IP Library › Granted Patent US 11,402,564
Granted Patent B2
US 11,402,564 · App. 17/386,472 · Granted Aug 2, 2022

Lighting fixture for direct and indirect lighting with patterned light emitting area

Inventors: Sergiy Vasylyev (Elk Grove, CA); Mykola Masalitin (Sacramento, CA)
Assignee: S.V.V. TECHNOLOGY INNOVATIONS, INC.
G02B6/0043G02B6/0061G02B6/0065G02B6/0036G02B6/0063G02B6/0076
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Quick Facts
Patent No.
US 11,402,564
App. No.
17/386,472
Granted
Aug 2, 2022
Kind
B2
Abstract

A lighting fixture for direct and indirect lighting employing a generally rectangular sheet of an optically transmissive material having a first broad-area surface configured for light output, an opposing second broad-area surface extending parallel to the first broad-area surface and configured for light output, a first edge configured for light input, and an opposing second edge configured for light input. The lighting fixture further employs two series of compact solid-state light sources optically coupled to the first and second edges, a plurality of patterned light extraction areas distributed over an area of the rectangular sheet and separated from one another and from the first and second edges by separation areas, and a housing encasing the solid-state light sources and one or more edges of the rectangular sheet.

Claims (26)

1. A lighting fixture for direct and indirect lighting, comprising:

a generally rectangular sheet of an optically transmissive material having a first broad-area surface configured for light output, an opposing second broad-area surface extending parallel to the first broad-area surface and configured for light output, a first edge configured for light input, and an opposing second edge configured for light input;

a first plurality of compact solid-state light sources optically coupled to the first edge;

a second plurality of compact solid-state light sources optically coupled to the second edge;

a plurality of patterned light extraction areas distributed over an area of the generally rectangular sheet of the optically transmissive material and separated from one another and from the first and second edges by separation areas, each of the plurality of patterned light extraction areas comprising a two-dimensional pattern of light extraction features formed in or on the first or second broad-area surface; and

a housing encasing the first plurality of compact solid-state light sources and the first edge,

wherein a width of at least one of the separation areas is less than a length or width dimension of at least one of the plurality of patterned light extraction areas and at least 10 times greater than a prevalent spacing distance between the light extraction features within the at least one of the plurality of patterned light extraction areas, and wherein an areal density of the light extraction features at a first edge of a first one of the plurality of patterned light extraction areas is less than an areal density of the light extraction features at a central area of the first one of the plurality of patterned light extraction areas.

2. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein an areal density of the light extraction features at an edge of a second one of the plurality of patterned light extraction areas is less than an areal density of the light extraction features at a central area of the second one of the plurality of patterned light extraction areas, and wherein an areal density of the light extraction features at an edge of a third one of the plurality of patterned light extraction areas is less than an areal density of the light extraction features at a central area of the third one of the plurality of patterned light extraction areas.

3. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein each of the plurality of patterned light extraction areas has a generally rectangular shape, and wherein an areal density of the light extraction features at a second edge of the first one of the plurality of patterned light extraction areas is less than the areal density of the light extraction features at the central area.

4. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein an areal density of the light extraction features at a second edge of the first one of the plurality of patterned light extraction areas is less than the areal density of the light extraction features at the central area, and wherein the first and second edges of the first one of the plurality of patterned light extraction areas are parallel to the first and second edges of the generally rectangular sheet of the optically transmissive material.

5. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein the separation areas collectively form a substantially transparent contiguous region spanning substantially all exposed surface area of the generally rectangular sheet of the optically transmissive material and surrounding at least one of the plurality of patterned light extraction areas.

6. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein at least one of the separation areas comprises a two-dimensional pattern of light extraction features which areal density is much less than an average areal density of an adjacent one of the plurality of patterned light extraction areas.

7. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein at least some of the light extraction features are discrete surface structures each comprising a semi-opaque layer of a light scattering material, and wherein the separation areas collectively form a substantially transparent contiguous region spanning substantially all exposed surface area of the generally rectangular sheet of the optically transmissive material and surrounding at least one of the plurality of patterned light extraction areas.

8. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein the width of at least one of the separation areas is at least 50 times greater than the prevalent spacing distance.

9. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein the housing is further encasing the second plurality of compact solid-state light sources and the second edge.

10. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein the generally rectangular sheet of the optically transmissive material is retained in a curved shape.

11. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein at least one of the light extraction features comprises a layer of an optically transmissive material having a variable thickness characterized by a curved cross-sectional profile, and wherein a ratio between a longest dimension of the least one of the light extraction features and a maximum thickness of the layer of the optically transmissive material is greater than 5.

12. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein at least one of the light extraction features comprises a layer of an optically transmissive material having a variable thickness characterized by a curved cross-sectional profile and has a size between 10 micrometers and 200 micrometers along a longest dimension and a total volume between 1,000 cubic micrometers to 100,000 cubic micrometers, and wherein a ratio between the longest dimension and a maximum thickness of the layer of the optically transmissive material is greater than 5.

13. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein at least one of the light extraction features comprises a layer of an optically transmissive material having a variable thickness characterized by a curved cross-sectional profile, and wherein at least some of the light extraction features are disposed in contact or overlap with one another.

14. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein at least one of the light extraction features comprises a semi-opaque layer of a light scattering material.

15. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein at least one of the light extraction features comprises a layer of an optically clear material having a variable thickness characterized by a curved cross-sectional profile and has a size between 10 micrometers and 200 micrometers along a longest dimension and a total volume between 1,000 cubic micrometers to 100,000 cubic micrometers.

16. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein the first and second broad-area surfaces are configured to output approximately equal amounts of light from the generally rectangular sheet of the optically transmissive material.

17. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein a ratio between light output from the first and second broad-area surfaces is about 1.2.

18. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein a ratio between light output from the first and second broad-area surfaces is about 1.5.

19. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein a the first broad-area surface is configured to output about twice as much light as the second broad-area surface.

20. A lighting fixture for direct and indirect lighting as recited in claim 1 , wherein at least one of the light extraction features comprises a layer of an optically transmissive material and has an RMS surface roughness parameter greater than 30 nanometers and less than 0.5 micrometers.

Continuity (4)
Continuation 16780872 · Feb 3, 2020
Continuation 16125686 · Sep 8, 2018
Provisional Application 62556415 · Sep 9, 2017
Related Publication 20210356643A1 · Nov 18, 2021
Cited By (2)
US 12,372,706 US 12,699,220