Claims
- 1. A manufacturing method of manufacturing a piezoelectric vibrator unit comprising a plurality of piezoelectric vibrators, each having, at least in part, a laminate structure of electrodes and at least one layer of piezoelectric material, said manufacturing method comprising:
a displacement amount measurement step of measuring a displacement amount of each of the piezoelectric vibrators by applying a reference voltage, a treatment condition setting step of setting a treatment condition for at least one of the piezoelectric vibrators based on a measurement result of the displacement amount measurement step, a displacement amount adjustment step of adjusting a displacement of the each vibrator of the piezoelectric vibrators by executing a treatment based on a result of the treatment condition setting step, wherein, the laminate structure includes an external electrode as an outermost one of the electrodes in a laminate direction, and an internal electrode that is to be different in polarity from the external electrode and that is confronted with the external electrode through a layer of the piezoelectric material to form an active region, wherein the displacement amount adjustment step includes a step of trimming a portion of the external electrode of the at least one piezoelectric vibrator, the portion being located within the active region.
- 2. The manufacturing method of claim 1, wherein the displacement amount measurement step includes defining a reference vibrator having the smallest displacement amount by applying the reference voltage to the piezoelectric vibrators,
wherein the displacement amount adjustment step includes adjusting a displacement amount of each of other vibrators to a displacement amount of the reference vibrator.
- 3. The manufacturing method of claim 1, wherein the displacement amount measurement step includes defining a reference vibrator having the smallest displacement amount by applying the reference voltage to the piezoelectric vibrators,
wherein the displacement amount adjustment step includes adjusting a displacement amount of each of the vibrators to a target displacement amount that is set to be smaller than a displacement amount of the reference vibrator.
- 4. The manufacturing method of claim 1, wherein the step of trimming includes trimming the portion of the external electrode using a laser beam.
- 5. The manufacturing method of claim 1, further comprising:
laminating piezoelectric material layers and internal electrode layers alternately to provide a laminate substrate; forming an external electrode layer on at least a surface of the laminate substrate to provide a laminate member; and at least partially cutting the laminate member to provide a comb-like piezoelectric vibrator.
- 6. A manufacturing method of manufacturing a piezoelectric vibrator unit comprising a plurality of piezoelectric vibrators, each having, at least in part, a laminate structure of electrodes and at least one layer of piezoelectric material, said manufacturing method comprising:
a displacement amount measurement step of measuring a displacement amount of each of the piezoelectric vibrators by applying a reference voltage, a treatment condition setting step of setting a treatment condition for at least one of the piezoelectric vibrators based on a measurement result of the displacement measurement step, a displacement amount adjustment step of adjusting a displacement of the each vibrator of the piezoelectric vibrators by executing a treatment based on a result of the treatment condition setting step, wherein the displacement amount adjustment step includes a heating polarization adjustment step of supplying a polarization drive signal having a preset waveform to the electrodes to generate self-generating heat from the at least one piezoelectric vibrator by charging and discharging the piezoelectric material any supplying a polarization voltage to the electrodes after generation of the self-generating heat to polarize the piezoelectric material of the at least one piezoelectric vibrator.
- 7. The manufacturing method of claim 6, wherein the laminate structure includes common internal electrodes and segment internal electrodes laminated alternately with a layer of the piezoelectric material interposed between adjacent pair of the common and segment internal electrodes to form an active region in a free end part.
- 8. The manufacturing method of claim 7, wherein each of the piezoelectric vibrators is displaced in a direction orthogonal to a lamination direction by the action of an electric field.
- 9. The manufacturing method of claim 7, wherein each of the piezoelectric vibrators is disposed in a lamination direction by the action of an electric field.
- 10. The manufacturing method of claim 7, further comprising:
laminating piezoelectric material layers and internal electrode layers alternately to provide a laminate substrate; forming an external electrode layer on at least a surface of the laminate substrate to provide a laminate member; and at least partially cutting the laminate member to provide comb-like piezoelectric vibrators.
- 11. A liquid jet head comprising:
a piezoelectric vibrator unit manufactured according to the manufacturing method of any one of claims 1 to 10; and a flow passage unit having a plurality of liquid flow passages that are respectively associated with the piezoelectric vibrators, and that respectively extend from a reservoir through pressure chambers to nozzle openings, wherein:
the piezoelectric vibrator unit is attached to the flow passage unit so that the piezoelectric vibrators are respectively contacted with diaphragm parts of the pressure chambers associated with the piezoelectric vibrators; and deformation of the piezoelectric vibrator deforms the associated pressure chamber and changes liquid pressure in the associated pressure chamber to thereby eject liquid from the associated nozzle opening.
- 12. A manufacturing method of manufacturing a liquid jet head comprising a plurality of piezoelectric vibrators, each having, at least in part, a laminate structure of electrodes and at least one layer of piezoelectric material, and a plurality of liquid flow passages respectively formed for communication from a reservoir through pressure chambers to nozzle openings associated with the piezoelectric vibrators, wherein deformation of a piezoelectric vibrator causes deformation of a respective pressure chamber and changes liquid pressure in the respective pressure chamber to thereby eject liquid from a respective nozzle opening, the manufacturing method comprising:
an ejection characteristic measurement step for measuring an ejecting characteristic of each piezoelectric vibrator by applying the same drive signal to all the piezoelectric vibrators, and measuring liquid ejection characteristic one-by-one of the nozzle openings, a treatment condition setting step for setting a treatment condition for each of the piezoelectric vibrators based on a measurement result of the ejecting characteristic measurement step, an ejection characteristic adjustment step for adjusting an ejecting characteristic of the each nozzle openings by executing a treatment based on a result of the treatment condition setting step, wherein the ejection characteristic adjustment step includes a heating polarization adjustment step of supplying a polarization drive signal having a preset waveform to the electrodes to generate self-generating heat from the at least one piezoelectric vibrator by charging and discharging the piezoelectric material and supplying a polarization voltage to the electrode after generation of the self-generating heat to polarize the piezoelectric material of the at least one piezoelectric vibrator.
- 13. The manufacturing method of claim 12, wherein the liquid ejection characteristic includes a liquid ejection amount.
- 14. The manufacturing method of claim 12, wherein the liquid ejection characteristic includes a liquid ejection speed.
- 15. The manufacturing method of claim 12, wherein the liquid ejection characteristic includes an area of ejected liquid on an object.
- 16. A liquid jet head manufactured according to the manufacturing method of claim 12, the liquid jet head comprising:
a case defining a storage space in which the piezoelectric vibrators can be stored; an adjustment opening formed through the case for communication between an outside of the case and the storage space to enable access to the piezoelectric vibrators stored in the storage space, wherein displacement amount adjustment can be conducted to each of the piezoelectric vibrator from the outside of the case through the adjustment opening.
- 17. The liquid jet head of claim 16, wherein each of the piezoelectric vibrator includes common internal electrodes and segment internal electrodes laminated alternately with a layer of the piezoelectric material interposed between adjacent pair of the common and segment internal electrodes to form an active region in a free end part.
- 18. The liquid jet head of claim 17, wherein each of the piezoelectric vibrators is displaced in a direction orthogonal to a lamination direction by the action of an electric field.
- 19. The liquid jet head of claim 17, wherein each of the piezoelectric vibrators is displaced in a lamination direction by the action of an electric field.
- 20. The liquid jet head of claim 17, wherein the piezoelectric vibrators are manufactured by:
laminating piezoelectric material layers and internal electrode layers alternately to provide a laminate substrate; forming an external electrode layer on at least a surface of the laminate substrate to provide a laminate member; and at least partially cutting the laminate member to provide the piezoelectric vibrators in the form of teeth of a comb.
- 21. A manufacturing method for a piezoelectric vibrator unit manufactured through a displacement amount measurement step for all piezoelectric vibrators in which a displacement amount of each of the piezoelectric vibrators with respect to a reference voltage is measured, and a displacement amount adjustment step in which processing conditions respectively for the piezoelectric vibrators are set based on a measurement result of the displacement amount measurement step and a displacement amount adjustment processing is executed based on the set processing conditions to make uniform displacement amounts of the piezoelectric vibrators, wherein:
each of the piezoelectric vibrators includes common internal electrodes and segment internal electrodes laminated alternately with layers of piezoelectric material interposed therebetween, to thereby form an active region in a free end part of the piezoelectric vibrator; each of the piezoelectric vibrators further includes a common external electrode and a segment external electrode that are formed as outer surfaces of the piezoelectric vibrator and that are respectively connected electrically to the common internal electrodes and the segment internal electrodes, whereby free end parts of outermost layers of the piezoelectric material can also serve as the active region in the free end part of the piezoelectric vibrator; each of the piezoelectric vibrators is of a lamination piezoelectric vibrator that is displaceable in a direction orthogonal to a lamination direction by the action of electric field; a portion of the external electrode of each of the piezoelectric vibrators is defined as a trimming portion that is located within the active region as a side surface of the piezoelectric vibrator in the lamination direction and that can change an effective length by partial removal of the external electrode; and the displacement amount adjustment processing includes a trimming step that executes the partial removal of the external electrode for at least one of the piezoelectric vibrators.
- 22. The method of claim 21, wherein the displacement amount adjustment step includes setting one of the piezoelectric vibrators having the smallest displacement amount with respect to the reference voltage as a reference vibrator, and adjusting displacement amounts of the other piezoelectric vibrators to a displacement amount of the reference vibrator.
- 23. The method of claim 22, herein the displacement amount adjustment step includes setting one of the piezoelectric vibrators, having the smallest displacement amount with respect to the reference voltage, as a reference vibrator, and adjusting displacement amounts of all the piezoelectric vibrators to a target displacement amount that is set smaller than a displacement amount of the reference vibrator.
- 24. The method of claim 21, wherein the trimming process partially removes the external electrode in the active region by a laser beam.
- 25. The method of claim 21, wherein the piezoelectric vibrators are formed by laminating piezoelectric material layers and internal electrode layers alternately to provide a laminate substrate, forming electrode layers, serving as the external electrodes, on surfaces of the laminate substrate to provide a laminate member, and cutting the laminate member into a comb-like shape.
- 26. A manufacturing method for a piezoelectric vibrator unit manufactured through a displacement amount measurement step for all piezoelectric vibrators in which a displacement amount of each of the piezoelectric vibrators with respect to a reference voltage is measured, and a displacement amount adjustment step in which processing conditions respectively for the piezoelectric vibrators are set based on measurement result of the displacement amount measurement step and a displacement amount adjustment processing is executed based on the set processing conditions to make uniform displacement amounts of the piezoelectric vibrators, wherein:
the displacement amount adjustment processing includes a heating polarization step of supplying a polarization drive signal having a preset waveform to at least one of the piezoelectric vibrators to generate self-generating heat from the at least one piezoelectric vibrator by charging and discharging piezoelectric material of the at least one piezoelectric vibrator and supplying a polarization voltage to the at least one piezoelectric vibrator after generation of the self-generating heat to polarize the piezoelectric material of the at least one piezoelectric vibrator.
- 27. The method of claim 26, wherein each of the piezoelectric vibrators is of a lamination piezoelectric vibrator including common internal electrodes and segment internal electrodes laminated alternately with layers of the piezoelectric material interposed therebetween, to thereby form an active region in a free end part of the piezoelectric vibrator.
- 28. The method of claim 27, wherein each of the piezoelectric vibrators is displaceable in a direction orthogonal to a lamination direction by the action of an electric field.
- 29. The method of claim 27, wherein each of the piezoelectric vibrators is displaceable in a lamination direction by the action of an electric field.
- 30. The method of claim 26, wherein the piezoelectric vibrators are formed by laminating piezoelectric material layers and internal electrode layers alternately to provide a laminate substrate, forming electrode layers, serving as external electrodes, on surfaces of the laminate substrate to provide a laminate member, and cutting the laminate member into a comb-like shape.
- 31. A liquid jet head comprising:
a piezoelectric vibrator unit manufactured according to the manufacturing method of any one of claims 21 to 30; and a flow passage unit having a plurality of liquid flow passages that are respectively associated with the piezoelectric vibrators, and that respectively extend from a reservoir through pressure chambers to nozzle openings, wherein:
the piezoelectric vibrators unit is attached to the flow passage unit so that the piezoelectric vibrators are respectively contacted with diaphragm parts of the pressure chambers associated with the piezoelectric vibrators; and deformation of the piezoelectric vibrator deforms the associated pressure chamber and changes liquid pressure in the associated pressure chamber to thereby eject liquid from the associated nozzle opening.
Priority Claims (2)
Number |
Date |
Country |
Kind |
P.HEI.11-371175 |
Dec 1999 |
JP |
|
P.2000-17886 |
Jan 2000 |
JP |
|
Parent Case Info
[0001] This is a divisional of application Ser. No. 09/748,104 filed Dec. 27, 2000; the disclosure of which is incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09748104 |
Dec 2000 |
US |
Child |
10703465 |
Nov 2003 |
US |