The present disclosure relates to liquid crystal display technical field, and more particularly, to a backlight module and a liquid crystal display (LCD).
With the evolution of photoelectric and semiconductor technologies, the flourishing development of a flat panel display is driven, and in various flat panel displays, liquid crystal displays (LCDs) have been applied to many aspects of the production and living, because of having various superior characteristics, such as high space utilization, low power consumption, no radiation and low electro-magnetic interference or the like.
With the development of the liquid crystal display technology, the markets are increasingly seeking the thinning of the electronic devices, for example, the current electronic devices, such as a laptop, a mobile phone, a tablet computer, or the like, which need a liquid crystal display, are made thinner and thinner. Thus, the liquid crystal display needs to be made thinner and thinner. Currently, a major and urgent issue needed to be resolved is how to provide a thin liquid crystal display.
In order to achieve the above purpose, the present disclosure provides a backlight module including: a light guide plate including an incident surface, a first surface, a second surface, a third surface, a light emitting surface and a reflecting surface, wherein, the first surface is opposite to the incident surface, the second surface and the third surface are opposite to each other and each connected between the incident surface and the first surface, the light emitting surface and the reflecting surface are opposite to each other and each connected to the incident surface, the first surface, the second surface and the third surface; a light source disposed adjacent to the incident surface; and a reflecting sheet including a flat part and a first bent part formed by bending a first side of the flat part, wherein the flat part is disposed under the reflecting surface, and the first bent part is attached to the first surface.
Further, the reflecting sheet further includes a second bent part formed by bending a second side of the flat part, wherein the second bent part is attached to the second surface.
Further, the reflecting sheet further includes a third bent part formed by bending a third side of the flat part, wherein the third bent part is attached to the third surface.
Further, the first bent part and the first surface and/or the second bent part and the second surface and/or the third bent part and the third surface are attached to each other via a double-sided tape.
Further, a plurality of lattice points are disposed on the reflecting surface.
Further, a plurality of double-sided tapes are disposed on the flat part in staggered positions with the lattice points, and the flat part is attached to the reflecting surface via the plurality of double-sided tapes.
Further, the light guide plate is made of glasses.
Further, the light source is a light emitting diode.
Further, the backlight module further includes a heat radiator including a bearing part and a mounting part formed by bending a side of the bearing part, wherein an end of the flat part adjacent to the incident surface and an incident end of the light guide plate are hosted on the bearing part such that the mounting part is adjacent to the incident surface, and the light source is mounted on a surface of the mounting part facing the incident surface.
The present disclosure further provides a liquid crystal display having the above-described backlight module.
The advantageous effects of the present disclosure are as follows: the backlight module according to the present disclosure decreases its thickness by not using a back plate; and when the backlight module provided by the present disclosure is applied to the liquid crystal display, a thickness of the liquid crystal display may be greatly decreased, so that the liquid crystal display satisfies the currently thin-type requirement.
The above and/or other aspects, characteristics and advantages of the embodiments in the present disclosure will become more apparent from the following description, taken in conjunction with the accompanying drawings in which:
Embodiments of the present disclosure will be described in detail below by referring to the accompany drawings. However, the present disclosure can be embodied in many different forms, and should not be construed as being limited to the specific embodiments set forth herein. Rather, these embodiments are provided for explaining the principle and actual application of the present disclosure, thus other skilled in the art can understand various embodiments and various amendments which are suitable for specific intended applications of the present disclosure.
In the drawings, thicknesses of layers and regions are exaggerated for clarity. The same reference numerals are used to indicate the same elements throughout the drawings.
It will be understood that although the terms “first”, “second”, “third”, etc. may be used herein to describe various elements, these elements should not be limited by these terms. These terms are merely used to distinguish one element from another.
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In particular, the heat radiator 40 as a whole is in an “L” shape, including a bearing part 41 and a mounting part 42 formed by bending a side of the bearing part 41. After assembling the light guide plate 10 and the reflecting sheet 30 in the manner shown in
The light source 20 may be a light emitting diode LED, but the present disclosure is not limited thereto. The light source 20 is disposed on a surface of the mounting part 42 facing the incident surface 11 such that the light source 20 is adjacent to the incident surface 11.
The three optical film sheets 60 are sequentially disposed on the light emitting surface 15 in a direction far away from the light emitting surface 15 to improve light emitted from the light emitting surface 15. It should be understood that the number of the optical film sheets 60 of the present disclosure is not limited to three, which may be set according to practical situations.
The glue frame 50 is disposed on the three optical film sheets 60. The glue frame 50 is firmly fixed to the heat radiator 40 such that the three optical film sheets 60, the light guide plate 10, the light source 20 and the reflecting sheet 30 are fixed between the glue frame 50 and the heat radiator 40.
Further, in the present embodiment, a plurality of lattice points 80 are disposed on the reflecting surface 16, wherein shapes of the lattice points 80 are not specifically defined in the present embodiment. The flat part 31 of the reflecting sheet 30 may be attached to the reflecting surface 16 via the plurality of double-sided tapes 70 disposed on the flat part 31 when it is disposed opposite to the reflecting surface 16, thereby further improving the bonding firmness of the reflecting sheet 30 and the light guide plate 10. Here, it should be explained that the double-sided tapes 70 on the flat part 31 and the lattice points 80 are disposed in staggered positions.
In the present embodiment, the light guide plate 10 is made of transparent glass. Since the strength of the glass is much greater than that of the PMMA or MS or the like, the backlight module 1 according to the embodiment of the present disclosure may not include a back plate, and is supported merely by the strength of the light guide plate 10. Thus, in comparison with the prior art, when the backlight module 1 does not include the back plate, a thickness of the liquid crystal display formed by assembling the backlight module 1 and a liquid crystal panel will be greatly decreased, thereby satisfying a thin-type requirement of the liquid crystal display.
Referring to
Although the present disclosure has been shown and described with reference to the special exemplary embodiments, those skilled in the art will understand that various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims and its equivalents.
Number | Date | Country | Kind |
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201510685179.3 | Oct 2015 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2016/070825 | 1/13/2016 | WO | 00 |