Waveguide display having improved brightness

US11650424B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11650424-B2
Application numberUS-201816954865-A
CountryUS
Kind codeB2
Filing dateDec 18, 2018
Priority dateDec 22, 2017
Publication dateMay 16, 2023
Grant dateMay 16, 2023

How to read this patent

A practical reading order for non-experts. Skip the full description unless you need deep technical detail.

  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

    Who owns or filed the patent and who is credited as inventor.

  4. Key dates

    Filing, priority, publication, and grant dates set the timeline.

  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

    Prior art links and similar publications in this corpus.

Abstract

Official abstract text for this publication.

The invention relates to a diffractive waveguide display element comprising a waveguide body ( 13 ) having a first surface and a second surface opposite to the first surface, an outcoupling-diffractive optical element on said first surface for coupling light propagating inside the waveguide body out of the waveguide body, and a narrow-band reflector element ( 21 ) on said second surface. The invention also relates to a display device comprising such element.

First claim

Opening claim text (preview).

The invention claimed is: 1. A diffractive waveguide display element comprising: a waveguide body having a first surface and a second surface opposite to the first surface, an out-coupling diffractive optical element on said first surface for coupling light propagating inside the waveguide body out of the waveguide body, and a narrow-band reflector element, wherein the reflector element is positioned over said second surface and has laterally non-uniform optical properties, wherein the reflector element is separated from the waveguide body by a gap having a gap length configured for reducing interference of directly out-coupled light fields and reflected light fields by having an optical path length difference between the directly out-coupled light fields and reflected light fields that is larger than the coherence length of the directly out-coupled light fields and reflected light fields, wherein the gap is an air gap or aerogel layer. 2. The element according to claim 1 , wherein the reflector element is a single-band reflector element. 3. The element according to claim 2 , wherein the reflector element comprises a dielectric multilayer structure, having a stack of alternating layers having different indices of refraction. 4. The element according to claim 1 , wherein the reflector element is a multi-band reflector element. 5. The element according to claim 4 , wherein the reflector element comprises a dielectric multilayer structure, having a stack of alternating layers having different indices of refraction. 6. The element according to claim 1 , wherein the reflector element has one or more wavelength bands having an FWHM of 50 nm or less, such as 20 nm or less. 7. The element according to claim 6 , wherein the reflector element comprises a dielectric multilayer structure, having a stack of alternating layers having different indices of refraction. 8. The element according to claim 1 , wherein the reflector element has a total white light transmittance of at least 50%. 9. The element according to claim 8 , wherein the reflector element comprises a dielectric multilayer structure, having a stack of alternating layers having different indices of refraction. 10. The element according to claim 1 , wherein the reflector element comprises a dielectric multilayer structure, having a stack of alternating layers having different indices of refraction. 11. The element according to claim 1 , wherein the reflector element comprises semi-transparent metallic layer, in particular a single layer, such as a layer having a thickness of 20 nm or less. 12. The element according to claim 1 , wherein the reflector element is optically insulated from the waveguide body. 13. The element according to claim 1 , wherein the reflector element comprises a plurality of distinct segments positioned laterally adjacent to each other, the segments having different reflectances and/or wavelength characteristics. 14. The element according to claim 1 , wherein the reflector element contains a first region and a second region downstream of the first region in the propagation direction of light in the waveguide body, and the reflectance of the second region is higher than the reflectance of the first region. 15. A see-through display device, comprising: the diffractive waveguide display element of claim 1 , and a narrow-band projector, such as a laser projector or narrow-band LED projector, comprising at least one narrow-band light source having an output wavelength, wherein: the projector is configured to couple an image to be displayed into the waveguide body for propagation therein and for further exiting the waveguide body to an eye of a user of the display device, whereby said exiting is configured to occur partially directly from the out-coupling optical element, which is configured as an out-coupling grating, and partially through reflection from the reflector element. 16. The device according to claim 15 , further comprising a plurality of such display elements stacked on top of each other, wherein each of the elements comprises a reflector element having different reflectance wavelength band corresponding to an output wavelength of a narrow-band light source of the projector. 17. The device according to claim 16 , being a head-up display device or head-mounted display device. 18. The device according to claim 15 , being a head-up display device or head-mounted display device. 19. The element according to claim 1 , wherein the reflector element has a total white light transmittance of at least 75%.

Assignees

Inventors

Classifications

  • characterised by optical features (G02B27/0172 takes precedence) · CPC title

  • with means for altering, e.g. enlarging, the entrance or exit pupil · CPC title

  • Reflecting element, sheet or layer · CPC title

  • characterised by optical features · CPC title

  • using dichroic mirrors · CPC title

Patent family

Related publications grouped by family.

External sources

Frequently asked questions

Answers are generated from the same data shown on this page.

What does patent US11650424B2 cover?
The invention relates to a diffractive waveguide display element comprising a waveguide body ( 13 ) having a first surface and a second surface opposite to the first surface, an outcoupling-diffractive optical element on said first surface for coupling light propagating inside the waveguide body out of the waveguide body, and a narrow-band reflector element ( 21 ) on said second surface. The in…
Who is the assignee on this patent?
Dispelix Oy
What technology area does this patent fall under?
Primary CPC classification G02B27/0101. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue May 16 2023 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).