Abstract:
Provided is a carrier for a flexible substrate which is capable of handling a flexible substrate during a flexible substrate processing process, while allowing the flexible substrate to be easily separated. Also provided is a substrate processing apparatus, including the carrier, and a method of manufacturing a flexible display apparatus. The carrier includes a substrate supporting portion having a top surface including a mounting surface, an outer circumferential surface, surrounding the mounting surface, and a first heat cutting portion. The first heat cutting portion is located outside the mounting surface so as to be exposed on the top surface and generates heat when a current flows through the first heat cutting portion.
Abstract:
A flexible display device and method of manufacturing the same is disclosed. In one aspect, the device includes: a substrate, a light-emitting display part formed on a first surface of the substrate, an encapsulation layer formed on the light-emitting display part, and an exfoliation layer formed on a second surface of the substrate. The exfoliation layer has a layer structure.
Abstract:
A display device includes a display module, a plurality of support bars disposed on a rear surface of the display module, a roller which is connected to one end of the display module and around which the display module and part of the plurality of support bars are wound, and a housing which accommodates the display module, the plurality of support bars, and the roller. A gap between the plurality of support bars varies according to areas of the display module.
Abstract:
An organic luminescence display device includes a substrate, a display unit on the substrate, a thin-film encapsulation layer sealing the display unit, and a stress-reducing layer on the thin-film encapsulation layer, wherein the stress-reducing layer includes an organic molecular film.
Abstract:
A flexible display device includes: a flexible substrate; a thin-film transistor on the flexible substrate; a passivation film covering the thin-film transistor; and a display element on the passivation film and electrically connected to the thin-film transistor. The passivation film includes a material exhibiting a shear-thickening phenomenon.
Abstract:
A flexible display device includes: a flexible substrate; a thin-film transistor on the flexible substrate; a passivation film covering the thin-film transistor; and a display element on the passivation film and electrically connected to the thin-film transistor. The passivation film includes a material exhibiting a shear-thickening phenomenon.
Abstract:
An organic luminescence display device includes a substrate, a display unit on the substrate, a thin-film encapsulation layer sealing the display unit, and a stress-reducing layer on the thin-film encapsulation layer, wherein the stress-reducing layer includes an organic molecular film.
Abstract:
An organic luminescence display device includes a substrate, a display unit on the substrate, a thin-film encapsulation layer sealing the display unit, and a stress-reducing layer on the thin-film encapsulation layer, wherein the stress-reducing layer includes an organic molecular film.
Abstract:
A method of manufacturing a display device that includes: performing a surface treatment on at least one of two opposing surfaces of a carrier substrate and a mother substrate; bonding the carrier substrate and the mother substrate; performing a thin film formation process on the mother substrate; and separating the carrier substrate and the mother substrate. The thin film formation process includes a heat treatment operation, the surface treatment includes using an inorganic acid or an organic acid, and the surface treatment controls a content of —OH, —OH2+, and —O− groups of the at least one treated surface.
Abstract:
An organic electroluminescent display device includes a substrate, pixels on the substrate and each including an organic emission layer, and a sealing member covering the pixels and configured to block moisture and gas from outside the organic electroluminescent display device to the pixels. The sealing member includes an inorganic layer of which a lower surface is opposite to an upper surface thereof and closer to the pixels than the upper surface, and each of the upper surface and the lower surface has an uneven shape.