IP Library Granted Patent US 9,061,503
Granted Patent B2
US 9,061,503 · App. 14/167,338 · Granted Jun 23, 2015

Suction device, suction method, and ejection device

Inventor: Katsumi Shinkai (Fujimi-machi, JP)
Assignee: SEIKO EPSON CORPORATION
B41J2/16532B41J2/16547B41J2/1652B41J2/16508B41J2/16523
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Quick Facts
Patent No.
US 9,061,503
App. No.
14/167,338
Granted
Jun 23, 2015
Kind
B2
Abstract

A suction device for an ejection head provided with a nozzle includes a cap capable of sealing a nozzle surface provided with the nozzle, a decompression pump serving as a decompression device, and a suction passage provided between the cap and the decompression pump. The negative pressure level of the suction passage set by the decompression pump are controlled on the basis of a volume of the suction passage such that a liquid with which the ejection head has been filled is sucked out from the nozzle.

Claims (82)

1. A suction device for an ejection head provided with a nozzle, comprising:

a cap that is capable of sealing a nozzle surface provided with the nozzle;

a decompression device;

a suction passage provided between the cap and the decompression device,

a first valve provided in the suction passage on the cap side thereof; and

a second valve provided in the suction passage on the decompression device side thereof;

the decompression device being disposed other than between the first valve and the second valve,

a liquid with which the ejection head has been filled is sucked out from the nozzle via the cap by controlling a negative pressure level of the suction passage on the basis of a volume of the suction passage between the first valve and the second valve with the decompression device.

2. The suction device according to claim 1 ,

the ejection head including a liquid supply port, a plurality of the nozzles, and a cavity that is in communication with the plurality of the nozzles, and

the negative pressure level of the suction passage is set such that an amount of the liquid equal to or less than a volume from the liquid supply port to the plurality of the nozzles including the cavity is sucked out.

3. The suction device according to claim 1 , the suction passage including a first suction passage and a second suction passage that are connected in series through a third valve.

4. The suction device according to claim 3 , a volume of the first suction passage and a volume of the second suction passage being substantially the same.

5. The suction device according to claim 3 , a volume of the first suction passage and a volume of the second suction passage being different.

6. The suction device according to claim 1 , a volume of the cap when the nozzle surface is sealed being smaller than a volume of the suction passage.

7. The suction device according to claim 1 ,

the suction passage being connected to a plurality of the caps, and

a volume of the plurality of the caps when sealing a plurality of the nozzle surfaces therewith being smaller than a volume of the suction passage.

8. An ejection device, comprising:

an ejection head, and

the suction device according to claim 1 .

9. An ejection device, comprising:

an ejection head, and

the suction device according to claim 2 .

10. An ejection device, comprising:

an ejection head, and

the suction device according to claim 3 .

11. The suction device according to claim 1 , further comprising:

a suction bypass passage connected in parallel with the suction passage, the suction bypass passage connected between the cap and the decompression device, and

the suction bypass passage configured to bypass the suction passage.

12. A suction method of sucking a liquid with which an ejection head has been filled out from a nozzle via a cap that is capable of sealing a nozzle surface provided with the nozzle, the suction method comprising:

using a suction device including a decompression device, a suction passage provided between the cap and the decompression device, a first valve provided in the suction passage on the cap side thereof, and a second valve provided in the suction passage on the decompression device side thereof, the decompression device being located other than between the first valve and the second valve;

decompressing the suction passage to a predetermined negative pressure level with the decompression device by closing the first valve and opening the second valve; and

sucking by opening the first valve after closing the first valve, closing the second valve, and sealing the nozzle surface with the cap.

13. The suction method according to claim 12 , the ejection head including a liquid supply port, a plurality of the nozzles, and a cavity that is in communication with each of the plurality of the nozzles, and

during the decompressing, the negative pressure level of the suction passage being set such that the amount of liquid equal to or less than a volume from the liquid supply port to the plurality of nozzles including the cavity is sucked out during the sucking.

14. The suction method according to claim 12 ,

the suction passage including a first suction passage and a second suction passage that are connected in series through a third valve, and

the sucking including a first suction process in which sucking is performed by opening the first valve and closing the third valve and the second valve and a second suction process, performed after the first suction process, in which sucking is performed by opening the third valve.

15. The suction method according to claim 12 , further comprising:

discharging the liquid remaining inside the suction passage before the decompressing.

16. A suction device for an ejection head provided with a nozzle, comprising:

a cap that is capable of sealing a nozzle surface provided with the nozzle;

a decompression device;

and a suction passage provided between the cap and the decompression device,

a liquid with which the ejection head has been filled is sucked out from the nozzle via the cap by controlling a negative pressure level of the suction passage on the basis of a volume of the suction passage with the decompression device;

the suction passage including:

a first suction passage and

a second suction passage that are connected in parallel,

a first valve being provided on each of the cap side of the first suction passage and the second suction passage, and

a second valve being provided on each of the decompression device side of the first suction passage and the second suction passage.

17. A suction method of sucking a liquid with which an ejection head has been filled out from a nozzle via a cap that is capable of sealing a nozzle surface provided with the nozzle, the suction method comprising:

using a suction device including:

a decompression device,

a suction passage provided between the cap and the decompression device,

a first valve provided in the suction passage on the cap side thereof,

and a second valve provided in the suction passage on the decompression device side thereof;

decompressing the suction passage to a predetermined negative pressure level with the decompression device by closing the first valve and opening the second valve; and

sucking by opening the first valve after closing the first valve, closing the second valve, and sealing the nozzle surface with the cap;

the suction passage including:

a first suction passage and

a second suction passage that are connected in series through a third valve,

and a suction bypass passage that is connected between the cap and the decompression device and that is connected in parallel with the first suction passage and the second suction passage, the suction bypass passage bypassing the first suction passage and the second suction passage,

and the sucking including:

a first suction process in which sucking is performed by opening the first valve and closing the third valve and the second valve,

a second suction process in which sucking is performed by opening the third valve after the first suction process, and

a third suction process in which sucking is performed by closing the second valve and through the suction bypass passage with the decompression device.

18. A suction method of sucking a liquid with which an ejection head has been filled out from a nozzle via a cap that is capable of sealing a nozzle surface provided with the nozzle, the suction method comprising;

using a suction device including:

a decompression device,

a suction passage provided between the cap and the decompression device,

a first valve provided in the suction passage on the cap side thereof,

and a second valve provided in the suction passage on the decompression device side thereof;

decompressing the suction passage to a predetermined negative pressure level with the decompression device by closing the first valve and opening the second valve; and

sucking by opening the first valve after closing the first valve, closing the second valve, and sealing the nozzle surface with the cap;

the suction passage including:

a first suction passage

and a second suction passage that are connected in parallel,

the first suction passage and the second suction passage each include a first valve and a second valve,

and the sucking including:

a first suction process in which sucking is performed by closing the first valve and the second valve of the second suction passage, closing the second valve of the first suction passage, and opening the first valve of the first suction passage, and

a second suction process in which, after the first suction process, sucking is performed by closing the first valve of the first suction passage and opening the first valve of the second suction passage.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2025
From: SEIKO EPSON CORPORATION
To: LUMITEK DISPLAY TECHNOLOGY LIMITED
Reel/Frame 071705/0176 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2014
From: SHINKAI, KATSUMI
To: SEIKO EPSON CORPORATION
Reel/Frame 032079/0764 →
Priority Claims (1)
JP 2013-020174 · Feb 5, 2013 · national
Continuity (1)
Related Publication 20140218438A1 · Aug 7, 2014