Light Module for a Motor Vehicle Headlight
20220163182 · 2022-05-26
Inventors
Cpc classification
F21S41/645
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/0683
PERFORMING OPERATIONS; TRANSPORTING
F21S41/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/675
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/39
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Light module for a motor vehicle headlight, comprising a lighting device (2) generating light beams with a predefined beam path (3), a light deflection device (4) which is downstream of the lighting device (2) for deflecting the predefined beam path (3), and a spatial light modulator (5) downstream of the light deflection device (4), as seen in the direction of the light beams, wherein the light deflection device (4) directs essentially all light beams incident on the light deflection device (4) to the spatial light modulator (5) to generate an illumination pattern (6) to be emitted on the spatial light modulator (5), as well as an imaging system (7) which is set up to reproduce the illumination pattern (6) in the form of a light distribution in front of the light module, wherein the light deflection device (4) comprises a light-deflecting element (40) and an adjusting system (41), wherein the adjusting system (41) is set up to pivot the light-deflecting element (40) about at least two intersecting pivot axes (H, V), thus altering the beam path (3′) between the light deflection device (4) and the spatial light modulator (5).
Claims
1. A light module for a motor vehicle headlight, the light module comprising: a lighting device (2) set up for generating light beams with a predefined beam path (3); a light deflection device (4) which is downstream of the lighting device (2) for deflecting the predefined beam path (3); a spatial light modulator (5) downstream of the light deflection device (4), as seen in the direction of the light beams, wherein the light deflection device (4) is configured to direct essentially all light beams incident on the light deflection device (4) to the spatial light modulator (5) to generate an illumination pattern (6) to be emitted on the spatial light modulator (5); and an imaging system (7) which is configured to reproduce the illumination pattern (6) in the form of a light distribution in front of the light module, wherein the light deflection device (4) comprises a light-deflecting element (40) and an adjusting system (41), wherein the adjusting system (41) is configured to pivot the light-deflecting element (40) about at least two intersecting pivot axes H, V, thus altering the beam path (3′) between the light deflection device (4) and the spatial light modulator (5).
2. The light module according to claim 1, wherein the adjusting system (41) is additionally set up to displace the light-deflecting element (40) along a third axis, namely a so-called displacement axis (Z), wherein the displacement axis (Z) extends perpendicular to the at least two intersecting pivot axes (H, V), wherein the light beams directed to the spatial light modulator (5) by the light deflection device (4) in particular converge or diverge.
3. The light module according to claim 1, wherein the light deflection device (4) further comprises a support frame (42) in which the light-deflecting element (40) is framed, wherein the adjusting system (41) is in engagement with the support frame (42) and is configured to pivot the support frame (42), and the light-deflecting element (40) enclosed therein, about the at least two intersecting pivot axes (H, V) and thereby change the beam path (3′) between the light deflection device (4) and the spatial light modulator (5).
4. The light module according to claim 1, wherein the adjusting system (41) has three adjusting screws (410, 411, 412).
5. The light module according to claim 4, wherein the adjusting screws are configured to be driven mechanically and/or by an electric motor.
6. The light module according to claim 1, wherein the at least two intersecting pivot axes (H, V) are positioned orthogonal to each other.
7. The light module according to claim 6, wherein the at least two intersecting pivot axes are a vertical axis (V) and a horizontal axis (H).
8. The light module according to claim 1, wherein the light-deflecting element (40) is designed as a curved mirror.
9. The light module according to claim 8, wherein the light-reflecting surface (401) of the curved mirror, which has an essentially parabolic and/or hyperbolic shape, has two axes of symmetry (401x, 401y), wherein the light-reflecting surface is symmetrical with respect to one or both of the two axes of symmetry (401x, 401y).
10. The light module according to claim 9, wherein each axis of symmetry (401x, 401y) coincides with the corresponding pivot axis (H, V).
11. The light module according to claim 1, wherein the light-deflecting element (40) is configured to scatter backwards the light beams incident on the light-deflecting element (40) relative to the direction of incidence of the light beams incident on the light-deflecting element (40).
12. The light module according to claim 1, wherein all components of the light module (1), with the exception of the light deflection device (4), in their mounted state are arranged in the light module (1) such that they are not movable.
13. The light module according to claim 1, wherein the spatial light modulator (5) is a digitally controllable micro-mirror device.
14. The light module according to claim 1, wherein the light deflection device 4 is designed to direct essentially all light beams incident on the light deflection device 4 to the spatial light modulator (5) in the form of a converging beam.
15. A motor vehicle headlight having at least one light module according to claim 1.
16. The light module according to claim 4, wherein the adjusting screws comprise ball screws.
17. The light module according to claim 8, wherein the curved mirror is a concave mirror.
18. The light module according to claim 9, wherein a first axis of symmetry (401x) extends horizontally and a second axis of symmetry (401y) extends vertically.
19. The light module according to claim 13, wherein the digitally controllable micro-mirror device comprises a DMD chip.
Description
[0035] The invention and other advantages are explained in more detail below on the basis of exemplary embodiments, which are illustrated in the drawings. In these,
[0036]
[0037]
[0038]
[0039] To simplify legibility, the drawings are provided with reference axes where expedient. These reference axes refer to an appropriate installation position of the subject matter of the invention in a motor vehicle and represent a motor vehicle-related coordinate system.
[0040] In addition, it should be clear that direction-related terms such as “horizontal”, “vertical”, “top”, “bottom”, etc. are to be understood in connection with the present invention to have a relative meaning and refer either to the aforementioned appropriate installation position of the subject matter of the invention in a motor vehicle or to a customary orientation of a radiated light distribution in the light image or in the space to be travelled through.
[0041] First, reference is made to
[0042] The light beams generated by the lighting device 2 propagate in the direction of a light deflection device 4, which is downstream of the lighting device 2 for deflecting the predefined beam path 3.
[0043] The light deflection device 4 deflects the light beams to a spatial light modulator 5. The spatial light modulator 5 is therefore downstream of the light deflection device 4. Herein, the light deflection device 4 essentially deflects all light beams incident on it to the spatial light modulator 5, whereby an illumination pattern 6 is generated on the spatial light modulator 5. As already mentioned, the displacement of individual micro-mirrors of the spatial light modulator 5 can be changed. As a result, the illumination pattern 6 can be modified. In this way, ADB functions of the light module can be realized, for example.
[0044] Furthermore, the light module 1 comprises an imaging system 7, which is upstream of the spatial light modulator 5 and is set up to display the illumination pattern 6 in the form of a light distribution (not shown here) in front of the light module. As there are no other optical elements between the spatial light modulator 5 and the imaging system 7, and as the imaging system 7 contains only lenses and, optionally, apertures as optical elements, the light module 1 is a light module of the projection type.
[0045]
[0046] The light deflection device 4 has a light-deflecting element 40 which may be facing both the lighting device 2 and the spatial light modulator 5. In addition, the light deflection device comprises an adjusting system 41, which is set up to pivot the light-deflecting element 40 about at least two pivot axes H, V intersecting in a point P, thus altering the beam path 3′ between the light deflection device 4 and the spatial light modulator 5. The beam path 3′ between the light deflection device 4 and the spatial light modulator 5 is the predefined beam path 3 deflected and, preferably, modified by the light deflection device 4. The at least two intersecting pivot axes H, V can, for example, be positioned orthogonally to each other; preferably, one of them extends vertically and the other horizontally. This means that the light-deflecting element 40 can be adjusted, e.g. pivoted, rotated or tilted, by means of the adjusting system 41 when adjusting or setting the light module 1. This can, for example, change the position of the illumination pattern 6 on the spatial light modulator 5. The light deflection device 4 can preferably not only deflect the incident light beams but also cause them to run toward each other (converge) or away from each other (diverge).
[0047] In addition, the adjusting system 41 may be set up for displacing the light-deflecting element 40 along a third displacement axis Z which extends perpendicular to the at least two intersecting pivot axes H, V. The displacement axis Z can extend parallel to the main emitting direction X of the light module 1, as shown in
[0048] The illumination pattern 6 (on the spatial light modulator 5) can be displaced and/or tilted by pivoting, twisting or tilting about one or both pivot axes H, V.
[0049] The illumination pattern 6 can be enlarged or reduced, or its scale can be changed, by displacing it along the displacement axis Z, which can also change, for example, the image scale of the light module.
[0050] This light deflection device 4 can furthermore comprise a support frame 42, such as a fitting. The light-deflecting element 40 is held (fixed) or enclosed in the support frame 42. The adjusting system 41 can be in engagement with the support frame 42 and be set up to pivot the support frame 42, together with the light-deflecting element 40 enclosed therein, about the at least two intersecting pivot axes H, V, and can optionally be set up to displace it along the displacement axis Z.
[0051] As already mentioned, the adjusting system 41 is preferably designed as an adjusting triangle system, which adjusts the light-deflecting element 40, which, for example, is enclosed in a support frame 42, via three adjusting elements, such as the adjusting screws 410, 411, 412. The adjusting screws 410, 411, 412, which are shown in
[0052] The actuators, such as the adjusting screws 410, 411, 412, can be driven mechanically or by means of an electric motor not shown here.
[0053] If one or two actuators are now adjusted (e.g. the ball screws are screwed in and out), the pivoting, rotating or tilting about one or both pivot axes H, V described above can be realized, whereby the illumination pattern 6 (on the spatial light modulator 5) can be displaced and/or tilted.
[0054] If all three actuators are adjusted (e.g. the ball screws are screwed in and out), the displacing along the displacement axis Z described above can be realized, whereby the illumination pattern 6 (on the spatial light modulator 5) can be enlarged or reduced.
[0055]
[0056] The light-deflecting element 40 can also be designed as a mirror with a freeform reflector surface, wherein the shape of the mirror is adapted to the shape of the (desired) illumination pattern 6 on the spatial light modulator (on the DMD chip) 5.
[0057] It should be noted at this point that the distances between the lighting device 2 and the light deflection device 4 and between the light deflection device 4 and the spatial light modulator 5 may in principle be different, such that the overall size of the light module 1 can be adapted to different installation space specifications. As soon as the installation space is specified, the lighting device 2, the light deflection device 4, the spatial light modulator 5 and the imaging system 7 are placed in a fixed position relative to each other in order to meet the specification.
[0058]
[0059] The spatial light modulator 5 is preferably designed as a digital micro-mirror device—DMD.
[0060] Generally, the light deflection device 2 can essentially direct all light beams incident on the light deflection device 2 to the spatial light modulator 5 in the form of a converging or non-diverging beam.
[0061] It is evident that modifications can be made to the previously described light module, and/or parts added to the same, without deviating from the field and scope of the present invention.
[0062] It is also evident that, although the invention has been described in reference to some concrete examples, a person skilled in the art should certainly be able to achieve many other corresponding forms of a light module which have the properties specified in the claims and which thus all are within the scope of protection determined by said claims.
[0063] The reference numbers in the claims merely serve for a better understanding of the present inventions and in no way constitute a limitation of the present inventions.