IP Library Granted Patent US 10,411,210
Granted Patent B2
US 10,411,210 · App. 15/828,069 · Granted Sep 10, 2019

Light emitting diode display with redundancy scheme

Inventors: Andreas Bibl (Los Altos, CA); Kapil V. Sakariya (Los Altos, CA); Charles R. Griggs (San Jose, CA); James Michael Perkins (Mountain View, CA)
Assignee: Apple Inc.
H01L51/50G09G3/006H01L21/6835H01L24/24H01L24/75H01L24/82H01L24/83H01L24/97H01L27/156G09G3/3208H01L24/32H01L27/1214H01L2221/68368H01L2221/68381H01L2224/2401H01L2224/245H01L2224/2405H01L2224/24011H01L2224/24137H01L2224/24227H01L2224/29005H01L2224/29109H01L2224/29111H01L2224/29113H01L2224/29118H01L2224/29124H01L2224/29139H01L2224/29144H01L2224/29147H01L2224/29155H01L2224/32014H01L2224/32057H01L2224/32237H01L2224/32503H01L2224/759H01L2224/7565H01L2224/7598H01L2224/75252H01L2224/75301H01L2224/75725H01L2224/82101H01L2224/82102H01L2224/82104H01L2224/83H01L2224/83005H01L2224/8381H01L2224/8383H01L2224/83192H01L2224/83193H01L2224/83203H01L2224/83805H01L2224/83825H01L2224/97H01L2924/0781H01L2924/12041H01L2924/12042H01L2924/12044
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Quick Facts
Patent No.
US 10,411,210
App. No.
15/828,069
Granted
Sep 10, 2019
Kind
B2
Abstract

A display panel and method of manufacture are described. In an embodiment, a display substrate includes a pixel area and a non-pixel area. An array of subpixels and corresponding array of bottom electrodes are in the pixel area. An array of micro LED devices are bonded to the array of bottom electrodes. One or more top electrode layers are formed in electrical contact with the array of micro LED devices. In one embodiment a redundant pair of micro LED devices are bonded to the array of bottom electrodes. In one embodiment, the array of micro LED devices are imaged to detect irregularities.

Claims (24)

1. A display panel with redundancy scheme comprising:

a display substrate including a pixel area that includes an array of subpixels, an array of redundant pairs of landing areas, an array of redundant LED bonding site pairs, and an array of redundant LED device pairs;

wherein each subpixel in the array of subpixels is designed for a redundant primary color emission, and each subpixel includes a redundant pair of landing areas and a corresponding LED bonding site pair on the redundant pair of landing areas to receive a corresponding redundant LED device pair;

wherein the array of subpixels includes an array of first subpixels designed for a first primary color emission, an array of second subpixels designed for a second primary color emission different from the first primary color emission, and an array of third subpixels designed for a third primary color emission different from the first and second primary color emissions;

circuitry to switch and drive the array of subpixels; and

one or more LED device irregularities among the array of redundant LED device pairs, wherein each corresponding landing area containing an LED device irregularity is electrically disconnected from the circuitry.

2. The display panel of claim 1 , wherein each corresponding landing area is cut to electrically disconnect the corresponding landing area from the circuitry.

3. The display panel of claim 2 , wherein the circuitry is contained within an array of micro controller chips.

4. The display panel of claim 3 , wherein the array of micro controller chips is bonded to the display substrate.

5. The display panel of claim 4 , wherein each micro controller chip is bonded to the display substrate within the pixel area.

6. The display panel of claim 5 , wherein each micro controller chip is connected to a scan driver circuit and a data driver circuit.

7. The display panel of claim 2 , wherein the circuitry is contained within the display substrate.

8. The display panel of claim 2 , further comprising a passivation layer material covering the one or more LED device irregularities.

9. The display panel of claim 1 , wherein the first subpixel array is designed to emit a red primary color emission, the second subpixel array is designed to emit a green primary color emission, and the third subpixel array is designed to emit a blue primary color emission.

10. The display panel of claim 1 , further comprising one or more top electrode layers in electrical contact with the array of redundant LED device pairs.

11. The display panel of claim 10 , wherein the one or more top electrode layers is a single top electrode layer in electrical contact with the array of redundant LED device pairs.

12. The display panel of claim 11 , wherein the single top electrode layer is in electrical contact with a plurality of ground tie lines running between the array of subpixels through a plurality of openings formed in a planarization layer.

13. The display panel of claim 1 , wherein each LED device has a maximum width of 1 to 100 μm.

14. The display panel of claim 13 , wherein each LED device comprises a semiconductor material.

15. The display panel of claim 14 , wherein each LED device includes a p-doped layer, an n-doped layer, and a quantum well layer between the p-doped layer and the n-doped layer.

16. The display panel of claim 1 , wherein the one or more top electrode layers do not make electrical contact with the one or more irregularities.

17. The display panel of claim 1 :

wherein array of redundant LED device pairs includes a first array of redundant LED device pairs designed for the first primary color emission, a second array of redundant LED device pairs designed for the second primary color emission, and a third array of redundant LED device pairs designed for the third primary color emission; and

wherein the first array of redundant LED device pairs is in the array of first subpixels; the second array of redundant LED device pairs is in the array of second subpixels; and the third array of redundant LED device pairs is in the array of third subpixels.

Continuity (3)
Continuation 14798298 · Jul 13, 2015
Continuation 13842925 · Mar 15, 2013
Related Publication 20180102492A1 · Apr 12, 2018
Cited By (1)
US 12,437,703