Claims
- 1. An electrical energy storage device, which comprises:
a) a container having a surrounding side wall providing an opening leading into the container; b) an electrode assembly comprising an anode and a cathode in an electrochemical association with each other and disposed inside the container; c) a lid having space apart upper and lower surfaces joined by a peripheral edge and secured to the open end of the container to provide a casing housing the electrode assembly, wherein the lid has at least a unitary terminal ferrule extending below the lid lower surface with an inner surface of the terminal ferrule characterized by a roughened texture; d) a terminal lead connected to one of the anode and cathode electrodes and extending through the terminal ferrule to a position spaced above the upper surface of the lid, wherein the terminal lead is sealed in the terminal ferrule in an insulated relationship with a housing; and e) an electrolyte provided in the casing to activate the anode and cathode electrodes.
- 2. The electrical energy storage device of claim 1 wherein an outer surface of the terminal ferrule is in a normal orientation with respect to the lid lower surface.
- 3. The electrical energy storage device of claim 1 wherein an outer surface of the terminal ferrule is cylindrical.
- 4. The electrical energy storage device of claim 1 wherein the inner surface of the terminal ferrule has a machined roughened texture.
- 5. The electrical energy storage device of claim 1 wherein the roughened texture of the inner surface of the terminal ferrule is characterized as having been provided by a rotating machining bit.
- 6. The electrical energy storage device of claim 1 wherein the lid has a unitary fill port extending below the lid lower surface.
- 7. The electrical energy storage device of claim 6 wherein an outer surface of the fill port in a normal orientation therewith.
- 8. The electrical energy storage device of claim 6 wherein an outer surface of the fillport is cylindrical.
- 9. The electrical energy storage device of claim 1 wherein the lid is of a conductive material.
- 10. The electrical energy storage device of claim 9 wherein the conductive material is selected from the group consisting of stainless steel, titanium, nickel and aluminum.
- 11. The electrical energy storage device of claim 1 as either an electrochemical cell or a capacitor.
- 12. A lid for closing an open end of a casing for an electrochemical energy storage device, the improvement in the lid comprising:
spaced apart upper and lower surfaces joined by a peripheral edge, wherein the lid has at least a unitary terminal ferrule extending below the lid lower surface with an inner surface of the terminal ferrule characterized by a roughened texture.
- 13. The lid of claim 12 wherein the inner surface of the terminal ferrule has a machined roughened texture.
- 14. The lid of claim 12 wherein the roughened texture of the inner surface of the terminal ferrule is characterized as having been provided by a rotating machining bit.
- 15. The lid of claim 12 wherein the lid has a unitary fill port extending below the lid lower surface.
- 16. An implantable medical device, which comprises:
a) a device container; b) a control circuitry; and c) an electrical energy storage device, wherein the control circuitry and the electrical energy storage device are housed in the device container, the electrical energy storage device comprising:
i) a container having a surrounding side wall providing an opening leading into the container; ii) an electrode assembly comprising an anode and a cathode in an electrochemical association with each other and disposed inside the container; iii) a lid having space apart upper and lower surfaces joined by a peripheral edge and secured to the open end of the container to provide a casing housing the electrode assembly, wherein the lid has at least a unitary terminal ferrule extending below the lid lower surface with an inner surface of the terminal ferrule characterized by a roughened texture; iv) a terminal lead connected to one of the anode and cathode electrodes and extending through the terminal ferrule to a position spaced above the upper surface of the lid, wherein the terminal lead is sealed in the terminal ferrule in an insulated relationship with a housing; and v) an electrolyte provided in the casing to activate the anode and cathode electrodes.
- 17. A method for providing a lid for a casing of an electrochemical energy storage device, comprising the steps of:
a) obtaining a blank; and b) machining the blank to provide the lid having spaced apart upper and lower surfaces joined by a peripheral edge, and a unitary terminal ferrule extending below the lid lower surface.
- 18. The method of claim 17 including providing an outer surface of the terminal ferrule in a normal orientation with the lid lower surface.
- 19. The method of claim 17 including providing an outer surface of the terminal ferrule being cylindrical.
- 20. The method of claim 17 including providing the lid having a unitary fillport extending below the lid lower surface.
- 21. The method of claim 20 including providing an outer surface of the fillport being in a normal orientation with respect to the lid lower surface.
- 22. The method of claim 17 including machining the terminal ferrule having an inner surface with a machined roughened texture.
- 23. The method of claim 17 including providing the terminal ferrule having an inner surface provided by a rotating machining bit.
- 24. The method of claim 17 including providing the lid of a conductive material.
- 25. A method for providing an electrical energy storage device, comprising the step of:
a) providing a container having a surrounding side wall with an opening leading into the container; b) disposing an electrode assembly comprising an anode and a cathode in an electrochemical association with each other inside the container; c) machining a blank to provide a lid having spaced apart upper and lower surfaces joined by a peripheral edge and at least a unitary terminal ferrule extending below the lid lower surface, wherein an outer surface of the terminal ferrule is in a normal orientation with the lid lower surface; d) connecting a terminal lead to one of the anode and cathode electrodes; e) securing the lid to the container to close the opening leading therein and thereby providing a casing for the electrical energy storage device with the terminal lead extending through the terminal ferrule to a position spaced above the upper surface of the lid and with the terminal lead insulated from the lid; and f) activating the anode and cathode electrodes with an electrolyte provided in the casing.
- 26. The method of claim 25 including machining the terminal ferrule having an inner surface with a machined roughened texture.
- 27. The method of claim 25 including providing the outer surface of the terminal ferrule being cylindrical.
- 28. The method of claim 25 including machining the blank having a unitary fillport extending below the lid lower surface.
- 29. The method of claim 25 including providing an outer surface of the fillport being in a normal orientation therewith.
- 30. The method of claim 25 including providing an outer surface of the fillport being cylindrical.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from U.S. application Ser. No. 09/837,778, now abandoned, which claims priority on U.S. provisional application Serial No. 60/198,175, filed Apr. 19, 2000.