IP Library › Granted Patent US 11,302,749
Granted Patent B2
US 11,302,749 · App. 17/124,858 · Granted Apr 12, 2022

High resolution low power consumption OLED display with extended lifetime

Inventors: Michael Hack (Carmel, CA); Michael Stuart Weaver (Princeton, NJ); Nicholas J. Thompson (New Hope, PA); Vadim Adamovich (Yardley, PA)
Assignee: Universal Display Corporation
H01L27/3206H01L27/322H01L27/3213H01L27/3218H01L51/5209H01L51/5265H01L51/56H01L2251/5315H01L2251/558
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Quick Facts
Patent No.
US 11,302,749
App. No.
17/124,858
Granted
Apr 12, 2022
Kind
B2
Abstract

Full-color pixel arrangements for use in devices such as OLED displays are provided, in which multiple sub-pixels are configured to emit different colors of light, with each sub-pixel having a different optical path length than some or all of the other sub-pixels within the pixel.

Claims (41)

1. A full-color pixel arrangement for an OLED display, the full-color pixel arrangement comprising:

a first device comprising:

a substrate;

a first electrode layer disposed over the substrate;

a second electrode layer disposed over the first electrode layer; and

a first emissive organic stack disposed between the first electrode layer and the second electrode layer, the first emissive organic stack comprising one or more organic emissive layers;

wherein at least one of the first electrode layer, the substrate, or a layer disposed between the first electrode layer and the substrate has a non-uniform thickness that create a first optical path length and a second optical path length for light generated by the first organic emissive stack;

wherein light emitted by the first device is a different color than light generated by the one or more organic emissive layers in the first emissive organic stack.

2. The full-color pixel arrangement of claim 1 , wherein at least one organic emissive layer within the first organic emissive stack extends across multiple organic emissive stacks within the arrangement.

3. The full-color pixel arrangement of claim 1 , further comprising a second organic emissive stack disposed between the first electrode layer and the second electrode laver, the second organic emissive stack having a third optical path length different than the first optical path length and the second optical path length.

4. The full-color pixel arrangement of claim 3 , wherein at least one of the first electrode layer and the second emissive organic stack has a non-uniform thickness that creates the third optical path length and a fourth optical path length within the first organic emissive stack, the difference between the third optical path length and the fourth optical path length sufficient to cause light emitted via the third optical path length to be a different color than light emitted via the fourth optical path length.

5. The full-color pixel arrangement of claim 3 , wherein the first emissive organic stack provides a first sub-pixel of a pixel in the full-color pixel arrangement, and the second emissive organic stack provides a second sub-pixel of the pixel in the full-color pixel arrangement.

6. The full-color pixel arrangement of claim 1 , wherein the full-color pixel arrangement comprises emissive regions of exactly two colors.

7. The full-color pixel arrangement of claim 1 , wherein the first device provides a single sub-pixel within the full-color pixel arrangement.

8. The full-color pixel arrangement of claim 1 , wherein a plurality of organic emissive regions, materials, or a combination thereof within the first emissive organic stack initially produce white light when the stack is operate in the OLED device.

9. The full-color pixel arrangement of claim 8 , wherein the light emitted by the first emissive organic stack is red or green.

10. The full-color pixel arrangement of claim 8 , wherein the light emitted via by the first emissive organic stack is blue.

11. The full-color pixel arrangement of claim 1 , the first device further comprising a first color filter disposed over at least a portion of the first organic emissive stack.

12. The full-color pixel arrangement of claim 11 , wherein at least a portion of the first organic emissive stack emits light having a same color as light emitted by an organic emissive layer within the first organic emissive stack.

13. The full-color pixel arrangement of claim 11 , wherein light emitted by the portion of the first organic emissive stack over which the first color filter is disposed is a different color, after passing through the first color filter than the light emitted via the first optical path length and the light emitted via the second optical path length.

14. The full-color pixel arrangement of claim 1 , wherein the first electrode is patterned to create the first and second optical path lengths.

15. The full-color pixel arrangement of claim 14 , wherein patterning of the first electrode is patterned such that different sub-pixels have different amounts of reflective material.

16. The full-color pixel arrangement of claim 14 , wherein the non-uniform layer comprises a transport layer, a blocking layer, an injection layer, or an emissive layer.

17. The full-color pixel arrangement of claim 1 , wherein a reflective layer beneath the first electrode is patterned to create different optical path lengths.

18. The full-color pixel arrangement of claim 17 , wherein patterning of the reflective layer is patterned such that different sub-pixels have different amounts of reflective material.

19. An MED display comprising:

a first device comprising:

a substrate;

a first electrode layer disposed over the substrate;

a second electrode layer disposed over the first electrode layer; and

a first emissive organic stack disposed between the first electrode layer and the second electrode layer, the first emissive organic stack comprising one or more organic emissive layers;

wherein at least one of the first electrode layer, the substrate, or a layer disposed between the first electrode layer and the substrate has a non-uniform thickness that create a first optical path length and a second optical path length for light generated by the first organic emissive stack;

wherein light emitted by the first emissive organic stack is a different color than light generated by the one or more organic emissive layers in the first emissive organic stack.

20. A consumer product comprising:

a first device comprising:

a substrate;

a first electrode layer disposed over the substrate;

a second electrode layer disposed over the first electrode layer; and

a first emissive organic stack disposed between the first electrode layer and the second electrode layer, the first emissive organic stack comprising one or more organic emissive layers;

wherein at least one of the first electrode layer, the substrate, or a layer disposed between the first electrode layer and the substrate has a non-uniform thickness that create a first optical path length and a second optical path length for light generated by the first organic emissive stack;

wherein light emitted by the first emissive organic stack is a different color than light generated by the one or more organic emissive layers in the first emissive organic stack.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2020
From: HACK, MICHAEL; WEAVER, MICHAEL STUART; THOMPSON, NICHOLAS J.; ADAMOVICH, VADIM
To: UNIVERSAL DISPLAY CORPORATION
Reel/Frame 054795/0187 →
Continuity (13)
Continuation 16723321 · Dec 20, 2019
Continuation 16395639 · Apr 26, 2019
Continuation 15479947 · Apr 5, 2017
Continuation In Part 14698352 · Apr 28, 2015
Continuation In Part 14605876 · Jan 26, 2015
Continuation In Part 14333756 · Jul 17, 2014
Continuation In Part 14243145 · Apr 2, 2014
Continuation In Part 13744581 · Jan 18, 2013
Provisional Application 62068281 · Oct 24, 2014
Provisional Application 62026494 · Jul 18, 2014
Provisional Application 62005343 · May 30, 2014
Provisional Application 62003269 · May 27, 2014
Related Publication 20210167139A1 · Jun 3, 2021