Abstract:
A sheet fixing member including: a body extended substantially parallel with the sidewall; a horizontal protrusion protruded from a side of the body configured to be inserted into the horizontal supporting recess; a vertical leg disposed at each side of a lower surface of the body to extend in a downward direction, the vertical legs and the body forming a sheet receiving space therebetween; and a sheet fixing protrusion protruded from a center of the lower surface of the body in the downward direction, the sheet fixing protrusion configured to be passed through the optical sheet disposed in the sheet receiving space and to be inserted into the fixing hole, wherein the sheet fixing member is configured to be combined with a mold frame to affix an optical sheet.
Abstract:
Provided is a display device which may include a display panel having a long side in a first direction, a short side in a second direction, and a thickness in a third direction, a back cabinet disposed in the rear of the display panel, and a case that covers an edge of a front surface of the display panel. The case may include a horizontal case that covers an edge of the front surface of the display panel on a long side of the display panel and a vertical case covering an edge of the front surface of the display panel on a short side of the display panel. The horizontal case and the vertical case may be coupled to each other in a region corresponding to a corner of the display panel, and the horizontal case and the vertical case may be formed of different materials.
Abstract:
A display panel includes a first substrate, a second substrate which faces the first substrate, is smaller than the first substrate so that an edge of the first substrate is exposed in a plan view, a fixing member disposed on the exposed edge of the first substrate, and a bonding member disposed between the first substrate and the fixing member.
Abstract:
The backlight device included in the display apparatus is provided with: a light guide plate, a front chassis (pressing member) disposed at the front side of the light guide plate; and a heat sink (supporting member) having a plate-shaped connecting part (connecting plate) disposed at the side of the light guide plate, to be connected with other members. A through hole is formed in the connecting part, and a nut, which is necessary for connecting a bezel and the front chassis with a screw, is press-fitted into the through hole. A portion of the front side end of the connecting part, which is closest to a through hole, is a recessed part. Even if the front side end of the connecting part is deformed by the press-fitting of the nut into the through hole, the recessed part counteracts the deformation, and the connecting part does not interfere with the front chassis. Therefore, positional deviation of the front chassis and the light guide plate does not occur.
Abstract:
A fixing device for connecting an optical film with a back plate is disclosed. The fixing device includes a supporting portion, and a protrusive portion. The supporting portion is for connecting to a sidewall of the back plate. The protrusive portion is for passing through a through hole on an extended portion of the optical film such that the optical film is fixed on the back plate. The extended portion extrudes from a main body of the optical film. The fixing devices relate to a pure mechanical or semi-mechanical connection. Such connection structure may prevent the optical film from falling off due to environment changes. In addition, the fixing devices may be used over and over. Furthermore, the connection structure is more compact than the typical ones. The fixing devices not only satisfy the trend toward narrower sidewall of liquid crystal modules, but also prevent the optical film from being bent due to thermal expansion and contraction.
Abstract:
A backlight module comprises a backplate assembly and a light guide unit. The backplate assembly comprises a first backplate unit and a second backplate unit. The first backplate unit comprises a first backplate body and a plurality of first upper hooks. The first upper hooks are formed on a front side of the first backplate body. The second backplate unit comprises a second a backplate body and a plurality of first notches. The first lateral notches are formed on a back side of the second backplate body. The first upper hooks are respectively engaged with the first notches to form a complete backplate assembly. The first backplate unit is separated from the second backplate unit due to the expansion value of the light guide unit when the light guide unit expands in a horizontal direction by heat.
Abstract:
A liquid crystal display device includes LEDs, a liquid crystal panel 11, a chassis, a frame 13, positioning ribs 23, and step portions 30. The liquid crystal panel 11 is configured to display using light from the LEDs. The chassis is arranged on an opposite side of the liquid crystal panel 11 from a display surface that is for display. The frame 13 is arranged on the display surface side of the liquid crystal panel 11. The frame 13 holds at least the liquid crystal panel 11 and the LEDs with the chassis such that the liquid crystal panel 11 and the LEDs are sandwiched between the frame 13 and the chassis. The positioning rib 23 having a block-like shape projects from the frame 13 toward the chassis and includes a peripheral surface opposite a peripheral surface of the liquid crystal panel 11 for positioning the liquid crystal panel 11 relative to the display surface direction. The step portion 30 projects from a portion of a distal end surface of the positioning rib 23 toward the chassis so as to form a step. The step portion 30 includes a peripheral surface (the inner surface 30a) opposite the peripheral surface of the liquid crystal panel 11. The peripheral surface of the step portion 30 is on the same plane with the peripheral surface of the positioning rib 23 (the inner surface 23a) which is opposite the peripheral surface of the liquid crystal panel 11.
Abstract:
The present invention discloses a back light module and a liquid crystal display (LCD) thereof. The back light module comprises a light guide plate, an optical sheet laid on the light transmission surface of the light guide plate, wherein the edge of the optical sheet is fixed to the light guide plate by a plurality of positioning structures. With application of the positioning structures, because the expansion coefficient of the optical sheet is not nearly to that of the frame but is close to the thermal expansion rate of the light guide plate, after the optical sheet is fixed to the light guide plate, the light guide plate is expanded along with the expansion of the optical sheet when subject to heating, and shrunk along with the shrinking of the optical sheet when the temperature drops. Thus, the optical sheet is not easy to warp due to the minimum performance change of the optical sheet and the light guide plate, and the temperature environment is also very similar because the optical sheet is near to the light guide plate. Therefore, as compared with the frame, the temperature of the optical sheet is more similar to that of the light guide plate, and the thermal expansion rate of the optical sheet is also similar to that of the light guide plate. Thereby, the warping of the optical sheet is further decreased.
Abstract:
A curved display panel manufacturing method for manufacturing a curved display panel having a curved shape using a flat display panel having a first substrate and a second substrate facing one another includes: paring partially outer portions of the first substrate and the second substrate so as to reduce thicknesses thereof to predetermined thicknesses; and forming fixing layers at edge areas which are not bent in a state of being bent to the desired curved shape among the edge areas of the first substrate and the second substrate.
Abstract:
A backlight module and a liquid crystal display are disclosed, and the backlight module comprises a backboard where the backboard comprises a backboard main body and side walls. The side wall is provided with a light emitting article at its inner side, and the light emitting article and the backboard main body are provided with a support fixation article in between, for the support and immobilization of the light emitting article. This invention assures the alignment of the light emitting article with a light guide plate, which substantially boosts the incident efficiency of the light emitting article.