The status and function of automatic image measuring instrument. In the field of instruments, precision measuring instruments are relatively new instruments, and they are also widely used in industrial production to provide quality assurance for workpiece inspection. Among precision measuring instruments, the high-precision measuring instruments we know mainly include two-dimensional image measuring instruments and coordinate measuring machines, which are the two main types of measuring instruments in precision measuring instruments. Among them, the secondary element image measuring instrument is mainly used for the planar two-dimensional measurement of the workpiece, and the three-dimensional measuring instrument is mainly used for the three-dimensional detection of the main workpiece. Compared with the three-coordinate measuring instrument, what is the position of the secondary element imager in the development of high-precision measuring instruments, and what role does it play in the development of the entire industry of high-precision measuring instruments? Compared with the three-dimensional measuring instrument, from the measurement function of the secondary imager, it can be seen that the measuring function of the imager is slightly simpler than that of the three-dimensional measuring instrument, because it can only detect workpieces with simple two-dimensional data. However, in the development of high-precision measuring instruments, the position and function of a two-dimensional imager are not as simple as CMM. When precision measurement instruments were initially developed, we can only rely on simple and rough projectors to perform some simple measurements, which greatly limits the quality assurance of the market and customers. Therefore, on this basis, the secondary image measuring instrument was developed by researchers and manufacturers and suddenly became the darling of high-precision measuring instruments. At present, the secondary component is still a simple testing instrument, but in the case of time, it has made a great breakthrough on the basis of the original projector, and it is the accuracy and measurement of the measurement results. The complexity has been greatly improved, and since then, precision measuring instruments have truly entered the era of high-precision measuring instruments. From here we can see that the secondary imager has an unachievable position in the development of high-precision measuring instruments. At the same time, it is precisely because of the appearance of the secondary image measuring instrument, on this basis, people have developed and produced high-end measuring instruments, such as CNC two-dimensional, manual three-coordinate and CNC three-dimensional. From this we can conclude that the two-dimensional imager not only has a high position in the development of high-precision measuring instruments, but also plays an active role in the development of high-precision measuring instruments for automatic image measuring instruments. The development of instruments continues to advance.
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