Temperature probe K thermoelectric vs ultra -fine sheath thermal electricity
Testo SE & Co. KGaA
About This Product
Temperature measurement that uses a thermal electrician is used for a thermoelectric effect. The thermal electricity vs. is an electrical connection that joins one end of two types of conductors (metal rays or alloy rays). The standard thermal electrode and maximum tolerance in the thermoelectric pad are defined in IEC 60584 (JIS C 1602). The most widely used thermoelectric pair is nickel chrome-nickel (K type).
This K -thermoelectric flexible temperature probe is not only compatible with ultra -low temperature gas temperature measurement, but also can measure the temperature of liquids and paste, especially small objects and share (petri plate). The surface temperature can be measured by fixing the prove tip on the surface of the measured object with adhesive tape.
The probe tip can be measured at a diameter of 0.25mm and a response speed of 1 second, so even a slight temperature change senses the temperature. Suitable for measurement of gas temperature.
The temperature measurement range of this flexible temperature probe corresponds from ultra-low to high temperature at -40 to +1000 ° C. It has an insulating cable with a length of 2.0m in length (2.2mm x 1.4mm) of FEP coating, so you can measure the temperature of the point away from the measuring instrument and data logger. Because it is FEP coating, it has a heat resistance of +200 ° C.
This K thermal electron -temperature probe can measure the temperature of paste, semi -solid, liquid, and gas. Because it is an elliptical cable cable, it can be passed through the gap between the door and refrigerator sealing.
The accuracy of this K thermal electron-temperature probe is class 1 (in the measurement range of -40 to +1000 ° C), and the measured value is ± 1.5 ° C or measured value | T | X 0.004 (the larger the number is applied). In the temperature measurement of +500 ° C, this probe means ± 2 ° C (500 ° C × 0.004 = 3 ° C) accuracy.
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Temperature probe K thermoelectric vs ultra -fine sheath thermal electricity