IP Library › Granted Patent US 12,319,064
Granted Patent B2
US 12,319,064 · App. 17/726,232 · Granted Jun 3, 2025

Liquid ejection head, liquid ejection apparatus, and method of supplying liquid

Inventors: Shingo Okushima (Kawasaki, JP); Seiichiro Karita (Saitama, JP); Takatsuna Aoki (Yokohama, JP); Noriyasu Nagai (Tokyo, JP); Eisuke Nishitani (Tokyo, JP); Yoshiyuki Nakagawa (Kawasaki, JP)
Assignee: Canon Kabushiki Kaisha
B41J2/175B41J2/14024B41J2/1404B41J2/14072B41J2/1433B41J2/18B41J2002/012B41J2002/14403B41J2002/14475B41J2202/11B41J2202/12B41J2202/20B41J2202/21
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Quick Facts
Patent No.
US 12,319,064
App. No.
17/726,232
Granted
Jun 3, 2025
Kind
B2
Abstract

A liquid ejection head includes an ejection opening; a passage in which an energy generation element is disposed; an ejection opening portion that allows communication between the ejection opening and the passage; a supply passage for allowing the liquid to flow into the passage; and an outflow passage for allowing the liquid to flow out to the outside. An expression of H −0.34 ×P −0.66 ×W>1.7 is satisfied when a height of the passage is set to H [μm], a length of the ejection opening portion is set to P [μm], and a length of the ejection opening portion is set to W [μm].

Claims (58)

1. A liquid ejection head comprising:

an ejection opening row in which a plurality of ejection openings for ejecting a liquid are arranged; and

a passage member having a passage communicating with the ejection openings, wherein

the liquid is circulated between an inside and an outside of the liquid ejection head,

the passage member is formed by laminating a plurality of substrates including a first substrate and a second substrate,

the passage member has a longitudinal direction and a lateral direction as the passage member is viewed from a position facing a main surface of the substrates,

the passage formed in the first substrate includes a flow-in-port for flowing the liquid into the passage and a flow-out-port for flowing the liquid out from the passage,

the passage formed in the second substrate includes a first passage for flowing the liquid flowed from the flow-in-port into the plurality of ejection openings and a second passage for flowing the liquid flowed from the first passage into the flow-out port,

the first passage, the second passage, and the ejection opening row extend from one end to the other end in the longitudinal direction,

the first passage and the second passage are provided at least from one end to the other end of the ejection opening row as the liquid ejection head is viewed from a position facing a surface on which the ejection opening row is formed,

the flow-in port is positioned at least at one end in the longitudinal direction of the first passage,

the flow-out-port is positioned at least at one end in the longitudinal direction of the second passage,

the passage forms a passage row including a plurality of the first passages and a plurality of the second passages disposed in parallel in the lateral direction, the first passage being formed at one endmost side of the passage row in the lateral direction, and the second passage being formed at the other endmost side opposite to one endmost side of the passage row in the lateral direction, and

the flow-in port and the flow-out port are located on the same side of the passage member with respect to the longitudinal direction.

2. The liquid ejection head according to claim 1 , wherein

the first passage and the second passage are substantially parallel to each other as the substrates are viewed from the position facing the main surface of the substrates.

3. The liquid ejection head according to claim 1 , wherein

the flow-in port is formed at a most upstream position in at least one of the passages as the substrates are viewed from the position facing the main surface of the substrates.

4. The liquid ejection head according to claim 1 , wherein

in the passage member, a plurality of supply openings are formed for supplying the liquid to the ejection openings, respectively, and

at least one of the passages is in communication with the plurality of supply openings.

5. The liquid ejection head according to claim 1 , wherein

the flow-in port and the flow-out port are disposed outside the end of the ejection opening row as the substrates are viewed from the position facing the main surface of the substrates.

6. The liquid ejection head according to claim 1 , wherein

the passages are formed by aligning a first hole formed on the first substrate and a second hole formed on the second substrate.

7. The liquid ejection head according to claim 1 , wherein

at least one of the first passages and at least one of the second passages are disposed adjacent to each other.

8. The liquid ejection head according to claim 1 , wherein

the liquid ejection head includes a pressure chamber through which pressure is applied to the liquid to be ejected from the ejection openings, and

at least a portion of the liquid circulated by flowing from the flow-in port flows through the first passage and the second passage and out from the flow-out port without passing through the pressure chamber.

9. The liquid ejection head according to claim 1 , wherein

a direction in which the liquid flows through the first passage is a direction opposite to a direction in which the liquid flows through the second passage.

10. The liquid ejection head according to claim 1 , wherein

the liquid ejection head further comprises a filter, and

the filter filters the liquid flowing through the first passage.

11. A liquid ejection apparatus having a liquid ejection head comprising:

an ejection opening row in which a plurality of ejection openings for ejecting a liquid are arranged, and

a passage member having a passage communicating with the ejection openings and collecting the liquid, wherein

the liquid is circulated between an inside and an outside of the liquid ejection head,

the passage member is formed by laminating a plurality of substrates including a first substrate and a second substrate,

the passage member has a longitudinal direction and a lateral direction as the passage member is viewed from a position facing a main surface of the substrates,

the passage formed in the first substrate includes a flow-in port for flowing the liquid into the passage and a flow-out-port for flowing the liquid out from the passage,

the passage formed in the second substrate includes a first passage for flowing the liquid flowed from the flow-in-port into the plurality of ejection openings and a second passage for flowing the liquid flowed from the first passage into the flow-out port,

the first passage, the second passage, and the ejection opening row extend from one end to the other end in the longitudinal direction,

the first passage and the second passage are provided at least from one end to the other end of the ejection opening row as the liquid ejection head is viewed from a position facing a surface on which the ejection opening row is formed,

the flow-in-port is positioned at least at one end in the longitudinal direction of the first passage,

the flow-out-port is positioned at least at one end in the longitudinal direction of the second passage,

the passage forms a passage row including a plurality of the first passages and a plurality of the second passages disposed in parallel in the lateral direction, the first passage being formed at one endmost side of the passage row in the lateral direction, and the second passage being formed at the other endmost side opposite to one endmost side of the passage row in the lateral direction,

the flow-in port and the flow-out port are located on the same side of the passage member with respect to the longitudinal direction, and

the liquid ejection apparatus comprises a pump for circulating the liquid between the inside and the outside of the liquid ejection head.

12. The liquid ejection apparatus according to claim 11 , wherein

the liquid ejection head has a pressure chamber through which pressure is applied to the liquid to be ejected from the ejection openings, and

at least a portion of the liquid circulated by flowing from the flow-in port flows through the first passage and the second passage and out from the flow-out port without passing through the pressure chamber.

13. The liquid ejection apparatus according to claim 11 , wherein

a direction in which the liquid flows through the first passage is a direction opposite to a direction in which the liquid flows through the second passage.

14. The liquid ejection apparatus according to claim 11 , wherein

the liquid ejection head further comprises a filter, and

the filter filters the liquid flowing through the first passage.

Priority Claims (2)
JP 2016-003078 · Jan 8, 2016 · national
JP 2016-238891 · Dec 8, 2016 · national
Continuity (5)
Division 17132840 · Dec 23, 2020
Division 16407437 · May 9, 2019
Division 15991256 · May 29, 2018
Division 15388430 · Dec 22, 2016
Related Publication 20220250388A1 · Aug 11, 2022
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