Abstract:
The present invention provides a heat dissipation module and a liquid crystal display. In the heat dissipation module of the present invention, a plurality of airflow ducts (13) are arranged in an interior space of a heat dissipation chamber (11) with two ends of the plurality of airflow ducts (13) being respectively connected to two end surfaces of the heat dissipation chamber (11) and internal spaces of the plurality of airflow ducts (13) set in communication with the outside of the heat dissipation chamber (11), and further, a plurality of pairs of cocurrent fans (14) are provided on the heat dissipation chamber (11) to respectively correspond to the two ends of the plurality of airflow ducts (13) and a coolant liquid (15) is filled between outer walls of the airflow ducts (13) and an inner wall of the heat dissipation chamber (11) so that the heat dissipation module is applicable to a liquid crystal display to effectively dissipate heat generated by a lightbar and thus extend the lifespan of the liquid crystal display.
Abstract:
The present invention provides a heat dissipation module and a liquid crystal display. In the heat dissipation module of the present invention, a plurality of airflow ducts (13) are arranged in an interior space of a heat dissipation chamber (11) with two ends of the plurality of airflow ducts (13) being respectively connected to two end surfaces of the heat dissipation chamber (11) and internal spaces of the plurality of airflow ducts (13) set in communication with the outside of the heat dissipation chamber (11), and further, a plurality of pairs of cocurrent fans (14) are provided on the heat dissipation chamber (11) to respectively correspond to the two ends of the plurality of airflow ducts (13) and a coolant liquid (15) is filled between outer walls of the airflow ducts (13) and an inner wall of the heat dissipation chamber (11) so that the heat dissipation module is applicable to a liquid crystal display to effectively dissipate heat generated by a lightbar and thus extend the lifespan of the liquid crystal display.
Abstract:
A liquid crystal display module and a method for manufacturing the liquid crystal display module are disclosed. The liquid crystal display module comprises a reflective sheet, a frame body, a frame, and a light guide plate. The frame body includes a base plate having an upper surface which is provided with an accommodating area for accommodating the reflective sheet. The reflective sheet is partially or completely accommodated in the accommodating area, so that the liquid crystal display module can be thinned. Moreover, the overall strength of the liquid crystal module can be ensured. In addition, the material for the base plate can be effectively saved, which is beneficial for saving costs.
Abstract:
A waterproof backlight module comprises a light guiding plate, a reflection plate at the bottom of the light guiding plate, an optical film and a display panel disposed sequentially above the light guiding plate, and a frame disposed at a flank of the light guiding plate and the optical film, wherein a waterproof sealant is disposed at the flank of the display panel, a connection region where the display panel connects the frame, and a connection gap between the frame and the reflection plate. The waterproof backlight module provided by the present invention can effectively prevent water from entering an electronic mobile device, so that normal operation of electronic device and circuit are not affected. The waterproof backlight module is with small structure modification, easy manufacture and obvious effect, and can improve ability of waterproof of an electronic terminal product so as to adapt to a more complicated environment.
Abstract:
The invention provides a liquid crystal display (LCD), which comprises: back plate; light-guiding plate, disposed on top of back plate; optical film, disposed on top of light-guiding plate; mold frame, connected to back plate to fix optical film and light-guiding plate; LCD panel, disposed on top of mold frame, comprising upper and lower glass substrates disposed oppositely, both glass substrates comprising bottom surface, top surface and side surface connecting top and bottom surfaces; driving chip, flexible circuit board, comprising metal wire and connected to LCD panel; wherein driving chip bonded to flexible circuit board, coupled through metal wire of flexible circuit board to LCD panel; joint of bottom and side surfaces of upper glass substrate disposed with first routing gap, flexible circuit board connected to LCD panel routing through first routing gap. The LCD can effectively hide COF in liquid crystal display to maximize borderless LCD design.
Abstract:
A liquid crystal display device having a front frame, a back panel, a middle frame and a fixing unit is provided. A fixing post is installed on an inner surface of the frame side of the front frame, the position of the back panel corresponding with the fixing post includes a first through hole, and the position of the middle frame corresponding with the fixing post having a second through hole; wherein the fixing post includes a fixing hole, the fixing post passes through the second through hole and is installed in the first through hole, and the fixing unit is fixed and connected with the fixing hole so that the front frame, the middle frame and the back panel are fixed each other.
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 dual-sided display device contains a light guide plate having at least a light entry face, a first light emission face, and a second light emission face oppositely positioned to the first light emission face; at least a light source unit adjacent to the light entry face; at least a heat dissipation base carrying the light source unit and dissipating the heat produced by the light source unit; a first frame member and a second frame member, where the first frame member is positioned above the first light emission face, the second frame member is positioned below the second light emission face, the first and second frame members are fixedly joined to the heat dissipation base, and the light guide plate is fixedly positioned in an accommodation space; and a first display panel and a second display panel, where the first display panel is fixedly positioned on the first frame member oppositely to the first light emission face, the second display panel is fixedly positioned beneath the second frame member oppositely to the second light emission face.
Abstract:
A liquid crystal module is disclosed. The liquid crystal module includes a light source, a light guiding device, and a coupling device. The light guiding device is arranged at a light emitting side of the light source and is spaced apart from the light guiding device by a distance. The coupling device is installed between the light source and the light guiding device for controlling a coupling distance therebetween. The coupling device keeps the coupling distance between a light guiding plate and a light source to remain a predetermined value. In this way, the coupling efficiency of the liquid crystal module is not affected by the difference of LEDs or heat inflation so as to enhance the coupling efficiency.