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Resistance thermometer

Type: TRP-323

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Applications

 

  • Measuring range: -50 .. +150°C
  • General mechanical engineering
  • Temperature measurement of bearings
  • General industrial services

 

Features

 

  • Measuring insert made of sheathed cable with MgO insulated inside
  • Measuring insert diameter: Ø3 mm
  • Short response time to temperature changes
  • Vibration resistant
  • Possibility of mounting temperature transmitter inside connection head

 

Description

 

TRP-323 / APTTRP-323 sensor consists of spring-loaded measuring insert, threaded connection and aluminum connection head where mounting temperature transmitter with 4-20 mA output signal is possible.

 

Sheathed resistance sensors are made of mineral insulated cable in which conduits are isolated from each other and outer shell by MgO powder. It provides reduced time of reaction to temperature changes and increases accuracy of measurement as well as reduces natural vibration thus mechanical and electrical defects can be avoided.

 

These sensors are designed for direct temperature measurement in hard to reach places and wherever is need of using flexible, small diameter, high vibration and shock resistance with short response time to temperature changes.

 

Immersion lenght, thread of process connection and connection head may be modified according to application needs/requirements.

 

Other versions

 

This data sheet contains only small part of our supplies program of resistance thermometers with spring-loaded measuring inserts.

  • Description
  • Applications

     

    • Measuring range: -50 .. +150°C
    • General mechanical engineering
    • Temperature measurement of bearings
    • General industrial services

     

    Features

     

    • Measuring insert made of sheathed cable with MgO insulated inside
    • Measuring insert diameter: Ø3 mm
    • Short response time to temperature changes
    • Vibration resistant
    • Possibility of mounting temperature transmitter inside connection head

     

    Description

     

    TRP-323 / APTTRP-323 sensor consists of spring-loaded measuring insert, threaded connection and aluminum connection head where mounting temperature transmitter with 4-20 mA output signal is possible.

     

    Sheathed resistance sensors are made of mineral insulated cable in which conduits are isolated from each other and outer shell by MgO powder. It provides reduced time of reaction to temperature changes and increases accuracy of measurement as well as reduces natural vibration thus mechanical and electrical defects can be avoided.

     

    These sensors are designed for direct temperature measurement in hard to reach places and wherever is need of using flexible, small diameter, high vibration and shock resistance with short response time to temperature changes.

     

    Immersion lenght, thread of process connection and connection head may be modified according to application needs/requirements.

     

    Other versions

     

    This data sheet contains only small part of our supplies program of resistance thermometers with spring-loaded measuring inserts.

  • Documents
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RTDs and TCs
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Resistance thermometers

Thermocouples

Cold Junction Compensation = °C

Calculate value of resistance to temperature
(values according to ITS-90 scale)

R = Ω  T = 0 °C

Calculate value of temperature to resistance
(values according to ITS-90 scale)

T = °C R = 0 Ω

Limit values for the calculator

-200 °C - 850 °C

18,52 Ω - 390,48 Ω

Cold Junction Compensation = °C

Calculate value of resistance to temperature
(values according to ITS-90 scale)

R = Ω  T = 0 °C

Calculate value of temperature to resistance
(values according to ITS-90 scale)

T = °C R = 0 Ω

Limit values for the calculator

-60 °C - 250 °C

69,52 Ω - 289,16 Ω

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-210 °C - 1200 °C

-8,095 mV - 69,553 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-270 °C - 1372 °C

-6,458 mV - 54,886 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-270 °C - 1300 °C

-4,345 mV - 47,513 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-270 °C - 1000 °C

-9,835 mV - 76,373 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-270 °C - 400 °C

-6,258 mV - 20,872 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-50 °C - 1768.1 °C

-0,226 mV - 21,103 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

-50 °C - 1768.1 °C

-0,236 mV - 18,694 mV

Cold Junction Compensation = °C

Calculate value of thermoelectric emf to temperature

E = mV T = 0 °C

Calculate value of temperature to thermoelectric emf

T = °C  E = 0 mV

Limit values for the calculator

0°C - 1820 °C

-0,003 mV - 13,820 mV

Pomoc. Instrukcja użytkownika.

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RTDs and TCs
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