IP Library › Granted Patent US 10,302,950
Granted Patent B2
US 10,302,950 · App. 15/988,264 · Granted May 28, 2019

Head-mounted display

Inventors: Andrew J. Ouderkirk (St. Paul, MN); Timothy L. Wong (St. Paul, MN); Zhisheng Yun (Woodbury, MN); Erin A. McDowell (Afton, MN); Gregg A. Ambur (River Falls, WI)
Assignee: 3M INNOVATIVE PROPERTIES COMPANY
G02B27/0172B29C45/14B29C55/04B29D11/0073B29D11/00644G02B1/041G02B5/005G02B5/04G02B5/0891G02B5/305G02B5/3041G02B5/3058G02B5/3066G02B5/3075G02B5/3083G02B5/3091G02B13/0055G02B17/0856G02B21/04G02B21/28G02B23/2407G02B27/0068G02B27/0093G02B27/0176G02B27/0905G02B27/0983G02B27/144G02B27/145G02B27/148G02B27/22G02B27/2228G02B27/2235G02B27/283G02B27/286G02C7/081G03B21/00G03B21/28G06F3/013H05K999/99B29D11/00865B29K2069/00B29K2995/003B29K2995/0034B29L2009/00B29L2011/00G02B17/0896G02B2027/011G02B2027/013G02B2027/0134G02B2027/0138G02B2027/0154G02C7/02
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Quick Facts
Patent No.
US 10,302,950
App. No.
15/988,264
Filed
May 24, 2018
Granted
May 28, 2019
Kind
B2
Art Unit
2872
USPC
359/352
Abstract

A head-mounted display including a first optical system is described. The first optical system includes a partial reflector and a multilayer reflective polarizer disposed adjacent to and spaced apart from the partial reflector. The multilayer reflective polarizer is curved about orthogonal first and second axes and includes at least one layer that is substantially optically uniaxial at at least one location. Each chief ray that passes through the first optical system is first incident on the multilayer reflective polarizer at an angle of incidence less than 30 degrees.

Claims (24)

1. A head-mounted display comprising a first optical system, the first optical system comprising:

a first partial reflector having an average optical reflectance of at least 30% in a desired plurality of wavelengths; and

a first multilayer reflective polarizer disposed adjacent to and spaced apart from the first partial reflector, the first multilayer reflective polarizer substantially transmitting light having a first polarization state and substantially reflecting light having an orthogonal second polarization state, the first multilayer reflective polarizer curved about orthogonal first and second axes, at least one first location on the first multilayer reflective polarizer having a radial distance, r1, from an optical axis passing through an apex of the first multilayer reflective polarizer and a displacement, s1, from a plane perpendicular to the optical axis at the apex, s1/r1 being at least 0.1 and less than 0.8,

wherein the first multilayer reflective polarizer comprises at least one layer substantially optically uniaxial at at least one location, and

wherein each chief ray that passes through the first optical system is first incident on the first multilayer reflective polarizer at an angle of incidence less than 30 degrees.

2. The head-mounted display of claim 1 , further comprising a first retarder disposed between the first multilayer reflective polarizer and the first partial reflector.

3. The head-mounted display of claim 2 , where the first retarder is a quarter wave retarder at at least one wavelength in the desired plurality of wavelengths.

4. The head-mounted display of claim 1 , wherein the at least one layer at the at least one location has a first refractive index in a thickness direction, a second refractive index in a second direction orthogonal to the thickness direction, and a third refractive index in a third direction orthogonal to the thickness direction and to the second direction, an absolute value of a difference in the first and second refractive indices being less than 0.02, an absolute value of a difference in the second and third refractive indices being greater than 0.05.

5. The head-mounted display of claim 4 , wherein the absolute value of the difference in the first and second refractive indices is less than 0.01.

6. The head-mounted display of claim 4 , wherein the absolute value of the difference in the second and third refractive indices is greater than 0.1.

7. The head-mounted display of claim 1 , wherein the at least one layer at the at least one location has a first refractive index in a thickness direction, a second refractive index in a second direction orthogonal to the thickness direction, and a third refractive index in a third direction orthogonal to the thickness direction and to the second direction, an absolute value of a difference in the first and second refractive indices being less than 0.01, an absolute value of a difference in the second and third refractive indices being greater than 0.1.

8. The head-mounted display of claim 1 , further comprising a second optical system disposed proximate the first optical system, the second optical system comprising a second partial reflector and a second multilayer reflective polarizer disposed adjacent to and spaced apart from the second partial reflector.

9. The head-mounted display of claim 8 , wherein the second multilayer reflective polarizer comprises at least one layer substantially optically uniaxial at at least one location, and wherein each chief ray that passes through the second optical system is first incident on the second multilayer reflective polarizer at an angle of incidence less than 30 degrees.

10. The head-mounted display of claim 1 , wherein each chief ray that passes through the first optical system is first incident on the first multilayer reflective polarizer at an angle of incidence less than 25 degrees.

11. The head-mounted display of claim 10 , wherein the at least one layer at the at least one location has a first refractive index in a thickness direction, a second refractive index in a second direction orthogonal to the thickness direction, and a third refractive index in a third direction orthogonal to the thickness direction and to the second direction, an absolute value of a difference in the first and second refractive indices being less than 0.01, an absolute value of a difference in the second and third refractive indices being greater than 0.1.

12. The head-mounted display of claim 11 , wherein each chief ray that passes through the first optical system is first incident on the first multilayer reflective polarizer at an angle of incidence less than 20 degrees.

13. The head-mounted display of claim 11 , wherein each chief ray that passes through the first optical system is incident on the first multilayer reflective polarizer at an angle of incidence less than 20 degrees and each time that the chief ray is incident on the first multilayer reflective polarizer.

14. The head-mounted display of claim 1 , wherein the desired plurality of wavelengths comprises a range of wavelengths from 400 nm to 700 nm.

15. The head-mounted display of claim 1 , wherein the first partial reflector is disposed on a first optical lens and the first multilayer reflective polarizer is disposed on a second optical lens.

16. The head-mounted display of claim 15 , wherein the first multilayer reflective polarizer is a thermoformed reflective polarizer substantially rotationally symmetric about the optical axis.

17. The head-mounted display of claim 15 , wherein at least one of the first and second optical lenses has a non-uniform edge profile.

18. The head-mounted display of claim 1 , wherein s1/r1 is at least 0.2 and less than 0.6.

19. The head-mounted display of claim 1 , further comprising an eye-tracking system.

20. The head-mounted display of claim 19 , wherein the first optical system is adapted to adjust a location of the first multilayer reflective polarizer or a location of the first partial reflector in response to signals received from the eye-tracking system.

Continuity (5)
Continuation 15787862 · Oct 19, 2017
Continuation 15379936 · Dec 15, 2016
Division 14865361 · Sep 25, 2015
Provisional Application 62214049 · Sep 3, 2015
Related Publication 20180267319A1 · Sep 20, 2018
Cited By (4)
US 12,231,613 US 12,306,402 US 12,443,072 US 12,517,357