Lighting assembly for vehicle

US10227033B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10227033-B2
Application numberUS-201113635483-A
CountryUS
Kind codeB2
Filing dateMar 11, 2011
Priority dateMar 19, 2010
Publication dateMar 12, 2019
Grant dateMar 12, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The invention describes a lighting assembly ( 10, 10′, 20, 20 ′) for use in a lighting arrangement ( 2 ) of a vehicle ( 1 ), comprising a projection lens ( 11, 21 ) and an array ( 12, 22 ) of light sources (S 11 , . . . , S 26 ), wherein the projection lens ( 11, 21 ) and the light source array ( 12, 22 ) are arranged according to an asymmetry displacement (Φi, Φ 2 , di, d 2 ) of the optical axis (X 1 , X 2 ) of the projection lens ( 11, 21 ), and wherein the light sources (S 11 , . . . , S 26 ) of the light source array ( 12, 22 ) of the lighting assembly ( 10, 10′, 20, 20 ′) are individually controllable to adjust a swivel angle (σ 1 , σ 2 ) of a light beam (BL, BH) generated by that lighting assembly ( 10, 10′, 20, 20 ′). The invention further describes a controller ( 3 ) for controlling the light sources (S 11 , . . . , S 26 ) of such a lighting assembly ( 10, 10′, 20, 20 ′). The invention also describes a lighting arrangement ( 2 ) for a vehicle ( 1 ), comprising such a lighting assembly ( 10, 10′, 20, 20 ′) and such a controller ( 3 ) for controlling the light sources (S 11 , . . . , S 26 ) of the lighting assembly ( 10, 10′, 20, 20 ′) to adjust the swivel angle (σ 1 σ 2 ) of the light beam (BL, BR). The invention also describes a method of generating a front beam (B L , B R ) for a vehicle ( 1 ) comprising such a lighting assembly ( 10, 10′, 20, 20 ′).

First claim

Opening claim text (preview).

The invention claimed is: 1. A vehicle comprising a lighting assembly for use in a lighting arrangement of a vehicle, comprising: a projection lens; and an array of light sources, wherein the projection lens and the array are arranged according to an asymmetry displacement of the optical axis of the projection lens, and wherein the projection lens is positioned to receive and project light from each of the light sources of the array, wherein the assembly is configured such that the asymmetry displacement comprises a non-zero fixed angle between a longitudinal axis of the vehicle and the optical axis of the projection lens, wherein the light sources of the array of the lighting assembly are individually controllable to adjust a swivel angle of a light beam generated by the lighting assembly, and wherein the projection lens is distinct from an outer transparent cover that covers said lighting assembly and that is disposed between the assembly and the outside of the vehicle. 2. The vehicle according to claim 1 , wherein the light sources of the array are distributed essentially symmetrically about the optical axis of the projection lens. 3. The vehicle according to claim 1 , wherein the array is arranged essentially perpendicularly to the optical axis of the projection lens. 4. The vehicle according to claim 1 , wherein the array comprises a linear array of at most ten light sources. 5. The vehicle according to claim 1 , configured to obtain a maximum beam swivel angle of at least 11°. 6. The vehicle according to claim 1 , wherein a light source of the array comprises an LED. 7. The vehicle according to claim 1 , wherein the projection lens comprises a parabolic horizontal cross-section. 8. A controller for controlling the light sources of the lighting assembly according to claim 1 to adjust the swivel angle of the light beam generated by the lighting assembly, wherein the controller comprises a control signal generation unit for generating a control signal for selectively activating specific light sources of the lighting assembly on the basis of the asymmetry displacement of the optical axis of the projection lens. 9. The controller according to claim 8 , comprising a sensing means for sensing an angle of turning of the vehicle, and wherein the control signal generation unit is configured to generate the control signal on the basis of the angle of turning. 10. The controller according to claim 8 , wherein the control signal generated by the control signal generation unit comprises a plurality of actuation signals, wherein each actuation signal is associated with a specific light source of the array. 11. A lighting arrangement for the vehicle, comprising the lighting assembly for generating the light beam and the controller according to claim 8 . 12. The lighting arrangement according to claim 11 , wherein the lighting assembly is a first lighting assembly, and wherein the lighting arrangement further comprises a second lighting assembly for generating a second light beam, said second lighting assembly including a second projection lens and a second array of light sources, wherein the second projection lens and the second array of light sources of the second lighting assembly are arranged according to a second asymmetry displacement of the optical axis of the second projection lens, and wherein the controller is further configured to generate a second control signal for controlling the light sources of the second lighting assembly to adjust a swivel angle of the second light beam. 13. The controller according to claim 8 , wherein the controller is further configured to control said lighting assembly to generate said light beam such that the light beam is essentially parallel to said longitudinal axis by activating only one or more light sources of the light source array that are disposed on one side of said optical axis. 14. A method of generating a front beam for a vehicle comprising a lighting assembly for generating the beam, wherein a projection lens and an array of light sources of the lighting assembly are arranged according to an asymmetry displacement of the optical axis of the projection lens, wherein the projection lens is positioned to receive and project light from each of the light sources of the array, wherein the projection lens is distinct from an outer transparent cover that covers said lighting assembly and that is disposed between the assembly and the outside of the vehicle, and wherein the asymmetry displacement comprises a non-zero fixed angle between a longitudinal axis of the vehicle and the optical axis of the projection lens, which method comprises: sensing an angle of turning of the vehicle; and generating a control signal for the lighting assembly on the basis of the asymmetry displacement and on the basis of the angle of turning to selectively activate specific light sources of the lighting assembly to adjust a swivel angle of the beam. 15. The method according to claim 14 , wherein the front beam comprises a left beam and a right beam, the lighting assembly is a first lighting assembly, the asymmetry displacement is a first asymmetry displacement, and the vehicle comprises the first lighting assembly for generating the left beam and a second lighting assembly for generating the right beam, wherein a second projection lens and a second array of light sources of the second lighting assembly are arranged according to a second asymmetry displacement of the optical axis of the second projection lens, wherein the control signal is a first control signal and the swivel angle is a swivel angle of the left beam, and wherein the method further comprises: generating a second control signal on the basis of the second asymmetry displacement and the angle of turning to selectively activate specific light sources of the second lighting assembly to adjust a swivel angle of the right beam. 16. The method according to claim 14 , further comprising configuring said control signal such that the lighting assembly generates said beam such that the beam is essentially parallel to said longitudinal axis by activating only one or more light sources of the lighting assembly that are disposed on one side of said optical axis.

Assignees

Inventors

Classifications

  • arranged in a matrix · CPC title

  • by switching light sources (by switching incandescent light sources F21S41/162) · CPC title

  • the main emission direction of the LED being parallel to the optical axis of the illuminating device · CPC title

  • B60Q1/122Primary

    with electrical actuating means (details of the electric drive components, e.g. motors, shafts, ball joints B60Q1/076) · CPC title

  • for curves · CPC title

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What does patent US10227033B2 cover?
The invention describes a lighting assembly ( 10, 10′, 20, 20 ′) for use in a lighting arrangement ( 2 ) of a vehicle ( 1 ), comprising a projection lens ( 11, 21 ) and an array ( 12, 22 ) of light sources (S 11 , . . . , S 26 ), wherein the projection lens ( 11, 21 ) and the light source array ( 12, 22 ) are arranged according to an asymmetry displacement (Φi, Φ 2 , di, d 2 ) of the optical ax…
Who is the assignee on this patent?
Sikkens Marten, De Jong Marcel, Booij Silvia Maria, and 2 more
What technology area does this patent fall under?
Primary CPC classification B60Q1/122. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Mar 12 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).