Claims
- 1. A capacitor comprising:
- a metalized polymer film having opposing surfaces;
- each said opposing surface being coated with a layer of metal forming a current collector;
- a pair of electrode layers, each of said electrode layers formed of a mixture of carbon and electrolyte binder, each of said electrode layers coated respectively onto each of said layers of metal; and
- an electrolyte in contact with said metal layers and with said carbon and binder mixture layers.
- 2. The capacitor recited in claim 1 wherein the thickness of said polymer film is less than ten microns and the thickness of said metal layer is less than 10,000 Angstroms.
- 3. The capacitor recited in claim 1 wherein said electrolyte binder comprises an elastomeric polymer.
- 4. The capacitor recited in claim 1 wherein said electrolyte comprises a non-aqueous solvent/salt system.
- 5. The capacitor recited in claim 4 wherein said solvent/salt system comprises acetonitrile tetrabutylammonium tetrafluoroborate.
- 6. The capacitor recited in claim 1 wherein said electrolyte comprises a solvent taken from the group consisting of propylene carbonate; propylene carbonate/diethylcarbonate; 1, 3 dioxolane; and tetrahydrofuran.
- 7. The capacitor recited in claim 1 wherein said electrolyte comprises a salt taken from the group consisting of tetrabutylammonium tetraphenylborate; tetraethylphosphonium tetrafluoroborate; and tetraethylammonium tetrafluoroborate.
- 8. The capacitor recited in claim 1 further comprising at least one polymeric film cell separator positioned adjacent at least one of said carbon and binder mixture layers.
- 9. A capacitor comprising:
- a metalized polymer film having opposing surfaces;
- each said opposing surface being coated with a layer of metal forming a current collector;
- a pair of electrode layers, each of said electrode layers formed of material taken from the group consisting of transition metal oxides and hydrous oxides, each of said electrode layers coated respectively onto each of said layers of metal; and
- an electrolyte in contact with said metal layers and with said group material layers.
- 10. The capacitor recited in claim 9 wherein the thickness of said polymer film is less than ten microns and the thickness of said metal layer is less than 10,000 Angstroms.
- 11. The capacitor recited in claim 9 wherein said electrolyte comprises a non-aqueous solvent/salt system.
- 12. The capacitor recited in claim 11 wherein said solvent/salt system comprises acetonitrile tetrabutylammonium tetrafluoroborate.
- 13. The capacitor recited in claim 9 wherein said electrolyte comprises a solvent taken from the group consisting of propylene carbonate; propylene carbonate/diethylcarbonate; 1, 3 dioxolane; and tetrahydrofuran.
- 14. The capacitor recited in claim 9 wherein said electrolyte comprises a salt taken from the group consisting of tetrabutylammonium tetraphenylborate; tetraethylphosphonium tetrafluoroborate; and tetraethylammonium tetrafluoroborate.
- 15. The capacitor recited in claim 9 further comprising at least one polymeric film cell separator positioned adjacent at least one of said carbon and binder mixture layers.
- 16. A capacitor comprising:
- a plurality of cells each such cell having a metalized polymer film having opposed surfaces;
- each of said opposed surfaces being coated with a layer of metal forming a current collector;
- a pair of electrode layers, each of said electrode layers formed of an electrode material coated onto each of said metal layers;
- an electrolyte in contact with said metal layers and with said electrode material layers; and
- a polymeric film cell separator positioned between the electrode materials of adjacent cells.
- 17. The capacitor recited in claim 16 wherein said electrode material comprises a mixture of carbon and electrolyte binder.
- 18. The capacitor recited in claim 16 wherein said electrode material comprises a material taken from the group consisting of transition metal oxides and hydrous oxides.
Parent Case Info
This application is a continuation of application Ser. No. 07/953,391, filed Sep. 29, 1992, which is now abandoned.
US Referenced Citations (23)
Foreign Referenced Citations (2)
Number |
Date |
Country |
62-58525 |
Dec 1987 |
JPX |
0265414 |
Nov 1988 |
JPX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
953391 |
Sep 1992 |
|