IP Library Granted Patent US 9,559,333
Granted Patent B2
US 9,559,333 · App. 14/422,849 · Granted Jan 31, 2017

Organic el lighting panel substrate, method for manufacturing organic el lighting panel substrate, organic el lighting panel, and organic el lighting device

Inventor: Yoshikazu Sakaguchi (Tokyo, JP)
Assignee: NEC LIGHTING, LTD.
H01L51/5253H01L51/5212H01L51/0085H01L51/56H01L2251/5361
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Quick Facts
Patent No.
US 9,559,333
App. No.
14/422,849
Granted
Jan 31, 2017
Kind
B2
Abstract

Provided is an organic EL illumination panel substrate, and a manufacturing method therefor, that improves the manufacturing efficiency and reduces the cost for an organic EL illumination panel substrate and that is capable of achieving an organic EL illumination panel with superior yields and reliability. The organic EL illumination panel substrate has a light transmitting substrate ( 11 ), a transparent electrode ( 12 ) and an auxiliary electrode ( 13 ). The transparent electrode ( 12 ) is arranged on one face of the light transmitting substrate ( 11 ). The auxiliary electrode ( 13 ) is electrically connected to the transparent electrode ( 12 ). On the light transmitting substrate ( 11 ), there is an insulating layer ( 14 ) at a position corresponding to an electrode lead-out section for an upper electrode of an organic EL layer that is disposed facing the transparent electrode ( 12 ) and that constitutes the organic EL illumination panel. There is a conductive layer between the light transmitting substrate ( 11 ) and the insulating layer ( 14 ).

Claims (26)

1. An organic EL lighting panel substrate comprising:

a translucent substrate;

a transparent electrode; and

an auxiliary electrode, wherein

the transparent electrode is arranged on a surface of the translucent substrate, and the whole transparent electrode is electrically connected,

the auxiliary electrode is electrically connected to the transparent electrode, and

the organic EL lighting panel substrate further comprises: an insulating layer at a position corresponding to an electrode lead-out part of an upper electrode of an organic EL layer that forms an organic EL lighting panel, the upper electrode being provided above the translucent substrate in such a manner as to face the transparent electrode; and a conductive layer between the translucent substrate and the insulating layer.

2. The substrate according to claim 1 , wherein the conductive layer includes the same material as at least one of the transparent electrode and the auxiliary electrode.

3. The organic EL lighting panel substrate of claim 1 , comprising plural of the auxiliary electrode, wherein,

the translucent substrate has an outer perimeter that defines an upper surface area of the translucent substrate,

a lower surface of the transparent electrode is in contact with and covers all of an upper surface area of the translucent substrate, each part of the transparent electrode within the upper surface area of the translucent substrate is electrically connected to all other parts of the transparent electrode within the upper surface area of the translucent substrate, and

a lower surface of each of the auxiliary electrodes is in contact with an upper surface of the transparent electrode, the plural auxiliary electrodes being spaced apart from each other on the transparent electrode and including first outside auxiliary electrode, a second outside auxiliary electrode, and at least one inside auxiliary electrode located between the first and second outside auxiliary electrodes,

the insulating layer is located in contact with the upper surface of the transparent electrode within the upper surface area of the translucent substrate, the insulating layer including a first insulating layer region located outside and spaced apart from the first outside auxiliary electrode and a second insulating layer region located outside and spaced apart from the second outside auxiliary electrode,

the electrode lead-out part of the upper electrode comprising i) a first electrode lead-out part located on an upper surface of the first insulating layer region, ii) a second electrode lead-out part located on an upper surface of the second insulating layer region, wherein the upper electrode includes a further electrode part that extends from the first electrode lead-out part to the second electrode lead-out part and is located over and spaced apart from the plural auxiliary electrodes.

4. The organic EL lighting panel substrate of claim 3 , wherein the plural auxiliary electrodes are spaced apart from each other on the transparent electrode at constant intervals in a grid pattern.

5. The organic EL lighting panel substrate of claim 4 , further comprising plural spaced apart electrode-insulating members, each electrode-insulating member covering one of the plural auxiliary electrode, a lower surface of each electrode-insulating member being in contact with the upper surface of the transparent electrode,

wherein the organic EL layer extends from the upper surface of the transparent electrode to a lower surface of the further electrode part of the upper electrode that extends from the first electrode lead-out part to the second electrode lead-out part.

6. The organic EL lighting panel substrate of claim 3 , further comprising;

plural spaced apart electrode-insulating members, each electrode-insulating member covering one of the plural auxiliary electrode, a lower surface of each electrode-insulating member being in contact with the upper surface of the transparent electrode,

wherein the organic EL layer extends from the upper surface of the transparent electrode to a lower surface of the further electrode part of the upper electrode that extends from the first electrode lead-out part to the second electrode lead-out part, the organic EL layer contacting the upper surface of the transparent electrode in regions between adjacent auxiliary electrodes, a region between the first insulating layer region and the first outside auxiliary electrode, and a region between second insulating layer region and the second outside auxiliary electrode.

7. The organic EL lighting panel substrate of claim 1 , comprising plural of the auxiliary electrode, wherein,

a lower surface of the transparent electrode is in contact with an upper surface area of the translucent substrate, each part of the transparent electrode in contact with the translucent substrate being electrically connected to all other parts of the transparent electrode in contact with the upper surface area of the translucent substrate, and

the plural auxiliary electrodes area spaced apart from each other on the transparent electrode and included first outside auxiliary electrode, a second outside auxiliary electrode, and at least one inside auxiliary electrode located between the first and second outside auxiliary electrodes,

the insulating layer is located in contact with the upper surface of the transparent electrode, the insulating layer including a first insulating layer region located outside and spaced apart from the first outside auxiliary electrode and a second insulating layer region located outside and spaced apart from the second outside auxiliary electrode,

the electrode lead-out part of the upper electrode comprising i) a first electrode lead-out part located on an upper surface of the first insulating layer region, ii) a second electrode lead-out part located on an upper surface of the second insulating layer region, wherein the upper electrode includes a further electrode part that extends from the first electrode lead-out part to the second electrode lead-out part and is located over and spaced apart from the plural auxiliary electrodes, and

the organic EL layer extends from the upper surface of the transparent electrode to a lower surface of the further electrode part of the upper electrode that extends from the first electrode lead-out part to the second electrode lead-out part, the organic EL layer contacting the upper surface of the transparent electrode in regions between adjacent auxiliary electrodes, a region between the first insulating layer region and the first outside auxiliary electrode, and a region between second insulating layer region and the second outside auxiliary electrode.

Assignments (4)
CHANGE OF ADDRESS Recorded Jan 23, 2024
From: HOTALUX, LTD.
To: HOTALUX, LTD.
Reel/Frame 066365/0200 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE ADDRESS PREVIOUSLY RECORDED AT REEL: 050850 FRAME: 0287. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 6, 2019
From: HOTALUX, LTD.
To: HOTALUX, LTD.
Reel/Frame 050942/0429 →
CHANGE OF NAME Recorded Oct 29, 2019
From: NEC LIGHTING, LTD.
To: HOTALUX, LTD.
Reel/Frame 050850/0287 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2015
From: SAKAGUCHI, YOSHIKAZU
To: NEC LIGHTING, LTD.
Reel/Frame 034994/0006 →
Priority Claims (1)
JP 2012-182746 · Aug 21, 2012 · national
Continuity (1)
Related Publication 20150243927A1 · Aug 27, 2015