EP0446918B1

Thermal ink-jet printhead having improved heater arrangement.

Abstract

This record has no abstract on file.

EP0446918B1, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Expired 14 March 2011, 15.5 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

5 claims: 3 independent, 2 dependent

  1. 1
    A heater arrangement for use in a thermal ink-jet type printhead, comprising:a substrate (52);a thin metallic layer (54) formed on said substrate, said thin metallic layer being configured so as to define a narrow portion (56) which is located between broad portions (58a, 58b), the narrow portion defining a heating element which is integral with the broad portions which act as electrodes via which currents are supplied to the narrow heater portion.
  2. 3
    A thermal ink-jet type print head having    an orifice plate (70) in which at least one orifice (68) is formed;a substrate (52) which is disposed adjacent the orifice plate in a manner to define a space in which ink can be supplied;and    a metallic layer (54) formed on the surface of said substrate so as to be exposed to said space, said metallic layer defining integral heater element and electrodes, said heater element being configured such that the width of said heater element is narrower than the width of each of the electrodes.
  3. 5
    A method of operating a thermal ink-jet type print head which includes a substrate (52), a strip-like thin metallic layer (54) formed on said substrate, said strip-like thin metallic layer being configured so as to define a narrow portion (56) which is located between broad portions (58a, 58b), the narrow portion defining a heating element which is integral with the broad portions which act as electrodes via which currents are supplied to the narrow heater portion, the method comprising the steps of:applying a current to the heating element in a manner to heat the same in a range from 10⁶ to 10⁹ °C/sec so as to transfer heat energy from the heating element to an ink at a rate of 10⁷ to 10⁸ MW/m² over a time period less than 10 µs and to achieve homogeneous nucleation via which a bubble of gas is produced and induces a droplet of ink to be ejected from a nozzle located adjacent the heating element.