IP Library Granted Patent US 12690353
Granted Patent B2
US 12690353 · App. 18/359,195 · Granted Jul 21, 2026

Light emitting display device

Inventor: Kwang Hyun Kim (Paju-si, KR)
Assignee: LG DISPLAY CO., LTD.
H10K59/353H10K50/156H10K59/12
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Quick Facts
Patent No.
US 12690353
App. No.
18/359,195
Granted
Jul 21, 2026
Kind
B2
Abstract

A light emitting display device including a substrate including a first subpixel, a second subpixel, and a third subpixel; a red light emitting element at the first subpixel, the red light emitting element comprising a red light emitting layer; a green light emitting element at the second subpixel, the green light emitting element comprising a green light emitting layer; and a blue light emitting element at the third subpixel, the blue light emitting element comprising a blue light emitting layer. In addition, a first wavelength difference between a photoluminescence peak and an electroluminescence peak of the red light emitting element is 2 nm or less, a second wavelength difference between a photoluminescence peak and an electroluminescence peak of the green light emitting element is 2 nm or less, and a third wavelength difference between a photoluminescence peak and an electroluminescence peak of the blue light emitting element is 2 nm or less.

Claims (47)

1 . A light emitting display device comprising:

a substrate including a first subpixel, a second subpixel, and a third subpixel;

a red light emitting element at the first subpixel, the red light emitting element comprising a red light emitting layer;

a green light emitting element at the second subpixel, the green light emitting element comprising a green light emitting layer; and

a blue light emitting element at the third subpixel, the blue light emitting element comprising a blue light emitting layer, wherein:

a first wavelength difference between a photoluminescence peak and an electroluminescence peak of the red light emitting element is 2 nm or less,

a second wavelength difference between a photoluminescence peak and an electroluminescence peak of the green light emitting element is 2 nm or less,

a third wavelength difference between a photoluminescence peak and an electroluminescence peak of the blue light emitting element is 2 nm or less, and

wherein white light obtained by summing the red light, the green light, and the blue light has a color viewing angle distance of 0.010 or less at a viewing angle of 60° or less.

2 . The light emitting display device according to claim 1 , wherein:

at a viewing angle of 60° or less, a maximum value of a first color viewing angle distance of red light from the red light emitting element is largest and a maximum value of a third color viewing angle distance of blue light from the blue light emitting element is smallest.

3 . The light emitting display device according to claim 2 , wherein:

the maximum value of the first color viewing angle distance is generated at a viewing angle of 45° to 60°, and each of a maximum value of the third color viewing angle distance and the maximum value of the third color viewing angle distance is generated at a viewing angle of 30° to 60°.

4 . The light emitting display device according to claim 1 , wherein at the same viewing angle,

each of a first color viewing angle distance of red light from the red light emitting element, a second color viewing angle distance of green light from the green light emitting element, and a third color viewing angle distance of blue light from the blue light emitting element is greater than a fourth color viewing angle distance of white light obtained by summing the red light, the green light, and the blue light.

5 . The light emitting display device according to claim 1 , wherein:

a first color viewing angle distance of red light from the red light emitting element is greater than each of a second color viewing angle distance of green light from the green light emitting element and a third color viewing angle distance of blue light from the blue light emitting element at a viewing angle of more than 20° to 60°.

6 . The light emitting display device according to claim 1 , wherein:

a first color viewing angle distance of red light from the red light emitting element is less than each of a second color viewing angle distance of green light from the green light emitting element and a third color viewing angle distance of blue light from the blue light emitting element at a viewing angle of 0° to 20°.

7 . The light emitting display device according to claim 1 , wherein:

each of the red light emitting element, the green light emitting element, and the blue light emitting element further comprises a first electrode and a second electrode opposite each other, and

the red light emitting layer, the green light emitting layer, and the blue light emitting layer are respectively provided between the first electrode and the second electrode and have different vertical distances between the first electrode and the second electrode.

8 . The light emitting display device according to claim 7 , wherein the red light emitting element, the green light emitting element, and the blue light emitting element have different thicknesses.

9 . The light emitting display device according to claim 7 , further comprising:

a capping layer on the second electrode, wherein:

the second electrode comprises a translucent electrode, and

the first electrode comprises a reflective electrode.

10 . The light emitting display device according to claim 7 , wherein:

the red light emitting layer comprises a plurality of red light emitting layers stacked over each other at the first subpixel, and at least one common layer therebetween,

the green light emitting layer comprises a plurality of green light emitting layers stacked over each other at the second subpixel, with the at least one common layer therebetween, and

the blue light emitting layer comprises a plurality of blue light emitting layers stacked over each other at the third subpixel, with the at least one common layer therebetween.

11 . The light emitting display device according to claim 10 , further comprising:

a first hole transport auxiliary layer provided between an uppermost one of the plurality of red light emitting layers and the at least one common layer; and

a second hole transport auxiliary layer provided between an uppermost one of the plurality of green light emitting layers and the at least one common layer.

12 . The light emitting display device according to claim 10 , wherein the at least one common layer comprises an electron transport layer, a charge generation layer, and a hole transport layer.

13 . The light emitting display device according to claim 1 , wherein:

each of the red light emitting element, the green light emitting element, and the blue light emitting element comprises:

a first electrode;

a hole injection layer on the first electrode;

a hole transport layer on the hole injection layer;

an electron transport layer on the respective one of the red light emitting layer, the green light emitting layer and the blue light emitting layer; and

a second electrode on the electron transport layer, and

wherein each of the red light emitting layer, the green light emitting layer, and the blue light emitting layer is provided between the hole transport layer and the electron transport layer.

14 . The light emitting display device according to claim 13 , further comprising:

a first hole transport auxiliary layer between the hole transport layer and the red light emitting layer; and

a second hole transport auxiliary layer between the hole transport layer and the green light emitting layer.

15 . The light emitting display device according to claim 14 , wherein the first hole transport auxiliary layer is thicker than the second hole transport auxiliary layer.