The present invention relates to a display technology, and more particularly to a backlight module and a display device using the same.
At present, as a display component of electronic device, a liquid crystal display device has been widely used in various electronic products. Consumers have higher and higher requirements on the use environment of the devices, which requires an improvement in the antistatic capability of the display device. Backlight module is an important component in liquid crystal display device, and its antistatic ability requirement is getting higher and higher.
Please refer to
However, since the higher requirement of antistatic ability, the backlight module as shown in
Therefore, an improvement on the backlight module structure is needed to enhance the antistatic ability of the backlight module and solve the existing technical problems.
In view of the above, the present invention provides a backlight module with an electrically conductive film to improve the antistatic ability of the backlight module and a display device.
In order to achieve the above-mentioned object of the present invention, one embodiment of the present invention provides a backlight module including a reflector, a light guide plate disposed on the reflector and contacting with the reflector, a light source assembly disposed at one side of the light guide plate, an optical film assembly disposed on the light guide plate, and a frame disposed around the light guide plate. The backlight module further includes at least one electrically conductive film, and the at least one electrically conductive film is disposed at one of the positions that (1) the at least one electrically conductive film is attached to one surface of the reflector and another surface of the reflector contacts with the light guide plate; (2) the at least one electrically conductive film is disposed between the frame and the reflector; or (3) the at least one electrically conductive film is disposed on the optical film assembly and extended to touch the frame.
one embodiment of the present invention provides a backlight module including a reflector, a light guide plate disposed on the reflector and contacting with the reflector, a light source assembly disposed at one side of the light guide plate, and a frame disposed around the light guide plate, wherein the backlight module further includes at least one electrically conductive film.
The reflector is disposed on the frame. The light beams from the light source assembly enter one side surface of the light guide plate, diffuse by the bottom surface of the light guide plate and emit from the top surface of the light guide plate to form an uniform plane light source. The reflector is disposed under the light guide plate and attached the bottom surface of the light guide plate. The reflector is capable of reflecting the light beams leaking from the bottom of the light guide plate back to the light guide plate.
In one embodiment of the present invention, the at least one electrically conductive film is attached to one surface of the reflector and another surface of the reflector contacts with the light guide plate.
In one embodiment of the present invention, the at least one electrically conductive film is disposed between the frame and the reflector.
In one embodiment of the present invention, the reflector is adhered to the frame by an electrically conductive adhesive, and the electrically conductive adhesive forms the at least one electrically conductive film.
In one embodiment of the present invention, the backlight module further includes an optical film assembly contacting with the light guide plate.
In one embodiment of the present invention, the at least one electrically conductive film is disposed on the optical film assembly and extended to touch the frame.
In one embodiment of the present invention, the at least one electrically conductive film is a shading layer disposed on the optical film assembly and extended to touch the frame.
In one embodiment of the present invention, the at least one electrically conductive film is composed of electrically conductive adhesive.
One embodiment of the present invention provides a display device including any one of the aforementioned backlight modules.
Ordinary skilled in the art can understand that the backlight module of the present invention further comprising other components that a normal backlight module should possessed, and the option of these normal components should not influence the antistatic ability of the backlight module and the display device of the present invention.
In comparison with the prior art, the backlight module and the display device accordingly to the embodiment of the present invention enhance the antistatic ability by disposing an electrically conductive film under the reflector or replacing the adhesive in the backlight module with an electrically conductive adhesive.
The following description of the embodiments is provided by reference to the following drawings and illustrates the specific embodiments of the present invention. Directional terms mentioned in the present invention, such as “up,” “down,” “top,” “bottom,” “forward,” “backward,” “left,” “right,” “inside,” “outside,” “side,” “peripheral,” “central,” “horizontal,” “peripheral,” “vertical,” “longitudinal,” “axial,” “radial,” “uppermost” or “lowermost,” etc., are merely indicated the direction of the drawings. Therefore, the directional terms are used for illustrating and understanding of the application rather than limiting thereof.
Please refer to
The backlight module 200 of the embodiment is described in detail below with reference to
The backlight module 200 includes the reflector 210, the light guide plate 220 disposed on the reflector 210, an optical film assembly 240 disposed on the light guide plate 220, and the frame 230. The frame 230 includes a base 231 and a side plate 232. As shown in
The backlight module 200 further includes at least one electrically conductive film 260, and the at least one electrically conductive film 260 is disposed between the base 231 of the frame 230 and the reflector 210, and is attached to one surface of the reflector 210.
Ordinary skilled in the art can realize that the backlight module 200 as shown in
It can be understood by those ordinary skilled in the art that the backlight module 200 further includes an adhesive for securing. For example, but not limited to, a first adhesive 281 is used for fixing the frame 230 and the reflector 210 together, as shown in
Please refer to
The backlight module 300 of the embodiment is described in detail below with reference to
The backlight module 300 includes the reflector 310, the light guide plate 320 disposed on the reflector 310, an optical film assembly 340 disposed on the light guide plate 320, and the frame 330. The frame 330 includes a base 331 and a side plate 332. As shown in
The backlight module 300 as shown in
The shading layer 370 of this embodiment can be composed of any suitable electrically conductive material that the shading layer 370 behaved as an electrically conductive film. In other words, the shading layer 370 composed of electrically conductive material in this embodiment has the same function as the electrically conductive film 260 in embodiment 1.
It can be understood by those ordinary skilled in the art that the backlight module 300 further includes an adhesive for securing. For example, but not limited to, a first adhesive 381 is used for fixing the frame 330 and the reflector 310 together as shown in
Please refer to
The backlight module 400 of the embodiment is described in detail below with reference to
The backlight module 400 includes the reflector 410, the light guide plate 420 disposed on the reflector 410, an optical film assembly 440 disposed on the light guide plate 420, and the frame 430. The frame 430 includes a base 431 and a side plate 432. As shown in
The backlight module 400 as shown in
The backlight module 400 further includes an adhesive for securing. For example, but not limited to, a first adhesive 481 is used for fixing the frame 430 and the reflector 410 together, as shown in
As shown in
A further embodiment of the present invention provides a display device 500 including the backlight module 200 of the first embodiment and a display panel 510 attached to the backlight module 200. The display panel 510 and the backlight module 200 are attached to each other by the shading layer 270.
Ordinary skilled in the art can understand that the backlight module 300 of embodiment 2 or backlight module 400 of embodiment 3 can be attached to the display panel 510 to form a display device, too. Even when the shading layer 370 of the backlight module 300 as shown in
The electrically conductive adhesive can be a material with electrical conductivity and adhesion at the same time in this art, for example, glue with electrically conductive particles or electrically conductive water-based gel.
The present invention has been described by the above embodiments, but the embodiments are merely examples for implementing the present invention. It must be noted that the embodiments do not limit the scope of the invention. In contrast, modifications and equivalent arrangements are intended to be included within the scope of the invention.
Number | Date | Country | Kind |
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201810832462.8 | Jul 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2018/113308 | 11/1/2018 | WO | 00 |