Abstract:
In a backlight assembly, a liquid crystal display (“LCD”) apparatus including the backlight assembly and a method for manufacturing the backlight assembly, the backlight assembly includes first, second, third and fourth lamps. The first to fourth lamps respectively face first to fourth side surfaces of a light-guide plate. Each include an input and an output terminal. The output terminals of the first and second lamps and of the third and fourth lamps, and the input terminals of the first and fourth lamps and of the second and third lamps, are adjacent to each other. A pair of the output terminals of the first and second lamps or the third and fourth lamps is connected to each other, so that the pair of lamps is arranged in an L-shape. The pair of the output terminals may be fed back to each input terminal, or grounded to a receiving container.
Abstract:
A backlight assembly includes a plurality of lamps, a first reflecting plate and an optical member. The lamps are disposed substantially parallel with each other and generate light. The bottom reflecting plate is disposed under the lamps to reflect the light. The first reflecting plate is disposed over the lamps to transmit and reflect the light and has a plurality of penetration holes for transmitting the light. The optical member is disposed over the first reflecting plate. The formation density of the penetration holes increases as a position of the penetration holes approaches an intermediate region between adjacent lamps from a region corresponding to a position of the lamps.
Abstract:
A photomask includes; a source electrode pattern including; a first electrode portion which extends in a first direction, a second electrode portion which extends in the first direction and is substantially parallel to the first electrode portion, and a third electrode portion which extends from a first end of the first electrode portion to a first end of the second electrode portion and is rounded with a first curvature, a drain electrode pattern which extends in the first direction and is disposed between the first electrode portion and the second electrode portion, wherein an end of the drain electrode pattern is rounded to correspond to the third electrode portion; and a channel region pattern which is disposed between the source electrode pattern and the drain electrode pattern, wherein a center location of the first curvature and a center location of the rounded portion of the end of the drain electrode pattern are the same.
Abstract:
In a backlight assembly and a display apparatus having the backlight assembly, the backlight assembly includes a light source, a light guide, a first reflector, and an optical unit. The light guide is disposed adjacent to the light source, extends substantially parallel with a longitudinal direction of the light source, and refracts light emitted from the light source. The first reflector is disposed under the light guide and reflects the refracted light toward the optical unit. The optical unit is disposed over the first reflector such that an empty space is formed between the optical unit and the first reflector.
Abstract:
In a light-emitting assembly and a display apparatus having the light-emitting assembly, the light-emitting assembly includes a light guide plate, a first light-emitting module and a second light-emitting module. The light guide plate includes a first surface, a second surface facing the first surface and including a light incident portion and a light exiting portion, and a third surface connecting the first surface with the second surface and inclined toward the first surface. The first light-emitting module is on the light incident portion of the second surface and emits a first light to the light incident portion. The second light-emitting module faces the third surface and emits a second light having a wavelength different from the first light, to the third surface.
Abstract:
A sensor array substrate includes: a substrate; a protective substrate disposed on a first surface of the substrate; a plurality of light sensor units disposed on a second surface of the substrate, where the plurality of light sensor units detects reflection light reflected from a surface of the protective substrate; and a reflection light blocking pattern disposed between the light sensor units and the protective substrate, where the reflection light blocking pattern blocks a portion of the reflection light, and where a plurality of openings corresponding to the plurality of light sensor units is formed in the reflection light blocking pattern.
Abstract:
A method of displaying a stereoscopic image comprises; dividing an input image into a left-eye image and a right-eye image, estimating a crosstalk in accordance with a position of a display panel using a grayscale difference between the left-eye image and the right-eye image, displaying the left-eye image and the right-eye image and adjusting opening periods and closing periods of a pair of shutter glasses so that a shutter of the pair of shutter glasses is open and closed respectively during the opening period and the closing period based on the estimated crosstalk.