Nova Patents
EP0331022A2

Radiation induced pattern deposition.

Abstract

A system and method for forming a pattern, such as a layer of metallization, on a surface (20). A layer (18) comprising patterning material is positioned next to a deposition surface 20) and a portion of the layer (18) is heated to deposit some of the patterning material on the surface (20) The invention provides a means for transferring a pattern under atmospheric temperature and pressure conditions.

EP0331022A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 23 February 2009, 17.6 years ago.

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

23 claims: 7 independent, 16 dependent

  1. 1
    A method for forming a pattern of material on a deposition surface comprising the steps of:placing a layer comprising patterning material next to the surface;and heating a portion of the layer to deposit a portion of the patterning material on the surface.
  2. 2
    The method of Claim 1 wherein the step of heating the layer is performed by transferring energy from a radiation source to the layer.
  3. 3
    The method of Claim 2 wherein the step of heating the layer is performed by directing an electron beam on a portion of the layer.
  4. 4
    The method of Claim 2 wherein the step of heating the layer is performed by directing focused coherent radiation on a portion of the layer.
  5. 5
    The method of Claim 2 wherein the layer comprising the patterning material is part of a multilayered structure, said multilayered structure including a second layer and wherein the step of depositing the patterning material is accomplished by:heating the second layer of the structure with radiation;and transferring heat from the second layer to a portion of the first layer to release patterning material from the structure.
  6. 6
    The method of Claim 5 wherein the patterning material is relatively transparent to the radiation and the second layer is relatively nontransparent to the radiation.
  7. 7
    The method of Claim 5 wherein the patterning material is released from the structure by a vaporization process.
  8. 8
    The method of Claim 5 wherein the patterning material has a relatively low vaporization temperature and the second layer has a relatively high vaporization temperature.
  9. 9
    The method of Claim 1 wherein the layer further comprises a second material having a boiling point higher than the boiling point of the patterning material and the step of heating the layer is performed by transferring energy from a radiation source to a surface of the layer and said second material mitigates transmission of direct radiation through the layer as patterning material is deposited.
  10. 10
    The method according to any of the preceding claims wherein deposition is accomplished by vaporizing patterning material and condensing vapor upon the deposition surface.
  11. 11
    The method of Claim 1 wherein the patterning material is conductive and the step of placing the layer next to the deposition surface results in physical contact between the layer and the deposition surface.
  12. 12
    The method according to any of the preceding claims further including the step of passing the radiation through the deposition surface.
  13. 13
    A method for patterning a line on a surface comprising the steps of:placing a layer comprising patterning material next to the surface;passing a radiation beam along the layer to vaporize the patterning material along a portion of the surface;and allowing the vaporized material to condense on the surface.
  14. 14
    The method according to Claim 13 wherein the surface comprises electronic devices and the vaporized material is condensed to form a line electrically connecting at least two devices.
  15. 15
    The method of Claim 13 wherein radiation heats portions of the patterning material after passing through the deposition surface.
  16. 16
    The method of Claim 15 wherein the patterning material is relatively transparent and the layer comprising the patterning material is part of a multilayered structure, said multilayered structure including a relatively nontransparent second layer and wherein the step of placing the layer of patterning material next to the deposition surface is accomplished by positioning the layer of patterning material between the deposition surface and the second layer.
  17. 17
    The method of Claim 16 wherein the step of depositing some of the patterning material on the deposition surface is accomplished by:heating the second layer of the structure with the radiation;and transferring heat from the second layer to a portion of the first layer to release patterning material from the structure.
  18. 18
    The method according to any of Claims 13, 14, 15, l6, or 17 wherein the surface includes a hole formed in a circuit structure and the patterning material is deposited along the surface defining the hole by vaporization and condensation.
  19. 19
    The method according to any of Claims 13, 14, 15, 16, 17 or 18 wherein the surface is nonplanar.
  20. 20
    The method of Claim 19 wherein the surface comprises granular silicon particles having diameters greater than .005 centimeters.
  21. 21
    A system for forming a pattern on a deposition surface under atmospheric conditions wherein patterning material is transferred from a solid layer to the deposition surface, said system comprising:a support for positioning the deposition surface to receive heated patterning material;a transport mechanism coupled to movably position the layer of solid material over the deposition surface;and apparatus for transferring patterning material onto the deposition surface by selectively heating a portion of the layer of solid material.
  22. 22
    The system of Claim 21 wherein the heating apparatus provides heat to the layer of solid material via a beam of radiation, said system further comprising a mechanism operatively coupled to develop displacements between the heating system and the solid layer.
  23. 23
    The system of Claim 21 wherein the transport mechanism comprises a supply reel and a take up reel for passing the layer of solid material over the deposition surface.