See-through computer display systems
Aspects of the present invention relate to methods and systems for the see-through computer display systems with integrated IR eye imaging technologies.
1. A wearable head device with an optical system, the optical system comprising:
a display panel, the display panel including:
a plurality of visible light emitters configured to project visible image light in a first direction toward an eye of a user of the wearable head device,
a plurality of infrared emitters configured to project infrared light in the first direction toward the eye of the user, and
a plurality of infrared receivers configured to receive a reflection of the infrared light from the eye of the user;
wherein a first region of the display panel is configured to present the visible image light at first image resolution, the first region of the display panel comprising:
a first set of infrared emitters of the plurality of infrared emitters, the first set of infrared emitters having a first density associated with the first image resolution; and
a first set of visible light emitters of the plurality of visible light emitters, the first set of visible light emitters having a second density associated with the first image resolution,
wherein a second region of the display panel is configured to present the visible image light at a second image resolution, the second region of the display panel comprising:
a second set of visible light emitters of the plurality of visible light emitters, the second set of visible light emitters having a third density associated with the second image resolution.
2. The wearable head device of claim 1 , wherein the plurality of visible light emitters comprises micro-LEDs to project the visible image light.
3. The wearable head device of claim 1 , wherein the plurality of visible light emitters comprises OLEDs to project the visible image light.
4. The wearable head device of claim 1 , wherein the plurality of visible light emitters comprises reflective pixels to project the visible image light.
5. The wearable head device of claim 1 , wherein the reflection of the infrared light is received via an iris of the eye.
6. The wearable head device of claim 1 , wherein the reflection of the infrared light is received via a pupil of the eye.
7. The wearable head device of claim 1 , wherein the reflection of the infrared light is received via a retina of the eye.
8. The wearable head device of claim 1 , further comprising an angled partially-reflective partially-transmissive surface configured to redirect the visible image light and the infrared light toward the eye, and further configured to redirect the reflection of the infrared light from the eye toward the plurality of infrared receivers.
9. The wearable head device of claim 1 , wherein the second region of the display panel further comprises a second set of infrared emitters of the plurality of infrared emitters, the second set of infrared emitters having a fourth density associated with the second image resolution.
10. An optical system comprising:
optics comprising a display panel, the display panel comprising:
a plurality of visible light emitters, the plurality of visible light emitters configured to project visible image light in a first direction;
a plurality of infrared emitters, the plurality of infrared emitters configured to project infrared light in the first direction, and
a plurality of infrared receivers, the plurality of infrared receivers configured to receive a reflection of infrared light from an eye of a user,
wherein a first region of the display panel is configured to present the visible image light at first image resolution, the first region of the display panel comprising:
a first set of infrared emitters of the plurality of infrared emitters, the first set of infrared emitters having a first density associated with the first image resolution; and
a first set of visible light emitters of the plurality of visible light emitters, the first set of visible light emitters having a second density associated with the first image resolution,
wherein a second region of the display panel is configured to present the visible image light at a second image resolution, the second region of the display panel comprising:
a second set of visible light emitters of the plurality of visible light emitters, the second set of visible light emitters having a third density associated with the second image resolution.
11. The optical system of claim 10 , wherein the plurality of visible light emitters comprises micro-LEDs to project the visible image light.
12. The optical system of claim 10 , wherein the plurality of visible light emitters comprises OLEDs to project the visible image light.
13. The optical system of claim 10 , wherein the plurality of visible light emitters comprises reflective pixels to project the visible image light.
14. The optical system of claim 10 , wherein the reflection of the infrared light is received via an iris of the eye.
15. The optical system of claim 10 , wherein the reflection of the infrared light is received via a pupil of the eye.
16. The optical system of claim 10 , wherein the reflection of the infrared light is received via a retina of the eye.
17. The optical system of claim 10 , wherein:
a second region of the display panel includes a second set of infrared emitters of the plurality of infrared emitters, the second set of infrared emitters having a fourth density associated with the second image resolution.
18. A method comprising:
projecting, by a display panel via a plurality of visible light emitters, visible image light toward an eye of a user of a wearable head device;
projecting, by the display panel via a plurality of infrared emitters, infrared light toward the eye of the user; and
receiving, at the display panel via a plurality of infrared receivers, a reflection of infrared light from the eye of the user,
wherein a first region of the display panel is configured to present the visible image light at first image resolution, the first region of the display panel comprising:
a first set of infrared emitters of the plurality of infrared emitters, the first set of infrared emitters having a first density associated with the first image resolution; and
a first set of visible light emitters of the plurality of visible light emitters, the first set of visible light emitters having a second density associated with the first image resolution,
wherein a second region of the display panel is configured to present the visible image light at a second image resolution, the second region of the display panel comprising:
a second set of visible light emitters of the plurality of visible light emitters, the second set of visible light emitters having a third density associated with the second image resolution.
19. The method of claim 18 , wherein the plurality of visible light emitters comprises at least one of micro-LEDs, OLEDs, and reflective pixels to project the visible image light.
20. The method of claim 18 , wherein the reflection of infrared light is received via at least one of a pupil of the eye, an iris of the eye, and a retina of the eye.