Miniturised holographic display
A holographic lighting apparatus includes at least two channels for the respective associated lighting functions. Each channel includes an edge-lit arrangement with an incoupling surface for coupling light from a light source into the arrangement, and an outcoupling surface; and a light source. The edge-lit arrangements of the channels are all included in a monolithic component having a common outcoupling surface, and each channel is arranged so as to be rotated about a surface normal of the outcoupling surface along an azimuthal arrangement angle. The component has at least one holographic structure for generating the lighting function of the relevant channel when said structure is illuminated by the light source of the channel. Also provided are a vehicle including a corresponding lighting apparatus, the use of the lighting apparatus as a display in a vehicle, and the lighting apparatus as an LED collimator.
1 . A holographic lighting device for producing at least two holographic lighting functions, comprising:
at least two channels, wherein each of the at least two channels is assigned to a respective one of the at least two holographic lighting functions
wherein each of the at least two channels comprises:
an edge-lit arrangement, comprising:
an input coupling surface for coupling light from a light source into the edge-lit arrangement; and
an output coupling surface,
wherein the light source is arranged to radiate into the input coupling surface,
wherein the edge-lit arrangements of the at least two channels are encompassed in a monolithic component,
wherein the output coupling surface is a joint output coupling surface,
wherein each of the at least two channels is arranged about a surface normal to the output coupling surface along an azimuthal arrangement angle,
wherein the monolithic component includes at least one holographic structure predominantly parallel to the output coupling surface and configured to produce the lighting function of the respective at least two channels under illumination by the light source,
wherein the output coupling surface includes the at least one holographic structure, and
wherein the light source and edge-lit arrangement are configured for illumination of the output coupling surface at a polar angle greater than a critical angle of total-internal reflection.
2 . The holographic lighting device of claim 1 , wherein the edge-lit arrangement of each of the at least two channels includes a reflection surface which is configured for direct reflective illumination of the holographic structure with input- coupled light.
3 . The holographic lighting device of claim 2 , wherein the reflection surface is configured to direct reflective illumination of the holographic structure along the azimuthal arrangement angle, and wherein the holographic structure is configured to produce the lighting function of the at least two channels in the case of the reflective illumination along the azimuthal arrangement angle.
4 . The holographic lighting device of claim 2 ,
wherein the reflection surfaces are arranged to at least partly form at least one lateral outer surface of the monolithic component,
wherein the input coupling surfaces are arranged in the direction of an interior of the monolithic component, and
wherein the input coupling surfaces are arranged to laterally enclose a partly open inner region of the monolithic component in at least one region.
5 . The holographic lighting device of claim 2 , wherein the reflection surface comprises a parabolic mirror, the focal plane of which coincides with an emitter surface of the light source, and wherein the emitter surface of the light source has an extent of up to 1×1 mm 2 and the light source and the assigned reflection surface have a distance of at least 20 mm.
6 . The holographic lighting device of claim 1 , wherein the reflection surface is configured for direct reflective illumination of the at least one holographic structure by input-coupled light at a polar angle, and wherein the at least one holographic structure is configured to produce the lighting function in the case of an illumination at the polar angle.
7 . The holographic lighting device of claim 1 , wherein the at least one holographic structure is configured to produce the lighting function of the channel in the case of an illumination with a spectral range corresponding to the light source of the channel.
8 . The holographic lighting device of claim 1 ,
wherein the at least one holographic structure is a transmissive holographic structure.
9 . The holographic lighting device of claim 1 , wherein a surface parallel to the output coupling surface includes the at least one holographic structure, wherein the at least one holographic structure is a reflective holographic structure.
10 . The holographic lighting device of claim 1 , wherein the at least two channels have an azimuthal deviation of at least 1° from one another from an opposing arrangement in relation to the surface normal of the output coupling surface.
11 . The holographic lighting device of claim 1 , wherein the at least two channels have a deviation of between 1° and 10° from one another by an absolute value of the polar angle.
12 . The holographic lighting device of claim 1 , wherein the light source is arranged on a same side of the surface normal to the output coupling surface as the input coupling surface assigned thereto in the inner region of the monolithic component.
13 . The holographic lighting device of claim 1 , wherein the light source is arranged on an opposite side of the surface normal to the output coupling surface as the input coupling surface assigned thereto outside of the inner region of the monolithic component along an edge region of the lateral outer surface of the monolithic component.
14 . The holographic lighting device of claim 1 , wherein the light source is arranged above an arrangement plane of the input coupling surfaces which is perpendicular to the surface normal to the output coupling surface, and configured for radiating into the input coupling surface assigned thereto at an angle with respect to the arrangement plane of the input coupling surfaces.
15 . The holographic lighting device of claim 1 , wherein the holographic structure is configured to produce an identical image for each channel, and wherein the lighting function corresponds to an adjustable brightness of the image.
16 . The holographic lighting device of claim 1 , wherein the holographic structure is configured for a beam shaping of light beams of the channel, and wherein the beam shaping is selected from the group consisting of collimation, focusing and/or divergence.
17 . A vehicle, comprising:
at least one holographic lighting device, comprising:
at least two channels, wherein each of the at least two channels is assigned to a respective one of the at least two holographic lighting functions
wherein each of the at least two channels comprises:
an edge-lit arrangement, comprising:
an input coupling surface for coupling light from a light source into the edge-lit arrangement; and
an output coupling surface,
wherein the light source is arranged to radiate into the input coupling surface,
wherein the edge-lit arrangements of the at least two channels are encompassed in a monolithic component,
wherein the output coupling surface is a joint output coupling surface,
wherein each of the at least two channels is arranged about a surface normal to the output coupling surface along an azimuthal arrangement angle, and
wherein the monolithic component includes at least one holographic structure predominantly parallel to the output coupling surface and configured to produce the lighting function of the respective at least two channels under illumination by the light source,
wherein the holographic lighting device is configured to display at least one of a plurality of possible information items relating to a driving situation,
wherein one information item is assigned to a channel of the holographic lighting device,
wherein the holographic lighting device is arranged in an A pillar, a B pillar and/or a C pillar of the vehicle, and
wherein the holographic lighting device comprises a display of a lane change assist system.
18 . A method of using a holographic lighting device, comprising:
providing a holographic lighting device, comprising:
at least two channels, wherein each of the at least two channels is assigned to a respective one of the at least two holographic lighting functions
wherein each of the at least two channels comprises:
an edge-lit arrangement, comprising:
an input coupling surface for coupling light from a light source into the edge-lit arrangement; and
an output coupling surface,
wherein the light source is arranged to radiate into the input coupling surface,
wherein the edge-lit arrangements of the at least two channels are encompassed in a monolithic component,
wherein the output coupling surface is a joint output coupling surface,
wherein each of the at least two channels is arranged about a surface normal to the output coupling surface along an azimuthal arrangement angle, and
wherein the monolithic component includes at least one holographic structure predominantly parallel to the output coupling surface and configured to produce the lighting function of the respective at least two channels under illumination by the light source,
displaying via the holographic lighting device at least one of a plurality of possible information items in a vehicle relating to a driving situation,
wherein the at least one of a plurality of possible information items is assigned to a channel of the holographic lighting device; and
wherein, for the purpose of displaying the information, the holographic structure is illuminated by the light source assigned to the channel.
19 . The method of claim 18 , wherein the holographic lighting device comprises an LED collimator.
20 . A holographic lighting device for producing at least two holographic lighting functions, comprising:
at least two channels, wherein each of the at least two channels is assigned to a respective one of the at least two holographic lighting functions
wherein each of the at least two channels comprises:
an edge-lit arrangement, comprising:
an input coupling surface for coupling light from a light source into the edge-lit arrangement; and
an output coupling surface,
wherein the light source is arranged to radiate into the input coupling surface,
wherein the edge-lit arrangements of the at least two channels are encompassed in a monolithic component,
wherein the output coupling surface is a joint output coupling surface,
wherein each of the at least two channels is arranged about a surface normal to the output coupling surface along an azimuthal arrangement angle,
wherein the monolithic component includes at least one holographic structure predominantly parallel to the output coupling surface and configured to produce the lighting function of the respective at least two channels under illumination by the light source,
wherein the edge-lit arrangement of each of the at least two channels includes a reflection surface which is configured for direct reflective illumination of the holographic structure with input-coupled light,
wherein the reflection surfaces are arranged to at least partly form at least one lateral outer surface of the monolithic component,
wherein the input coupling surfaces are arranged in the direction of an interior of the monolithic component, and
wherein the input coupling surfaces are arranged to laterally enclose a partly open inner region of the monolithic component in at least one region.
21 . A holographic lighting device for producing at least two holographic lighting functions, comprising:
at least two channels, wherein each of the at least two channels is assigned to a respective one of the at least two holographic lighting functions
wherein each of the at least two channels comprises:
an edge-lit arrangement, comprising:
an input coupling surface for coupling light from a light source into the edge-lit arrangement; and
an output coupling surface,
wherein the light source is arranged to radiate into the input coupling surface,
wherein the edge-lit arrangements of the at least two channels are encompassed in a monolithic component,
wherein the output coupling surface is a joint output coupling surface,
wherein each of the at least two channels is arranged about a surface normal to the output coupling surface along an azimuthal arrangement angle,
wherein the monolithic component includes at least one holographic structure predominantly parallel to the output coupling surface and configured to produce the lighting function of the respective at least two channels under illumination by the light source,
wherein the edge-lit arrangement of each of the at least two channels includes a reflection surface which is configured for direct reflective illumination of the holographic structure with input-coupled light,
wherein the reflection surface comprises a parabolic mirror, the focal plane of which coincides with an emitter surface of the light source, and
wherein the emitter surface of the light source has an extent of up to 1×1 mm 2 and the light source and the assigned reflection surface have a distance of at least 20 mm.