IP Library Granted Patent US 9,214,507
Granted Patent B2
US 9,214,507 · App. 13/588,831 · Granted Dec 15, 2015

Narrow border organic light-emitting diode display

Inventors: Dinesh C. Mathew (Fremont, CA); Adam T. Garelli (Santa Clara, CA); Paul S. Drzaic (Morgan Hill, CA); Wei Chen (Palo Alto, CA); Brett W. Degner (Menlo Park, CA); Bryan W. Posner (La Selva Beach, CA)
Assignee: Apple Inc.
H01L27/3276G06F3/041H05B33/0896H01L51/5281H03K2217/96031
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Quick Facts
Patent No.
US 9,214,507
App. No.
13/588,831
Granted
Dec 15, 2015
Kind
B2
Abstract

An electronic device may be provided having an organic light-emitting diode display and control circuitry for operating the display. The display may include one or more display layers interposed between the control circuitry and a display layer having thin-film transistors. The electronic device may include a coupling structure interposed between the layer of thin-film transistors and the control circuitry that electrically couples the layer of thin-film transistors to the control circuitry. The coupling structure may include a dielectric member having a conductive via, a flexible printed circuit having a bent portion, or a conductive via formed in an encapsulation layer of the display. The display may include a layer of opaque masking material. The layer of opaque masking material may be formed on an encapsulation layer, an organic emissive layer, a thin-film transistor layer, or a glass layer of the organic light-emitting diode display.

Claims (39)

1. An electronic device, comprising:

an organic light-emitting diode display that includes an array of thin-film transistors;

control circuitry configured to generate control signals for operating the organic light-emitting diode display, wherein the organic light-emitting diode display includes at least one display layer interposed between the array of thin-film transistors and the control circuitry; and

at least one coupling structure that couples the array of thin-film transistors to the control circuitry, wherein the at least one coupling structure includes a conductive via coupled between the array of thin-film transistors and the control circuitry.

2. The electronic device defined in claim 1 wherein the at least one coupling structure comprises a dielectric member interposed between a portion of the array of thin-film transistors and the control circuitry.

3. The electronic device defined in claim 2 wherein the conductive via is coupled to the array of thin-film transistors using an anisotropic conductive adhesive.

4. The electronic device defined in claim 2 wherein the control circuitry comprises a printed circuit board and a flexible printed circuit attached to the printed circuit board.

5. The electronic device defined in claim 4 wherein the at least one coupling structure is attached to the flexible printed circuit using an anisotropic conductive adhesive.

6. The electronic device defined in claim 5 wherein the at least one display layer comprises a layer of organic emissive material.

7. The electronic device defined in claim 6 wherein the at least one display layer further comprises an encapsulation layer that covers the layer of organic emissive material.

8. The electronic device defined in claim 1 wherein the at least one display layer comprises a layer of organic emissive material.

9. The electronic device defined in claim 8 wherein the at least one display layer further comprises an encapsulation layer that covers the layer of organic emissive material.

10. The electronic device defined in claim 9 wherein the at least one coupling structure comprises a conductive via in the encapsulation layer that extends from a first surface of the encapsulation layer to a second surface of the encapsulation layer.

11. The electronic device defined in claim 10 wherein the control circuitry comprises a flexible printed circuit and wherein the conductive via is attached to the flexible printed circuit using anisotropic conductive adhesive.

12. An electronic device, comprising:

an organic light-emitting diode display that includes an array of thin-film transistors;

control circuitry configured to generate control signals for operating the organic light-emitting diode display, wherein the organic light-emitting diode display includes at least one display layer interposed between the array of thin-film transistors and the control circuitry; and

at least one coupling structure that couples the array of thin-film transistors to the control circuitry, wherein the at least one coupling structure comprises a flexible printed circuit having a bent portion that extends around the at least one display layer.

13. The electronic device defined in claim 12 wherein the control circuitry comprises a printed circuit board and wherein the flexible printed circuit couples the array of thin-film transistors to the printed circuit board.

14. The electronic device defined in claim 12 wherein the at least one display layer is transparent.

15. A display, comprising:

an organic light-emitting diode layer having opposing first and second surfaces;

an encapsulation layer formed on the first surface;

a substrate layer formed on the second surface; and

a conductive via formed in the substrate layer that couples the organic light-emitting diode layer to control circuitry for the display.

16. The display defined in claim 15 wherein the display includes an active area for displaying images and an inactive area, the display further comprising a layer of opaque masking material formed on a display layer in the inactive area.

17. The display defined in claim 16 wherein the opaque masking material is interposed between a portion of the encapsulation layer and a portion of the organic light-emitting diode layer.

18. The display defined in claim 16 , further comprising:

a light-polarizing layer formed on the encapsulation layer, wherein the opaque masking material is interposed between the light-polarizing layer and the encapsulation layer.

19. The display defined in claim 16 wherein the organic light-emitting diode layer comprises a layer of thin-film transistor circuitry and a layer of organic light-emitting material.

20. The display defined in claim 19 wherein opaque masking material is formed on the layer of thin-film transistor circuitry.

21. A display, comprising:

a transparent substrate layer having opposing first and second surfaces;

an organic light-emitting diode layer on the first surface; and

a light-polarizing layer formed on the second surface; and

opaque masking material interposed between a portion of the transparent substrate layer and a portion of the light-polarizing layer.

22. The display defined in claim 21 wherein the transparent substrate layer comprises glass.

23. The display defined in claim 22 wherein the opaque masking material comprises a polymer material infused with an opaque dye.

24. The display defined in claim 22 wherein the opaque masking material comprises chrome oxide.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2012
From: MATHEW, DINESH C.; GARELLI, ADAM T.; DRZAIC, PAUL S.; CHEN, WEI; DEGNER, BRETT W.; POSNER, BRYAN W.
To: APPLE INC.
Reel/Frame 028807/0824 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 17, 2012
From: GARELLI, ADAM T.
To: APPLE INC.
Reel/Frame 028807/0941 →
Continuity (1)
Related Publication 20140049522A1 · Feb 20, 2014