IP Library Granted Patent US 7,188,919
Granted Patent B2
US 7,188,919 · App. 10/607,377 · Granted Mar 13, 2007

Liquid discharge method and apparatus using individually controllable nozzles

Assignee: Canon Kabushiki Kaisha
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Quick Facts
Patent No.
US 7,188,919
App. No.
10/607,377
Granted
Mar 13, 2007
Kind
B2
Abstract

The amounts of liquid discharged from a liquid discharge head to predetermined areas can be made uniform while suppressing an increase in circuit size. In order to achieve this object, there is provided a liquid discharge apparatus which discharges a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein the liquid discharge head includes a subset of nozzles capable of individually controlling liquid discharge amounts, among the plurality of nozzles. The subset of nozzles is smaller in number than the total number of the plurality of nozzles.

Claims (56)

1. A liquid discharge apparatus comprising:

a liquid discharge head including at least one first nozzle having a discharge driving element connected to discharge amount control means which is capable of individually controlling a liquid discharge amount of the at least one first nozzle, and at least one second nozzle having a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the at least one second nozzle, the at least one second nozzle discharging the same liquid as liquid discharged from the at least one first nozzle; and

control means for controlling said liquid discharge head to discharge the liquid to each of a plurality of pixels on a substrate so that each of the plurality of pixels is formed by a plurality of liquid discharges discharged from a set of nozzles including the at least one first nozzle and at the least one second nozzle.

2. A liquid discharge apparatus which discharges a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

said liquid discharge head includes a first nozzle that ejects the liquid and which has a discharge driving element connected to discharge amount control means capable of individually changing a liquid discharge amount of the first nozzle, and a second nozzle that ejects the liquid and which has a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the second nozzle.

3. A liquid discharge apparatus which discharges a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

said liquid discharge head includes a first nozzle that ejects the liquid and which has a first discharge driving element connected to a voltage control circuit capable of individually changing a voltage supplied to the first discharge driving element, and a second nozzle that ejects the liquid and which has a second discharge driving element which is never connected to a voltage control circuit that is capable of individually changing a voltage supplied to the second discharging driving element so as to individually control a liquid discharge amount of the second nozzle.

4. A liquid discharge method comprising the steps of:

providing a liquid discharge head including at least one first nozzle having a discharge driving element connected to discharge amount control means which is capable of individually controlling a liquid discharge amount of the at least one first nozzle, and at least one second nozzle having a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the at least one second nozzle, the at least one second nozzle discharging the same liquid as liquid discharged from the at least one first nozzle; and

controlling the liquid discharge head to discharge the liquid to each of a plurality of pixels on a substrate so that each of the plurality of pixels is formed by a plurality of liquid discharges discharged from a set of nozzles including the at least one first nozzle and the at least one second nozzle.

5. A liquid discharge method comprising the step of:

discharging a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

the liquid discharge head includes a first nozzle that ejects the liquid and which has a discharge driving element connected to discharge amount control means capable of individually changing a liquid discharge amount of the first nozzle, and a second nozzle that ejects the liquid and which has a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the second nozzle, the liquid being discharged from the liquid discharge head to a substrate.

6. The method according to claim 5 , wherein

the substrate has a pixel area partitioned by a black matrix,

the liquid discharge head discharges ink as the liquid from the nozzles, and

a color filter is manufactured by discharging the ink from the liquid discharge head to the pixel area on the substrate.

7. The method according to claim 5 , wherein

the substrate has a pixel area serving as a light-emitting portion,

the liquid discharge head discharges an electroluminescence material as the liquid from the nozzles, and

an electroluminescence device having the light-emitting portion is manufactured by discharging the electroluminescence material from the liquid discharge head to the pixel area on the substrate.

8. The method according to claim 5 , wherein

the substrate has an area serving as a conductive thin film portion,

the liquid discharge head discharges a conductive thin film material as the liquid from the nozzles, and

an electro-emitting device having the conductive thin film portion is manufactured by discharging the conductive thin film material from the liquid discharge head to the area on the substrate.

9. The method according to claim 5 , wherein

the substrate has areas serving as conductive thin film portions,

the liquid discharge head discharges a conductive thin film material as the liquid from the nozzles, and

a panel including a plurality of electro-emitting devices having the conductive thin film portions is manufactured by discharging the conductive thin film material from the liquid discharge head to the areas on the substrate.

10. A liquid discharge method comprising the step of:

discharging a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

the liquid discharge head includes a first nozzle that ejects the liquid and which has a first discharge driving element connected to a voltage control circuit capable of individually changing a voltage supplied to the first discharge driving element, and a second nozzle that ejects the liquid and which has a second discharge driving element which is never connected to a voltage control circuit that is capable of individually changing a voltage supplied to the second discharging driving element so as to individually control a liquid discharge amount of the second nozzle, the liquid being discharged from the liquid discharge head to a substrate.

11. A panel manufacturing apparatus which manufactures a panel used for a display device by discharging, onto a substrate, a liquid from a liquid discharge head, comprising:

the liquid discharge head including at least one first nozzle having a discharge driving element connected to discharge amount control means which is capable of individually controlling a liquid discharge amount of the at least one first nozzle, and at least one second nozzle having a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the at least one second nozzle, the at least one second nozzle discharging the same liquid as liquid discharged from the at least one first nozzle; and

control means for controlling said liquid discharge head to discharge the liquid to each of a plurality of pixels on the substrate so that each of the plurality of pixels is formed by a plurality of liquid discharges discharged from a set of nozzles including the at least one first nozzle and the at least one second nozzle.

12. A panel manufacturing apparatus which manufactures a panel used for a display device by discharging, onto a substrate, a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

said liquid discharge head includes a first nozzle that ejects the liquid and which has a discharge driving element connected to discharge amount control means capable of individually changing a liquid discharge amount of the first nozzle, and a second nozzle that ejects the liquid and which has a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the second nozzle.

13. A panel manufacturing apparatus which manufactures a panel used for a display device by discharging, onto a substrate, a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

said liquid discharge head includes a first nozzle that ejects the liquid and which has a first discharge driving element connected to a voltage control circuit capable of individually changing a voltage supplied to the first discharge driving element, and a second nozzle that ejects the liquid and which has a second discharge driving element which is never connected to a voltage control circuit that is capable of individually changing a voltage supplied to the second discharging driving element so as to individually control a liquid discharge amount of the second nozzle.

14. A panel manufacturing method which manufactures a panel used for a display device by discharging, onto a substrate, a liquid from a liquid discharge head, comprising the steps of:

providing the liquid discharge head including at least one first nozzle having a discharge driving element connected to discharge amount control means which is capable of individually controlling a liquid discharge amount of the at least one first nozzle, and at least one second nozzle having a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the at least one second nozzle, the at least one second nozzle discharging the same liquid as liquid discharged from the at least one first nozzle; and

controlling the liquid discharge head to discharge the liquid to each of a plurality of pixels on the substrate so that each of the plurality of pixels is formed by a plurality of liquid discharges discharged from a set of nozzles including the at least one first nozzle and the at least one second nozzle.

15. A panel manufacturing method which manufactures a panel used for a display device by discharging, onto a substrate, a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

a panel is manufactured by discharging, onto the substrate, the liquid from the liquid discharge head including a first nozzle that ejects the liquid and which has a discharge driving element connected to discharge amount control means capable of individually changing a liquid discharge amount of the first nozzle, and a second nozzle that ejects the liquid and which has a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the second nozzle.

16. The method according to claim 15 , wherein the panel comprises a color filter.

17. The method according to claim 15 , wherein the panel comprises an electroluminescence device.

18. The method according to claim 15 , wherein the panel comprises an electron-emitting device having a conductive thin film portion.

19. A panel manufacturing method which manufactures a panel used for a display device by discharging, onto a substrate, a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

a panel is manufactured by discharging, onto the substrate, the liquid from the liquid discharge head including a first nozzle that ejects the liquid and which has a first discharge driving element connected to a voltage control circuit capable of individually changing a voltage supplied to the first discharge driving element, and a second nozzle that ejects the liquid and which has a second discharge driving element which is never connected to a voltage control circuit that is capable of individually changing a voltage supplied to the second discharging driving element.

20. A color filter manufacturing method which manufactures a color filter by discharging, onto a substrate, a liquid from a liquid discharge head having a plurality of nozzles for discharging the liquid, wherein

a color filter is manufactured by discharging, onto the substrate, a liquid from the liquid discharge head including a first nozzle that ejects the liquid and which has a discharge driving element connected to discharge amount control means capable of individually changing a liquid discharge amount of the first nozzle, and a second nozzle that ejects the liquid and which has a discharge driving element which is never connected to a discharge amount control means that is capable of individually controlling a liquid discharge amount of the second nozzle.

21. A method of manufacturing a liquid crystal display panel having a color filter, comprising the steps of:

manufacturing a color filter by the method according to claim 20 ; and

inserting a liquid crystal compound into a space between the color filter and a counter substrate.

22. A method of manufacturing an apparatus having a liquid crystal display panel, comprising the steps of: manufacturing a liquid crystal display panel by the method according to claim 21 ; and

connecting the liquid crystal display panel to a signal supply means which supplies the signal to the liquid crystal display panel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2003
From: SATOMURA, SEIICHIROU
To: CANON KABUSHIKI KAISHA
Reel/Frame 014243/0686 →
Priority Claims (1)
JP 2002-199214 · Jul 8, 2002 · national
Continuity (1)
Related Publication 20040004643A1 · Jan 8, 2004