Claims
- 1. An ink jet printer comprising:
at least one ink chamber; a print head having a plurality of ink jet nozzles and being connected to said ink chamber; a print controller for driving said print head in order to print; and a capping device for covering said ink jet nozzles of said print head, said capping device comprising:
a cap component having a plurality of cavities for sorting said ink jet nozzles into a plurality of nozzle groups by ink chamber unit, thereby capping all ink jet nozzles corresponding to at least one ink chamber by nozzle group unit; a pipe being connected to said cavities of said cap component for supplying negative pressure to said cavities; and a suction controller for controlling the supply of the negative pressure through said pipe to said cavities, thereby supplying the negative pressure independently by every cavity, whereby said suction controller sucks the ink from said ink jet nozzles independently by the nozzle group unit.
- 2. An ink jet printer according to claim 1, wherein
said suction controller supplies the negative pressure to one arbitrary cavity of said cap component so as to suck the ink from said ink jet nozzles independently by the nozzle group unit, and all remaining cavities which correspond to one common ink chamber with said arbitrary cavity are sealed.
- 3. An ink jet printer according to claim 1, wherein said suction controller supplies the negative pressure to all said cavities corresponding to one common ink chamber simultaneously.
- 4. An ink jet printer according to claim 1, wherein a plurality of said ink chamber s are provided in said printer, and said cap component has a dimension and number of cavities for capping all of said ink jet nozzles connected to all ink chambers.
- 5. An ink jet printer according to claim 4, wherein said cap component comprises one of an integral unit and a plurality of sub-units divided according to the nozzle groups sorted by the ink chamber unit.
- 6. An ink jet printer according to claim 1, wherein a plurality of said ink chambers are provided in said printer, and said cap component does not have a dimension and number of cavities for capping all of said ink jet nozzles connected to all ink chambers, and said ink jet printer further comprising a second cap component capping all of said ink jet nozzles at a stretch.
- 7. An ink jet printer according to claim 1, wherein a plurality of said nozzle groups are arranged in a recording medium transporting direction.
- 8. An ink jet printer according to claim 1, wherein said suction controller receives clogged nozzle information indicative of a location of a clogged nozzle, and controls the supply of the negative pressure in accordance with said clogged nozzle information.
- 9. An ink jet printer according to claim 8, wherein said clogged nozzle information includes information indicative of said ink chamber connected to the clogged nozzle, number of clogged nozzles, and a location of the clogged nozzle on said print head.
- 10. An ink jet printer according to claim 8, wherein said suction controller includes a selection table containing a plural number of control guidances corresponding to a variety of said clogged nozzle information, and controls the supply of the negative pressure in accordance with a specific control guidance, which correspond to said clogged nozzle information, selected from said selection table.
- 11. An ink jet printer according to claim 8, wherein said suction controller selects one of a selective suction mode and an all-nozzle suction mode in accordance with said clogged nozzle information received, and when said selective suction mode is selected, said suction controller sucks the ink from at least one nozzle group selected from a plurality of nozzle groups, and when the all-nozzle suction mode is selected, said suction controller simultaneously sucks ink from all of said nozzle groups.
- 12. An ink jet printer according to claim 8, wherein said print controller includes a check pattern print portion for printing a predetermined clogging check pattern used for detecting a clogged nozzle by driving said print head.
- 13. An ink jet printer according to claim 12, further comprising a pattern reading device for reading said printed clogging check pattern to locate a clogged nozzle so as to send the resultant clogged nozzle information to said suction controller.
- 14. An ink jet printer according to claim 8, further comprising an input device, operated by a user, for entering the clogged nozzle information to said ink jet printer.
- 15. An ink jet printer according to claim 8, wherein said ink jet printer is connected to a host controlling device located outside of said ink jet printer, and said suction controller receives the clogged nozzle information from said host controlling device.
- 16. An ink jet printer according to claim 1, wherein said suction controller receives information designating one of a specific nozzle group and a specific cavity, and supplies the negative pressure to one of a cavity associated with said specific nozzle group and said specific cavity in accordance with said designating information.
- 17. An ink jet printer according to claim 1, wherein said ink jet printer is connected to a host controlling device located outside of said ink jet printer, and said suction controller receives said designating information from said host controlling device.
- 18. A printing system comprising:
1) an ink jet printer comprising:
at least one ink chamber; a print head having a plurality of ink jet nozzles and being connected to said ink chamber; a print controller for driving said print head in order to print; and a capping device for covering said ink jet nozzles of said print head, said capping device comprising:
a cap component having a plurality of cavities for sorting said ink jet nozzles into a plurality of nozzle groups by ink chamber unit, thereby capping all ink jet nozzles corresponding to at least one ink chamber by nozzle group unit; at least one pipe being connected to said cavities of said cap component for supplying negative pressure to said cavities; and a suction controller for controlling the supply of the negative pressure through said pipe to said cavities, thereby supplying the negative pressure independently by every cavity, whereby said suction controller sucks the ink from said ink jet nozzles independently by the nozzle group unit; and 2) a host controlling device for controlling said ink jet printer, said host controlling device sending to said ink jet printer selection information necessary for selecting one nozzle group to be sucked with the ink therefrom.
- 19. A printing system according to claim 18, wherein said host controlling device comprises:
a commanding portion for commanding said ink jet printer to print a predetermined clogging check pattern; user input means by which a user enters user input information indicative of clogged nozzle information; and a selection information generator for generating said selection information based on said user input information entered by said user input means.
- 20. A printing system according to claim 18, wherein said user interface displays a clogging check pattern image on a user interface screen of said host controlling device, and the user enters said user input information by pointing a location on said displayed clogging check pattern image, which corresponds to a location of the clogged nozzle.
- 21. A data storing medium, accessible by a computer, storing a program for executing a process to detect a defective dot forming element in dot forming elements in a printer, wherein said process comprising the steps of:
instructing said printer to print a predetermined clogging check pattern; displaying a clogging check pattern image on a user interface screen of said computer; and specifying said defective dot forming element in a manner that a user points to a location in said displayed clogging check pattern image, which corresponds to said defective dot forming element.
- 22. A data storing medium, accessible by a computer, storing a program for executing a process to instruct an ink jet printer having a plurality of ink jet nozzles to clean said ink jet nozzles,
wherein said ink jet printer selectively performs one of an ink saving cleaning process and a normal cleaning process, wherein said ink saving cleaning process is executed through a selective suction operation to suck ink from only at least one ink jet nozzle selected from said ink jet nozzles, and said normal cleaning process is executed through a all-nozzle suction operation for simultaneously sucking the ink from all of said ink jet nozzles at any time; and said cleaning instruction process comprising the steps of:
displaying an image requesting a user to select one of a saving mode corresponding to said ink saving cleaning process and a normal mode corresponding to said normal cleaning process on a user interface screen of said computer; instructing said ink jet printer to execute said ink saving cleaning process when the user selects said saving mode selected on the image displayed on the user interface screen; and instructing said ink jet printer to execute said normal cleaning process when the user selects said normal mode selected on the image displayed on the user interface screen.
- 23. A method for controlling an ink jet printer comprising a print head having a plurality of ink jet nozzles sorted into a plurality of nozzle groups, and a capping device for selectively sucking ink from said nozzle groups by selectively capping said nozzle groups, said method comprising the steps of:
printing a predetermined clogging check pattern and causing a user to detect a clogged nozzle; visually presenting a clogging check pattern image to the user; obtaining clogged nozzle information indicative of said clogged nozzle in a manner that the user points to a location in said displayed clogging check pattern image, which corresponds to said clogged nozzle in said printed clogging check pattern; selecting one nozzle group from said nozzle groups based on said clogged nozzle information obtained; and sucking the ink from said clogged nozzle in said selected nozzle group.
- 24. An ink jet recording apparatus comprising:
a ink jet recording head for discharging ink droplets through nozzle openings upon receiving ink supply from an ink cartridge; capping means for sealing said recording head to absorb ink droplets through the nozzle openings; a valve unit arranged between said ink cartridge and said nozzle openings of the recording head for opening and closing an ink supply path between the ink cartridge and the nozzle openings; and valve opening/closing control means for controlling opening and closing of said valve unit in accordance with the cleaning operation to absorb ink droplets through the nozzle openings, with sealing the nozzle openings of the recording head with said capping means.
- 25. An ink jet recording apparatus comprising:
ink jet recording heads for discharging different color ink droplets through each nozzle opening upon receiving ink from the ink cartridges;
capping means for sealing each nozzle opening of said recording head to absorb ink droplets through the nozzle openings; a plurality of valve units arranged between said ink cartridges and each nozzle opening of the recording head for opening and closing the ink supply paths between the ink cartridges and each nozzle opening; and valve opening/closing control means for controlling said valve units to open and close valves in accordance with the cleaning operation to absorb ink droplets through the nozzle openings, with sealing the nozzle openings of the recording head with said capping means.
- 26. An ink jet recording apparatus as claimed in claim 25, wherein said valve opening/closing control unit can select from several modes, full-open mode for opening all valve units, full-close mode for closing all valve units, and alternative open mode for opening only one valve unit alternatively.
- 27. An ink jet recording apparatus as claimed in claim 26, wherein said each valve unit interlocks with rotational drive of an actuator to select one mode from said full-open mode, full-close mode, and alternative open mode.
- 28. An ink jet recording apparatus as claimed in claim 25, wherein said valve units are arranged in a black ink supply path, a cyan ink supply path, a magenta ink supply path, and a yellow ink supply path respectively.
- 29. An ink jet recording apparatus as claimed in claim 24, wherein said valve units are mounted on a carriage together with said ink cartridges and said recording head, and reciprocate along a guide member.
- 30. An ink jet recording apparatus as claimed in claim 24, wherein head filters are disposed in the ink supply paths between said valve units and said nozzle openings of the recording head.
- 31. An ink jet recording apparatus as claimed in claim 24, wherein said valve units are arranged such that at least a pair of ink connecting holes penetrate crossing the axis direction of the shaft, disposed across said ink supply paths.
- 32. An ink jet recording apparatus as claimed in claim 25, wherein said capping means is formed with a single capping member capable of sealing all nozzle openings for discharging different color inks respectively.
- 33. A recording head cleaning method in an ink jet recording apparatus comprising:
an ink jet recording head for discharging ink droplets upon receiving ink supply from an ink cartridge; capping means for sealing said recording head to absorb ink droplets through nozzle openings; and
a valve unit arranged between said ink cartridge and said nozzle openings of the recording head for opening and closing the ink supply path between the ink cartridge and the nozzle openings, and the recording head cleaning method in an ink jet recording comprising the steps of:
sealing the nozzle openings of the recording head with said capping means in a state closing said valve unit and applying negative pressure into the capping means; in said step, with applying negative pressure into the capping means, opening said valve unit to absorb ink from the nozzle openings of the recording head.
- 34. A recording head cleaning method in an ink jet recording apparatus as claimed in claim 33, executing the steps:
closing the valve unit following said ink absorbing step, further closing the valve unit for preventing air bubbles formed with discharged ink within the capping means in said ink absorbing step, from being pulled into the nozzle openings of the recording head.
- 35. A recording head cleaning method in an ink jet recording apparatus comprising:
an ink jet recording head for discharging different color ink droplets through each nozzle opening upon receiving ink from the ink cartridges; capping means for sealing each nozzle opening of said recording head to absorb ink droplets through the nozzle openings; and a plurality of valve units arranged between said ink cartridges and each nozzle opening of the recording head for opening and closing the ink supply paths between the ink cartridges and each nozzle openings, and the recording head cleaning method in an ink jet recording apparatus comprising the steps of:
sealing the nozzle openings of the recording head with said capping means in a state closing said valve units and applying negative pressure into the capping means; in said step, with applying negative pressure into the capping means, opening said all or a part of valve units to absorb ink through the nozzle openings of the recording head.
- 36. A recording head cleaning method in an ink jet recording apparatus as claimed in claim 35, executing the steps:
closing all valve units following said ink absorbing step, further closing valve units for preventing air bubbles formed with discharged ink within the capping means in said ink absorbing step, from being pulled into the nozzle openings of the recording head.
Priority Claims (3)
Number |
Date |
Country |
Kind |
P. HEI. 10-018657 |
Jan 1998 |
JP |
|
P. HEI. 10-154852 |
Jun 1998 |
JP |
|
P. HEI. 10-339052 |
Nov 1998 |
JP |
|
Parent Case Info
[0001] This is a Continuation-In-Part of application Ser. No. 09/239,319, filed on Jan. 29, 1999, which is incorporated herein by reference.
Divisions (1)
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Number |
Date |
Country |
Parent |
09324720 |
Jun 1999 |
US |
Child |
10098507 |
Mar 2002 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09239319 |
Jan 1999 |
US |
Child |
09324720 |
Jun 1999 |
US |