TF101K resistance thermometer (RTD) PT100
  • TF101K resistance thermometer (RTD) PT100

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Manufacturer: ZIEHL

TF101K resistance thermometer (RTD) PT100

  • TF101K
TF101 temperature sensors use platinum resistive temperature sensors (RTD) EN 60751/IEC 60751. For precise temperature measurement, the platinum resistance thermometer offers the best general benefits in terms of repetition and stability for a long time. High accuracy allows you to replace the sensor without having to re -adjust the connected measuring devices or thermostats. TF101 temperature sensors are available in different versions. Platinum resistive temperature sensor on ceramic substrate protected thermocurcinous sleeve with an insulated PTFE cable. The TF101K version can be installed in engine or transformer windings. When installing in the windings, do not put pressure on the sensor element. Precautions should be taken to protect the sensor and extension cables against pushing and pulling forces. T0.9 thermal response time in the air 100 s, in water 19 p. At a two -wire connection and a 2 m cable length there is a temperature error of about 0.51 Ω = 1.32 K caused by line resistance.

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TF101 temperature sensors use platinum resistive temperature sensors (RTD) EN 60751/IEC 60751. For precise temperature measurement, the platinum resistance thermometer offers the best general benefits in terms of repetition and stability for a long time. High accuracy allows you to replace the sensor without having to re -adjust the connected measuring devices or thermostats. TF101 temperature sensors are available in different versions. Platinum resistive temperature sensor on ceramic substrate protected thermocurcinous sleeve with an insulated PTFE cable. The TF101K version can be installed in engine or transformer windings. When installing in the windings, do not put pressure on the sensor element. Precautions should be taken to protect the sensor and extension cables against pushing and pulling forces. T0.9 thermal response time in the air 100 s, in water 19 p. At a two -wire connection and a 2 m cable length there is a temperature error of about 0.51 Ω = 1.32 K caused by line resistance.
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