EP0401147A2

A method of chemical-mechanical polishing an electronic component substrate and polishing slurry therefor.

Abstract

Disclosed is a method of chem-mech polishing an electronic component substrate. The method includes the following steps; obtaining a substrate having at least two features thereon or therein which have a different etch rate with respect to a particular etchant; and contacting the substrate with a polishing pad while contacting the substrate with a slurry containing the etchant wherein the slurry includes abrasive particles, a transition metal chelated salt and a solvent for the salt. The chem-mech polishing causes the at least two features to be substantially coplanar. Also disclosed is the chem-­mech polishing slurry.

EP0401147A2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 7 March 2010, 16.6 years ago.

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

17 claims: 10 independent, 7 dependent

  1. 1
    A chem-mech polishing slurry comprising:abrasive particles;a transition metal chelated salt;and a solvent for said salt.
  2. 3
    A method of chem-mech polishing an electronic compo­nent substrate, the method comprising the following steps:obtaining a substrate having at least two fea­tures thereon or therein which have a different etch rate with respect to a particular etchant;and contacting said substrate with a polishing pad while contacting said substrate with a slurry con­taining said etchant wherein said slurry comprises abrasive particles, a transition metal chelated salt and a solvent for said salt;said chem-mech polishing causing said at least two features to be substantially coplanar.
  3. 9
    Polishing slurry or method according to anyone of the preceeding claims wherein said transition metal chelated salt is present in the range of about 0,1 to 10 weight percent and said abrasive particles are present in the range of about 1 to 30 weight percent.
  4. 10
    Polishing slurry or method according to anyone of the preceeding claims wherein said transition metal in said transition metal chelated salt is selected from the group consisting of iron, cobalt and nickel.
  5. 12
    Polishing slurry or method according to anyone of the preceeding claims wherein said abrasive particles are selected from the group consisting of silica, ceria, alumina, silicon carbide, silicon nitride and iron oxide.
  6. 13
    A method of chem-mech polishing an electronic compo­nent substrate, the method comprising the following steps:obtaining a substrate having at least two fea­tures thereon or therein which have a different etch rate with respect to a particular etchant;and contacting said substrate with a polishing pad while contacting said substrate with a slurry con­taining said etchant and abrasive particles;chem-mech polishing said at least two features;gradually decreasing the flow of said chem-mech slurry while beginning and then increasing the flow of a mechanical slurry comprising abrasive particles but no etchant;wherein the combination of said chem-mech pol­ishing and mechanical polishing causing said at least two features to be substantially coplanar.
  7. 14
    A method of chem-mech polishing an electronic compo­nent substrate, the method comprising the following steps:obtaining a substrate having at least two fea­tures thereon or therein which have a different etch rate with respect to a particular etchant;and contacting said substrate with a polishing pad while contacting said substrate with a slurry con­taining said etchant and abrasive particles;chem-mech polishing said at least two features;then mechanically polishing said at least two fea­tures with a slurry comprising abrasive particles but no etchant;wherein the combination of said chem-mech pol­ishing and mechanical polishing causing said at least two features to be substantially coplanar.
  8. 15
    Polishing slurry or method according to anyone of the preceding Claims wherein said abrasive particles do not include alumina and said slurry further comprises a small but effective amount of alumina.
  9. 16
    Polishing slurry or method according to anyone of the preceding Claims wherein said alumina is present in the range of 0,001 to 1 weight percent.
  10. 17
    Polishing slurry or method according to anyone of the preceding Claims wherein said range is 0,003 to 0,25 weight percent.