IP Library Granted Patent US 10,137,277
Granted Patent B2
US 10,137,277 · App. 16/031,121 · Granted Nov 27, 2018

Circadian-friendly LED light source

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Quick Facts
Patent No.
US 10,137,277
App. No.
16/031,121
Granted
Nov 27, 2018
Kind
B2
Abstract

Methods and apparatus for providing circadian-friendly LED light sources are disclosed. A light source is formed to include a first LED emission (e.g., one or more LEDs emitting a first spectrum) and a second LED emission (e.g., one or more LEDs emitting a second spectrum) wherein the first and second LED emissions are combined in a first ratio and in a second ratio such that while changing from the first ratio to the second ratio the relative circadian stimulation is varied while maintaining a color rendering index above 80.

Claims (28)

1. A light emitter comprising:

one or more LEDs configured to emit LED light, said one or more LEDs comprising at least a violet pump LED configured to emit a pump light with a peak wavelength around 405 nm;

at least one phosphor configured to emit converted light by converting a fraction of said pump light; and

wherein said light emitter emits an emitted light formed by a combination of a fraction of said LED light and said converted light, said emitted light having a spectral power distribution (SPD), said SPD has a first power from 350 nm to 850 nm and a second power from 400 nm to about 440 nm, wherein said second power is at least 25% of said first power, and wherein said SPD has a CRI greater than 80 and an R9 greater than 0.

2. The light emitter of claim 1 , wherein said one or more LEDs comprises at least one blue LED.

3. The light emitter of claim 1 , further comprising a blue emitter.

4. The light emitter of claim 3 , wherein said blue emitter is a blue LED.

5. The light emitter of claim 3 , wherein said blue emitter is a phosphor.

6. The light emitter of claim 1 , wherein said R9 is at least 50.

7. The light emitter of claim 1 , wherein said emitted light has a chromaticity within +/−five Du′v′ points of the Planckian locus.

8. The light emitter of claim 1 , wherein said emitted light has a chromaticity below the Planckian locus.

9. The light emitter of claim 1 , wherein said SPD has a CCT ranging from about 3000K to about 9000K.

10. The light emitter of claim 1 , wherein said SPD has a local peak corresponding to leaked pump light.

11. The light emitter of claim 10 , wherein said first LED light comprises at least a fraction of said violet light and said second LED light comprises at least a fraction of said second light.

12. The light emitter of claim 10 , wherein said second emitted light has a second SPD, said second SPD has a third power from 440 nm to 500 nm and a fourth power from 400 nm to about 440 nm, wherein said third power is less than 10% of said fourth power.

13. The light emitter of claim 10 , configured to switch between said first emitted light and said second emitted light based on at least one of the following inputs: time, date, user command.

14. The light emitter of claim 10 , wherein said R9 is at least 50.

15. The light emitter of claim 10 , wherein said first emitted light has a chromaticity within +/−five Du′v′ points of the Planckian locus.

16. The light emitter of claim 10 , wherein said first emitted light has a chromaticity below the Planckian locus.

17. The light emitter of claim 10 , wherein said first SPD has a CCT ranging from about 3000K to about 9000K.

18. The light emitter of claim 1 , wherein said at least one phosphor comprises two or more phosphors.

19. A light emitter for emitting at least a first and second emitted light, said light emitter comprising:

one or more LEDs configured to emit LED light, said one or more LEDs comprising at least a violet LED configured to emit a violet light with a peak wavelength around 405 nm and a second LED configured to emit a second light, wherein said one or more LEDs are configured to emit at least a first LED light and a second LED light by varying the amount of said at least one violet LED and said at least one second LED in said LED light;

at least one phosphor configured to emit converted light by converting a fraction of said LED light,

wherein said emitted light comprises at least a first emitted light comprising at least a portion of said first LED light and said converted light, or a second emitted light comprising at least a portion of said second LED light, and wherein said first emitted light has a first spectral power distribution (SPD), said first SPD has a first power from 350 nm to 850 nm and a second power from 400 nm to about 440 nm, wherein said second power is at least 25% of said first power, and wherein said SPD has a CRI greater than 80 and an R9 greater than 0.

20. The light emitter of claim 19 , wherein said second LED is a blue LED.

21. The light emitter of claim 19 , wherein said second LED is a violet LED.

22. The light emitter off claim 19 , where said second LED light is substantially all said second light.

Assignments (3)
NUNC PRO TUNC ASSIGNMENT Recorded Feb 21, 2022
From: ECOSENSE LIGHTING INC.
To: KORRUS, INC.
Reel/Frame 059239/0614 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2020
From: SORAA, INC.
To: ECOSENSE LIGHTING, INC.
Reel/Frame 052725/0022 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2019
From: KRAMES, MICHAEL R.; DAVID, AURELIEN J.F
To: SORAA, INC.
Reel/Frame 051276/0991 →
Cited By (1)
US 12,480,625