Non-contact: thermal imaging technology has the great advantage of non-contact, that is, it can be measured without contact with the measured object. Compared with traditional temperature measurement methods, thermal imaging technology avoids the loss and interference that may be caused by contact measurement on the measured object. It also reduces the difficulty of personnel operation.
High precision: thermal imaging technology is a high precision temperature measurement method, and its accuracy is within 0.1℃. At the same time, thermal imaging technology can measure multiple parts of the object at the same time, so as to achieve a more accurate surface temperature distribution image
Rapid response: thermal imaging technology has fast reaction speed and strong real-time, and does not need to contact the measured object, so the detection speed is fast. In large-scale detection, thermal imaging technology has high efficiency, high precision and good accuracy
for dry low light and dark scenes: in low light or dark environments, ordinary cameras are difficult to shoot clear images. However, the thermal camera can achieve accurate thermal image capture
Can be measured remotely: Using a wireless thermal camera, you can achieve remote measurement without approaching or touching the object to be measured. This function can greatly improve the measurement efficiency
No preheating: the thermal camera does not need to preheat, so it can start and run immediately, bringing convenience to users