IP Library Patent Application 14653005
Patent Application
App. No. 14/653,005

SHAPED LED FOR ENHANCED LIGHT EXTRACTION EFFICIENCY

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Quick Facts
Patent No.
US None
App. No.
14/653,005
Abstract

The shape of a light emitting element 400;500 ) is designed to increase the amount of light that is able to escape from the surfaces of the light emitting element ( 400;500 ). The indices of refraction of the light emitting element ( 400;500 ) and the surrounding environment define an escape zone through which light may escape through a surface of the light emitting element ( 400;500 ). Light traveling outside the escape zone is totally internally reflected (TIR) at the surface. By increasing the number of surfaces on the light emitting element ( 400;500 ), the number of escape zones ( 410 a - f ,411 a - f , 510 a - h ,511 a - h ) may be increased, with a corresponding increase in the likelihood of light escaping the surfaces. A light emitting element ( 400;500 ) comprising a polygonal surface area with more than four sides ( 402 a - f; 502 a - h ) exhibits a higher light extraction efficiency, and also allows a more uniform current injection, and experiences reduced mechanical stress, compared to one comprising a rectangular surface area.

Claims (27)

1 . A light emitting element comprising:

an N-type layer,

a P-type layer,

an active layer that is situated between the N-type and P-type layers,

wherein:

the light emitting element includes a cross-section-view profile that includes a polygon with more than four sides, forming a light extraction region that includes a plurality of planar light extraction surfaces, at least one light extraction surface being non-orthogonal to, and non-planar with, an adjacent light extraction surface.

2 . The light emitting element of claim 1 , wherein a top profile of the light emitting element also includes another polygon with more than four sides.

3 . (canceled)

4 . The light emitting element of claim 1 , including a substrate that includes a rectangular surface upon which the N-type, P-type, and active layers are situated.

5 . The light emitting element of claim 2 , wherein the polygon is a regular polygon.

6 . The light emitting element of claim 1 , wherein light emitting element is a polyhedron of at least seven sides.

7 . The light emitting element of claim 1 , wherein the light emitting element includes one or more reflective surfaces.

8 . The light emitting element of claim 1 , wherein the light emitting element has a shape that corresponds to a combination of multiple polygons or polyhedrons.

9 . A substrate comprising:

a plurality of light emitting elements, each light emitting element having a cross-section-view profile that includes a polygon with more than four sides, forming a light extraction region that includes a plurality of planar light extraction surfaces, at least one light extraction surface being non-orthogonal to, and non-planar with, an adjacent light extraction surface.

10 . The substrate of claim 9 , wherein a top-view profile of the light emitting element also includes another polygon with more than four sides.

11 . The substrate of claim 9 , wherein the substrate includes features that cause the cross-section-view profile to be the polygon with more than four sides.

12 . A method comprising:

forming a plurality of light emitting elements on a substrate, each light emitting element having a cross-section-view profile that includes a polygon with more than four sides, with a light extraction region that includes a plurality of planar light extraction surfaces, at least one light extraction surface being non-orthogonal to, and non-planar with, an adjacent light extraction surface.

13 . The method of claim 12 , wherein each light emitting element comprises a polyhedron of at least seven faces.

14 . The method of claim 12 , wherein at least one surface of each light emitting element is reflective.

15 . The method of claim 12 including slicing the substrate to singulate the light emitting elements.

16 . The method of claim 15 , wherein the slicing is performed in two orthogonal directions to provide the singulated light emitting elements on a portion of the substrate that is rectangular.

17 . The method of claim 15 , wherein the slicing is performed in at least two non-orthogonal directions to provide the singulated light emitting elements on a portion of the substrate that is not rectangular.

18 . The method of claim 12 , including slicing the substrate using a plurality of straight line cuts to singulate the light emitting elements into light emitting devices having a plurality of planar light emitting surfaces.

19 . The method of claim 12 , wherein forming the light emitting elements includes forming an N-type layer and a P-type layer that sandwich an active layer, and one of the N-type layer and P-type layer provides the light extraction region.

20 . The substrate of claim 9 , wherein each light emitting element includes an N-type layer and a P-type layer that sandwich an active layer, and one of the N-type layer and P-type layer provides the light extraction region.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2017
From: KONINKLIJKE PHILIPS N.V.
To: LUMILEDS LLC
Reel/Frame 044809/0940 →
SECURITY INTEREST Recorded Jul 7, 2017
From: LUMILEDS LLC
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 043108/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2015
From: TURCOTTE, STEPHANE; WU, SONGNAN
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 035853/0141 →