Claims
- 1. A method of manufacturing a solid electrolytic capacitor, comprising the steps of:
manufacturing a flat solid electrolytic capacitor element; adhering a double-sided thermal adhesive film impregnated with thermosetting resin to one flat surface of said flat solid electrolytic capacitor element; and eluting thermosetting resin impregnated in said double-sided thermal adhesive film impregnated with thermosetting resin to seal the side of said flat solid electrolytic capacitor element by an eluted material.
- 2. A method of manufacturing a solid electrolytic capacitor, comprising the steps of:
manufacturing a flat solid electrolytic capacitor element having first and second surface opposite to each other; fixing a reinforcement plate on the first surface of said flat solid electrolytic capacitor element, with holding a double-sided thermal adhesive film impregnated with thermosetting resin having a size so as to project from said flat solid electrolytic capacitor element, between said reinforcement plate and said first surface of said flat solid electrolytic capacitor element; fixedly mounting, on the second surface of said flat solid electrolytic capacitor element, a plate-shaped external cathode terminal having a size so as to project from said flat solid electrolytic capacitor element; applying heat and pressure to said reinforcement plate and said plate-shaped external cathode terminal to elute thermosetting resin impregnated in said double-sided thermal adhesive film impregnated with thermosetting resin, thereby filling eluted material between projected portions of said double-sided thermal adhesive film impregnated with thermosetting resin and said plate-shaped external cathode terminal from said solid electrolytic capacitor element.
- 3. A method as claimed in claim 2, wherein said reinforcement plate has a size similar to that of said double-sided thermal adhesive film impregnated with thermosetting resin.
- 4. A method as claimed in claim 2, wherein said external anode terminal is plate-shaped, said external cathode terminal is plate-shaped, said external anode terminal and said external cathode terminal are disposed on the second surface of said flat solid electrolytic capacitor element with a space left therebetween to electrically connect to the external so as to have a surface along a horizontal direction, the step of manufacturing said flat solid electrolytic capacitor element comprising the steps of:
preparing an anode electrode consisting of a thin plate made of valve-action metal; forming an oxide film of a base material valve-action metal on a capacitance manifestation region of said anode electrode; disposing an insulator on a region adjacent to the capacitance manifestation region of said anode electrode; forming a layered cathode electrode including a solid electrolyte layer on said oxide film so as to adhere to said oxide film to cover said oxide film; and adhering said external anode terminal to an outside region of said insulator of said anode electrode.
Priority Claims (1)
Number |
Date |
Country |
Kind |
208998/2002 |
Jul 2002 |
JP |
|
Parent Case Info
[0001] The present application is a Divisional Application of U.S. application Ser. No. 10/622,908, filed Jul. 17, 2003, and is based upon and claims benefit of priority from prior application JP 2002-208998, the disclosure of which is incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10622908 |
Jul 2003 |
US |
Child |
10879247 |
Jun 2004 |
US |