IP Library Granted Patent US 11,075,248
Granted Patent B2
US 11,075,248 · App. 16/440,559 · Granted Jul 27, 2021

Organic light emitting display apparatus

Inventors: MiKyung Park (Goyang-si, KR); YongCheol Kim (Goyang-si, KR)
Assignee: LG DISPLAY CO., LTD.
H01L27/3211H01L51/5012H01L51/5056H01L51/5072H01L51/5092H01L51/5096H01L2251/558
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Quick Facts
Patent No.
US 11,075,248
App. No.
16/440,559
Granted
Jul 27, 2021
Kind
B2
Abstract

An organic light emitting display apparatus includes a first electrode on a substrate and a plurality of organic layers on the first electrode and including a first region and a second region. The organic light emitting display apparatus further includes a second electrode on the plurality of organic layers. A thickness of the plurality of organic layers in the first region can be different from a thickness of the plurality of organic layers in the second region.

Claims (71)

1. An organic light emitting display apparatus, comprising:

a first electrode on a substrate;

a bank on portions of the first electrode and defining an opening;

a plurality of organic layers on the first electrode and including a first region and a second region associated with a sub-pixel, the first and second regions being disposed in the opening defined by the bank; and

a second electrode on the plurality of organic layers,

wherein a thickness of the plurality of organic layers in the first region is different from a thickness of the plurality of organic layers in the second region,

wherein the plurality of organic layers include an organic light-emission layer,

wherein a thickness of the organic light-emission layer in the first region is larger than a thickness of the organic light-emission layer in the second region, and

wherein a bottom surface of the organic light-emission layer in the first region is substantially coplanar with a bottom surface of the organic light-emission layer in the second region.

2. The organic light emitting display apparatus of claim 1 , wherein the thickness of the plurality of organic layers in the first region is determined by the following Equation 1:

ta=mλ/ 2 n   [Equation 1]

where ta=Thickness of the plurality of organic layers in the first region, m=positive integer, n=refractive index of the plurality of organic layers, and λ=wavelength of light emitted from the organic light-emission layer, and

the thickness of the plurality of organic layers in the second region is smaller than the thickness of the plurality of organic layers in the first region.

3. The organic light emitting display apparatus of claim 1 , wherein the plurality of organic layers further include at least one of a hole injection layer, a hole transport layer, an electron injection layer, an electron transport layer, a hole blocking layer, and an electron blocking layer, and

a thickness of at least one of the hole injection layer, the hole transport layer, the electron injection layer, the electron transport layer, the hole blocking layer, and the electron blocking layer in the first region is greater than a thickness of the at least one of the hole injection layer, the hole transport layer, the electron injection layer, the electron transport layer, the hole blocking layer, and the electron blocking layer in the second region.

4. The organic light emitting display apparatus of claim 1 , wherein the plurality of organic layers further include a hole transport layer, and

a thickness of the hole transport layer in the first region is the same as a thickness of the hole transport layer in the second region.

5. The organic light emitting display apparatus of claim 1 , wherein an area size of the first region is greater than an area size of the second region.

6. The organic light emitting display apparatus of claim 1 , further comprising:

a reflective layer under the first electrode and having a metal material,

wherein the first electrode is formed of a transparent conductive material.

7. The organic light emitting display apparatus of claim 1 , wherein the first electrode, the plurality of organic layers, and the second electrode are provided for each of a plurality of sub-pixels,

wherein the plurality of sub-pixels include a first-color sub-pixel, a second-color sub-pixel adjacent to the first-color sub-pixel, and a third-color sub-pixel adjacent to the second-color sub-pixel, and

wherein a thickness of the first region in the first-color sub-pixel is greater than a thickness of the first region in the second-color sub-pixel, and the thickness of the first region in the second-color sub-pixel is greater than a thickness of the first region in the third-color sub-pixel.

8. The organic light emitting display apparatus of claim 7 , wherein a thickness of the second region in the first-color sub-pixel is greater than a thickness of the second region in the second-color sub-pixel, and the thickness of the second region in the second-color sub-pixel is greater than a thickness of the second region in the third-color sub-pixel.

9. The organic light emitting display apparatus of claim 7 , wherein for each of the first-color, second-color and third-color sub-pixels, a bottom surface of the organic light-emission layer in the first region is substantially coplanar with a bottom surface of the organic light-emission layer in the second region.

10. The organic light emitting display apparatus of claim 1 , wherein the plurality of organic layers further include a hole transport layer disposed on the organic light-emission layer, and

wherein a thickness of the hole transport layer in the first region is greater than a thickness of the hole transport layer in the second region.

11. An organic light emitting display apparatus comprising:

a first electrode on a substrate;

a plurality of organic layers on the first electrode and including a first region and a second region associated with a sub-pixel; and

a second electrode on the plurality of organic layers,

wherein a thickness of the plurality of organic layers in the first region is different from a thickness of the plurality of organic layers in the second region,

wherein the plurality of organic layers include an organic light-emission layer, and a thickness of the organic light-emission layer in the first region is the same as a thickness of the organic light-emission layer in the second region,

wherein the plurality of organic layers further include a hole transport layer disposed on the organic light-emission laver, and

wherein a thickness of the hole transport layer in the first region is greater than a thickness of the hole transport layer in the second region.

12. An organic light emitting display apparatus, comprising:

a substrate including a plurality of sub-pixels;

a plurality of first electrodes in the plurality of sub-pixels, respectively;

a plurality of organic layers on each of the plurality of first electrodes; and

a second electrode on the plurality of organic layers in each of the plurality of sub-pixels,

wherein each of the plurality of sub-pixels includes a light efficiency enhancement region and a viewing angle enhancement region,

wherein a thickness of the plurality of organic layers in the light efficiency enhancement region is greater than a thickness of the plurality of organic layers in the viewing angle enhancement region, and

wherein a top surface of the plurality of organic layers in the light efficiency enhancement region is positioned higher than a top surface of the plurality of organic layers in the viewing angle enhancement region.

13. The organic light emitting display apparatus of claim 12 , wherein the thickness of the plurality of organic layers in the light efficiency enhancement region is configured to have a micro-cavity in each of the plurality of sub-pixels, and

the thickness of the plurality of organic layers in the viewing angle enhancement region is smaller than the thickness of the plurality of organic layers in the light efficiency enhancement region.

14. The organic light emitting display apparatus of claim 12 , wherein the plurality of organic layers include:

a plurality of organic light-emission layers spaced apart from each other in the plurality of sub-pixels, respectively; and

at least one common layer commonly in the plurality of sub-pixels, and

the plurality of organic light-emission layers have different thicknesses in the plurality of sub-pixels and have different thicknesses in the light efficiency enhancement region and the viewing angle enhancement region of each of the plurality of sub-pixels.

15. An organic light emitting display apparatus, comprising:

a substrate including a plurality of sub-pixels;

a plurality of first electrodes in the plurality of sub-pixels, respectively;

a plurality of organic layers on each of the plurality of first electrodes; and

a second electrode on the plurality of organic layers in each of the plurality of sub-pixels,

wherein each of the plurality of sub-pixels includes a light efficiency enhancement region and a viewing angle enhancement region in which the plurality of organic layers have different thicknesses,

wherein the plurality of organic layers include:

a plurality of organic light-emission layers spaced apart from each other in the plurality of sub-pixels, respectively; and

at least one common layer commonly in the plurality of sub-pixels,

wherein the at least one common layer has different thicknesses in the light efficiency enhancement region and the viewing angle enhancement region of each of the plurality of sub-pixels, and

wherein the plurality of organic light-emission layers have the same thickness in the light efficiency enhancement regions and the viewing angle enhancement regions of the plurality of sub-pixels.

16. The organic light emitting display apparatus of claim 15 , wherein an area size of the light efficiency enhancement region is greater than an area size of the viewing angle enhancement region.

17. An organic light emitting display apparatus, comprising:

a plurality of sub-pixels on a substrate, and including a first-color sub-pixel, a second-color sub-pixel, and a third-color sub-pixel,

wherein each of the first-color, second-color and third-color sub-pixels includes:

a first electrode on the substrate;

a plurality of organic layers on the first electrode and including a first region and a second region; and

a second electrode on the plurality of organic layers,

wherein for each of the first-color, second-color and third-color sub-pixels, a thickness of the plurality of organic layers in the first region is greater than a thickness of the plurality of organic layers in the second region, and a top surface of the plurality of organic layers in the first region is positioned higher than a top surface of the plurality of organic layers in the second region.

18. The organic light emitting display apparatus of claim 17 , wherein the thickness of the plurality of organic layers in the first region of one of the first-color, second-color and third-color sub-pixels is greater than the thickness of the plurality of organic layers in the first region of another of the first-color, second-color and third-color sub-pixels.

19. The organic light emitting display apparatus of claim 17 , wherein for each of the first-color, second-color and third-color sub-pixels, a width of the first region is greater than a width of the second region.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2019
From: PARK, MIKYUNG; KIM, YONGCHEOL
To: LG DISPLAY CO., LTD.
Reel/Frame 049477/0365 →
Priority Claims (1)
KR 10-2018-0088757 · Jul 30, 2018 · national
Continuity (1)
Related Publication 20200035760A1 · Jan 30, 2020