Abstract:
The present disclosure provides a backlight module. The backlight module includes a light source, a thermal plate, a back cover and an elastic holder. The light source is arranged on the thermal plate. The thermal plate is arranged on the back cover, and includes a first hole defined therein. The back cover includes a second hole defined therein, and the second hole overlaps with the first hole. The elastic holder penetrates through the first hole and the second hole, holds two surfaces of the thermal plate and the back cover apart from each other for fixing the thermal plate on the back cover. The present disclosure further provides a liquid crystal display.
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:
A backlight device according to an exemplary embodiment of the present invention includes, wherein a light guide plate including a convex portion and a recess portion, a lower cover including a lateral surface cover part positioned adjacent to the convex portion, the lower cover surrounding the light guide plate, and a fixing member positioned between the light guide plate and the lateral surface cover part of the lower cover, in which the lateral cover part includes an opening, and the fixing member includes a first hook surrounding the convex portion and a second hook protruding through the opening of the lateral surface cover part.
Abstract:
A backlight assembly includes an optical member, a receiving container and a combining member. The optical member is configured to change optical characteristics of light. The receiving container includes a bottom plate and a sidewall. The bottom plate is disposed under the optical member and is configured to receive the optical member thereon. The sidewall extends from the bottom plate to form a receiving space with the bottom plate. The optical member is received in the receiving space. The combining member includes a first frame, a second frame and a third frame. The first frame partially covers a bottom surface of the optical member. The second frame protrudes upwards from the first frame. The third frame protrudes from an inner surface of the second frame to partially cover an upper surface of the optical member.
Abstract:
A display apparatus, which is able to minimize a thickness by innovatively removing a case and some portions of a set cover and to realize a good aesthetic exterior appearance of the display apparatus by a novel design, includes a set cover exposed to the external to have a storage space, a guide frame received in the storage space, a display unit including a display panel prepared by bonding lower and upper substrates to each other, the display unit placed onto the guide frame, and a camera overlapping with one edge of the display unit and received in the guide frame.
Abstract:
The invention claims a fixed structure for the liquid crystal display device and a liquid crystal display device thereof. Said liquid crystal display device includes a liquid crystal panel and a backlight module. Said fixed structure includes a main-body rubber frame and a front frame fixed on the outer side of the main-body rubber frame. Said main-body rubber frame comprises a groove and a support chip. Said support chip supports the liquid crystal panel thereon. Said backlight module is arranged into the main-body rubber frame and lies below the support chip. Said front frame includes an edge frame and a fixed frame. Said edge frame comprises a first clamping part and a bulge matched with said groove. Said fixed frame comprises a second clamping part. Said first clamping part and said second clamping part as well as said support chip are used for clamping and fixing said liquid crystal panel. While assembling this invention, it only needs to insert the bulge of the edge frame for the front frame into the groove of the main-body rubber frame and then fix the fixed frame on the main-body rubber frame by screws; as a result, it simplifies the assembly process for the liquid crystal display module. Additionally, since the edge frame is made of plastic cement so that the weight of the liquid crystal display module is reduced.
Abstract:
This invention relates to a back light module and a liquid crystal display thereof. The back light module includes a rear panel, an LGP, a PCB, a plurality of LEDs and at least an elastic clamping fastener. The rear panel includes a base plate and at least a sidewall. The LGP is positioned on the base plate. The PCB opposite to the LGP is positioned on the sidewall of the rear panel. The LEDs are positioned on the PCB. At least an elastic clamping fastener successively passes through the rear panel and the PCB to fasten the rear panel and the PCB. In addition, the top of the elastic clamping fastener is higher than the surface of the LEDs. The back light module and the liquid crystal display thereof in this invention are simple in structure, convenient in assembly, and low in cost.
Abstract:
A backlight unit includes a panel guide mold that comprises a plurality of first mold units and a plurality of second mold units; a bottom cover including a plurality of first sidewalls and a plurality of second sidewalls; and a light supply unit disposed between the panel guide mold and the bottom cover, wherein the plurality of second sidewalls are offset in an outward direction relative to the plurality of first side walls to form an alternating, step-like structure, where the second sidewall protrudes, the second mold unit is recessed, wherein each of the plurality of first sidewalls is inserted and coupled to a corresponding one of the plurality of first mold units offset in an outward direction, and wherein each of the plurality of second sidewalls offset in an outward direction receives and is coupled to a corresponding one of the plurality of second mold units.
Abstract:
A liquid crystal display device with connector, wherein the front frame includes a front plate and a front plate side frame which defines with a front plate opening and has a first hole; the back plate includes a bottom plate and a bottom plate side frame which defines with a back plate opening, has an area smaller than that of the front plate opening, disposes with a second hole, moreover, a third hole is disposed on the bottom plate at a position corresponding to the second hole; the connector includes a first sheet body and a second sheet body which is provided with a first snap and a second snap, respectively; wherein, during the assemble process of the front frame and the back plate, the first snap engages with the first hole and the second hole, while the second snap engages with the third hole.
Abstract:
The present invention provides an array substrate, a method for manufacturing an array substrate, and a display device which are such that reflow failure of a resist mask does not occur readily at the time of manufacture of the array substrate, so the array substrate can be manufactured reliably. At the time of forming a TFT, third wiring 37 between source wiring 13 and the source electrode 22 of the TFT is provided with a narrow portion 38 that is formed with a narrow width by narrowing a midpoint at a portion of the wiring in planar shape, and the resist film on the source electrode 22 and a drain electrode 23 is reflowed so as to cover the surface of a channel region Q, thus forming a reflowed resist film 42. A semiconductor film 20 is etched using this as the etching mask in a state in which the area between the source and the drain is protected, thus making the semiconductor film 20 into an island shape.