Abstract:
A display apparatus is disclosed. The display apparatus includes a panel unit which comprises a plurality of sub pixels having different colors; a backlight unit which provides backlight to the panel unit using a white light source and a blue light source; an image processing unit which converts image data into first color frame data and second color frame data; a panel driving unit which turns on a first color sub pixel according to the first color frame data, and which turns on a second color sub pixel according to the second color frame data; a backlight driving unit for driving the backlight unit; and a control unit which controls the backlight driving unit to consecutively turn on the white light source and the blue light source according to operations of the panel driving unit. Accordingly, brightness may be enhanced.
Abstract:
Provided is an integrated circuit including a plurality of standard cells each including a front-end-of-line (FEOL) region and a back-end-of-line (BEOL) region on the FEOL region, the FEOL region including at least one gate line extending in a first horizontal direction. A BEOL region of a first standard cell among the plurality of standard cells includes an eaves section not overlapping an FEOL region of the first standard cell in a vertical direction, the eaves section protruding in a second horizontal direction perpendicular to the first horizontal direction.
Abstract:
A transflective image display apparatus includes a transmissive polarizing plate; a color filter disposed below the transmissive polarizing plate and including a white color filter and at least two of a red color filter, a green color filter, and a blue color filter; a liquid crystal display panel disposed below the color filter; an electrical polarization control unit disposed below the liquid crystal display panel; a reflective polarizing plate disposed below the electrical polarization control unit; a backlight unit disposed below the reflective polarizing plate and including a white light source and a light source configured to emit light corresponding to at least one of the red color filter, the green color filter, and the blue color filter; and a controller configured to control the liquid crystal display panel, the electrical polarization control unit, and the backlight unit periodically in at least two states according to a predetermined condition.
Abstract:
An integrated circuit includes a standard cell. The standard cell may include a plurality of gate lines and a plurality of first wirings. The plurality of first wirings may include a clubfoot structure conductive pattern that includes a first conductive pattern and a second conductive pattern spaced apart from each other. Each of the first conductive pattern and the second conductive pattern may include a first line pattern extending in a first direction and a second line pattern protruding from one end of the first line pattern in a direction perpendicular to the first direction. The plurality of gate lines may be spaced apart from each other by a first pitch in the first direction, and the plurality of second wirings may be spaced apart from each other by a second pitch in the first direction. The first pitch may be greater than the second pitch.
Abstract:
Provided is an integrated circuit including a plurality of standard cells each including a front-end-of-line (FEOL) region and a back-end-of-line (BEOL) region on the FEOL region, the FEOL region including at least one gate line extending in a first horizontal direction. A BEOL region of a first standard cell among the plurality of standard cells includes an eaves section not overlapping an FEOL region of the first standard cell in a vertical direction, the eaves section protruding in a second horizontal direction perpendicular to the first horizontal direction.
Abstract:
An LED apparatus is provided. The LED apparatus includes a plurality of substrate layers, each substrate layer corresponding to one of a plurality of sub-pixels of a pixel; a heat sink plate provided on a first side of each substrate layer, the heat sink plate including a patterned area provided between adjacent substrate layers of the plurality of substrates layers; a fluorescence provided on the heat sink plate overlapping at least a portion of one of the plurality of substrate layers; and a plurality of light emitting diodes, each light emitting diode formed on a second side opposite to the first side of each substrate layer.
Abstract:
A backlight unit is provided. The backlight unit includes: a first surface light source array; a second surface light source array disposed on an upper portion of the first surface light source array and arranged such that a light emitting surface of the second surface light source array is parallel with a light emitting surface of the first surface light source array; and a reflection plate disposed on a lower portion of the first surface light source array and arranged such that a reflective surface of the reflection plate is parallel with the light emitting surface of the first surface light source array, wherein the second surface light source array is stacked on the first surface light source array such that the first and second surface light source arrays are offset from each other in a plane parallel to the light emitting surfaces.
Abstract:
A tiled display includes a plurality of bezelless liquid crystal display (LCD) panels in which pixels are exposed from at least one of a top side, a bottom side, a left side, and a right side thereof; at least one backlight unit disposed below the plurality of bezelless LCD panels and configured to emit light. The plurality of bezelless LCD panels are disposed such that sides from which the pixels are exposed are connected to each other, the backlight unit comprises a plurality of light emitting diodes (LEDs) configured to emit the light to the bezelless LCD panel, and the plurality of LEDs are disposed at equal intervals below the plurality of bezelless LCD panels including a portion where the plurality of bezelless LCD panels are connected to each other.
Abstract:
A control method of a display apparatus including a panel configured to include red (R), green (G), and white (W) subpixels, and a backlight configured to provide the panel with backlight using at least one of a white light source and a blue light source, including: converting image data into R, G, and blue (B) subframe data; turning on the R, G, and W subpixels according to the R, G, and B subframe data; and turning on the W subpixel, setting a brightness of the white light source to a brightness value of the R, G, and B subframe data, providing the panel with white light at the set brightness, turning on subpixels corresponding to remaining subframe data, setting at least one of the brightness of the white light source and a brightness of the blue light source, and providing the panel with light at the set brightnesses, is provided.