LIQUID CRYSTAL DISPLAY PANEL AND LIQUID CRYSTAL DISPLAY DEVICE
20170322454 ยท 2017-11-09
Assignee
Inventors
Cpc classification
G02B6/0088
PHYSICS
G02F1/133615
PHYSICS
International classification
Abstract
The invention provides a liquid crystal display panel and a liquid crystal display device. The liquid crystal display device includes a liquid crystal display panel and an edge-lit backlight module. The liquid crystal display panel includes multiple pixel units arranged in an array and having equal areas. Each pixel unit includes sequentially arranged red sub-pixel, green sub-pixel and blue sub-pixel. Transmittances of blue light of the blue sub-pixels of the pixel units are gradually increased along a direction away from a side-type backlight source of the edge-lit backlight module. Therefore, the invention can increase transmittances of blue light of the blue sub-pixels, compensate the influence of color shift caused by blue light being absorbed in the backlight module and reduce color difference of the liquid crystal display panel.
Claims
1. A liquid crystal display panel, wherein the liquid crystal display panel is adapted for being used in conjunction with a side-type backlight source and comprises a plurality of pixel units arranged in an array, each of the plurality of pixel units comprises a red sub-pixel, a green sub-pixel and a blue sub-pixel sequentially arranged in an order, the plurality of pixel units have equal areas, and light transmittances of the blue sub-pixels of the plurality of pixel units are gradually increased along a direction away from the side-type backlight source.
2. The liquid crystal display panel as claimed in claim 1, wherein areas of the blue sub-pixels of the plurality of pixel units are gradually increased along the direction away from the side-type backlight source.
3. The liquid crystal display panel as claimed in claim 1, wherein along the direction away from the side-type backlight source, areas of the blue sub-pixels of the plurality of pixel units are the same while blue photoresists corresponding to the blue sub-pixels are gradually thinned.
4. A liquid crystal display device comprising a liquid crystal display panel and an edge-lit backlight module, wherein the edge-lit backlight module comprises a side-type backlight source, the liquid crystal display panel comprises a plurality of pixel units arranged in an array, each of the plurality of pixel units comprises sequentially arranged red sub-pixel, green sub-pixel and blue sub-pixel, the plurality of pixel units each have a same area, and areas of the blue sub-pixels of the plurality of pixel units are gradually increased along a direction away from the side-type backlight source; wherein the edge-lit backlight module further comprises: an aluminum extrusion including an aluminum extrusion vertical plate, the side-type backlight source being disposed on an inner sidewall of the aluminum extrusion vertical plate; and a light guide plate, having a light incident surface and a light exit surface, the light incident surface facing toward the side-type backlight source.
5. The liquid crystal display device as claimed in claim 4, wherein a surface of the light guide plate facing away from the light exit surface is provided with a plurality of dots.
6. The liquid crystal display device as claimed in claim 5, wherein the edge-lit backlight module further comprises a TIR lens, and the TIR lens is disposed on the light exit surface of the light guide plate.
7. The liquid crystal display device as claimed in claim 4, wherein the edge-lit backlight module further comprises: an optical film set, disposed above the light guide plate and facing toward the light exit surface of the light guide plate; a plastic frame, disposed outside of the extrusion aluminum; and an adhesive strip, disposed in at least a part of a region between the aluminum extrusion and the plastic frame and for securing the plastic frame and the aluminum extrusion.
8. A liquid crystal display device comprising a liquid crystal display panel and an edge-lit backlight module; wherein the edge-lit backlight module comprises a side-type backlight source, the liquid crystal display panel comprises a plurality of pixel units arranged in an array, each of the plurality of pixel units comprises a red sub-pixel, a green sub-pixel and a blue sub-pixel sequentially arranged in an order, areas of the plurality of pixel units are equal, and areas of the blue sub-pixels of the plurality of pixel units are gradually increased along a direction away from the side-type backlight source.
9. The liquid crystal display device as claimed in claim 8, wherein areas of the blue sub-pixels of the plurality of pixel units are gradually increased along the direction away from the side-type backlight source.
10. The liquid crystal display device as claimed in claim 8, wherein along the direction away from the side-type backlight source, areas of the blue sub-pixels of the plurality of pixel units are the same while blue photoresists corresponding to the blue sub-pixels are gradually thinned.
11. The liquid crystal display device as claimed in claim 8, wherein the edge-lit backlight module further comprises: an aluminum extrusion including an aluminum extrusion vertical plate, the side-type backlight source being disposed on an inner sidewall of the aluminum extrusion vertical plate; a light guide plate, having a light incident surface and a light exit surface, the light incident surface being disposed facing toward the side-type backlight source.
12. The liquid crystal display device as claimed in claim 11, wherein a surface of the light guide plate facing away from the light exit surface is formed with a plurality of dots.
13. The liquid crystal display device as claimed in claim 12, wherein the edge-lit backlight module further comprises a TIR lens, and the TIR lens is disposed on the light exit surface of the light guide plate.
14. The liquid crystal display device as claimed in claim 11, wherein the edge-lit backlight module further comprises: an optical film set, disposed above the light guide plate and facing toward the light exit surface of the light guide plate; a plastic frame, disposed outside of the aluminum extrusion; an adhesive strip, disposed in at least a part of a region between the aluminum extrusion and the plastic frame and for securing the plastic frame and the aluminum extrusion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF EMBODIMENTS
[0024] In order to make technical problems to be solved, technical solutions and beneficial effects of the invention be more clear and apparent, in the following, in conjunction with accompanying drawings and embodiments, the invention will be further described in detail. It should be understood that, specific embodiments described herein are merely to illustrate the invention and not intended to limit the invention.
[0025] Referring to
[0026] Referring
[0027] Accordingly, as to the liquid crystal display panel 200 according to the present embodiment, by gradually increasing the areas of the blue sub-pixels B along the direction of light propagation and correspondingly decreasing the areas of the red sub-pixels R and the green sub-pixels G, light transmittances of the blue sub-pixels G are increased, the phenomenon of the liquid crystal display panel 200 appearing bluish at the side near the light source while appearing yellowish at the side away from the light source caused by blue light being absorbed in the backlight module 300 is compensated, and the color difference of the liquid crystal display panel 200 is reduced.
[0028] Referring to
[0029] Referring to
[0030] The aluminum extrusion 301 includes an aluminum extrusion vertical plate 302 as at least a part thereof.
[0031] The side-type backlight source 303 is disposed on an inner sidewall of the aluminum extrusion vertical plate 302, and the side-type backlight source 303 includes but is not limited to LED (light emitting diode).
[0032] The light guide plate 304 has a light incident surface 305 and a light exit surface 306. The light incident surface 305 of the light guide plate 304 is disposed facing toward the side-type backlight source 303, a surface of the light guide plate 304 facing away from the light exit surface 306 is provided with multiple dots 307. The dots 307 of the light guide plate 304 usually are formed by that a laser dotting method is used to form concave points on a surface of the light guide plate 304 as the dots 307.
[0033] Furthermore, the light exit surface 306 of the light guide plate 304 is disposed with multiple TIR (total internal reflection) lenses 308, so as to facilitate light rays outputted from the light exit surface 306 of the light guide plate 304 to carry out total internal reflection via the TIR lenses 308 and the utilization of light can be improved as a result.
[0034] In addition, a reflective film 314 is disposed below the light guide plate 304, and the reflective film 314 concretely is disposed on a surface of the light guide plate formed with the dots 307. In the illustrated embodiment, a propagation principle in the light guide plate 304 of light rays emitted from the side-type backlight source 303 is that: the light rays emitted from a LED lamp of the side-type backlight source 303 enter into the light guide plate 304 from the light incident surface 305 and then are reflected to the TIR lenses 308 by the reflective film 314, afterwards the TIR lenses 308 make the light rays to carry out total internal reflection and the dots 307 of the light guide plate 304 would break the total internal reflection, and finally the light rays exit out from the light exit surface 306 of the light guide plate 304.
[0035] Moreover, the edge-lit backlight module 300 in the illustrated embodiment further includes: an optical film set 309 and a plastic frame 310.
[0036] The optical film set 309 is disposed above the light guide plate 304 and facing toward the light exit surface 306 of the light guide plate 304.
[0037] The plastic frame 310 is disposed outside of the aluminum extrusion 301 and covering peripheral edges of the optical film set 309. At least a part of the region between the aluminum extrusion 301 and the plastic frame 310 is disposed with an adhesive strip (not shown in the drawings), and the adhesive strip is used for securing the plastic frame 310, the aluminum extrusion 301 and other optical component(s) (not shown in the drawings).
[0038] Further, the edge-lit backlight module 300 includes: a back plate 313, a printed circuit board (PCB) 315 and a reflective sheet 312.
[0039] The back plate 313 is for supporting the plastic frame 310, the aluminum extrusion 301 and other optical component(s).
[0040] The printed circuit board 315 is disposed on the inner sidewall of the aluminum extrusion vertical plate 302 and for providing the side-type backlight source 303 with electrical energy. The side-type backlight source 303 is disposed on the printed circuit board 315.
[0041] The reflective sheet 312 is disposed in a gap between the light exit surface 306 of the light guide plate 304 and the side-type backlight source 303 and for reflecting light emitted from the side-type backlight source 303 to the light guide plate 304.
[0042] It should be noted that, the edge-lit backlight module 300 may include other optical component(s) not shown in the drawings.
[0043] In summary, distinguishing from the prior art, the liquid crystal display device associated with the invention includes a liquid crystal display panel and an edge-lit backlight module, the edge-lit backlight module includes a side-type backlight source, the liquid crystal display panel includes multiple pixel units arranged in an array and having equal areas, each of the pixel units includes sequentially arranged red, green and blue sub-pixels, and along the direction away from the side-type backlight source, light transmittances of the blue sub-pixels are gradually increased, and therefore the invention can increase blue light transmittances of the blue sub-pixels, compensate the influence of color shift caused by blue light being absorbed in the edge-lit backlight module, and reduce the color difference of the liquid crystal display panel.
[0044] While the invention has been described in terms of what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention needs not be limited to the disclosed embodiment. On the contrary, it is intended to cover various modifications and similar arrangements included within the spirit and scope of the appended claims which are to be accorded with the broadest interpretation so as to encompass all such modifications and similar structures.