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Digital Temperature Sensor for Air Duct/Water Pipe

$158.23
Buy a preferential price digital temperature sensors for air duct/water pipe. Digital temperature sensor is particularly suitable for temperature monitoring in various spaces such as air ducts or water pipes. It supports RS485, 4-20mA and 0-10V outputs, with accurate detection, rapid response and no zero drift.
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SKU: ATO-TS-TH800G
30-day Returns
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Delivery date: 6-12 days

Digital temperature sensor for air duct/water pipe has the advantages of being waterproof, dustproof and highly anti-interference. The temperature accuracy is ±0.5℃ and the humidity accuracy is ±3%RH. Digital temperature sensor for air duct/water pipe has IP65 protection and is suitable for precise control of pipeline spaces.

Specification

Model ATO-TS-TH800G
Temperature Range Air duct type: 0~50℃/-40~60℃/-40~100℃/-20~100℃ 
Water pipe type: 0~50℃/-20~80℃/0~100℃
Humidity Range 0~100%RH
Accuracy Temperature: ±0.5℃
Humidity: ±3%RH
(Typical value @25℃)
Display Function LCD digital display
Communication Output RS485 communication
Transmission Output 4-20mA/0-10V (optional)
Power Supply 24VDC/AC 
Protection Level IP65


Features

  • Small size, easy installation, suitable for various measurement sites with demanding space requirements.
  • The digital temperature sensor for air duct/water pipe has a built-in sensing chip, accurate detection, rapid response, and no zero drift.
  • Adopt a high-stability digital sensor, good long-term stability, and high cost performance.

Dimensions (Unit: mm)

Digital temperature sensor dimension

Wiring

Digital temperature sensor wiring

Application

Digital temperature sensor application

Tips: Calibration and maintenance of temperature sensors

Calibration and maintenance of temperature sensors are key to ensuring their long-term accuracy and reliability. Calibration is usually performed using a standard temperature source (such as the freezing point method, boiling point method, or dry furnace) to verify the matching degree between the sensor output and the actual temperature, especially for high-precision applications.

For maintenance, targeted measures should be taken according to the use environment, such as regularly cleaning the probe surface in dusty or corrosive environments, checking the sealing to prevent the medium from penetrating and damaging the components, and monitoring the stability of the electrical connection (such as oxidation, looseness). For thermocouples, attention should also be paid to the effectiveness of cold-end compensation.

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