IP Library Granted Patent US 12,697,810
Granted Patent B2
US 12,697,810 · App. 18/680,352 · Granted Aug 4, 2026

Drive device

Inventor: Masaya Ichikawa (Tagata Shizuoka, JP)
Assignee: RISO Technologies Corporation
B41J2/04588B41J2/04541B41J2/04581B41J2/04591
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Quick Facts
Patent No.
US 12,697,810
App. No.
18/680,352
Filed
May 31, 2024
Granted
Aug 4, 2026
Kind
B2
Art Unit
2853
USPC
347/10
Abstract

A drive device includes a drive circuit to output a drive signal that is to be applied to an actuator of a liquid ejection head for ejecting liquid droplets. The drive signal includes an adjustment ejection waveform portion that includes a first portion having an expansion pulse that decreases pressure in a pressure chamber of the actuator and a second portion having a contraction pulse that increases pressure in the pressure chamber. The contraction pulse includes voltage increase changes that change the voltage applied to the actuator stepwise and a return pulse that is between a pair of voltage increase changes. The return pulse changes from a first voltage level that is less than a maximum voltage level of the contraction pulse to a second voltage level that is greater than a minimum voltage level of the expansion pulse.

Claims (43)

1 . A drive device, comprising:

a drive circuit configured to output a drive signal waveform to be applied to an actuator of a liquid ejection head, wherein

the drive signal waveform includes an adjustment ejection waveform portion that causes liquid to be ejected once by a cycle of expansion and contraction and includes:

a first portion having an expansion pulse that decreases pressure in a pressure chamber of the actuator, and

a second portion having a contraction pulse that increases pressure in the pressure chamber, the contraction pulse including a plurality of voltage increase changes that change the voltage applied to the actuator stepwise and a return pulse that is between a pair of voltage increase changes in the plurality of voltage increase changes, the return pulse changing from a first voltage level that is less than a maximum voltage level of the contraction pulse to a second voltage level that is greater than a minimum voltage level of the expansion pulse.

2 . The drive device according to claim 1 , wherein the difference between the first voltage level and the second voltage level is equal to the magnitude of a voltage increase change in the plurality of voltage increase changes.

3 . The drive device according to claim 1 , wherein the difference between the first voltage level and the second voltage level is equal to one-half the magnitude of the expansion pulse.

4 . The drive device according to claim 1 , wherein the return pulse changes in discrete steps from the first voltage level to the second voltage level.

5 . The drive device according to claim 4 , wherein the return pulse changes in discrete steps from the second voltage level to first voltage level.

6 . The drive device according to claim 5 , wherein magnitudes of each of the discrete steps are equal.

7 . The drive device according to claim 1 , wherein the expansion pulse changes voltage in discrete steps from a reference voltage level to the minimum voltage level.

8 . The drive device according to claim 7 , wherein the expansion pulse changes voltage in discrete steps from the minimum voltage level to the reference voltage level.

9 . The drive device according to claim 1 , wherein

the drive signal waveform is a multi-drop waveform having a plurality of drop waveforms in sequence, and

the adjustment ejection waveform is part of at least one of the drop waveforms of the plurality of drop waveforms.

10 . The drive device according to claim 9 , wherein the adjustment ejection waveform is part of the first drop waveform in the sequence of the plurality of drop waveforms.

11 . The drive device according to claim 10 , wherein the second drop waveform in the sequence of the plurality of drop waveforms is a reference ejection waveform including an expansion pulse that decreases pressure in the pressure chamber and a contraction pulse that increases the pressure in the pressure chamber in discrete steps.

12 . The drive device according to claim 1 , wherein the drive circuit is configured to control an ejection volume by adjusting a pulse width of the return pulse.

13 . The drive device according to claim 1 , wherein the second voltage level is a ground potential.

14 . A liquid ejection head, comprising:

an actuator that expands and contracts a pressure chamber to eject a liquid from a nozzle associated with the pressure chamber; and

a drive circuit configured to output a drive signal waveform to be applied to the actuator, wherein

the drive signal waveform includes an adjustment ejection waveform portion that causes liquid to be ejected once by a cycle of expansion and contraction and includes:

a first portion having an expansion pulse that decreases pressure in a pressure chamber of the actuator, and

a second portion having a contraction pulse that increases pressure in the pressure chamber, the contraction pulse including a plurality of voltage increase changes that change the voltage applied to the actuator stepwise and a return pulse that is between a pair of voltage increase changes in the plurality of voltage increase changes, the return pulse changing from a first voltage level that is less than a maximum voltage level of the contraction pulse to a second voltage level that is greater than a minimum voltage level of the expansion pulse.

15 . The liquid ejection head according to claim 14 , wherein the difference between the first voltage level and the second voltage level is equal to the magnitude of a voltage increase change in the plurality of voltage increase changes.

16 . The liquid ejection head according to claim 14 , wherein

the drive signal waveform is a multi-drop waveform having a plurality of drop waveforms in sequence, and

the adjustment ejection waveform is part of at least one of the drop waveforms of the plurality of drop waveforms.

17 . The liquid ejection head according to claim 14 , wherein the drive circuit is configured to control an ejection volume by adjusting a pulse width of the return pulse.

18 . A printer, comprising:

an inkjet head; and

a sheet conveying mechanism configured to position a sheet relative to the inkjet head, wherein

the inkjet head includes:

an actuator that expands and contracts a pressure chamber to eject a liquid from a nozzle associated with the pressure chamber; and

a drive circuit configured to output a drive signal waveform to be applied to the actuator, wherein

the drive signal waveform includes an adjustment ejection waveform portion that causes liquid to be ejected once by a cycle of expansion and contraction and includes:

a first portion having an expansion pulse that decreases pressure in a pressure chamber of the actuator, and

a second portion having a contraction pulse that increases pressure in the pressure chamber, the contraction pulse including a plurality of voltage increase changes that change the voltage applied to the actuator stepwise and a return pulse that is between a pair of voltage increase changes in the plurality of voltage increase changes, the return pulse changing from a first voltage level that is less than a maximum voltage level of the contraction pulse to a second voltage level that is greater than a minimum voltage level of the expansion pulse.

19 . The printer according to claim 18 , wherein the difference between the first voltage level and the second voltage level is equal to the magnitude of a voltage increase change in the plurality of voltage increase changes.

20 . The printer according to claim 18 , wherein

the drive signal waveform is a multi-drop waveform having a plurality of drop waveforms in sequence, and

the adjustment ejection waveform is part of at least one of the drop waveforms of the plurality of drop waveforms.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2024
From: TOSHIBA TEC KABUSHIKI KAISHA
To: RISO TECHNOLOGIES CORPORATION
Reel/Frame 068493/0970 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2024
From: ICHIKAWA, MASAYA
To: TOSHIBA TEC KABUSHIKI KAISHA
Reel/Frame 067595/0438 →
Priority Claims (1)
JP 2023-138430 · Aug 28, 2023 · national
Continuity (1)
Related Publication 20250074047A1 · Mar 6, 2025
References Cited (5)
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US 10500844B2 · Watanabe · 2019 [cited by applicant]
Extended European Search Report dated Jan. 22, 2025, mailed in counterpart European Application No. 24196493.1, 8 pages. [cited by applicant]