Claims
- 1. A solid electrolytic capacitor comprising:
- a sintered body made of a valve metal and having a terminal wire;
- a dielectric film formed on a periphery of the sintered body;
- a metallic oxide layer provided on the dielectric film; and
- a conductive polymer layer provided on the metallic oxide layer,
- wherein said conductive polymer layer covers an entire periphery of the sintered body to a unction with the terminal wire.
- 2. A solid electrolytic capacitor according to claim 1, wherein said conductive polymer layer is a polypyrrole layer.
- 3. A solid electrolytic capacitor according to claim 1, wherein said metallic oxide layer is a manganese dioxide layer.
- 4. A solid electrolytic capacitor comprising:
- a sintered body member including a tantalum sintered body, a terminal wire attached to the sintered body, a dielectric film formed on a periphery of the sintered body, and a first manganese dioxide layer formed on the dielectric film;
- a second manganese dioxide layer provided on the sintered body member;
- a conductive polymer layer provided on the second manganese dioxide layer, wherein said conductive polymer layer covers an entire periphery of the sintered body to a junction with the terminal wire;
- a graphite layer provided on the conductive polymer layer; and
- a metallic layer provided on the graphite layer.
- 5. A method of manufacturing a solid electrolytic capacitor provided with a conductive polymer layer, which method comprises:
- providing a sintered body member in which a dielectric film is formed on a periphery of a sintered body made of a valve metal and equipped with a terminal wire, and a metallic oxide layer is formed on the dielectric film; and
- forming a conductive polymer layer on a periphery of the sintered body member by electrolytic oxidative polymerization of monomers of a compound capable of forming a conductive polymer, wherein the wire is used as an anode terminal, and a conductive paste is applied between the terminal wire and the metallic oxide layer over a part of the insulating dielectric film in order for electrolytic polymerization to proceed.
- 6. A method of manufacturing a solid electrolytic capacitor provided with a conductive polymer layer, which method comprises:
- providing a sintered body member in which a dielectric film is formed on a periphery of a sintered body made of a valve metal and equipped with a terminal wire, and a metallic oxide layer is formed on the dielectric film;
- forming a graphite layer on a periphery of the sintered body member, whereby an entire periphery of the metallic oxide layer and the dielectric film and a part not covered with the dielectric film are covered; and
- forming a conductive polymer layer on a periphery of the graphite layer by electrolytic oxidative polymerization of monomers of a compound capable of forming a conductive polymer, wherein the wire is used as an anode terminal.
- 7. A method of manufacturing a solid electrolytic capacitor provided with a conductive polymer layer, which method comprises:
- providing a sintered body member in which a dielectric film is formed on a periphery of a sintered body made of a valve metal, and a metallic oxide layer is formed on the dielectric film;
- and forming a conductive polymer layer on a periphery of the sintered body member by chemical polymerization of monomers of a compound capable of forming a conductive polymer, wherein said monomers are attached to the sintered body member by soaking the sintered body member in an electrolytic solution containing the monomer, and subsequently subjected to polymerization in an acid atmosphere.
Priority Claims (2)
Number |
Date |
Country |
Kind |
3-254596 |
Sep 1991 |
JPX |
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4-062067 |
Mar 1992 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/940,277 filed Sep. 3, 1992.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4943892 |
Tsuchiya et al. |
Jul 1990 |
|
5005107 |
Kobashi et al. |
Apr 1991 |
|
Foreign Referenced Citations (3)
Number |
Date |
Country |
0501805A1 |
Sep 1992 |
EPX |
2-32521 |
Feb 1990 |
JPX |
3-3220 |
Mar 1991 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
940277 |
Sep 1992 |
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