IP Library Granted Patent US 11,463,167
Granted Patent B1
US 11,463,167 · App. 16/716,442 · Granted Oct 4, 2022

IR transmissive visible-light barriers and devices including the same

Inventors: Rajesh Prasannavenkatesan (Menlo Park, CA); Luke Murphy (North Bend, WA); Elizabeth Tu (Seattle, WA); Peter Wesley Bristol (Seattle, WA)
Assignee: Facebook Technologies, LLC
H04B10/116G02B5/0236G02B5/206G02B5/207G02B5/208G02B5/22
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Quick Facts
Patent No.
US 11,463,167
App. No.
16/716,442
Granted
Oct 4, 2022
Kind
B1
Abstract

The disclosed visible-light barrier may include a light-scattering layer that preferentially scatters visible light over infrared light. The light-scattering layer may include (1) a substantially transparent or translucent material and (2) at least one of TiO 2 or ZnO particles dispersed within the substantially transparent or translucent material at a concentration of from approximately 0.02 wt % to approximately 2 wt %. Various other articles, devices, systems, and methods are also disclosed.

Claims (30)

1. A visible-light barrier comprising:

a light-scattering layer that preferentially scatters visible light over infrared light, the light-scattering layer comprising:

a solidified substantially transparent or translucent polymeric material; and

at least one of TiO 2 or ZnO particles dispersed within the substantially transparent or translucent polymeric material at a concentration of from approximately 0.02 wt % to approximately 2 wt % that effectively scatters different wavelengths of visible light in substantially similar proportions to give the light-scattering layer a non-black appearance.

2. The visible-light barrier of claim 1 , wherein the light-scattering layer has an opaque or substantially opaque visual appearance.

3. The visible-light barrier of claim 1 , wherein the light-scattering layer produces the non-black appearance in a lighted environment.

4. The visible-light barrier of claim 3 , wherein the non-black appearance comprises a gray color.

5. The visible-light barrier of claim 1 , wherein the at least one of TiO 2 or ZnO particles have an average diameter of less than approximately 400 nm.

6. The visible-light barrier of claim 1 , wherein the polymeric material comprises a polycarbonate material.

7. The visible-light barrier of claim 1 , wherein the light-scattering layer further comprises a diffusing agent.

8. The visible-light barrier of claim 7 , wherein the diffusing agent comprises mica particles having an average diameter of from approximately 400 nm to approximately 700 nm.

9. The visible-light barrier of claim 8 , wherein the light-scattering layer comprises the mica particles at a concentration of approximately 0.1 wt % or less.

10. The visible-light barrier of claim 1 , further comprising an infrared-transmissive layer that substantially blocks transmission of the visible light, wherein the light-scattering layer overlaps the infrared-transmissive layer.

11. The visible-light barrier of claim 1 , wherein at least approximately 30% of the infrared light incident on the light-scattering layer is transmitted through the light-scattering layer.

12. A device housing comprising the visible-light barrier of claim 1 , wherein the light-scattering layer forms an exterior-facing side of the device housing.

13. A visible-light barrier comprising:

an infrared-transmissive layer; and

a light-scattering layer overlapping the infrared-transmissive layer, the light-scattering layer preferentially scattering the visible light over the infrared light, the light-scattering layer comprising:

a solidified substantially transparent or translucent polymeric material; and

at least one of TiO 2 or ZnO particles dispersed within the substantially transparent or translucent polymeric material at a concentration of from approximately 0.02 wt % to approximately 2 wt % that effectively scatters different wavelengths of visible light in substantially similar proportions to give the light-scattering layer a non-black appearance.

14. The visible-light barrier of claim 13 , wherein the infrared-transmissive layer substantially blocks the visible light.

15. The visible-light barrier of claim 13 , wherein the infrared-transmissive layer absorbs approximately 95% or more of the visible light.

16. The visible-light barrier of claim 13 , wherein at least approximately 30% of the infrared light incident on the light-scattering layer is transmitted through both the light-scattering layer and the infrared-transmissive layer.

17. The visible-light barrier of claim 13 , wherein the polymeric material comprises a polymer-based coating material.

18. A device comprising:

at least one of an infrared light emitter or an infrared light sensor; and

a device housing comprising a visible-light barrier disposed between an exterior of the device and the at least one of the infrared light emitter or the infrared light sensor, the visible-light barrier comprising a light-scattering layer that preferentially scatters visible light over infrared light, the light-scattering layer comprising:

a solidified substantially transparent or translucent polymeric material; and

at least one of TiO 2 or ZnO particles dispersed within the substantially transparent or translucent polymeric material at a concentration of from approximately 0.02 wt % to approximately 2 wt % that effectively scatters different wavelengths of visible light in substantially similar proportions to give the light-scattering layer a non-black appearance.

19. The device of claim 18 , wherein the device comprises at least one of a head-mounted display, a hand-held controller, a remote control, a remote-controlled device, or a tracking sensor device.

Assignments (2)
CHANGE OF NAME Recorded Aug 12, 2022
From: FACEBOOK TECHNOLOGIES, LLC
To: META PLATFORMS TECHNOLOGIES, LLC
Reel/Frame 061162/0978 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2020
From: PRASANNAVENKATESAN, RAJESH; MURPHY, LUKE; TU, ELIZABETH; BRISTOL, PETER WESLEY
To: FACEBOOK TECHNOLOGIES, LLC
Reel/Frame 051850/0552 →