Nova Patents
EP0867291A2

Ink-jet print head

Abstract

An actuator 14 is formed with a plurality of ejection channels 13 in two rows which are spaced apart from each other at a prescribed distance. A manifold 17 is joined with an inflow end surface of the actuator 14. The manifold 17 is formed with an ink supply channel 16 for supplying liquid ink from the ink cartridge to each of the ejection channels 13. The ink supply channel 16 is formed to extend along the rows of the ejection channels 13 to be opened over the inflow ends 13i of the ejection channels 13. The width of the ink supply channel 16, opened at the surface of the manifold 17 as connected to the actuator 14, is less than or equal to the distance between the outer side inner walls 51 and 51 of ejection channels 13 in the two rows.

EP0867291A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 27 March 2018, 8.5 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

18 claims: 7 independent, 11 dependent

  1. 1
    An ink-jet print head comprising:a manifold having an ink supply channel opened on its one surface;an actuator formed with a plurality of ejection channels in a plurality of rows, the actuator having first and second end surfaces opposite to each other, the plurality of ejection channels extending between the first and second end surfaces to open at both of the first and second end surfaces, the actuator being connected, at its first end surface, to the manifold so that the plurality of ejection channels are in fluid communication with the ink supply channel for receiving ink from the ink supply channel, the actuator selectively ejecting ink from the opened ends of the ejection channels at the second end surface;and means for providing an ink flow path to ensure that ink flows from the ink supply channel to the ejection channels.
  2. 5
    An ink-jet print head comprising:a manifold having an ink supply channel opened on its one surface;and an actuator formed with a plurality of ejection channels in a plurality of rows, the actuator having first and second end surfaces opposite to each other, each of the plurality of ejection channels extending between the first and second end surfaces to open at both of the first and second end surfaces, the actuator being connected, at its first end surface, to the manifold so that the plurality of ejection channels are in fluid communication with the ink supply channel to receive ink from the ink supply channel, the actuator being formed with an ink flow path on its first end surface for allowing ink to flow in a direction at which the ejection channel rows extend, the actuator selectively ejecting ink from the opened ends of the ejection channels at the second end surface.
  3. 7
    An ink-jet print head as claimed in any preceeding claim, further comprising a nozzle plate connected to the second end surface of the actuator so that each ejection channel is in fluid communication with a corresponding nozzle, the actuator selectively ejecting liquid ink through the nozzles.
  4. 9
    An ink-jet print head as claimed in any one of claims 1 to 6 wherein the actuator is formed with at least two rows of ejection channels, the first end surface of the actuator having two outer side areas and a central area positioned between the two outer side areas, the central area being defined between the two rows of ejection channels, the central area being provided with or the ink flow path providing means providing the central area with a slanted surface for gradually increasing a cross-section of each ejection nozzle in a direction toward the opened end of the ejection nozzle at the first end surface.
  5. 11
    An ink-jet print head as claimed in any preceeding claim, wherein the ink supply channel is divided into a plurality of ink supply paths, each of the ink supply paths being in fluid communication with a corresponding row of ejection nozzles.
  6. 13
    An ink-jet print head comprising:an actuator formed with a plurality of outer side inner walls, the plurality of outer side inner walls being arranged in two rows, each outer side inner wall on one row being spaced from a corresponding outer side inner wall on the other row at a predetermined distance, each outer side inner wall defining an ejection channel, the actuator having first and second end surfaces opposite to each other, the plurality of outer side inner walls extending between the first and second end surfaces, thereby allowing the plurality of ejection channels to be opened at both of the first and second end surfaces, the actuator selectively ejecting liquid ink from the opened ends of the ejection channels at the second end surface;and a manifold connected, at its one surface, to the first end surface of the actuator, the manifold having an ink supply channel opened on its surface connected to the actuator, the ink supply channel extending along the two rows of ejection channels in fluid communication therewith to supply liquid ink to the two rows of ejection channels, a width of the ink supply channel, defined on the surface where the manifold is connected to the actuator, being less than or equal to the predetermined distance.
  7. 18
    An ink-jet print head as claimed in any one of claims 13 to 17, wherein the actuator is formed with at least one additional row of ejection channels which is located between the two rows of ejection channels and which extends between the first and second end surfaces.