IP Library Granted Patent US 11,901,492
Granted Patent B2
US 11,901,492 · App. 17/103,798 · Granted Feb 13, 2024

High color rendering white light emitting devices and high color rendering photoluminescence compositions

Inventors: Yi-Qun Li (Danville, CA); Gang Wang (Sunnyvale, CA); Haitao Yang (San Jose, CA); Binghua Chai (Fremont, CA)
Assignee: Intematix Corporation
H01L33/504
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Quick Facts
Patent No.
US 11,901,492
App. No.
17/103,798
Granted
Feb 13, 2024
Kind
B2
Abstract

A light emitting device comprises: a solid-state light emitter which generates blue excitation light with a dominant wavelength from 440 nm to 470 nm; a yellow to green photoluminescence material which generates light with a peak emission wavelength from 500 nm to 575 nm; a broadband orange to red photoluminescence material which generates light with a narrowband peak emission wavelength from 580 nm to 620 nm; and a narrowband red manganese-activated fluoride phosphor which generates light with a peak emission wavelength from 625 nm to 635 nm. The device generates white light with a spectrum having a broad emission peak from about 530 nm to about 600 nm and a narrow emission peak and wherein the ratio of the peak emission intensity of the broad emission peak to the peak emission intensity of the narrow emission peak is at least 20%.

Claims (44)

1. A light emitting device comprising:

a solid-state light emitter with a wavelength from 440 nm to 470 nm;

a cerium-activated garnet phosphor;

a broadband europium-activated nitride orange to red phosphor of general composition CaAlSiN 3 :Eu; and

a narrowband manganese-activated fluoride red phosphor selected from the group consisting of: K 2 SiF 6 :Mn 4+ , K 2 GeF 6 :Mn 4+ , and K 2 TiF 6 :Mn 4+ ;

wherein in response to a voltage, the device generates light comprising a first maximum intensity at a wavelength in a range from 530 nm to 600 nm and a second maximum intensity at a wavelength in a range from 625 nm to 635 nm, wherein a ratio of the first maximum intensity to the second maximum intensity is about 20% to about 50%; and

wherein said light comprises a color temperature in a range from about 2200K to about 6500K, a CRI Ra of at least 90, and the device has a luminous efficacy of at least 330 lm/W opt .

2. The light emitting device of claim 1 , wherein the ratio of the first maximum intensity to the second maximum intensity is about 20% to about 30%.

3. The light emitting device of claim 2 , wherein the device generates light with a color temperature from about 2200K to about 3000K.

4. The light emitting device of claim 3 , wherein the first maximum intensity comprises a broad emission peak in a range from about 580 nm to about 600 nm.

5. The light emitting device of claim 1 , wherein the ratio of the first maximum intensity to the second maximum intensity is about 30% to about 35%.

6. The light emitting device of claim 5 , wherein the device generates light with a color temperature from about 3000K to about 4000K.

7. The light emitting device of claim 6 , wherein the first maximum intensity comprises a broad emission peak in a range from about 570 nm to about 580 nm.

8. The light emitting device of claim 1 , wherein the ratio of the first maximum intensity to the second maximum intensity is about 35% to about 40%.

9. The light emitting device of claim 8 , wherein the device generates light with a color temperature from about 4000K to about 5000K.

10. The light emitting device of claim 9 , wherein the first maximum intensity comprises a broad emission peak in a range from about 550 nm to about 570 nm.

11. The light emitting device of claim 1 , wherein the ratio of the first maximum intensity to the second maximum intensity is about 40% to about 50%.

12. The light emitting device of claim 11 , wherein the device generates light with a color temperature from about 5000K to about 6500K.

13. The light emitting device of claim 12 , wherein the first maximum intensity comprises a broad emission peak in a range from about 530 nm to about 550 nm.

14. The light emitting device of claim 1 , wherein the broadband europium-activated nitride orange to red phosphor has a peak emission wavelength from about 600 nm to about 620 nm.

15. The light emitting device of claim 1 , wherein the cerium-activated garnet phosphor is selected from the group consisting of: a phosphor of general composition (Y,Lu) 3 (Al,Ga) 5 O 12 :Ce; a phosphor of general composition Y 3 (Al,Ga) 5 O 12 :Ce; and a phosphor of general composition Lu 3 Al 5 O 12 :Ce.

16. The light emitting device of claim 1 , wherein the device generates light with at least one of: a CRI R9 of at least 50 and a CRI R8 of at least 72.

17. A light emitting device comprising:

a solid-state light emitter with a wavelength from 440 nm to 470 nm;

a cerium-activated garnet phosphor;

a broadband europium-activated nitride orange to red phosphor of general composition CaAlSiN 3 :Eu; and

a narrowband manganese-activated fluoride red phosphor selected from the group consisting of: K 2 SiF 6 :Mn 4+ , K 2 GeF 6 :Mn 4+ , and K 2 TiF 6 :Mn 4+ ;

wherein:

in response to a voltage, the device generates light comprising a color temperature in a range from about 2200K to about 6500K, a general CRI Ra of at least 90, and a spectrum having a maximum intensity in a range from 530 nm to 600 nm; wherein the maximum intensity is in a range from about 580 nm to 600 nm when the color temperature is in a range from about 2200K to about 3000K;

the maximum intensity is in a range from about 570 nm to 580 nm when the color temperature is in a range from about 3000K to 4000K;

the maximum intensity is in a range from about 550 nm to 570 nm when the color temperature is in a range from about 4000K to 5000K;

the maximum intensity is in a range from about 530 nm to 550 nm when the color temperature is a range from about 5000K to 6500K; and

wherein the device has a luminous efficacy of at least 330 lm/W opt .

18. The light emitting device of claim 17 , wherein the broadband europium-activated nitride orange to red phosphor has a peak emission wavelength from about 600 nm to about 620 nm.

19. The light emitting device of claim 17 , wherein the device generates light with at least one of: a CRI R8 of at least 72 and a CRI R9 of at least 50.

20. A light emitting device comprising:

a solid-state light emitter with a wavelength from 440 nm to 470 nm;

a cerium-activated garnet phosphor;

a broadband europium-activated nitride orange to red phosphor of general composition CaAlSiN 3 :Eu; and

a narrowband manganese-activated fluoride red phosphor selected from the group consisting of: K 2 SiF 6 :Mn 4+ , K 2 GeF 6 :Mn 4+ , and K 2 TiF 6 :Mn 4+ ;

wherein in response to a voltage, the device generates light comprising a Correlated Color Temperature in a range from about 2200K to about 6500K, a luminance, a general CRI Ra of at least 90, and a spectrum, which over a wavelength range from about 500 nm to about 600 nm, a maximum deviation between the intensity of light emitted by the device compared with the intensity of light of the spectrum of a black-body or standard illuminant having the same Correlated Color Temperature and luminance is less than 0.3; and the device has a luminous efficacy of at least 330 lm/W opt .

21. The light emitting device of claim 20 , wherein said maximum deviation is less than 0.2.

22. The light emitting device of claim 20 , wherein said maximum deviation is less than 0.1.

23. The light emitting device of claim 20 , wherein the device generates light with at least one of: a CRI R8 of at least 72 and a CRI R9 of at least 50.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2023
From: INTEMATIX CORPORATION
To: BRIDGELUX, INC.
Reel/Frame 064526/0405 →