EP0321075A2

Integrated thermal ink jet printhead and method of manufacturing.

Abstract

We describe an integrated thermal ink jet printhead and manufacturing process therefor which includes the successive build-up of an orifice plate (18), a first barrier layer (20), heater resistors (22), a second barrier layer (30), and an ink reservoir-­defining layer (38) on top of a reusable or "dummy" substrate (10). Lead-in conductors (24,26,28) are formed integral with the heater resistors (22) by controlling the cross-sectional areas of these components, and openings (44,46) (passageways) are formed between ink reservoirs (40,42) and the orifice plate (18) to provide for ink flow under control of the heater resistors (22). The dummy substrate (10) is stripped away from the adjacent orifice plate (18), and the ink reservoir defining layer (38) may be secured to an ink supply tank (48) which supplies ink to the individual ink reservoirs (40,42). Thus, the orifice plate (18), heater resistors (22) and ink flow paths (44,46) of the printhead are self aligned, and the heater resistors (22) are removed or displaced from direct cavitational forces from ink ejected from the orifice plate (18).

EP0321075A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 20 October 2008, 17.9 years ago.

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

19 claims: 4 independent, 15 dependent

  1. 1
    A self-aligning process for manufacturing a thermal ink jet printhead including the steps of:a. providing a reusable substrate (10);b. forming an orifice plate (18) on said substrate;c. forming a first barrier (20) layer on said orifice plate;d. forming heater resistors (22) on said first barrier layer in a predefined configuration and spacing relative to openings (16) in said orifice plate;e. forming a second barrier layer (30) on said first barrier layer (20) and extending over said heater resistors (22) to protect said heater resistors from ink corrosion and cavitation wear;f. forming an ink reservoir-defining layer (38) on said second barrier layer (30) and having a plurality of ink reservoir openings (40,42) aligned with openings (16) in said orifice plate (18);g. providing passages (44,46) through said first and second barrier layers (20,30) and extending from said reservoirs (40,42) and to openings (16) in said orifice plate (18), whereby said ink reservoir layer (38) may be secured to an ink supply chamber (48) for supplying ink to said plurality of ink reservoirs;and h. removing said reusable substrate (10) from said orifice plate.
  2. 5
    A process for manufacturing an ink jet pen which includes:a. forming a thin film transducer structure on a reusable substrate (10) and including conductors (24,26,28) leading into heat generating transducers (22);b. forming ink-reservoir defining walls (38) adjacent to said transducers (22);c. removing said substrate (10);d. bonding said walls to an ink supply container (48);and e. electrically connecting said conductors to mating leads on said container for providing current to said transducers.
  3. 10
    An integrated thermal ink jet printhead comprising:a. an orifice plate (18) having plurality of openings (16) therein;b. a first barrier layer (20) disposed on said orifice plate;c. a plurality of heater resistors (22) arranged in a predefined configuration on said first barrier layer (20) and positioned adjacent said openings (16) in said orifice plate;d. a second barrier layer (30) disposed on said first barrier layer (20) and covering said heater resistors (22) and protecting same from ink corrosion and cavitation wear;e. an ink reservoir-defining layer (38) disposed on said second barrier (30) layer and having a plurality of ink reservoirs (40,42) therein aligned with said openings (16) in said orifice plate;and f. said first and second barrier layers (20,30) having a passageway (44,46) extending therethrough at each opening in said orifice plate for providing an ink flow path from said reservoirs (40,42) in said reservoir-defining layer and through openings (16) in said orifice plate, whereby said ink reservoir defining layer (38) may be secured to an ink supply chamber (48) or housing for supplying ink to said reservoirs (40,42) and through said openings (16) in said orifice plate (18) during an ink jet printing operation.
  4. 14
    An ink jet pen including in combination:a. a thin film transducer structure having conductors (24,26,28) thereon leading into heat generating transducers (22) and further having ink ejection orifices (16) associated with said transducers;b. annular walls (38) adjacent said transducers and defining ink reservoirs (40,42) therefor;c. an ink container (48) bonded to said annular walls (38);and d. means (50,52) on said container for providing an external electrical connection to said conductors on said thin film transducer structure.