Laser unit having a collimator adjusting device
10274154 ยท 2019-04-30
Assignee
Inventors
Cpc classification
F21Y2115/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G02B27/0916
PHYSICS
F21Y2101/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/69
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/192
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/65
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/635
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/176
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21K9/65
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/63
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G02B7/00
PHYSICS
F21K9/69
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G02B27/09
PHYSICS
Abstract
A laser unit (11) for a vehicle headlight has a laser diode (12) that is associated with adjustable collimating optics (13) for the laser light emitted by the laser diode. The collimating optics (13), which comprise at least one optical component, e.g., a lens (14), are arranged at a distance, in a longitudinal direction (x), from the laser diode (12), this distance being adjustable by an adjusting device (20). The adjusting device comprises a carrier (24), which is adjustable in the longitudinal direction relative to the laser diode (12) with the help of longitudinal actuation means (21), and in which the optical component (14) is mounted so that it can pivot transverse to the longitudinal direction (x) in a holder (23).
Claims
1. A laser unit (11) for a vehicle headlight comprising: a laser light source (12), a support housing (27) in which the laser light source is supported, and adjustable collimating optics (13) for laser light emitted by the laser light source, the adjustable collimating optics comprising at least one optical component (14) that is arranged at a distance, in a longitudinal direction (x), from the laser light source, wherein an adjusting device (20) is associated with the adjustable collimating optics (13), said adjusting device having a carrier (24) adjustable relative to the laser light source (12) in the longitudinal direction (x), the at least one optical component (14) within the carrier (24) being pivotable about at least one spatial axis (y, z) running transverse to the longitudinal direction, wherein the carrier (24) is adjustable in the longitudinal direction in the support housing (27) and the laser light source (12) is fixed in position in the support housing (27).
2. The laser unit of claim 1, wherein a longitudinal actuation device (21) is provided in the support housing (27) and is adjustable in the longitudinal direction, the carrier (24) being supported against the longitudinal actuation device (21).
3. The laser unit of claim 2, wherein the longitudinal actuation device (21) comprises a number of adjusting screws running parallel to the longitudinal direction (x).
4. The laser unit of claim 2, wherein the longitudinal actuation device (21) is configured to be fixed in its longitudinal position.
5. The laser unit of claim 2, wherein at least one elastically deformable spring element (22) is provided in the support housing (27), and presses the carrier (24) against the at least one longitudinal actuation device (21).
6. The laser unit of claim 1, wherein the at least one optical component (14) is pivotable about two spatial axes (y, z), said spatial axes being perpendicular to one another and being perpendicular to the longitudinal direction (x).
7. The laser unit of claim 1, wherein the carrier (24) comprises a holder (23) in which the optical element (14) is held, and at least two levers (33, 43) are provided that act upon the holder, an outer end of each lever (33, 43) having actuation means (41, 31) mounted in the carrier (24) which is configured to adjust the swing position of the lever.
8. The laser unit of claim 7, wherein one elastically deformable spring element (32, 42) is arranged between each lever of the at least two levers (33, 43) and an opposite surface (34) of the carrier (24) and wherein each lever of the at least two levers (33, 43) is pressed against the opposite surface (34), through the elastically deformable spring element (32, 42), by actuation means (31, 41).
9. The laser unit of claim 7, wherein the at least two levers (33, 43) are connected with the associated actuation means (31, 41) through an articulated connection formed between an end surface of the actuation means and a contact surface of the at least two levers, said contact surface touching said end surface of the actuation means, the end surface and/or contact surface being a touching surface curved spherically.
10. The laser unit of claim 7, wherein the actuation means (31, 41) is configured to be non-rotatably fixed.
11. The laser unit of claim 7, wherein the holder (23) and the at least two levers (33, 43) are integral.
12. A laser module (10) comprising two or more laser units of claim 1.
13. A vehicle headlight (9) comprising one or more laser units of claim 1.
14. The laser unit of claim 1, wherein the carrier (24) comprises a holder (23) in which the optical element (14) is held, and wherein at least one lever (33, 43) is provided that acts upon the holder, an outer end of the at least one lever (33, 43) comprising actuation means (41, 31) mounted in the carrier (24) which is configured to adjust the swing position of the at least one lever.
15. The laser unit of claim 8, wherein the actuation means (31, 41) comprises an eccentrically running adjusting screw.
16. The laser unit of claim 1, wherein the laser light source comprises a laser diode.
17. A laser unit (11) for a vehicle headlight comprising: a laser light source (12), a support housing (27) in which the laser light source is supported, and adjustable collimating optics (13) for laser light emitted by the laser light source, the adjustable collimating optics comprising at least one optical component (14) that is arranged at a distance, in a longitudinal direction (x), from the laser light source, wherein an adjusting device (20) is associated with the adjustable collimating optics (13), said adjusting device having a carrier (24) adjustable relative to the laser light source (12) in the longitudinal direction (x), the at least one optical component (14) within the carrier (24) being pivotable about at least one spatial axis (y, z) running transverse to the longitudinal direction, wherein the carrier (24) comprises a holder (23) in which the optical element (14) is held, and at least two levers (33, 43) are provided that act upon the holder, an outer end of each lever (33, 43) having actuation means (41, 31) mounted in the carrier (24) which are configured to adjust the swing position of the lever, and wherein one elastically deformable spring element (32, 42) is arranged between each lever of the at least two levers (33, 43) and an opposite surface (34) of the carrier (24) and wherein each lever of the at least two levers (33, 43) is pressed against the opposite surface (34), through the elastically deformable spring element (32, 42), by actuation means (31, 41).
Description
(1) The invention along with other further developments and advantages is explained in detail below using a sample embodiment, which is shown in the drawings and relates to a laser unit with a laser diode in a laser module for a motor vehicle headlight. The drawings schematically show the following:
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(9) The laser light source 12 has collimating optics 13 associated with it, which are, in the sample embodiment shown, realized by a single converging lens 14 (collimator lens) and are arranged directly after the light source 12 in the beam path. In the context of the invention, the beam path of the laser light source 12 to the collimating optics 13 runs in the longitudinal direction x (vertical in
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(13) The position of the carrier 24 in the x direction is adjusted by longitudinal actuation means in the support housing 27, these longitudinal actuation means being implemented, in the embodiment shown, as two adjusting screws 21. The adjusting screws 21 are arranged parallel to the longitudinal direction x and to one another with respect to the position of the laser diode 12. The heads of the adjusting screws 21 are accessible on the outer surface (
(14)
(15) With reference to
(16) In the back part 26, two actuation means 31, 41 are provided, each of which can horizontally swing the lens holder 23and thus the collimator lens 14 held in itabout a spatial axis associated with each of them that runs transverse to the longitudinal direction. In the embodiment shown, each of the two actuation means is in the form of an adjusting screw 31, 41, these adjusting screws 31, 41 being arranged eccentric to the position of the collimator lens 14, parallel to the longitudinal direction. The heads of the adjusting screws 31, 41 pass through the support housing 27, and thus are accessible on the outer surface (
(17) The adjusting screw 31 serves to adjust the swing position of the collimator lens 14 about a first transverse axis, the y-axis; the adjusting screw 41 serves to adjust the swing position of the collimator lens 14 about a second transverse axis, the z-axis.
(18) The adjusting screw 31 acts on a lever 33, which extends transversely from the axis of light propagation from the body 30 of the lens holder 23, and presses the latter, through a rubber spring 32, against an inner opposite surface 34 (
(19) The adjusting screw 41 acts on a lever 43, which extends from the body 30 of the lens holder 23 in another direction than the lever 33 does; the levers 33 and 43 are preferably arranged offset by 90 to one another about the longitudinal axis. The lever 43 is pressed, through a rubber spring 42, against the inner opposite surface 34. In other respects, what was said about the lever 33 applies analogously for the lever 43.
(20) Each axis of rotation is defined by the extension of the center of the ball joint to the point of support of the actuation means 31, 41 at the end of the respective associated lever 33, 43 of the lens holder 23. These axes of rotation correspond to the axes y and z in
(21)
(22) The collimating optics 13 are adjusted as follows, for example, with the help of the inventive adjusting device 20. The laser light source 12 is activated and the light spot (laser spot) produced on the target surface (as a rule, this is the above-mentioned mirror that can be horizontally swung in a programmed manner or the conversion element serving as a phosphor) is observed or measured. The laser spot is generally located outside of the target location at the center of the target surface required for the operation, and it is additionally out of focus. First, the adjusting screws 31 and 41 are adjusted to change the position of the laser spot until it lies on the target location, which typically has a size of a few millimeters (e.g., 2-3 mm). Then, the collimating optics are displaced in the longitudinal direction x with the help of the adjusting screws 21 until the laser spot is focused on the associated target surface, as required. For adjustment, it is possible to use, for example, a gauge, which comprises a sensor that is arranged so that it corresponds to the target location and provides such a feedback value for the previously described adjustment. During assembly, the optical element provided for the target location is then positioned.
(23) If desired, after the collimating optics or lens 13, 14 are adjusted, the adjustment means 21, 31, 41 can be permanently fixed in the adjusted position. This can be done, for example, by clamping the screw head or by applying a hardening adhesive around the screw head.
(24) The laser module 10 with the so adjusted collimating optics 13 can then be inserted at the position provided for it in a headlight 9, a partly cut open view of which is shown in
(25) It should be emphasized that the sample embodiment is for the purpose of illustration, and should not be interpreted as restrictive. For example, instead of the adjusting screws it is possible to provide other suitable devices for mechanical or electromechanical adjustment by hand and/or by actuator motors. In one variant in which it is sufficient for the lens to pivot about only one axis, it is also possible to use a pivot instead of a design like a ball joint. It is also possible for the collimating optics, which in the sample embodiment shown above are realized by a (single) lens, to be implemented in other embodiments of the invention with the help of multiple lenses, one or more mirrors, or a combination of such optical components. Furthermore, the spring elements can be implemented in the form of rubber springs or other elastic components such as, e.g., spiral or leaf springs. In general, numerous modifications and further developments are possible in the framework of the invention, which the person skilled in the art can easily discover.