Abstract:
Provided is a display apparatus including a bezel that is improved to prevent electrostatic discharge (ESD). The display apparatus includes a display panel on which an image is to be displayed, a chassis arranged at a rear side of the display panel and including a conductive material, a bezel configured to support the display panel and including a non-conductive material, and an adhesive including a conductive material and coated on an inner side surface of the bezel such that static electricity is guided away from being discharged toward an inside of the display apparatus.
Abstract:
A display apparatus includes a display; a fixing bracket configured to be fixed to a wall; and a wall mount coupled to the fixing bracket, the wall mount being configured support the display, to be set in a close contact mode in which the wall mount is adjacent to the wall, and to be set a tilting mode in which the wall mount is tilted with respect to the wall. The display includes: a first accommodating portion recessed in a rear surface of the display and configured to accommodate the wall mount and the fixing bracket; and a wall mount coupling part provided within the first accommodating part and configured to be coupled to the wall mount. The rear surface of the display is brought into close contact with the wall when the wall mount is set to the close contact mode.
Abstract:
A display apparatus and a method for dissipating heat are provided. The display apparatus may include a housing including an inlet and an outlet; a display panel disposed in the housing; a first cooling flow path, through which a first flow of air flows, the first cooling flow path connecting the inlet to the outlet; a second cooling flow path formed in the housing to allow a second flow of air to flow around the display panel to exchange heat with the display panel; and a heat exchange device disposed in the housing. The heat exchange device may be configured to allow the second flow of air to exchange heat with the first flow of air, and supply outside air to the second cooling flow path or discharge the second flow of air in the second cooling flow path to an outside of the display apparatus.
Abstract:
Disclosed herein is a method of forming a multilayer thin film by depositing target particles, detached from a target by plasma discharge of inert gas, on a metal object using a multilayer thin film deposition apparatus and a multilayer thin film formed by the method. More specifically, a sputtering deposition apparatus is used as the multilayer thin film deposition apparatus. The method includes coating a metal object with a coating layer, depositing at least one hardness-enhancing layer on the coating layer, and depositing a color layer on the at least one hardness-enhancing layer.
Abstract:
A television apparatus comprises a support frame and a leg member extending from the support frame to support the support frame in an inclined orientation. The television apparatus further comprises a display panel unit having a chassis movably mounted to the support frame via a first coupling assembly mounted between a right side edge portion of the chassis and a right side section of the support frame, and a second coupling assembly mounted between a left side edge portion of the chassis and a left side section of the support frame.
Abstract:
A display apparatus having an electromagnetic wave shielding structure and an electromagnetic wave reducing structure, are provided. The electromagnetic wave shielding and reducing structures are applicable to various materials. The display apparatus includes a display panel, a rear case disposed at a rear of the display panel and formed of a non-conductive material, a printed circuit board disposed at a rear of the rear case, and an electromagnetic wave reducer provided at one surface of the rear case and being formed of a conductive material to reduce the electromagnetic wave generated at the printed circuit board, wherein the electromagnetic wave reducer is electrically connected to the printed circuit board.
Abstract:
A display device that reduces transfer of heat generated inside the display device, and a method of manufacturing the same. The display device comprises: a substrate that transmits electromagnetic waves emitted from inside of the display device, and a heat shielding layer including at least one of inorganic particles, metal particles, or metal nanowires that transmit electromagnetic waves in a visible band and reflect or absorb electromagnetic waves in an infrared band among the electromagnetic waves transmitted through the substrate.
Abstract:
The display device according to the present invention comprises: a printed circuit board on which a plurality of LEDs are mounted; a frame comprising a front surface for supporting the printed circuit board; and a cover member which covers the rear surface of the frame and comprises a plurality of outlets, wherein the frame comprises a first area extending from the front surface towards the rear surface, and a second area having pores and formed between the first area and the rear surface, and is provided to convect heat generated in the printed circuit board to the outlets via the first area and the pores.
Abstract:
The display apparatus includes a display assembly. The display apparatus further includes a mounting device on which the display assembly is mounted and a rotating shaft forming the center of rotation of the display assembly. The rotating shaft is at a fixed location for the mounting device and the display assembly, respectively. The display assembly is switched between a first mode and a second mode rotated from the first mode about a rotating shaft and is changed in the height of the center of the display assembly.
Abstract:
The display apparatus includes a display assembly. The display apparatus further includes a mounting device on which the display assembly is mounted and a rotating shaft forming the center of rotation of the display assembly. The rotating shaft is at a fixed location for the mounting device and the display assembly, respectively. The display assembly is switched between a first mode and a second mode rotated from the first mode about a rotating shaft and is changed in the height of the center of the display assembly.