1. Field of the Invention
The invention relates to a lighting and/or signaling device comprising, or intended to comprise, a light source adapter, particularly a light-emitting diode, intended to bear on the support of a first optical element of this module. It also relates to the corresponding adapter.
2. Description of the Related Art
Motor vehicle lighting and/or signaling devices, such as headlights and rear lights, consist of a housing sealed by a sealing lens and containing one or more optical modules. The light beams emitted by these devices are formed by the optical module or modules, which may operate in combination or separately. These optical modules comprise a light source associated with one or more optical deflection elements, and with shields if necessary, to modulate the shape of the beam and the distribution of the luminous intensity in this beam.
The document FR2950129 comprises an optical module using an LED, wherein, in order to allow the control of the power supply to this LED the latter is placed on a printed circuit. The printed circuit on which the LED is fixed is fixed to an adapter which positions it in the optical module. This adapter enables the LED of this module to be changed by removing and replacing the adapter. The positioning of the adapter must be precise so that the association with the optical elements generates a light beam having the desired shape. In particular, the photoemissive element must be positioned precisely relative to the focus of the first optical element, which collects the rays emitted from the surface of the photoemissive element.
For this purpose, this support is indexed in the three directions of space, X, Y, Z, with respect to the support of the optical element.
One problem tackled by the present invention is that of improving this positioning.
The invention therefore proposes an optical module for a motor vehicle lighting and/or signaling device comprising:
wherein the support comprises adapter fixing means capable of fixing an adapter to which a light source is fixed, or of receiving a fixing element of this adapter, and wherein the first optical deflection element comprises adapter indexing means arranged so as to be capable of positioning this adapter relative to the first optical deflection element according to two separate intersecting axes.
Thus this module will be capable of receiving an adapter which is to be indexed directly on the optical element, also called the optical deflection element in the present application, at least on two separate intersecting axes. By comparison with the prior art, the present applicant might have attempted to improve the precision of machining or manufacture of the elements, and to position them even more precisely during assembly. In his inventive activity, the applicant has taken a different approach and found a solution enabling him to decrease his tolerance stack-up, which, notably in view of the examples disclosed in the prior art, notably in view of FR2950129, is not evident. The applicant has dispensed with the indexing on the element support taught by the prior art, and has discovered means of directly indexing the light source on the optical element on at least two axes. In this way a reduced tolerance stack-up on these two axes is achieved, as well as greater precision. It should be noted that this advantage is obtained while the fixing of the optical deflection element to the support is retained, allowing forces to be exerted on the support, rather than directly on the optical deflection element, during the dismounting of the adapter.
The solution proposed by the invention is therefore particularly appropriate for the replacement of the light source, notably in the case of an LED.
The optical module according to the invention may also have, in addition to the main characteristics stated in the preceding paragraphs, one or more of the following complementary characteristics:
this support may also be capable of acting as a heat sink for the adapter to be mounted thereon, and in particular of directly dissipating the heat given off by the light source fixed to the adapter; the support may comprise fins, in which case the support is a finned radiator;
this makes it possible to have a simple design for the distribution of the fins, the optical deflection element being mountable, for example, between the branches of the L-shape to improve heat dissipation;
the guide fins being arranged so as to allow the guiding of a unit having a width close to the distance between these guide fins, to position the unit in contact with these bearing surfaces; thus, if the adapter is a unit of this type, it can be made to slide even when module is difficult to access and/or if it is invisible or poorly visible; the bearing surfaces may be the contact surfaces mentioned previously;
The invention also proposes an adapter that can be replaced in an optical module according to the invention, and in particular a light source adapter, comprising:
Thus it will be possible to index this adapter precisely relative to these indexing means, particularly with a module according to the invention. This is particularly useful in the context of replacement of the light source, since this replacement can be carried out on the vehicle.
It also makes it possible to have an adapter carrying a standard light source that can be adapted to different types of optical modules. This adapter can be designed for LEDs, which is even more advantageous. This is because an LED is an electronic component, and in many designs of optical modules the failure of the LED requires the replacement of the whole module, or even of the lighting and/or signaling device. Thanks to the invention, it is possible to replace a smaller part of the module, namely the adapter and its light source. Thus the cost of replacement is reduced.
It should be noted that this printed circuit may be a printed circuit card, and the adapter may comprise a support unit, for example a radiator, on which the printed circuit is fixed. This circuit may also be directly formed or printed on the support unit, which, in this case also, may be a radiator. The support unit may comprise fins.
This adapter may also have, in addition to the main characteristics stated in the preceding paragraphs, one or more of the following complementary characteristics:
The invention also proposes a module as described previously, equipped with the adapter appropriate for it, notably a module as described previously, comprising:
wherein the adapter comprises complementary indexing means interacting with the adapter indexing means so that the adapter and the first optical deflection element are positioned on two separate intersecting axes relative to one another.
The optical module according to the invention may also have, in addition to the main characteristics stated in the preceding paragraphs, one or more of the following complementary characteristics:
In the optical modules and the adapters according to the invention, the adapter may comprise a plurality of light sources.
In the optical modules and the adapters according to the invention, the light source or sources may be one or more light-emitting diodes. The modules according to the invention are particularly suitable for LEDs, because:
Another object of the invention is a vehicle lighting and/or signaling device comprising a module according to the invention. For example, the device may be a headlight, also called a vehicle headlamp.
The optical module may be a lighting module, for example in order to provide an illuminating beam or a low beam.
Other characteristics and advantages of the invention will be made clear by the following detailed description, the comprehension of which will be facilitated by reference to the attached drawings, in which:
FIG. 6′ is a schematic cross section showing the indexing area of the adapter in the optical module according to the first embodiment;
The various elements appearing in more than one figure are given the same reference numerals, unless stated otherwise. Elements appearing in more than one figure will not be newly described in full or mentioned for every figure.
The optical module 10, 110 and 210 for a motor vehicle lighting and/or signaling device according to the invention comprises:
wherein the support 20, 120 and 220 comprises adapter fixing means 26, 126 and 226 capable of fixing an adapter to which a light source is fixed, or of receiving a fixing element of this adapter, and wherein the reflector 12 comprises adapter indexing means 61, 62 arranged so as to be capable of positioning this adapter relative to the reflector 12 according to two separate intersecting axes X, Y.
According to these embodiments, the indexing means 61, 62, shown in
The support 20, 120 and 220 is a heat sink, and comprises:
In general, the support 20, 120 and 220 may be a monolithic material, for example by being made of one piece of material. It may essentially consist of the material capable of conducting heat. The material capable of conducting heat may be metal, notably aluminum.
As illustrated, the support 20, 120 and 220 comprises rear fins 24 and 25, or 124 and 125, located at the rear of the support 20, 120 and 220 and behind the optical deflection element 12 relative to the direction of propagation R along which the optical deflection element 12 is intended to deflect the rays. The direction of propagation R is shown in
The support 20, 120 and 220 comprises:
the guide fins 23, 123 being arranged so as to allow the adapter 70, 170, 270 to be guided in order to position it in contact with these bearing surfaces 66.
In fact, as can be seen in
According to the illustrated examples, these bearing surfaces 66 are the contact surfaces. Consequently they have the double function of providing thermal and mechanical contact.
In these examples, the optical module is a lighting module, for example in order to provide an illuminating beam, for example a low beam.
The adapter 70, 170, 270 is designed at the position of the opening 29 in such a way that the light source 13 fixed above has its general direction of emission orientated toward the concavity of the reflector 12. The latter reflects the light rays emitted by the light source 13 along the direction of propagation R, parallel to the longitudinal axis X, in the illustrated examples, the direction of propagation R parallel to the longitudinal axis X defining the forward direction in this case. The light source 13 provides downward illumination.
The support 20, 120 and 220 comprises in this case two plates joined in the general shape of an “L”, at about 90° for example, and comprises:
The second branch may comprise other fins which are not shown.
The rear fins 25, 125 comprise a discontinuity 25a, 125a arranged so as to form a space free of fins 27, 127, in which is located at least a part of the adapter fixing means 26, 126, 226, in this case pairs of toothlike lugs. Each lug comprises at least one indentation capable of receiving a metal fixing rod 90, 190, 290 of the adapter 70, 170, 270.
In these exemplary embodiments, the adapter 70; 170; 270 of the light source 13 comprises:
These complementary indexing means are apertures 71, 72, particularly holes passing through the printed circuit 80 from one side to the other.
The adapter 70, 170, 270 of the light source 13 comprises a support unit 73 to which the printed circuit 80, and therefore indirectly the light source 13, is fixed and connected.
As can be seen more precisely in
The support unit 73 is a radiator comprising:
According to the invention, in general the adapter 70, 170, 270 or the support may carry a pivoted metal rod 90, 190, 290 which is made to be attached to or pressed against the support or the adapter 70, 170, 270 respectively.
Thus, according to the first embodiment shown in
The support 73 comprises a toothlike projecting guiding and retaining part 22 (
As shown in
The studs 61, 62 will enter the through holes 71, 72, and index the LED 13 relative to the reflector 12, notably at the position of its focus.
As can be seen in FIG. 6′, the support unit comprises cavities 74 facing the through holes 71, each through hole opening entirely into its own cavity 74. The studs 71 pass through the printed circuit into these cavities. Consequently they do not have to be designed exactly to match the size of the holes in the printed circuit.
When the adapter 70 has been positioned and pressed against the support 20, the rod 90 is lowered toward the rear branch of the L-shape of the support 20, and becomes attached to the adapter fixing lugs 26.
The adapter 70 is thus kept pressed against the support 20 by the rod 90 on the one hand, and by the lug 22 on the other hand.
In the other embodiments, the principle of the mounting of the adapter 170, 270 is generally the same, but with the differences described below.
The metal rod 190, 290 is pivoted at one end on the support 120, 220, the rod further comprising a pressing part 195, 295, to be fixed by pressing to the adapter 170, 270, the rod 190, 290 being arranged to allow compression fixing of the adapter 170, 270 to the module, by bearing on the bearing surfaces 177, 277 of the adapter 170, 270.
In the second embodiment, the through hole in which the end 193 of the rod 190, 290 is pivoted is arranged on a fin 123 (
In the third embodiment, the through hole in which the end 293 of the rod 190, 290 is pivoted is arranged on a projecting part 222 (
In these various embodiments, the metal rod 90, 190, 290 comprises an attachment part 91, 191, 291 that is made to interact with an indentation 26a, 126a, 226a of the adapter fixing means 26, 126, 226.
The metal rod 90, 190, 290 comprises a graspable portion 94, 194, 294 in the form of a loop intended to be gripped to enable the rod 90, 190, 290 to be detached from the adapter fixing means 26, 126, 226, for example by being grasped by an operator's finger.
In the second embodiment and in the third embodiment, the pressing portion 195, 295 is located between the attachment part 191, 291 and the pivoted end 193, 293. Thus the adapter 170, 270 is kept pressed against the support 120, 220 by the attachment of the attachment part 191, 291 on the one hand, and by the fixing part 195, 295 on the other hand.
In the second embodiment, the adapter fixing means 126 comprise another indentation 126b capable of receiving the metal fixing rod 190, in such a way that each indentation 126a, 126b defines a different fixing position of the metal rod 190. Thus, as shown in
As may be seen, according to the invention the support unit comprises by the adapter 70, 170, 270 is a radiator whose fins 75, 175, 275 are arranged to dissipate the heat given off by the LED 13. This is even more effective because they are orientated upwards.
In the three embodiments, the adapter 70, 170, 270 comprises a connector 82, 182 or 282 connected to the LED 13, and the support 20, 120 and 220 also comprises a connector 82, 182.
As shown in
As shown in
As shown in
According to one embodiment, the contact surfaces 76 of the adapter 70 and of the support 20 are in direct contact. The optical element have a clearance on an axis perpendicular to the tangent to these contact surfaces 76, that is to say on the vertical axis Z in the illustrated embodiments. Thus on this axis the arrangement is made according to the support 20. This clearance may, for example, be in the range from 0.1 to 2 mm, preferably from 0.5 to 1 mm, or preferably 0.5 mm.
According to a variant embodiment, the contact surfaces 66 of the support 20 and/or the contact surfaces 76 of the adapter are covered with a compressible heat-conducting element, notably a filled silicone, for example a PAD 900 silicone. This compressible element may have a thickness of about 229 μm. The adapter is in direct contact with the optical deflection element 12, in such a way that the adapter 70, 170, 270 is indexed relative to the optical deflection element 12 on the vertical axis Z.
It can be seen here that, in three embodiments, the contact surfaces 66 and 76 are in direct or indirect thermal contact, so that the adapter 70, 170, 270 and the support 20, 120, 220 of the optical deflection element 12 form a single heat sink, the fins being located in some cases (75, 23, 24, 25; 175, 123, 124, 125; 275, 223, 224, 225) on the adapter 70, 170, 270, and in other cases on the support 20, 120, 220.
This provides a radiator enabling heat to be removed directly from the base of the LED 13, and an extensive exchange surface.
While the system, apparatus, process and method herein described constitute preferred embodiments of this invention, it is to be understood that the invention is not limited to this precise system, apparatus, process and method, and that changes may be made therein without departing from the scope of the invention which is defined in the appended claims.
Number | Date | Country | Kind |
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1261519 | Nov 2012 | FR | national |
This application is the U.S. National Phase application of PCT Application No. PCT/EP2013/075004 filed on Nov. 28, 2013, which claims priority to the French application 1261519 filed on Nov. 30, 2012, which applications are incorporated herein by reference and made a part hereof.
Filing Document | Filing Date | Country | Kind |
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PCT/EP2013/075004 | 11/28/2013 | WO | 00 |