Abstract:
A light guide plate, a backlight module, and a display device are disclosed. The light guide plate includes a main body, which includes a light-reflecting surface and a light-exiting surface, a first lattice portion arranged on the light-reflecting surface, and a second lattice portion arranged on the light-exiting surface. The light-exiting surface includes a lattice region formed on a peripheral portion thereof, and a central light-exiting region that is surrounded by the lattice region. The second lattice portion covers the lattice region. According to the present disclosure, the brightness of the peripheral portion of the light-exiting surface can be reduced effectively, and thus the display effect of the electronic products including the light guide plate can be improved.
Abstract:
The present invention discloses that an iron frame of a display comprises an upper surface and a lower surface, the upper surface comprises a first container to dispose a display panel, an optical film and a light guide plate, and the lower surface comprises at least one second container to dispose an electronic component. Meanwhile, the present invention further provides that a display module comprises an iron frame of display, a display panel, and an optical film and a light guide plate, the iron frame of a display comprises an upper surface and a lower surface, the upper surface comprises a first container to dispose a display panel, an optical film and a light guide plate, and the lower surface comprises a second container to dispose an electronic component.
Abstract:
The present invention provides a double-sided curved liquid crystal display device, which includes: a backlight frame (1), first and second LED light sources (3, 5) that are mounted in the backlight frame (1) and are opposite to each other, first and second diffuser plates (7, 9) that are mounted in the backlight frame (1) and are opposite to each other, first and second mold frames (2, 4) that are mounted on the backlight frame (1) and are opposite to each other, first and second curved liquid crystal display panels (6, 8) that are respectively mounted to the first and second mold frames (2, 4) and are opposite to each other, and a bezel (10) that is mounted to the first and second curved liquid crystal display panels (6, 8). The first and second LED light sources (3, 5) face opposite directions. The backlight frame (1) includes a backplane brace (15), a backplane (11), and a backplane mounting strip (13). The first and second diffuser plates (7, 9) are planar.
Abstract:
The present invention provides a jointed curved liquid crystal display device, which includes: at least two liquid crystal display units. The at least two liquid crystal display units includes: a first liquid crystal display unit (2) and a second liquid crystal display unit (4) connected to one edge of the first liquid crystal display unit (2) to be rotatable about one axis. The first and second liquid crystal display units (2, 4) receive a first cushion section (8) mounted therebetween. The axis is arranged to be opposite to the first cushion section (8). The at least two liquid crystal display units further includes a third liquid crystal display unit (6) connected to an opposite edge of the first liquid crystal display unit (2) to be rotatable about another axis. The first and third liquid crystal display units (2, 6) receive a second cushion section (10) mounted therebetween. Said another axis is arranged to be opposite to the second cushion section (10). The jointed curved liquid crystal display device can display one or multiple images according to the needs of users and allows for adjustment of curve angle thereof as desired.
Abstract:
The present disclosure relates to a splicing liquid crystal panel and a method for assembling the splicing liquid crystal panel, and a splicing television including the splicing liquid crystal panel. The splicing liquid crystal panel comprises a backlight module and a plurality of liquid crystal modules in cooperation with the backlight module. The backlight module comprises a back plate, light source lamps arranged on a first surface of the back plate, a bearing frame surrounding the edges of the back plate, and dismounting members connected between the bearing frame and a second surface of the back plate, wherein, each dismounting member comprises a first connector connected with the bearing frame and a second connector connected with the back plate, the first connector and the second connector form a hinge joint. The backlight of such a splicing liquid crystal panel has a unitary structure which is easy remove and convenient to maintain.
Abstract:
The present invention discloses a plastic frame, a backlight module and a liquid crystal display device. The plastic frame comprising a support portion for supporting the liquid crystal panel, and having a first side surface disposed adjacent to the liquid crystal panel and provided with multiple first concave structures; and a second side surface disposed away from the liquid crystal panel and opposite to the first side surface. Through the above way, the present invention can reduce the heat transmitted to the liquid crystal panel and reduce the risk of display problem of the liquid crystal panel produced by over temperature so as to improve the display quality of the liquid crystal display device.
Abstract:
The invention discloses a multiple display monitor. The multiple display monitor comprises a plurality of liquid crystal display panels that face different directions; the plurality of liquid crystal display panels surround to constitute an accommodating space for accommodating a backlight source device configured to provide a backlight to the plurality of liquid crystal display panels, the backlight source device comprises a plurality of illuminating apparatus corresponding to the liquid crystal display panels one by one in order to provide the backlight to corresponding liquid crystal display panels. A plurality of illuminator is employed to provide light for multiple displays facing different direction. Therefore, each display can transmit or reflect enough light so that each display can display well. Further, all of the displays are connected with each other in such a manner that the structure strength and stability of the multiple display monitor can be improved.
Abstract:
The present disclosure provides a back plate splicing structure for large-size backlight modules. The back plate includes a bottom flat plate and a splicing member joined to an end of the bottom flat plate, wherein the splicing member includes a side plate, and an upper supporting plate and a lower supporting plate configured on a same side of the side plate; the upper supporting plate, the lower supporting plate, and the side plate cooperatively define a clamping opening clamping the bottom flat plate therein; the upper supporting plate fixes the bottom flat plate in the clamping opening, and at least one fixing screw is configured between the bottom flat plate and the splicing member.
Abstract:
The present invention provides a reflector, backlight module, and liquid crystal display device. The reflector, which includes: a first reflector element and a second reflector element. The first reflector element and the second reflector element consist of different materials; as a result, the first reflector element is more heat resistant than the second reflector element. In addition, the cost of the second reflector element is less than the cost of the first reflector element; thus, the normal function of the reflector is maintained while reducing the cost of the reflector; as a result, the cost of the backlight module and the liquid crystal display device is reduced.
Abstract:
A heat dissipation module includes a plurality of airflow ducts that are arranged in an interior space of a heat dissipation chamber with two ends of the plurality of airflow ducts respectively connected to two end surfaces of the heat dissipation chamber and internal spaces of the plurality of airflow ducts in communication with the outside of the heat dissipation chamber. A plurality of pairs of fans are provided on the heat dissipation chamber to respectively correspond to the two ends of the plurality of airflow ducts. A coolant liquid is filled between outer walls of the airflow ducts and an inner wall of the heat dissipation chamber. The heat dissipation module is attachable to a lightbar of a liquid crystal display to effectively dissipate heat generated by the lightbar.