Monolithic capacitor and process for producing the capacitor

Electricity: electrical systems and devices – Electrostatic capacitors – Fixed capacitor

Reexamination Certificate

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Details

C361S312000, C361S321600, C361S320000, C361S321100, C361S321400, C570S136000, C570S137000, C570S138000

Reexamination Certificate

active

06396680

ABSTRACT:

BACKGROUND OF THE INVENTION
1. Field of the Invention
The present invention relates to a monolithic capacitor which is employed as a temperature-compensating capacitor, and to a process for producing the capacitor; and more particularly to a monolithic capacitor in which a base metal is employed as an internal electrode material, and to a process for producing the capacitor.
2. Background Art
Conventionally, a monolithic capacitor in which an Ni internal electrode is formed inside a sintered ceramic body predominantly comprising CaZrO
3
—CaTiO
3
is known as a temperature-compensating capacitor. In order to produce the monolithic capacitor, firstly, a ceramic slurry is prepared through the following processes:
(1) CaCO
3
, ZrO
2
and TiO
2
are calcined in advance and pulverized to thereby obtain calcined powder, a sintering aid is added to the resultant powder, and an organic binder is added to the resultant mixture and the mixture is kneaded, to thereby prepare a ceramic slurry; or
(2) pre-calcined CaZrO
3
powder and CaTiO
3
powder are mixed with a sintering aid, and an organic binder is further added to the resultant mixture and the mixture is kneaded, to thereby prepare a ceramic slurry.
The thus-prepared ceramic slurry is shaped into a ceramic green sheet. Subsequently, an internal electrode is printed on the ceramic green sheet and a plurality of the resultant ceramic green sheets are laminated with one another. Then, onto each of the outermost ceramic green sheets, a ceramic green sheet on which the internal electrode is not printed is laminated, thereby producing a laminate. Thereafter, the laminate is fired to thereby produce the aforementioned sintered ceramic body.
However, in the CaZrO
3
—CaTiO
3
monolithic capacitor produced through the above-described conventional process, the sintered ceramic body does not have a completely uniform structure i.e., a secondary phase may be generated in the ceramic body.
Particularly, when a ceramic slurry is prepared through the aforementioned process (2), a considerable amount of the secondary phase is generated in the resultant sintered ceramic body.
In the case in which the ceramic layer between the internal electrodes is thin, when the secondary phase is generated, a component contained in the phase tends to lower the reliability of the monolithic capacitor.
Therefore, maintaining the reliability of the CaZrO
3
—CaTiO
3
monolithic capacitor is difficult, particularly when the thickness of the sintered ceramic layer between the internal electrodes is as thin as 5 &mgr;m or less.
SUMMARY OF THE INVENTION
In view of the foregoing, an object of the present invention is to provide a monolithic capacitor comprising a sintered body formed from a TiO
2
-containing reduction-resistant dielectric ceramic material, and a process for producing the capacitor. The reliability of the monolithic capacitor can be maintained even when the sintered body of the capacitor has a non-uniform structure, i.e., when the secondary phase is generated in the sintered body in addition to the primary crystal phase, and when the sintered ceramic layer between internal electrodes is thin.
Accordingly, in a first aspect of the present invention, there is provided a monolithic capacitor comprising a sintered body formed from a TiO
2
-containing reduction-resistant dielectric ceramic material; a plurality of internal electrodes which are formed inside the sintered body, the electrodes being formed of a base metal; and first and second external electrodes which are formed on the sintered body, the internal electrodes being electrically connected to the external electrodes; wherein the amount of Ti contained in a secondary phase of the sintered body is about 2 wt. % or less as reduced to TiO
2
.
Preferably, the TiO
2
-containing reduction-resistant dielectric ceramic material predominantly comprises CaZrO
3
and CaTiO
3
.
In a second aspect of the present invention, there is provided a process for producing a monolithic capacitor comprising a sintered body formed from a TiO
2
-containing reduction-resistant dielectric ceramic material and a plurality of internal electrodes which are formed inside the sintered body, the electrodes being formed of a base metal, which process comprises providing a laminate predominantly formed from the TiO
2
-containing reduction-resistant dielectric ceramic material, the laminate comprising a plurality of the internal electrodes formed of a base metal; firing the laminate at a temperature-elevation rate of about 5° C./minute or more, to thereby obtain a sintered ceramic body in which the amount of Ti contained in a secondary phase of the sintered ceramic body is about 2 wt. % or less calculated as TiO
2
; and forming first and second external electrodes on the sintered ceramic body, the internal electrodes being electrically connected to the external electrodes.
Preferably, the TiO
2
-containing reduction-resistant dielectric ceramic material predominantly comprises CaZrO
3
and CaTiO
3
.


REFERENCES:
patent: 4988650 (1991-01-01), Takagi et al.
patent: 5036424 (1991-07-01), Yokotani et al.
patent: H987 (1991-11-01), Buchanan et al.
patent: 5111357 (1992-05-01), Chazono et al.
patent: 5155072 (1992-10-01), Bruno et al.
patent: 5659456 (1997-08-01), Sano et al.
patent: 5861350 (1999-01-01), Mori et al.
patent: 5877934 (1999-03-01), Sano et al.
patent: 6034015 (2000-03-01), Lin et al.
patent: 060206766 (1994-07-01), None
patent: 6-227861 (1994-08-01), None

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