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Wire Temperature Measurement

    Infrared thermometers are non-contact temperature measuring instruments. They are based onthe principle that any object with a temperature above absolute zero (-273°C) emits thermalradiation. This radiation consists of electromagnetic waves of various wavelengths, with objectsbelow 1000°C primarily emitting infrared waves. By measuring the infrared radiation from anobject, infrared thermometers can accurately determine the surface temperature of that objectInfrared thermometers mainly consist of the following components:

     1. Optical System: Gathers the infrared energy emitted by the target object and focuses itonto a photoelectric detector.

     2. Photoelectric Detector: Converts the received infrared energy into an electrical signal

     3. Signal Amplifier and Processing: Amplifies and processes the electrical signal, convertingit into a linear signal value       corresponding to the measured temperature.

     4. Display Output: Displays the final temperature reading.

    Such devices allow for quick and precise temperature measurements without the need for directcontact with the object being measured



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Product Introduction

    Infrared thermometers are non-contact temperature measuring instruments. They are based onthe principle that any object with a temperature above absolute zero (-273°C) emits thermalradiation. This radiation consists of electromagnetic waves of various wavelengths, with objectsbelow 1000°C primarily emitting infrared waves. By measuring the infrared radiation from anobject, infrared thermometers can accurately determine the surface temperature of that objectInfrared thermometers mainly consist of the following components:

     1. Optical System: Gathers the infrared energy emitted by the target object and focuses itonto a photoelectric detector.

     2. Photoelectric Detector: Converts the received infrared energy into an electrical signal

     3. Signal Amplifier and Processing: Amplifies and processes the electrical signal, convertingit into a linear signal value       corresponding to the measured temperature.

     4. Display Output: Displays the final temperature reading.

    Such devices allow for quick and precise temperature measurements without the need for directcontact with the object being measured


Technical Parameters
ModelATM-80-400
Measurement PrincipleContactless thermal imaging  principle
ApplianceWire Conductor
Working Temperature15°C — 45°C
Measuring Temperature80°C — 400°C
Accuracy±1°C
Communication  PortRS485  Modbus
Power Supply220 VAC, 50 Hz



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