Light device comprising a surface light source
10718480 ยท 2020-07-21
Assignee
Inventors
Cpc classification
B60Q3/54
PERFORMING OPERATIONS; TRANSPORTING
F21K9/90
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/255
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/145
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q2400/10
PERFORMING OPERATIONS; TRANSPORTING
F21S41/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q3/745
PERFORMING OPERATIONS; TRANSPORTING
F21S41/155
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/29
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S45/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/237
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/2615
PERFORMING OPERATIONS; TRANSPORTING
F21S41/141
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/27
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21S41/141
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q3/74
PERFORMING OPERATIONS; TRANSPORTING
F21S41/29
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/155
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60Q1/26
PERFORMING OPERATIONS; TRANSPORTING
F21K9/237
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/90
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/27
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/145
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S41/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S43/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A light device for a motor vehicle lighting and/or signaling device includes a flexible surface light source a housing arranged to conform at least a part of the flexible surface light source according to a predetermined form a cap arranged to press said part of the flexible surface light source against the housing the housing and/or the cap being capable of allowing light emitted by the flexible surface light source to pass.
Claims
1. A light device for a motor vehicle lighting and/or signaling device comprising: a flexible surface light source; a housing arranged to conform at least a part of the flexible surface light source according to a predetermined form; and a cap arranged to press said part of the flexible surface light source against the housing, wherein the housing and/or the cap being configured to allow light emitted by the flexible surface light source to pass, wherein the housing includes a peripheral flange extending from a bottom wall of the housing and defining an enclosure for receiving the flexible surface light source, and wherein the cap includes a peripheral flange configured to interlock with the peripheral flange of the housing.
2. The light device according to claim 1, wherein the device comprises a hinge linking the cap and the housing arranged so that the cap is mobile with respect to the housing to allow the insertion of the flexible surface light source between the housing and the cap.
3. The light device according to claim 1, wherein the housing and the cap are two distinct elements.
4. The light device according to claim 3, wherein the housing and the cap are arranged to come into contact so as to encapsulate the flexible surface light source.
5. The light device according to claim 4, wherein the flexible surface light source rests on the bottom wall of the housing and in that the flexible surface light source is pressed by a pressing wall of the cap onto the bottom wall of the housing.
6. The light device according to claim 5, wherein at least a part of the cap rests on said peripheral flange of the housing to encapsulate the enclosure.
7. The light device according to claim 6, wherein at least a part of the cap, defining the pressing wall of the cap, is inserted into the enclosure to press the flexible surface light source against the bottom wall of the housing.
8. The light device according to claim 5, wherein at least a part of the cap, defining the pressing wall of the cap, is inserted into the enclosure to press the flexible surface light source against the bottom wall of the housing.
9. The light device according to claim 5, wherein at least the pressing wall of the cap is produced in a transparent or translucent material.
10. The light device according to claim 5, wherein at least the pressing wall of the cap is produced in a material configured to color the light emitted by the flexible surface light source.
11. The light device according to claim 5, wherein at least a part of the pressing wall of the cap is arranged to deflect at least a part of the light emitted by the flexible surface source to produce a predetermined photometric function.
12. The light device according to claim 1, wherein the flexible surface light source is an organic light-emitting diode.
13. The light device according to claim 1, further comprising locking means configured to cooperate with complementary locking means of the flexible surface light source to eliminate the play of said flexible surface light source in the housing.
14. The light device according to claim 1, the housing is arranged to conform at least the part of the flexible surface light source according to the predetermined form without resin.
Description
(1) Other features and advantages of the present invention will become more clearly apparent from the description and the drawings in which:
(2)
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(9) An exemplary embodiment of such a source will be presented below in
(10) The housing 2 also comprises fixing means 4, produced in this example in the form of orifices intended to receive screws, for fixing the light device 6 into the lighting or signaling device.
(11)
(12) The flexible OLED 1 rests on a bottom wall 17 of the housing 2 and said flexible OLED 1 is pressed by a pressing wall 15 of the cap 3 onto the bottom wall 17 of the housing 2. The flexible OLED 1 is thus conformed according to a predetermined form by the housing 2 and kept in this form by the cap 3. The housing 2 and the cap 3 exhibit identical profiles. Furthermore, the housing 2 and the cap 3 encapsulate all of the flexible OLED 1. The flexible OLED 1 is thus protected from external attack and in particular from moisture, which avoids premature deterioration of the flexible OLED 1.
(13) The cap 3 comprises a peripheral flange 16 extending from the pressing wall 15 and defining an enclosure for receiving the flexible OLED 1.
(14) All of the housing 2 is inserted into the enclosure formed by the peripheral flange 16 of the cap 3. The housing 2 comprises a peripheral outer wall 18 and the cap 3 comprises a peripheral inner wall 19, two portions of these peripheral walls 18 and 19 coming into contact upon the insertion of the housing 2 into the cap 3. The peripheral outer wall 18 of the housing 2 is welded with the peripheral inner wall 19 of the cap 3 at these portions coming into contact.
(15) In the embodiment represented, the flexible OLED 1 has two, top and bottom light-emitting surfaces 33. The pressing wall 15 of the cap 3 is produced in a transparent material allowing light emitted by the top emitting surface 33 of the flexible OLED 1 to pass. This transparent material is polymethyl methacrylate. The pressing wall 15 of the cap 3 comprises optical patterns 14, produced by a graining of the top face of the cap 3, making it possible to diffuse the light from the top emitting surface 33 of the flexible OLED 1 and to give a uniform appearance to the light leaving the light device.
(16) The housing 2 is produced in a reflecting material, so as to reflect light emitted by the bottom emitting surface 33 of the flexible OLED 1 in this flexible OLED toward the top emitting face and therefore toward the pressing wall 15 of the cap 3. The peripheral flange of the cap 3 comprises convex protruding elements 30. The flexible OLED 1 has a functional zone 32, intended in particular for its electrical power supply, edging the emitting surfaces 33 of this flexible OLED 1. The flexible OLED 1 further comprises concave notches 31, produced on the perimeter of the functional zone 32. The notches 31 exhibit a profile identical to that of the protruding elements 30, these protruding elements 30 being aligned with and inserted into the notches 31 of the flexible OLED 1 when the flexible OLED 1 is encapsulated by the cap 3 and the housing 2. These protruding elements 30 and these notches 31 thus form locking means and complementary locking means for eliminating the play of the flexible OLED 1, defined between the perimeter of the functional zone 32 and the peripheral flange 16 of the cap 3, when the OLED is encapsulated by the cap 3 and the housing 2.
(17) A second embodiment of the light device is presented, according to a transverse cross-sectional view in
(18) A flexible OLED 41 rests on the bottom wall 44 of housing 42 and the flexible OLED 41 is pressed by a pressing wall 45 of a cap 43 onto the bottom wall 44 of the housing 42.
(19) The housing 42 comprises a peripheral flange 48 extending from the bottom wall 44 of the housing 42 and forming an enclosure receiving the flexible OLED 41. Said peripheral flange 48 of the housing 42 protrudes relative to the emitting surface of the flexible OLED 41. The pressing wall 45 of the cap 43 is inserted into the enclosure to press the flexible OLED 41 against the bottom wall 44 of the housing 42 and a peripheral zone 50 of the cap 43 rests on the peripheral flange 48 of the housing 42.
(20) The cap 43 comprises a peripheral flange 49 extending from the peripheral zone 50 of the cap 43, such that the peripheral zone 50 forms an indentation between the peripheral flange 49 and the pressing wall 45, this indentation receiving the peripheral flange 48 of the housing 42.
(21) The peripheral flange 49 of the cap 43 comprises a peripheral inner wall 52 and the peripheral flange 48 of the housing 42 comprises a peripheral outer wall 53, two portions of these peripheral walls 52 and 53 coming into contact upon the insertion of the pressing wall 45 of the cap 43 into the enclosure of the housing 42. The peripheral inner wall 52 of the cap 43 comprises a clip 46 and the peripheral outer wall 53 of the housing 42 comprises a notch 47. The clip 46 and the notch 47 are fitted together elastically to fix the housing 42 and the cap 43 to one another. The housing 42 and the cap 43 thus come to encapsulate the flexible OLED 41.
(22) The flexible OLED 41 is thus conformed according to a predetermined form by the housing 42 and kept in this form by the cap 43 simply, rapidly and inexpensively.
(23) Another embodiment of a light device according to the invention is presented in
(24) A flexible OLED 61 rests on a bottom wall 64 of a housing 62 and the flexible OLED 61 is pressed by a pressing wall 65 of a cap 63 onto the bottom wall 64 of the housing 62.
(25) The housing 62 comprises a peripheral flange 66 extending from the perimeter of the bottom wall 64 of the housing 62 and defining an enclosure receiving the flexible OLED 61. The peripheral flange 66 of the housing 62 is flush with the emitting surface of the flexible OLED 61.
(26) A peripheral zone 67 of the cap 63 rests on said peripheral flange 66 of the housing 62. Also, the peripheral flange 66 of the housing 62 is welded to the peripheral zone 67 of the cap 63 which comes into contact with the peripheral flange 66 of the housing 62 when the cap 63 is put in place to encapsulate the enclosure.
(27) The housing 62 and the cap 63 thus come to encapsulate the flexible OLED 61.
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(29) The flexible OLED 1 comprises several layers: a cathode 70, an anode 71 and an organic layer 72. The organic layer 72 comprises various plies 75 to 79 produced in different organic materials. In addition to the light-emitting ply 77, the organic layer comprises a ply 75 promoting the transfer of the electrons to the emitting ply 77 and a ply 79 promoting the transfer of the holes to the emitting ply 77. The layer also comprises a ply 76 locking the holes coming from the upper layers 77 to 79 and a ply 78 locking the electrons originating from the lower plies 75 to 77. Together, these plies constitute a microcavity whose thickness is adjusted to create an optical resonance. Thus, selective interferential reflectors are produced constituting resonant cavities.
(30) The light-emitting ply 77 comprises a top emitting surface 33 and a bottom emitting surface 33.
(31) An electric voltage generator or an electric current source 80 makes it possible to power the flexible OLED 1.
(32) When the organic layer is passed through by an electric current, the top emitting surface 33 emits a light radiation 73 that is propagated through the upper plies 78 and 79 and the anode 71 which are transparent to this radiation and the bottom emitting surface 33 emits a light radiation that is propagated through the lower plies 76 and 75 and the cathode 70 which are transparent to this radiation.
(33) The anode 71 and the cathode 70 are produced in transparent indium-tin oxide (ITO).