The invention relates to a motor vehicle headlamp system with a first and a second motor vehicle headlamp, wherein each motor vehicle headlamp comprises a first and a second light module, which first light module comprises light pixels in a matrix-like arrangement in lines and columns, and is arranged to generate a first light distribution before the motor vehicle headlamp system by radiating of light of individual light pixels, and wherein the second light module comprises light pixels in a matrix-like arrangement in lines and columns, and is arranged to generate a second light distribution before the motor vehicle headlamp system by radiating of light of individual light pixels, wherein each light distribution is formed from several pixel light segments, wherein a pixel light segment corresponds to a light pixel and is able to be generated through this.
In the prior art, light-emitting diodes are usually used for the generation of one or more light distributions, which light-emitting diodes or respectively LEDs are arranged in a matrix-like manner in lines and columns, wherein the light-emitting diodes or respectively LEDs are also designated as pixels or respectively light pixels.
In order to obtain a higher resolution of the light distribution, therefore the pixels containing in the light distribution—also designated as pixel light segment—, at the same time the number of the light-emitting diodes or respectively LEDs is increased and/or the size of the LEDs is further reduced, in order to obtain an increased resolution on the same installation space. Thereby, however, a high electronic complexity arises owing to the high number of pixels or respectively LEDs which are to be activated.
Furthermore also with the use of a single light module, the intensity of the individual LEDs must be high on generating a light distribution, in order to achieve the required legal intensity. This leads, inter alia, to high temperatures within the light module or respectively the LED array which, in turn, must be especially cooled. Moreover, a legal light distribution width or respectively the view field (also designated “field of view”) must also be maintained on generating of a light distribution, as dipped beam distribution and/or full beam distribution.
On implementation by a single light module, this is disadvantageous owing to the in turn increased electronic complexity and heat development.
It is an object of the invention to provide an improved motor vehicle headlamp system.
This problem is solved in that each light distribution is arranged
By overlapping of identical but mirrored light distributions or respectively part light distributions, not only the view field (“field of view”) but also the resolution and the homogeneity of the overall light distribution or respectively of the motor vehicle headlamp system light distribution can be improved. Thereby, inter alia sharp light-dark boundaries can be produced, although the resolution of an individual light module would be too small.
Provision can be made that the first and the second light module of the first motor vehicle headlamp are arranged and disposed with respect to one another, that the first and the second light distribution of the first motor vehicle headlamp additionally at least partially overlap one another by a horizontal offset of at least one quarter of the first column width.
Provision can be made here that the horizontal offset is a multiple of a quarter of the first column width.
Provision can be made that the first pixel light segment group has a first line height, the second pixel light segment group has a second line height and the third pixel light segment group has a third line height, wherein the line heights are different from one another.
Provision can be made that the first line height is greater than the second and the third line height, and wherein the third line height is greater than the second line height.
Provision can be made that the light pixels of the first and second light modules are formed from LEDs.
Provision can be made that the number of the light pixels of a light module is a maximum of 400.
Provision can be made that the light pixels of the first and second light modules are configured as mini LEDs.
A differentiation is to be made here between micro LEDs and mini LEDs. Micro LEDs are smaller by an order of magnitude than mini LEDs, wherein mini LEDs have a size substantially in the region of 100 μm.
Micro LEDs are generally more difficult to produce and are thereby also more cost-intensive. Mini LEDs, on the other hand, are substantially easier to produce.
Provision can be made that the motor vehicle headlamp system comprises a control device which is arranged to activate the light pixels of the first and second light modules, wherein the light pixels are able to be activated independently of each other.
Provision can be made that the control device is arranged to activate the light pixels of the first and second light modules such that a dipped beam distribution and/or a full beam distribution is able to be generated in the motor vehicle headlamp system light distribution.
The invention is explained more closely in the following with the aid of exemplary drawings. There are shown here
Here, the light pixels of the light modules are configured as mini LEDs and do not exceed the number of 400 in a light module.
Each light distribution 100, 200 is formed here from several pixel light segments 101, 201, wherein a pixel light segment 101, 201 corresponds to a light pixel and is able to be produced through this.
Furthermore, each light distribution 100, 200 is arranged to generate a first pixel light segment group 110, 210, which is arranged in a matrix-like manner in lines and columns with a first column width 110a, 210a, and to generate a second pixel light segment group 120, 220, which is arranged in a matrix-like manner in lines and columns with a second column width 120a, 220a, wherein the second column width 120a, 220a corresponds to half of the first column width 110a, 210a, and to generate a third pixel light segment group 130, 230, which is arranged in a matrix-like manner in lines and columns with a third column width 130a, 230a, which corresponds to the first column width 110a, 210a.
Furthermore, the first pixel light segment group 110, 210 has a first line height 110b, 210b, the second pixel light segment group 120, 220 has a second line height 120b, 220b and the third pixel light segment group 130, 230 has a third line height 130b, 230b, wherein in the example which is shown the first line height 110b, 210b is greater than the second and the third line height 120b, 220b, 130b, 230b, and wherein the third line height 130b, 230b is greater than the second line height 120b, 220b.
As can be seen in
Furthermore it can be seen that the second light distribution 200 of the second light module is arranged mirrored vertically with respect to the first light distribution 100, so that the third pixel light segment group 230 is arranged in vertical direction above the second pixel light segment group 220 and the first pixel light segment group 210 is arranged in vertical direction beneath the second pixel light segment group 220.
It is to be noted that designations or respectively orientations such as “vertical” and “horizontal” refer to a motor vehicle headlamp system which is installed appropriately in a motor vehicle. Furthermore, in motor vehicle headlamp technology it is in any event known to a specialist in the art how these designations are to be understood, as light distribution of motor vehicle headlamps and their alignment are determined on a defined measuring screen, which according to ECE directives is situated 25 m from the motor vehicle headlamp or respectively motor vehicle headlamp system which is to be measured. The previously mentioned legal ECE directives also contain for example the terms vertical or respectively horizontal.
The first and the second light module of the first motor vehicle headlamp are furthermore arranged and disposed with respect to one another so that the first and the second light distribution 100, 200 of the first motor vehicle headlamp are arranged at least partially overlapping one another by a vertical offset 301 of a half of the second line height 120b, 220b, with the formation of a first headlamp light distribution 310, which first headlamp light distribution 310 is to be seen in
Furthermore, the first and the second light module of the second motor vehicle headlamp are arranged and disposed with respect to one another so that the first and the second light distribution 100, 200 of the second motor vehicle headlamp are arranged at least partially overlapping, with formation of a second headlamp light distribution 320, wherein the second headlamp light distribution 320 is horizontally mirrored with respect to the first headlamp light distribution 310, which second headlamp light distribution 320 is to be seen in
Moreover, the first and the second motor vehicle headlamp are arranged and disposed with respect to one another so that the first headlamp light distribution 310 of the first motor vehicle headlamp and the second headlamp light distribution 320 of the second motor vehicle headlamp are arranged overlapping one another by a horizontal offset 401 of by half the first column width 110a, 210a with formation of a motor vehicle headlamp system light distribution 400, which motor vehicle headlamp system light distribution 400 is to be seen in
Moreover, the motor vehicle headlamp system comprises a control device (not illustrated), which is arranged to activate the light pixels of the first and second light modules such that in the motor vehicle headlamp system light distribution 400 a dipped beam distribution and/or a full beam distribution is able to be generated, wherein the light pixels are able to be activated independently of one another.
Number | Date | Country | Kind |
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20175378 | May 2020 | EP | regional |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2021/060200 | 4/20/2021 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2021/233620 | 11/25/2021 | WO | A |
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10596956 | Ahn | Mar 2020 | B1 |
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Number | Date | Country |
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102017206274 | Oct 2018 | DE |
102017216911 | Mar 2019 | DE |
Entry |
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International Search Report for PCT/EP2021/060200, dated Jun. 29, 2021 (13 pages). |
Search Report for European Patent Application No. 20175378.7 dated Nov. 2, 2020 (5 pages). |
Number | Date | Country | |
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20230204181 A1 | Jun 2023 | US |