Inkjet head and inkjet recording apparatus
According to one or more embodiments, the inkjet head includes an actuator and a driver. The actuator causes a pressure chamber to expand or contract. The driver applies an ejection pulse to the actuator to eject ink from the pressure chamber. The ejection pulse includes an expansion pulse having a width of 0.75 to 1.25 times a pressure propagation time of the pressure chamber, a rest period after the expansion pulse, and a contraction pulse after the rest period.
1. An inkjet head, comprising:
an actuator configured to cause a pressure chamber to expand or contract; and
a driver configured to apply an ejection pulse to the actuator to eject ink from the pressure chamber, the ejection pulse including:
an expansion pulse having a width of 0.75 to 1.25 times a pressure propagation time of the pressure chamber,
a rest period after the expansion pulse, and
a contraction pulse after the rest period, wherein
the width of the expansion pulse is greater than a width of the contraction pulse.
2. The inkjet head according to claim 1 , wherein a time between a center of the expansion pulse and a center of the contraction pulse is twice the pressure propagation time.
3. The inkjet head according to claim 1 , further comprising:
a plurality of pressure chambers; and
a plurality of actuators corresponding to the plurality of pressure chambers, wherein
the plurality of pressure chambers is divided into a plurality of groups, and
the driver applies ejection pulses to actuators of each of the groups separately.
4. The inkjet head according to claim 1 , wherein a plurality of expansion pulses are applied within one ejection pulse.
5. The inkjet head according to claim 1 , wherein the expansion pulse, the rest period, and the contraction pulse are applied within a one drop cycle.
6. The inkjet head according to claim 1 , wherein the voltage of the expansion pulse changes gradually from a maximum level to a minimum level.
7. The inkjet head according to claim 1 , wherein the voltage of the contraction pulse changes gradually from a maximum to a minimum level.
8. The inkjet head according to claim 1 , wherein the driver is further configured to apply an auxiliary pulse to the actuator prior to the application of the ejection pulse.
9. The inkjet head according to claim 1 , wherein a width of the rest period is greater than the width of the contraction pulse.
10. A liquid ejection head, comprising:
an actuator configured to cause a pressure chamber to expand or contract in response to a drive signal; and
a driver configured to apply an ejection pulse to the actuator to cause liquid to eject from the pressure chamber, the ejection pulse including:
an expansion pulse having a width of 0.75 to 1.25 times a pressure propagation time of the pressure chamber,
a rest period after the expansion pulse, and
a contraction pulse after the rest period, wherein
a time between a center of the expansion pulse and a center of the contraction pulse is twice the pressure propagation time, and
a width of the rest period is greater than a width of the contraction pulse.
11. The liquid ejection head according to claim 10 , wherein a width of the expansion pulse is greater than the width of the contraction pulse.
12. An inkjet recording apparatus, comprising:
a support portion configured to support a medium on to which ink droplets are ejected; and
an inkjet head including:
an actuator configured to cause a pressure chamber to expand or contract; and
a driver configured to apply an ejection pulse to the actuator, the ejection pulse including:
an expansion pulse having a width of 0.75 to 1.25 times a pressure propagation time of the pressure chamber,
a rest period after the expansion pulse, and
a contraction pulse after the rest period, wherein
the width of the expansion pulse is greater than a width of the contraction pulse.
13. The inkjet recording apparatus according to claim 12 , wherein a time between a center of the expansion pulse and a center of the contraction pulse is twice the pressure propagation time.
14. The inkjet recording apparatus according to claim 12 , wherein the inkjet head further includes:
a plurality of pressure chambers; and
a plurality of actuators corresponding to the plurality of pressure chambers, wherein
the plurality of pressure chambers is divided into a plurality of groups, and
the driver applies ejection pulses to actuators of each of the groups separately.
15. The inkjet recording apparatus according to claim 12 , wherein a plurality of expansion pulses are applied within one ejection pulse.
16. The inkjet recording apparatus according to claim 12 , wherein the expansion pulse, the rest period, and the contraction pulse are applied within a one drop cycle.
17. The inkjet recording apparatus according to claim 12 , wherein the voltage of the expansion pulse changes gradually from a maximum level to a minimum level.
18. The inkjet recording apparatus according to claim 12 , wherein and the voltage of the contraction pulse changes gradually from a maximum to a minimum level.
19. The inkjet recording apparatus according to claim 12 , wherein the driver is further configured to apply an auxiliary pulse to the actuator prior to the application of the ejection pulse.
20. The inkjet recording apparatus according to claim 12 , wherein a width of the rest period is greater than the width of the contraction pulse.