Abstract:
A display device includes: a display panel; a heat dissipation sheet on a surface of the display panel; a circuit board electrically connected to the display panel, the circuit board being on a surface of the heat dissipation sheet; and a vapor chamber attached to the surface of the heat dissipation sheet to emit heat transferred through the heat dissipation sheet. The circuit board overlaps with a first area of the heat dissipation sheet. A first part of the vapor chamber is attached to a second area of the heat dissipation sheet, and a second part of the vapor chamber is spaced apart from the heat dissipation sheet.
Abstract:
A display device includes a display panel, a driving board disposed on a side of the display panel, and a vapor chamber disposed between the display panel and the driving board, wherein the vapor chamber includes an external member, a first wick and a second wick which are disposed on at least parts of inner surfaces of the external member and face each other, a refrigerant which is contained in the external member, and a refrigerant dense part in which the refrigerant densely resides, and an area occupied by the first wick on the inner surfaces of the external member is greater than an area occupied by the second wick on the inner surfaces of the external member.
Abstract:
A vapor chamber comprises a front surface member having a curvature, a rear surface member coupled to the front surface member, a wick disposed between the front surface member and the rear surface member, and a refrigerant at least partially filled between the front surface member and the rear surface member, wherein the rear surface member includes a plurality of bent areas.
Abstract:
A light-emitting display device and a method of manufacturing the same including preparing a substrate such that the substrate includes a pixel area and a seal area; forming first pixel electrode patterns on the substrate; forming insulating patterns on the pixel area and the seal area; forming hole injection patterns on the pixel area and the seal area; forming surface treatment patterns on the pixel area and the seal area; forming light-emitting patterns on the pixel area and the seal area; and forming second pixel electrode patterns on the pixel area, wherein forming the surface treatment patterns includes forming the surface treatment patterns on the pixel area and the seal area such that the surface treatment patterns and the hole injection patterns can be alternately arranged on the top surface of the pixel area, and that only the surface treatment patterns can be arranged on the top surface of the seal area.
Abstract:
Provided is an organic light emitting diode display including a substrate; a display unit formed on the substrate and including a thin film transistor and an organic light emitting diode; a thin film encapsulation covering and encapsulating the display unit and formed by a laminated structure made of at least one first inorganic layer, a first organic layer, and a second inorganic layer; and a protective bezel fixed to the substrate and spaced apart from the side of the substrate to surround edges of the substrate and the thin film encapsulation.