Abstract:
The invention provides a splicing backplane for a backlight module, which is arranged on the backside of the backlight module. The splicing backplane comprises a mounting portion and a supporting portion, wherein the horizontal height of the mounting portion is level with or lower than that of the supporting portion; and a plurality of the splicing backplanes are assembled together by the mutual superposition of various mounting portions. A plurality of the splicing backplanes are superposed with each other and combined into one, and the height differences between the mounting portions and the supporting portions of two adjacent backplanes are unequal, so that one backplane can be accommodated into the other backplane. In addition, after the superposition, the overall thickness of the backplanes is invariable.
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 display device contains a light guide plate, a light source unit adjacent to a light entry face of the light guide plate, a heat dissipation base carrying the light source unit, first and second frame members fixedly joined to the heat dissipation base, and first and second display panels. The first and second frame member are positioned above and below a first light emission face and a second light emission face of the light guide plate, respectively. The first and second display panels are fixedly positioned on the first frame member and beneath the second frame member, oppositely to the first and second light emission face, respectively. The display device achieves superior heat dissipation, narrow bezel, and enhanced structural strength.
Abstract:
The present disclosure provides a backlight module and a liquid crystal display (LCD) device. The backlight module includes a light guide panel (LGP), a lightbar, and a backplane. The LGP is arranged in the backplane, and the lightbar is arranged on a side of the LGP. The backlight module further includes heating devices that heat two opposite ends of the lightbar. When the lightbar operates, the heating devices emit heat to increase operating temperature of the two opposite ends of the lightbar to make the operating temperature of the two opposite ends of the lightbar to be close to or equal to operating temperature of middle of the lightbar.
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.
Abstract:
A light guide plate which includes a light incident surface, a light conversion element, an accommodation through hole and a diffusion element, the accommodation through hole is formed in the light guide plate and is adjacent to the light incident surface, the light conversion element is accommodated in the accommodation through hole, and the diffusion element is disposed on the light incident surface. Also disclosed is a light having a backlight module and a liquid crystal display having the light guide plate. A light conversion element is accommodated in the light guide plate, so as to avoid over-heating the light conversion element to further avoid reducing the color gamut of the product.
Abstract:
The invention discloses a backlight module, comprising: a light guide plate provided with a strip-shaped slot, a light bar, which comprises a base plate and a plurality of mounting bases mounted on the base plate, each mounting base is provided with a lighting element respectively, wherein the base plate of the light bar is configured to engage with the first surface of the light guide plate, such that all the mounting bases can be accommodated within the strip-shaped slot. It is unnecessary for the backlight module to set up rubber frame and back plate, hence, the backlight module without outer frame border is formed.
Abstract:
The present invention discloses an assembly jig for assembling a LED module and a light guide plate, the LED module comprises a circuit board and LED mounted portions which are vertically arranged on the circuit board, and the assembly jig comprises a stripe body and a plurality of grooves with notches on the stripe body, wherein the grooves are spaced and disposed across at least two adjacent sides of the stripe body to contain and tightly contact with the non-mounting surface of the LED mounted portions opposite to the mounting surface. The present invention also discloses a backlight module and a method which is used for assembling a LED module and a light guide plate by ensuring the same distances between each of the LEDs to the light guide plate, furthermore to obtain relatively uniform backlighting and high optical taste of the backlight module.
Abstract:
The disclosure provides an ultra thin display module, comprising a LED substrate, a plurality of LED lamp beads, a secondary lens and a display panel. The plurality of LED lamp beads is disposed on the array of the LED substrate, the secondary lens is disposed on the LED substrate, the secondary lens is encapsuled inside the top surface of the LED lamp beads, and the display panel is disposed on the top surface of the secondary lens. The ultra thin display module and method for assembling the same of the disclosure use a brand new structure of ultra thin display module, such that the thickness of the module is greatly decreased as compared with the present techniques.
Abstract:
Disclosed is a backlight module and a liquid crystal display device comprising the backlight module. The backlight module includes a light source, and a light guide plate assembly, which has a light guide plate substrate provided with a mounting slot, wherein the light source is fixed into the mounting slot. According to the backlight module, the light source is arranged on the light guide plate substrate through integration, which enables the backlight module to have a compact structure and therefore to be convenient to assemble.