IP Library › Granted Patent US 12,600,123
Granted Patent B2
US 12,600,123 · App. 18/476,800 · Granted Apr 14, 2026

Liquid discharge apparatus and liquid discharge module

Inventors: Masahiko Tsuyuki (Chino, JP); Makoto Takamuku (Matsumoto, JP); Kazuya Imura (Shiojiri, JP)
Assignee: SEIKO EPSON CORPORATION
B41J2/04548B41J2/04541B41J2/0455B41J2/04581B41J29/377
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Quick Facts
Patent No.
US 12,600,123
App. No.
18/476,800
Granted
Apr 14, 2026
Kind
B2
Abstract

There is provided a liquid discharge apparatus including: a print head including a first connector; a substrate unit including a second connector fitted to the first connector and a third connector different from the second connector; and a relay substrate including a first cable through which a first voltage signal supplied to the substrate unit propagates, a second cable through which a second voltage signal supplied to the substrate unit propagates, a fourth connector fitted to the third connector, a relay substrate front surface, and a relay substrate back surface opposite to the relay substrate front surface, in which the first cable and the second cable are electrically coupled to the relay substrate front surface, the fourth connector is provided on the relay substrate back surface, and the first voltage signal and the second voltage signal propagate to the fourth connector.

Claims (78)

1 . A liquid discharge apparatus comprising:

a head that includes a first connector and discharges a liquid;

a substrate unit including a second connector fitted to the first connector and a third connector different from the second connector; and

a relay substrate including a relay substrate front surface and a relay substrate back surface opposite to the relay substrate front surface, wherein

a first cable through which a first voltage signal propagates is coupled to the relay substrate front surface,

a fourth connector fitted to the third connector of the substrate unit is provided on the relay substrate back surface,

the relay substrate includes a first side and a second side,

the substrate unit includes:

a first substrate including a first substrate front surface, a first substrate back surface opposite to the first substrate front surface, and a third side; and

a second substrate including a second substrate front surface, a second substrate back surface opposite to the second substrate front surface, and a fourth side,

the first substrate and the second substrate are electrically coupled to each other,

the first side of the relay substrate is positioned along the third side of the first substrate,

the second side of the relay substrate is positioned along the fourth side of the second substrate, and

a normal direction of the relay substrate back surface intersects both a normal direction of the first substrate front surface and a normal direction of the second substrate front surface.

2 . The liquid discharge apparatus according to claim 1 , wherein

the first side and the second side are positioned facing each other on the relay substrate, and

the first substrate and the second substrate are positioned such that the first substrate front surface and the second substrate front surface face each other.

3 . The liquid discharge apparatus according to claim 1 , further comprising:

a fan that generates a gas flow in a gas flow path configured with the first substrate front surface and the second substrate front surface, wherein

the fan is fixed to the relay substrate.

4 . The liquid discharge apparatus according to claim 3 , wherein

the first cable includes a first wiring that propagates the first voltage signal that drives the substrate unit, and a second wiring that propagates a fan driving voltage that drives the fan, and

the second wiring is electrically coupled to the relay substrate, and the fan driving voltage propagates through the relay substrate and is input to the fan.

5 . The liquid discharge apparatus according to claim 3 , wherein

the first cable includes a first wiring that propagates the first voltage signal that drives the substrate unit, and a second wiring that propagates a fan driving voltage that drives the fan, and

the second wiring is electrically coupled to the fan, and the fan driving voltage is input to the fan without propagating through the relay substrate.

6 . The liquid discharge apparatus according to claim 1 , wherein

the third connector is a right-angle type connector, and

the fourth connector is a straight type connector.

7 . The liquid discharge apparatus according to claim 1 , wherein

a second cable through which a second voltage signal propagates is electrically coupled to the relay substrate front surface.

8 . The liquid discharge apparatus according to claim 7 , wherein

the head receives a driving signal and discharges a liquid,

the substrate unit includes

an FPGA to which the second voltage signal is input, and

a drive circuit that outputs the driving signal, and

the FPGA outputs a reference driving signal, which is a basis of the driving signal, to the drive circuit based on the second voltage signal.

9 . The liquid discharge apparatus according to claim 1 , wherein

the number of times of attachment/detachment between the third connector and the fourth connector is larger than the number of times of attachment/detachment of the first cable to and from the relay substrate, and larger than the number of times of attachment/detachment of the second cable to and from the relay substrate.

10 . A liquid discharge module comprising:

a head that includes a first connector and discharges a liquid;

a substrate unit including a second connector fitted to the first connector and a third connector different from the second connector; and

a relay substrate including a relay substrate front surface and a relay substrate back surface opposite to the relay substrate front surface, wherein

a first cable through which a first voltage signal propagates is coupled to the relay substrate front surface,

a fourth connector fitted to the third connector of the substrate unit is provided on the relay substrate back surface,

the relay substrate includes a first side and a second side,

the substrate unit includes:

a first substrate including a first substrate front surface, a first substrate back surface opposite to the first substrate front surface, and a third side; and

a second substrate including a second substrate front surface, a second substrate back surface opposite to the second substrate front surface, and a fourth side,

the first substrate and the second substrate are electrically coupled to each other,

the first side of the relay substrate is positioned along the third side of the first substrate,

the second side of the relay substrate is positioned along the fourth side of the second substrate, and

a normal direction of the relay substrate back surface intersects both a normal direction of the first substrate front surface and a normal direction of the second substrate front surface.

11 . The liquid discharge module according to claim 10 , wherein

the first side and the second side are positioned facing each other on the relay substrate, and

the first substrate and the second substrate are positioned such that the first substrate front surface and the second substrate front surface face each other.

12 . The liquid discharge module according to claim 10 , further comprising:

a fan that generates a gas flow in a gas flow path configured with the first substrate front surface and the second substrate front surface, wherein

the fan is fixed to the relay substrate.

13 . The liquid discharge module according to claim 12 , wherein

the first cable includes a first wiring that propagates the first voltage signal that drives the substrate unit, and a second wiring that propagates a fan driving voltage that drives the fan, and

the second wiring is electrically coupled to the relay substrate, and the fan driving voltage propagates through the relay substrate and is input to the fan.

14 . The liquid discharge module according to claim 12 , wherein

the first cable includes a first wiring that propagates the first voltage signal that drives the substrate unit, and a second wiring that propagates a fan driving voltage that drives the fan, and

the second wiring is electrically coupled to the fan, and the fan driving voltage is input to the fan without propagating through the relay substrate.

15 . The liquid discharge module according to claim 10 , wherein

the third connector is a right-angle type connector, and

the fourth connector is a straight type connector.

16 . The liquid discharge module according to claim 10 , wherein

a second cable through which a second voltage signal propagates is electrically coupled to the relay substrate front surface.

17 . The liquid discharge module according to claim 16 , wherein

the head receives a driving signal and discharges a liquid,

the substrate unit includes

an FPGA to which the second voltage signal is input, and

a drive circuit that outputs the driving signal, and

the FPGA outputs a reference driving signal, which is a basis of the driving signal, to the drive circuit based on the second voltage signal.

18 . The liquid discharge module according to claim 10 , wherein

the number of times of attachment/detachment between the third connector and the fourth connector is larger than the number of times of attachment/detachment of the first cable to and from the relay substrate, and larger than the number of times of attachment/detachment of the second cable to and from the relay substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2023
From: TSUYUKI, MASAHIKO; TAKAMUKU, MAKOTO; IMURA, KAZUYA
To: SEIKO EPSON CORPORATION
Reel/Frame 065062/0737 →
Priority Claims (1)
JP 2022-158893 · Sep 30, 2022 · national
Continuity (1)
Related Publication 20240109300A1 · Apr 4, 2024
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