LIGHTING DEVICE FOR VEHICLES
20180290586 ยท 2018-10-11
Assignee
Inventors
Cpc classification
F21S43/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/2607
PERFORMING OPERATIONS; TRANSPORTING
F21S43/13
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B60Q1/26
PERFORMING OPERATIONS; TRANSPORTING
F21S43/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G03H1/22
PHYSICS
Abstract
A lighting device for vehicles having a housing in which is arranged a hologram light fixture that has a light source unit and has an optical unit with a hologram element for generating a predetermined lighting function. An auxiliary element is associated with the light source unit, by means of which light that is emitted by the light source unit can be deflected in the direction of the hologram element. In this design, the light source unit and/or the auxiliary element is arranged in the region of a side of the hologram element or in the region of a lateral extension of an edge of the hologram element extending in the direction of a central axis of the hologram element.
Claims
1. A lighting device for a vehicle, the lighting device comprising: a housing; a hologram light fixture arranged in the housing, the hologram light fixture having a light source unit and an optical unit with a hologram element for generating a predetermined lighting function; and an auxiliary element associated with the light source unit, via the auxiliary element light that is emitted by the light source unit is adapted to be deflected and oriented in a direction of the hologram element to generate a virtual light source and to reconstruct a hologram, wherein the light source unit and/or the auxiliary element is arranged in a region of a side of the hologram element or in a region of a lateral extension of an edge of the hologram element extending in a direction of a central axis of the hologram element.
2. The lighting device according to claim 1, wherein a depth extent extending in a primary direction of emission between the hologram element and the light source unit and the auxiliary element is smaller than a height extent extending transversely to the primary direction of emission (H) that runs between the light source unit and the auxiliary element and/or between the light source unit and/or the auxiliary element and an edge of the hologram element arranged on a side facing away from the light source unit and/or the auxiliary element.
3. The lighting device according to claim 1, wherein the depth extent is in a range from 30 mm to 100 mm, and the height extent is in a range from 50 mm to 120 mm.
4. The lighting device according to claim 1, wherein the auxiliary element is arranged in the region of a first edge of the hologram element, and wherein the light source unit is arranged in the region of an opposite, second edge of the hologram element.
5. The lighting device according to claim 1, wherein the hologram element has at least two different optical structures so that a first optical structure serves in interaction with a first light source unit and with a first auxiliary element for the generation of a first lighting function, and a second optical structure serves in interaction with a second light source unit and with a second auxiliary element for the generation of a second lighting function.
6. The lighting device according to claim 5, wherein the first light source unit and the second light source unit and the first auxiliary element and the second auxiliary element on the other hand, are in each case arranged in the region of opposite sides of the same hologram element.
7. The lighting device according to claim 1, wherein the light source unit and the auxiliary element are arranged in the region of the same side of the hologram element, wherein the light source unit is arranged to be oriented opposite the primary direction of emission.
8. The lighting device according to claim 1, wherein the hologram element is implemented as a transmission hologram element, wherein at least the light source unit or the auxiliary element is arranged behind the transmission hologram element in the primary direction of emission or wherein the hologram element is implemented as a reflection hologram element, and wherein at least the light source unit or the auxiliary element is arranged in front of the reflection hologram element in the primary direction of emission.
9. The lighting device according to claim 1, wherein at least two auxiliary elements are provided between the light source unit and the hologram element.
10. The lighting device according to claim 1, wherein the light source unit has at least two light sources, LED light sources, or laser diodes, wherein arranged immediately in front of the light source unit is a lens optical unit that has a number of lens segments matching the number of light sources, and wherein the lens segments are each associated with one light source of the light source unit.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present invention will become more fully understood from the detailed description given hereinbelow and the accompanying drawings which are given by way of illustration only, and thus, are not limitive of the present invention, and wherein:
[0016]
[0017]
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[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION
[0025] A lighting device according to the invention can be used for the generation of signal functions, for example a turn signal, taillight, brake light, position light, or daytime running light function. It may be used in the rear end or the front end of the vehicle, in particular of the motor vehicle, or as any other light.
[0026] According to an embodiment of the lighting device from
[0027] The optical unit of the hologram light fixture includes a hologram element 2 that preferably is flat in design and that is arranged to be substantially perpendicular to the primary direction of emission H, and includes a reflective auxiliary element 3. The auxiliary element 3 serves to deflect and to orient a light beam L1 emitted by the light source unit 1 in the direction of the hologram element 2 for generation of a virtual light source V, wherein a hologram is reconstructed with the light beam L1 that is thus deflected and oriented. The hologram in this case is stored in the hologram element 2 as an optical structure containing light information. As is evident from
[0028] The auxiliary element 3 is arranged to be offset from the light source unit 1 in the primary direction of emission H so that the light rays L1 that arrive from the light source unit 1 and are reflected strike the entire rear surface of the hologram element 2. The auxiliary element 3 is located in lateral extension 17 of a first edge 6 of the hologram element 2 arranged on the second side 5 of the same, wherein it is arranged to be offset from the light source unit 1 opposite the primary direction of emission H. The light source unit 1 is located in the region of an opposite, second edge 7 of the hologram element 2. As a result of the arrangement of the light source unit 1 and the auxiliary element 3 opposite one another, a virtual light source V for the hologram element 2 is produced that appears to be located behind the auxiliary element 3. Both the light source unit 1 and the auxiliary element 3 extend beyond the edges 6, 7 of the hologram element 2 when viewed from a center plane or axis M of the hologram element 2 extending in the primary direction of emission H. Thus, none of these optical components behind the hologram element 2 is visible or discernable from outside. It is assumed that the hologram element 2 is attached in an opaque surround. Alternatively, the hologram element 2 can also be integrated into the cover plate so that the housing of the lighting device adjoins the edge 6, 7 of the hologram element 2. A height extent A.sub.H, which runs transversely to the primary direction of emission H or in the direction of the hologram element 2, is thus determined by the outside edges of the light source unit 1 and of the auxiliary element 3 in the exemplary embodiment shown in
[0029] The light source unit 1 can be implemented as an individual light source, for example as an LED light source or as a laser diode.
[0030] According to an embodiment of the invention from
[0031] According to an embodiment, it is also possible for a lens in the immediate vicinity of the light source unit 1 in the embodiment from
[0032] The auxiliary element 3 has a reflective surface so that light striking it can be reflected in the direction of the hologram element 2.
[0033] According to an embodiment of the invention from
[0034] It should be noted that the hologram elements 2, 12 are each implemented as a holographic optical element having diffractive optical elements. These are small optical structures that bend the light in a limited spectral and/or angular range. The diffractive optical elements can be implemented as grating, lens, or mirror beam splitters and/or as a combination thereof.
[0035] The hologram element 2, 12 is implemented as a volume hologram element, for example in the form of an emulsion or a film. The hologram element 2, 12 is joined by adhesive bonding or by welding and/or by ultrasonic welding to a carrier. Alternatively, the hologram element 2, 12 can also be preformed by deep drawing so that it is overcoated as an insert in an injection mold with a transparent material that forms the flat and transparent carrier. The carrier is designed to be transparent, for example is designed as a lamp lens. The carrier is, for example, attached to a holder 14 of the housing, which can serve at the same time as a mask for the auxiliary elements 3, 3. The holder 14 has two openings 15 so that only light L1, L2 is allowed through that is intended to strike the auxiliary element 3, 3 located opposite. Stray radiation in the direction of the auxiliary element 3, 3 located on the same side of the hologram element 12 or on the hologram element 12 itself is consequently avoided.
[0036] According to an embodiment of the invention from
[0037] According to an embodiment of the invention from
[0038] According to an embodiment of the invention from
[0039] According to an embodiment of the invention from
[0040] According to an embodiment, the hologram element 12 can also have more than two different optical structures so that more than two lighting functions can be generated.
[0041] The hologram light fixtures described in the exemplary embodiments each have hologram elements 2, 12 that are implemented as transmission hologram elements. According to an embodiment of the invention, the hologram elements can also be implemented as reflection hologram elements, wherein the light source unit 1 and the auxiliary element 3, 23 are not arranged behind the hologram element, as in the case of the transmission hologram element, but instead are arranged in front of the hologram element in the primary direction of emission.
[0042] The invention being thus described, it will be obvious that the same may be varied in many ways. Such variations are not to be regarded as a departure from the spirit and scope of the invention, and all such modifications as would be obvious to one skilled in the art are to be included within the scope of the following claims.