Abstract:
Provided herein may be a display device. The display device may include a first substrate including a first substrate having a plurality of pixel areas; a second substrate having a second base substrate facing the first substrate, first to third color filters provided on the second base substrate, the first to third color filters being respectively disposed on locations corresponding to respective pixel areas of the plurality of pixel areas and embodying different colors, and an infrared sensor disposed between the plurality of pixel areas in a plan view and configured to sense infrared light; a liquid crystal layer disposed between the first substrate and the second substrate; and a backlight unit configured to provide single-color light to the liquid crystal layer. At least one of the first to third color filters may include infrared quantum dot material which converts light provided from the backlight unit into infrared light.
Abstract:
A display device includes a first substrate, a first wavelength conversion layer and a second wavelength conversion layer disposed on the first substrate and spaced apart from each other, and a polarization layer disposed on the first wavelength conversion layer and the second wavelength conversion layer, the polarization layer including a reflection portion and a transmitting portion, in which the reflection portion overlaps a gap formed between the first wavelength conversion layer and the second wavelength conversion layer.
Abstract:
Provided is a wire grid polarizer. The wire grid polarizer includes a substrate, and a plurality of conductive wire patterns which are in parallel with each other and projected from the substrate. The plurality of conductive wire patterns includes a conductive wire pattern material in which an oxide layer is defined at an outer side surface thereof, and an oxidation resistant layer on the oxide layer at the outer side surface of the conductive wire pattern material. The oxide layer is between the oxidation resistant layer and a remainder of the conductive wire pattern material.
Abstract:
A display apparatus includes a wire grid pattern layer and a capping layer. The wire grid pattern layer includes protrusions having the same shape and spaced at uniform intervals to form a wire grid. The capping layer is on the wire grid pattern layer. The protrusions include metal, and the capping layer includes metal oxide which is an oxide of the metal.
Abstract:
A touch screen panel includes: a first touch electrode disposed on a substrate and extending in a first direction, the first touch electrode including first mesh patterns formed of crossing metal wirings including fine patterns; and a second touch electrode disposed on the substrate and extending in a second direction crossing the first direction, the second touch electrode including second mesh patterns formed of crossing of metal wirings including fine patterns.
Abstract:
A touch screen panel and a method of manufacturing the same. The touch screen panel includes: a plurality of touch electrodes disposed in a touch area of a substrate, the touch electrodes configured to sense a touch; and a connecting wire connected with the touch electrode and having a pad connected to one end. The connecting wire includes a first wire layer made of a metal nano wire disposed on the substrate, a second wire layer made of a first transparent conductive material, a third wire layer disposed on an upper surface of the second pad and made of a second transparent conductive material, and a fourth wire layer made of aluminum (Al) disposed on the third pad.