Claims
- 1. A method of controlling ink drop volume in an ink-jet printhead comprising the steps of:providing a piezoelectric module having a plate with an integrated ink chamber in flow communication with an integrated ink supply manifold and an integrated ink orifice, the ink chamber including a main channel that connects the ink supply manifold to the ink orifice and multiple piezoelectric actuators depending from the main channel and spaced apart by ink subchannels in flow communication with the main channel the multiple piezoelectric actuators defining an away of piezoelectric actuators, a ground electrode in contact with a first end of each of the actuators, and a cover plate bonded to the piezoelectric plate to seal the chamber and the manifold, the cover plate being in contact with a control electrode and configured to conduct control signals from the control electrode to the actuators; and selectively activating one or more of the piezoelectric actuators in the array of piezoelectric actuators to create a pressure wave that propagates through the ink supply and ejects an ink drop the volume of which is dependent on the number of actuators that are activated.
- 2. The method of claim 1 wherein an electrically conductive elastic membrane conducts signals from the control electrode to the actuators to selectively activate same.
- 3. A method of controlling fluid drop volume in a fluid ejecting device comprising the steps of:providing a piezoelectric module comprising a plate with an integrated fluid chamber in flow communication with a fluid supply and a fluid orifice, the fluid chamber including a main channel that connects the fluid supply to the fluid orifice, and multiple piezoelectric actuators depending from the main channel and spaced apart by fluid subchannels in flow communication with the main channel, the multiple piezoelectric actuators defining an array of piezoelectric actuators, a ground electrode in contact with a first end of each of the actuators, and a cover plate bonded to the piezoelectric plate to seal the chamber and the fluid supply, the cover plate being in contact with a control electrode and configured to conduct control signals from the control electrode to the actuators; and selectively activating one or more of the piezoelectric actuators in the array of piezoelectric actuators to create a pressure wave that propagates through the fluid supply and ejects a fluid drop the volume of which is dependent on the number of actuators that are activated.
- 4. The method of claim 3 wherein an electrically conductive elastic membrane conducts signals from the control electrode to the actuators to selectively activate same.
CROSS-REFERENCE TO RELATED APPLICATION DATA
This application is a divisional application of U.S. patent application Ser. No. 10/051,434, filed Jan. 18, 2002, now U.S. Pat. No. 6,601,948.
US Referenced Citations (8)