Abstract:
In a flexible display device including a non-bending area and a bending area, the flexible display device may include a circuit structure, a display structure on the circuit structure, and an organic layer under or over the circuit structure, the organic layer including a groove corresponding to the bending area.
Abstract:
A display device may include a first substrate, a touch sensor disposed on the first substrate, a second substrate disposed on the touch sensor, and a display unit disposed on the second substrate and which displays an image. The touch sensor includes a piezoelectric device, which senses a touch thereon, and an adhesive layer, which attaches the first and second substrates to each other. The piezoelectric device and the adhesive layer are disposed in a same layer.
Abstract:
An organic layer depositing apparatus includes a deposition unit which includes one or more deposition assemblies spaced a predetermined distance apart from a substrate to deposit a deposition material on the substrate, wherein the one or more deposition assemblies include: a deposition source; a deposition source nozzle unit; a first pattern sheet which includes a first patterning unit and a first overlap unit; and a second pattern sheet which includes a second patterning unit and a second overlap unit, wherein the first and second pattern sheets are arranged such that the first and second overlap units overlap each other.
Abstract:
A method of manufacturing a window for a display apparatus according to the present invention includes: providing, on a stage, a substrate including a foldable part bending around a folding axis extending in a first direction, and forming a groove on the foldable part. The forming the groove includes: grinding the foldable part by using a first machining wheel; grinding the foldable part by using a second machining wheel; and machining the foldable part by using a polishing wheel. The groove has at least one radius of curvature. The first machining wheel includes first abrasive grains, and the second machining wheel includes second abrasive grains less in size than the first abrasive grains.
Abstract:
A flexible display device includes a display panel, the display panel including a display surface and a rear surface opposite each other, and a plurality of adhesive films on at least one of the display surface and the rear surface, each of the plurality of adhesive films including at least one hole, wherein the plurality of adhesive films have a decreasing density, as a distance from a neutral plane of the flexible display device increases.
Abstract:
A head-mounted display system may include a display device and a head-mounted device. The display device includes a touch screen surface exposed to an outside and including an active region which displays an image and senses a user input. The head-mounted device includes a frame, in which a reception space allowing the display device to be mounted therein is defined, and an optical system disposed in the frame. The active region of the display device includes a first active region, which is exposed to the outside and receives the user input for controlling the head-mounted device, when the display device is coupled with the head-mounted device.
Abstract:
An electronic device may include a window member, a display member, a first coupling member, and a second coupling member. The window member may have a dome shape which is convex in a first direction, and may include an outer surface including a curved surface, an inner surface including a curved surface and facing the outer surface, and a connecting surface connecting the inner surface and the outer surface. The display member may display an image toward the inner surface and may include a curved surface. The first coupling member may be disposed between the window member and the display member to cover at least a portion of the inner surface and to couple the display member to the window member. The second coupling member may be disposed to cover an edge of the display member and couple the display member to the window member.
Abstract:
A display control system includes a coupling display unit coupled to a mobile device in a vehicle. The coupling display unit includes a disposition region which includes the mobile device and a display to receive information from the mobile device and to display an information region corresponding to the mobile device.
Abstract:
An apparatus for depositing an organic layer includes a deposition unit including a deposition assembly spaced apart from a substrate. The deposition assembly includes a deposition source configured to heat a deposition material, a deposition source nozzle unit installed on the deposition source, a plurality of pattern sheets facing the deposition source nozzle unit, and a source shutter disposed between the deposition source and the plurality of pattern sheets. The deposition source nozzle unit includes a deposition nozzle. The plurality of pattern sheets include at least one of a plurality of first patterning slits and a plurality of second patterning slits. The source shutter is configured to allow the deposition material to pass through one of the plurality of pattern sheets depending on a relative location between the deposition source and the substrate.
Abstract:
A display module includes abase substrate including an upper surface and a lower surface opposite the upper surface; a pixel layer facing the base substrate such that the upper surface of the base substrate is between the lower surface and the pixel layer, the pixel layer including a plurality of pixels; and a window member facing the base substrate such that the pixel layer is between the window member and the base substrate, the window member in an upper surface exposed to an outside thereof and a lower surface opposite the upper surface, and the upper surface of the window member and the lower surface of the base substrate include intaglio patterns, the intaglio patterns are overlapping with a dotted area when viewed in a plan view, and the display module is configured to be torn along the dotted area when a force is applied thereto.