IP Library › Granted Patent US 9,310,645
Granted Patent B2
US 9,310,645 · App. 14/217,818 · Granted Apr 12, 2016

Light source assembly, display apparatus having the same and method of manufacturing the same

Inventors: Lu-Ly Lee (Yongin-si, KR); Dong-Hyeon Lee (Seoul, KR); Young-Min Park (Hwaseong-si, KR)
Assignee: SAMSUNG DISPLAY CO., LTD.
G02F1/133606G02F1/133603G02F1/133605G02F2001/133607
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Quick Facts
Patent No.
US 9,310,645
App. No.
14/217,818
Granted
Apr 12, 2016
Kind
B2
Abstract

A light source assembly includes a substrate extending in a first direction, and a plurality of light source parts arranged in the first direction. The light source part includes a light source disposed on the substrate to generate light, a first reflecting element disposed on the substrate and having a first opening which exposes the light source, a second reflecting element disposed on a first reflecting element and having a second opening which exposes the light source, the second reflecting element being smaller than the first reflecting element in a plan view, and a lens disposed on the light source and the second reflecting element to diffuse the light from the light source.

Claims (86)

1. A light source assembly comprising:

a substrate extending in a first direction; and

a plurality of light source parts arranged in the first direction, on the substrate,

wherein among the plurality of light source parts arranged on the substrate, each light source part comprises:

a light source which is on the substrate and generates light, provided in plural;

a first reflecting element on the substrate, provided in plural to be disconnected from each other along the substrate, and a first opening which is defined in the first reflecting element and exposes the light source;

a second reflecting element on the first reflecting element, provided in plural to be disconnected from each other along the substrate, and a second opening which is defined in the second reflecting element and exposes the light source, wherein the second reflecting element is smaller than the first reflecting element in a plan view; and

a lens which is on the light source and the second reflecting element, and diffuses the light from the light source.

2. The light source assembly of claim 1 , wherein

the first reflecting element comprises a material configured to cause mirror reflection of light, and the second reflecting element comprises a material configured to cause diffuse reflection of light, or

the first reflecting element comprises the material configured to cause diffuse reflection of light, and the second reflecting element comprises the material configured to cause mirror reflection of light.

3. The light source assembly of claim 2 , wherein

the material configured to cause mirror reflection of light comprises silver or aluminum, and

the material configured to cause diffuse reflection of light comprises polyethylene phthalate and has a white color.

4. The light source assembly of claim 2 , wherein

each of the first and second reflecting elements has a circular sheet shape,

the lens has a hemisphere shape,

an external diameter of the first reflecting element is more than about 100% and less than about 130% of an external diameter of the lens, in the plan view, and

an external diameter of the second reflecting element is more than about 70% and less than 100% of the external diameter of the lens, in the plan view.

5. The light source assembly of claim 2 , further comprising a marker which is disposed on the substrate and indicates a position of the lens relative to the light source on the substrate.

6. The light source assembly of claim 5 , wherein the lens comprises:

a top surface having a dome shape, a bottom surface opposite to the top surface, and a fixing part protruded from the bottom surface, and

the fixing part is attached on the substrate and contacts the marker on the substrate.

7. The light source assembly of claim 6 , wherein

the lens further comprises a fixing protrusion protruded from the fixing portion,

the marker is a fixing hole defined through the substrate, and

the fixing protrusion is in the fixing hole.

8. The light source assembly of claim 6 , wherein

the marker on the substrate comprises three discrete points corresponding to vertexes Of a triangle which has a center at the light source, and

the fixing portion of the lens corresponds to the three discrete points.

9. The light source assembly of claim 8 , wherein the first opening of the first reflecting element is larger than the second opening of the second reflecting element.

10. A light source assembly comprising:

a substrate extending in a first direction; and

a plurality of light source parts arranged in the first direction, on the substrate, provided in plural,

wherein among the plurality source parts arranged on the substrate, each light source comprises:

a light source which is on the substrate and generates light;

a first reflecting element on the substrate, provided in plural to be disconnected from each other along the substrate and comprising:

a first area, and a second area adjacent to the first area, and

a plurality of beads which is in the second area and diffuses the light in the second area;

a first opening which is defined in the first reflecting element and exposes the light source; and

a lens which is on the light source and the first reflecting element, and diffuses the light.

11. The light source assembly of claim 10 , wherein

the first reflecting element comprises a material configured to cause diffuse reflection of light, and the first area is adjacent to the light source and between the light source and the second area in a plan view, or

the first reflecting element comprises a material configured to cause mirror reflection of light, and the second area is adjacent to the light source and between the light source and the first area in the plan view.

12. A display apparatus comprising:

a liquid crystal display panel which displays an image;

a light source assembly which generates and supplies light to the liquid crystal display panel, and is under the liquid crystal display panel;

a reflecting sheet between the liquid crystal display panel and the light source assembly, and a plurality of lens openings defined in the reflecting sheet; and

a receiving container which receives the liquid crystal display panel, the light source assembly and the reflecting sheet, and comprises a bottom portion, and side walls extending from the bottom portion substantially perpendicular to the bottom portion,

wherein the light source assembly comprises:

a substrate which extends in a first direction and is on the bottom portion of the receiving container; and

a plurality of light source parts arranged in the first direction, on the substarte,

wherein among the plurality of light source parts arranged on the substrate, each light source part comprises:

a light source which is on the substrate and generates the light, provided in plural;

a first reflecting element on the substrate, provided in plural to be disconnected from each other along the substrate, and a first opening which is defined in the first reflecting element and exposes the light source;

a second reflecting element which is on the first reflecting element, provided in plural to be disconnected from each other along the substrate, and a second opening which is defined in the second reflecting element and exposes the light source, wherein the second reflecting element is smaller than the first reflecting element in a plan view; and

a lens which is on the light source and the second reflecting element, and diffuses the light from the light source, and

wherein the lens openings of the reflecting sheet respectively correspond to the light source parts of the light source assembly.

13. The display apparatus of claim 12 , wherein

the first reflecting element comprises a material configured to cause mirror reflection of light, and the second reflecting element comprises a material configured to cause diffuse reflection of light, or

the first reflecting element comprises the material configured to cause diffuse reflection of light, and the second reflecting element comprises the material configured to cause mirror reflection of light.

14. The display apparatus of claim 13 , wherein a portion of the corresponding lens of the light source part of the light source assembly is above a corresponding lens opening of the reflecting sheet.

15. The display apparatus of claim 14 , wherein in the plan view, the lens opening of the reflecting sheet is larger than the lens of the light source part of the light source assembly, and is smaller than the first reflecting element of the light source part of the light source assembly.

16. The display apparatus of claim 12 , further comprising a plurality of light source assemblies on the bottom portion of the receiving container, wherein the light source assemblies are arranged in a second direction which is perpendicular to the first direction.

17. A method of manufacturing a display apparatus comprising:

forming a light source assembly;

disposing the light source assembly on a bottom portion of a receiving container; and

disposing a display panel in the receiving container,

wherein the forming the light source assembly comprises forming a plurality of light source parts on a substrate which extends in a first direction, the plurality of light source parts formed on the substrate by:

mounting a light emitting diode chip on the substrate which extends in the first direction, by a surface mounting technology, the light emitting diode chip provided in plural;

forming a first reflecting element in which a first opening is defined and exposes the light emitting diode chip, on the substrate having the light emitting diode chip thereon, the first reflecting element provided in plural to be disconnected from each other along the substrate;

forming a second reflecting element in which a second opening is defined and exposes the light emitting diode chip, the second reflecting element being smaller than the first reflecting element, in a plan view; the second reflecting element provided in plural to be disconnected from each other along the substrate; and

forming a lens on the substrate having the light emitting diode chip and the first and second reflecting elements thereon;

wherein

the first reflecting element comprises a material configured to cause mirror reflection of light, and the second reflecting element comprises a material configured to cause diffuse reflection of light, or

the first reflecting element comprises the material configured to cause diffuse reflection of light, and the second reflecting element comprises the material configured to cause mirror reflection of light.

18. The method of claim 17 , further comprising attaching a reflecting sheet on the light source assembly, after the disposing the light source assembly,

wherein

the forming the light source assembly further comprises forming a plurality of light source parts, and

a plurality of lens openings defined in the reflecting sheet corresponds to the plurality of the light source parts.

19. The method of claim 17 , wherein the forming the light source assembly further comprises:

forming a marker adjacent to a position for the light emitting diode chip on the substrate, before the mounting the light emitting diode chip,

wherein the marker indicates the position for the light emitting diode chip on the substrate.

20. The method of claim 19 ,

wherein the lens comprises a top surface having a dome shape, a bottom surface opposite to the top surface, and a fixing portion protruded from the bottom surface, and

wherein the forming the lens comprises attaching the fixing portion to the marker on the substrate, to fix the lens on the substrate relative to the position for the light emitting diode chip.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2014
From: LEE, LU-LY; LEE, DONG-HYEON; PARK, YOUNG-MIN
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 032463/0280 →
Priority Claims (1)
KR 10-2013-0126123 · Oct 22, 2013 · national
Continuity (1)
Related Publication 20150109559A1 · Apr 23, 2015