Abstract:
The present invention provides a frameless liquid crystal display device, which includes a rear enclosure, a backlight module arranged inside the rear enclosure, a mold frame arranged on the backlight module and fixedly coupled to the rear enclosure, a liquid crystal display panel arranged on the mold frame, and a surface decoration arranged at a lower end of the liquid crystal display panel and mounted to the mold frame. The liquid crystal display panel is coupled to the mold frame by coupling sections, each of which includes a rectangular plate, an engagement section, and a connection section that connects the rectangular plate and the engagement section. The mold frame forms retention slots corresponding to the coupling sections and each of the retention slots including first and openings and a channel communicating with the first and second openings. The first opening is greater than the second opening.
Abstract:
The present invention provides a frameless liquid crystal display device, which includes a rear enclosure, a backlight module arranged inside the rear enclosure, a mold frame arranged on the backlight module and fixedly coupled to the rear enclosure, a liquid crystal display panel arranged on the mold frame, and a surface decoration arranged at a lower end of the liquid crystal display panel. The liquid crystal display panel includes a CF substrate and a TFT substrate laminated on the CF substrate and a top polarization plate and a bottom polarization plate respectively laminated to the CF substrate and the TFT substrate. The bottom polarization plate forms projections on upper and lower ends of the liquid crystal display panel. The mold frame forms retention slots in which the projections are received to mount the liquid crystal display panel to the mold frame.
Abstract:
The locking piece is formed by machining a long plate-shaped piece, and includes a lug boss, and extension parts formed by bending two ends of the lug boss. The locking piece is fixed to the backplane of a liquid crystal display (LCD) device by the extension parts, and a top of the lug boss is configured with a locking hole used to lock the LCD device on the wall hanging. In the present disclosure, because the locking piece has a simple structure, relative to the bolts, the locking piece is only machined by simple sheet metal machining technology.
Abstract:
A backlight module includes a light guide panel (LGP), and a backplane. The LGP is arranged in the backplane, each side wall of the backplane is configured with a through hole(s), and the fixing pieces penetrate through the through holes and then fix the LGP. The fixing pieces are arranged on the side surface of the backplane of the present disclosure, and the fixing pieces are used for preventing the LGP from upward and downward moving in the vertical direction.
Abstract:
The present invention introduces a backlight device, a backlight system, and a flat panel display device incorporated with the backlight device. The backlight device is configured by at least two backlight units detachably and electrically interconnected. The backlight unit comprises at least first and second leadframes each including longitudinal first and second ends and an intermediate portion located between the ends. A light emitting device is disposed at the intermediate portion. And at least a pair of first and seconds leads with the first pair of leads arranged at the first end, and the second pair of leads located at the second end. The backlight, backlight system, and the flat panel display device can be readily lengthened or shortened according to the field requirements. It features a simple configuration, while is easy to assemble, and is beneficial to cost down.
Abstract:
The invention provides an optical assembly positioning structure, an LCD device, and a manufacturing method thereof. The optical assembly positioning structure includes a positioning part and a clamping part used for clamping different optical layers of the optical assembly; a connecting part is arranged between the positioning part and the clamping part, and the positioning part is connected and fixed to one end of the clamping part by the connecting part. The optical layers of the optical assembly of the invention are fixed by separate positioning structures. The positioning part and clamping part of the positioning structure are respectively in contact with the upper and lower surfaces of the optical assembly. The positioning part is fixed and connected to the clamping part by the connecting part. Thus, all optical layers of the optical assembly are clamped and fixed. The optical assembly is assembled firstly, and then the assembled optical assembly is totally fixed in the backlight module, thereby reducing human power; in addition, all the optical layers are integratedly assembled, thereby effectively reducing the relative displacement between the optical layers, and ensuring that large scratch will not be generated between the optical layers.
Abstract:
The present invention provides a backlight module, which includes a backplane, a backlight source arranged inside the backplane, a light guide plate arranged inside the backplane, an optic film assembly arranged on the light guide plate, and a split mold frame arranged inside the backplane. The split mold frame includes a plurality of spaced corner pieces respectively set on the optic film assembly. The corner pieces have a support surface that is distant from the optic film assembly for supporting thereon a liquid crystal display panel. The backlight module of the present invention uses an upper surface of a split mold frame to serve as a support surface for a liquid crystal display panel thereby enlarging the supporting area for the liquid crystal display pane, improving supporting stability and also effectively preventing the occurrence of light leakage, ensuring luminance of the backlight module, and enhancing optic grade.
Abstract:
The present invention discloses a LED backlight module and a LCD device using the same, and the backlight module comprises a backplane and a light guide plate, wherein the edge of said light guide plate is fixed on the backplane by elastic part(s). Because the present invention uses the elastic parts to connect the light guide plate with the backplane, uses the elasticity of the elastic parts to fix the light guide plate in the backlight cavity and align the light guide plate with the LED. Thus, the thinner rubber frame designed for thinning is not used for compressing the light guide plate any longer, the backlight module is thinner, and the positioning of the light guide plate is more reliable.
Abstract:
The present invention provides a backlight module and a lamp socket structure thereof. The lamp socket uses a conductive sleeve to receive and electrically connect to a lead wire of a backlight lamp, and the conductive sleeve is extended downward to form two elastic plug plates for connecting to two elastic receptacle plates of a conductive receptacle. Then, the conductive receptacle is further connected to an insulation base. The design of the present invention can efficiently avoid the lamp breakage problem due to vibrations of lead wires, so as to surely increase the stability of mounting lamps and the reliability of electrically connecting to the lamps.
Abstract:
The invention discloses a structure for fixing frames and an LCD device. The structure for fixing frames includes a first frame and a second frame. The second frame is located inside of the first frame. Convex modules and countersinks are arranged in pairs on a contact surface between the first frame and the second frame. The convex modules are embedded into the countersinks for fixing the first frame and the second frame. The countersinks are blind holes. In the invention, because the frames are fixed by matching the countersinks with the convex modules and the countersinks are blind holes, no hollow structure is formed on the frame provided with the countersinks. Compared with the mounting structure having the through holes, the strength of the frames is significantly improved. When the two frames required to be installed are aligned and pressed, the convex modules is embedded into the countersinks for assembling the frames. This is a simple and efficient assembly method.