Abstract:
A cover window includes a first member and a second member attached to the first member. A folding portion and a non-folding portion are defined in the cover window, the folding portion includes an inner surface which is compressed when the cover window is folded and an outer surface which is stretched when the cover window is folded, the first member is closer to the inner surface than the second member is, and the second member is closer to the outer surface than the first member is. The second member includes a plurality of support units in the folding portion and spaced apart from each other.
Abstract:
A display device includes a first electrode and a second electrode spaced apart from each other; first light emitting elements disposed between the first electrode and the second electrode and emitting first light; second light emitting elements disposed between the first electrode and the second electrode and emitting second light; and a wavelength conversion pattern disposed on the first light emitting elements and the second light emitting elements, wherein a peak wavelength of the first light is different from a peak wavelength of the second light, and the first light emitting elements and the second light emitting elements are disposed on a same layer.
Abstract:
A display device includes a display panel in which first holes arranged in a first direction and a second direction that intersects the first direction are defined, and a first panel bottom member which is disposed on one surface of the display panel and in which second holes arranged in the first and second directions are defined. A maximum length of a second hole among the second holes in the first direction satisfies “e×(a+c)” where a denotes a maximum length of a first hole among the first holes in the first direction, c denotes a minimum distance between neighboring first holes among the first holes in the first direction, and e is a positive integer.
Abstract:
A tiled display comprises display devices adjacent to one another and each comprising first pixels and second pixels, a first boundary area where longer sides of at least two of the display devices are adjacent to each other, and a second boundary area where shorter sides of at least two of the display devices are adjacent to each other. Each of the first pixels and the second pixels comprises sub-pixels. The first pixels are disposed in the first boundary area such that the sub-pixels of the first pixels are parallel to the longer sides of the display devices. The second pixels are disposed in the second boundary area such that the sub-pixels of the second pixels are parallel to the shorter sides of the display devices.
Abstract:
A display device with a touch screen may include the following elements: a thin film transistor disposed on a first substrate; a display element that includes a first electrode connected to the thin film transistor, and a second electrode disposed on the first electrode; a plurality of first touch electrodes that are spaced apart from the first electrode on the first substrate; a plurality of second touch electrodes disposed on the first substrate in parallel with the first electrodes; a pixel definition layer that includes bridge contact holes through which the respective first touch electrodes are partially exposed; a bridge electrode that connects the first touch electrodes exposed through the bridge contact holes; and a second substrate facing the first substrate. The first electrode, the first touch electrodes and the second touch electrodes are formed of the same conductive material on the same layer.
Abstract:
A liquid crystal display includes: a first insulation substrate; a plurality of color filters positioned on the first insulation substrate; a plurality of gate lines and a plurality of data lines positioned on the plurality of color filters; a plurality of thin film transistors positioned on the plurality of color filters and connected to the plurality of gate lines and the plurality of data lines; a plurality of pixel electrodes connected to the plurality of thin film transistors; a second insulation substrate facing the first insulation substrate; a liquid crystal layer positioned between the first insulation substrate and the second insulation substrate; and a backlight unit positioned behind the second insulation substrate, wherein the thin film transistors are not formed on the second insulation substrate and anti-glare elements are provided in front of at least one of the data lines and gate lines for respectively reducing or preventing the reflection of ambient light to a user from the data lines or the gate lines respectively.
Abstract:
A liquid crystal display includes: a first insulation substrate; a gate line disposed on the first insulation substrate; a first data line and a second data line disposed on the first insulation substrate; a color filter disposed on the first insulation substrate and disposed between the first data line and the second data line; a first light blocking member disposed on the first data line and the second data line; and a second light blocking member disposed on the color filter and the first light blocking member, extending in the same direction as the gate line, and overlapping the first light blocking member on the first data line and the second data line.
Abstract:
A manufacturing method of a window includes: radiating a laser to a glass; immersing a laser-irradiated glass in a KOH solution to form a groove in the glass and to perform a primary reinforcement on the glass; masking the groove of a primarily reinforced glass; and performing a secondary reinforcement on a masked glass.
Abstract:
A display device includes: a light-emitting substrate including a base substrate having a non-display area and a display area that surrounds the non-display area; an input sensing unit disposed on the light-emitting substrate; and a hole penetrating front and rear surfaces of each of the light-emitting substrate and the input sensing unit, wherein the light-emitting substrate includes a plurality of recesses, the non-display area includes a hole area which overlaps with the hole, a recess area in which the plurality of recesses are disposed and surrounds the hole area, and a peripheral area which surrounds the recess area, and the input sensing unit includes a plurality of first sensor members overlapping the display area and a first connector connecting the first sensor members and overlapping the groove area.
Abstract:
One or more embodiments of the disclosure provides a light-emitting element including an N-type semiconductor layer, a P-type semiconductor layer, an active layer between the N-type semiconductor layer and the P-type semiconductor layer, and an insulating layer on a semiconductor stacked structure including the N-type semiconductor layer, the P-type semiconductor layer, and the active layer, and including a first insulating structure and a second insulating structure, the first insulating structure being between the semiconductor stacked structure and the second insulating structure and including a metal oxide including two or more metal elements.