How do you convert the temperature of a Thermocouple to a millivolt?
How do you convert the temperature of a Thermocouple to a millivolt?
Example #1 Type “T” Thermocouple Adding 0.87 mV to 3.41 mV = 4.28 mV. Finding 4.28 mV In the table; the corresponding temperature is 100°C (212°F) and is the temperature of the measuring junction.
What is the range of K type thermocouple?
-200 to 1260°C
Type K thermocouples have a general temperature range of -200 to 1260°C (-326 to 2300°F), however there are some caveats to this: If used for temperatures below 0°C special material is needed in order to meet the specified accuracies. Also, Special Limits of Error are not specified for temperatures below 0°C.
What is the output voltage of a Thermocouple?
Thermocouple Voltage-to-Temperature Conversion Method
Temperature Input | Voltage Output |
---|---|
-100°C | 0VDC |
+1350°C | +5VDC |
How do you convert millivolt to temperature?
Measure the “VD” millivoltage as shown above. Measure the actual temperature of the reference junction with a thermometer….
- From the table; 22°C = 0.87 mV.
- Adding 0.87 mV to 3.41 mV = 4.28 mV.
- Finding 4.28 mV In the table; the corresponding temperature is 100°C (212°F) and is the temperature of the measuring function.
What is a K thermocouple?
K Type Thermocouple. A thermocouple is made up of of two dissimilar conductors in contact with one another, which produce a voltage when heated. Thermocouples are used as temperature sensors for measurement and control and can also be used to convert a temperature gradient into electricity.
What is the voltage range of a thermocouple?
The Type K thermocouple is one of the most common form of thermocouples type. The general measuring ranges of a Type K thermocouple is between 200° C to +1,350° C. Beyond this temperature range Type K thermocouple cannot be used.
How accurate is a thermocouple?
Thermocouples are used in an extremely wide temperature range (see Table 1). The emf of a thermocouple using metal conductors is usually 5–60 millivolts. The accuracy of temperature indication is usually several degrees K; some thermocouples attain an accuracy of ~0.01°K.