The present invention relates to a backlight module and a display apparatus, and more particularly to a backlight module and a display apparatus capable of improving the heat dissipation efficiency thereof.
Liquid crystal displays (LCDs) have been widely applied in electrical products. Currently, most LCDs are backlight type LCDs that comprise a liquid crystal panel and a backlight module. According to the position of the light sources for providing LCDs with backlight, the backlight module can be classified into a side-light type or a direct-light type.
A heat generated by the LCDs in a working status may deteriorate an efficiency thereof, thus the heat dissipation is very important to the LCDs. In the direct-light type backlight module, the light sources, such as light emitting diodes (LEDs), are disposed on a back bezel. However, the heat of the LEDs tends to be accumulated at a specific region of the backlight module, resulting in an uneven heat dissipation, as well as deteriorating a light efficiency of the LEDs and a display quality of the LCD.
As a result, it is necessary to provide a backlight module and a display apparatus to solve the problems existing in conventional technologies such as above-mentioned.
The present invention provides a backlight module and a display apparatus to solve a heat dissipation problem existing in a conventional backlight module.
A primary object of the present invention is to provide a backlight module, wherein the backlight module comprises: a back bezel having a first surface and a second surface opposite thereto, wherein the back bezel includes a plurality of bezel convex portions and a plurality of corresponding bezel concave portions, and the bezel convex portions are formed on the first surface and have obliquely reflective surfaces, and the bezel concave portions are formed on the second surface; and a plurality of light sources disposed on the first surface and positioned between the bezel convex portions.
A secondary object of the present invention is to provide a backlight module, wherein the backlight module comprises: a back bezel having a first surface and a second surface opposite thereto, wherein the back bezel includes a plurality of bezel convex portions and a plurality of corresponding bezel concave portions, and the bezel convex portions are formed on the first surface and have obliquely reflective surfaces, and the bezel concave portions are formed on the second surface; and a plurality of light sources disposed on the first surface and positioned between the bezel convex portions.
A further object of the present invention is to provide a display apparatus, wherein the display apparatus comprises a display panel and a backlight module. The backlight module comprises: a back bezel having a first surface and a second surface opposite thereto, wherein the back bezel includes a plurality of bezel convex portions and a plurality of corresponding bezel concave portions, and the bezel convex portions are formed on the first surface and have obliquely reflective surfaces, and the bezel concave portions are formed on the second surface; and a plurality of light sources disposed on the first surface and positioned between the bezel convex portions.
In one embodiment of the present invention, the obliquely reflective surfaces are obliquely flat surfaces or obliquely curved surfaces.
In one embodiment of the present invention, an included angle between the obliquely reflective surfaces and the back bezel is in a range of 135 degrees to 180 degrees.
In one embodiment of the present invention, the included angle between the obliquely reflective surfaces and the back bezel is in a range of 165 degrees to 180 degrees.
In one embodiment of the present invention, a height of the bezel convex portions is lower than a height of a top surface of the light sources.
In one embodiment of the present invention, at least portions of the bezel concave portions are positioned in a high-temperature region of a temperature distribution diagram of the back bezel, and the temperature distribution diagram is predetermined before forming the bezel concave portions on the back bezel.
In one embodiment of the present invention, the bezel convex portions are scattered convex portions in the shape of dots.
In one embodiment of the present invention, the backlight module further comprises a plurality of fluid channels for allowing a heat dissipation fluid to flow therein, wherein at least portions of the fluid channels are received in the bezel concave portions.
In one embodiment of the present invention, the fluid channels are U-shaped metal pipes, or connected as a continuous S-shaped metal pipe.
In comparison to the conventional backlight module having a heat concentration problem, with the use of the backlight module and the display apparatus of the present invention, the heat dissipation area in a partial region of the back bezel can be increased for efficiently dissipating the heat of the light source according to the positions of the light sources. Therefore, the heat-dissipation effect of the backlight module and the display apparatus of the present invention can be improved, thus homogenizing the temperature distribution and enhancing the display quality of the display apparatus. In addition, with the use of the obliquely reflective surfaces of the bezel convex portions, the light reflection between the light sources can be improved, so as to mitigate the uneven light distribution problem between the light sources, thereby enhancing a light distribution uniformity of the backlight module.
The structure and the technical means adopted by the present invention to achieve the above-mentioned and other objects can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying drawings:
The following embodiments are exemplified by referring to the accompanying drawings, for describing specific embodiments implemented by the present invention. Furthermore, directional terms described by the present invention, such as upper, lower, front, back, left, right, inner, outer, side and etc., are only directions by referring to the accompanying drawings, and thus the used directional terms are used to describe and understand the present invention, but the present invention is not limited thereto.
In the drawings, like reference numerals indicate like components or items.
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In the present embodiment, a shape, density, or quantity of the arrangement of the bezel concave portions 114 of the back bezel 110 can be determined according to the temperature distribution of the backlight module 100. After the positions of the light sources 120 at the back bezel 110 is determined and the light sources 120 have worked for a predetermined time, the backlight module 100 can have a specific heat distribution (temperature distribution diagram). For example, in a direct-light type backlight module, the heat of light sources tends to be accumulated in a center region. Therefore, in this embodiment, the bezel concave portions 114 can be arranged in a center region of the back bezel 110 corresponding to the heat concentration region of the back bezel 110 (the high-temperature region of the temperature distribution diagram), so as to increase the heat dissipation area of a center region of the back bezel 110, thereby improving the heat dissipation of the back bezel 110, as well as homogenizing the temperature distribution thereof. However, according to the heat distribution of the backlight module 100, the bezel concave portions 114 may be arranged in other regions but not limited to the above-mentioned description.
When the light sources 120 of the backlight module 100 provide the backlight for the display panel 101, due to the bezel concave portions 114 formed on the rear surface of the back bezel 110 and close to the light sources 120, the heat-dissipation effect which is formed close to the light sources 120 can be improved to prevent the heat concentration of the light sources 120 and to enhance a the display quality of the display apparatus. Moreover, with the use of the obliquely reflective surfaces 115 of the bezel convex portions 113, the light reflection between the light sources 120 can be improved, so as to mitigate the uneven light distribution problem between the light sources 120.
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As described above, in the backlight module and the display apparatus of the present invention, the heat dissipation area can be enlarged by the c bezel concave portions of the back bezel. Furthermore, the arrangement of the bezel concave portions is determined according to the position of the light source for efficiently dissipating the heat thereof as well as mitigating the heat concentration problem thereof. In addition, with the use of the obliquely reflective surfaces of the bezel convex portions, the light reflection between the light sources can be improved, so as to mitigate the uneven light distribution problem between the light sources, thereby enhancing a light distribution uniformity of the backlight module.
The present invention has been described with a preferred embodiment thereof and it is understood that many changes and modifications to the described embodiment can be carried out without departing from the scope and the spirit of the invention that is intended to be limited only by the appended claims.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN2012/076387 | 6/1/2012 | WO | 00 | 11/13/2012 |
Publishing Document | Publishing Date | Country | Kind |
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WO2013/170503 | 11/21/2013 | WO | A |
Number | Name | Date | Kind |
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8243231 | Hur et al. | Aug 2012 | B2 |
20130250203 | Zhou | Sep 2013 | A1 |
Number | Date | Country | |
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20130308297 A1 | Nov 2013 | US |