Abstract:
Disclosed herein is a vacuum processing apparatus for performing a desired process for a substrate after establishing a vacuum atmosphere therein. More particularly, the vacuum processing apparatus includes a vacuum chamber, which is divided into a chamber body and an upper cover. The upper cover is configured to be easily opened away from and closed to the chamber body.
Abstract:
An apparatus is provided that forms embossed portions on a workpiece. The apparatus includes a melting chamber filled with melt, such as ceramic, nozzles provided at a lower portion of the melting chamber, and presses provided adjacent to each of the injection nozzles. The injection nozzles drop the melt on the workpiece and the presses press the dropped melt into a predetermined shape of the embossed portions in a state where the dropped melt is being solidified after being dropped on the workpiece.
Abstract:
A transfer chamber for a flat display device manufacturing apparatus is provided. The transfer chamber may combine functions of a transfer chamber and a load-lock chamber. A robot may be provided aside from a center of the transfer chamber, and a buffer may be provided so as to avoid interference with the robot. An aligner may adjust a position of a substrate mounted on the buffer.
Abstract:
The present invention provides a flat fluorescent lamp. The flat fluorescent lamp comprises a single plate. Consequently, the flat fluorescent lamp is structurally safe, brightness of the flat fluorescent lamp is high, and efficiency of the flat fluorescent lamp is also high without the provision of other additional optical components. The present invention also provides a method of manufacturing such a flat fluorescent lamp.
Abstract:
Disclosed herein is a flat panel display (FPD) manufacturing apparatus for performing a desired process for a substrate positioned in a chamber after establishing a vacuum atmosphere in the chamber. The vacuum chamber is divided into a chamber body and an upper cover to ensure easy opening/closing operations of the upper cover.
Abstract:
An flat-panel display (FPD) manufacturing apparatus which has a configuration capable of easily processing large-size substrates while achieving easy manufacturing, transporting, operating, and repair processes.
Abstract:
Disclosed herein is a flat panel display (FPD) manufacturing apparatus for performing a desired process for a substrate positioned in a chamber after establishing a vacuum atmosphere in the chamber. The vacuum chamber is divided into a chamber body and an upper cover to ensure easy opening/closing operations of the upper cover.
Abstract:
An flat-panel display (FPD) manufacturing apparatus is provided. The apparatus is flexibly configured so that it is capable of easily processing large-size substrates while also simplifying manufacturing, transporting, operating, and repair processes.
Abstract:
Disclosed herein is a vacuum processing apparatus for performing a desired process for a substrate after establishing a vacuum atmosphere therein. More particularly, the vacuum processing apparatus includes a vacuum chamber, which is divided into a chamber body and an upper cover. The upper cover is configured to be easily opened away from and closed to the chamber body.
Abstract:
Disclosed herein is a vacuum processing apparatus for performing a desired process for a substrate after establishing a vacuum atmosphere therein. More particularly, the vacuum processing apparatus includes a vacuum chamber, which is divided into a chamber body and an upper cover. The upper cover is configured to be easily opened away from and closed to the chamber body.