Allicdata Part #: | 1862-1056-ND |
Manufacturer Part#: |
50782200 |
Price: | $ 22.11 |
Product Category: | Sensors, Transducers |
Manufacturer: | Sensata Technologies |
Short Description: | SENSOR TEMP RTD 200 OHM 500C W/C |
More Detail: | 200 Ohms RTD Platinum Cylinder, Threaded |
DataSheet: | 50782200 Datasheet/PDF |
Quantity: | 20 |
1 +: | $ 20.09700 |
5 +: | $ 18.08730 |
10 +: | $ 16.07760 |
50 +: | $ 14.06790 |
100 +: | $ 12.05820 |
500 +: | $ 10.04850 |
Series: | DARTS |
Packaging: | Bulk |
Part Status: | Active |
Resistance Tolerance: | ±0.1% |
RTD Material: | Platinum |
Operating Temperature: | -40°C ~ 500°C |
Termination: | Connector |
Accuracy: | ±2.5°C |
Temperature Coefficient: | -- |
Current: | 4.2mA |
Mounting Type: | Panel Mount |
Package / Case: | Cylinder, Threaded |
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Temperature sensors are one of the most important instruments that are used in industrial and laboratory applications for measuring and controlling temperature. The RTD (Resistance Temperature Detector) is a type of temperature sensor that is widely used in various applications to accurately measure and monitor temperature. RTDs are mainly used to measure and detect changes in temperature in industrial processes and in laboratories.
RTDs are made up of either metal or ceramic components, which are connected to a sensing element. The sensing element is typically a thin metal or ceramic composition that changes resistance based on its temperature. RTDs are also used in the form of a thermistor, which is a temperature-sensitive resistor. Thermistors can usually measure temperature more accurately than RTDs, but are more expensive to produce.
RTDs are usually used in applications where high accuracy and precision are needed. The 50782200 application field and working principle of RTDs varies depending on the specific application, but generally speaking they are used in applications such as HVAC, medical equipment, furnace monitoring, automotive, and aerospace. In general, RTDs are used to measure and control temperature in various industrial processes and laboratory experiments.
The working principle of an RTD is based on the change in resistance that occurs when a semiconductor material is exposed to a change in temperature. As the temperature increases, the resistance of the material increases. This increase in resistance is then measured by the RTD and the temperature can then be calculated.
RTDs are also often used in conjunction with other sensors in order to measure more complex parameters such as pressure, humidity, and flow rate. RTDs are also used to measure temperature in high-temperature environments such as engines, boilers, and blast furnaces.
The accuracy of an RTD can be affected by environmental factors such as humidity, dirt, salt, and vibration. Therefore, special care should be taken when using an RTD in order to ensure that the accuracy of the measurement is not compromised. In addition, it is important to select the right type of RTD for the application in order to get the most accurate readings.
RTDs have become an increasingly important component in temperature sensing applications due to their accuracy and repeatability. They are used in many industrial and laboratory applications and provide a reliable and accurate means of measuring and detecting temperature changes.
The specific data is subject to PDF, and the above content is for reference
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