Abstract:
A liquid crystal display includes a substrate including a plurality of pixel areas, a color filter disposed in each of the plurality of pixel areas, and a liquid crystal layer positioned on a pixel electrode and filling a microcavity. A height of the liquid crystal layer corresponding to the color filter having a first color is different from a height of the liquid crystal layer corresponding to the color filter having a second color.
Abstract:
An optical film for a display device includes: a base layer; a pattern layer disposed on the base layer and having a repeating pattern of valleys and peaks; a plurality of first elongated scattering members disposed on upper surfaces of the valleys; and a cover layer having a shape that is complementary to and coupled with the repeating pattern of valleys and peaks, with the elongated scattering members being disposed between the pattern layer and the cover layer.
Abstract:
A touch panel and manufacturing method thereof are disclosed. In one aspect, the touch panel includes a flexible substrate and a plurality of touch sensors formed over the flexible substrate. Each of the touch sensors includes a first conductive pattern, a second conductive pattern at least partially overlapping the first conductive pattern, and an insulating layer interposed between and electrically insulating the first and second conductive patterns. The insulating layer is formed at least in part of an elastic material and the distance between the first and second conductive patterns is configured to vary as the flexible substrate is bent.
Abstract:
According to embodiments, a head-mounted display device includes a display panel, and an optical system disposed in front of the display panel. The display panel includes a light emitting device unit, three cholesteric layers disposed on the front surface of the light emitting device unit, an upper light blocking layer disposed between two cholesteric layers, a retardation plate disposed on front surfaces of the cholesteric layers, an absorption-type polarizer disposed in front of the retardation plate. Each cholesteric layers have different wavelength values according to the following equation: wavelength=n×pitch value where, n is a refractive index value, and the pitch value is a pitch value of liquid crystal molecules of the cholesteric layers.
Abstract:
A display device includes a plurality of electrodes disposed on a substrate and spaced apart from each other, a plurality of light-emitting elements disposed between the plurality of electrodes, a planarization layer disposed on the plurality of light-emitting elements, a lower reflective layer disposed on the planarization layer and comprising a first opening overlapping the plurality of light-emitting elements in a plan view, a wavelength conversion layer disposed on the lower reflective layer, and a functional layer disposed on the wavelength conversion layer and comprising a second opening overlapping the first opening in a plan view.
Abstract:
The present disclosure relates to a touch screen which includes: a base substrate including a sensing area and a peripheral area enclosing an edge of the sensing area; a first touch electrode disposed in the sensing area and extending in a first direction; a second touch electrode disposed in the sensing area and extending in a second direction which crosses the first direction; a plurality of sensing lines disposed in the peripheral area, wherein one ends of the sensing lines are respectively connected to the first touch electrode and the second touch electrode; and a pad unit disposed in the peripheral area and connected to the other end of each of the sensing lines to electrically connect the sensing lines to a driving circuit, wherein the sensing lines have different line widths.
Abstract:
Disclosed is a liquid crystal display, including: a first substrate and a second substrate, which face each other; a color filter disposed on the first substrate; a liquid crystal layer interposed between the first substrate and the second substrate; a first polarizing plate disposed outside the first substrate; a first compensation film disposed outside the first polarizing plate; a second compensation film disposed outside the second substrate; and a second polarizing plate disposed outside the second compensation film, in which the second compensation film includes a biaxial film, and the first substrate and the second substrate include a poly-amide (PA) having an optical characteristic of a negative C-plate.
Abstract:
A polarizer includes a first laminated structure having a first layer with a first refractive index and a second layer with a second refractive index, wherein the first and second refractive indices are different from each other. A buffer layer is disposed on the first laminated structure. A second laminated structure in the polarizer has a third layer with a third refractive index and a fourth layer with a fourth refractive index, wherein the third and fourth refractive indices are different from each other.