This non-provisional application claims priority under 35 U.S.C. §119(a) on Patent Application No(s). 100148865 filed in Taiwan, R.O.C. on Dec. 27, 2011, the entire contents of which are hereby incorporated by reference.
1. Field of the Invention
The present invention relates to the area of planar light emitting modules, in particularly to a lateral planar light emitting module capable of producing a light emitting effect for a light source of a light emitting diode with uniform light intensity on a light exit surface without requiring a light guide plate structure.
2. Description of the Related Art
Light emitting diode has the features of long life, low power consumption, and high brightness, and thus it is used extensively and plays an important role in different areas including illumination, warning or display, and becomes a first choice of the light emitting source. On the other hand, the light emitting diode has the property of a high directivity, which limits the applicability of the light emitting source in various different applications, and requires an overall structural improvement of the light emitting source. For example, a full-range illumination device is provided to meet the illumination requirements, or a light guide plate is provided to guide a light source of a backlight module of a display and change the light exit path to emit uniform light.
However, the backlight module is used as an example only. Although the light emitting diode is used as the light emitting source to achieve the power-saving, low-pollution and high-color effects and the light and thin design, yet the light guide plate is still a necessary component, particularly for a lateral backlight module. Therefore, the light guide plate plays an important role of a light guide medium while absorbing lots of light energies. As the display requires an increasing larger size, the cost and weight of the display will be increased, which is a disadvantageous manufacturing condition for terminal products. On the other hand, the light guide plate for large displays requires a thinner structure, which causes a more difficult manufacturing process, and a higher manufacturing cost. Therefore, it is a subject for related manufacturers to omit the light guide plate or substituting the light guide plate by another structure while maintaining a uniform planar light emitting effect.
In view of the description above, the inventor of the present invention based on years of experience in the related industry to conduct extensive researches and experiments, and finally provided a lateral planar light emitting module, comprising a rectangular base plate and a plurality of light emitting diodes, and the rectangular base plate has a diagonal falling within a range of 5˜100 cm, and the light emitting diodes are designed with an array arrangement and installed on both lateral opposite sides of the rectangular base plate respectively, such that a light source emitted from the light emitting diodes can be directly projected, or reflected from a reflective micro-structure of the rectangular base plate, and then a light emitting effect with a uniform light intensity is achieved on a light exit surface, wherein the light exit surface opposite to a light projection area with a different intensity produced by the same light emitting diode has an optical path with a different distance and used for substituting a light guide plate used in a conventional backlight module or planar light emitting source to enhance the brightness of an optical film structure, lower the manufacturing cost, and improve the light emitting efficiency effectively.
Therefore, it is a primary objective of the present invention to provide a light emitting effect for a light source of a light emitting diode with uniform light intensity on a light exit surface without requiring a light guide plate structure, so that the light source can be applied effectively in a backlight module of a display or in other planar illumination equipments.
To achieve the foregoing objective, the present invention provides a lateral planar light emitting module, comprising a rectangular base plate and a plurality of light emitting diodes, and the rectangular base plate having a diagonal falling within a range of 5˜100 cm, and light emitting diodes being designed with an array arrangement and installed on both opposite sides of the rectangular base plate respectively, so that a light source emitted from the light emitting diodes is projected directly or reflected from the rectangular base plate, and then light emitting effect with a uniform light intensity distribution at a light exit surface is achieved, and the lateral planar light emitting module is characterized in that a strong light emitting area, a secondary light emitting area, a weak light emitting area and a slightly light emitting area are formed sequentially at normal included angles between each of the light emitting diodes and an environmental medium from 0° to 90°, and the rectangular base plate includes at least one reflective micro-structure formed thereon, and when the light source emitted from each of the light emitting diodes has not passed through a reflection path or reflected from the rectangular base plate of the reflective micro-structure, a first light output point p1 emitted from the strong light emitting area onto the light exit surface, a second light output point p2 emitted from the secondary light emitting area onto the light exit surface, a third light output point p3 emitted from the weak light emitting area onto the light exit surface, and a fourth light output point p4 emitted from the slightly light emitting area onto the light exit surface have a distance of Rp1, Rp2, Rp3 and Rp4 from the light emitting diode of the same two-dimensional space respectively, and Rp1>Rp2>Rp3>Rp4.
Wherein, if the normal included angle between any one optical path in the strong light emitting area and the environmental medium is equal to θ1, the normal included angle between any one optical path in the secondary light emitting area and the environmental medium is equal to θ2, the normal included angle between any one optical path in the weak light emitting area is equal to θ3 and the normal included angle between any one optical path in the slightly light emitting area is equal to θ4, then cos θ1/R12≈cos θ2/R22≈cos θ3/R32≈cos θ4/R42.
In a preferred embodiment, the angle θ1 falls within a range of 0°<θ1≦30°, the angle θ2 falls within a range of 30°<θ2≦45°, the angle θ3 falls within a range of 45°<θ3≦60° and the angle θ4 falls within a range of 60°<θ4≦90°.
In another preferred embodiment, the distance between the rectangular base plate and the light exit surface falls within a range of 0.1 cm˜5 cm.
In another preferred embodiment, the reflective micro-structure includes two primary inclined plate structures, and the light emitting diodes disposed opposite to both sides of the rectangular base plate are installed at the middle positions of the rectangular base plate.
In another preferred embodiment, the lateral planar light emitting module further comprises at least one optical lens installed at a light output position of the light emitting diode.
In another preferred embodiment, the light emitting diodes are installed at different angles towards the rectangular base plate.
The effects of the present invention reside on that a lateral planar light emitting module having a rectangular base plate and a plurality of light emitting diodes is provided, and the rectangular base plate has a diagonal falling within a range of 5˜100 cm, and the light emitting diodes are designed with an array arrangement and installed on both opposite sides of the rectangular base plate respectively, such that a light source emitted from the light emitting diodes can be directly projected, or reflected from a reflective micro-structure of the rectangular base plate, and then a light emitting effect with a uniform light intensity is achieved on a light exit surface, wherein the light exit surface opposite to a light projection area with a different intensity produced by the same light emitting diode has an optical path with a different distance and used for substituting a light guide plate used in a conventional backlight module or planar light emitting source to enhance the brightness of an optical film structure, lower the manufacturing cost, and improve the light emitting efficiency effectively.
The technical content of the present invention will become apparent by the detailed description of the following embodiments and the illustration of related drawings as follows.
With reference to
In
With the direct proportion between the light intensity at a certain position of the light emitting diodes 12 and the projection angle, and the inverse proportion between the light intensity at a certain position of the light emitting diodes 12 and the square of distance, a light emitting effect with almost the same light intensity distribution can be achieved in different intensity areas of a single light emitting diode 12 by means of the light reflection from the reflective micro-structure 101 or the direct light projection on the light exit surface 14. For example, a first light output point p1 emitted from the strong light emitting area onto the light exit surface, a second light output point p2 emitted from the secondary light emitting area onto the light exit surface, a third light output point p3 emitted from the weak light emitting area onto the light exit surface, and a fourth light output point p4 emitted from the slightly light emitting area onto the light exit surface have the same distance Rp1, Rp2Rp3 and Rp4 from the light emitting diode 12 of the same two-dimensional space, then Rp1>R2>Rp3>Rp4.
In the designs of different sizes, if the distance between the rectangular base plate 10 and the light exit surface 14 falls within a range of 0.1 cm˜5 cm, the relation cos θ1/R12≈cos θ2/R22≈cos θ3/R32≈cos θ4/R42 is adjusted to obtain the best light emitting effect. It is noteworthy to point out that the light emitting diodes 12 as shown in
With reference to
With reference to
In summation of the description of the foregoing preferred embodiments, the effects of the present invention reside on that the lateral planar light emitting module having the rectangular base plate and the plurality of light emitting diodes is provided, and the rectangular base plate has a diagonal falling within a range of 5˜100 cm, and the light emitting diodes are designed with an array arrangement and installed on both opposite sides of the rectangular base plate respectively, such that a light source emitted from the light emitting diodes can be directly projected, or reflected from a reflective micro=structure of the rectangular base plate, and then a light emitting effect with a uniform light intensity is achieved on a light exit surface, wherein the light exit surface opposite to a light projection area with a different intensity produced by the same light emitting diode has an optical path with a different distance and used for substituting a light guide plate used in a conventional backlight module or planar light emitting source to enhance the brightness of an optical film structure, lower the manufacturing cost, and improve the light emitting efficiency effectively.
Number | Date | Country | Kind |
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100148865 | Dec 2011 | TW | national |