Claims
- 1. A method for producing a monolithic ceramic capacitor comprising:preparing dielectric ceramic green sheets which comprise strontium titanate as the main component and bismuth oxide or an oxide of a bismuth compound as a minor component and contain a reduction inhibitor as an additive, laminating an electrode material on said green sheets; forming a laminate of the ceramic green sheets with the electrode material of two adjacent sheets not touching one another, heating the resulting laminate at a temperature increase rate of from about 10 to 17° C./min, firing said laminate; and, cooling the fired laminate at a rate of about 10° C./min or higher, wherein the reduction inhibitor is represented by a general formula: aMO+bMnO2cB2O2+(100−a−b−c)SiO2 in which M is a at least one Mg, Sr, Ca and Ba; and a, b and c each are 10≦a≦60, 5≦b≦20 and 20≦c≦35 in % by mol.
- 2. The method for producing a monolithic ceramic capacitor according to claim 1, wherein the electrode material comprises a base metal material comprising nickel or a nickel alloy.
- 3. The method for producing a monolithic ceramic capacitor according to claim 2, in which the reduction inhibitor is in an amount of from about 4 to 25% by weight relative to the ceramic material and wherein 35≦a≦55, 10≦b≦15 and 25≦c≦30 in % by mol.
- 4. The method of producing a monolithic ceramic capacitor according to claim 3, in which the reduction inhibitor is in an amount of from about 8 to 20% by weight relative to the ceramic material.
- 5. The method of producing a monolithic ceramic capacitor according to claim 1, wherein said heating and firing steps are carried out under a partial oxygen pressure of from 10−6 to 10−10 MPa.
- 6. The method of producing a monolithic ceramic capacitor according to claim 5, wherein the oxygen is present in a mixture of gases comprising N2, H2 and H2O.
- 7. The method of producing a monolithic ceramic capacitor according to claim 6, wherein the maximum temperature in said firing step range from about 850 to 1050° C.
- 8. The method of producing a monolithic ceramic capacitor according to claim 7, wherein said firing step is carried out for about 2 hours.
- 9. The method of producing a monolithic ceramic capacitor according to claim 1, wherein the maximum temperature in said firing step ranges from about 850 to 1050° C.
- 10. The method of producing a monolithic ceramic capacitor according to claim 1, wherein said firing step is carried out for about 2 hours.
Priority Claims (1)
Number |
Date |
Country |
Kind |
7-139555 |
Jun 1995 |
JP |
|
Parent Case Info
This is a division of application Ser. No. 08/657,997, filed Jun. 4, 1996 now 5,879,812.
US Referenced Citations (10)
Foreign Referenced Citations (3)
Number |
Date |
Country |
2548622 |
May 1977 |
DE |
0186114 |
Dec 1985 |
EP |
0275052 |
Jan 1988 |
EP |