Light guide plate, backlight module and display device
10203551 ยท 2019-02-12
Assignee
- Boe Technology Group Co., Ltd. (Beijing, CN)
- BOE OPTICAL SCIENCE AND TECHNOLOGY CO., LTD. (Jiangsu, CN)
Inventors
Cpc classification
G02F1/133606
PHYSICS
G02F1/133611
PHYSICS
G02B6/0016
PHYSICS
International classification
Abstract
The present disclosure relates to the field of display technologies, and discloses a light guide plate, a backlight module and a display device, for improving light exit uniformity of the light guide plate and reducing occurrence of phenomenons such as brightness non-uniformity and intersecting light beams of the display device. A plurality of first light-diffusing units is disposed on a light incident surface of the light guide plate. At least one light-diffusing structure is disposed in a set region within the light guide plate in a direction facing away from the light incident surface. In the light guide plate, by disposing a plurality of first light-diffusing units and at least one light-diffusing structure on the light incident surface, light emitted from a light source can be better diffused after passing through the light guide plate and become more uniform before entering the display panel.
Claims
1. A light guide plate, wherein a plurality of first light-diffusing units is disposed on a light incident surface of the light guide plate, and at least one light-diffusing structure is disposed in a set region within the light guide plate in a direction facing away from the light incident surface; and wherein the light-diffusing structure comprises hollow light-diffusing structures, and a plurality of second light-diffusing units is disposed on at least one of the following: a surface of the hollow light-diffusing structures facing the light incident surface, and a surface of the hollow light-diffusing structures facing away from the light incident surface.
2. The light guide plate according to claim 1, wherein the set region is in a length range of 1.2 mm-2.8 mm from the light incident surface.
3. The light guide plate according to claim 1, wherein each of the hollow light-diffusing structures has a depth of 0.5 mm-0.6 mm in a direction facing away from the light incident surface.
4. The light guide plate according to claim 1, wherein the hollow light-diffusing structures comprise a single hollow light-diffusing structure disposed in an arrangement direction of a plurality of light sources, the plurality of light sources being configured to provide light incident on the light incident surface of the light guide plate, and the single hollow light-diffusing structure having a length greater than or equal to a total arrangement length of the plurality of light sources in the arrangement direction of the plurality of light sources.
5. The light guide plate according to claim 1, wherein the hollow light-diffusing structures and the plurality of light sources are the same in number and have one-to-one correspondence to each other in position, the plurality of light sources being configured to provide light incident on the light incident surface of the light guide plate.
6. The light guide plate according to claim 1, wherein the plurality of first light-diffusing units disposed on the light incident surface of the light guide plate is arranged in an arc.
7. The light guide plate according to claim 6, wherein each of the first light-diffusing units comprises a microstructure, and a projection of each of the first light-diffusing units on a plane perpendicular to the light incident surface of the light guide plate comprises at least one of the following shapes: a circular arc, an isosceles triangle, an isosceles trapezoid and a curve.
8. The light guide plate according to claim 7, wherein when the projection of the first light-diffusing units on the plane perpendicular to the light incident surface of the light guide plate comprises a circular arc shape, the projection of the circular arc shape has a radius of 0.05 mm-0.06 mm.
9. The light guide plate according to claim 7, wherein when the projection of the first light-diffusing units on the plane perpendicular to the light incident surface of the light guide plate comprises a curve shape, the projection of the curve shape satisfies the following sinusoidal function: y =e.Math.sin (.Math.), wherein e takes a value of 0.04 mm-0.06 mm, and takes a value of 1 -4.
10. The light guide plate according to claim 7, wherein when the projection of the first light-diffusing units on the plane perpendicular to the light incident surface of the light guide plate comprises an isosceles trapezoid shape, the projection of the isosceles trapezoid shape has a base angle of 30 -60 and a height of 0.03 mm-0.05 mm.
11. The light guide plate according to claim 7, wherein when the projection of the first light-diffusing units on the plane perpendicular to the light incident surface of the light guide plate comprises an isosceles triangle shape, the projection of the isosceles triangle shape has a top angle of 60 -70 and a height of 0.03 mm-0.04 mm.
12. The light guide plate according to claim 7, wherein the plurality of first light-diffusing units disposed on the light incident surface of the light guide plate has different shapes, and the plurality of second light-diffusing units in the light-diffusing structure has different shapes.
13. The light guide plate according to claim 1, wherein the plurality of second light-diffusing units in the light-diffusing structure of the light guide plate is arranged in an arc.
14. A backlight module, comprising: a plurality of light sources, and the light guide plate according to claim 1, wherein the plurality of light sources is configured to provide light incident on the light incident surface of the light guide plate.
15. The backlight module according to claim 14, further comprising: a back plate located on a side of the light sources facing away from the light guide plate, wherein a reflective layer is disposed on a side of the back plate facing the light sources.
16. The backlight module according to claim 14, wherein each of the light sources is an LED lamp.
17. A display device, comprising: a display panel, and the backlight module according to claim 14.
18. The backlight module according to claim 14, wherein the set region is in a length range of 1.2 mm-2.8 mm from the light incident surface.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The drawings illustrated here are used to provide further understanding of the present disclosure and are part of the present disclosure. Illustrative embodiments of the present disclosure and explanations thereof are used for interpreting the present disclosure and will not unduly limit the present disclosure. In the drawings:
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DETAILED DESCRIPTION OF EMBODIMENTS
(17) Technical solutions according to embodiments of the present disclosure will be described below clearly and completely with reference to the drawings. Apparently, the described embodiments are only part of the embodiments of the present disclosure, instead of all. In the drawings, 1 indicates a light guide plate, 11 indicates a light incident surface, 2 indicates a first light-diffusing unit, 3 indicates a second light-diffusing unit, 4 indicates a light-diffusing structure and 5 indicates a light source.
(18) With specific reference to
(19) The present disclosure provides a light guide plate 1. A plurality of first light-diffusing units 2 can be disposed on a light incident surface 11 of the light guide plate 1. At least one light-diffusing structure 4 can also be disposed in a set region within the light guide plate 1 in a direction facing away from the light incident surface 11.
(20) In the light guide plate 1 as provided by an embodiment of the present disclosure, by disposing a plurality of first light-diffusing units 2 and at least one light-diffusing structure 4 on the light incident surface 11, light emitted from a light source 5 can be better diffused after passing through the light guide plate 1 and become more uniform before entering the display panel. In this way, the light guide plate 1 provided in an embodiment of the present disclosure can help to improve the light exit uniformity of the light guide plate 1 and reduce phenomenons such as brightness non-uniformity and intersecting light beams of the display device.
(21) As a optional solution, the set region may be in a length range of 1.2 mm-2.8 mm from the light incident surface 11. In this case, the light-diffusion effect of the light guide plate may be the most uniform. With specific reference to
(22) In a specific embodiment, as shown in
(23) In an optional embodiment, the hollow light-diffusing structures may comprise a single hollow light-diffusing structure disposed in an arrangement direction of a plurality of light sources 5. The plurality of light sources 5 in this case is configured to provide light incident on the light incident surface 11 of the light guide plate 1. Moreover, the single hollow light-diffusing structure may have a length greater than or equal to a total arrangement length of the plurality of light sources 5 in the arrangement direction of the plurality of light sources 5.
(24) In an optional embodiment, as shown in
(25) With further reference to
(26) Optionally, the plurality of first light-diffusing units 2 disposed on the light incident surface 11 of the light guide 1 may be arranged in an arc. Further alternatively, the plurality of second light-diffusing units 3 in the light-diffusing structure 4 of the light guide plate 1 may be arranged in an arc. As shown in
sin =nsin ;formula (1)
=;formula (2)
(27) As can be deduced from the above:
=arcsin(sin /n);formula (3)
(28) The following can be derived from the derivation formulae of trigonometric functions: =1cos /{square root over (n.sup.2cos.sup.2)}>0. As can be seen, is an increasing function, where increases as a increases and decreases as a decreases.
(29) In other words, for incident light from a same direction (a primary emission direction of the LED light), with a decrease in an angle enclosed by the normal and the horizontal plane, the angle increases, and the angle increases too. In this way, the greater the deflection angle of the exit light is, the stronger light-diffusion effect the light-diffusing unit will have. As clearly known, an arrangement of the light-diffusing units in an arc is favorable for the diffusion effect of the light.
(30) In order to better improve the light exit uniformity of the light guide plate 1, as optional approaches, each of the hollow light-diffusing structures may preferably have a depth of 0.5 mm-0.6 mm in a direction facing away from the light incident surface 11.
(31) Specific shapes of each of the first light-diffusing units 2 can be many and various. As shown in
(32) Each of the first light-diffusing units 2 may comprise a microstructure. Moreover, a projection of each of the first light-diffusing units 2 on a plane (for example, the section as shown in the drawings) perpendicular to the light incident surface 11 of the light guide plate 1 may comprise at least one of the following shapes: a circular arc, an isosceles triangle, an isosceles trapezoid and a curve.
(33) When the projection of the first light-diffusing units 2 on the plane perpendicular to the light incident surface 11 of the light guide plate 1 comprises a circular arc shape, as shown in
(34) Alternatively, when the projection of the light-diffusing units 2 on the plane perpendicular to the light incident surface 11 of the light guide plate 1 comprises a curve shape, as shown in
(35) Alternatively, when the projection of the light-diffusing units 2 on the plane perpendicular to the light incident surface 11 of the light guide plate 1 comprises an isosceles trapezoid shape, as shown in
(36) Alternatively, when the projection of the light-diffusing units 2 on the plane perpendicular to the light incident surface 11 of the light guide plate 1 comprises an isosceles triangle shape, the projection of the isosceles triangle shape may have a top angle d of 60-70 and a height g of 0.03 mm-0.04 mm.
(37) With definitions of the above parameters, the light-diffusion effect of the light-diffusing units can be further improved.
(38) Referring to
(39) The present disclosure further provides a backlight module comprising: light sources 5, and any light guide plate 1 as mentioned above. Since the above light guide plate 1 has high light exit uniformity, the backlight module provided in the present disclosure also has high light exit uniformity.
(40) Furthermore, in view of the fact that the first light-diffusing units 2 are disposed on the light incident surface 11 of the light guide plate 1, and in the purpose of preventing light emitted by the light sources 5 from being emitted out before entering the image display region and becoming invalid light, the backlight module further comprises: a back plate located on a side of the light sources 5 facing away from the light guide plate. In addition, a reflective layer may also be disposed on a side of the back plate facing the light sources 5. The reflective layer can be coated on a side of a light-diffusion sheet abutting the light guide plate, extending to the hollow light-diffusing structure and completely covering an upper part of the light incident surface. Alternatively, the reflective layer can also be coated on an extended segment of a flexible circuit board, and it also needs to completely cover the upper part of the light incident surface.
(41) In a specific embodiment, each light source 5 may be selected to be an LED lamp.
(42) The present disclosure further provides a display device, comprising: a display panel and any backlight module as mentioned above. Since the above backlight module has good light exit uniformity, the display panel provided in the present disclosure also has good light exit uniformity.
(43) The display device can be any product or component having a display function, such as a notebook computer display screen, electronic paper, a liquid crystal display, a liquid crystal TV, a digital photo frame, a handset, a tablet computer and the like.
(44) Obviously, those skilled in the art can make various modifications and variations to the present disclosure without deviating from spirits and scopes of the present disclosure. Thus, if these modifications and variations to the present disclosure fall within the scopes of those claims of the present disclosure and the equivalent techniques thereof, the present disclosure is intended to include them too.