IP Library Granted Patent US 11,940,104
Granted Patent B2
US 11,940,104 · App. 18/351,579 · Granted Mar 26, 2024

Illumination device

Inventors: Sergej Kunz (Munich, DE); Victor Goldrin (Munich, DE)
Assignee: SEOUL SEMICONDUCTOR EUROPE GMBH
F21K9/69F21V23/003G02B27/30F21S8/085F21S41/151F21Y2103/10F21Y2115/10
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Quick Facts
Patent No.
US 11,940,104
App. No.
18/351,579
Granted
Mar 26, 2024
Kind
B2
Abstract

An Illumination device includes light emitting devices and an optical system for collimating light emitted by the light emitting devices. A first group of the light emitting devices are arranged in a first array having first gaps, and a first optical system is arranged near the first group of light emitting devices. At least one second group of the light emitting devices are arranged in a second array, and the second array has second gaps. The second optical system is arranged near the second group of light emitting devices. The first and second optical systems are arranged so that, in a distance from the illumination device, light emitted by the first group of light emitting devices, collimated by the first optical system, and light emitted by the second group of light emitting devices, collimated by the second optical system, are superimposed to form a gap-free illumination field.

Claims (53)

1. An illumination device, including:

a LED module; and

an optical system arranged in proximity to the LED module and configured to collimate light emitted by the LED module,

wherein the LED module includes:

a plurality of light sources for emitting excitation light;

a plurality of phosphors covering each of the plurality of light sources and configured to convert the excitation light into illumination light; and

a light blocking layer arranged on lateral surfaces of the plurality of phosphors;

wherein:

a first group of the light sources is arranged in a first linear array having first gaps between the light sources,

a second group of the light sources is arranged in a second linear array parallel to the first linear array and having second gaps between the light sources,

each of the plurality of phosphors has a light emitting surface having a size of 1 mm 2 or less, and

at least one of the light sources in the first group is controlled separately from at least one of the light sources in the second group.

2. The illumination device of claim 1 , wherein the light sources in the first group are disposed along a first direction and the second linear array is disposed from the first linear array along a second direction perpendicular to the first direction.

3. The illumination device of claim 2 , wherein the light sources in the second group are disposed along the first direction.

4. The illumination device of claim 1 , wherein the plurality of phosphors includes transparent resin with phosphor particles.

5. The illumination device of claim 1 , wherein the first linear array and the second linear array are arranged side by side along a base line.

6. The illumination device of claim 1 , wherein the optical system comprises a lens, and the first linear array and the second linear array are substantially arranged on focus planes of the lens.

7. The illumination device of claim 1 , wherein the optical system comprises a first optical system including a first lens and a second optical system including a second lens, the first optical system and the second optical system disposed apart from each other.

8. An illumination device, including:

a LED module; and

an optical system for collimating light emitted by the LED module,

wherein the LED module includes:

a plurality of light sources for emitting excitation light;

a plurality of phosphors covering each of the plurality of light sources and configured to convert the excitation light into illumination light; and

a light blocking layer arranged on lateral surfaces of the plurality of phosphors;

wherein:

a first group of the light sources is arranged in a first linear array having first gaps between the light sources,

a second group of the light sources is arranged in a second linear array parallel to the first linear array and having second gaps between the light sources,

each of the plurality of phosphors has a light emitting surface and a number of light emitting surfaces covering the light sources in the first group is greater than a number of light emitting surfaces covering the light sources in the second group,

at least one of the light sources in the first group and at least one of the light sources in the second group are controlled separately from each other.

9. The illumination device of claim 8 , wherein the optical system comprises a first optical system including a first lens and a second optical system including a second lens, the first optical system and the second optical system disposed apart from each other.

10. The illumination device of claim 8 , wherein the light sources in the first group are disposed along a first direction and the second linear array is disposed from the first linear array along a second direction perpendicular to the first direction.

11. The illumination device of claim 10 , wherein the light sources in the second group are disposed along the first direction.

12. The illumination device of claim 8 , wherein the first group of light emitting devices is placed on a first circuit board, and the second group of light emitting devices is placed on a second circuit board.

13. The illumination device of claim 8 , wherein regions of light emitted by the light sources in the first group and the light sources in the second group overlap to form a continuous light field.

14. An illumination device, including:

a LED module; and

an optical system arranged in proximity to the LED module and configured to collimate light emitted by the LED module,

wherein the LED module includes:

a plurality of light sources for emitting excitation light;

a plurality of phosphors covering each of the plurality of light sources for converting the excitation light into illumination light; and

a light blocking layer arranged on lateral surfaces of the plurality of phosphors;

wherein:

a first group of the light sources is arranged in a first linear array having first gaps between the light sources,

a second group of the light sources is arranged in a second linear array parallel to the first linear array and having second gaps between the light sources,

a region of the light blocking layer overlapping with at least one of a first gap or a second gap is about 0.01 mm or less, and

at least one of the light sources in the first group and at least one of the light sources in the second group are controlled separately from each other.

15. The illumination device of claim 14 , wherein each of the plurality of phosphors has a light emitting surface and a number of light emitting surfaces covering the light sources in the first group is greater than a number of light emitting surfaces covering the light sources in the second group.

16. The illumination device of claim 14 , each of the plurality of phosphors has a light emitting surface having a size of 1 mm 2 or less.

17. The illumination device of claim 14 , wherein the optical system comprises: a first optical system arranged in proximity to the first group of light sources and having an optical axis being substantially orthogonal to the first linear array; and a second optical system arranged in proximity to the second group of light sources and having an optical axis being substantially orthogonal to the second linear array.

18. The illumination device of claim 17 , wherein the optical axis of the first optical system and the optical axis of the second optical system are substantially parallel to each other.

19. The illumination device of claim 14 , wherein the light sources in the first group are disposed along a first direction and the second linear array is disposed from the first linear array along a second direction perpendicular to the first direction.

20. The illumination device of claim 19 , wherein the light sources in the second group are disposed along the first direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2023
From: KUNZ, SERGEJ
To: SEOUL SEMICONDUCTOR EUROPE GMBH
Reel/Frame 064240/0633 →
Priority Claims (1)
EP 19193848 · Aug 27, 2019 · regional
Continuity (3)
Continuation 17681465 · Feb 25, 2022
Continuation PCTEP2020074021 · Aug 27, 2020
Related Publication 20230358373A1 · Nov 9, 2023
Cited By (1)
US 12,663,124