IP Library › Granted Patent US 11,247,471
Granted Patent B2
US 11,247,471 · App. 16/855,250 · Granted Feb 15, 2022

Printing apparatus, control method thereof and storage medium

Inventors: Kazuki Narumi (Komae, JP); Masataka Kato (Yokohama, JP); Toshimitsu Danzuka (Tokyo, JP); Yasunori Fujimoto (Inagi, JP); Shin Genta (Yokohama, JP); Tomoki Yamamuro (Kawasaki, JP); Hiroto Kango (Tokyo, JP); Kazuhiko Sato (Tokyo, JP); Kazuo Suzuki (Yokohama, JP)
Assignee: Canon Kabushiki Kaisha
B41J2/1652B41J2/16508B41J2/16523B41J2/16532
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Quick Facts
Patent No.
US 11,247,471
App. No.
16/855,250
Granted
Feb 15, 2022
Kind
B2
Abstract

The object of the present disclosure is to optimize the time necessary for filling and the ink consumption. One embodiment of the present disclosure is a printing apparatus having: a storage unit; a print head having an ejection port from which ink supplied from the storage unit is ejected; an ink supply path that connects the storage unit and the print head; a suction unit configured to perform suction at the ejection port; and a supply control unit configured to supply ink stored in the storage unit to the ink supply path and the print head by performing suction at the ejection port by the suction unit, and the printing apparatus has an acquisition unit configured to acquire information relating to ink discharge from the ink supply path and the supply control unit determines the number of times of suction by the suction unit based on the information.

Claims (51)

1. A printing apparatus comprising:

a storage unit configured to store ink;

a print head having an ejection port from which ink supplied from the storage unit is ejected;

an ink supply path that connects the storage unit and the print head;

a suction unit configured to perform suction at the ejection port;

a supply control unit configured to supply ink stored in the storage unit to the ink supply path and the print head by performing suction at the ejection port by the suction unit; and

an acquisition unit configured to acquire information on a point in time of the suction,

wherein the supply control unit determines a number of times of suction by the suction unit based on the information, such that the number of times of suction in a case where an elapsed time from a point in time of the suction is first elapsed time is smaller than the number of times of suction in a case where the elapsed time is second elapsed time which is shorter than the first elapsed time.

2. The printing apparatus according to claim 1 , wherein

by the suction unit performing suction at the ejection port, a discharge operation to discharge ink inside the storage unit, the ink supply path, and the print head is performed.

3. The printing apparatus according to claim 2 , wherein

the acquisition unit acquires, as the information, information on a date the discharge operation is completed.

4. The printing apparatus according to claim 3 , further comprising:

a calculation unit configured to calculate the elapsed time from a date the discharge operation is completed, wherein

the supply control unit determines a number of times of suction by the suction unit based on the elapsed time.

5. The printing apparatus according to claim 2 , wherein

the acquisition unit acquires, as the information, a value of a flag indicating whether or not the discharge operation has been performed.

6. The printing apparatus according to claim 5 , wherein

the number of times of suction in a case where a value of the flag acquired by the acquisition unit indicates that the discharge operation has been performed is larger than the number of times of suction in a case where the value indicates that the discharge operation has not been performed.

7. A control method of a printing apparatus, wherein the printing apparatus comprises:

a storage unit configured to store ink;

a print head having an ejection port from which ink supplied from the storage unit is ejected;

an ink supply path that connects the storage unit and the print head; and

a suction unit configured to perform suction at the ejection port,

wherein the control method comprises:

a step of acquiring information on a point in time of the suction;

a supply step of supplying ink stored in the storage unit to the ink supply path and the print head by the suction unit performing suction at the ejection port; and

a determination step of determining a number of times of suction to be performed by the suction unit at the supply step based on the information, such that the number of times of suction in a case where an elapsed time from a point in time of the suction is first elapsed time is smaller than the number of times of suction in a case where the elapsed time is second elapsed time which is shorter than the first elapsed time.

8. A printing apparatus comprising:

a storage unit configured to store ink;

a print head having an ejection port from which ink supplied from the storage unit is ejected;

an ink supply path that connects the storage unit and the print head;

a suction unit configured to perform suction at the ejection port;

a supply control unit configured to supply ink stored in the storage unit to the ink supply path and the print head by performing suction at the ejection port by the suction unit; and

an acquisition unit configured to acquire temperature information in a case where the suction is performed,

wherein the supply control unit determines a number of times of suction by the suction unit based on the information, such that the number of times of suction in a case where a temperature indicated by the temperature information is higher than first temperature is smaller than the number of times of suction in a case where the temperature is second temperature which is lower than the first temperature.

9. The printing apparatus according to claim 8 , wherein

by the suction unit performing suction at the ejection port, a discharge operation to discharge ink inside the storage unit, the ink supply path, and the print head is performed.

10. The printing apparatus according to claim 9 , wherein

the acquisition unit acquires, as the information, a value of a flag indicating whether or not the discharge operation has been performed.

11. The printing apparatus according to claim 10 , wherein

the number of times of suction in a case where a value of the flag acquired by the acquisition unit indicates that the discharge operation has been performed is larger than the number of times of suction in a case where the value indicates that the discharge operation has not been performed.

12. A control method of a printing apparatus, wherein the printing apparatus comprises:

a storage unit configured to store ink;

a print head having an ejection port from which ink supplied from the storage unit is ejected;

an ink supply path that connects the storage unit and the print head;

a suction unit configured to perform suction at the ejection port; and

a supply control unit configured to supply ink stored in the storage unit to the ink supply path and the print head by performing suction at the ejection port by the suction unit,

wherein the control method comprises:

a step of acquiring temperature information in a case where the suction is performed; and

a determination step of determining a number of times of suction by the suction unit based on the information, such that the number of times of suction in a case where a temperature indicated by the temperature information is higher than first temperature is smaller than the number of times of suction in a case where the temperature is second temperature which is lower than the first temperature.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2020
From: NARUMI, KAZUKI; KATO, MASATAKA; DANZUKA, TOSHIMITSU; FUJIMOTO, YASUNORI; GENTA, SHIN; YAMAMURO, TOMOKI; KANGO, HIROTO; SATO, KAZUHIKO; SUZUKI, KAZUO
To: CANON KABUSHIKI KAISHA
Reel/Frame 053312/0829 →
Priority Claims (1)
JP JP2019-083712 · Apr 25, 2019 · national
Continuity (1)
Related Publication 20200338893A1 · Oct 29, 2020
Cited By (6)
US 12,459,254 US 12,472,744 US 12,583,226 US 12,611,864 US 12,679,098 US 12,709,099