IP Library › Granted Patent US 11,626,068
Granted Patent B2
US 11,626,068 · App. 17/865,304 · Granted Apr 11, 2023

Pixel arrangement structure for organic light emitting diode display

Inventor: Sang-Shin Lee (Yongin-si, KR)
Assignee: Samsung Display Co., Ltd.
G09G3/3208H10K59/352H10K59/353
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Quick Facts
Patent No.
US 11,626,068
App. No.
17/865,304
Granted
Apr 11, 2023
Kind
B2
Abstract

A pixel arrangement structure of an organic light emitting diode (OLED) display is provided. The pixel arrangement structure includes: a first pixel having a center coinciding with a center of a virtual square; a second pixel separated from the first pixel and having a center at a first vertex of the virtual square; and a third pixel separated from the first pixel and the second pixel, and having a center at a second vertex neighboring the first vertex of the virtual square. The first pixel, the second pixel, and the third pixel have polygonal shapes.

Claims (77)

1. An organic light emitting diode (OLED) display, comprising a plurality of individually addressable pixels for displaying an image, the plurality of individually addressable pixels being minimum addressable units of the OLED display and comprising:

a plurality of first pixels comprising an organic emission layer for emitting light having a first color;

a second pixel comprising an organic emission layer for emitting light having a second color and surrounded by four of the plurality of first pixels having centers coinciding with each vertex of a first virtual square; and

a third pixel comprising an organic emission layer for emitting light having a third color and surrounded by four of the plurality of first pixels having centers coinciding with each vertex of a second virtual square,

wherein the plurality of first pixels, the second pixel, and the third pixel are spaced apart from one another,

wherein the first and second virtual squares share a common side having endpoints at a common first vertex and a common second vertex of the first and second virtual squares, the common first vertex and the common second vertex coinciding with the centers of an adjacent pair of the plurality of first pixels,

wherein a shortest distance between one pixel of the adjacent pair of the plurality of first pixels and the second pixel is a first length that is smaller than a shortest distance between the adjacent pair of the plurality of first pixels,

wherein a shortest distance between the one pixel of the adjacent pair of the plurality of first pixels and the third pixel is a second length that is smaller than the shortest distance between the adjacent pair of the plurality of first pixels,

wherein the second pixel has an area that is larger than that of the third pixel, and

wherein a first width of the one pixel of the adjacent pair of the plurality of first pixels measured along a first virtual line coincident with a diagonal of the first virtual square is different from a second width of the one pixel of the adjacent pair of the plurality of first pixels measured along a second virtual line that is parallel to the first virtual line and offset from the first virtual line in a direction perpendicular to the first virtual line.

2. The display of claim 1 , wherein the plurality of first pixels comprise an organic emission layer for emitting green light, the second pixel comprises an organic emission layer for emitting blue light, and the third pixel comprises an organic emission layer for emitting red light.

3. The display of claim 2 , wherein the first length is smaller than a shortest distance between the second pixel and the third pixel.

4. The display of claim 3 , wherein the plurality of first pixels have a different shape than at least one selected from among the second pixel and the third pixel.

5. The display of claim 4 , wherein the third pixel has an area that is larger than that of one of the plurality of first pixels.

6. The display of claim 4 , wherein the second pixel and the third pixel have polygonal shapes with at least four sides.

7. The display of claim 3 , wherein the third pixel has an area that is larger than that of one of the plurality of first pixels.

8. The display of claim 3 , wherein the second pixel and the third pixel have polygonal shapes with at least four sides.

9. The display of claim 2 , wherein the first length is equal to a shortest distance between the second pixel and the third pixel.

10. The display of claim 9 , wherein the plurality of first pixels have a different shape than at least one selected from among the second pixel and the third pixel.

11. The display of claim 10 , wherein the third pixel has an area that is larger than that of one of the plurality of first pixels.

12. The display of claim 10 , wherein the second pixel and the third pixel have polygonal shapes with at least four sides.

13. The display of claim 9 , wherein the third pixel has an area that is larger than that of one of the plurality of first pixels.

14. The display of claim 9 , wherein the second pixel and the third pixel have polygonal shapes with at least four sides.

15. An organic light emitting diode (OLED) display comprising individually addressable pixels for displaying an image, the individually addressable pixels being minimum addressable units of the OLED display and comprising:

first pixels comprising an organic emission layer for emitting light having a first color;

a second pixel comprising an organic emission layer for emitting light having a second color and surrounded by four of the first pixels having centers respectively coinciding with vertices of a first virtual square; and

a third pixel comprising an organic emission layer for emitting light having a third color and surrounded by four of the first pixels having centers respectively coinciding with vertices of a second virtual square,

wherein the first pixels, the second pixel, and the third pixel are spaced apart from one another,

wherein the first virtual square and the second virtual square share a common side having endpoints respectively at common vertices of the first virtual square and of the second virtual square that respectively coincide with the centers of an adjacent pair of the first pixels,

wherein a shortest distance between one pixel of the adjacent pair of the first pixels and the second pixel is less than a shortest distance between the adjacent pair of the first pixels,

wherein a shortest distance between the one pixel of the adjacent pair of the first pixels and the third pixel is less than the shortest distance between the adjacent pair of the first pixels,

wherein the second pixel has an area that is larger than that of the third pixel, and

wherein every virtual line touching a perimeter of the second pixel and extending in a diagonal direction, which is parallel to a diagonal of the first virtual square extending between the centers of two opposite first pixels of the four of the first pixels that surround the second pixel, is offset from every virtual line touching a perimeter of one of the two opposite first pixels and extending in the diagonal direction.

16. A method for manufacturing an organic light emitting diode (OLED) display, comprising:

depositing, using a fine metal mask, organic light-emitting material configured to emit light having a first color;

forming a plurality of first pixels to emit the light having the first color;

depositing, using a fine metal mask, organic light-emitting material configured to emit light having a second color;

forming a plurality of second pixels to emit the light having the second color;

depositing, using a fine metal mask, organic light-emitting material configured to emit light having a third color; and

forming a plurality of third pixels to emit the light having the third color,

wherein the plurality of first pixels, the plurality of second pixels, and the plurality of third pixels are individually addressable pixels for displaying an image, the individually addressable pixels being minimum addressable units of the OLED display,

wherein a first one of the plurality of second pixels is surrounded by four of the plurality of first pixels having centers coinciding with each vertex of a first virtual square,

wherein a first one of the plurality of third pixels is surrounded by four of the plurality of first pixels having centers coinciding with each vertex of a second virtual square,

wherein the plurality of first pixels, the plurality of second pixels, and the plurality of third pixels are spaced apart from one another,

wherein the first and second virtual squares sharing a common side having endpoints at a common first vertex and a common second vertex of the first and second virtual squares, the common first vertex and the common second vertex coinciding with the centers of an adjacent pair of the plurality of first pixels,

wherein a shortest distance between one pixel of the adjacent pair of the plurality of first pixels and the first one of the plurality of second pixels is a first length that is smaller than a shortest distance between the adjacent pair of the plurality of first pixels,

wherein a shortest distance between the one pixel of the adjacent pair of the plurality of first pixels and the first one of the plurality of third pixels is a second length that is smaller than the shortest distance between the adjacent pair of the plurality of first pixels,

wherein the one of the second pixels has an area that is larger than that of the one of the third pixels, and

wherein a first width of the one pixel of the adjacent pair of the plurality of first pixels measured along a first virtual line coincident with a diagonal of the first virtual square is different from a second width of the one pixel of the adjacent pair of the plurality of first pixels measured along a second virtual line that is parallel to the first virtual line and offset from the first virtual line in a direction perpendicular to the first virtual line.

17. The method of claim 16 , wherein the plurality of first pixels comprise an organic emission layer for emitting green light, the plurality of second pixels comprise an organic emission layer for emitting blue light, and the plurality of third pixels comprise an organic emission layer for emitting red light.

18. The method of claim 17 , wherein the first length is smaller than a shortest distance between the first one of the plurality of second pixels and the first one of the plurality of third pixels.

19. The method of claim 18 , wherein the plurality of first pixels have a different shape than at least one selected from among the plurality of second pixels and the plurality of third pixels.

20. The method of claim 18 , wherein the first one of the plurality of third pixels has an area that is larger than that of one of the plurality of first pixels.

21. The method of claim 18 , wherein the first one of the plurality of second pixels and the first one of the plurality of third pixels have polygonal shapes with at least four sides.

22. The method of claim 17 , wherein the first length is equal to a shortest distance between the first one of the plurality of second pixels and the first one of the plurality of third pixels.

23. The method of claim 22 , wherein the plurality of first pixels have a different shape than at least one selected from among the plurality of second pixels and the plurality of third pixels.

24. The method of claim 22 , wherein the first one of the plurality of third pixels has an area that is larger than that of one of the plurality of first pixels.

25. The method of claim 22 , wherein the first one of the plurality of second pixels and the first one of the plurality of third pixels have polygonal shapes with at least four sides.

26. The method of claim 16 , wherein the plurality of first pixels have a different shape than at least one selected from among the plurality of second pixels and the plurality of third pixels.

27. The method of claim 16 , wherein the first one of the plurality of third pixels has an area that is larger than that of one of the plurality of first pixels.

28. The method of claim 16 , wherein the first one of the plurality of second pixels and the first one of the plurality of third pixels have polygonal shapes with at least four sides.

29. A method for manufacturing an organic light emitting diode (OLED) display, the method comprising:

depositing, using a first fine metal mask, first organic light-emitting material configured to emit light having a first color;

forming first pixels to emit the light having the first color;

depositing, using a second fine metal mask, second organic light-emitting material configured to emit light having a second color;

forming second pixels to emit the light having the second color;

depositing, using a third fine metal mask, third organic light-emitting material configured to emit light having a third color; and

forming third pixels to emit the light having the third color,

wherein the first pixels, the second pixels, and the third pixels are individually addressable pixels for displaying an image, the individually addressable pixels being minimum addressable units of the OLED display,

wherein one of the second pixels is surrounded by four of the first pixels having centers respectively coinciding with vertices of a first virtual square,

wherein one of the third pixels is surrounded by four of the first pixels having centers respectively coinciding with vertices of a second virtual square,

wherein the first pixels, the second pixels, and the third pixels are spaced apart from one another,

wherein the first virtual square and the second virtual square share a common side having endpoints respectively at common vertices of the first virtual square and the second virtual square that respectively coincide with the centers of an adjacent pair of the first pixels,

wherein a shortest distance between one pixel of the adjacent pair of the first pixels and the one of the second pixels is less than a shortest distance between the adjacent pair of the first pixels,

wherein a shortest distance between the one pixel of the adjacent pair of the first pixels and the one of the third pixels is less than the shortest distance between the adjacent pair of the first pixels,

wherein the one of the second pixels has an area that is larger than that of the one of the third pixels, and

wherein every virtual line touching a perimeter of the second pixel and extending in a diagonal direction, which is parallel to a diagonal of the first virtual square extending between the centers of two opposite first pixels of the four of the first pixels that surround the second pixel, is offset from every virtual line touching a perimeter of one of the two opposite first pixels and extending in the diagonal direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2023
From: LEE, SANG-SHIN
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 062628/0353 →
Priority Claims (2)
KR 10-2012-0022967 · Mar 6, 2012 · national
KR 10-2013-0044993 · Apr 23, 2013 · national
Continuity (4)
Continuation 17005753 · Aug 28, 2020
Continuation 13872018 · Apr 26, 2013
Continuation In Part 13614197 · Sep 13, 2012
Related Publication 20220351677A1 · Nov 3, 2022