Claims
- 1. A resistor paste used for preparing a ceramic circuit substrate having a glass overcoat and a resistor co-fired thereon, said resistor paste forming said resistor and consisting essentially of RuO.sub.2 powder, glass powder and a vehicle comprising an organic polymer and a solvent, the RuO.sub.2 powder and the glass powder having specific surface areas of 10 to 20 m.sup.2 /g and 4 to 14 m.sup.2 /g, respectively.
- 2. A glass overcoat paste used for preparing a ceramic circuit substrate having a glass overcoat and a resistor co-fired thereon, said glass overcoat paste forming said overcoat and consisting essentially of a glass composition and a vehicle comprising an organic polymer and a solvent, the glass composition having a specific surface area of 2 to 6 m.sup.2 /g.
- 3. A resistor paste according to claim 1, wherein said glass powder of the resistor paste is a CaO--Al.sub.2 O.sub.3 --SiO.sub.2 --B.sub.2 O.sub.3 system glass and the weight ratio of the glass to the RuO.sub.2 powder is 55:45 to 85:15.
- 4. A glass overcoat paste according to claim 2, wherein said glass composition of the glass overcoat paste consists essentially of 60 to 90% by weight of a CaO--Al.sub.2 O.sub.3 --SiO.sub.2 --B.sub.2 O.sub.3 system glass powder and 10 to 40% by weight of alumina powder.
- 5. A ceramic circuit element comprising a ceramic substrate having a glass overcoat and a resistor co-fired thereon, said class overcoat being provided over said resistor and said resistor being formed from a resistor paste consisting essentially of RuO.sub.2 powder, glass powder and a vehicle comprising an organic polymer and a solvent, the RuO.sub.2 powder and the glass powder having specific surface areas of 10 to 20 m.sup.2 /g and 4 to 14 m.sup.2 /g, respectively, said glass overcoat being formed from a glass overcoat paste consisting essentially of a glass composition and a vehicle comprising an organic polymer and a solvent, the glass composition having a specific surface area of 2 to 6 m.sup.2 /g and said ceramic circuit substrate comprising a CaO--Al.sub.2 O.sub.3 --SiO.sub.2 --B.sub.2 O.sub.3 system or MgO--Al.sub.2 O.sub.3 --SiO.sub.2 --B.sub.2 O.sub.3 system glass, and alumina.
- 6. A ceramic circuit element according to claim 5, wherein said glass powder of the resistor paste is a CaO--Al.sub.2 O.sub.3 --SiO.sub.2 --B.sub.2 O.sub.3 system glass and the weight ratio of the glass to the RuO.sub.2 powder is 55:45 to 85:15.
- 7. A ceramic circuit element according to claim 5, wherein said glass composition of the glass overcoat paste consists essentially of 60 to 90% by weight of a CaO--Al.sub.2 O.sub.3 --SiO.sub.2 --B.sub.2 O.sub.3 system glass powder and 10 to 40% by weight of alumina powder.
- 8. A resistor paste according to claim 1, wherein the glass powder has a particle size of less than 2 microns.
- 9. A ceramic circuit element according to claim 5, wherein the glass powder of the resistor has an average particle size of less than 2 microns.
Parent Case Info
This is a continuation in part of U.S. application 08/604,600 filed Feb. 21, 1996, which has been abandoned.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
5004640 |
Nakatani et al. |
Apr 1991 |
|
5264272 |
Tanabe et al. |
Nov 1993 |
|
5514451 |
Kumar et al. |
May 1996 |
|
5562973 |
Nagasaka et al. |
Oct 1996 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
604600 |
Feb 1996 |
|