1. Field of the Invention
The present invention relates to a light guide, and more particularly to a light guide for vehicular lamps.
2. Description of the Related Art
Two defocus surfaces 15, 16 are connected between the light-emitting surface 13 and the diffusing portion 14, respectively.
Two defocus surfaces 15, 16 disperse and reflect light to the light-emitting surface 13 or the diffusing portion 14, so that the light guided by the light-emitting surface 13 comes from the defocus surfaces 15, 16 or the diffusing portion 14, and the light guided by the light-emitting surface 13 is not uniform. Moreover, the light source 17 is disposed directly adjacent to the first adjacent surface 11 and the second adjacent surface 12, so that only part of the light enters the light guide 10, and the light guide 10 has low guiding efficiency.
Therefore, it is necessary to provide a light guide to solve the above problems.
The present invention is directed to a light guide. The light guide comprises at least one incident portion, a light-emitting surface, a diffusing portion and two lateral portions. The incident portion is disposed at at least one end of the light guide, and used to receive at least one light source.
The light-emitting surface is used to guide light. The diffusing portion is disposed opposite the light-emitting surface, and has a plurality of zigzag structures used to guide light to the light-emitting surface. Two lateral portions are connected between the light-emitting surface and the diffusing portion, respectively, and a plurality of surfaces of the lateral portions are part of a camber of a long border of an ellipse.
The present invention is further directed to a light guide. The light guide comprises at least one incident portion, a light-emitting surface, a diffusing portion and two lateral portions. The incident portion is disposed at at least one end of the light guide, and used to receive at least one light source. The incident portion has an accommodating hole and a free form; the accommodating hole is used to accommodate the light source, and the free form is disposed at the periphery of the incident portion. The light-emitting surface is used to guide light. The diffusing portion is disposed opposite the light-emitting surface, and has a plurality of zigzag structures used to guide light to the light-emitting surface. Two lateral portions are connected between the light-emitting surface and the diffusing portion, respectively.
The light guide according to the present invention allows light to be guided uniformly from the light-emitting surface, and the incident portion of the light guide according to the present invention receives most light emitted from the light source, thereby enhancing the guiding efficiency of the light guide.
In the embodiment, the light guide 20 has two incident portions 21 disposed at two ends of the light guide 20 respectively. The incident portion 21 has an accommodating hole 211 and a free form 212; the accommodating hole 211 is used to accommodate the light source 29, and the free form 212 is disposed at the periphery of the incident portion 21. The free form 212 comprises a plurality of curved surfaces, and the curved surfaces are connected smoothly. The free form 212 may comprise a plurality of circular curved surfaces; alternatively, the free form 212 may comprise a plurality of sectional curved surfaces.
The light-emitting surface 22 is used to guide light. The diffusing portion 23 is disposed opposite the light-emitting surface 22, and has a plurality of zigzag structures 231 used to guide light to the light-emitting surface 22. Two lateral portions 24, 25 are connected between the light-emitting surface 22 and the diffusing portion 23 respectively, and a plurality of surfaces of the lateral portions 24, 25 are part of a camber of a long border of an ellipse.
In the embodiment, the light-emitting surface 22 is part of a camber of a circle, for example, a camber of a semicircle. Two ends of the light-emitting surface 22 are respectively and smoothly connected to the lateral portions 24, 25. In another embodiment, as shown in
Referring to a third light path 63, the light source 29 illuminates the lateral portion 24 directly; the light is reflected to the light-emitting surface 22 by the lateral portion 24, but the angle for the light to be reflected to the light-emitting surface 22 is too large, so the light is not directly guided by the light-emitting surface 22; the light is reflected to the zigzag structure 231 of the diffusing portion 23 by the light-emitting surface 22 again, and then reflected to and guided by the light-emitting surface 22.
Therefore, by utilizing the light guides 20, 30 according to the present invention, when the angle for the light to be reflected to the light-emitting surfaces 22, 32 is too large, the light is reflected to the diffusing portion 23 by the light-emitting surfaces 22, 32 again, and then reflected to and guided by the light-emitting surfaces 22, 32, which allows light to be guided uniformly from the light-emitting surfaces 22, 32. Moreover, by utilizing the incident portion 21 of the light guides 20, 30 according to the present invention, the free form 212 receives most light emitted from the light source 29, and reflects light to the diffusing portion 23, the lateral portions 24, 25, 34, 35 or the light-emitting surfaces 22, 32, thereby enhancing the guiding efficiency of the light guides 20, 30.
While several embodiments of the present invention have been illustrated and described, various modifications and improvements can be made by those skilled in the art. The embodiments of the present invention are therefore described in an illustrative but not restrictive sense. It is intended that the present invention should not be limited to the particular forms as illustrated, and that all modifications which maintain the spirit and scope of the present invention are within the scope defined by the appended claims.
Number | Date | Country | Kind |
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099205055 | Mar 2010 | TW | national |