LCD Panel Splitting Robot
LCD & OLED 65" PANEL ROBOT
The LCD Panel Robot 65 is used for the movement and processing of glass substrates in LCD and OLED manufacturing processes. Responsible for the safe and precise handling of glass substrates, performing operations such as substrate transfer, loading, unloading, positioning and calibration during the manufacturing process.
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LCD Panel Splitting Robot
LCD & OLED 75" PANEL ROBOT
The LCD Panel Robot 75 is used for the movement and processing of glass substrates in LCD and OLED manufacturing processes. Responsible for the safe and precise handling of glass substrates, performing operations such as substrate transfer, loading, unloading, positioning and calibration during the manufacturing process
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LCD glass handling robot
LCD & OLED 6G GLASS ROBOT
LCD&OLED Glass Robot 6G is a robot used in LCD and OLED manufacturing processes for transporting glass substrates, FMM (fine metal mask), etc. It is mainly divided into three categories: vacuum robots, atmospheric pressure robots, and special process robots.
The manufacturing process of OLED displays involves multiple stages, and high-precision substrate transfer is required between each stage.
LED vacuum robots are devices that transport substrates with ultra-high precision of less than 0.1 millimeters, improving production process efficiency and increasing output through automated systems. This robot plays a key role in enhancing the price competitiveness of OLED displays and promoting their popularization.
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LCD glass handling robot
LCD & OLED 8G GLASS ROBOT
LCD&OLED Glass Robot 8G is a robot used in LCD and OLED manufacturing processes for transporting glass substrates, FMM (fine metal mask), etc. It is mainly divided into three categories: vacuum robots, atmospheric pressure robots, and special process robots.
The manufacturing process of OLED displays involves multiple stages, and high-precision substrate transfer is required between each stage.
LED vacuum robots are devices that transport substrates with ultra-high precision of less than 0.1 millimeters, improving production process efficiency and increasing output through automated systems. This robot plays a key role in enhancing the price competitiveness of OLED displays and promoting their popularization.
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