1. Field of the Invention
The present invention relates to an optical film, and more particularly to an optical film with a plurality of prism rod structures required for a backlight system of a liquid crystal display or other electronic devices.
2. Description of Related Art
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1. total reflection (TRI) recycle:
When a light beam 143 is projected from an inside of a prism approximately within ±4.degree. relative to a virtual perpendicular axis perpendicular to a bottom face of the prism rod 141, it is influenced by total reflection phenomena of inclined faces of the prism rod 141, recycled toward a back light source after two total reflections and diffused, propagated and utilized continuously;
2. second reflection recycle:
After a light beam 144 is refracted by two prism rods 141, it is then recycled to the back light source and diffused, propagated and utilized continuously;
3. directed reflective:
A beam 145 is refracted out through an inclined face of the prism rod 141, this optical path mode have light gathering function; only light beams refracted out within the range of a vision angle 80.degree. of the prism rod 141 can be utilized, as shown in
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For improving a good deal problems caused when a lower layer of light directing film and a upper layer material are stacked together, U.S. Pat. No. 5,771,328 discloses a light directing film including a first surface and a second structured surface. The structured surface includes a repeating pattern of prism zones including at least a first zone having a plurality of prism elements with peaks disposed at a first distance from a reference plane and a second zone having a plurality of prism elements with peaks disposed less than the first distance from a reference plane. The width of the first zone preferably measures less than about 300 microns.
In the light directing film disclosed by the US patent mentioned above, the plurality of higher peaks of the first zone is used to support a upper layer material at a lower surface thereof and not all peaks of the light directing film are used to support the upper layer material at the lower surface thereof such that it can alleviate adhesion caused from the mutual stacking of the light directing film and the upper layer material and reduce the white spots and scratches generated while being observed at a large angle of view.
For allowing an optical film to have an innovative supporting structure, alleviating adhesion caused when a prism sheet supports a upper layer material at a lower surface thereof and reducing white spots and scratches generated while being observed at a large angle of view, the present invention is proposed.
The main object of the present invention is to provide an optical film with a surface structure, capable of alleviating adhesion generated from a contact with a upper layer material film.
Another object of the present invention is to provide an optical film with a surface structure, capable of reducing an adhesion area of a prism sheet and a upper layer material and white spots generated while being observed at a large angle of view.
Still another object of the present invention is to provide an optical film with a surface structure, capable of preventing a lower surface of a upper layer material from being scratched to be helpful for elevate a yield factor of an electronic product encapsulating a prism sheet, a upper layer material and etc.
The present invention can be more fully understood by reference to the following description and accompanying drawings, in which:
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The optical film 30 of the present embodiment is characterized in that heights of the independent peaks 322, 332, 342, 352 are varied from high to low and then from low to high periodically. Virtual connecting lines L1, L2 of summits of the independent peaks 322, 332, 342, 352 varied from high to low and low to high respectively are a line, and a spacing interval between the two adjacent independent valleys 36, 37 is varied in geometrical proportion with heights of the independent valleys 322, 332, 342, 352.
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The heights of the independent peaks 322, 332, 342, 352 of the control elements 32, 33, 34, 35 of the optical film 30 of the present invention are periodically varied, the virtual connecting lines L1, L2 of the summits of the independent peaks 322, 332, 342, 352 varied from high to low and low to high respectively are a straight line to allow the light control elements 32, 33, 34, 35 to be manufactured more easily. Furthermore, when a period of the height variation of the independent peaks 322, 332, 342, 352 is shorter, light emitted from the optical film 30 rather shows no observable line generated from the height periodically varied independent peaks 322, 332, 342, 352 while being observed at two sides of the optical film 30.
The height different H of each independent peak 322, 332, 342, 352 of the optical film 30 of the present embodiment is not larger than 5˜10 um (micrometer); the ratio of the largest and the smallest among the heights of the independent peaks 322, 332, 342, 352 is not larger than 1.2˜1.05. A height variation period is between two to ten independent peaks every time. An included angle range of a vertex angle of each independent peaks 322, 332, 342, 352 is between 70 degrees and 110 degrees. A height variation period of the independent peaks 322, 332, 342, 352 is less than 200 um (micrometer).
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The present invention allows an optical film to have an innovative supporting structure to be manufactured more easily, the adhesion generated when the optical film supports a upper layer material at a lower surface thereof to be alleviated, a adhesion area between a prism sheet and the upper layer material and white spots generated while being observed at a large angle of view to be reduced and scratches generated on independent peaks of the optical film and the upper layer material to be decreased to be helpful for increasing a production yield factor of electronic products encapsulating the optical film, the upper layer material and etc. Furthermore, a vertex angle of the independent peak is arc such that the scratches generated on the independent peaks and the upper layer material can be decreased even more.
Additional advantages and modifications will readily occur to those skilled in the art. Therefore, the invention in its broader aspects is not limited to the specific details and representative embodiments shown and described herein. Accordingly, various modifications may be made without departing from the spirit or scope of the general inventive concept as defined by the appended claims and their equivalents.
| Number | Date | Country | Kind |
|---|---|---|---|
| 096120390 | Jun 2007 | TW | national |