Optoelectronic information science and engineering mainly study the basic knowledge and skills in optics, mechanics, electronics, computer science and other fields, learn the design and manufacturing methods of optoelectronic instruments in the field of optoelectronic information, conduct research and development applications of optoelectronic devices, and explore optical processing technologies. For example: the design and manufacture of optical instruments such as microscopes and telescopes, the research and development and application of infrared detectors, subway X-ray security machines and other equipment, and the research of light processing technologies such as laser engraving.
Optoelectronic information science and engineering mainly includes information optoelectronics, circuit analog electronics technology, engineering electromagnetic field theory, solid-state electronics, photoelectric detection and signal processing, fiber optics, optical programming, modern optics, signals and systems, photoelectric detection technology, modern optical measurement technology and sensor principle. Some colleges and universities cultivate professional directions: photoelectric instruments, optical engineering, optical communication technology, photoelectric information technology, photoelectric detection and optical communication, and photoelectric engineering.
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