IP Library Granted Patent US 10,401,630
Granted Patent B2
US 10,401,630 · App. 15/384,745 · Granted Sep 3, 2019

Multifocal system with polarizing elements

Inventors: Yusufu Njoni Bamaxam Sulai (Bothell, WA); Nicholas Daniel Trail (Bothell, WA); Wai Sze Tiffany Lam (Redmond, WA)
Assignee: Facebook Technologies, LLC
G02B27/0179G02B27/0172G02B27/286G02F1/0136G02F1/29G02B27/0093G02B2027/0185G02B2027/0187G02F2001/294G02F2203/50
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Quick Facts
Patent No.
US 10,401,630
App. No.
15/384,745
Granted
Sep 3, 2019
Kind
B2
Abstract

A head-mounted display (HMD) includes a multifocal block having one or more possible focal distances and includes a multifocal structure. The multifocal structure has a first focal distance and a second focal distance of the one or more possible focal distances. The multifocal structure includes one or more optical components positioned in series such that light from an electronic display is received and passes through each of the one or more optical components at least once before being output from the multifocal structure. The one or more optical components includes a switchable half waveplate (SHWP). The SHWP has a first state that causes the multifocal structure to output image light at the first focal distance, and a second state that causes the multifocal structure to output the image light at the first focal distance.

Claims (41)

1. A head-mounted display (HMD) comprising:

a multifocal block having a plurality of possible focal distances and including a multifocal structure, the multifocal structure having a first focal distance and a second focal distance of the plurality of possible focal distances, the multifocal structure comprising:

a plurality of optical components positioned in series such that light from an electronic display is received and passes through each of the plurality of optical components at least once before being output from the multifocal structure, the plurality of optical components including:

a switchable half waveplate (SHWP), the SHWP having a first state that causes the multifocal structure to output image light at the first focal distance, and a second state that causes the multifocal structure to output the image light at the second focal distance.

2. The HMD of claim 1 , wherein the first state causes a polarization change in the image light which results in at least one reflection of the image light occurring within the multifocal structure prior to exiting the multifocal structure.

3. The HMD of claim 1 , wherein the plurality of optical components of the multifocal structure further includes a reflective element positioned between an input of the multifocal structure and the SHWP, and the reflective element is configured to reflect 50 percent of incident image light and transmit a remaining 50 percent of the incident image light.

4. The HMD of claim 1 , wherein the plurality of optical components of the multifocal structure further includes a reflective polarizer positioned between an input of the multifocal structure and the SHWP.

5. The HMD of claim 1 , wherein the plurality of optical components of the multifocal structure further includes two quarter waveplates.

6. The HMD of claim 1 , wherein the plurality of optical components of the multifocal structure further includes a polarization rotator between the SHWP and an output of the multifocal structure, the polarization rotator configured to rotate a polarization of linearly polarized light.

7. The HMD of claim 1 , wherein the multifocal block includes a second multifocal structure, the second multifocal structure having a third focal distance and a fourth focal distance of the plurality of focal distances, and the second multifocal structure includes a second SHWP, the second SHWP having a third state and a fourth state, and different combinations of settings of the first state, the second state, the third state, and the fourth state are associated with respective focal distances of possible focal distances.

8. The HMD of claim 1 , further comprising:

an eye tracking system configured to determine eye tracking information for an eye of the user;

and wherein the multifocal structure is further configured to:

determine a focal distance, of the plurality of focal distances, using the eye tracking information, wherein the focal distance is the first focal distance,

generate focus instructions using the determined first focal distance, and

provide the focus instructions to the multifocal block, wherein responsive to receipt of the focus instructions the multifocal block configures the multifocal block to output light at the first focal distance.

9. The HMD of claim 1 , wherein the plurality of optical components of the multifocal structure further includes:

a first polarizer configured to linearly polarize light in accordance with a first axis orientation; and

a second polarizer located after the SHWP, the second polarizer configured to linearly polarize light in accordance with a second axis orientation.

10. The HMD of claim 5 , wherein the second axis orientation that is orthogonal to the first axis orientation.

11. The HMD of claim 5 , wherein the second axis orientation that is the same as the first axis orientation.

12. A head-mounted display (HMD) comprising:

an electronic display configured to emit image light; and

a multifocal block having a plurality of possible focal distances and including a multifocal structure, the multifocal structure having a first focal distance and a second focal distance of the plurality of focal distances, the multifocal structure comprising:

a plurality of optical components positioned in series such that light from the electronic display is received and passes through each of the plurality of optical components at least once before being output from the multifocal structure, the plurality of optical components including:

a switchable half waveplate (SHWP), the SHWP having a first state that causes the multifocal structure to output the image light at the first focal distance, and a second state that causes the multifocal structure to output the image light at the second focal distance.

13. The HMD of claim 12 , wherein the first state causes a polarization change in the image light which results in at least one reflection of the image light occurring within the multifocal structure prior to exiting the multifocal structure.

14. The HMD of claim 12 , wherein the plurality of optical components of the multifocal structure further includes a reflective element positioned between an input of the multifocal structure and the SHWP, and the reflective element is configured to reflect 50 percent of incident image light and transmit a remaining 50 percent of the incident image light.

15. The HMD of claim 12 , wherein the plurality of optical components of the multifocal structure further includes a reflective polarizer positioned between an input of the multifocal structure and the SHWP.

16. The HMD of claim 12 , wherein the plurality of optical components of the multifocal structure further includes:

a first polarizer configured to linearly polarize light in accordance with a first axis orientation; and

a second polarizer located after the SHWP, the second polarizer configured to linearly polarize light in accordance with a second axis orientation.

17. The HMD of claim 12 , wherein the plurality of optical components of the multifocal structure further includes two quarter waveplates.

18. The HMD of claim 12 , wherein the plurality of optical components of the multifocal structure further includes a polarization rotator between the SHWP and an output of the multifocal structure, the polarization rotator configured to rotate a polarization of linearly polarized light.

19. The HMD of claim 12 , wherein the multifocal block includes a second multifocal structure, the second multifocal structure having a third focal distance and a fourth focal distance of the plurality of focal distances, and the second multifocal structure includes a second SHWP, the second SHWP having a third state and a fourth state, and different combinations of settings of the first state, the second state, the third state, and the fourth state are associated with respective focal distances of possible focal distances.

20. The HMD of claim 12 , further comprising:

an eye tracking system configured to determine eye tracking information for an eye of the user;

and wherein the multifocal structure is further configured to:

determine a focal distance, of the plurality of focal distances, using the eye tracking information, wherein the focal distance is the first focal distance,

generate focus instructions using the determined first focal distance, and

provide the focus instructions to the multifocal block, wherein responsive to receipt of the focus instructions the multifocal block configures the multifocal block to output light at the first focal distance.

Assignments (3)
CHANGE OF NAME Recorded Jun 8, 2022
From: FACEBOOK TECHNOLOGIES, LLC
To: META PLATFORMS TECHNOLOGIES, LLC
Reel/Frame 060315/0224 →
CHANGE OF NAME Recorded Sep 12, 2018
From: OCULUS VR, LLC
To: FACEBOOK TECHNOLOGIES, LLC
Reel/Frame 047178/0616 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2017
From: SULAI, YUSUFU NJONI BAMAXAM; TRAIL, NICHOLAS DANIEL; LAM, WAI SZE TIFFANY
To: OCULUS VR, LLC
Reel/Frame 040864/0601 →
Continuity (1)
Related Publication 20180172999A1 · Jun 21, 2018
Cited By (1)
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