IP Library Granted Patent US 10,627,675
Granted Patent B2
US 10,627,675 · App. 16/090,333 · Granted Apr 21, 2020

Planar light source device, display device and light flux control member

Inventor: Kensuke Hiraka (Saitama, JP)
Assignee: Enpias Corporation
G02F1/133606F21V5/007F21V5/08G02F1/133603F21Y2105/10F21Y2115/10G02F2001/133607
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Quick Facts
Patent No.
US 10,627,675
App. No.
16/090,333
Granted
Apr 21, 2020
Kind
B2
Abstract

This planar light source device comprises a base board, a light-emitting device and a diffusing plate. The light-emitting device includes a light-emitting element and a light flux control member. The light flux control member has an entry surface, an exit surface, and a gate mark. The entry surface and the exit surface are formed in such a manner that the illuminance distribution on the diffusing plate has an anisotropy wherein the light reaches farther in the directions of 1 or more predetermined horizontal angles φ than in other directions, when assuming that the light is emitted from the light-emitting device in a state wherein the light flux control member does not have the gate mark. The horizontal angle φ range of the gate mark includes any one among the 1 or more predetermined horizontal angles φ.

Claims (36)

1. A surface light source device, comprising:

a substrate;

at least one light emitting device including a light emitting element disposed on the substrate, and a light flux controlling member disposed above the light emitting element so that a central axis of the light flux controlling member coincides with an optical axis of the light emitting element, the light flux controlling member being configured to control a distribution of light emitted from the light emitting element; and

a diffusion plate disposed above the at least one light emitting device, the diffusion plate being configured to transmit the light from the at least one light emitting device while diffusing the light,

wherein the light flux controlling member includes:

an incidence surface which is an inner surface of a recess disposed on a substrate side of the light flux controlling member so as to intersect the central axis,

an emission surface disposed on a diffusion plate side of the light flux controlling member so as to intersect the central axis, and

a gate mark located on a part of an outer peripheral portion of the light flux controlling member; and

wherein:

when, in the at least one light emitting device, a horizontal angle φ is defined with the central axis as a reference axis and a predetermined direction orthogonal to the central axis as 0°,

the incidence surface and the emission surface are formed in such a manner that, if light is emitted from the at least one light emitting device in a state where the light flux controlling member includes no gate mark, illuminance distribution on the diffusion plate has anisotropy such that the light reaches further in a direction of at least one predetermined horizontal angle φ compared to other directions, and

the gate mark is located in such a manner that a horizontal-angle-φ range of the gate mark includes one of the at least one predetermined horizontal angle φ.

2. The surface light source device according to claim 1 , wherein:

the emission surface has a shape of n-fold symmetry such that an outer edge of the emission surface has a substantially n-polygonal shape, where n is an integral number of three or more, and

the horizontal-angle-q range of the gate mark includes a horizontal angle φ corresponding to one of corners of the substantially n-polygonal shape.

3. The surface light source device according to claim 2 , wherein:

the emission surface has a shape of four-fold symmetry such that an outer edge of the emission surface has a substantially quadrangular shape, and

the horizontal-angle-q range of the gate mark includes a horizontal angle φ corresponding to one of corners of the substantially quadrangular shape.

4. The surface light source device according to claim 1 , wherein the gate mark is located on a part of an outer peripheral portion of the emission surface.

5. The surface light source device according to claim 1 , wherein:

the light flux controlling member further includes a flange protruding from an outer edge of the emission surface in a direction orthogonal to the central axis, and

the gate mark is located on a part of the flange.

6. The surface light source device according to claim 1 , wherein the light flux controlling member further includes:

a rear surface extending from an opening edge of the recess in a direction orthogonal to the central axis, and

two or more legs protruding from the rear surface toward the substrate side, wherein the two or more legs are disposed symmetrically relative to a virtual plane which passes through the central axis and the gate mark, the virtual plane being parallel to the central axis.

7. The surface light source device according to claim 6 ,

wherein the light flux controlling member further includes one or more ejector pin marks located on the rear surface, and wherein the one or more ejector pin marks are located symmetrically relative to the virtual plane.

8. The surface light source device according to claim 1 , wherein the gate mark is a remaining gate.

9. The surface light source device according to claim 1 ,

wherein the at least one light emitting device includes a plurality of light emitting devices, and

wherein the plurality of light emitting devices are disposed so that the gate marks are directed in one direction.

10. A display apparatus, comprising:

the surface light source device according to claim 1 , and

a display member to be irradiated with the light emitted from the surface light source device.

11. A light flux controlling member, comprising:

the light flux controlling member configured to be used in the surface light source device according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2018
From: HIRAKA, KENSUKE
To: ENPLAS CORPORATION
Reel/Frame 047030/0783 →
Priority Claims (1)
JP 2016-068400 · Mar 30, 2016 · national
Continuity (1)
Related Publication 20190113806A1 · Apr 18, 2019