Nova Patents
EP0705694A2

Printing system

Abstract

An inkjet printhead (14) includes a barrier layer (134) containing ink channels (132) and firing chambers (130) and located between a rectangular substrate (28) and a nozzle member (16) containing an array of orifices (17). The substrate contains two spaced linear arrays of ink ejection elements (70). The ink channels have ink entrances running along two opposite edges (86) of the substrate so that ink (88) flowing around the edges of the substrate gains access to the ink channels and to the firing chambers. High speed printing capability with a firing frequency up to 12 kHz is accomplished by offsetting neighbouring ink ejection elements from each other in each primitive (P1-P14) grouping in the linear array, combining short shelf length with damped ink inlet channels (132), and then firing only one ink ejection element at a time in each primitive grouping thereby minimizing undesirable interference such as fluidic crosstalk between closely adjacent ink firing chambers. High resolution printing capability is accomplished by densely positioning the ink ejection elements in each linear array.

EP0705694A2, drawing sheet 1
Sheet 1 of 41

Term

Term ended

Projected expiry passed 12 September 2015, 11 years ago.

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

10 claims: 3 independent, 7 dependent

  1. 1
    A printing system for an inkjet printer comprising an ink reservoir (12);a printhead substrate (28) including a top surface and an opposing bottom surface, a first outer edge (86) extending along a periphery of said substrate;a print head nozzle member (16) including a plurality of ink orifices (17) formed therein, and positioned to overlie said top surface of said substrate;a plurality of ink ejection elements (70) formed on said top surface of said substrate, each ink ejection element being located proximate an associated orifice for causing a portion of ink to be expelled from the orifice;and a fluid channel (52, 132, 130), communicating with said ink reservoir, leading to each orifice and ink ejection element, and being operative to allow ink to flow from said ink reservoir, around said first outer edge of said substrate, and to said top surface of said substrate so as to be proximate said orifices and said ink ejection elements.
  2. 5
    A method of printing comprising the steps of providing a substrate (28) with ink ejection chambers (130) grouped to form a plurality of primitives (P1-P14);supplying ink (88) from an ink reservoir (12) around one or more edges (86) of a periphery of a substrate and to a top surface of said substrate to allow the ink to enter said ink ejection chambers, each ink ejection chamber substantially surrounding an ink ejection element (70) formed on said top surface of said substrate;and energizing one or more of said ink ejection elements to cause a portion of the ink in associated ones of said ink ejection chambers to be expelled from an associated orifice (17), wherein said energizing step comprises energizing only one ink ejection element (70) at a time in each of said primitives (P1-P14).
  3. 9
    An inkjet printing system comprising an ink reservoir (12);a print head (14) including a plurality of ink firing chambers (130) with ink ejection elements (70) located therein, said ink ejection elements being spaced from each other by a predetermined distance to provide a printing resolution of 300 dots per inch or greater;said print head including a substrate (28) comprising fluid channels (52, 132) connected between said reservoir and said ink firing chambers in order to transport ink around one or more edges (86) of said substrate, said substrate including a group of said ink ejection elements (70) forming a primitive (P1-P14);and demultiplexing circuitry (78) on said substrate connected to said ink ejection elements for selectively firing said ink ejection elements, said demultiplexing circuitry being operative to fire selectively the ink ejection elements in a primitive one at a time.