According to one embodiment, an ink jet head includes an ink pressure chamber, a nozzle hole, a vibrating plate, an actuator, and electrodes. The ink pressure chamber stores ink which is discharged through the nozzle hole. The vibrating plate is formed to surround the nozzle hole. The actuator drives the vibrating plate. The electrodes are formed to be axially symmetrical with respect to the nozzle hole and drive the actuator.
1. An ink jet head comprising:
an ink pressure chamber configured to store ink;
a nozzle hole through which the ink in the ink pressure chamber is discharged;
a vibrating plate formed over the ink pressure chamber to surround the nozzle hole;
an actuator to drive the vibrating plate; and
electrodes formed to drive the actuator, the electrodes comprising a first electrode and a second electrode with the actuator interposed therebetween;
wherein the second electrode is formed on the vibrating plate and in contact with a first surface of the actuator;
wherein the first electrode comprises an upper electrode in contact with a second surface of the actuator opposite the first surface, a connection portion in contact with the upper electrode, and a wiring portion in contact with the connection portion; and
wherein the first electrode and the second electrode are symmetrically disposed around the nozzle hole in a region on the vibrating plate corresponding to the ink pressure chamber.
2. The ink jet head according to claim 1 , further comprising:
an insulating film that insulates the first electrode and the second electrode from one another,
wherein the first electrode, the second electrode, the actuator, and the insulating film are formed to be axially symmetric with respect to the nozzle hole in the region.
3. The ink jet head according to claim 1 , further comprising:
an ink pressure chamber structure which includes a plurality of the ink pressure chambers; and
a plate which includes a plurality of nozzles provided with the nozzle hole, the actuator, and the electrodes to oppose the respective ink pressure chambers.
4. The ink jet head of claim 1 , wherein the ink pressure change has a circumferential profile, and the axially symmetric electrodes have the same profile.
5. The ink jet head of claim 4 , wherein the area of the profile of the ink pressure chamber and electrodes are the same.
6. The ink jet head of claim 4 , wherein the profile is rectangular.
7. The ink jet head of claim 4 , where the profile is rhombic.
8. The ink jet head of claim 1 , wherein the wiring portion of the first electrode and a wiring portion of the second electrode are collinearly aligned within a plane of the vibrating plate along an axis passing through the nozzle hole.
9. The ink jet head of claim 1 , wherein the wiring portion of the first electrode and a wiring portion of the second electrode are perpendicularly aligned within a plane of the vibrating plate along perpendicular axes passing through the nozzle hole.