IP Library Patent Application 12289820
Patent Application
App. No. 12/289,820

Oganic EL display device and manufacturing method thereof

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Quick Facts
Patent No.
US None
App. No.
12/289,820
Abstract

A sealing method of an organic EL display device which can effectively prevent the organic EL display device from being influenced by moisture and can suppress the manufacturing cost of the organic EL display device is provided. An organic EL element is covered with a resin sheet. The resin sheet is adhered to a sealing substrate and an element substrate on which organic EL elements are formed by lamination. At a peripheral portion of the organic EL display device, between the element substrate and the sealing substrate, an organic seal is filled to a side portion of the resin sheet using an under-filling method, and the organic seal is cured by radiating ultraviolet rays. Due to such constitution, it is possible to realize the highly reliable sealing of the organic EL display devices at a low cost.

Claims (30)

1 . An organic EL display device comprising:

an element substrate which includes a display region on which pixels each of which has an upper electrode, a lower electrode, and an organic EL layer sandwiched between the upper electrode and the lower electrode are formed in a matrix array and a terminal portion which supplies an electric current and a signal to the display region; and

a sealing substrate which seals the display region, wherein

a resin sheet is sandwiched between the element substrate and the sealing substrate, and a space which is formed around a side surface of the resin sheet and between the element substrate and the sealing substrate is filled with an organic seal.

2 . An organic EL display device according to claim 1 , wherein the resin sheet is laminated to the sealing substrate, and the resin sheet is also laminated to the upper electrodes formed on the element substrate.

3 . An organic EL display device according to claim 1 , wherein the organic seal is cured by ultraviolet rays.

4 . An organic EL display device according to claim 1 , wherein a protective film is formed on the upper electrodes.

5 . An organic EL display device according to claim 4 , wherein the protective film is an inorganic film and contains any one of SiNx, SiOx and SiNxOy.

6 . An organic EL display device according to claim 4 , wherein the protective film is formed of a plurality of layers, and at least one layer out of the plurality of layers contains any one of SiNx, SiOx and SiNxOy.

7 . An organic EL display device comprising:

an element substrate which includes a display region on which pixels each of which has an upper electrode, a lower electrode, and an organic EL layer sandwiched between the upper electrode and the lower electrode are formed in a matrix array and a terminal portion which supplies an electric current and a signal to the display region; and

a sealing substrate which seals the display region, wherein

a resin sheet is sandwiched between the element substrate and the sealing substrate, an inorganic seal is formed on a side surface of the resin sheet and between the element substrate and the sealing substrate, and an organic seal is formed outside the inorganic seal and between the element substrate and the sealing substrate.

8 . An organic EL display device according to claim 7 , wherein the inorganic seal contains any one of silicon oxide, silicon nitride, aluminum oxide, titanium oxide, zirconium oxide, and magnesium oxide.

9 . An organic EL display device according to claim 7 , wherein a protective film is formed on the upper electrodes.

10 . An organic EL display device according to claim 7 , wherein the protective film is an inorganic film and contains any one of SiNx, SiOx and SiNxOy.

11 . An organic EL display device according to claim 7 , wherein the protective film is formed of a plurality of layers, and at least one layer out of the plurality of layers contains any one of SiNx, SiOx and SiNxOy.

12 . A manufacturing method of an organic EL display device which includes an element substrate having a display region on which pixels each of which has an upper electrode, a lower electrode, and an organic EL layer sandwiched between the upper electrode and the lower electrode are formed in a matrix array and a terminal portion which supplies an electric current and a signal to the display region, a sealing substrate which seals the display region, and a resin sheet which is sandwiched between the element substrate and the sealing substrate, wherein

the manufacturing method of an organic EL display device comprising the steps of:

adhering the resin sheet to a predetermined position of the sealing substrate;

adhering the resin sheet to the element substrate; and

filling an organic seal in a space which is formed around a side surface of the resin sheet and between the element substrate and the sealing substrate.

13 . A manufacturing method of an organic EL display device according to claim 12 , wherein the sealing substrate and the resin sheet are adhered to each other by lamination, and the resin sheet and the element substrate are adhered to each other by lamination.

14 . A manufacturing method of an organic EL display device according to claim 12 , wherein the organic seal is filled in the space which is formed between the element substrate and the sealing substrate by an under-filling method.

15 . A manufacturing method of an organic EL display device which includes an element substrate having a display region on which pixels each of which has an upper electrode, a lower electrode, and an organic EL layer sandwiched between the upper electrode and the lower electrode are formed in a matrix array and a terminal portion which supplies an electric current and a signal to the display region, a sealing substrate which seals the display region, and a resin sheet which is sandwiched between the element substrate and the sealing substrate, wherein

the manufacturing method of an organic EL display device comprising the steps of:

adhering a mother element substrate on which a plurality of regions each including the display region and the terminal portion is formed and a mother sealing substrate to which a plurality of resin sheets is adhered corresponding to the display regions to each other;

separating a substrate formed by adhering the mother element substrate and the mother sealing substrate into individual organic EL display panels; and

applying an organic seal to a side surface of the resin sheet between the element substrate and the sealing substrate of the separated organic EL display panel by coating.

16 . A manufacturing method of an organic EL display device according to claim 15 , wherein the organic seal is applied to the side surface by an under-filling method.

Assignments (3)
MERGER Recorded Dec 13, 2011
From: IPS ALPHA SUPPORT CO., LTD.
To: PANASONIC LIQUID CRYSTAL DISPLAY CO., LTD.
Reel/Frame 027482/0140 →
ATTACHED ARE (1) THE COMPANY SPLIT DOCUMENTS IN JAPANESE WITH ENGLISH TRANSLATION THEREOF AND (2) THE CERTIFICATE OF COMPANY SPLIT DOCUMENT IN JAPANESE WITH ENGLISH TRANSLATION, WHICH TOGETHER CONVEY 50% OWNERSHIP OF THE REGISTERED PATENTS AS LISTED IN THE ATTACHED TO EACH OF THE RECEIVING PARTIES (SEE PAGE 10, EXHIBIT 2-1, SECTION 1 OF THE ENGLISH TRANSLATION OF THE COMPANY SPLIT PLAN.) Recorded Dec 13, 2011
From: HITACHI, DISPLAYS, LTD.
To: HITACHI DISPLAYS, LTD.; IPS ALPHA SUPPORT CO., LTD.
Reel/Frame 027615/0589 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 5, 2008
From: MATSUZAKI, EIJI; ISHII, YOSHINORI; KASE, SATORU
To: HITACHI DISPLAYS, LTD.
Reel/Frame 021867/0772 →