1. Field of the Invention
The present invention relates to a vehicle lamp, and in particular, to a vehicle lamp including a light emitting element such as a light emitting diode as a light source.
2. Description of the Related Art
In recent years, as a light source of a vehicle lamp, a light emitting element such as a light emitting diode has been increasingly adopted.
In such a case, it may be requested that an illumination region when light from the light emitting diode is emitted on a screen is formed in a landscape shape having a vertically small width.
Therefore, as disclosed in Japanese Patent Application Publication No. 2007-48470 described below, it is known that a so-called polarizing lens is disposed forward in a light illumination direction of the light emitting diode. This polarizing lens has a landscape shape and is an aspheric surface lens including two convex lenses of a substantially same type that are provided in line to have a portion overlapped with each other. The light emitting diode is disposed to oppose the overlapped portion of the polarizing lenses. With this arrangement, light from the light emitting diode is polarized in a lateral direction by the two convex lenses and emitted. Luminance of the light is substantially same as that of the light from the light emitting diode passed through the overlapped portion of respective concave lenses. Therefore, for example, a whole region of the illumination region when the light is emitted on the screen seems luminous with substantially uniform brightness.
However, in the above-described vehicle lamp, the polarizing lens has a bilaterally symmetrical shape with reference to a center thereof, and is disposed corresponding to the center of an axis vertical to the light output surface of the light emitting diode (light emitting element). In other words,
The purpose of the present invention is to provide a vehicle lamp that is invented in consideration of the problems described above, and can form the light illumination region that is in a rectangular shape and displaced to one side with respect to an axis vertical to a light output surface of a light emitting element, and also has a clear outline having no blur of the light.
A vehicle lamp according to the present invention includes at least a built-in light emitting element and polarizing lens, which is formed in a special shape, to achieve the above-described purpose.
The present invention can be grasped by a configuration described below.
(1) A vehicle lamp according to the present invention includes: a base plate; a light emitting element mounted with a light output surface faced upward on the base plate; and a polarizing lens disposed to cover the light emitting element on the base plate and formed, in a planar view, to have a larger width in a first direction orthogonal to that in a second direction, wherein the polarizing lens, in a planar view, has each side in the second direction including a first arc-shaped side and a second arc-shaped side that protrude to the outside; a diameter of the first arc-shaped side 7 is formed larger than that of the second arc-shaped side, each side in the first direction forms a curve line that is smooth and connects the first arc-shaped side and the second arc-shaped side; the cross-sectional surface along the second direction has the highest portion at its center; and a height of the convex shape is formed in such a manner to be increased from the first arc-shaped side to the second arc-shaped side and then gradually decreased.
(2) The vehicle lamp according to the present invention, in the configuration described in (1), the polarizing lens is formed with a concave surface on a surface opposing the light emitting element; and the concave surface includes an arc-shaped surface about a virtual axis extending in the second direction.
(3) The vehicle lamp according to the present invention, in the configuration described in (2), the light emitting element is, in a planar view, disposed at a center of the first direction of the arc-shaped surface of the polarized lens.
The vehicle lamp configured as described above can form the light illumination region that is in a rectangular shape and displaced to one side with respect to an axis vertical to a light output surface of a light emitting element, and also has a clear outline having no blur of the light.
With reference to an attached drawings, an embodiment for performing the present invention (herebelow, exemplary embodiment) will be described in detail below. The same numeral will be applied to the same element throughout the descriptions of the exemplary embodiment.
<Overall Configuration>
The polarizing lens is disposed to cover the light emitting element on the base plate 3. The polarizing lens will be described in detail below. In brief, a width in an “x” direction in the diagram is formed larger than that in a “y” direction therein (direction vertical to a paper surface), and a cross-sectional surface along the “y” direction therein is formed in a convex shape having a highest portion at its center, and the height of the convex shape is formed in such a manner to be increased from one side (left side in the diagram) along the “x” direction therein to another side (right side therein) and then gradually decreased.
The light from the light emitting element 5 enters the polarizing lens 7, and output light from the polarizing lens is output to have the light illumination region on a virtual surface (e.g., screen) parallel with the board 3. The region defined by the light illumination range is referred to as a light illumination region 9 hereafter. In such a case, the output light from the polarizing lens 7 illuminates a part of the light illumination region 9 to have a spread of an angle a at a left side in the diagram with respect to the axis “P” vertical to the light output surface of the light emitting element 5, and a rest part of the light illumination region 9 to have a spread of an angle β at a right side in the diagram with respect to the axis “P”. Herein, the angles α and β are defined to have a relationship of α>β. Therefore, in the light illumination region 9, the light illumination region (indicated with a reference symbol “L” in the diagram) at the left side in the diagram with respect to the axis “P” vertical to the light output surface of the light emitting element 5 is large, and the light illumination region (indicated with a reference symbol “R” therein) at the right side in the diagram with respect to the axis “P” is small. The above-described light illumination regions mean that the light illumination region 9 is displaced (shifted) to the left side in the diagram with respect to the axis “P” vertical to the light output surface of the light emitting element. In such a case, by adjusting the angles α and β, an output direction of the light can be set. Therefore, when the light emitting element 5, the polarizing lens 7, and other optical member built in the room of the vehicle lamp having comparatively small space are disposed, the freedom of disposing them can be improved.
<Configuration of Polarizing Lens>
First, as illustrated in Fig. IA, the polarizing lens is formed, in a planar view, such that a width in the “x” direction (may be referred to as a first direction) in the diagram is larger than that in the “y” direction (may be referred to as a second direction) in the diagram. Each side in the “y” direction in the diagram forms each of a first arc-shaped side 7A and a second arc-shaped side 7B that protrude to the outside. In such a case, for example, a diameter (curvature) of the first arc-shaped side 7A is formed larger than that of the second arc-shaped side 7B. Each side in the “x” direction in the diagram forms a curve line side 7C that is smooth and connects the first arc-shaped side 7A to the second arc-shaped side 713.
Further, as illustrated in
Furthermore, as illustrated in
The polarizing lens body 11 including the polarizing lens 7 and the base 13 as described above is formed by integrally molding with resin material for example. In
<Characteristics of Polarizing Lens>
The polarizing lens configured as such has characteristics described below.
In
Regarding the above-described polarizing lens 7, each diameter (curvature) of the first arc-shaped side 7A and the second arc-shaped side 7B or the diameter (curvature) of the convex shape on the cross sectional surface on the surface orthogonal to the direction (x direction) from the first arc-shaped side 7A to the second arc-shaped side 7B can be arbitrary set according to sizes of the length “a” and the width “b” of the light illumination region 9.
The vehicle lamp configured as described above can form the light illumination region 9 displaced to the one side with respect to the axis “P” vertical to the light output surface of the light emitting element 5. Therefore, when the light emitting element 5, the polarizing lens 7, and other optical member to be built in the room of the vehicle lamp having comparatively small space are disposed therein, the freedom of disposing them can be improved. Further, the light illumination region 9 of the light emitting element 5 can be formed in a rectangular shape, and also the light illumination region 9 can have the clear outline having no blur. Therefore, when the light needs to be emitted to the other optical member such as the prism disposed in the room of the vehicle lamp, the light can be emitted within the predetermined region of the optical member and thus the light can be prevented from getting out of the region thereof, thereby improving effects for useful usage of the light without spoiling it.
The above-described vehicle lamp used as a clearance lamp is described as an example. The present invention is not limited to the clearance lamp but can be applied other vehicle lamps.
As described above, the present invention has been descried using the exemplary embodiment, however, a technical scope of the present invention is not limited to a scope described in the above-described exemplary embodiment. It is obvious for those skilled in the art to add a variety of modifications or improvements to the above-described exemplary embodiment. It is also obvious from the scope of claims that the exemplary embodiment including the variety of modifications and improvements is also included in the technical scope of the present invention.
Number | Date | Country | Kind |
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2011-063533 | Mar 2011 | JP | national |
This application claims priority of Japanese Patent Application No. 2011-063533 filed on Mar. 23, 2011. The contents of this application are incorporated herein by reference in their entirety.