Nova Patents
EP0214733A2

High density thermal ink jet printhead.

Abstract

An ink jet printhead (11) composed of two substantially two identical parts (28) and method of batch fabricating the parts. Each part (28) has V-grooves (29) anisotropically etched between a linear array of heating elements (30) having selectively addressable electrodes (33) which are parallel to each other. The grooved structures of the parts (28) permit them to be mated face-to-face, so that they are automatically self-aligned by the inter-meshing of the lands (31) containing the heating elements (30) on one part (28) with the grooves (29) of the other part (28). A pair of parts (28) may be used as a printhead for a carriage type ink jet printer or a plurality of parts (28) may be assembled for a pagewidth printer. The pagewidth printhead is assembled by offseting the first two parts (28) a selected number of grooves (29) when they are mated so that the subsequently added adjacent parts (28) abut each other and yet are self-aligned with the confronting parts (28).

EP0214733A2, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Projected expiry passed 23 July 2006, 20.2 years ago.

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

9 claims: 2 independent, 7 dependent

  1. 1
    An ink jet printhead for a drop-on-demand thermal ink jet printer, comprising a plurality of parallel channels each having associated therewith a heating element, characterized in that the printhead includes at least two substantially identical parts (28), each part comprising a linear array of equally spaced, parallel, coplanar lands (31) each having a heating element (30) thereon, with grooves (29) of V-shaped cross-section between each adjacent pair of lands, said printhead parts being mated together in intermeshing fashion, with the lands (31) of one part residing in the grooves (29) of the other part so as to define said channels between the lands and the internal apices of the grooves.
  2. 9
    A method for fabricating a plurality of printheads for use in ink jet printers, comprising the steps of:(a) cleaning a silicon substrate, each having first and second parallel surfaces, the substrate surfaces being {100} planes;(b) depositing a layer of insulative material on the surfaces of the substrates;(c) forming a plurality of sets of equally spaced, linear arrays of resistive material on the first surface of the substrate at predetermined locations for use as heating elements and forming a pattern of electrodes on the same substrate surface for enabling individual addressing of each heating element with current pulses;(d) depositing a passivation layer over the heating elements and addressing electrodes and clearing the ends of the electrodes of the passivation layer for subsequent connection to a source of current pulses;(e) photolithographically patterning the passivation layer to produce elongated vias in both the passivation and insulation layers between each resistive material and its associated addressing electrode of each array to expose the substrate first surface and anisotropically etching a plurality of equally spaced, parallel elongated grooves in the first surface of the substrate, each groove being bounded by {111} plane side walls and thus having a V-shaped cross-sectional area along their length;(f) providing a communicating path between the grooves for each set of resistive material;(g) dicing the substrate at a location near both ends of each set of grooves and in a direction perpendicular thereto, thus forming sets of open-ended grooves, each groove being between a respective resistive material and its electrodes, then dicing the substrate in a mutually perpendicular direction to produce individual printhead parts;(h) mating at least two identical parts together with their first surfaces confronting each other, the resistive material and electrodes of one part residing in the grooves of the other part so that the parts are self-aligned and channels are formed with open ends;(i) permenently adhering the at least two parts together to form a printhead;(j) coating the edge of the printhead having the channel open ends which have the resistive material positioned in the channels nearer thereto for use as a common electrical return, these channels open ends being the ones to function as nozzles;(k) closing the open ends of the channels opposite the ones functioning as nozzles;and(l) providing means for selectively addressing the resistive material with current pulses representative of digitized data signals for the expulsion of ink droplets in response thereto.