IP Library Patent Application 12506273
Patent Application
App. No. 12/506,273

COLOR DISPLAY AND METHOD FOR PRODUCING THE SAME

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Quick Facts
Patent No.
US None
App. No.
12/506,273
Abstract

A color display including a plurality of pixels on a substrate, each pixels being area-divided into plural sub-pixels including at least two sub-pixels that each emit colored light of different wavelengths and a white sub-pixel, wherein the at least two sub-pixels and the white sub-pixel each have at least an optical path length-adjusting layer and an organic electroluminescence layer interposed between a layer that partially transmits light and partially reflects light and a light reflection layer to form a resonator structure.

Claims (15)

1 . A color display comprising a plurality of pixels on a substrate, each pixels being area-divided into plural sub-pixels including at least two sub-pixels that each emit colored light of different wavelengths and a white sub-pixel, wherein the at least two sub-pixels and the white sub-pixel each have at least an optical path length-adjusting layer and an organic electroluminescence layer interposed between a layer that partially transmits light and partially reflects light and a light reflection layer to form a resonator structure.

2 . The color display according to claim 1 , wherein the white sub-pixel is area-divided into at least two sub-sub-pixels that each emit colored light of different wavelengths, and the at least two sub-sub-pixels each form a resonator structure.

3 . The color display according to claim 1 , wherein the at least two sub-pixels include at least three sub-pixels including a red sub-pixel, a green sub-pixel and a blue sub-pixel, and the white sub-pixel includes three sub-sub-pixels of a red sub-sub-pixel, a green sub-sub-pixel and a blue sub-sub-pixel.

4 . The color display according to claim 3 , wherein the resonator structures of the red sub-pixel, the green sub-pixel, and the blue sub-pixel and the resonator structures of the red sub-sub-pixel, the green sub-sub-pixel, and the blue sub-sub-pixel are respectively substantially the same for each same color.

5 . The color display according to claim 1 , wherein the organic electroluminescence layers of the at least two sub-pixels and the white sub-pixel are layers that each emit a white light, and comprise substantially the same composition as each other.

6 . The color display according to claim 1 , wherein the optical path length-adjusting layer is formed of an inorganic electric insulating material.

7 . The color display according to claim 3 , wherein the optical path length-adjusting layers of the red sub-pixel, the green sub-pixel, the blue sub-pixel, the red sub-sub-pixel, the green sub-sub-pixel, and the blue sub-sub-pixel comprise substantially the same material as each other and are different in thickness.

8 . The color display according to claim 3 , wherein the organic electroluminescence layers of the red sub-pixel, the green sub-pixel, the blue sub-pixel, the red sub-sub-pixel, the green sub-sub-pixel, and the blue sub-sub-pixel respectively comprise layers that emit a white light and have substantially the same composition as each other, and the optical path length-adjusting layers of the red sub-pixel, the green sub-pixel, the blue sub-pixel, the red sub-sub-pixel, the green sub-sub-pixel, and the blue sub-sub-pixel comprise substantially the same material as each other and are different in thickness.

9 . A method for producing a color display in which a plurality of pixels is formed on a substrate, each pixel being area-divided into plural sub-pixels including at least two sub-pixels that each emit colored light of different wavelengths and a white sub-pixel, wherein the white sub-pixel is area-divided into at least two sub-sub-pixels that each emit colored light of different wavelengths, and the at least two sub-pixels and the at least two sub-sub-pixels each form a resonator structure, the resonator structure having at least an optical path length-adjusting layer and an organic electroluminescence layer interposed between a layer that partially transmits light and partially reflects light and a light reflection layer, in which the organic electroluminescence layer is a white light-emitting layer, the method comprising:

successively forming the organic electroluminescence layers of the at least two sub-pixels and the at least two sub-sub-pixels with substantially the same composition;

successively forming the optical path length-adjusting layers of the at least two sub-pixels and the at least two sub-sub-pixels with substantially the same material; and

adjusting a wavelength of light to be emitted by a thickness of the optical path length-adjusting layer.

10 . The method for producing a color display according to claim 9 , wherein the at least two sub-pixels include at least three sub-pixels including a red sub-pixel, a green sub-pixel and a blue sub-pixel, and the white sub-pixel includes three sub-sub-pixels of a red sub-sub-pixel, a green sub-sub-pixel and a blue sub-sub-pixel.

11 . The method for producing a color display according to claim 10 , wherein the thickness of each of the optical path length-adjusting layers of the red sub-pixel, the green sub-pixel, and the blue sub-pixel and the thickness of each of the optical path length-adjusting layers of the red sub-sub-pixel, the green sub-sub-pixel, and the blue sub-sub-pixel are substantially the same for each same color.

12 . The method for producing a color display according to claim 9 , wherein the optical path length-adjusting layer is formed of an inorganic electric insulating material.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2012
From: FUJIFILM CORPORATION
To: UDC IRELAND LIMITED
Reel/Frame 028889/0759 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2009
From: SAKAMOTO, YOSHIAKI
To: FUJIFILM CORPORATION
Reel/Frame 022993/0982 →