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Infrared thermal imager for fiber optic detection


Place the fiber optic sample in the detection tray, use a black box to emit a red laser beam, and let the laser beam pass through the fiber optic sample. The online infrared thermal imager collects temperature data from the fiber optic sample in the detection tray and detects abnormal temperature points, so as to analyze issues such as fiber optic breaks and material unevenness.


Infrared thermal imager materials for non-destructive testing


The innovative non-destructive testing technology of the infrared electronic thermal imager can detect defects such as cracks in metal, non-metal, and composite materials. The uniqueness of infrared thermal imaging non-destructive testing technology lies in the use of infrared temperature measurement, which does not directly contact the tested object or destroy the magnetic field. Instead, it observes the state of the tested object directly through images and reflects the characteristics of objects beneath the material surface through changes in surface temperature.


Infrared thermal imager for die casting temperature monitoring


The quality and production efficiency of products are directly affected by the temperature control of die casting. By installing an infrared industrial thermal imager, it is possible to monitor the temperature of pre-cast parts in real-time, judge whether the die casting temperature requirements have been met, and determine heater temperature status through part temperature, preventing unqualified die casting of large quantities of parts.


Infrared thermal imager for laser printing


A temperature monitoring solution for print materials of different sizes and materials can be implemented by selecting different focal length lenses and adjusting the corresponding emissivity values to achieve an accurate temperature distribution of each print material surface. Once the temperature exceeds the warning threshold after each layer of metal powder has melted and condensed, the system can immediately stop the next layer of powder deposition by linking with the PLC control, and also give an audible and visual alarm to remind workers to check the equipment operation status and the print quality, reducing the rate of defective products.


Infrared thermal imager for low-voltage circuit board detection


Low-voltage circuit boards have many components, making it difficult to measure the temperature of each component one by one. The infrared thermal imager can directly display the temperature distribution of the circuit board and identify high-temperature fault components; the high imaging resolution enables electronic components to be distinguished directly from the infrared image, allowing for precise location and replacement of components; and real-time video streams can be displayed on the software terminal via data cables to help workers automatically detect batches of circuit boards on the assembly line, directly locating and solving problems on external displays.


Infrared thermal imager for household appliance production


The black heating net on the body of the water purifier makes it difficult to locate the temperature distribution. The infrared electronic thermal imager provides a heating test to determine the location of the test points, reducing the deviations caused by differences in manual temperature measurement for each point and alarming for the occurrence of high- and low-temperature points, alerting workers to inspect and verify.

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