The disclosure relates to the field of display technologies, and particularly to a backlight module and a display device.
As the sciences and technologies are developing constantly, there are also constantly growing demands of consumers for flat panel displays, flat panel TV sets, and other display devices, and increasingly frequently renewed structures, form factors, performances, and other aspects of the display devices.
At present, Light Emitting Diodes (LEDs) are commonly applied as light sources in a backlight module of a liquid crystal display device. The backlight module can be categorized into a backlight module of straight down type and a backlight module of side light type, dependent upon the positions where the light sources are distributed, where the light sources in the backlight module of straight down type are distributed below a diffuser plate, and such a backlight module is generally applicable to a display, a TV set, or another liquid crystal display device with a large size.
Typically the brightness of a picture on the existing display device including the backlight module of straight down type is low, there is dark shadow above the LEDs, or dark strips at the edges of the LEDs, etc. In view of this, a technical problem highly desirable to be addressed by the application is how to improve the quality of the picture on the display device.
Embodiments of the application provide a backlight module and a display device so as to weaken the phenomenon of lamp shadow in the backlight module, and further improve the quality of a picture on the display device.
An embodiment of the application provides a backlight module including a back cover including a back cover including an accommodation space in which a reflector, a light component, and a diffuser plate are placed in order, wherein:
the light component includes a plurality of first Light Emitting Device (LED) devices and a plurality of second LED devices, wherein the second LED devices emit light at a smaller angle than the angle at which the first LED devices emit light, the first LED devices are arranged annularly and opposite the periphery area of the diffuser plate, and the second LED devices are located so that they are surrounded by the first LED devices.
An embodiment of the application further provides a display device including the backlight module according to any one of the technical solutions above. Since the backlight module has the advantageous effects above, the display device can have a high quality of pictures.
In order to make the technical solutions according to the embodiments of the application or in the prior art more apparent, the drawings to which a description of the embodiments or the prior art refers will be briefly introduced below, and apparently the drawings to be described below are merely illustrative of some of the embodiments of the application, and those ordinarily skilled in the art can derive from these drawings other drawings without any inventive effort.
One or more embodiments are illustrated by way of example, and not by limitation, in the figures of the accompanying drawings, wherein elements having the same reference numeral designations represent like elements throughout. The drawings are not to scale, unless otherwise disclosed. In the drawings:
1—Back cover
2—Reflector
3—Light component
4—Diffuser plate
31—First LED device
32—Second LED device
30—LED chip
311—Reflective lens
321—Refractive lens
In order to make the objects, technical solutions, and advantages of the embodiments of the application more apparent, the technical solutions according to the embodiments of the application will be described below clearly and fully with reference to the drawings in the embodiments of the application, and apparently the embodiments described below are only a part but not all of the embodiments of the application. Based upon the embodiments here of the application, all the other embodiments which can occur to those skilled in the art without any inventive effort shall fall into the scope of the application.
As illustrated in
The light component 3 includes a plurality of first LED devices 31 and a plurality of second LED devices 32, where the second LED devices 32 emit light at a smaller angle than the angle at which the first LED devices 31 emit light, the first LED devices 31 are arranged annularly and opposite the periphery area of the diffuser plate 4, and the second LED devices 32 are located so that they are surrounded by the first LED devices 31.
The backlight module is a backlight module of straight down type, and light rays emitted by the LED devices are incident to the bottom of the diffuser plate. The LED light component generally includes a printed circuit board, and LED devices arranged on the printed circuit board. The backlight module typically includes an optical film sheet, a glue frame, and other components, none of which is illustrated, in addition to the back cover 1, the reflector 2, the light component 3, and the diffuser plate 4.
In the embodiment above, as can be appreciated, the first LED devices 31 are arranged annularly and opposite the periphery area of the diffuser plate 4 so that the orthographic projections of the first LED devices 31 onto the diffuser plate 4 are located at the region near the edges of the diffuser plate 4, and since light rays emitted by the first LED devices 31 diverge at some light emission angle, they can be incident to the periphery area of the diffuser plate 4 including the edges thereof. The second LED devices 32 located so that they are surrounded by the first LED devices 31, means that the second LED devices 32 are located inside an annulus formed by first LED devices 31.
In the technical solution according to the embodiment of the application, the first LED devices 31 are arranged annularly and opposite the periphery area of the diffuser plate 4, and since the first LED devices 31 emit light at a larger angle, more light rays thereof will be incident to the edges of the diffuser plate 4 to thereby improve effectively the phenomenon of dark strips at the edges of a picture of the backlight module; and the second LED devices 32 are located so that they are surrounded by the first LED devices 31, and since the second LED devices 32 emit light at a relatively small angle, the light rays thereof can be incident to the diffuser plate 4 while being more concentrated to thereby improve effectively the phenomena of low brightness, lamp shadow, etc., of the picture of the backlight module. The backlight module according to the embodiment of the application can be applicable to a display device to thereby improve effectively the quality of a picture on the display device.
Referring to
In a preferred embodiment of the application, as illustrated in
Since the LED chips have a small volume, a compact structure, and a small light emission area, the optical structure of the LED devices in a particular application will be designed again dependent upon an application scenario thereof to thereby reshape and alter the light emitted by the LED chips so as to adjust the light emission angle and the light intensity distribution of the LED devices. The lens and the LED chips can be packaged to thereby alter the light emission angle, and thus the area of a light beam so as to alter the area of illumination on the surface of an illuminated object, and the value of luminance thereof.
In a preferred embodiment of the application, the first LED devices 31 include the reflective lenses 311 with surfaces thereof being recessed, and the light emitted by the LED chips 30 passing the reflective lenses 311 diverges at a larger angle so that more light rays can be incident to the edges of the diffuser plate 4 to thereby improve effectively the phenomenon of the dark strips at the edges of the picture of the backlight module. The second LED devices 32 include the refractive lens 321 with surfaces thereof being arched, and the light emitted by the LED chips 30 passing the refractive lens 321 diffuses at a smaller angle, and thus can be incident to the diffuser plate 4 while being more concentrated to thereby improve effectively the phenomena of the low brightness, the shadowiness, etc., of the picture of the backlight module.
The particular structures of the reflective lenses 311 and the refractive lens 321 will not be limited to those illustrated in
An embodiment of the application further provides a display device including the backlight module according to any one of the technical solutions above. Since the backlight module has the advantageous effects above, the display device can have a high quality of pictures. The display device will not be limited to any particular type, for example, the display device can be a liquid crystal TV set, a liquid crystal display, a liquid crystal exhibition screen, etc.
Lastly it shall be noted that the respective embodiments above are merely intended to illustrate but not to limit the technical solution of the application; and although the application has been described above in details with reference to the embodiments above, those ordinarily skilled in the art shall appreciate that they can modify the technical solution recited in the respective embodiments above or make equivalent substitutions to a part of the technical features thereof; and these modifications or substitutions to the corresponding technical solution shall also fall into the scope of the application as claimed.
Number | Date | Country | Kind |
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201620231141.9 | Mar 2016 | CN | national |
This application is a continuation of International Application No. PCT/CN2016/088972, filed on Jul. 6, 2016, which is based upon and claims priority to Chinese Patent Application No. 201620231141.9, filed on Mar. 22, 2016, the entire contents of which are incorporated herein by reference.
Number | Date | Country | |
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Parent | PCT/CN2016/088972 | Jul 2016 | US |
Child | 15246452 | US |