Claims
- 1. An apparatus for use in a double layer capacitor comprising:
a can; a terminal post at a basal end of the can formed integral with the can and extending down from the exterior of the basal end of the can.
- 2. The apparatus of claim 1 further comprising:
a plurality of wedge-like bars at an interior basal end of the can wherein the basal end of the can forms a collector.
- 3. The apparatus of claim 1 further comprising:
a bottom collector including a peripheral edge electrically coupled to the can.
- 4. The apparatus of claim 1 further comprising a taper at a periphery of an interior basal end of the can.
- 5. The apparatus of claim 1 wherein the can made of aluminum.
- 6. The apparatus of claim 1 further comprising:
an electrode assembly having electrode contact edges on proximal and distal ends of the electrode assembly, the electrode assembly being positioned inside the can with the distal end being electrically coupled to the can.
- 7. The apparatus of claim 6 further comprising:
a collector disk electrically coupled to the proximal end of the electrode assembly, the collector disk including a structure extending away from the proximal end of the electrode assembly.
- 8. The apparatus of claim 7 further comprising a plurality of wedge-like bars at an interior basal end of the can wherein the basal end of the can forms a collector.
- 9. The apparatus of claim 8 further comprising a plurality of channels formed in a bottom basal end of the can for use in laser welding the electrode assembly to the interior basal end of the can.
- 10. The apparatus of claim 7 further comprising:
an insulating gasket at a perimeter of the collector disk electrically insulating the collector disk from the can.
- 11. The apparatus of claim 10 further comprising a bead formed around the can at a location on the can above the collector disk such that an interior section of the can wall around the can bends inward to apply pressure to the insulating gasket to secure the collector disk in place and to maintain a pre-load force against the electrode assembly.
- 12. The apparatus of claim 11 further comprising:
a lid affixed on top of the o-ring gasket having a terminal post extending upward from the lid.
- 13. The apparatus of claim 12 further comprising:
an o-ring gasket placed against the interior of the bead into an open end of the can.
- 14. The apparatus of claim 12 further comprising:
another insulating gasket around the perimeter of the lid insulating the lid from the interior of the can.
- 15. The apparatus of claim 12 further comprising:
a hole in said lid positioned over and in contact with the structure of the collector disk.
- 16. The apparatus of claim 12 further comprising:
a cylindrical depression in said lid positioned over and in contact with the structure of the collector disk.
- 17. The apparatus of claim 12 further comprising:
a flange on said lid positioned over and in contact with the structure of the collector disk.
- 18. The apparatus of claim 12 wherein said lid includes a hole through the lid leading into the can, wherein the hole serves as a fill port for an electrolyte solution.
- 19. The double layer capacitor of claim 18 further comprising:
a foil seal seated in the hole in the lid at a flange at an interior edge of the hole at a point where the hole widens; a bushing between the foil and the interior edge of the hole at the point where the hole widens; and a plug with a vent hole therethrough, the plug located on top of the foil, thereby plugging the widened section of the hole.
- 20. The apparatus of claim 12 wherein a lip of said can is crimped onto a rim of said lid with the other insulating gasket interposed thereinbetween forming a seal between said can and said lid.
- 21. The apparatus of claim 12 further comprising an electrolyte solution within the electrode assembly and between the lid and the collector disk.
- 22. The apparatus of claim 10 wherein said insulating gasket comprises polypropylene.
- 23. The apparatus of claim 7 wherein said collector disk further comprises a plurality of slots through a surface of the collector disk, and wherein the collector disk is affixed to a proximal end of the electrode assembly by laser welding.
- 24. The double layer capacitor of claim 7 further comprising wedge-like bars on the bottom of the collector disk.
- 25. The apparatus of claim 6 wherein contact edges on the distal and proximal ends of the electrode assembly have exposed surfaces and closed gaps between windings at the contact edges.
- 26. An apparatus for exposing surfaces and closing gaps between windings at contact edges of an electrode assembly comprising:
a disk; and turbine-like ridges extending radially from a center of the disk on one side of the disk for collecting the contact edges of the electrode assembly.
- 27. A method of making a double layer capacitor comprising:
providing a can having a terminal post at a basal end of the can formed integral with the can and extending from the exterior of the basal end of the can, the can having a terminal post at a basal end of the can formed integral with the can and extending from the exterior of the basal end of the can; providing an electrode assembly comprising activated carbon; and inserting the electrode assembly having electrode contact edges on proximal and distal ends of the electrode assembly into the can.
- 28. The method of claim 27 further comprising:
providing a plurality of wedge-like bars at an interior basal end of the can, the interior basal end of the can forming a collector, the distal end of the electrode assembly contacting the wedge-like bars at the interior basal end of the can.
- 29. The method of claim 27 further comprising:
electrically coupling a bottom collector plate to a distal end of the electrode assembly.
- 30. The method of claim 29 further comprising:
laser welding the bottom collector plate to the distal end of the electrode assembly.
- 31. The method of claim 29 further comprising:
heating the can before said inserting, so as to temporarily increase the diameter of the can.
- 32. The method of claim 31 further comprising:
cooling the can after said inserting of the electrode assembly, so as to decrease the diameter of the can and tighten the interior of the can against an outer peripheral edge of the bottom collector.
- 33. The method of claim 31 further comprising:
electrically coupling a top collector disk to the proximal end of the electrode assembly.
- 34. The method of claim 33 further comprising:
placing a lid over the top collector disk.
- 35. The method of claim 34 further comprising:
heating the lid to increase a diameter of a flange on a bottom surface of the lid before placing the lid over the top collector disk; wherein said placing said lid over said top collector disk further comprises placing the flange over a structure in an upper surface of the top collector disk.
- 36. The method of claim 35 further comprising:
cooling said lid, so as to decrease the diameter of the flange and tighten the flange against the structure.
- 37. The method of claim 34 further comprising:
heating, before placing the lid over the top collector disk, the lid to increase a diameter of a depression in a bottom surface of the lid; wherein said placing said lid over said top collector disk further comprises placing the depression over a structure in an upper surface of the top collector disk.
- 38. The method of claim 37 further comprising:
cooling said lid, so as to decrease the diameter of the depression and tighten the depression against the structure.
- 39. The method of claim 33 further comprising:
forming a bead around the can at the location of the top collector disk; placing the lid on top of an interior of the bead, the lid having a terminal post extending upward from the lid and being in electrical contact with the top collector disk; creating a seal between the lid and the can; and placing an electrolyte solution through the lid between the lid and the collector disk into the electrode assembly.
- 40. The method of claim 27 further comprising:
impact molding metal to form said can and to form said terminal post at said exterior of said basal end of said can.
- 41. The method of claim 40 further wherein said step of impact molding metal to form said can further comprises forming a taper of said can at a periphery of an interior of said basal end of said can prior to said inserting of said electrode assembly.
- 42. The method of claim 27 further comprising:
placing a collector disk at said proximal end of said electrode assembly.
- 43. The method of claim 42 wherein said collector disk comprises wedge-like bars on a bottom of said collector disk that extend radially from a center of said collector disk, wherein the wedge-like bars contact said proximal end of said electrode assembly.
- 44. The method of claim 43 further comprising the step of welding said collector disk on said proximal end of said electrode assembly.
- 45. The method of claim 27 further comprising forming a bead in said can above said electrode assembly having been inserted.
- 46. The method of claim 27 further comprising the step of creating a seal between a lid and said can.
- 47. The method of claim 46 wherein said step of creating said seal comprises the steps of:
placing an insulating gasket against a perimeter of said lid; and crimping a lip of said can onto the lid to compress the insulating gasket.
- 48. The method of claim 47 wherein said insulating gasket is made of Tefzel.
- 49. The method of claim 46 further comprising:
placing a collector disk at said proximal end of said electrode assembly.
- 50. The method of claim 49 further comprising:
electrically contacting said lid with said collector disk by positioning a tapered hole over a tapered nub.
- 51. The method of claim 27 further comprising the steps of:
exposing electrode contact edges on said distal and proximal ends of the electrode assembly; and closing gaps between windings at the contact edges on said distal and proximal ends of the electrode assembly.
- 52. A method for exposing electrode contact edges on an end of an electrode assembly and closing gaps between windings at the electrode contact edges comprising:
holding the electrode assembly on a rotational axis; forcing an end of the electrode assembly into one surface of a collecting tool; and rotating the electrode assembly.
- 52. The method of claim 51 further comprising:
said forcing of said end of said electrode assembly includes forcing said end of said electrode into said surface of said collecting tool, wherein said surface includes at least one ridge.
- 53. The method of claim 52 further comprising:
said forcing of said end of said electrode assembly includes forcing said end of said electrode into said surface of said collecting tool, wherein said surface includes said at least one ridge, wherein said at least one ridge is a turbine-like ridge.
- 54. A method of making an apparatus for use in a double layer capacitor comprising the steps of:
providing metal for molding; and impact molding the metal to form a can, including:
forming a terminal post at a basal end of the can integral with the can and extending down from an exterior of the basal end of the can.
- 55. The method of claim 54 further comprising:
forming, while impact molding, wedge-like bars at an interior of said basal end of the can, thereby forming a collector at said basal end of the can.
- 56. An apparatus for use in a double layer capacitor comprising:
a double layer capacitor electrode assembly having electrode contact edges on a proximal and on a distal end of the double layer capacitor electrode assembly; a top collector disk electrically coupled to the electrode contact edges of the proximal end of the double-layer capacitor electrode assembly; and a lid electrically coupled to the top collector disk.
- 57. The apparatus of claim 56 further comprising:
a convex structure; and a flange electrically coupled to the convex structure, the convex structure and the flange being interposed between the lid and the top collector disk, and electrically coupling the lid and the top collector disk to one another.
- 58. The apparatus of claim 57 wherein said flange is on said lid, wherein said convex structure in on said top collector disk, and wherein said flange is juxtaposed with said convex structure forming an electrical coupling therebetween.
- 59. The apparatus of claim 56 further comprising a bottom collector disk electrically coupled to said distal end of the double-layer capacitor electrode assembly.
- 60. The apparatus of claim 59 wherein the bottom collector disk is electrically coupled to an interior periphery of the can.
- 61. The apparatus of claim 59 wherein said bottom collector disk comprises a plurality of channels.
- 62. The apparatus of claim 61 wherein said bottom collector disk is welded to said distal end of said double-layer electrode assembly at said distal end.
- 63. The apparatus claim 56 further comprising:
a gasket against an interior of a bead formed around a top perimeter of an interior of the can, wherein the lid is juxtaposed on top of the o-ring gasket.
- 64. The apparatus of claim 63 further comprising:
an insulating gasket around a perimeter of the lid to insulate the lid from the interior of the can.
- 65. The apparatus of claim 64 further comprising:
a terminal post extending upward from and integral to the lid.
- 66. The apparatus of claim 64 wherein a lip of the can is crimped onto a rim of the lid with said insulating gasket on the lid being interposed thereinbetween forming a seal between the lid and the can.
- 67. The apparatus of claim 64 wherein said lid comprises a hole through the lid.
- 68. The apparatus of claim 67 further comprising:
an electrolyte solution within the electrode assembly; and a space between the lid and the top collector disk.
- 69. The apparatus of claim 56 further comprising a taper in said can at a periphery of an interior basal end of the can.
- 70. The apparatus of claim 56 wherein said electrode contact edges on said distal and proximal ends of the electrode assembly have exposed surfaces and closed gaps between windings at the contact edges.
- 71. An apparatus for use in a double layer capacitor comprising:
an electrode assembly having electrode contact edges on a distal end of the electrode assembly; a bottom collector disk at the distal end of the electrode assembly; and a can in which the double layer capacitor assembly is located and wherein a peripheral edge of the bottom collector disk contacts an interior wall of the can.
- 72. A method of making an apparatus for use in a double layer capacitor comprising:
electrically coupling a top collector disk to a proximal end of a double layer capacitor electrode assembly; heating a lid having a flange on a bottom of the lid; and placing the lid over a structure on the top collector disk, wherein the flange engages the structure on the top surface of the top collector disk.
- 73. A method of making a double layer capacitor comprising:
electrically coupling a top collector disk to a proximal end of a double layer capacitor electrode assembly; electrically coupling a bottom collector disk to a distal end of the double layer capacitor electrode assembly; heating a can to increase a diameter of the can; inserting the double layer capacitor electrode assembly into the can; cooling the can to decrease the diameter of the can, wherein a peripheral edge of the bottom collector disk is coupled to an interior wall of the can as the diameter of the can is decreased; forming a bead around an exterior of the can at a location of the top collector disk; heating a lid to increase a diameter of a concave structure on the lid; placing the concave structure of the lid in juxtaposition with a convex structure on the top collector disk; cooling the lid to decrease the diameter of the convex structure, wherein the concave structure is coupled to the convex structure as the diameter of the can is decreased; creating a seal between the lid and the can; and placing an electrolyte solution into the electrode assembly.
- 74. A method for exposing electrode contact edges on an end of an electrode assembly and closing gaps between windings at the electrode contact edges comprising:
holding the electrode assembly between interiors of two cans, said cans collectively having a plurality of wedge-like bars on interior ends of the cans; and forcing the cans toward each other.
Parent Case Info
[0001] The present patent document is a continuation-in-part of U.S. patent application Ser. No. 10/005,885 (Attorney Docket No. 71752), filed Nov. 2, 2001, for ELECTROCHEMICAL DOUBLE LAYER CAPACITOR HAVING CARBON POWDER ELECTRODES, the entirety of which is hereby expressly incorporated herein by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10005885 |
Nov 2001 |
US |
Child |
10159265 |
May 2002 |
US |