IP Library › Granted Patent US 11,572,986
Granted Patent B2
US 11,572,986 · App. 17/405,570 · Granted Feb 7, 2023

Light-emitting device, display device, and illumination device

Inventor: Shingo Ohkawa (Saitama, JP)
Assignee: SATURN LICENSING LLC
F21K9/64G02F1/133603G02F1/133606G02F1/133608G02F1/133609F21Y2105/10F21Y2115/10G02F1/133614
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Quick Facts
Patent No.
US 11,572,986
App. No.
17/405,570
Granted
Feb 7, 2023
Kind
B2
Abstract

A light-emitting device includes: a plurality of light sources configured to be disposed on a substrate; a light diffusion member configured to commonly cover the plurality of light sources; and a plurality of wavelength conversion members configured to be disposed between the light sources and the light diffusion member in a thickness direction and disposed in regions corresponding to the plurality of light sources in a plane, respectively, and configured to convert light with a first wavelength from the light sources into light with a second wavelength.

Claims (43)

1. A light-emitting device comprising:

a plurality of light sources disposed so as to be situated on a reflection substrate;

an optical member configured to commonly cover the plurality of light sources, the optical member being supported by a plurality of studs that extend from the reflection substrate;

a plurality of wavelength conversion members configured to be disposed between the light sources and the optical member in a thickness direction and disposed in regions corresponding to the plurality of light sources in a plane, respectively;

first connection members between at least two of the plurality of wavelength conversion members in a first direction which is perpendicular to the thickness direction; and

wall portions between adjacent light sources of the plurality of light sources, the wall portions having top flat surfaces, wherein one wall portion of the wall portions surrounds one light source of the light sources and is covered by an individual wavelength conversion member of the wavelength conversion members, the individual wavelength conversion member includes a quantum dot material that converts blue light to red light or green light and another wall portion of the wall portions surrounds another light source of the light sources and is covered by another individual wavelength conversion member, the another individual wavelength conversion member includes another quantum dot material that converts blue light to red light or green light.

2. The light-emitting device according to claim 1 , further comprising:

light reflection members configured to be disposed between the wavelength conversion members and the optical member and disposed in regions corresponding to the plurality of light sources in the plane, respectively, and configured to reflect the light transmitted through the wavelength conversion members.

3. The light-emitting device according to claim 2 , wherein a central point of a respective light reflection member of the light reflection members is identical to an optical axis of a respective light source of the plurality of light sources in an in-plane direction which satisfies a condition expression (2) and a condition expression (3) below:

Tan −1 ( R 2/ L 2)<27°  (2); and

R 2< R 1  (3),

where R 1 is a median value of a circumradius and an inradius in a corresponding one of the plurality of wavelength conversion members, R 2 is a median value of a circumradius and an inradius in the respective light reflection member, and L 2 is a distance between the respective light reflection member and the optical member in the thickness direction.

4. The light-emitting device according to claim 1 , wherein a respective first connection member and the two wavelength conversion members connected thereto are an integrated object comprising the same material.

5. The light-emitting device according to claim 1 , wherein an interval between a respective light source of the plurality of light sources and a corresponding wavelength conversion member of the plurality of wavelength conversion members is shorter than an interval between the optical member and the corresponding wavelength conversion member in the thickness direction.

6. The light-emitting device according to claim 1 , wherein a central point of a respective wavelength conversion member of the plurality of wavelength conversion members is identical to an optical axis of a respective light source of the plurality of light sources in an in-plane direction which satisfies a condition expression (1) below:

|θ1|<Tan −1 ( R 1 /L 1)  (1)

where q1 is an angle at which emission intensity of the respective light source is 60% of the maximum peak in which an optical axis direction is set as 0°, R 1 is a median value of a circumradius and an inradius in the respective wavelength conversion member, and L 1 is a distance between the respective light source and the respective wavelength conversion member in the thickness direction.

7. The light-emitting device according to claim 1 , wherein at least one of the plurality of wavelength conversion members and one of the first connection members are arranged so that one of the first connection members is located within an opening formed within at least one of the plurality of studs.

8. The light-emitting device according to claim 1 , comprising a plurality of light-shielding members, a respective one of the light-shielding members configured to include the wall portions erected on the substrate to surround a respective one of the plurality of light sources in a plane intersecting an optical axis of the respective one of the plurality of light sources.

9. The light-emitting device of claim 1 , comprising a plurality of light-shielding members, a respective one of the light-shielding members configured to include the wall portion erected on the substrate to surround a respective one of the plurality of light sources in a plane intersecting an optical axis of the respective one of the plurality of light sources, wherein a part of the respective one of the light-shielding members reaches a straight line joining the respective one of the plurality of light sources and a position in the first direction from which a given one of the first connection members extends from the corresponding one of the plurality of wavelength conversion members, in which the straight line is at least a predetermined angle with respect to the optical axis.

10. The light-emitting device of claim 9 , wherein the predetermined angle is greater than an angle at which emission intensity of the one of the plurality of light sources is 60% of the maximum peak where a direction of the optical axis is 0°.

11. The light-emitting device of claim 1 , wherein a front surface of the reflection substrate and a rear surface of a diffusion member are held in place by at least one of the plurality of studs.

12. The light-emitting device of claim 1 , wherein the optical member comprises a light diffusion member.

13. The light-emitting device according to claim 9 , comprising a second connection member configured to connect two or more of the plurality of light-shielding members.

14. The light-emitting device according to claim 13 , comprising a clip installed in the second connection member which grips the respective first connection member.

15. The light-emitting device of claim 1 , wherein a front surface of the reflection substrate and a rear surface of the optical member which comprises a diffusion member are held in place by at least one of a plurality of studs.

16. A display device comprising:

a liquid crystal panel; and

a surface light-emitting device on a rear surface side of the liquid crystal panel,

wherein the light-emitting device includes:

a plurality of light sources disposed so as to be situated on a reflection substrate;

an optical member configured to commonly cover the plurality of light sources, the optical member being supported by a plurality of studs that extend from the reflection substrate;

a plurality of wavelength conversion members configured to be disposed between the light sources and the optical member in a thickness direction and disposed in regions corresponding to the plurality of light sources in a plane, respectively;

first connection members between at least two of the plurality of wavelength conversion members in a first direction which is perpendicular to the thickness direction; and

wall portions between adjacent light sources of the plurality of light sources, the wall portions having top flat surfaces, wherein one wall portion of the wall portions surrounds one light source of the light sources and is covered by an individual wavelength conversion member of the wavelength conversion members, the individual wavelength conversion member includes a quantum dot material that converts blue light to red light or green light and another wall portion of the wall portions surrounds another light source of the light sources and is covered by another individual wavelength conversion member, the another individual wavelength conversion member includes another quantum dot material that converts blue light to red light green lights.

17. The display device of claim 16 , wherein the optical member comprises a light diffusion member.

18. The display device according to claim 16 , further comprising:

light reflection members configured to be disposed between the plurality of wavelength conversion members and the optical member and disposed in regions corresponding to the plurality of light sources in the plane, respectively, and configured to reflect the light transmitted through the plurality of wavelength conversion members.

19. The display device according to claim 16 , wherein a respective first connection member and the two wavelength conversion members connected thereto are an integrated object comprising the same material.

20. The display device according to claim 16 , wherein an interval between a respective light source of the plurality of light sources and a corresponding wavelength conversion member of the plurality of wavelength conversion members is shorter than an interval between the optical member and the corresponding wavelength conversion member in the thickness direction.

21. The display device according to claim 16 , wherein a central point of a respective wavelength conversion member of the plurality of wavelength conversion members is identical to an optical axis of a respective light source of the plurality of light sources in an in-plane direction which satisfies a condition expression (1) below:

|θ1|<Tan −1 ( R 1 /L 1)  (1)

where q1 is an angle at which emission intensity of the respective light source is 60% of the maximum peak in which an optical axis direction is set to be 0°, R 1 is a median value of a circumradius and an inradius in the respective wavelength conversion member, and L 1 is a distance between the respective light source and the respective wavelength conversion member in the thickness direction.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2021
From: SONY CORPORATION
To: SATURN LICENSING LLC
Reel/Frame 057669/0413 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2021
From: OHKAWA, SHINGO
To: SONY CORPORATION
Reel/Frame 058312/0882 →
Priority Claims (2)
JP 2014-004434 · Jan 14, 2014 · national
JP 2014-121159 · Jun 12, 2014 · national
Continuity (2)
Continuation 14591411 · Jan 7, 2015
Related Publication 20210381661A1 · Dec 9, 2021