IP Library Granted Patent US 9,528,681
Granted Patent B2
US 9,528,681 · App. 14/698,195 · Granted Dec 27, 2016

Light flux controlling member, light emitting device and illumination apparatus

Inventor: Tomohiro Saito (Saitama, JP)
Assignee: ENPLAS CORPORATION
F21V5/045F21V5/008F21V17/08F21V17/101F21V19/0035G02B3/08F21Y2101/00
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Quick Facts
Patent No.
US 9,528,681
App. No.
14/698,195
Granted
Dec 27, 2016
Kind
B2
Abstract

A light flux controlling member of the present invention includes an incidence area and an emission area. The incidence area includes a plurality of protrusions each having an incidence surface, a reflection surface, and a ridge line. The reflection surface disposed outermost includes a plurality of split reflection surfaces that reflects light having entered the light flux controlling member toward the emission area, and one or two or more stepped surfaces disposed between the two adjacent split reflection surfaces and at a dead angle position relative to a traveling direction of the light having entered the light flux controlling member. The protrusion disposed outermost has a projection part projecting in a direction along a central axis, with a tip portion thereof being closer to the emission area than an end portion of the light flux controlling member on a light emitting element side is in the direction along the central axis.

Claims (62)

1. A light flux controlling member that controls a distribution of light emitted from a light emitting element, comprising:

an incidence area that allows light emitted from the light emitting element to enter the light flux controlling member; and

an emission area that is formed facing away from the incidence area and configured to emit light having entered the light flux controlling member,

wherein:

the incidence area includes a plurality of protrusions disposed to surround a central axis of the light flux controlling member and each protrusion having an incidence surface that is disposed on an inner side of the protrusion and allows a part of the light emitted from the light emitting element to enter the light flux controlling member, a reflection surface that is disposed on an outer side of the protrusion and reflects the incident light toward the emission area, and a ridge line disposed between the incidence surface and the reflection surface,

the reflection surface disposed outermost including:

a plurality of split reflection surfaces that are spaced apart from each other and reflect the light having entered the light flux controlling member toward the emission area, and

one or two or more stepped surfaces disposed between the two adjacent split reflection surfaces and at a dead angle position relative to a traveling direction of the light having entered the light flux controlling member, and

the protrusion disposed outermost has a projection part projecting in a direction along the central axis from the one or two or more stepped surfaces, with a tip portion of the projection part being closer to the emission area than an end portion of the light flux controlling member on the light emitting element side is to the emission area in the direction along the central axis.

2. The light flux controlling member according to claim 1 , wherein:

the one or two or more stepped surfaces includes a first stepped surface disposed inside and adjacent to the projection part, and a second stepped surface disposed outside and adjacent to the projection part; and

a clearance between the second stepped surface and the tip portion of the projection part is longer than a clearance between the first stepped surface and the tip portion of the projection part in the direction along the central axis.

3. The light flux controlling member according to claim 2 , wherein a clearance between the first stepped surface and the second stepped surface in the direction along the central axis is 10 μm or more and 50 μm or less.

4. The light flux controlling member according to claim 1 , wherein:

the one or two or more stepped surfaces includes a first stepped surface disposed inside and adjacent to the projection part, and a second stepped surface disposed outside and adjacent to the projection part; and

a clearance between the first stepped surface and the tip portion of the projection part is the same as a clearance between the second stepped surface and the tip portion of the projection part in the direction along the central axis.

5. The light flux controlling member according to claim 1 , wherein the projection part is disposed at an outer peripheral portion of the one or two or more stepped surfaces.

6. A light emitting device comprising:

a substrate;

a supporting part disposed on the substrate;

a light emitting element disposed on the substrate; and

the light flux controlling member according to claim 1 , disposed over the substrate such that a central axis of the light flux controlling member coincides with an optical axis of the light emitting element, and fixed to the supporting part, wherein:

the supporting part and the projection part are adhered together.

7. A light emitting device comprising:

a substrate;

a supporting part disposed on the substrate;

a light emitting element disposed on the substrate; and

the light flux controlling member according to claim 2 , disposed over the substrate such that a central axis of the light flux controlling member coincides with an optical axis of the light emitting element, and fixed to the supporting part, wherein:

the supporting part and the projection part are adhered together.

8. A light emitting device comprising:

a substrate;

a supporting part disposed on the substrate;

a light emitting element disposed on the substrate; and

the light flux controlling member according to claim 3 , disposed over the substrate such that a central axis of the light flux controlling member coincides with an optical axis of the light emitting element, and fixed to the supporting part, wherein:

the supporting part and the projection part are adhered together.

9. A light emitting device comprising:

a substrate;

a supporting part disposed on the substrate;

a light emitting element disposed on the substrate; and

the light flux controlling member according to claim 4 , disposed over the substrate such that a central axis of the light flux controlling member coincides with an optical axis of the light emitting element, and fixed to the supporting part, wherein:

the supporting part and the projection part are adhered together.

10. A light emitting device comprising:

a substrate;

a supporting part disposed on the substrate;

a light emitting element disposed on the substrate; and

the light flux controlling member according to claim 5 , disposed over the substrate such that a central axis of the light flux controlling member coincides with an optical axis of the light emitting element, and fixed to the supporting part, wherein:

the supporting part and the projection part are adhered together.

11. An illumination apparatus comprising:

the light emitting device according to claim 6 , and

a cover that transmits light emitted from the light emitting device while diffusing the emitted light.

12. An illumination apparatus comprising:

the light emitting device according to claim 7 , and

a cover that transmits light emitted from the light emitting device while diffusing the emitted light.

13. An illumination apparatus comprising:

the light emitting device according to claim 8 , and

a cover that transmits light emitted from the light emitting device while diffusing the emitted light.

14. An illumination apparatus comprising:

the light emitting device according to claim 9 , and

a cover that transmits light emitted from the light emitting device while diffusing the emitted light.

15. An illumination apparatus comprising:

the light emitting device according to claim 10 , and

a cover that transmits light emitted from the light emitting device while diffusing the emitted light.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2015
From: SAITO, TOMOHIRO
To: ENPLAS CORPORATION
Reel/Frame 035535/0174 →
Priority Claims (1)
JP 2014-095281 · May 2, 2014 · national
Continuity (1)
Related Publication 20150316228A1 · Nov 5, 2015