Abstract:
A backplane structure includes a backplane and a curved supporting frame. The curved supporting frame includes a first and a second region, wherein, a curvature radius of the second region is less than a curvature radius of the first region. The curvature radiuses of the supporting frame are evenly changed from the first region toward the second region. The backplane is a flat-thin sheet, and the supporting frame is installed at a surface of the backplane and bends the backplane to form a curved surface having an even curvature radius. A curved display device includes a display panel and a backplane structure. Different positions of the supporting frame provide different curvature radiuses to apply different supporting forces near or away from the supporting frame such that all positions of the backplane can maintain a target curvature radius. Curvature radiuses of the backplane structure and the curved display device are equal.
Abstract:
A light guide plate (LGP) includes a positioning block that includes a positioning block body and a liquid filled and hermetically sealed in a receiving compartment formed in the interior of the positioning block body. The liquid is expandable with a drop of temperature so as to increase a volume thereof and thus enlarge a size of the positioning block body through elasticity of the positioning block body. In this way, the LGP positioning block is adjustable with the variation of the surrounding temperature so as to achieve effective positioning of the light guide plate and providing high reliability of a liquid crystal display device including the light guide plate.
Abstract:
The liquid crystal panel packaging assembly contains a liquid crystal panel assembly and a support tray. The liquid crystal panel assembly contains a liquid crystal panel, a wiring board, and a circuit board. The wiring board has a first end electrically connected to the liquid crystal panel and a second end configured with a first connection element. The circuit board has a second connection element for connection with the first connection element so that the circuit board is electrically connected to the wiring board. The support tray contains a first indentation for receiving the liquid crystal panel, a second indentation for receiving the wiring board, and at least a socket. The second indentation is at a side and is connected to the first indentation. The socket is located at a lateral side of the second indentation, and the circuit board is plugged into the socket.
Abstract:
The present invention provides a slim bezel liquid crystal display device, which includes a rear enclosure, a front enclosure mating the rear enclosure, and a liquid crystal display module arranged inside the rear enclosure. The quid crystal display module has two opposite sides each forming a raised portion. The rear enclosure forms retention sections respectively corresponding to the raised portions, whereby the raised portions are fit into the retention sections so as to fix the liquid crystal display module in the rear enclosure. The slim bezel liquid crystal display device uses a raised portion formed a liquid crystal display module and a retention section formed in a rear enclosure so that during assembling, the raised portion is fit into and engages the retention section so as to fix the liquid crystal display module in the rear enclosure.
Abstract:
The present application discloses a display device, a backplane and the mold for manufacturing the backplane bracket. The mold is used to imprint molding the sheet raw material; the mold has an elongated imprint mold structure; the two ends of the imprint mold structure have a male and female interworking mold structures; by placing the raw material with different lengths in a plurality of predetermined positions in the imprint mold structure can form a plurality of brackets for combining to a backplane. The present application provides a backplane and the simplified mold structures for manufacturing the backplane bracket, the process to manufacturing the backplane is simplified. By adapting a set of mold can manufacture a plurality of the needed bracket to form a backplane, which greatly reduces the cost of production.
Abstract:
A backlight module is disclosed. The backlight module includes a light guide plate, a light source, a back plate, and a positioning component for maintaining a light coupling distance between the light emitting surface of the light source and the light incident surface of the light guide plate. There is a light coupling distance between the light emitting surface of the light source and the light incident surface of the light guide plate. When a temperature change occurs, the positioning component occurs as a first deformation, as well as the light guide plate occurs as a second deformation. The light coupling distance remains unchanged under the influence of the first deformation and the second deformation. The positioning reliability of the light guide plate is improved in the present invention.
Abstract:
A method for manufacturing a light guide plate (LGP) positioning block thereof includes providing a positioning block body of a LGP positioning block and filling and sealing a liquid in a receiving compartment formed in the interior of the positioning block body. The liquid is expandable with a drop of temperature so as to increase a volume thereof and thus enlarge a size of the positioning block body through elasticity of the positioning block body. In this way, the LGP positioning block is adjustable with the variation of the surrounding temperature so as to achieve effective positioning of the light guide plate and providing high reliability of a liquid crystal display device including the light guide plate.
Abstract:
A module assembly is provided. The module assembly includes a back bezel, a heating member, and a thermal expansion member. The heating member is fixed on a first surface of the back bezel. The thermal expansion member is fixed on the heating member. The thermal expansion member has a first thermal expansion coefficient. The heating member is used to provide heat for the thermal expansion member. The thermal expansion member undergoes a first deformation based on the heat, so that the back bezel undergoes a second deformation. A display panel has a desired curved surface displaying effect on actual demands.
Abstract:
The present invention provides a curvature adjustment structure of a curved liquid crystal display device, which includes: a backplane (1) and at least one bracing assembly (3) fixedly mounted to the backplane (1). Each bracing assembly (3) includes a first bracing member (31) in contact engagement with the backplane (1), a second bracing member (33) opposite to the first bracing member (31) and distant from the backplane (1), and a cooling chip array (35) arranged between the first and second bracing members (31, 33). The cooling chip array (35) includes a plurality of cooling chips (2). Each of the cooling chips (2) includes a heat absorption surface (22) and an opposite heat dissipation surface (24). The heat absorption surface (22) and the heat dissipation surface (24) of each of the cooling chips (2) are respectively in engagement with the first and second bracing members (31, 33), whereby through energizing the cooling chip array (35), the first and second bracing members (31, 33) are respectively caused to undergo thermal expansion and contraction to achieve curving and deformation of the bracing assembly (3) so as to forcibly change the curvature of the backplane (1).
Abstract:
A backlight module, which includes: a backplane; a reflector sheet, a light guide plate, and an optical diaphragm group, which are sequentially stacked on the backplane; and multiple connectors disposed at a border of the backlight module, wherein the connector having a space block and an upper connection portion connected to an upper surface of the spacer block, the spacer block is disposed between the backplane and the reflector sheet, the upper connection portion is relatively fixed simultaneously to the reflector sheet, the light guide plate, and the optical diaphragm group. A display device is also disclosed.