IP Library Granted Patent US 12709097
Granted Patent B2
US 12709097 · App. 18/603,288 · Granted Aug 18, 2026

Liquid ejecting head and liquid ejecting apparatus

Inventor: Haruki Kobayashi (Matsumoto, JP)
Assignee: SEIKO EPSON CORPORATION
B41J2/14233B41J2/175B41J2002/14306B41J2002/14362
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Quick Facts
Patent No.
US 12709097
App. No.
18/603,288
Granted
Aug 18, 2026
Kind
B2
Abstract

There is provided a liquid ejecting head including a head chip and a flow path structure to which the head chip is joined by a first-adhesive and a second-adhesive, in which the flow path structure has a common flow path, a first-selection-flow-path coupled to the common flow path and liquid-tightly coupled to the chip-side flow path of the head chip by the first-adhesive, and a second-selection-flow-path coupled to the common flow path, an outer surface of the flow path structure includes a closed region surrounding an opening of the second-selection-flow-path at a distance from the opening when viewed in a stacking direction of the head chip and the flow path structure, and the head chip adheres to the flow path structure via the second-adhesive in the closed region so that the second-selection-flow-path is closed.

Claims (64)

1 . A liquid ejecting head comprising:

a head chip having nozzles configure to eject a liquid, a common liquid chamber communicating with the nozzles, and a chip-side flow path communicating with the common liquid chamber; and

a flow path structure to which the head chip is joined by a first adhesive and a second adhesive, wherein

the flow path structure has

a common flow path,

a first selection flow path coupled to the common flow path and liquid-tightly coupled to the chip-side flow path by the first adhesive, and

a second selection flow path coupled to the common flow path,

an outer surface of the flow path structure includes a closed region surrounding an opening of the second selection flow path at a distance from the opening when viewed in a first direction, which is a stacking direction of the head chip and the flow path structure, and

the head chip adheres to the flow path structure via the second adhesive in the closed region so that the second selection flow path is closed.

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

the second selection flow path is closed by the second adhesive and an outer surface of the head chip.

3 . The liquid ejecting head according to claim 2 , wherein

a first adhesion position by the first adhesive and a second adhesion position by the second adhesive are different regarding the first direction.

4 . The liquid ejecting head according to claim 3 , wherein

the head chip has a nozzle plate provided with the nozzles, and

the first adhesion position is disposed between the second adhesion position and the nozzle plate in the first direction.

5 . The liquid ejecting head according to claim 2 , wherein

the head chip has a protrusion to be inserted into the second selection flow path.

6 . A liquid ejecting apparatus comprising:

the liquid ejecting head according to claim 1 ; and

a liquid storage portion that stores a liquid to be supplied to the liquid ejecting head.

7 . A liquid ejecting head comprising:

a head chip having nozzles configured to eject a liquid, a common liquid chamber communicating with the nozzles, and a first chip-side flow path communicating with the common liquid chamber; and

a flow path structure to which the head chip is joined by an adhesive, wherein

the flow path structure has

a common flow path,

a first selection flow path coupled to the common flow path and liquid-tightly coupled to the first chip-side flow path by the adhesive, and

a second selection flow path coupled to the common flow path, and

the second selection flow path is closed by a closing member detachably fixed to the flow path structure.

8 . The liquid ejecting head according to claim 7 , wherein

the closing member is a lid member that has elasticity and is to be inserted into the second selection flow path.

9 . The liquid ejecting head according to claim 8 , wherein

the head chip further has a second chip-side flow path communicating with the first chip-side flow path via the common flow path,

an opening of the second selection flow path and an opening of the second chip-side flow path overlap when viewed in a first direction, which is a stacking direction of the head chip and the flow path structure, and

the lid member has

a first portion to be inserted into the second selection flow path, and

a second portion to be inserted into the second chip-side flow path.

10 . The liquid ejecting head according to claim 9 , wherein

the lid member has a flange portion that is disposed between the first portion and the second portion and of which a cross-sectional area perpendicular to the first direction is larger than a cross-sectional area of each of the first portion and the second portion, and

the flange portion contacts the head chip without contacting the flow path structure.

11 . The liquid ejecting head according to claim 7 , wherein

one of the closing member and the flow path structure is provided with a male screw, and the other is provided with a female screw fastened to the male screw, and

the closing member is a screw cap that closes the second selection flow path through fastening of the male screw and the female screw.

12 . The liquid ejecting head according to claim 11 , wherein

the female screw is provided inside the second selection flow path of the flow path structure,

the male screw is provided in the closing member, and

the closing member has a head portion that coincides, in a depth direction of the second selection flow path, with a surface, on which an opening of the second selection flow path is formed, of an outer surface of the flow path structure or that is located deeper than the surface in a fastened state between the male screw and the female screw.

13 . The liquid ejecting head according to claim 7 , wherein

the head chip further has a second chip-side flow path communicating with the first chip-side flow path via the common liquid chamber,

an opening of the second selection flow path and an opening of the second chip-side flow path overlap when viewed in a first direction, which is a stacking direction of the head chip and the flow path structure, and

the second chip-side flow path is closed by the closing member detachably fixed to the head chip.

14 . A liquid ejecting apparatus comprising:

the liquid ejecting head according to claim 7 ; and

a liquid storage portion that stores a liquid to be supplied to the liquid ejecting head.

15 . A liquid ejecting head comprising:

a head chip having nozzles configured to eject a liquid and a common liquid chamber communicating with the nozzles; and

a flow path structure that has a coupling flow path communicating with the common liquid chamber and to which the head chip is joined by an adhesive, wherein

the head chip has

a first chip-side flow path coupled to the common liquid chamber and liquid-tightly coupled to the coupling flow path by the adhesive, and

a second chip-side flow path coupled to the common liquid chamber, and

the second chip-side flow path is closed by a closing member detachably fixed to the head chip.

16 . A liquid ejecting apparatus comprising:

the liquid ejecting head according to claim 15 ; and

a liquid storage portion that stores a liquid to be supplied to the liquid ejecting head.