1. Field of the Invention
The present invention relates to a light spreading device and a backlight module utilizing the same, and in particular, to a backlight module with improved illumination uniformity.
2. Description of the Related Art
When point lights, such as light emitting diodes (LED), are combined with a light guide in a conventional backlight module, the directivities of the point lights usually causes a non-uniformity of brightness due to improperly mixed light of adjacent point lights. In particular, when the point lights are combined with a V-cut light guide, shadows are easily generated, thus deteriorating illumination uniformity.
Backlight modules are provided. An exemplary embodiment of a backlight module comprises a light guide, a plurality of point lights, and a plurality of light spreading devices. The light guide comprises a first entrance surface. The point lights are disposed near the first entrance surface. Each light spreading device, corresponding to one of the point lights, is disposed between the light guide and the corresponding point light.
Furthermore, each light spreading device comprises two spreading portions which are mutually symmetrical with respect to a direction perpendicular to the first entrance surface. Each spreading portion comprises an exit surface facing the first entrance surface, and a second entrance surface facing the corresponding point light. An acute angle intersected by the exit surface and the first entrance surface is less than thirty five degrees. An acute angle intersected by the second entrance surface and a line parallel with the first entrance surface is greater than seventy degrees.
Alternatively, each light spreading device comprises two spreading portions which are substantially triangular and mutually symmetrical with respect to a direction perpendicular to the first entrance surface, and the triangular spreading portions are connected with each other in an angle-to-angle manner. Each spreading portion comprises an exit surface facing the first entrance surface, and an acute angle intersected by the exit surface and the first entrance surface is less than thirty five degrees. Each spreading portion comprises a second entrance surface facing the corresponding point light, and an acute angle intersected by the second entrance surface and a line parallel with the first entrance surface is greater than seventy degrees.
Note that each light spreading device may comprise silicon, polycarbonate, or resin, and may be made by die casting or injection molding. Each point light is a light emitting diode.
Moreover, each light spreading device may be disposed on the corresponding point light or adhered to the first entrance surface. Alternatively, the first entrance surface comprises a plurality of concave portions in which the light spreading devices are disposed independently.
Light spreading devices are provided. An exemplary embodiment of a light spreading device comprises two spreading portions which are mutually symmetrical with respect to a central line. Each spreading portion comprises an exit surface and an entrance surface. An acute angle intersected by the exit surface and a line perpendicular to the central line is less than thirty five degrees. An acute angle intersected by the entrance surface and a line perpendicular to the central line is greater than seventy degrees.
Another exemplary embodiment of a light spreading device comprises two spreading portions which are substantially triangular and mutually symmetrical with respect to a central line. The triangular spreading portions are connected with each other in an angle-to-angle manner.
A detailed description is given in the following embodiments with reference to the accompanying drawings.
The invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
a is a schematic view of a variant embodiment of a light spreading device;
b is a schematic view of another variant embodiment of a light spreading device;
c is a schematic view of another variant embodiment of a light spreading device;
a is a schematic view of another embodiment of a backlight module of the invention; and
b is a schematic view of another embodiment of a backlight module of the invention.
Referring to
The light guide 10 comprises a first entrance surface 11. Each point light 20 is disposed near the first entrance surface 11 so that light emitted from the point light 20 can enter the light guide 10 via the first entrance surface 11. Furthermore, each point light 20 may preferably be a light emitting diode, and may be Batwing type or Lambertian type, or may be purchased from Lumileds.
Each light spreading device 30 corresponds to one of the point lights 20, and is disposed on the corresponding point light 20 and located between the light guide 10 and the corresponding point light 20. Referring to
Note that the central line P is located in a direction perpendicular to the first entrance surface 11 of the light guide 10. That is, the spreading portions 31 are mutually symmetrical with respect to the direction perpendicular to the first entrance surface 11 of the light guide 10. Furthermore, the divided line H is parallel with the first entrance surface 11 of the light guide 10. That is, an acute angle intersected by the exit surface 32 of the spreading portion 31 and the first entrance surface 11 of the light guide 10 is also less than thirty-five degrees. Additionally, the divided line H is a line parallel with the first entrance surface 11 of the light guide 10. That is, an acute angle intersected by the second entrance surface 33 of the spreading portion 31 and a line parallel with the first entrance surface 11 of the light guide 10 is greater than seventy degrees.
Furthermore, the spreading portions 31 of the light spreading device 30 are substantially triangular and are connected with each other in an angle-to-angle manner, and a connection portion 34 is located between the triangular spreading portions 31 in
Note that each light spreading device may comprise silicon, polycarbonate, or resin, and may be made by die casting or injection molding.
Additionally, each light spreading device 30 is disposed on the corresponding point light 20 in
The result of optical simulation shows that the shadows in the backlight module can be removed by the embodiments of the light spreading devices. Thus, illumination uniformity can be enhanced.
As previously described, since the directivities of the point lights can be changed by the embodiments of the light spreading devices before they enter the light guide, the light can be effectively mixed after entering the light guide. Thus, non-uniformity of brightness can be decreased.
While the invention has been described by way of example and in terms of preferred embodiment, it is to be understood that the invention is not limited thereto. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
Number | Date | Country | Kind |
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95102042 A | Jan 2006 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
3740540 | Takeichi et al. | Jun 1973 | A |
6679621 | West et al. | Jan 2004 | B2 |
20060109684 | Nesterenko et al. | May 2006 | A1 |
Number | Date | Country |
---|---|---|
1670585 | Sep 2005 | CN |
1687831 | Oct 2005 | CN |
Number | Date | Country | |
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20060198160 A1 | Sep 2006 | US |