IP Library Granted Patent US 8,873,018
Granted Patent B2
US 8,873,018 · App. 13/079,195 · Granted Oct 28, 2014

Display substrate and display device including the same comprising first and second column spacers that protrude directly from a black matrix pattern

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Quick Facts
Patent No.
US 8,873,018
App. No.
13/079,195
Granted
Oct 28, 2014
Kind
B2
Abstract

A display substrate includes a substrate on which a first pixel area including a first light-blocking region, and a second pixel area adjacent to the first pixel area and including a second light-blocking region are defined, an insulating layer in the first and second light-blocking regions, a black matrix pattern layer on the insulating layer, a first column spacer in the first light-blocking region and protruding from the black matrix pattern layer, and a second column spacer in the second light-blocking region and protruding from the black matrix pattern layer. A height of a top surface of the first column spacer is different from a height of a top surface of the second column spacer, where the heights are taken with respect to the substrate.

Claims (42)

1. A display substrate comprising:

a substrate comprising:

a first pixel area including a first light-blocking region,

a second pixel area adjacent to the first pixel area and including a second light-blocking region; and

a thin film transistor in each of the first and second light-blocking regions;

an insulating layer in the first and second light-blocking regions;

a black matrix pattern layer on the insulating layer;

a first column spacer which is in the first light-blocking region, protrudes directly from the black matrix pattern layer, and is spaced apart from the thin film transistor of the first light-blocking region in a plan view; and

a second column spacer which is in the second light-blocking region, protrudes directly from the black matrix pattern layer, and is spaced apart from the thin film transistor of the second light-blocking region in the plan view,

wherein a height of a top surface of the first column spacer is different from a height of a top surface of the second column spacer, the heights taken with respect to the substrate.

2. The display substrate of claim 1 , further comprising a step pattern in the first light-blocking region, and interposed between the substrate and the insulating layer.

3. The display substrate of claim 2 , wherein a height of a top surface of a portion of the insulating layer in the first light-blocking region and which overlaps the step pattern, is greater than a height of a top surface of a portion of the insulating layer in the second light-blocking region, the heights taken with respect to the substrate.

4. The display substrate of claim 3 , wherein the first column spacer overlaps the step pattern.

5. The display substrate of claim 4 , wherein the height of the top surface of the first column spacer is greater than the height of the top surface of the second column spacer.

6. The display substrate of claim 5 , wherein a step difference between the top surface of the portion of the insulating layer in the first light-blocking region and which overlaps the step pattern, and the top surface of the portion of the insulating layer in the second light-blocking region, is substantially equal to a step difference between the top surface of the first column spacer and the top surface of the second column spacer.

7. The display substrate of claim 5 , wherein a step difference between the first column spacer and the second column spacer is about 0.5 μm to about 0.7 μm.

8. The display substrate of claim 4 , wherein a width of a lower surface the second column spacer is greater than a width of a lower surface of the first column spacer, the widths taken parallel to the substrate.

9. The display substrate of claim 2 , wherein the step pattern is island-shaped in the first light-blocking region.

10. The display substrate of claim 2 , wherein the step pattern interposed between the substrate and the insulating layer includes a negative photoresist.

11. The display substrate of claim 10 , wherein the step pattern interposed between the substrate and the insulating layer further includes one of blue, red, and green pigments.

12. The display substrate of claim 1 , wherein a width of the first column spacer is substantially equal to a width of the first light-blocking region, and a width of the second column spacer is substantially equal to a width of the second light-blocking region, the widths taken parallel to the substrate.

13. The display substrate of claim 12 , wherein the height of the top surface of the first column spacer is greater than the height of the top surface of the second column spacer.

14. The display substrate of claim 13 , wherein a step difference between the first column spacer and the second column spacer is about 0.5 μm to about 0.7 μm.

15. The display substrate of claim 13 ,

wherein each of the first pixel area and the second pixel area displays any one of blue, green, and red colors, and

wherein the first pixel area and the second pixel area display different colors.

16. A display device comprising:

a first display substrate;

a second display substrate which faces the first display substrate; and

a liquid crystal layer which is interposed between the first display substrate and the second display substrate,

wherein the first display substrate comprises:

a substrate comprising a first pixel area including a first light-blocking region, a second pixel area adjacent to the first pixel area and including a second light-blocking regions, and a thin film transistor in each of the first and second light-blocking regions;

an insulating layer in the first and second light-blocking regions;

a black matrix pattern layer on the insulating layer;

a first column spacer which is in the first light-blocking region, protrudes directly from the black matrix pattern layer; and is spaced apart from the thin film transistyor of the first light-blocking region in a plan view; and

a second column spacer in the second light-blocking region, protrudes directly from the black matrix pattern layer, and is spaced apart from the thin film transistor of the second light-blocking region in the plan view,

wherein a height of a top surface of the first column spacer is different from a height of a top surface of the second column spacer, the heights taken with respect to the substrate.

17. The display device of claim 16 , wherein the first column spacer is in contact with the second display substrate, and the second column spacer is separated from the second display substrate.

18. The display device of claim 17 , wherein the second column spacer is Separated from the second display substrate by a distance of about 0.5 μm to about 0.7 μm.

19. The display device of claim 17 , wherein the first display substrate further comprises a step pattern in the first light-blocking region and interposed between the substrate and the insulating layer.

20. The display device of claim 19 , wherein the first column spacer overlaps the step pattern.

21. The display device of claim 17 , wherein a width of the first column spacer is substantially equal to a width of the first light-blocking region, and a width of the second column spacer is substantially equal to a width of the second light-blocking region, the widths taken parallel to the substrate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2012
From: SAMSUNG ELECTRONICS CO., LTD.
To: SAMSUNG DISPLAY CO., LTD.
Reel/Frame 029151/0055 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2011
From: KWON, SE-AH; LEE, SANG-HUN; KIM, GWAN-SOO; LEE, YUI-KU
To: SAMSUNG ELECTRONICS CO. LTD.
Reel/Frame 026069/0629 →