Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments of this invention, with reference to the accompanying drawing, in which:
Before the present invention is described in greater detail, it should be noted that same reference numerals have been used to denote like elements throughout the specification.
The light diffuser plate 2 includes: a diffuser film 21 having a light incident surface 213 and a light exit surface 214 opposite to the light incident surface 213; a plurality of light-scattering particles 212 dispersed in the diffuser film 21; and a light-enhancing film 22 formed on the light exit surface 214 of the diffuser film 21 and having a light emerging surface 222 opposite to the light exit surface 214 and formed with a plurality of protrusions 223. The light exit surface 214 of the diffuser film 21 is uneven.
In this embodiment, the light exit surface 214 of the diffuser film 21 has a wavelike profile which includes a series of connected ripples 215, each of which is curved in shape. The light-enhancing film 22 has a contact surface 221 that is opposite to the light emerging surface 222 and that conforms to the light exit surface 214 of the diffuser film 21.
The diffuser film 21 is made from a polymer material, while the light-scattering particles 212 are made from a material having a refractive index different from that of the polymer material. The difference in refractive index between the material of the light-scattering particles 212 and the polymer material preferably ranges from 0.01 to 0.2. The diffuser film 21 has a thickness ranging from 0.1 mm to 1 mm. The protrusions 223 of the light-enhancing film 22 are preferably prismatic in shape.
Preferably, the polymer material is selected from the group consisting of polymethylmethacrylate, polycarbonate, polymethylmethacrylate styrene copolymer, metallocene cycloolefin copolymer, polystyrene, and polymethylpentene. The light-enhancing film 22 is preferably made from the polymer material.
Preferably, the light-scattering particles 212 are present in an amount ranging from 0.01 wt % to 10 wt % based on the total weight of the diffuser film 21 and the light-scattering particles 212.
Alternatively, each of the ripples 215 of the wavelike profile of the light exit surface 214 of the diffuser film 21 can be semi-circular, prismatic, or cylindrical in shape. The wavelike profile of the light exit surface 214 of the diffuser film 21 is preferably a sinusoidal wave.
By virtue of the uneven light exit surface 214 of the diffuser film 21, the amount of the light-scattering particles 212 present in the diffuser film 21 can be considerably reduced while achieving the same light scattering effect, thereby eliminating the aforesaid drawback associated with the prior art. Moreover, the layer thickness of the diffuser film of the conventional light diffuser plate is about 4 to 12 times of the light-enhancing film of the conventional diffuser plate, while that of the diffuser film 21 of the light diffuser plate 2 of this invention is about one third of the light-enhancing film 22 of the diffuser plate 2 of this invention for achieving the same light scattering effect. Hence, the layer thickness of the diffuser film 21 can be significantly reduced to achieve the same light scattering effect as compared to the aforesaid conventional diffuser plate.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation and equivalent arrangements.
Number | Date | Country | Kind |
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095119037 | May 2006 | TW | national |