Claims
- 1. A ceramic slurry composition comprising:
a powdered ceramic; a dispersing agent; a binder; and a solvent; wherein the dispersing agent is an anionic dispersing agent, and the content of the anionic dispersing agent is such that the total acid amount thereof corresponds to about 10 to 150% of the total base amount of the powdered ceramic.
- 2. A ceramic slurry composition according to claim 1, wherein the average particle diameter of the powdered ceramic is about 0.01 to 1 μm.
- 3. A ceramic slurry composition according to claim 2, wherein the anionic dispersing agent has at least one intermolecular carboxyl groups, maleate groups, sulfonic groups, phosphate groups.
- 4. A ceramic slurry composition according to claim 3, wherein the anionic dispersing agent is a polycarboxylic compound or polymaleate compound containing no metal ions.
- 5. A ceramic slurry composition according to claim 1, wherein the anionic dispersing agent has at least one intermolecular carboxyl groups, maleate groups, sulfonic groups, phosphate groups.
- 6. A ceramic slurry composition according to claim 5, wherein the anionic dispersing agent is a polycarboxylic compound or polymaleate compound containing no metal ions.
- 7. A ceramic slurry composition according to claim 1, wherein the anionic dispersing agent is a polycarboxylic compound or polymaleate compound containing no metal ions.
- 8. A method for producing a ceramic green sheet comprising molding the ceramic slurry composition according to claim 7 into a sheet on a substrate so as to form the ceramic green sheet.
- 9. A method for producing a ceramic green sheet according to claim 8, wherein the ceramic green sheet is molded to a thickness of about 0.1 to 10 μm.
- 10. A method for producing a ceramic green sheet comprising molding the ceramic slurry composition according to claim 2 into a sheet on a substrate so as to form the ceramic green sheet.
- 11. A method for producing a ceramic green sheet according to claim 10, wherein the ceramic green sheet is molded to a thickness about 0.1 to 10 μm.
- 12. A method for producing a ceramic green sheet comprising molding the ceramic slurry composition according to claim 1 into a sheet on a substrate so as to form the ceramic green sheet.
- 13. A method for producing a ceramic green sheet according to claim 12, wherein the ceramic green sheet is molded to a thickness about 0.1 to 10 μm.
- 14. A method for producing a multilayer ceramic electronic device, comprising:
laminating the ceramic green sheets produced by the method for producing a ceramic green sheet according to claim 1 together with an internal electrode comprising a base metal; cutting the laminated ceramic green sheets; baking the laminated ceramic green sheets; and forming an external electrode on the baked laminate.
- 15. A method for producing a multilayer ceramic electronic device, comprising:
laminating the ceramic green sheets produced by the method for producing a ceramic green sheet according to claim 2 together with an internal electrode comprising a base metal; cutting the laminated ceramic green sheets; baking the laminated ceramic green sheets; and forming an external electrode on the baked laminate.
- 16. A method for producing a multilayer ceramic electronic device, comprising:
laminating the ceramic green sheets produced by the method for producing a ceramic green sheet according to claim 3 together with an internal electrode comprising a base metal; cutting the laminated ceramic green sheets; baking the laminated ceramic green sheets; and forming an external electrode on the baked laminate.
- 17. A method for producing a multilayer ceramic electronic device, comprising:
laminating the ceramic green sheets produced by the method for producing a ceramic green sheet according to claim 6 together with an internal electrode comprising a base metal; cutting the laminated ceramic green sheets; baking the laminated ceramic green sheets; and forming an external electrode on the baked laminate.
- 18. A method for producing a multilayer ceramic electronic device, comprising:
laminating the ceramic green sheets produced by the method for producing a ceramic green sheet according to claim 7 together with an internal electrode comprising a base metal; cutting the laminated ceramic green sheets; baking the laminated ceramic green sheets; and forming an external electrode on the baked laminate.
- 19. A method for producing a multilayer ceramic electronic device, comprising:
laminating the ceramic green sheets produced by the method for producing a ceramic green sheet according to claim 10 together with an internal electrode comprising a base metal; cutting the laminated ceramic green sheets; baking the laminated ceramic green sheets; and forming an external electrode on the baked laminate.
- 20. A method for producing a multilayer ceramic electronic device, comprising:
laminating the ceramic green sheets produced by the method for producing a ceramic green sheet according to claim 12 together with an internal electrode comprising a base metal; cutting the laminated ceramic green sheets; baking the laminated ceramic green sheets; and forming an external electrode on the baked laminate.
Priority Claims (1)
Number |
Date |
Country |
Kind |
11-297596 |
Oct 1999 |
JP |
|
Parent Case Info
[0001] This is a divisional of U.S. patent application Ser. No. 09/685,908, filed Oct. 10, 2000.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09685908 |
Oct 2000 |
US |
Child |
10408093 |
Apr 2003 |
US |