The present disclosure relates to a film set and its applications, and more particularly to a film set that can be applied to a backlight module, and a backlight module and a display device using the film set.
A typical backlight module mainly includes a light guide plate and several optical films, and the light emitted from the light guide plate is refracted by the optical films to emit light at a front view angle. However, such backlight module cannot be applied to anti-peeping display products. Therefore, how to achieve a good anti-peeping effect by changing the design of the optical films and the light guide plate has become a goal of the relevant industries.
Therefore, one objective of the present disclosure is to provide an optical film set, and a backlight module and a display device using the optical film set. Through the design of the optical film set, the amount of light emitted at the front view angle can be maintained and the stray light emitted from the side can be reduced.
According to the aforementioned objectives of the present disclosure, an optical film set is provided, which is configured to guide light from a light guide plate of a backlight module. The optical film set includes a lower prism film and an upper prism film. The lower prism film has plural lower prism structures, and each of the lower prism structures extends along a first direction. The upper prism film is disposed above the lower prism film, wherein the upper prism film has plural upper prism structures, and each of the upper prism structures extends along a second direction, wherein the second direction is different from the first direction. There is an included angle between the second direction and an extending direction of a light-incident surface of the light guide plate, and the included angle is in a range from 25 degrees to 50 degrees or a range from 130 degrees to 155 degrees.
According to one embodiment of the present disclosure, there is an included angle, which is ranging from 115 degrees to 140 degrees or from 220 degrees to 245 degrees, between the first direction and the extending direction of the light-incident surface of the light guide plate.
According to one embodiment of the present disclosure, the first direction and the second direction are perpendicular to each other.
According to one embodiment of the present disclosure, the optical film set further includes a lower diffuser disposed under the lower prism film, the lower diffuser includes plural diffusion particles, and the diffusion particles make the lower diffuser have a haze ranging from 50% to 60%.
According to one embodiment of the present disclosure, the optical film set further includes an upper diffuser disposed above the upper prism film. The upper diffuser includes plural diffusion particles, and the diffusion particles make the upper diffuser have a haze equal to or smaller than 30%.
According to one embodiment of the present disclosure, the optical film set further includes a lower diffuser and an upper diffuser. A haze ratio of the lower diffuser to the upper diffuser is ranging from 1.6 to 6.
According to one embodiment of the present disclosure, the lower diffuser is disposed under the lower prism film, and the upper diffuser is disposed above the upper prism film. After the light from the light guide plate passes through the lower diffuser, the lower prism film, the upper prism film, and the upper prism film in sequence, a portion of the light is emitted from the upper diffuser along a front view direction, and another portion of the light is emitted from the upper diffuser along a side view direction, wherein a ratio of an amount of the light emitted from the side view direction to an amount of the light emitted from the front view direction is smaller than 0.07.
According to one embodiment of the present disclosure, the front view direction is parallel to a light normal line of the upper diffuser, and there is an included angle, which is greater than 45 degrees, between the side view direction and the light normal line.
According to one embodiment of the present disclosure, each of the lower prism structures and the upper prism structures is a strip structure.
According to the aforementioned objectives of the present disclosure, a backlight module is provided. The backlight module includes a light guide plate, a light source, and the aforementioned optical film set. The light guide plate has a light-incident surface and a light-emitting surface. The light source is disposed adjacent to the light-incident surface. The optical film is disposed above the light-emitting surface.
According to the aforementioned objectives of the present disclosure, a display device is provided. The display device includes a light guide plate, a light source, the aforementioned optical film set, and a display panel. The light guide plate has a light-incident surface and a light-emitting surface. The light source is disposed adjacent to the light-incident surface. The optical film set is disposed above disposed above the light-emitting surface of the light guide plate. The display panel is disposed above the optical film set.
According to the aforementioned description, it is known that the optical film set of the present disclosure mainly designs the included angle between the extending direction of the upper prism structures of the upper prism film and the light-incident surface, and changes the included angle between the extending direction of the lower prism structures of the lower prism film and the light-incident surface, so as to reduce the amount of light emitted at the side view angle while maintaining the amount of light emitted at the front view angle to meet the optical requirements of anti-peeping display. In addition, when used with diffusers of different hazes, the combination of the upper prism film and the lower prism film of the present disclosure can further achieve the effect of reducing the stray light emitted at the side view angle.
For a better understanding of the embodiments and their advantages, reference is now made to the following description taken in conjunction with the accompanying drawings, in which:
Referring to
As shown in
Referring to
Referring to
Referring to Table 1 and Table 2 below, Table 1 and Table 2 list the light-emitting results of the light L1 and the light L2 generated by various combinations of the included angle α of the lower prism film 220 and the included angle β of the upper prism film 230.
According to Table 1 and Table 2, it can be seen that when the included angle β of the upper prism film 230 ranges from 25 degrees to 50 degrees or from 130 degrees to 155 degrees, the ratio of the light emitted at the side view angle is smaller than 10%, or even smaller than 7%, which can meet the requirements of anti-peeping products. Thus, it can be known that the included angle α of the lower prism film 220 can be designed to be from 115 degrees to 140 degrees or from 220 degrees to 245 degrees including the end point values; or the second direction D2 of the upper prism structures 231 of the upper prism film 230 and the first direction D1 of the lower prism structures 221 of the lower prism film 220 can be designed to be perpendicular to each other to achieve the effect of reducing the ratio of the light emitted at the side view angle as mentioned above.
Referring to
The backlight module of the present disclosure may have different structural designs. Referring to
As shown in
In the present disclosure, the lower diffuser 410 and the upper diffuser 440 have diffusion particles 211 as shown in
Referring to
According to the aforementioned embodiments of the present disclosure, it is known that the optical film set of the present disclosure mainly designs the included angle between the extending direction of the upper prism structures of the upper prism film and the light-incident surface, and changes the included angle between the extending direction of the lower prism structures of the lower prism film and the light-incident surface, so as to reduce the amount of light emitted from the side view angle while maintaining the amount of light emitted at the front view angle to meet the optical requirements of anti-peeping display. In addition, when used with diffusers of different hazes, the combination of the upper prism film and the lower prism film of the present disclosure can further achieve the effect of reducing the stray light emitted at the side view angle.
Although the present disclosure has been disclosed above with embodiments, it is not intended to limit the present disclosure. Any person having ordinary skill in the art can make various changes and modifications without departing from the spirit and scope of the present disclosure. Therefore, the protection scope of the present disclosure should be defined by the scope of the appended claims.
This application is a continuation application of International application No. PCT/CN2021/136657, filed Dec. 9, 2021, the content of which is incorporated herein by reference in its entirety.
Number | Date | Country | |
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Parent | PCT/CN2021/136657 | Dec 2021 | WO |
Child | 18735201 | US |