Embodiments of the present invention relate to a backlight module and a liquid-crystal display.
Liquid crystal displays are the common flat panel displays; a backlight module is an important component part in a liquid crystal display. A light assembly as a light source in the backlight module is one important element of the backlight module.
Each element of the backlight module described above is typically provided close to each other, without excessive gap therebetween. Therefore, in the process of transportation, if there is an instantaneous external force F in the arrow direction as shown in
In addition, as shown in
According to embodiments of the present invention, there is provided a backlight module and a liquid crystal display, so as to avoid the iground failure caused by deformation of a reflective plate and a back plate, and to induce the instantaneous high voltage noise to outside, and further to prevent the light assemblies from being damaged.
According to an embodiment of the present invention, a backlight module is provided, which comprises a light source, a reflective plate, a light guiding plate and a back plate. The light source is provided on a light entering side of the light guiding plate, the reflective plate is arranged around the periphery of the light assemblies, and the back plate is provided under the reflective plate and the light guiding plate. A first mating section is provided on the reflective plate, and a second mating section is provided on the back plate. The first mating section is mated with the second mating section to connect and fix the reflective plate to the back plate, and to induce the instantaneous high voltage noise to outside.
According to another embodiment of the present invention, a liquid crystal display is also provided, which comprises a liquid crystal panel and a backlight module provided behind the liquid crystal panel, wherein the backlight module comprises a light source, a reflective plate, a light guiding plate and a back plate. The light source is provided on a light entering side of the light guiding plate, the reflective plate is arranged around the periphery of the light source, and the back plate is provided under the reflective plate and the light guiding plate. A first mating section is provided on the reflective plate, and a second mating section is provided on the back plate. The first mating section is mated with the second mating section to connect and fix the reflective plate to the back plate.
Next, in order to make the purposes, technical solutions and advantages of embodiments of the present invention more clear, the technical solution of the embodiments of the present invention will be described clearly and fully with reference to the accompany drawings. Obviously, the embodiments described are just some embodiments of the present invention, and not all the embodiments. Based on the embodiments in the present invention, other embodiments obtained by those of ordinary skill in the art without making creative work all belong to the technical scope of the present invention.
When the existing backlight module in transportation is subject to an instantaneous external impact force, it is intended to avoid the deformation of the reflective plate provided near the light assemblies, which causes the spacing between the reflective plate and the light guiding plate to disappear, makes the light assemblies damaged, or causes the grounding of the reflective plate to be separated from the back plate with grounded circuits and give rise to a phenomenon of instantaneous high voltage noise. According to an embodiment of the present invention, a backlight module is provided, which comprises a light source, a reflective plate, a light guiding plate and a back plate. The light assemblies of the light source are provided on the light entering side of the light guiding plate, the reflective plate is arranged around the periphery of the light assemblies, and the back plate is provided outside the reflective plate. A first mating section is provided on the reflective plate, and a second mating section is provided on the back plate. The first mating section is mated with the second mating section to connect and fix the reflective plate to the back plate. According to an embodiment of the present invention, a liquid crystal display is also provided, which comprises a liquid crystal panel and a backlight module provided behind the liquid crystal panel, wherein the backlight module adopts the structure of the embodiment of the present invention.
In the structure of the backlight module described above, on the portion of reflective plate on the lower surface the reflective plate can be attached a structure of a first mating section to mate with a structure of a second mating section on the back plate without affecting the light path. Therefore, the liquid crystal display is not deformed when subject to an instantaneous external force, which ensures the interior space of the reflective plate, prevents the light assemblies from being damaged, or prevents the separation of the reflective plate and the back plate, reinforces the stability of grounding, and can induce the instantaneous high voltage noise to outside, and thus avoiding the phenomenon of instantaneous high voltage noise caused by instable grounding.
Further, the first mating section and the second mating section are made of conductive material, which can allow a better electric connection, and can induce the instantaneous high voltage noise to be distibuted to outside, and thus avoiding the phenomenon of instantaneous high voltage noise caused by instable grounding.
As shown in
In a liquid crystal display comprising the backlight module 20, a liquid crystal panel 26 is provided above the backlight module 20, for displaying. An optical film layer 15 is provided above the light guiding plate 12, and comprises for example a prism film, a scattering film or the like, or a laminate thereof. A back plate 27, an upper frame 28, and an outer frame 29 are provided to fix the backlight module 20 and the display panel 26. The light emitted from the light guiding plate 22 is emitted through the optical film layer 25 and the liquid crystal panel 26.
When the liquid crystal display is subject to an instantaneous impact force, the first mating section 231 of the light reflective plate 23 is engaged with the second mating section 271 on the back plate 27, which has an effect to prevent the light reflective plate 23 from being deformed. Therefore, it is possible to prevent the light reflective plate 23 from moving in a direction toward the light guiding plate 22, and thus can ensure the spacing element 24 inside the light reflective plate 23 unchanged, and to prevent the light assemblies 21 from being damaged. Also, when the liquid crystal display is subject to an instantaneous impact force, the first mating section 231 of the light reflective plate 23 is engaged with the second mating section 271 on the back plate 27, which has also an effect to prevent the light reflective plate 23 and the back plate 27 from being separated, reinforce the stability of the grounding, and avoid the phenomenon of instantaneous high voltage noise caused by the instable grounding.
In addition, as shown in
Other components of the liquid crystal display comprising the backlight module 30 described above comprise an optical film layer, a liquid crystal panel, an upper frame, an outer frame, etc., which are the same as those in the embodiment 1, and thus will not be described in detail for the sake of convenience.
When the liquid crystal display is subject to an instantaneous impact force, the first mating section 331 of the light reflective plate 33 is engaged with the second mating section 371 on the back plate 37, which has an effect to prevent the light reflective plate 33 from being deformed. Therefore, it is possible to prevent the light reflective plate 33 from moving in a direction toward the light guiding plate 32, and thus can ensure the spacing 34 inside the light reflective plate 33 unchanged, and to prevent the light assemblies 31 from being damaged. Also, when the liquid crystal display is subject to an instantaneous impact force, the first mating section 331 of the light reflective plate 33 is engaged with the second mating section 371 on the back plate 37, which has also an effect to prevent the light reflective plate 33 and the back plate 37 from being separated, reinforce the stability of the grounding, and can induce the instantaneous high voltage noise to outside, to avoid the phenomenon of instantaneous high voltage noise caused by the instable grounding.
Other components of the liquid crystal display comprising the backlight module 40 described above comprise an optical film layer, a liquid crystal panel, an upper frame, an outer frame, or the like structures, which are the same as those in the embodiment 1, and thus will not be described in detail for the sake of convenience.
When the liquid crystal display is subject to an instantaneous impact force, the first mating section 431 of the light reflective plate 43 is engaged with the second mating section 471 on the back plate 47, which has an effect to prevent the light reflective plate 43 from being deformed. Therefore, it is possible to prevent the light reflective plate 43 from moving in a direction toward the light guiding plate 42, and thus can ensure the spacing 44 inside the light reflective plate 43 unchanged, and to prevent the light assemblies 41 from being damaged. Also, when the liquid crystal display is subject to an instantaneous impact force, the first mating section 431 of the light reflective plate 43 is engaged with the second mating section 471 on the back plate 47, which has also an effect to prevent the light reflective plate 43 and the back plate 47 from being separated, reinforce the stability of the grounding, and avoid the phenomenon of instantaneous high voltage noise caused by the instable grounding.
Although a case in which the light assemblies used as light source is provided on a side of the light guiding plate (side-irradiating type) is taken as an example to illustrate in the above-described embodiments, the light source (such as CCFL or LED) can be provided under the light guiding plate (right-under type), in which case the structure of the embodiments of the present invention also applies, wherein the reflective plate is provided under the light source or on a side, the back plate is provided under the light reflective plate and the light guiding plate; a first mating section is provided on the light reflective plate, a second mating section is provided on the back plate, and the first mating section and the second mating section are mated with each other to connect and fix the light reflective plate to the back plate.
Lastly, it should be noted that: the embodiments above are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention is described in detail with reference to the above described embodiments, those with ordinary skill in the art should appreciate that: the technical solutions described in each of the above embodiments can be modified, or a part of the technical features of them can be replaced equivalently, without departing form the spirit and scope of the technical solutions in the embodiments.
Number | Date | Country | Kind |
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201010168112.X | Apr 2010 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN11/73516 | 4/29/2011 | WO | 00 | 12/13/2011 |