Abstract:
A method of manufacturing a polarizer, includes forming a polarizing layer having a light axis for polarized light, forming an upper coating layer on an upper surface of the polarizing layer, forming an adhesive layer on an upper surface of the upper coating layer, forming a lower coating layer on a lower surface of the polarizing layer, and forming a protection layer on a lower surface of the lower coating layer, wherein the lower coating layer includes a wavelength conversion material configured to convert a wavelength of a received light to a different wavelength.
Abstract:
A foldable display apparatus is disclosed that comprises a first set housing and a second set housing and respectively supporting two different portions of a display panel; a sliding plate on an upper surface of one of the first set housing and the second set housing; a spring member applying pressure to the sliding plate such that the sliding plate moves in a direction that is dependent on a direction of folding of the foldable display apparatus; and a hinge assembly connected to the first set housing and the second set housing, the hinge assembly configured to fold the foldable display apparatus in a first direction and fold the foldable display apparatus in a second direction that is opposite the first direction.
Abstract:
An OLED display device according to an embodiment includes a substrate; a black matrix, in which openings are formed, disposed on the substrate; a color filter layer disposed in the openings; and a transparent insulation layer disposed on the substrate, which is provided with the color filter layer, and configured to include optical patterns which are arranged in a shape of plural polygons. As such, the OLED display device can enhance an output efficiency of light.
Abstract:
A method of fabricating an organic light emitting diode display device, includes forming a thin film transistor on a first substrate, forming an organic light emitting element, which is electrically connected to the thin film transistor, on the first substrate, forming a black matrix, in which openings are formed, on one surface of a second substrate opposite to the first substrate, forming a color filter layer in the openings, forming a transparent insulation layer having a first surface and a second surface opposing the first surface on the second substrate, with the first surface of the transparent insulating layer in direct contact with the color filter layer, forming a plurality of optical patterns at the second surface of the transparent insulation layer, and attaching the first substrate and the second substrate such that the second surface of the transparent insulating layer is closer to the thin film transistor than the first substrate.
Abstract:
A liquid crystal display device and a method of manufacturing the same are discussed. The liquid crystal display device can include a backlight unit; and a liquid crystal panel having a lower polarizer arranged on the backlight unit, wherein the lower polarizer includes a polarizing layer having a light axis for polarized light and a wavelength conversion material provided between the polarizing layer and the backlight unit.