Abstract:
A display device includes a panel assembly on which an image is formed, a cover member which comprises a front portion having a display window exposing at least a portion of a front side of the panel assembly and a side portion which is bent from the front portion, the cover member having one or more joining regions where a pair of end portions engage with and are joined to each other, the cover member comprising a first joining part and a second joining part which are formed at the pair of end portions, respectively, wherein at least one of the first joining part and the second joining part include a region stepped from a surface of the cover member, and at least a portion of the first joining part and the second joining part overlap each other, and an accommodating member which accommodates the panel assembly and is joined to the cover member.
Abstract:
A backlight assembly having improved strength and a display device having the backlight assembly are provided. The backlight assembly includes a light source supplying light and a fixing member receiving the light source. A deflection preventing portion having a predetermined width is formed on a surface of the fixing member in a direction crossing a diagonal on the surface of the fixing member.
Abstract:
A display device includes a display panel; a backlight unit disposed behind the display panel; a panel supporting part; and a first cover. The first cover includes a first cover part disposed along a non-display region of the display panel. The display device further includes a plurality of second cover parts extending downward from the first cover part. The panel supporting part includes a first supporting part disposed between the display panel and the backlight unit. The first supporting part supports the display panel. The panel supporting part also includes a plurality of second supporting parts extending upward from an edge portion of the first supporting part. The second supporting part is disposed alternately with the second cover parts. The second cover parts and the second supporting part face the lateral side of the display panel.
Abstract:
A pattern forming ink includes a polymer resin including acrylic-based resin, a cross-linking agent including hexamethylenediisocyanate, and a filler. The pattern forming ink is printed as a reflection pattern on a light guide plate. Light incident to the reflection pattern is reflected and scattered towards an emission surface of the light guide plate. The light guide plate is connected to a light generator in a light emitting unit. The light emitting unit may be connected to a liquid crystal panel in a liquid crystal display, which displays an image by receiving the light generated from the light emitting unit.
Abstract:
A liquid crystal display including a liquid crystal panel, and an optical body for transmitting light emitted from a light source to the liquid crystal panel, wherein a securing platform for securely receiving the liquid crystal panel is disposed along edges of the optical body.
Abstract:
A backlight assembly includes a light source, a light guide plate, and a receiving container having a combination guide part. The coupling guide part is inwardly protruded with respect to the sidewalls of the receiving container. The coupling guide part corresponds with a guide recess on the light guide plate to guide the light guide plate to a proper position. The coupling guide part may also include a screw thread to couple the receiving container with an external case. Therefore, the receiving container may be easily coupled with the external case and the light guide plate may be guided to a proper position via the combination guide part to thereby simplify a manufacturing process of the backlight assembly and reduce its size.
Abstract:
A back light assembly comprises a light source, a power supply line, a receiving container, a fixing member and at least one connecting member. The light source generates light, and the power supply line supplies electrical power to the light source. The receiving container receives the light source. The fixing member is disposed on a rear face of the receiving container so as to attach the power supply line to the receiving container. The connecting member is disposed on the receiving container so as to couple the fixing member to the rear face of the receiving container. The power supply line may be firmly fixed to the receiving container so that a failure or a breakage of the power supply line may be prevented.
Abstract:
A receiving container for a display device, an LCD device having the receiving container for the display device, and a method of manufacturing the LCD device, wherein the receiving container for the display device includes a frame and a synthetic rubber spacer. The synthetic rubber spacer is provided on the frame. The synthetic rubber spacer includes a plurality of synthetic rubber pieces connected together so that the synthetic rubber spacer absorbs an externally provided impact and protects the LCD panel.
Abstract:
Disclosed is a liquid crystal display device of which overall size and weight can be minimized. The liquid crystal display device has a light generating unit for generating a light. A light guiding plate guides the light to a display unit for displaying an image. A reflection plate is disposed under the light guiding plate for reflecting the light to the light guiding plate. A receiving container receives the reflection plate, the light guiding plate and the light generating unit. At least one boss is formed on a bottom of the receiving container for preventing the light generating unit from being moved by guiding a position of the light generating unit. Accordingly, the number of the parts installed in the liquid crystal display device can be reduced, and the manufacturing cost can be decreased because the manufacturing process is simplified in comparison with the liquid crystal display device including a separate lamp cover.
Abstract:
Disclosed is a liquid crystal display device of which overall size and weight can be minimized. The liquid crystal display device has a light generating unit for generating a light. A light guiding plate guides the light to a display unit for displaying an image. A reflection plate is disposed under the light guiding plate for reflecting the light to the light guiding plate. A receiving container receives the reflection plate, the light guiding plate and the light generating unit. At least one boss is formed on a bottom of the receiving container for preventing the light generating unit from being moved by guiding a position of the light generating unit. Accordingly, the number of the parts installed in the liquid crystal display device can be reduced, and the manufacturing cost can be decreased because the manufacturing process is simplified in comparison with the liquid crystal display device including a separate lamp cover.