IP Library Granted Patent US 10,884,290
Granted Patent B2
US 10,884,290 · App. 16/807,965 · Granted Jan 5, 2021

Light emittng module

Inventors: Ryohei Yamashita (Tokushima, JP); Toshinobu Katsumata (Anan, JP)
Assignee: NICHIA CORPORATION
G02F1/133606G02B6/0078G02F1/133603
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Quick Facts
Patent No.
US 10,884,290
App. No.
16/807,965
Granted
Jan 5, 2021
Kind
B2
Abstract

A light emitting module according to one embodiment of the present disclosure includes a lightguide plate having an upper surface in which a first hole is defined, and a lower surface opposite to the upper surface; and a light emitting element on a lower surface side of the lightguide plate, the light emitting element facing the first hole. The upper surface of the lightguide plate includes a first region defining a plurality of protrusions and/or recesses. A ratio of an area occupied by the plurality of protrusions and/or recesses per unit area in a plan view increases concentrically in an outward direction from the light emitting element.

Claims (62)

1. A light emitting module, comprising:

a lightguide plate having:

an upper surface in which a first hole is defined, and

a lower surface opposite to the upper surface; and

a light emitting element on a lower surface side of the lightguide plate, the light emitting element facing the first hole,

wherein the upper surface of the lightguide plate includes a first region defining a plurality of protrusions or recesses, and

wherein a ratio of an area occupied by the plurality of protrusions or recesses per unit area in a plan view increases concentrically in an outward direction from the light emitting element.

2. The light emitting module of claim 1 ,

wherein the upper surface of the lightguide plate further includes a second region formed of an annular flat surface surrounding the first hole, and

wherein the first region is located outward of the second region and surrounds the second region.

3. The light emitting module of claim 1 , wherein the plurality of protrusions or recesses include a plurality of dots.

4. The light emitting module of claim 2 , wherein the plurality of protrusions or recesses include a plurality of dots.

5. The light emitting module of claim 3 , wherein each of the plurality of dots has a circular shape in a plan view.

6. The light emitting module of claim 4 , wherein each of the plurality of dots has a circular shape in a plan view.

7. The light emitting module of claim 5 ,

wherein the first region includes:

an outer region, and

an inner region located closer to the light emitting element than the outer region, and

wherein the circular shape of a dot in the outer region has a diameter greater than the circular shape of a dot in the inner region.

8. The light emitting module of claim 6 ,

wherein the first region includes:

an outer region, and

an inner region located closer to the light emitting element than the outer region, and

wherein the circular shape of a dot in the outer region has a diameter greater than the circular shape of a dot in the inner region.

9. The light emitting module of claim 1 , wherein the plurality of protrusions or recesses have a number density that increases in the outward direction from the light emitting element.

10. The light emitting module of claim 2 , wherein the plurality of protrusions or recesses have a number density that increases in the outward direction from the light emitting element.

11. The light emitting module of claim 1 , wherein the plurality of protrusions or recesses are arranged with a pitch that decreases in the outward direction from the light emitting element.

12. The light emitting module of claim 2 , wherein the plurality of protrusions or recesses are arranged with a pitch that decreases in the outward direction from the light emitting element.

13. The light emitting module of claim 1 ,

wherein a second hole is defined in the lower surface of the lightguide plate, the second hole located at a position facing the first hole, and

wherein the light emitting element is disposed in the second hole in a plan view.

14. The light emitting module of claim 2 ,

wherein a second hole is defined in the lower surface of the lightguide plate, the second hole located at a position facing the first hole, and

wherein the light emitting element is disposed in the second hole in a plan view.

15. The light emitting module of claim 13 , further comprising a wavelength conversion member disposed in the second hole, the wavelength conversion member located between the light emitting element and the lightguide plate.

16. The light emitting module of claim 14 , further comprising a wavelength conversion member disposed in the second hole, the wavelength conversion member located between the light emitting element and the lightguide plate.

17. The light emitting module of claim 1 ,

wherein the light emitting element includes an electrode on a side opposite to the lightguide plate, and

wherein the light emitting module further includes a light-reflective member that covers at least a portion of the lower surface of the lightguide plate.

18. The light emitting module of claim 2 ,

wherein the light emitting element includes an electrode on a side opposite to the lightguide plate, and

wherein the light emitting module further includes a light-reflective member that covers at least a portion of the lower surface of the lightguide plate.

19. A surface-emitting light source including a plurality of the light emitting modules of claim 1 ,

wherein the plurality of the light emitting modules are arranged two-dimensionally.

20. A surface-emitting light source including a plurality of the light emitting modules of claim 2 ,

wherein the plurality of the light emitting modules are arranged two-dimensionally.

21. A light emitting module, comprising:

a lightguide plate having:

an upper surface in which a first hole is defined, and

a lower surface opposite to the upper surface; and

a light emitting element on a lower surface side of the lightguide plate, the light emitting element facing the first hole,

wherein the upper surface of the lightguide plate includes a first region defining a plurality of protrusions and recesses, and

wherein a ratio of an area occupied by the plurality of protrusions and recesses per unit area in a plan view increases concentrically in an outward direction from the light emitting element.

22. The light emitting module of claim 21 ,

wherein the upper surface of the lightguide plate further includes a second region formed of an annular flat surface surrounding the first hole, and

wherein the first region is located outward of the second region and surrounds the second region.

23. The light emitting module of claim 21 , wherein the plurality of protrusions and recesses include a plurality of dots.

24. The light emitting module of claim 22 , wherein the plurality of protrusions and recesses include a plurality of dots.

25. The light emitting module of claim 21 , wherein the plurality of protrusions and recesses have a number density that increases in the outward direction from the light emitting element.

26. The light emitting module of claim 22 , wherein the plurality of protrusions and recesses have a number density that increases in the outward direction from the light emitting element.

27. The light emitting module of claim 21 , wherein the plurality of protrusions and recesses are arranged with a pitch that decreases in the outward direction from the light emitting element.

28. The light emitting module of claim 22 , wherein the plurality of protrusions and recesses are arranged with a pitch that decreases in the outward direction from the light emitting element.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2020
From: YAMASHITA, RYOHEI; KATSUMATA, TOSHINOBU
To: NICHIA CORPORATION
Reel/Frame 051998/0150 →
Priority Claims (1)
JP 2019-039776 · Mar 5, 2019 · national
Continuity (1)
Related Publication 20200285114A1 · Sep 10, 2020