OPTICAL LENS AND LIGHT SOURCE MODULE
An optical lens and a light source module are provided. The optical lens includes a light incident portion and a light guiding portion. The light incident portion includes two back optical surfaces, a first light incident surface, and two second light incident surfaces. The light guiding portion has a plurality of light guiding branches and the light guiding branches extend along different extending directions, wherein each of the light guiding branches has a main light emitting surface, and the first light incident surface and the second light incident surface face the main light emitting surfaces of the light guiding branches, respectively.
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This application claims the priority benefit of China application serial no. 201811516975.4, filed on Dec. 12, 2018. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
BACKGROUND Technical FieldThe invention relates to an optical lens and a light source module, and particularly relates to an optical lens and a light source module having a plurality of light emitting points.
Description of Related ArtIn recent years, along with improvement of light emitting efficiency and a service life of light emitting diodes (LED), as well as device characteristics and advantages of low energy consumption, low pollution, high efficiency, high reaction speed, small size, light weight and being adapted to be set on various surfaces, LEDs have been actively applied in various optical fields. Taking an application of the LED in illumination as an example, many applications of applying LED package structures to light sources (such as light bulbs, street lamps, flashlights, etc.) or related lighting devices have been developed.
However, since the LED a directional light source, the light is emitted only in a specific direction in form of a point light source, so that when the LED is applied to existing outdoor lighting equipment, such as street lamps or the like, it is easy to cause a glare in the light-emitting axial direction thereof due to concentration of light energy at a point. Moreover, since the light provided by the LED also has a limitation in energy distribution, in the case where the LED is applied to the existing outdoor lighting equipment, a design scheme is urgently needed to enable the light provided by the LED to be guided from a single light point into multiple surfaces, and to effectively distribute the light energy to a surface of an illuminated road in combination with an adjustable light shaping structure.
SUMMARYThe invention is directed to an optical lens, which is adapted to guide light to form a plurality of dispersed light spots.
The invention is directed to a light source module, which has a plurality of light spots, and is adapted to eliminate glare to implement a good light distribution.
The invention provides an optical lens including a light incident portion and a light guiding portion. The light incident portion includes two back optical surfaces, a first light incident surface, and two second light incident surfaces. Each of the two second light incident surfaces has a first side edge and a second side edge opposite to each other. The first light incident surface is connected to each of the second light incident surfaces through the first side edge of each of the second light incident surfaces. Each of the back optical surfaces is connected to each of the second light incident surfaces through the second side edge of each of the second light incident surfaces. The light guiding portion has a plurality of light guiding branches and the light guiding branches extend along different extending directions, wherein each of the light guiding branches has a main light emitting surface, and the first light incident surface and the second light incident surfaces face the main light emitting surfaces of the light guiding branches, respectively.
In an embodiment of the invention, the optical lens has a top surface, a bottom surface and a plurality of side surfaces, wherein the top surface is opposite to the bottom surface, and the top surface is connected to the bottom surface though the side surfaces, and the top surface has a plurality of top surface branches, the bottom surface has a plurality of bottom surface branches, the bottom surface branches respectively correspond to the top surface branches, and surfaces of one of the light guiding branches are formed by the corresponding top surface branch and the bottom surface branch and part of the side surfaces.
In an embodiment of the invention, contours of orthogonal projections of the top surface and the bottom surface on a reference plane are similar to each other, and an area of the contour of the orthogonal projection of the top surface on the reference plane is smaller than an area of the contour of the orthogonal projection of the bottom surface on the reference plane.
In an embodiment of the invention, the top surface and the bottom surface respectively have a T-shape contour.
In an embodiment of the invention, the side surface facing the first light incident surface or each of the second light incident surfaces is the main light emitting surface of each of the light guiding branches, and the main light emitting surface of each of the light guiding branches is a trapezoid.
In an embodiment of the invention, the bottom surface is connected with the back optical surfaces, the first light incident surface and the second light incident surfaces to form an accommodating space.
In an embodiment of the invention, the back optical surfaces are perpendicular to the bottom surface.
In an embodiment of the invention, the first light incident surface and the bottom surface have a first included angle there between, and the first included angle is between 90° and 160°.
In an embodiment of the invention, each of the side surfaces and the bottom surface have a second included angle there between, and the second included angle is between 20° and 90°.
The invention provides a light source module including at least one light emitting unit, and each of the light emitting units includes the aforementioned optical lens and a light emitting element. The light emitting element is adapted to provide a light beam, wherein the light beam enters the optical lens through the first light incident surface and the second light incident surfaces of the optical lens, and the light beam leaves the optical lens through the main light emitting surfaces of the light guiding branches.
In an embodiment of the invention, the number of the at least one light emitting unit is plural, and the light emitting units are arranged in interleaving to form an array.
According to the above description, the light source module of the invention is adapted to control an emitting axial direction and an emitting position of the emitted light through configuration of the light incident portion and the light guiding branches of the light guiding portion of the optical lens, so as to achieve a purpose of dispersing the emitted light. Moreover, the light source module may also control and adjust a light shape of the emitted light, such that the light provided by the LED may be guided and effectively distributed to external evenly, so as to eliminate the glare and achieve a good light distribution, which avails being applied to outdoor lighting equipment such as street lamps or the like.
To make the aforementioned more comprehensible, several embodiments accompanied with drawings are described in detail as follows.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
To be specific, as shown in
On the other hand, as shown in
Moreover, as shown in
In this way, the light source module 300 may control an emitting axial direction and an emitting position of the emitted light through configuration of the light incident portion 110 and the light guiding branches 121, 122 and 123 of the light guiding portion 120 of the optical lens 100, so as to achieve a purpose of dispersing the emitted light. Moreover, the light source module 300 may also control and adjust a light shape of the emitted light, such that the light provided by the LED as a point light source may be guided and effectively distributed evenly into a planar light source to the outside world, so as to eliminate the glare and achieve a good light distribution, which avails being applied to outdoor lighting equipment such as street lamps or the like.
To be specific, as shown in
On the other hand, as shown in
In detail, as shown in
On the other hand, as shown in
Therefore, through the aforementioned configuration, the optical lens 100 may control and adjust an illumination angle of the light beam provided by the light emitting element 210 to the left and right (i.e., the ±X direction) and the front (i.e., the +Y direction), so as to control and adjust a light shape distribution of the light source module 300.
In this way, the light source module 300 may control an emitting axial direction and an emitting position of the emitted light through configuration of the light incident portion 110 and the light guiding branches 121, 122 and 123 of the light guiding portion 120 of the optical lens 100, so as to achieve a purpose of dispersing the emitted light. Moreover, the light source module 300 may also control and adjust a light shape of the emitted light, such that the light provided by the LED may be guided and effectively and evenly distributed to external, so as to eliminate the glare and achieve a good light distribution, which avails being applied to outdoor lighting equipment such as street lamps or the like.
Moreover, since the light source module 400 of
In summary, the light source module of the invention is adapted to control an emitting axial direction and an emitting position of the emitted light through configuration of the light incident portion and the light guiding branches of the light guiding portion of the optical lens, so as to achieve a purpose of dispersing the emitted light. Moreover, the light source module may also control and adjust a light shape of the emitted light, such that the light provided by the LED may be guided and effectively distributed to external evenly, so as to eliminate the glare and achieve a good light distribution, which avails being applied to outdoor lighting equipment such as street lamps or the like.
It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed embodiments without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the invention covers modifications and variations provided they fall within the scope of the following claims and their equivalents.
Claims
1. An optical lens, having a top surface, a bottom surface and a plurality of side surfaces, wherein the top surface is opposite to the bottom surface, and the top surface is connected to the bottom surface through the side surfaces, comprising:
- a light incident portion, comprising: two rear optical surfaces; a first light incident surface; and two second light incident surfaces, wherein each of the two second light incident surfaces has a first side edge and a second side edge opposite to each other, the first light incident surface is connected to each of the second light incident surfaces through the first side edge of each of the second light incident surfaces, each of the rear optical surfaces is connected to each of the second light incident surfaces through the second side edge of each of the second light incident surfaces; and
- a light guiding portion, having a plurality of light guiding branches, and the light guiding branches extending along different extending directions, wherein each of the light guiding branches has a main light emitting surface, and the first light incident surface and the second light incident surfaces face the main light emitting surfaces of the light guiding branches, respectively,
- wherein the first light incident surface and the bottom surface have a first included angle there between, and the first included angle is between 90° and 160°, or each of the side surfaces and the bottom surface have a second included angle there between, and the second included angle is between 20° and 90°.
2. The optical lens as claimed in claim 1, wherein the top surface has a plurality of top surface branches, the bottom surface has a plurality of bottom surface branches, the bottom surface branches respectively correspond to the top surface branches, and surfaces of one of the light guiding branches are formed by the corresponding top surface branch and the bottom surface branch and part of the side surfaces.
3. The optical lens as claimed in claim 2, wherein contours of orthogonal projections of the top surface and the bottom surface on a reference plane are similar to each other, and an area of the contour of the orthogonal projection of the top surface on the reference plane is smaller than an area of the contour of the orthogonal projection of the bottom surface on the reference plane.
4. The optical lens as claimed in claim 2, wherein the top surface and the bottom surface respectively have a T-shape contour.
5. The optical lens as claimed in claim 2, wherein the side surface facing the first light incident surface or each of the second light incident surfaces is the main light emitting surface of each of the light guiding branches, and the main light emitting surface of each of the light guiding branches is a trapezoid.
6. The optical lens as claimed in claim 2, wherein the bottom surface is connected with the rear optical surfaces, the first light incident surface and the second light incident surfaces to form an accommodating space.
7. The optical lens as claimed in claim 2, wherein the rear optical surfaces are perpendicular to the bottom surface.
8. (canceled)
9. (canceled)
10. A light source module, comprising at least one light emitting unit, and each of the light emitting units comprising:
- the optical lens as claimed in claim 1; and
- a light emitting element, adapted to provide a light beam, wherein the light beam enters the optical lens through the first light incident surface and the second light incident surfaces of the optical lens, and the light beam leaves the optical lens through the main light emitting surfaces of the light guiding branches.
11. The light source module as claimed in claim 10, wherein the number of the at least one light emitting unit is plural, and the light emitting units are arranged in interleaving to form an array.
12. The light source module as claimed in claim 10, wherein the top surface has a plurality of top surface branches, the bottom surface has a plurality of bottom surface branches, the bottom surface branches respectively correspond to the top surface branches, and surfaces of one of the light guiding branches are formed by the corresponding top surface branch and the bottom surface branch and part of the side surfaces.
13. The light source module as claimed in claim 12, wherein contours of orthogonal projections of the top surface and the bottom surface on a reference plane are similar to each other, and an area of the contour of the orthogonal projection of the top surface on the reference plane is smaller than an area of the contour of the orthogonal projection of the bottom surface on the reference plane.
14. The light source module as claimed in claim 12, wherein the top surface and the bottom surface respectively have a T-shape contour.
15. The light source module as claimed in claim 12, wherein the side surface facing the first light incident surface or each of the second light incident surfaces is the main light emitting surface of each of the light guiding branches, and the main light emitting surface of each of the light guiding branches is a trapezoid.
16. The light source module as claimed in claim 12, wherein the bottom surface is connected with the rear optical surfaces, the first light incident surface and the second light incident surfaces to form an accommodating space.
17. The light source module as claimed in claim 12, wherein the rear optical surfaces are perpendicular to the bottom surface.
18. (canceled)
19. (canceled)
Type: Application
Filed: Apr 22, 2019
Publication Date: Jun 18, 2020
Applicants: LITE-ON ELECTRONICS (GUANGZHOU) LIMITED (GUANGZHOU), Lite-On Technology Corporation (Taipei)
Inventor: Bing-Yu Wu (Taipei City)
Application Number: 16/390,006