IP Library Granted Patent US 11,914,162
Granted Patent B1
US 11,914,162 · App. 17/884,512 · Granted Feb 27, 2024

Display devices with wavelength-dependent reflectors for eye tracking

Inventors: Evan Mark Richards (Phoenix, AZ); Cina Hazegh (Lafayette, CA)
Assignee: META PLATFORMS TECHNOLOGIES, LLC
G02B27/0179G02B27/0172G06F3/013G02B2027/0187
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Quick Facts
Patent No.
US 11,914,162
App. No.
17/884,512
Granted
Feb 27, 2024
Kind
B1
Abstract

An eye-tracking system includes two mirrors. A first mirror is positioned to transmit light, received at a first incident angle, reflected off an eye of a user toward a second mirror. The first mirror is also positioned to reflect the light, reflected from the second mirror, at a second incident angle. The second mirror is inclined from the first mirror so that the light transmitted through the first mirror is reflected by the second mirror toward the first mirror at a first reflection angle. The light reflected by the second mirror is reflected by the first mirror toward the second mirror at a second reflection angle greater than the first reflection angle. The eye-tracking system also includes one or more sensors positioned to detect the light reflected by the first mirror and the second mirror for determining a gaze direction of the eye of the user.

Claims (57)

1. An eye-tracking system, comprising:

a first mirror;

a second mirror optically coupled with the first mirror, wherein:

the first mirror is positioned to:

transmit first light reflected off an eye of a user toward the second mirror, the first light received by the first mirror at a first incident angle; and

reflect the first light received by the first mirror, reflected from the second mirror, at a second incident angle that is greater than the first incident angle; and

the second mirror is inclined at an acute angle from the first mirror so that the first light transmitted through the first mirror is reflected by the second mirror toward the first mirror at a first reflection angle, and the first light reflected by the second mirror is reflected by the first mirror toward the second mirror at a second reflection angle that is greater than the first reflection angle; and

one or more sensors positioned to detect the first light reflected by the first mirror and the second mirror for determining a gaze direction of the eye of the user.

2. The eye-tracking system of claim 1 , wherein:

a first surface of the first mirror includes a first wavelength dependent coating, the first surface of the first mirror facing the second mirror; and

a first surface of the second mirror includes a second wavelength dependent coating, the first surface of the second mirror facing the first surface of the first mirror, wherein the first wavelength dependent coating and the second wavelength dependent coating are configured to transmit visible light while reflecting infrared light.

3. The eye-tracking system of claim 2 , wherein:

the first light reflected off the eye of the user corresponds to infrared light;

the first incident angle is below a particular incident angle range and the second incident angle is included in the particular incident angle range; and

the first mirror is configured to transmit visible light having any angle of incidence on the first mirror.

4. The eye-tracking system of claim 3 , wherein:

the second wavelength dependent coating is configured to reflect the first light, transmitted by the first mirror, having any angle of incidence on the second mirror.

5. The eye-tracking system of claim 1 , wherein:

a first end of the first mirror has a first distance to a first end of the second mirror that is adjacent to the first end of the first mirror; and

a second end of the first mirror, opposite to the first end of the first mirror, has a second distance to a second end of the second mirror that is opposite to the first end of the second mirror and is adjacent to the second end of the first mirror so that the reflected first light propagates toward a region that includes the second end of the second mirror and the second end of the first mirror and away from a region that includes the first end of the second mirror and the first end of the first mirror.

6. The eye-tracking system of claim 5 , wherein:

the one or more sensors are positioned adjacent to the region that includes the second end of the second mirror and the second end of the first mirror.

7. The eye-tracking system of claim 1 , further including one or more light sources positioned to project the first light toward the eye of the user, wherein the first light is patterned.

8. The eye-tracking system of claim 1 , wherein:

the first mirror is a reflective linear polarizer; and

the first light transmitted by the first mirror has a first linear polarization and the first light reflected by the first mirror has a second linear polarization that is distinct from the first linear polarization.

9. The eye-tracking system of claim 8 , further including:

a wave plate positioned between the first mirror and the second mirror, the wave plate configured to convert linearly polarized light into circularly polarized light and convert circularly polarized light into linearly polarized light.

10. A display device, comprising:

the eye-tracking system of claim 1 ; and

one or more displays configured to provide second light, wherein the first mirror and the second mirror are positioned to transmit the second light toward the eye of the user.

11. An eye-tracking system, comprising:

a first mirror positioned to transmit first light reflected off an eye of a user;

a second mirror having an acute angle with the first mirror and positioned to receive the first light transmitted through the first mirror and reflect the first light toward the first mirror so that the first mirror receives and reflects the first light reflected by the second mirror; and

one or more sensors configured to detect the first light reflected by the second mirror and the first mirror for determining a gaze direction of the eye of the user.

12. The eye-tracking system of claim 11 , wherein:

a first surface of the first mirror includes a first wavelength dependent coating, the first surface of the first mirror facing the second mirror; and

a first surface of the second mirror includes a second wavelength dependent coating, the first surface of the second mirror facing the first surface of the first mirror, wherein the first wavelength dependent coating and the second wavelength dependent coating are configured to transmit visible light while reflecting infrared light.

13. The eye-tracking system of claim 12 , wherein:

the first light corresponds to infrared light.

14. The eye-tracking system of claim 13 , wherein:

the first mirror is configured to transmit visible light having any angle of incidence on the first mirror; and

the second wavelength dependent coating is configured to reflect the first light, transmitted by the first mirror, having any angle of incidence on the second mirror.

15. The eye-tracking system of claim 11 , wherein:

a first end of the first mirror has a first distance to a first end of the second mirror that is adjacent to the first end of the first mirror; and

a second end of the first mirror, opposite to the first end of the first mirror, has a second distance to a second end of the second mirror that is opposite to the first end of the second mirror and is adjacent to the second end of the first mirror so that the reflected first light propagates toward a region that includes the second end of the second mirror and the second end of the first mirror and away from a region that includes the first end of the second mirror and the first end of the first mirror.

16. The eye-tracking system of claim 15 , wherein:

the one or more sensors are positioned adjacent to the region that includes the second end of the second mirror and the second end of the first mirror.

17. The eye-tracking system of claim 11 , further including one or more light sources positioned to project the first light toward the eye of the user, wherein the first light is patterned.

18. The eye-tracking system of claim 11 , wherein:

the first mirror is a reflective linear polarizer; and

the first light transmitted by the first mirror has a first linear polarization and the first light reflected by the first mirror has a second linear polarization that is distinct from the first linear polarization.

19. The eye-tracking system of claim 18 , further including:

a wave plate positioned between the first mirror and the second mirror, the wave plate configured to convert linearly polarized light into circularly polarized light and convert circularly polarized light into linearly polarized light.

20. A display device, comprising:

the eye-tracking system of claim 11 ; and

one or more displays configured to provide second light, wherein the first mirror and the second mirror are positioned to transmit the second light toward the eye of the user.

Continuity (3)
Continuation 17246347 · Apr 30, 2021
Continuation 16785249 · Feb 7, 2020
Provisional Application 62804179 · Feb 11, 2019