EP0930641A2

Pattern formation method and substrate manufacturing apparatus

Abstract

Provided is a substrate manufacturing technique for forming patterns on substrates with the aid of an ink-jet systems. Relates to a substrate manufacturing apparatus for forming arbitrary patterns on a substrate 1 from a fluid 11. This apparatus comprises an ink-jet print head 2 configured to allow the fluid 11 to be ejected onto the substrate 1; treatment means 3 for performing a specific treatment on the substrate 1; drive means 4 configured to allow the relative positions of the ink-jet print head 2, the treatment means 3, and the substrate 1 to be varied; and control means 5 for controlling the ejection of the fluid 11 from the ink-jet print head 2, the treatment performed by the treatment means 3, and the drive effected by the drive means 4. The control means 5 is configured to allow the treatment by the treatment means to be performed prior to the ejection of fluid from the ink-jet print head 2.

EP0930641A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 19 January 2019, 7.7 years ago.

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38 claims: 13 independent, 25 dependent

  1. 1
    A pattern formation method for discharging a prescribed fluid onto a substrate from an ink-jet print head and forming an arbitrary pattern, wherein said pattern formation method is comprising the steps of:subjecting said substrate to a specific treatment in advance before said fluid is ejected;and discharging said fluid onto said treated substrate from said ink-jet print head.
  2. 2
    A pattern formation method for discharging a prescribed fluid onto a substrate from an ink-jet print head and forming an arbitrary pattern, wherein said pattern formation method is comprising the steps of:discharging the prescribed fluid onto the substrate from said ink-jet print head;and performing a specific treatment on the substrate onto which said fluid has been ejected.
  3. 3
    A pattern formation method for discharging a prescribed fluid onto a substrate from an ink-jet print head and forming an arbitrary pattern, wherein said pattern formation method is comprising the steps of:discharging the prescribed fluid from said ink-jet print head;and performing a specific treatment on the droplets of the fluid thus ejected, before the fluid ejected from said ink-jet print head reaches said substrate.
  4. 4
    The pattern formation method according to any of Claims 1 through 3, wherein said treatment is one that exerts chemical action on said fluid.
  5. 5
    The pattern formation method according to Claim 1 or 2, wherein said treatment is one in which the solubility of a prescribed substance contained in said fluid is lowered, and said substance is caused to precipitate.
  6. 6
    The pattern formation method according to Claim 1 or 2, wherein said treatment is one in which a substance that induces chemical reactions in said fluid is ejected onto said substrate.
  7. 7
    The pattern formation method according to any of Claims I through 3, wherein said treatment is one that exerts physical action on said fluid.
  8. 8
    The pattern formation method according to Claim 2, wherein said treatment is one that is designed to align the borders of said ejected fluid with the borders of said pattern-forming region.
  9. 9
    The pattern formation method according to Claim 2, wherein said treatment is one in which excess fluid is absorbed by an absorbent as a result of the movement of said absorbent along said pattern-forming region.
  10. 10
    The pattern formation method according to any of Claims 1 through 3, wherein said treatment is one that exerts physical-chemical action on said fluid.
  11. 11
    The pattern formation method according to Claim 1, wherein said treatment is one in which the area of said substrate around said pattern-forming region is surface-modified to eliminate any affinity for said fluid.
  12. 12
    The pattern formation method according to Claim 1, wherein said treatment is one in which said pattern-forming region on said substrate is surface-modified to achieve affinity for said fluid.
  13. 13
    The pattern formation method according to Claim 1, wherein said treatment is one in which said pattern-forming region on said substrate is surface-modified into an absorption layer for absorbing said fluid.
  14. 14
    The pattern formation method according to Claim 2, wherein said treatment is one in which banks for preventing said fluid from flowing out are formed around said pattern-forming region, and further comprises a step for removing said banks following the formation of said pattern.
  15. 15
    The pattern formation method according to Claim 2, wherein said treatment is one in which the same fluid is further ejected along the pattern region within which said fluid has already been ejected.
  16. 16
    The pattern formation method according to Claim 3, wherein said treatment is one in which energy is supplied to said droplets, and the concentration of said fluid is raised.
  17. 17
    The pattern formation method according to Claim 3, wherein said treatment is one in which energy is supplied to said droplets, and the trajectory of said droplets is curved.
  18. 18
    The pattern formation method according to Claim 3, wherein said treatment is one in which a substance that induces chemical reactions in said fluid is made to act on said droplets.
  19. 19
    The pattern formation method according to Claim 3, wherein said treatment is one in which the attributes of said droplets are detected, and further comprises a step for controlling the ejection of said droplets from said ink-jet print head on the basis of the droplet attributes thus detected.
  20. 20
    A substrate manufacturing apparatus for forming an arbitrary pattern on a substrate from a prescribed fluid, wherein said substrate manufacturing apparatus comprises:an ink-jet print head configured to allow said fluid to be ejected onto said substrate;treatment means for performing a specific treatment on said substrate;drive means configured to allow the relative positions of said ink-jet print head, said treatment means, and said substrate to be varied;and control means for controlling the ejection of said fluid from said ink-jet print head, the treatment performed by said treatment means, and the drive effected by said drive means;said control means being configured to allow the treatment by said treatment means to be performed prior to the ejection of fluid from said ink-jet print head.
  21. 21
    A substrate manufacturing apparatus for forming an arbitrary pattern on a substrate from a prescribed fluid, wherein said substrate manufacturing apparatus comprises:an ink-jet print head configured to allow said fluid to be ejected onto said substrate;treatment means for performing a specific treatment on said substrate;drive means configured to allow the relative positions of said ink-jet print head, said treatment means, and said substrate to be varied;and control means for controlling the ejection of said fluid from said ink-jet print head, the treatment performed by said treatment means, and the drive effected by said drive means;said control means being configured to allow the ejection of fluid from said ink-jet print head to be performed prior to the treatment carried out by the treatment means.
  22. 22
    A substrate manufacturing apparatus for forming an arbitrary pattern on a substrate from a prescribed fluid, wherein said substrate manufacturing apparatus comprising:an ink-jet print head configured to allow said fluid to be ejected onto said substrate;treatment means for performing a specific treatment on the droplets of the fluid ejected from said ink-jet print head before said droplets reach the substrate;drive means configured to allow the relative positions of said ink-jet print head, said treatment means, and said substrate to be varied;and control means for controlling the ejection of said fluid from said ink-jet print head, the treatment performed by said treatment means, and the drive effected by said drive means.
  23. 23
    The substrate manufacturing apparatus according to any of Claims 20 through 22, wherein said treatment means is configured to allow chemical action to be exerted on said fluid.
  24. 24
    The substrate manufacturing apparatus according to Claim 20 or 21, wherein said treatment means is configured to allow the solubility of a prescribed substance contained in said fluid to be lowered, and said substance to be precipitated.
  25. 25
    The substrate manufacturing apparatus according to Claim 20 or 21, wherein said treatment means is configured to allow a substance that induces chemical reactions in said fluid to be ejected onto said substrate.
  26. 26
    The substrate manufacturing apparatus according to any of Claims 20 through 22, wherein said treatment means is configured to allow physical action to be exerted on said fluid.
  27. 27
    The substrate manufacturing apparatus according to Claim 21, wherein said treatment means is configured to allow the borders of said ejected fluid to be aligned with the borders of said pattern-forming region.
  28. 28
    The substrate manufacturing apparatus according to Claim 21, wherein said treatment means comprises an absorbent, and said control means allows excess fluid to be absorbed by said absorbent as a result of the relative movement of said absorbent along said pattern-forming region.
  29. 29
    The substrate manufacturing apparatus according to any of Claims 20 through 22, wherein said treatment means is configured to allow physical-chemical action to be exerted on said fluid.
  30. 30
    The substrate manufacturing apparatus according to Claim 20, wherein said treatment means is configured to allow the area of said substrate around said pattern-forming region to be surface-modified to eliminate any affinity for said fluid.
  31. 31
    The substrate manufacturing apparatus according to Claim 20, wherein said treatment means is configured to allow the pattern-forming region on said substrate to be surface-modified to achieve affinity for said fluid.
  32. 32
    The pattern manufacturing apparatus according to Claim 20, wherein said treatment means is configured to allow the pattern-forming region on said substrate to be surface-modified into an absorption layer for absorbing said fluid.
  33. 33
    The substrate manufacturing apparatus according to Claim 22, wherein said treatment means is configured to allow banks for preventing said fluid from flowing out to be formed around said pattern-forming region;and    said manufacturing apparatus further comprises means for removing said banks following the formation of said pattern.
  34. 34
    A substrate manufacturing apparatus for forming an arbitrary pattern on a substrate from a prescribed fluid, wherein said substrate manufacturing apparatus comprises:an ink-jet print head configured to allow said fluid to be ejected onto said substrate;drive means configured to allow the relative positions of said substrate and said ink-jet print head to be varied;and control means for controlling the ejection of said fluid from said ink-jet print head and the drive effected by said drive means, said control means further discharging the same fluid from said ink-jet print head along the pattern region within which said fluid has already been ejected.
  35. 35
    The substrate manufacturing apparatus according to Claim 22, wherein said treatment means is configured to allow energy to be supplied to said droplets, and the concentration of said fluid to be raised.
  36. 36
    The substrate manufacturing apparatus according to Claim 22, wherein said treatment means is configured to allow energy to be supplied to said droplets, and the trajectory of said droplets to be curved.
  37. 37
    The substrate manufacturing apparatus according to Claim 22, wherein said treatment means is configured to allow a substance that induces chemical reactions in said fluid to be fed to said droplets.
  38. 38
    The substrate manufacturing apparatus according to Claim 22, wherein said treatment means is configured to allow the attributes of said droplets to be detected;and    the control means controls the ejection of said droplets from said ink-jet print head and the drive performed by said drive mean on the basis of the droplet attributes detected by said treatment means.
Independent claims38