EP1570941A2

Laser based splitting method of a silicon substrate and semiconductor chip made by the method

Abstract

A laser splitting method for splitting off a segment from an object to be split using a laser beam, includes a surface processing step of processing the object by forming a linear recessed portion in a surface of the object, the linear recessed portion being effective to cause a stress concentration at the surface of the object; an internal processed-region forming step of forming an internal processed-regions at a depth of the object in a line along which a laser beam scans the surface of the object by a relative motion therebetween, the laser beam being converged adjacent the depth, wherein the thus formed internal processed-regions extend in a direction substantially perpendicular to the surface of the object; and an external force applying step of applying an external force to the object to form cracks between the recessed portion and the internal processed-regions.

EP1570941A2, drawing sheet 1
Sheet 1 of 33

Term

Term ended

Projected expiry passed 11 February 2025, 1.6 years ago.

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16 claims: 4 independent, 12 dependent

  1. 1
    A laser splitting method for splitting off a segment from an object to be split using a laser beam, said method comprising:a surface processing step of processing the object by forming a linear recessed portion in a surface of the object, the linear recessed portion being effective to cause a stress concentration at the surface of the object;an internal processed-region forming step of forming an internal processed-regions at a depth of the object in a line along which a laser beam scans the surface of the object by a relative motion therebetween, the laser beam being converged adjacent the depth, wherein the thus formed internal processed-regions extend in a direction substantially perpendicular to the surface of the object;and an external force applying step of applying an external force to the object to form cracks between the recessed portion and the internal processed-regions.
  2. 2
    A method according to Claim 1, wherein the laser beam-is not converged for such a part of the object as has a beveling.
  3. 3
    A method according to Claim 1, wherein the cracks connecting the recessed portion and the internal processed-regions provide a side surface of the segment split off.
  4. 4
    A method according to Claim 1, wherein in said external force applying step, the cracks expands from the recessed portion toward the internal processed-regions.
  5. 5
    A method according to Claim 1, wherein said internal processed-region forming step is carried out before said surface processing step.
  6. 6
    A method according to Claim 1, wherein said internal processed-region forming step is carried out after said surface processing step.
  7. 7
    A method according to Claim 1, wherein the object has a crystalline structure, wherein in said inside process region forming step after the laser beam is converged at the depth, the laser beam is converged at another depth, thus forming internal processed-regions at a different depth, and wherein in said external force applying step, the crack extends not along a cleavage plane of the crystalline structure to connect the internal processed-regions with each other.
  8. 8
    An object to be split on which a plurality of circuits each including a semiconductor element are formed, said object comprising:a recess formed in a surface of said object;internal processed-regions formed inside said object by application of a laser beam which converges at a depth of said object,    wherein the object is split by connecting said recess and said internal processed-regions into a plurality of element chips each having the semiconductor element.
  9. 9
    An apparatus according to Claim 8, wherein a distance l between said recess and said internal processed-regions and a length c of the internal processed-regions measured in a direction of the depth satisfy l > (c/2).
  10. 10
    An apparatus according to Claim 8, wherein chipping of the split element chip at the surface thereof is smaller than a width of said recess.
  11. 11
    A semiconductor element chip provided by fracturing and splitting off from an object to be split which has a plurality of semiconductor element circuits on a surface thereof, a recess formed on the surface and internal processed-regions formed by converging a laser beam, said semiconductor element chip comprising:a side surface provided by the splitting,    wherein said side surface has a portion having constituted at least a part of the recess, a portion having constituted a part of said internal processed-regions, and a portion having constituted a part of cracks between said recess and said internal processed-regions.
  12. 12
    A semiconductor element chip according to Claim 11, wherein a distance 1 between said recess and said internal processed-regions and a length c of the internal processed-region measured in a direction of the depth satisfy l > (c/2).
  13. 13
    A semiconductor element chip provided by fracturing and splitting off from an object to be split which has a plurality of semiconductor element circuits on a surface thereof, a recess formed on the surface and internal processed-regions formed by converging a laser beam, wherein said object has a crystalline structure, said semiconductor element chip comprising:a side surface provided by the splitting;and a portion having constituted at least a part of the recess;a molten and solidified portion having constituted a part of said internal processed-regions;and a cleavage surface having constituted a crack between said recess and said internal processed-regions.
  14. 14
    A semiconductor element chip according to Claim 13, wherein said side having constituted at least the part of said recess has pits and projections which are finer than those of the cleavage surface.
  15. 15
    A semiconductor element chip according to Claim 13, wherein said side having constituted at least the part of said recess includes the molten and solidified portion.
  16. 16
    A semiconductor element chip according to Claim 13, wherein a distance 1 between said recess and said internal processed-regions and a length c of the internal processed-region measured in a direction of the depth satisfy 1 > (c/2).