IP Library Granted Patent US 10,084,019
Granted Patent B2
US 10,084,019 · App. 15/689,687 · Granted Sep 25, 2018

Organic light-emitting array and organic light-emitting display device using the same

Inventors: Sung-Bin Shim (Yangsan-si, KR); Eui-Doo Do (Paju-si, KR); Moon-Bae Gee (Paju-si, KR)
Assignee: LG DISPLAY CO., LTD.
H01L27/3211H01L27/3206H01L27/3246H01L51/0508H01L51/102
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Quick Facts
Patent No.
US 10,084,019
App. No.
15/689,687
Granted
Sep 25, 2018
Kind
B2
Abstract

Disclosed are an organic light-emitting array and an organic light-emitting display device using the organic light-emitting array. The organic light-emitting array includes a substrate having a plurality of sub-pixels, each sub-pixel including an emission portion and a non-emission portion adjacent the emission portion; a first electrode provided on at least the emission portion and provided on a portion of the non-emission portion for each sub-pixel; a bank provided in the non-emission portion and having a positively tapered portion configured to overlap a portion of the first electrode and a negatively tapered portion configured so as not to overlap the first electrode; an organic layer provided on the first electrode and the bank; and a second electrode disposed on the organic layer over the plurality of sub-pixels.

Claims (39)

1. An organic light-emitting array comprising:

a substrate having a plurality of sub-pixels, each sub-pixel including an emission portion and a non-emission portion adjacent the emission portion;

a first electrode provided on at least the emission portion and provided on a portion of the non-emission portion for each sub-pixel;

a bank provided in the non-emission portion and having a positively inclined portion configured to overlap a portion of the first electrode and a negatively inclined portion configured so as not to overlap the first electrode, wherein the bank has an asymmetrical shape including the positively inclined portion at one side thereof and the negatively inclined portion at the other side thereof so that the bank leans into the negatively inclined portion;

an organic layer provided on the first electrode and the bank; and

a second electrode disposed on the organic layer over the plurality of sub-pixels.

2. The organic light-emitting array according to claim 1 , wherein the organic layer is separated on the negatively inclined portion of the bank between neighboring sub-pixels.

3. The organic light-emitting array according to claim 2 , further comprising an overcoat layer as an interlayer between the substrate and the first electrode, the overcoat layer having a concave area formed in a portion of a thickness thereof so as to correspond to the non-emission portion.

4. The organic light-emitting array according to claim 3 , wherein the negatively inclined portion of the bank is provided in a region in which the bank and the concave area of the overcoat layer overlap each other.

5. The organic light-emitting array according to claim 3 , wherein the bank is formed of a light-shielding organic material.

6. The organic light-emitting array according to claim 1 , wherein the organic layer includes one or more organic emission layers, and common organic layers located respectively under and above the one or more organic emission layers.

7. The organic light-emitting array according to claim 5 , wherein the bank includes a portion having a flat top between the positively inclined portion and the negatively inclined portion.

8. The organic light-emitting array according to claim 5 , wherein the organic layer is located only in a region of the concave area of the overcoat layer that does not overlap the bank.

9. The organic light-emitting array according to claim 8 , further comprising an auxiliary wire provided in the concave area so that a portion thereof overlaps the negatively inclined portion of the bank, the auxiliary wire being formed of the same material as the first electrode.

10. The organic light-emitting array according to claim 9 , wherein the second electrode is connected to the auxiliary wire in a region in which a portion of the second electrode overlaps the negatively inclined portion of the bank inside the concave area.

11. An organic light-emitting display device comprising:

a substrate having a plurality of sub-pixels, each sub-pixel including an emission portion and a non-emission portion adjacent the emission portion;

a first electrode provided on at least the emission portion and provided on a portion of the non-emission portion for each sub-pixel;

a bank provided in the non-emission portion and having a positively inclined portion configured to overlap a portion of the first electrode and a negatively inclined portion configured so as not to overlap the first electrode, wherein the bank has an asymmetrical shape including the positively inclined portion at one side thereof and the negatively inclined portion at the other side thereof so that the bank leans into the negatively inclined portion;

an organic layer provided on the first electrode and the bank;

a second electrode disposed on the organic layer over the plurality of sub-pixels; and

a thin-film transistor provided on the substrate in each sub-pixel so as to be connected to the first electrode.

12. An organic light-emitting array comprising:

a substrate having a plurality of sub-pixels, each sub-pixel including an emission portion and a non-emission portion;

an overcoat layer on the substrate, and having a concave area formed in the non-emission portion; and

a bank in the non-emission portion, a first portion of the bank being positioned in the concave area and a second portion of the bank being positioned outside the concave area.

13. The organic light-emitting array according to claim 12 , further comprising:

a first electrode provided on at least the emission portion and provided on a portion of the non-emission portion for each sub-pixel;

an organic layer provided on the first electrode and the bank; and

a second electrode disposed on the organic layer over the plurality of sub-pixels.

14. The organic light-emitting array according to claim 13 , wherein the bank has a positively inclined portion configured to overlap a portion of the first electrode and a negatively inclined portion configured so as not to overlap the first electrode, and

wherein the bank has an asymmetrical shape including the positively inclined portion at one side thereof and the negatively inclined portion at the other side thereof so that the bank leans into the negatively inclined portion.

15. The organic light-emitting array according to claim 13 , wherein the negatively inclined portion of the bank is provided in a region in which the bank and the concave area of the overcoat layer overlap each other.

16. The organic light-emitting array according to claim 12 , wherein the bank is formed of a light-shielding organic material.

17. The organic light-emitting array according to claim 13 , wherein the organic layer includes one or more organic emission layers, and common organic layers located respectively under and above the one or more organic emission layers.

18. The organic light-emitting array according to claim 14 , wherein the bank includes a portion having a flat top between the positively inclined portion and the negatively inclined portion.

19. The organic light-emitting array according to claim 12 , wherein the organic layer is located only in a region of the concave area of the overcoat layer that does not overlap the bank.

20. The organic light-emitting array according to claim 13 , wherein the bank comprises two banks separated by a gap, and

wherein a portion of the organic layer is on the overcoat layer at the gap.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2017
From: SHIM, SUNG-BIN; DO, EUI-DOO; GEE, MOON-BAE
To: LG DISPLAY CO., LTD.
Reel/Frame 043776/0630 →
Priority Claims (1)
KR 10-2016-0112243 · Aug 31, 2016 · national
Continuity (1)
Related Publication 20180061904A1 · Mar 1, 2018
Cited By (9)
US 50,615 US 12,302,691 US 12,389,742 US 12,464,940 US 12,492,313 US 12,590,244 US 12,628,705 US 12,660,478 US 12,672,476