Liquid discharge head and liquid discharge apparatus
A liquid discharge head includes a nozzle plate having multiple nozzles from which a liquid is dischargeable in a discharge direction, the multiple nozzles arrayed in a nozzle array direction; an individual channel member including individual channels respectively communicating with the multiple nozzles; multiple pressure generators to generate pressure to discharge the liquid from the multiple nozzles, respectively; a wiring member including a drive circuit; a protector adjacent to at least one side of the nozzle plate in a direction perpendicular to the discharge direction and overlapping the drive circuit of the wiring member in the discharge direction; a housing holding the protector, the nozzle plate, and the individual channel member; and a gas channel. The housing has a gas inlet; and a gas outlet. The gas channel is between the protector and the wiring member and communicates with each of the gas inlet and the gas outlet.
1 . A liquid discharge head comprising:
a nozzle plate including multiple nozzles from which a liquid is dischargeable in a discharge direction, the multiple nozzles arrayed in a nozzle array direction;
an individual channel member including individual channels respectively communicating with the multiple nozzles;
multiple pressure generators to generate pressure to discharge the liquid from the multiple nozzles, respectively;
a wiring member including a drive circuit to output a drive signal to each of the multiple pressure generators;
a protector adjacent to at least one side of the nozzle plate in a direction perpendicular to the discharge direction and overlapping the drive circuit of the wiring member in the discharge direction;
a housing holding the protector, the nozzle plate, and the individual channel member, the housing including:
a gas inlet; and
a gas outlet; and
a gas channel between the protector and the wiring member and communicating with each of the gas inlet and the gas outlet,
wherein the protector includes a concave portion facing the wiring member to form the gas channel.
2 . The liquid discharge head according to claim 1 , wherein:
the protector includes a rib facing the wiring member.
3 . The liquid discharge head according to claim 2 , wherein:
the rib extends in a direction from the gas inlet to the gas outlet.
4 . The liquid discharge head according to claim 1 , wherein:
the drive circuit is on a side of the wiring member facing the gas channel.
5 . The liquid discharge head according to claim 1 , further comprising:
multiple protectors including the protector, arranged in a traverse direction perpendicular to the discharge direction;
multiple wiring members including the wiring member, arranged in the traverse direction;
multiple gas channels including the gas channel, each of the multiple gas channels disposed between one of the multiple protectors and one of the multiple wiring members in the discharge direction; and
a bridging channel communicating between one of the multiple gas channels and another of the multiple gas channels adjacent to the one of the multiple gas channels.
6 . The liquid discharge head according to claim 1 , further comprising:
multiple protectors including the protector, arranged in a traverse direction perpendicular to the nozzle array direction;
multiple wiring members including the wiring member, arranged in the traverse direction;
multiple gas channels including the gas channel, each of the multiple gas channels disposed between one of the multiple protectors and one of the multiple wiring members in the discharge direction; and
wherein the multiple gas channels are independent from each other.
7 . The liquid discharge head according to claim 1 , wherein:
the individual channel member further includes other multiple gas channels to supply gas to the multiple pressure generators, and
each of the other multiple gas channels communicates with the gas channel.
8 . A liquid discharge apparatus comprising the liquid discharge head according to claim 1 .
9 . A liquid discharge head comprising:
a nozzle plate including multiple nozzles from which a liquid is dischargeable in a discharge direction, the multiple nozzles arrayed in a nozzle array direction;
an individual channel member including individual channels respectively communicating with the multiple nozzles;
multiple pressure generators to generate pressure to discharge the liquid from the multiple nozzles, respectively;
a wiring member including a drive circuit to output a drive signal to each of the multiple pressure generators;
a protector adjacent to at least one side of the nozzle plate in a direction perpendicular to the discharge direction and overlapping the drive circuit of the wiring member in the discharge direction;
a housing holding the protector, the nozzle plate, and the individual channel member, the housing including:
a gas inlet; and
a gas outlet; and
a gas channel between the protector and the wiring member and communicating with each of the gas inlet and the gas outlet,
wherein:
the protector includes a rib facing the wiring member.
10 . The liquid discharge head according to claim 9 , wherein:
the rib extends in a direction from the gas inlet to the gas outlet.
11 . The liquid discharge head according to claim 9 , wherein:
the nozzle plate includes silicon.
12 . The liquid discharge head according to claim 9 , wherein:
the protector is bonded to the housing and a cover of the housing using an epoxy-based adhesive.
13 . The liquid discharge head according to claim 9 , wherein:
a surface of the nozzle plate from which the liquid is discharged includes a liquid repellent film.
14 . The liquid discharge head according to claim 9 , wherein:
the individual channel member includes a diaphragm having a three-layer structure including a silicon oxide film, a silicon film, and a silicon oxide film.
15 . A liquid discharge head comprising:
a nozzle plate including multiple nozzles from which a liquid is dischargeable in a discharge direction, the multiple nozzles arrayed in a nozzle array direction;
an individual channel member including individual channels respectively communicating with the multiple nozzles;
multiple pressure generators to generate pressure to discharge the liquid from the multiple nozzles, respectively;
a wiring member including a drive circuit to output a drive signal to each of the multiple pressure generators;
a protector adjacent to at least one side of the nozzle plate in a direction perpendicular to the discharge direction and overlapping the drive circuit of the wiring member in the discharge direction;
a housing holding the protector, the nozzle plate, and the individual channel member, the housing including:
a gas inlet; and
a gas outlet; and
a gas channel between the protector and the wiring member and communicating with each of the gas inlet and the gas outlet,
wherein:
the individual channel member further includes other multiple gas channels to supply gas to the multiple pressure generators, and
each of the other multiple gas channels communicates with the gas channel.
16 . The liquid discharge head according to claim 15 , wherein:
each of the multiple pressure generators includes a piezoelectric film including lead zirconate titanate (PZT).
17 . The liquid discharge head according to claim 15 , wherein:
the housing includes epoxy resin.
18 . The liquid discharge head according to claim 15 , wherein:
the protector includes epoxy resin.
19 . The liquid discharge head according to claim 15 , further comprising:
a sealing material filling a gap between the nozzle plate and the protector.
20 . The liquid discharge head according to claim 15 , wherein:
the wiring member is connected to the individual channel member using a non-conductive paste.