Technical Classification:
Technologies of Optics
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Optical system design and evaluation technology enabling both outstanding optical performance and mass production
Minimizing defects in mass production by using simulation technology
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Glass-resin hybrid lens molding technology
Achieving optical systems with reduced footprint and weight by using lenses featuring the advantages of two materials
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Free-form surface processing technology for optical elements
Achieving space-saving, high-resolution optical elements of the next generation
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Glass molding technology to produce lenses having complex shapes by the unique droplet method
Optical systems for new applications achieved by flexibility of shape
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Thin layer coating technology for optical parts
Imparting desired characteristics by forming a functional thin layer
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Super-hydrophobic coating technology
Providing highly durable hydrophobic properties by forming a rough nanostructure by etching
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Mold fine shape processing and transfer technology
Flexibly imparting high functionality to resins and glass with high reproducibility by using transfer technology
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High-accuracy far-infrared glass lens technology
Achieving high flexibility in designing arsenic- and selenium-free chalcogenide glass
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Automatic inspection technology for automotive production lines
Automating the inline paint quality inspection of car bodies
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Hyperspectral imaging technology (HSI)
Realizing highly accurate determination and inspection by processing spectral information of visible light or higher frequencies
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Infrared image analysis technology
Visualizing invisible gases to ensure security and safety and reduce greenhouse gas emissions
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3D image analysis technology
Improving the workflow and increasing the efficiency of security services by 3D scanning and moving object analysis technology
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LED dome display technology
Outstanding immersive experience achieved by a self-emitting LED dome to deliver unprecedented images