IP Library › Granted Patent US 10,962,814
Granted Patent B2
US 10,962,814 · App. 16/244,891 · Granted Mar 30, 2021

Flexible display device

Inventors: Jun Namkung (Yongin, KR); Seong-Jun Lee (Yongin, KR)
G02F1/133345G02F1/133305H01L51/5253H05K1/0271C09K2323/00C09K2323/03G02F2001/133311G02F2001/133388G02F2201/50H01L27/3244H01L27/3276H01L2251/5338H01L2251/566H05K1/036H05K1/0393H05K3/0052H05K3/28H05K2201/0175H05K2201/0179H05K2201/0195H05K2201/09036H05K2201/10136
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Quick Facts
Patent No.
US 10,962,814
App. No.
16/244,891
Granted
Mar 30, 2021
Kind
B2
Abstract

A flexible display device that can suppress spread of cracks of an inorganic layer is provided. A flexible display device includes a flexible substrate including a display area and a periphery surrounding the display area, an inorganic layer formed on the flexible substrate, a display unit formed on the display area, and a thin film encapsulation layer covering the display unit. The inorganic layer includes an opening disposed on a periphery between edges of the flexible substrate and the thin film encapsulation layer.

Claims (26)

1. A flexible display device comprising:

a flexible substrate including a display area and a periphery surrounding the display area;

an inorganic layer disposed on the flexible substrate;

a display unit disposed on the display area and comprising an organic light emitting diode, the organic light emitting diode comprising a pixel electrode, an organic emission layer and a common electrode;

a pixel defining layer disposed on the pixel electrode, the pixel defining layer exposing a top surface of the pixel electrode; and

a thin film encapsulation layer disposed on the common electrode,

wherein the inorganic layer includes an opening disposed on the periphery, and the thin film encapsulation layer does not overlap the opening and overlaps an emitting region of the organic emission layer and the organic light emitting diode is disposed on the inorganic layer.

2. The flexible display device of claim 1 , wherein the inorganic layer comprises at least one of a barrier layer, a buffer layer, a gate insulating layer, and an interlayer insulating layer.

3. The flexible display device of claim 2 , wherein the opening extends along the edges of the flexible substrate.

4. The flexible display device of claim 3 , wherein the opening in which a pad area exists includes a plurality of opening patterns disposed between pad electrodes.

5. The flexible display device of claim 4 , wherein a blocking layer is formed by filling an organic material in the opening, the organic material comprising at least one of a urethane-based resin, an epoxy-based resin, and an acryl-based resin.

6. The flexible display device of claim 3 , wherein the opening is disposed at about 100 μm to 500 μm from the edge of the flexible display.

7. The flexible display device of claim 6 , wherein a width of the opening is about 20 μm to about 200 μm.

8. The flexible display device of claim 7 , wherein a blocking layer is formed by filling an organic material in the opening, the organic material comprising at least one of a urethane-based resin, an epoxy-based resin, and an acryl-based resin.

9. The flexible display device of claim 3 , wherein the opening includes a plurality of openings extending along a second direction and substantially parallel to each other.

10. The flexible display device of claim 9 , wherein a blocking layer is formed by filling an organic material in the opening, the organic material comprising at least one of a urethane-based resin, an epoxy-based resin, and an acryl-based resin.

11. The flexible display device of claim 3 , wherein the opening includes a plurality of openings arranged along a second direction that is parallel with the edges of the flexible substrate.

12. The flexible display device of claim 11 , wherein a blocking layer is formed by filling an organic material in the opening, the organic material comprising at least one of a urethane-based resin, an epoxy-based resin, and an acryl-based resin.

13. The flexible display device of claim 11 , wherein the plurality of openings are arranged to form at least two rows arranged along the second direction, and gaps between the openings in a first row and a second row are not in a same line substantially perpendicular to the edges of the flexible substrate.

14. The flexible display device of claim 13 , wherein a blocking layer is formed by filling an organic material in the opening, the organic material comprising at least one of a urethane-based resin, an epoxy-based resin, and an acryl-based resin.

15. The flexible display device of claim 3 , wherein the inorganic layer includes a plurality of openings disposed along a second direction.

16. The flexible display device of claim 15 , wherein the width of each of the plurality of openings along the second direction is greater than a distance between the plurality of openings.

17. The flexible display device of claim 16 , wherein a blocking layer is formed by filling an organic material in the opening, the organic material comprising at least one of a urethane-based resin, an epoxy-based resin, and an acryl-based resin.

18. The flexible display device of claim 2 , wherein a blocking layer is formed by filling an organic material in the opening, the organic material comprising at least one of a urethane-based resin, an epoxy-based resin, and an acryl-based resin.

19. The flexible display device of claim 1 , wherein a blocking layer is formed by filling an organic material in the opening, the organic material comprising at least one of a urethane-based resin, an epoxy-based resin, and an acryl-based resin.

20. The flexible display device of claim 1 , wherein the thin film encapsulation layer directly contacts the common electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2019
From: NAMKUNG, JUN; LEE, SEONG-JUN
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 047959/0208 →
Priority Claims (1)
KR 10-2013-0091095 · Jul 31, 2013 · national
Continuity (2)
Continuation 14306056 · Jun 16, 2014
Related Publication 20190146266A1 · May 16, 2019
Cited By (1)
US 12,517,551