IP Library Granted Patent US 10,347,801
Granted Patent B2
US 10,347,801 · App. 15/506,684 · Granted Jul 9, 2019

Light emitting device

Inventor: Josef Andreas Schug (Wuerselen, DE)
Assignee: Koninklijke Philips N.V.
H01L33/504F21K9/64F21V9/30F21V9/40H01L33/507H01S5/0092H01S5/022
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Quick Facts
Patent No.
US 10,347,801
App. No.
15/506,684
Granted
Jul 9, 2019
Kind
B2
Abstract

The present invention relates to a light emitting device comprising: a substrate; a translucent light mixing element arranged on the substrate; a color converting element arranged on top of the translucent light mixing element and arranged such that light from the translucent light mixing element is coupled into the color converting element; and a laser diode configured to emit light of a first color into the translucent light mixing element; wherein the color converting element is configured to convert a part of the light of the first color to a second color, to mix light of the first color with light of the second color to generate light of a third color, and to emit light of the third color; and wherein the translucent light mixing element has a thermal conductivity exceeding 10 W/mK.

Claims (32)

1. A light emitting device comprising:

a substrate on a heat sink;

a translucent light mixing element arranged on the substrate;

a color converting element arranged on top of the translucent light mixing element and arranged such that light from the translucent light mixing element is coupled into the color converting element; and

a laser diode configured to emit light of a first color into the translucent light mixing element;

wherein the color converting element is configured to convert a part of the light of the first color to a second color, to mix light of the first color with light of the second color to generate light of a third color, and to emit light of the third color; and

wherein the translucent light mixing element has a thermal conductivity exceeding 10W/mK, such that the color converting element can withstand a power density of 2 W/mm 2 or more without temperature quenching.

2. The light emitting device of claim 1 , wherein the translucent light mixing element is made from at least one of sapphire, aluminum oxynitride, yttrium oxide, yttrium aluminum garnet, and magnesium fluoride.

3. The light emitting device of claim 1 , wherein the color converting element is adapted to withstand a power density of 4 W/mm 2 or more.

4. The light emitting device of claim 1 , wherein the substrate is a common substrate onto which both of the laser diode and the color converting element are arranged.

5. The light emitting device of claim 1 , wherein the laser diode is arranged in close proximity to the color converting element.

6. The light emitting device of claim 1 , wherein at least one of the color converting element and the translucent light mixing element comprises reflective coatings.

7. The light emitting device of claim 1 , wherein the laser diode is configured to emit the light of the first color into a sub portion of a side of the translucent light mixing element, and wherein the translucent light mixing element is provided with reflective coatings fully covering the side except for the sub portion.

8. The light emitting device of claim 1 , wherein the laser diode is configured to emit the light of the first color along a surface of the substrate into the translucent light mixing element, and wherein the color converting element is arranged to emit light in a direction substantially perpendicular to the surface of the substrate.

9. The light emitting device of claim 1 , further comprising a translucent wave guide element arranged between the laser diode and the translucent light mixing element, wherein the laser diode is configured to emit the light of the first color into the translucent light mixing element via the translucent wave guide element.

10. The light emitting device of claim 1 , further comprising a lens arranged between the laser diode and the translucent light mixing element.

11. The light emitting device of claim 1 , further comprising an additional laser diode configured to emit light of a fourth color into the translucent light mixing element, wherein the color converting element is arranged to mix light of the first, second and fourth colors to generate light of a fifth color, and to emit light of the fifth color.

12. The light emitting device of claim 1 , further comprising at least a portion of a flash module.

13. The light emitting device of claim 11 , further comprising a translucent wave guide element arranged between the laser diode and the additional laser diode on one side and the translucent light mixing element on another side, wherein the laser diode and the additional laser diode are configured to emit the light of the first color and the light of the fourth color into the translucent light mixing element via the translucent wave guide element.

14. The light emitting device of claim 11 , wherein the additional laser diode is arranged adjacent to the laser diode.

15. The light emitting device of claim 11 , further comprising a controller for individually controlling the light emitting power of the laser diode and the additional laser diode for controlling the fifth color emitted from the color converting element.

16. The light emitting device of claim 1 , wherein the power of the laser diode is 2Watt or more, and the color converting element has an area of 0.1 mm 2 or less.

17. The light emitting device of claim 16 , wherein the color converting element has a thickness of 50 μm.

18. A method for manufacturing a light emitting device, the method comprising:

providing a substrate on a heat sink;

arranging a translucent light mixing element on the substrate;

providing a color converting element arranged on top of the translucent light mixing element and arranged such that light from the translucent light mixing element is coupled into the color converting element; and

configuring a laser diode to emit light of a first color into the translucent light mixing element;

wherein the color converting element is configured to convert a part of the light of the first color to a second color, to mix light of the first color with light of the second color to generate light of a third color, and to emit light of the third color; and

wherein the translucent light mixing element has a thermal conductivity exceeding 10 W/mK, such that the color converting element can withstand a power density of 2 W/mm 2 or more without temperature quenching.

19. The method of claim 18 , wherein the power of the laser diode is 2 Watt or more, and the color converting element has an area of 0.1 mm 2 or less.

20. The method of claim 19 , wherein the color converting element has a thickness of 50 μm.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 21, 2019
From: BEERS, TIFFANY A.; OWINGS, ANDREW
To: NIKE, INC.
Reel/Frame 050114/0104 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 5, 2018
From: SCHUG, JOSEF ANDREAS
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 047410/0277 →
SECURITY INTEREST Recorded Jul 7, 2017
From: LUMILEDS LLC
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 043108/0001 →
Priority Claims (1)
EP 14183236 · Sep 2, 2014 · regional
Continuity (1)
Related Publication 20170256685A1 · Sep 7, 2017