IP Library Granted Patent US 7,891,777
Granted Patent B2
US 7,891,777 · App. 12/423,007 · Granted Feb 22, 2011

Inkjet printhead with heaters mounted proximate thin nozzle layer

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Quick Facts
Patent No.
US 7,891,777
App. No.
12/423,007
Granted
Feb 22, 2011
Kind
B2
Abstract

An inkjet printhead for ejecting drops of a printing fluid onto a media substrate. The inkjet printhead has an array of nozzle apertures defined in a nozzle layer less than 10 microns thick and a heater element adjacent each of the nozzles respectively for heating printing fluid to form a vapor bubble that ejects a drop of the printing fluid through the nozzle aperture corresponding to that heater element. The heater element is a layer of resistive material extending parallel to the nozzle layer and spaced less than 50 microns from the nozzle layer.

Claims (22)

1. An inkjet printhead for ejecting drops of a printing fluid onto a media substrate, the inkjet printhead comprising:

an array of nozzle apertures defined in a nozzle layer less than 10 microns thick;

a heater element adjacent each of the nozzles respectively for heating printing fluid to form a vapor bubble that ejects a drop of the printing fluid through the nozzle aperture corresponding to that heater element; wherein,

the heater element is a layer of resistive material extending parallel to the nozzle layer and spaced less than 50 microns from the nozzle layer.

2. An inkjet printhead according to claim 1 further comprising a chamber corresponding to each of the nozzle apertures respectively, wherein the chamber has a circular cross section and the heater element extends along a diameter of the chamber.

3. An inkjet printhead according to claim 2 wherein the heater element is suspended in the chamber for immersion in printing fluid and has an enclosed geometric shape formed between opposing ends of the suspended beam.

4. An inkjet printhead according to claim 3 wherein the enclosed geometric shape has a higher resistance than the remainder of the heater element.

5. An inkjet printhead according to claim 3 wherein the printing fluid is water soluble ink.

6. An inkjet printhead according to claim 1 wherein the array of nozzles extends the width of a page to form a pagewidth printhead.

7. An inkjet printhead according to claim 1 wherein the heater element is predominantly formed from a metal nitride.

8. An inkjet printhead according to claim 1 further comprising drive circuitry for sending the heater element a pulse of electrical energy to form the vapor bubble; wherein,

the pulse of electrical energy is less than 200 nanoJoules.

9. An inkjet printhead according to claim 8 wherein the printing fluid is supplied to the array of nozzles at an ambient temperature and the heater element is configured such that the pulse of electrical energy applied thereto is less than the energy required to heat a volume of the printing fluid equal to the volume of the drop ejected from the nozzle, from a temperature equal to the ambient temperature to the boiling point of the printing fluid.

10. An inkjet printhead according to claim 1 further comprising a substrate having a substrate surface, wherein the areal density of the nozzles relative to the substrate surface exceeds 10,000 nozzles per square cm of substrate surface.

11. An inkjet printhead according to claim 1 wherein the heater element has two opposite sides and is configured such that the vapor bubble formed by that heater element is formed at both sides.

12. An inkjet printhead according to claim 1 wherein the heater element is configured such that the point of collapse of the vapour bubble is spaced from that heater element.

13. An inkjet printhead according to claim 1 further comprising a structure that is formed by chemical vapor deposition (CVD), the nozzles being incorporated on the structure.

14. An inkjet printhead according to claim 1 further comprising a structure which is less than 10 microns thick, the nozzles being incorporated on the structure.

15. An inkjet printhead according to claim 1 further comprising a plurality of the heater elements disposed within each chamber, the heater elements within each chamber being formed on different respective layers to one another.

16. An inkjet printhead according to claim 1 wherein the heater element is formed of solid material more than 90% of which, by atomic proportion, is constituted by at least one periodic element having an atomic number below 50.

17. An inkjet printhead according to claim 1 wherein the heater element is less than 10 nanograms.

18. An inkjet printhead according to claim 1 wherein the heater element is substantially covered by a conformal protective coating, the coating of each heater element having been applied substantially to all sides of the heater element simultaneously such that the coating is seamless.

Assignments (2)
CHANGE OF NAME Recorded Jun 25, 2014
From: ZAMTEC LIMITED
To: MEMJET TECHNOLOGY LIMITED
Reel/Frame 033244/0276 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2012
From: SILVERBROOK RESEARCH PTY. LIMITED AND CLAMATE PTY LIMITED
To: ZAMTEC LIMITED
Reel/Frame 028520/0545 →