Claims
- What is claimed is:
- 2. The method of Claim 1 wherein the forming comprises forming the plurality of current collector foils, each of the plurality of current collector foils having a tab portion and a paddle portion.
- 3. The method of Claim 1 further comprising bonding each of the first portions of alternating ones of the plurality of current collector foils that are not offset to each other and to a respective capacitor terminal.
- 4. The method of Claim 1 wherein the impregnating comprises impregnating each of a plurality of carbon cloths with the metal.
- 5. The method of Claim 4 wherein said impregnating further comprises impregnating each of said plurality of carbon cloths by spraying molten metal deep into a tow of a carbon fiber bundle, thereby reducing carbon to carbon contacts and decreasing a transverse resistance of the carbon fiber bundle.
- 6. The method of Claim 1 further comprising wrapping said electrode stack with a porous separator material prior to said applying said modest constant pressure step, forming a wrapped electrode stack.
- 7. The method of Claim 1 wherein said interleaving comprises interposing a contiguous porous separator sheet between each of said plurality of electrodes, wherein the contiguous porous separator sheet winds throughout said electrode stack in a serpentine manner, wherein the contiguous porous separator sheet functions as an electrical insulator between said adjacent ones of said plurality of electrodes preventing electrical shorting against each other.
- 8. The method of Claim 1 wherein said forming said plurality of current collector foils comprises forming said plurality of current collector foils, each of said plurality of current collector foils having said first portion and said second portion, said first portion being offset from a central axis of said second portion.
- 9. The method of Claim 1 wherein said forming said plurality of current collector foils comprises forming said plurality of current collector foils, each of said plurality of current collector foils having said first portion and said second portion, said first portion being flush with an edge of said second portion.
- 10. A method of making a double layer capacitor comprising:
- 11. The method of Claim 10 wherein the forming comprises forming the plurality of current collector foils, each of the plurality of current collector foils having a tab portion and a paddle portion.
- 12. The method of Claim 10 wherein the impregnating comprises impregnating each of a plurality of carbon cloths with the metal, forming a plurality of impregnated carbon cloths.
- 13. The method of Claim 12 wherein said impregnating further comprises said impregnating said each of said plurality of carbon cloths with said metal by spraying molten metal deep into a tow of a carbon fiber bundle, thereby reducing carbon to carbon contacts and decreasing a transverse resistance of the carbon fiber bundle.
- 14. The method of Claim 13 wherein said carbon fiber bundle is a triple twisted carbon fiber bundle.
- 15. The method of Claim 10 further comprising controlling porosity of each of said plurality of carbon preforms during said impregnating step.
- 16. The method of Claim 10 wherein said impregnating step includes impregnating each of said plurality of carbon preforms with said metal, said metal being selected from a group consisting of aluminum, titanium, and copper.
- 17. The method of Claim 10 further comprising pressing each of said plurality of electrodes prior to said stacking step.
- 18. The method of Claim 17 wherein said pressing comprises said pressing said each of said plurality of electrodes with a mechanical press at 1800 psi prior to said stacking step.
- 19. The method of Claim 10 further comprising wrapping said electrode stack with said porous separator material prior to said applying said modest constant pressure step, forming a wrapped electrode stack.
- 20. The method of Claim 19 wherein said applying said modest constant pressure comprises placing the wrapped electrode stack within an open-ended container having an interior dimension slightly smaller than an exterior dimension of said wrapped electrode stack, such that said first tab portions extend from an open end of the open-ended container.
- 21. The method of Claim 19 further comprising:
- 22. The method of Claim 21 wherein said applying said modest constant pressure comprises:
- 23. The method of Claim 22 wherein said applying said modest constant pressure further comprises:
- 24. The method of Claim 23 further comprising:
- 25. The method of Claim 10 wherein said stacking comprises said stacking said each of said plurality of electrodes such that a contiguous porous separator sheet is positioned between said each of said plurality of electrodes, wherein the contiguous porous separator sheet winds throughout said electrode stack in a serpentine fashion, wherein the contiguous porous separator sheet functions as said electrical insulator between said adjacent ones of said plurality of electrodes preventing electrical shorting against each other.
- 26. The method of Claim 10 wherein said forming said plurality of current collector foils comprises forming said plurality of current collector foils, said each of said plurality of current collector foils having said first portion and said second portion, said first portion offset from a central axis of said second portion.
- 27. The method of Claim 10 wherein said forming said plurality of current collector foils comprises forming said plurality of current collector foils, said each of said plurality of current collector foils having said first portion and said second portion, said first portion flush with an edge of said second portion.
- 28. The method of Claim 10 wherein said first tab portions generally extend from the same end of said electrode stack.
- 29. The method of Claim 10 further comprising bonding each of the first portions of alternating ones of the plurality of electrodes that are not offset to each other and to a respective one of a first capacitor terminal and a second capacitor terminal.
- 30. The method of Claim 29 wherein the first capacitor terminal comprises one of a first part of a capacitor case or a second part of the capacitor case, wherein the first part of said capacitor case is electrically insulated from the second part of said capacitor case, wherein the capacitor case contains said electrode stack.
- 31. The method of Claim 29 further wherein said first capacitor terminal comprises a capacitor case for containing said electrode stack, wherein said first capacitor terminal is electrically insulated from said second capacitor terminal.
- 32. A method of applying a modest constant pressure to an electrode stack comprising:
- 33. The method of Claim 32 wherein said providing comprises providing said electrode stack wherein said metal impregnated preform comprises a carbon cloth made from activated carbon fiber bundles, wherein the activated carbon fiber bundles are woven to form the carbon cloth, and further wherein a specified metal is impregnated into a tow of the carbon cloth to reduce the transverse resistance of said carbon cloth.
- 34. A method of ultrasonically bonding multiple foils together to form an electrical interconnection comprising:
- 35. The method of Claim 34 wherein said stacking comprises said stacking said plurality of metal foils, said plurality of metal foils includes ten or more metal foils.
- 36. The method of Claim 34 wherein said positioning comprises said positioning said at least one dummy metal foil against said plurality of metal foils, said at least one dummy metal foil comprises two or more dummy metal foils.
- 37. The method of Claim 34 wherein said positioning comprises folding one or more of said plurality of metal foils over said plurality of metal foils such that the one or more of said plurality of metal foils form said at least one dummy metal foil, the one or more of said plurality of metal foils having a length longer than a length of remaining ones of said plurality of metal foils.
- 38. The method of Claim 34 wherein said stacking comprises said stacking a plurality of aluminum foils.
- 39. The method of Claim 38 wherein said positioning comprises positioning at least one dummy aluminum foil against said plurality of aluminum foils.
Cross Reference to Related Applications
[0001] This application is a Divisional Application of Application No. 09/377,327 entitled MULTI-ELECTRODE DOUBLE LAYER CAPACITOR HAVING SINGLE ELECTROLYTE SEAL AND ALUMINUM IMPREGNATED CARBON CLOTH ELECTRODES, of Farahmandi, et al., filed 8/18/99, now U.S. Patent No. _______, which is a Continuation-in-Part of Application No. 09/087,471 entitled MULTI-ELECTRODE DOUBLE LAYER CAPACITOR HAVING SINGLE ELECTROLYTE SEAL AND ALUMINUM IMPREGNATED CARBON CLOTH ELECTRODES, of Farahmandi, et al. filed 5/29/98, now U.S. Patent No. 5,907,472, which is a Divisional Application of Application No. 08/726,728, filed 10/7/96, now U.S. Patent No. 5,862,035; which is a Continuation-In-Part of U.S. Patent Application No. 08/319,493, filed 10/07/94, now U.S. Patent No. 5,621,607, all of which are incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09/377,327 |
Aug 1999 |
US |
Child |
09783728 |
Feb 2001 |
US |
Continuation in Parts (3)
|
Number |
Date |
Country |
Parent |
09/087,471 |
May 1998 |
US |
Child |
09/377,327 |
Aug 1999 |
US |
Parent |
08/726,728 |
Oct 1996 |
US |
Child |
09/377,327 |
Aug 1999 |
US |
Parent |
08/319,493 |
Oct 1994 |
US |
Child |
09/377,327 |
Aug 1999 |
US |