IP Library Granted Patent US 11,933,476
Granted Patent B2
US 11,933,476 · App. 17/639,445 · Granted Mar 19, 2024

Luminaires and components thereof

Inventors: Jin Hong Lim (Morrisville, NC); Mark Lackey (Racine, WI); Rob Sanchez (Racine, WI); Charles Draper (Racine, WI); Daniel Van Epps (Racine, WI); Brad Thomas (Racine, WI)
Assignee: CREE LIGHTING USA LLC
F21V13/04F21V5/045F21V5/08F21V7/0091F21V3/00F21Y2105/18F21Y2115/10
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,933,476
App. No.
17/639,445
Granted
Mar 19, 2024
Kind
B2
Abstract

Optical lenses and associated luminaire are described herein. In one aspect, a lens comprises a light receiving side comprising grooves for receiving light emitting diodes, the grooves defined by a central refractive region and walls comprising total internal reflection faces; and a light extraction side opposite the light receiving side, the light extraction side comprising refractive extraction surfaces, total internal reflection extraction surfaces, or combinations thereof. In some embodiments, luminaire comprises an array of light emitting diodes; and the lens positioned over the array of light emitting diodes.

Claims (28)

1. A lens comprising:

a light receiving side comprising grooves for receiving light emitting diodes, the grooves arranged in a concentric format and extending continuously between the light emitting diodes in a radial direction and defined by a central refractive region and walls comprising total internal reflection faces; and

a light extraction side opposite the light receiving side, the light extraction side comprising refractive extraction surfaces, total internal reflection extraction surfaces, or combinations thereof, wherein the refractive extraction surfaces, total internal reflection extraction surfaces or combinations thereof provide a bidirectional light distribution from the lens.

2. The lens of claim 1 , wherein the light extraction side comprises facets including the total internal reflection extraction surfaces.

3. The lens of claim 2 , wherein the facets comprise a triangular cross-section.

4. The lens of claim 2 , wherein the facets are concentric with one another.

5. The lens of claim 2 , wherein the facets are parallel to one another.

6. The lens of claim 1 , wherein the central refractive region comprises a convex surface.

7. The lens of claim 1 , wherein the central refractive region and total internal reflection faces direct light received by the lens to the refractive extraction surfaces and the total internal reflection extraction surfaces.

8. The lens of claim 7 , wherein the lighting distribution has a full width at half maximum intensity of 120 degrees to 160 degrees.

9. The lens of claim 7 , wherein the lighting distribution has a full width at half maximum intensity greater than 160 degrees.

10. The lens of claim 1 , wherein the lighting distribution has a spacing criteria 0.7 to 1.2.

11. The lens of claim 1 , wherein the lighting distribution has a spacing criteria 1.2 to 1.6.

12. The lens of claim 1 , wherein the lighting distribution has a spacing criteria 1.6 to 2.1.

13. The lens of claim 1 , wherein the lighting distribution has a spacing criteria >2.1.

14. A luminaire comprising:

an array of light emitting diodes; and

a lens positioned over the array of light emitting diodes, wherein the lens comprises a light receiving side including grooves for receiving light emitting diodes, the grooves arranged in a concentric format and extending continuously between the light emitting diodes in a radial direction and defined by a central refractive region and walls comprising total internal reflection faces, and a light extraction side opposite the light receiving side, the light extraction side comprising refractive extraction surfaces, total internal reflection extraction surfaces, or combinations thereof, wherein the refractive extraction surfaces, total internal reflection extraction surfaces or combinations thereof provide a bidirectional light distribution from the lens.

15. A lens comprising:

a light receiving side comprising grooves for receiving light emitting diodes, the grooves extending continuously between the light emitting diodes and defined by a central refractive region and walls comprising total internal reflection faces; and

a light extraction side opposite the light receiving side, the light extraction side comprising refractive extraction surfaces, total internal reflection extraction surfaces, or combinations thereof to provide a lighting distribution from the lens, wherein the lighting distribution has a spacing criteria of 0.7 to 2.1.

16. The lens of claim 15 , wherein the lighting distribution has a full width at half maximum intensity of 120 degrees to 160 degrees.

17. A lens comprising:

a light receiving side comprising grooves for receiving light emitting diodes, the grooves arranged in a recti-linear format and extending continuously between the light emitting diodes in two or more linear directions and defined by a central refractive region and walls comprising total internal reflection faces; and

a light extraction side opposite the light receiving side, the light extraction side comprising refractive extraction surfaces, total internal reflection extraction surfaces, or combinations thereof, wherein the refractive extraction surfaces, total internal reflection extraction surfaces or combinations thereof provide a bidirectional light distribution from the lens.

18. The lens of claim 17 , wherein the light extraction side comprises facets including the total internal reflection extraction surfaces.

19. The lens of claim 17 , wherein the central refractive region comprises a convex surface.

20. The lens of claim 17 , wherein the central refractive region and total internal reflection faces direct light received by the lens to the refractive extraction surfaces and the total internal reflection extraction surfaces.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 22, 2026
From: LUMEN ACQUISITION HOLDINGS, LLC
To: LED-IP MANAGEMENT, LLC
Reel/Frame 075624/0358 →
CHANGE OF NAME Recorded Nov 16, 2023
From: IDEAL INDUSTRIES LIGHTING LLC
To: CREE LIGHTING USA LLC
Reel/Frame 065601/0333 →
SECURITY INTEREST Recorded Sep 13, 2023
From: IDEAL INDUSTRIES LIGHTING LLC
To: FGI WORLDWIDE LLC
Reel/Frame 064897/0413 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2023
From: LIM, JIN HONG; LACKEY, MARK; SANCHEZ, ROB; DRAPER, CHARLES; VAN EPPS, DANIEL JAMES, JR.; THOMAS, BRAD
To: IDEAL INDUSTRIES LIGHTING, LLC.
Reel/Frame 062976/0241 →