Claims
- 1. Method of selectively printing a dot on a record medium resting on a platen and before which is a pigment bearing medium, said method comprising the steps of providing a print module with a dot print element thereon extending toward said platen, selectively moving said print module in a direction toward said media between a first and a second position, applying a controllably variable magnetic force directly to said print module so that said dot element is attracted to press against said media with sufficient force to print a dot only when said print media is in second position and controlling the time said dot element presses against said media to control the size of a printed dot.
- 2. Method of claim 1 wherein said record medium is a stack of sheets, and wherein the amplitude of the magnetic force is varied in accordance with the number of sheets in the stack so that a dot is printed on all sheets.
- 3. Method of claim 2 wherein the duration of the magnetic force is varied to control the size of a printed dot.
- 4. Method of selectively printing a dot on a record medium resting on a platen and adjacent which is a pigment bearing medium, said method comprising the steps of fixedly positioning a printing module including a flexible member and a dot print element laterally extending from said flexible member toward said platen, selectively piezoelectrically bending said flexible member toward said platen between first and second positions, applying a controllably variably magnet force directly to said printing module in a direction toward said platen so that said dot print element is attracted to press against said media with sufficient force to print a dot only when said flexible member is in said second position and controlling the time said dot print element presses against said media to control the size of a printed dot.
- 5. Method of claim 4 wherein the duration of the magnetic force is varied to control the size of a printed dot.
- 6. Method of claim 4 wherein said record medium is a stack of sheets, and wherein the amplitude of the magnetic force is varied in accordance with the number of sheets in the stack so that a dot can be printed on all sheets.
- 7. Method of claim 6 wherein the duration of the magnetic force is varied to control the size of the printed dot.
- 8. Dot-matrix print module comprising: a bendable piezoelectric lamina having first and second edges; mounting means for fixedly supporting said bendable piezoelectric lamina along with region of said first edge;
- a planar ferromagnetic member as a unitary structure having a longitudinally axial body with first and second ends, means near said first end for continuously engaging said second edge so as to follow all movements of said piezoelectric lamina, first and second similar tabs ferromagnetically connected to and laterally extending opposite directions from said longitudinally axial body intermediate said ends; and
- a dot print element fixed to the first end of said longitudinally axial body to be responsive to the movement of said bendable piezoelectric lamina in the region of said planar ferromagnetic member.
- 9. The dot-matrix print module of claim 8 wherein each of said tabs has three sides with a first side near said first end and perpendicular to the longitudinal axis of said longitudinal axial body and a second side parallel to said longitudinal axis.
- 10. The dot-matrix print module of claim 8 wherein said dot print element is a wire rigidly fixed to the second end of said longitudinal axial body.
- 11. The dot-matrix print module of claim 10 wherein each of said tabs has three sides with a first side said first end and perpendicular to the longitudinal axis of said longitudinal axial body and a second side parallel to said longitudinal axis.
- 12. Dot matrix printer comprising; a platen for supporting a record medium; at least one dot-matrix print module comprising
- a bendable piezoelectric lamina means having first and second edges,
- mounting means for fixedly supporting said bendable piezoelectric lamina means along the region of said first edge,
- planar ferromagnetic means having a longitudinally axial body with first and second ends,
- engaging means near said first end for continuously engagings said second edge of said bendable piezoelectric lamina means so that said planar ferromagnetic means follows all movements of said bendable piezoelectric lamina,
- first and second similar tabs integral with said laterally extending, in opposite directions, from said longitudinally axial body intermediate said ends, a dot print element means at the second end of said longitudinally axial body to be responsive to the movement of said bendable piezoelectric lamina means in the region of said planar ferroelectric means, means for supporting said planar ferroelectric means such that said dot print element means is operatively opposite said platen;
- energizing means for energizing said bendable piezoelectric lamina means whereby the associated planar ferromagnetic means is positioned at first or second points with respect to said platen, and electromagnetic drive means positioned operatively opposite said planar ferromagnetic means for attracting said ferromagnetic means to provide a print force to said dot print element means when said planar ferromagnetic means is at said first position with respect to said platen.
- 13. The dot-matrix printer of claim 12 wherein; said dot print element means is wire rigidly fixed to the second end of said longitudinally axial body; and each of said tabs has three sides with a first side near said second end and perpendicular to the longitudinal axis of said longitudinal axial body and a second side parallel to said longitudinal axis.
- 14. The dot-matrix printer of claim 13 wherein said electromagnetic drive means comprises: a first core of ferromagnetic material extending opposite said planar ferromagnetic means, said first core having a U-shaped cross-section with two arms, one of said arms being longer than the other of said arms, said one arm having a pole face opposite said first side or one of said tabs and said other of said having a pole face opposite second side of said one tab; a first winding disposed about one of said arms of said first core; a second core of ferromagnetic material extending opposite said planar ferromagnetic means, said second core having a U-shaped cross-section with two arms, one of said arms being longer than the other of said arms, said one arm having a pole face opposite said first side of the other of said tabs and said other of said arms having a pole face opposite said second side of said other of said tabs; a second winding disposed about one of said arms of said second core; and means for simultaneously energizing said windings.
- 15. Dot matrix printer comprising; a platen for supporting a record medium; at least one dot-matrix print module comprising, a bendable piezoelectric lamina means having first and second edges mounting means for fixedly supporting said bendable piezoelectric lamina means along the region of said first edge, planar ferromagnetic means having a longitudinally axial body with first and second ends, slot means near said first end for engaging said second edge of said bendable piezoelectric lamina means, first and second similar tabs laterally extending, in opposite directions, from said longitudinally axial body intermediate said ends, each of said tabs has three sides with a first side near said second end and perpendicular to the longitudinal axis of said longitudinally axial body and second side parallel to said longitudinal axis, and a wire means rigidly fixed to the second end of said longitudinally axial body, and means for supporting said planar ferromagnetic means such that said wire means is operatively opposite said platen; energizing means for energizing said bendable piezoelectric lamina means whereby the associated planar ferromagnetic means is positioned at first or second points with respect to said platen; and electromagnetic drive means positioned operatively opposite said planar ferromagnetic means for providing a print force to said wire means when the associated planar ferromagnetic means is positioned at said first position with respect to said platen, said electromagnetic drive means comprising a first core of ferromagnetic material extending opposite said planar ferroelectric means, said first core having a U-shaped cross-section with two arms, one of said arms being longer that the other arm, said one arm having a pole face opposite said first side of one of said tabs and said other of said arms having a pole face opposite said second side of said one tab, a first winding disposed about one of said arms of said first core, a second core of ferromagnetic material extending opposite said planar ferromagnetic means, said second core having a U-shaped cross-section with two arms, one of said arms being longer than the other arm, said one arm having a pole face opposite said first side of the other of said tabs and said other of said arms having a pole face opposite said second side of said other of said tabs; a second winding disposed about one of said arms of said second core; and means for simultaneously energizing said windings.
Parent Case Info
This application is a continuation-in-part of Ser. No. 091,835 filed 9/1/87, now U.S. Pat. No. 4,886,380.
US Referenced Citations (5)
Foreign Referenced Citations (4)
Number |
Date |
Country |
38277 |
Apr 1981 |
JPX |
106872 |
Aug 1981 |
JPX |
128882 |
Aug 1983 |
JPX |
11258 |
Jan 1986 |
JPX |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
91835 |
Sep 1987 |
|