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Endress+Hauser iTEMP TMT162 - Page 54

Endress+Hauser iTEMP TMT162
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Technische Daten iTEMP TMT162
54 Endress+Hauser
Callendar-Van-Dusen coefficients (Pt100 resistance thermometer)
The Callendar-Van-Dusen equation is described as:
R
T
= R
0
[1+AT+BT²+C(T-100)T³]
The coefficients A, B and C are used to match the sensor (platinum) and transmitter in
order to improve the accuracy of the measuring system. The coefficients for a standard
sensor are specified in IEC 751. If no standard sensor is available or if greater accuracy is
required, the coefficients for each sensor can be determined specifically with the aid of
sensor calibration.
Linearization for copper/nickel resistance thermometers (RTD)
The polynomial equation for copper/nickel is as follows:
R
T
= R
0
(1+AT+BT²)
The coefficients A and B are used for the linearization of nickel or copper resistance
thermometers (RTD). The exact values of the coefficients derive from the calibration
data and are specific to each sensor. The sensor-specific coefficients are then sent to the
transmitter.
Sensor transmitter matching using one of the methods explained above significantly
improves the temperature measurement accuracy of the entire system. This is because the
transmitter uses the specific data pertaining to the connected sensor to calculate the
measured temperature, instead of using the standardized sensor curve data.
1-point adjustment (offset)
Shifts the sensor value
2-point adjustment (sensor trimming)
Correction (slope and offset) of the measured sensor value at transmitter input
Current output adjustment Correction of 4 or 20 mA current output value (not possible in SIL mode)
Operating influences
The measured error data correspond to ±2 s (Gaussian distribution), i.e. 95.45%.
Influence of ambient temperature and supply voltage on operation for resistance thermometers (RTD) and resistance
transmitters
Designation Standard
Ambient temperature:
Influence (±) per 1 °C (1.8 °F) change
Supply voltage:
Influence (±) per V change
Digital
1)
D/A
2)
Digital D/A
Maximum
Based on measured value Maximum Based on measured value
Pt100 (1)
IEC
60751:2008
≤ 0.02 °C
(0.036 °F)
0.002% * (MV - LRV),
at least 0.005 °C (0.009 °F)
0.001 %
≤ 0.02 °C
(0.036 °F)
0.002% * (MV - LRV),
at least 0.005 °C (0.009 °F)
0.001 %
Pt200 (2)
≤ 0.026 °C
(0.047 °F)
-
≤ 0.026 °C
(0.047 °F)
-
Pt500 (3)
≤ 0.013 °C
(0.023 °F)
0.002% * (MV - LRV),
at least 0.009 °C (0.016 °F)
≤ 0.013 °C
(0.023 °F)
0.002% * (MV - LRV),
at least 0.009 °C (0.016 °F)
Pt1000 (4)
≤ 0.01 °C
(0.018 °F)
0.002% * (MV - LRV),
at least 0.004 °C (0.007 °F)
≤ 0.008 °C
(0.014 °F)
0.002% * (MV - LRV),
at least 0.004 °C (0.007 °F)
Pt100 (5) JIS C1604:1984
≤ 0.013 °C
(0.023 °F)
0.002% * (MV - LRV),
at least 0.005 °C (0.009 °F)
≤ 0.013 °C
(0.023 °F)
0.002% * (MV - LRV),
at least 0.005 °C (0.009 °F)
Pt50 (8)
GOST 6651-94
≤ 0.03 °C
(0.054 °F)
0.002% * (MV - LRV),
at least 0.01 °C (0.018 °F)
≤ 0.01 °C
(0.018 °F)
0.002% * (MV - LRV),
at least 0.01 °C (0.018 °F)
Pt100 (9)
≤ 0.02 °C
(0.036 °F)
0.002% * (MV - LRV),
at least 0.005 °C (0.009 °F)
≤ 0.02 °C
(0.036 °F)
0.002% * (MV - LRV),
at least 0.005 °C (0.009 °F)

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