DISPLAY DEVICE
20210404626 · 2021-12-30
Inventors
Cpc classification
F21S43/241
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G02B6/0036
PHYSICS
F21S43/249
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/239
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S43/245
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/241
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A light guide plate guides light from a light source to form an image in a space, and includes a light introduction portion and a light emitting portion. Light from the light source is incident on the light introduction portion. The light emitting portion includes a curved emission surface that emits light from the light source incident from the light introduction portion, and is bent and connected to the light introduction portion.
Claims
1. A light guide plate configured to guide light from a light source to form an image in a space, the light guide plate comprising: a light introduction portion on which light from the light source is incident; and a light emitting portion which is bent and connected to the light introduction portion, the light emitting portion having an emission surface configured to emit the light from the light source incident from the light introduction portion, the emission surface having a curved shape.
2. The light guide plate according to claim 1, wherein the light introduction portion is integrally formed with the light emitting portion.
3. The light guide plate according to claim 1, wherein the light introduction portion is formed separately from the light emitting portion.
4. The light guide plate according to claim 1, wherein the light introduction portion and the light emitting portion are connected in an L shape.
5. The light guide plate according to claim 1, wherein the light emitting portion includes a radiation portion formed on an end surface thereof, the radiation portion configured to radiate the light from the light source incident from the light introduction portion to outside of the light guide plate.
6. The light guide plate according to claim 1, further comprising: a test pattern portion configured to evaluate emission characteristics of the light emitting portion, wherein the test pattern portion is provided on a part of the emission surface of the light emitting portion.
7. A display device comprising: a light source; and a light guide plate configured to guide light from the light source to form an image in a space, the light guide plate including a light introduction portion on which light from the light source is incident and a light emitting portion which is bent and connected to the light introduction portion, the light emitting portion having an emission surface configured to emit the light from the light source incident from the light introduction portion, the emission surface having a curved shape.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0029] Hereinafter, a display device 10 according to an embodiment will be described with reference to the drawings.
[0030] As illustrated in
[0031] The light source 1 incidents light on the light guide plate 2. In the present embodiment, three light sources are disposed adjacent to the light guide plate 2 at intervals therebetween. The light source 1 is, for example, an LED (Light Emitting Diode). However, the light source 1 is not limited to the LED, and may be other light sources such as an OLED (Organic Light Emitting Diode) and an LD (Laser Diode).
[0032]
[0033] The light guide plate 2 includes a light emitting portion 3 and a light introduction portion 4. The light emitting portion 3 includes an emission surface 3a, a back surface 3b, and end surfaces 3c-3e. The emission surface 3a is formed to curve, and emits light from the light source 1 which is incident from the light introduction portion 4. The back surface 3b is located on the opposite side of the emission surface 3a. In the present embodiment, the light emitting portion 3 is curved so as to recess from a back surface 3b side toward an emission surface 3a side. The emission surface 3a is disposed on the rear side of the vehicle C. Radial dimension of the emission surface 3a of the light emitting portion 3 is preferably 180 mm or more. As a result, even if the image A is distorted, the distortion of the image A is less likely to be recognized when the image A is viewed. Further, the emission surface 3a of the light emitting portion 3 may be configured by combining curved surfaces having different radial dimensions.
[0034] The light emitting portion 3 includes a plurality of light guide portions which are not illustrated. The plurality of light guide portions are provided to correspond to a plurality of fixed points included in the image A. Each light guide portion includes a plurality of prisms 6 disposed on the back surface 3b of the light emitting portion 3.
[0035] The plurality of prisms 6 are arranged in a way that light from the light source 1 is reflected toward the emission surface 3a of the light emitting portion 3 and converges at a fixed point corresponding to each light guide portion. As a result, a wavefront of light is formed in a way that light is emitted from a plurality of fixed points, and the image A is formed in a space by a collection of light converged at the plurality of fixed points.
[0036] As illustrated in
[0037] As illustrated in
[0038] Here, when the light emitting portion 3 is formed to curve, an incident angle from the light introduction portion 4 to the light emitting portion 3 can be made closer to 90 degrees as compared with a flat light guide plate. Specifically, as schematically illustrated in
[0039] Further, since the light introduction portion 4 is bent and connected to the light emitting portion 3, it is possible to suppress the occurrence of a dead space in the light emitting portion 3. Specifically, in order to reduce the spread of the incident light on the light guide portion of the light emitting portion 3, it is necessary to secure a certain distance from the light source 1 to the light guide portion of the light emitting portion 3. Therefore, when the light source 1 is disposed on an end surface of the light emitting portion 3, for example, a dead space in the light emitting portion 3 when viewed from the rear of the vehicle C becomes large. However, since the distance from the light source 1 to the light guide portion of the light emitting portion 3 can be secured by the light introduction portion 4 in the display device 10 according to the present embodiment, the dead space in the light emitting portion 3 can be reduced when viewed from the rear of the vehicle C as compared with the case where the light source 1 is disposed on the end surface of the light emitting portion 3.
[0040] Although one embodiment of the present invention has been described above, the present invention is not limited to the above embodiment, and various modifications can be made without departing from the gist of the invention.
[0041] For example, image forming means of the image A in the display device 10 may be realized by other known image forming means. Alternatively, it may be realized by a binocular system or a multiple-lens system. Further, the display device 10 may be applied not only to the vehicle C but also to other devices such as game machines.
[0042] Further, the display device 10 may be provided with a second light source for displaying a two-dimensional image so that the two-dimensional image and the three-dimensional image can be displayed in combination on the light emitting portion 3. In this case, since it becomes possible to display a two-dimensional image and a three-dimensional image by one light guide plate 2, the design of the image displayed by the display device 10 can be improved.
[0043] In the above embodiment, the light introduction portion 4 is formed integrally with the light emitting portion 3, but the light introduction portion 4 may be formed separately from the light emitting portion 3 as illustrated in
[0044] Further, in the case where the light introduction portion 4 is formed separately from the light emitting portion 3, a light incident portion 8 of the light emitting portion 3 on which light from the light source 1 is incident from the light introduction portion 4 may have a shape thicker than that of the light introduction portion 4 at a connecting part between the light emitting portion 3 and the light introduction portion 4 as illustrated in
[0045] Further, as illustrated in
[0046] Further, as illustrated in
REFERENCE NUMERALS
[0047] 1 Light source [0048] 2 Light guide plate [0049] 2a Test pattern portion [0050] 3 Light emitting portion [0051] 3a Emission surface [0052] 4 Light introduction portion [0053] 9 Radiation portion [0054] 10 Display device [0055] A Image