 Class 1 or 2 acc. to IEC 60584-2
Response timefastest response time with thermowell t90 starting at below 10 s depending on configuration
Max. process pressure (static)depending on the configuration up to 100 bar
Operating temperature rangePT100 TF iTHERM StrongSens: -50 °C ...500 °C (-58 °F ...932 °F) PT100 TF iTHERM QuickSens: -50 °C …200 °C (-58 °F …392 °F) PT100 WW: -200 °C ...600 °C (-328 °F ...1.112 °F) PT100 TF: -50 °C ...400 °C (-58 °F ...752 °F) Typ K: max. 1.100 °C (max. 2.012 °F) Typ J: max. 800 °C (max. 1.472 °F) Typ N: max. 1.100 °C (max. 2.012 °F)
Max. immersion length on requestup to 4.500,0 mm (177'')
AccuracyClass AA acc. to IEC 60751 Class A acc. to IEC 60751 Class B acc. to IEC 60751 Class special or standard acc. to ASTM E230 Class 1 or 2 acc. to IEC 60584-2
Response timet90 starting at < 1,5 s iTHERM QuickSens depending on configuration
Max. process pressure (static)depending on the configuration
Operating temperature rangePT100 TF iTHERM StrongSens: -50 °C ...500 °C (-58 °F ...932 °F) PT100 TF iTHERM QuickSens: -50 °C …200 °C (-58 °F …392 °F) PT100 WW: -200 °C ...600 °C (-328 °F ...1.112 °F) PT100 TF: -50 °C ...400 °C (-58 °F ...752 °F) Typ K: max. 1.100 °C (max. 2.012 °F) Typ J: max. 800 °C (max. 1.472 °F) Typ N: max. 1.100 °C (max. 2.012 °F)
Max. immersion length on requestup to 4.500,0 mm (177'')
AccuracyClass AA acc. to IEC 60751 Class A acc. to IEC 60751 Class B acc. to IEC 60751 Class special or standard acc. to ASTM E230 Class 1 or 2 acc. to IEC 60584-2
Response timedepending on configuration
Max. process pressure (static)depending on the configuration up to 500 bar
Operating temperature rangePT100 TF iTHERM StrongSens: -50 °C ...500 °C (-58 °F ...932 °F) PT100 TF iTHERM QuickSens: -50 °C …200 °C (-58 °F …392 °F) PT100 WW: -200 °C ...600 °C (-328 °F ...1.112 °F) PT100 TF: -50 °C ...400 °C (-58 °F ...752 °F) Typ K: max. 1.100 °C (max. 2.012 °F) Typ J: max. 800 °C (max. 1.472 °F) Typ N: max. 1.100 °C (max. 2.012 °F)
Max. immersion length on requestup to 1.500,0 mm (59,06'')
A unique temperature sensor technology based on an integrated fixed-point reference element that enables reliable and accurate recalibration of the primary Pt100 RTD sensor.