LIGHTING DEVICE FOR VEHICLES
20240360974 · 2024-10-31
Inventors
Cpc classification
B60Q2400/30
PERFORMING OPERATIONS; TRANSPORTING
F21W2103/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/0041
PERFORMING OPERATIONS; TRANSPORTING
F21W2103/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2103/35
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S43/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A lighting device for vehicles includes a light source unit containing numerous light sources, and includes a hologram unit containing numerous hologram segments for generating a predefined light distribution. The hologram segments form reflection hologram segments behind and/or next to the light source unit in the main beam direction (H) of the lighting device, such that light emitted from the light source strikes the reflection hologram segment at an acute angle (). Holographic diffraction information is stored in the reflection hologram segments for generating a signal light distribution. The light source unit contains just one printed circuit board or one printed circuit board substrate.
Claims
1. A lighting device for vehicles, the lighting device comprising: a light source unit containing a number of light sources; and a hologram unit containing a number of hologram segments for generating a predefined light distribution, wherein the hologram segments are reflection hologram segments behind and/or next to the light source unit in a main beam direction (H) of the lighting device, such that light emitted from the light sources strikes the reflection hologram segments at an acute angle (), and wherein holographic diffraction information for generating a signal light distribution is stored in the reflection hologram segments, wherein the light source unit contains just one printed circuit board or one printed circuit board substrate.
2. The lighting device according to claim 1, wherein the printed circuit board is between at least two reflection hologram segments, wherein the printed circuit board has two sides, on each of which there is at least one light source.
3. The lighting device according to claim 1, further including a V-shaped printed circuit board substrate, the sides of which meet at an acute angle, on the outsides of which the printed circuit boards with the light sources are attached.
4. The lighting device according to claim 1, wherein the reflection hologram segments each contain diffraction information with which partial light distributions are obtained from which the overall predefined light distribution is generated, wherein adjacent partial light distributions overlap and form a signal light distribution.
5. The lighting device according to claim 1, wherein a hologram reflector is composed of numerous reflection hologram segments running in different directions, wherein the adjacent reflection hologram segments meet at an obtuse angle (), and the hologram reflector has a single dedicated light source for generating a partial light distribution, or for generating the light distribution.
6. The lighting device according to claim 1, wherein numerous hologram reflectors and their dedicated light sources are spaced apart from one another, wherein the hologram reflectors and/or reflection hologram segments each contain diffraction information for generating a different partial light distribution, from which the predefined light distribution is obtained by superimposing them.
7. The lighting device according to claim 1, wherein the reflection hologram segments or the hologram reflectors contain numerous subsidiary hologram elements, each of which contain diffraction information, such that light is reflected from the respective subsidiary hologram elements in a desired and predefined angular range, and the light distribution for a signal function is obtained.
8. The lighting device according to claim 7, wherein the numerous subsidiary hologram elements are formed such that a symbol and/or alphanumerical signal is reflected onto a projection surface in the space inside or outside the lighting device, or is displayed on the reflection hologram segments or the hologram reflectors.
9. The lighting device according to claim 7, wherein the sizes of subsidiary hologram elements are in the submillimeter range or micrometer range.
10. The lighting device according to claim 7, wherein the subsidiary hologram elements are directly adjacent to one another, or spaced apart from one another, and are arranged in a matrix on the surfaces of the hologram reflectors or the reflection hologram segments.
11. The lighting device according to claim 7, wherein the numerous subsidiary hologram elements are directly adjacent to one another and one or more adjacent subsidiary hologram elements that contain no holographic information are located at an edge of the hologram reflectors or reflection segments, such that no reflection takes place there and the light is faded out or dimmed at these edges of the reflection hologram segments or hologram reflectors.
12. The lighting device according to claim 1, wherein there are numerous light sources on a single, flat, printed circuit board, each light source has a dedicated reflection hologram segment, and each light source has a focusing lens with which the light from the respective light sources is focused onto a surface of their reflection hologram segments, wherein a difference in the angles of the main axes (HL) of the light sources and main axes (HR) of the reflection hologram segments is compensated for.
13. The lighting device according to claim 1, wherein the reflection hologram segments are glued, laminated, or bonded onto a substrate, or molded onto the back thereof.
14. The lighting device according to claim 1, wherein the reflection hologram segments are in a housing, wherein the housing contains a substrate and a transparent cover plate, wherein the transparent cover plate is formed in an injection molding process on the substrate and the reflection hologram segment.
15. The lighting device according to claim 1, wherein the substrate is made of a transparent, black, or white plastic, or a plastic of any color, and a front surface of the cover plate is coatable with an antireflective structure or layer.
16. The lighting device according to claim 7, wherein the numerous subsidiary hologram elements are of the same size.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Reference is now made more particularly to the drawings, which illustrate the best presently known mode of carrying out the invention and wherein similar reference characters indicate the same parts throughout the views.
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DETAILED DESCRIPTION OF THE DRAWINGS
[0042] A lighting device for vehicles is shown in
[0043] According to an alternative embodiment of the invention shown in
[0044] Identical components and functions have the same reference symbols in the exemplary embodiments.
[0045] The printed circuit board 4 in the lighting device shown in
[0046] Another embodiment of the invention shown in
[0047] A light distribution for a signal function is shown in
[0048] According to the embodiment of the lighting device shown in
[0049] If, for example, brake lights are to be brighter than tail lights, there can be three identical hologram reflectors 12, as is the case in the embodiment shown in
[0050] According to another embodiment of the invention shown in
[0051] Numerous subsidiary hologram elements 13 have a dedicated light source 3, which does not need a primary optical element. Misalignment to the main axis of the light source 3 can be compensated for by the lighting and/or diffraction information contained in the respective subsidiary hologram elements 13.
[0052] If the beams of a light source 3 dedicated to an adjacent reflection hologram segment 5 strike another reflection hologram segment 5 composed of numerous subsidiary hologram elements 13, the individual subsidiary hologram elements 13 in the reflection hologram segment 5 contain compensation values for this.
[0053] The hologram reflectors 12, or the reflection hologram segments 5 can be placed on a flat or curved surface.
[0054] The size of the subsidiary hologram elements 13 is in the submillimeter range and/or the micrometer range. In this exemplary embodiment, the subsidiary hologram elements 13 are square, with a surface area of 0.7 mm0.7 mm.
[0055] The hologram reflectors 12, or reflection hologram segments 5, are therefore pixelated, and in the simplest case each subsidiary hologram element 13 contains diffraction information causing it to either reflect or not reflect the light 6. The subsidiary hologram elements 13 therefore contain dual light information, such that they are either bright or dark. As can be seen from
[0056] Based on the lighting information in the subsidiary hologram elements 13, a symbol and/or an alphanumerical signal can be reflected onto a projection plane in the space inside or outside the lighting device, and displayed there, or displayed on the reflection hologram segment 5 itself, or the hologram reflector 12.
[0057] According to another embodiment of the invention shown in
[0058] According to another embodiment of the invention, not shown in the drawings, the subsidiary hologram elements 13 contain diffraction information with which they can generate more than two different reflection levels. This makes it possible to generate light symbols with lower contrasts.
[0059] According to another embodiment of the invention, shown in
[0060] The numerous subsidiary hologram elements (13, 13) are directly adjacent to one another in a matrix in this case, i.e. without any empty space therebetween. One or more adjacent subsidiary hologram elements 13 that contain no holographic information are located near the edge 15 of the hologram reflector 12 or the reflection hologram segment 5, where no light is reflected. This results in a dimming or fading out of the light (6) at the edge of the reflection hologram segment 5 or hologram reflector 12, which affects the light distribution accordingly, if the subsidiary hologram elements 13 reflect the light toward different areas in the light distribution, which is composed of these different areas. The subsidiary hologram elements 13 and 13 preferably reflect or do not reflect light toward individual areas in the light distribution, which are also arranged in a matrix on a measurement screen.
[0061] In another embodiment of the lighting device shown in
[0062] As can be seen from the embodiment shown in
[0063] It can be seen in
[0064] The reflection hologram segment 5 is preferably a hologram film. If the substrate 18 is black instead of transparent, the lighting device has a black-panel appearance. This means that the lighting device appears to be dark when it is not on.
[0065] According to another alternative mounting variation for the reflection hologram segment 5, shown in
[0066] The substrate 18 is preferably composed of a transparent, black, or white plastic, or a plastic of any color. The front of the cover plate 20 preferably has an antireflective structure or coating. The front of the cover plate 20 is on the side facing away from the reflection hologram segment 5.
[0067] The light sources 3, 3 are preferably LEDs.
LIST OF REFERENCE SYMBOLS
[0068] 1 Light source unit [0069] 2 hologram unit [0070] 3, 3 light sources [0071] 4 printed circuit board [0072] 5, 5 reflection hologram segments [0073] 6 light [0074] 7, 7 side [0075] 8 printed circuit board substrate [0076] 10 screen [0077] 11 boundary lines [0078] 12 hologram reflector [0079] 13, 13, 13 subsidiary hologram elements [0080] 14 background grid [0081] 15 edge [0082] 16 focusing lens [0083] 17 optical axis [0084] 18 substrate [0085] 19 housing [0086] 20 cover plate [0087] H main beam direction [0088] angle [0089] T1-T9 partial light distributions [0090] H.sub.L, H.sub.R Main axes