IP Library › Granted Patent US 11,397,324
Granted Patent B2
US 11,397,324 · App. 16/517,082 · Granted Jul 26, 2022

Head-up display

Inventors: Jamieson Christmas (Milton Keynes, GB); Máté Karner (Milton Keynes, GB)
Assignee: ENVISICS LTD
G02B27/0103B60K35/00G03H1/16G03H1/2294B60K2370/1529B60K2370/166B60K2370/167B60K2370/29B60K2370/31B60K2370/37G02B2027/0118G03H2260/00
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Quick Facts
Patent No.
US 11,397,324
App. No.
16/517,082
Granted
Jul 26, 2022
Kind
B2
Abstract

There is provided a head-up display for a vehicle. The head-up display has a first housing and a second housing. The first housing comprises a picture generating unit and optical system. The second housing comprises a substantially flat cover glass and a layer. The picture generating unit is arranged to output pictures. The picture generating unit comprises a light source and a spatial light modulator. The light source is arranged to emit light. The spatial light modulator is arranged to receive the light from the light source and spatially-modulate the light in accordance with computer-generated light-modulation patterns displayed on the spatial light modulator to form a holographic reconstruction corresponding to each picture. The optical system is arranged to receive the pictures output by the picture generating unit and relay the pictures using an optical combiner to form a virtual image of each picture. The optical combiner combines light output by the picture generating unit with light from a real-world scene to present combined images to a viewer within an eye-box. The second housing is disposed between the first housing and optical combiner. The substantially flat cover glass is arranged to protect the first housing. The layer is arranged to change the trajectory of light such that any sunlight reflected by the cover glass is deflected away from the eye-box.

Claims (31)

1. A head-up display for a vehicle, the head-up display having a first housing comprising:

a picture generating unit arranged to output pictures, wherein the picture generating unit comprises: a light source arranged to emit light; and a spatial light modulator arranged to receive the light from the light source and spatially-modulate the light in accordance with computer-generated light-modulation patterns displayed on the spatial light modulator to form a holographic reconstruction corresponding to each picture; and

an optical system arranged to receive the pictures output by the picture generating unit and relay the pictures using an optical combiner to form a virtual image of each picture, wherein the optical combiner combines light output by the picture generating unit with light from a real-world scene to present combined images to a viewer within an eye-box,

wherein the head-up display further comprises a second housing disposed between the first housing and optical combiner, wherein the second housing comprises:

a substantially flat cover glass arranged to protect the first housing and a layer arranged to change the trajectory of light such that any sunlight reflected by the cover glass is deflected away from the eye-box, wherein the layer is arranged to provide the optical functionality of a curved cover glass.

2. A head-up display as claimed in claim 1 wherein the layer is transmissive to light of the picture incident at a first range of angles and substantially reflective to light of other wavelengths incident at a second range of angles.

3. A head-up display as claimed in claim 1 wherein the layer is disposed on the cover glass.

4. A head-up display as claimed in claim 1 wherein the layer is a structured surface layer of the cover glass.

5. A head-up display as claimed in claim 1 wherein the layer comprises a hologram.

6. A head-up display as claimed in claim 1 wherein the layer comprises a Fresnel structure corresponding to a concave surface.

7. A head-up display as claimed in claim 1 wherein the layer comprises a metamaterial.

8. A head-up display as claimed in claim 1 wherein the layer comprises a graded-index layer in which the refractive index varies with distance from its centre.

9. A head-up display as claimed in claim 1 wherein the second housing further comprises a light trap arranged to partially shield the cover glass from sunlight.

10. A head-up display as claimed in claim 1 wherein the layer has optical power and each computer-generated light-modulation pattern comprises a computer-generated hologram of the picture and a software lens function having optical power which compensates for the optical power of the layer.

11. A head-up display as claimed in claim 1 wherein the second housing comprises a second layer identical to the first layer such that the first and second layers form parallel faces.

12. A head-up display as claimed in claim 1 wherein the optical combiner is the windscreen of a vehicle.

13. A head-up display as claimed in claim 1 wherein the layer is arranged to provide the optical functionality of a curved cover glass that is a concave cover glass.

14. A display system comprising a head-up display and an optical combiner configured to present images to a viewer within an eye-box, the head-up display comprising

a first housing comprising:

a picture generating unit arranged to output pictures, wherein the picture generating unit comprises: a light source arranged to emit light; and a spatial light modulator arranged to receive the light from the light source and spatially-modulate the light in accordance with computer-generated light-modulation patterns displayed on the spatial light modulator to form a holographic reconstruction corresponding to each picture; and

an optical system arranged to receive the pictures output by the picture generating unit and relay the pictures using the optical combiner to form a virtual image of each picture, wherein the optical combiner combines light output by the picture generating unit with light from a real-world scene to present combined images to the viewer within the eye-box; and

a second housing disposed between the first housing and optical combiner, the second housing comprising:

a substantially flat cover glass arranged to protect the first housing and a layer arranged to change the trajectory of light such that any sunlight reflected by the cover glass is deflected away from the eye-box, wherein the layer is arranged to provide the optical functionality of a curved cover glass.

15. A display system as claimed in claim 14 wherein the optical combiner is the windscreen of a vehicle.

16. A vehicle comprising a display system as claimed in claim 15 .

17. A method for displaying information to an occupant of a vehicle, the method comprising:

within a first housing, generating light bearing a series of pictures, wherein each picture is generated by receiving light at a spatial light modulator and spatially-modulating the light in accordance with a computer-generated light-modulation pattern corresponding to the picture to form a holographic reconstruction corresponding to the picture;

passing the light bearing the series of pictures through a substantially flat cover glass arranged to protect the first housing and a layer arranged to change the trajectory of light; and

relaying the light bearing the series of pictures using an optical combiner to form a virtual image of each picture by combining light bearing the generated picture with light from a real-world scene to present combined images to a viewer within an eye-box,

wherein the layer deflects any sunlight reflected by the cover glass away from the eye-box, and wherein the layer is arranged to provide the optical functionality of a curved cover glass.

18. A method as claimed in claim 17 wherein the layer is arranged to provide the optical functionality of a curved cover glass that is a concave cover glass.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2026
From: ENVISICS LTD
To: DUALITAS LTD
Reel/Frame 076113/0595 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2019
From: CHRISTMAS, JAMIESON; KARNER, MATE
To: ENVISICS LTD
Reel/Frame 049810/0097 →
Priority Claims (1)
GB 1811789 · Jul 19, 2018 · national
Continuity (1)
Related Publication 20200026077A1 · Jan 23, 2020