Claims
- 1. A process for preparing a capacitor comprising:
fabricating an aluminum plate; pre-hydrating said aluminium plate; contacting said plate with an anodizing solution comprising glycerine, about 0.1 to about 2.0%, by weight, water and about 0.01 to about 0.5%, by weight, orthophosphate; applying a voltage to said aluminum plate of at least about 220 volts.
- 2. The process for preparing a capacitor of claim 1 further comprising the step of:
etching said aluminum plate prior to said pre-hydrating of said aluminum plate.
- 3. The process for preparing a capacitor of claim 1 wherein said voltage is applied in increasing increments with an age time between each said increment.
- 4. The process for preparing a capacitor of claim 3 wherein said increments are less than about 75 volts.
- 5. The process for preparing a capacitor of claim 4 wherein said increments are at least about 20 V to no more than about 50 V.
- 6. The process for preparing a capacitor of claim 5 wherein said age time is sufficient for the current to decrease to from about 1 to about 50% of an initial current.
- 7. The process for preparing a capacitor of claim 6 wherein said age time is sufficient for the current to decrease to from about 10 to about 30% of said initial current.
- 8. The process for preparing a capacitor of claim 7 wherein said age time is sufficient for the current to decrease to about 20% of said initial current.
- 9. The process for preparing a capacitor of claim 1 wherein said anodizing solution is at a temperature of about 25° C. to about 125° C.
- 10. The process for preparing a capacitor of claim 9 wherein said anodizing solution is at a temperature of about 80° C. to about 105° C.
- 11. The process for forming a capacitor of claim 1 wherein said anodizing solution comprises about 0.01 to about 0.1%, by weight, soluble orthophosphate.
- 12. The process for forming a capacitor of claim 1 wherein said soluble orthophosphate is selected from a group consisting of ammonium phosphate, alkali metal phosphate, amine phosphate or mixtures thereof.
- 13. The process for forming a capacitor of claim 1 wherein said soluble orthophosphate is selected from a group consisting of mono-sodium phosphate, di-potassium phosphate, and sodium potassium phosphate.
- 14. The process for forming a capacitor of claim 1 wherein said soluble orthophosphate is selected from a group consisting of mono-ammonium phosphate and di-ammonium phosphate.
- 15. The process for forming a capacitor of claim 1 wherein said anodising solution comprises about 0.1 to about 1%, by weight, water.
- 16. A capacitor prepared by the process of claim 1.
- 17. A device comprising a capacitor of claim 16.
- 18. The device of claim 17 wherein said device is an implantable medical device.
- 19. A process for preparing a capacitor comprising:
fabricating an aluminum plate; pre-hydrating said aluminium plate; contacting said plate with an anodizing solution comprising glycerine, about 0.1 to about 2.0%, by weight, water and about 0.01 to about 0.5%, by weight, orthophosphate; applying a voltage to said aluminum plate and determining an initial current; maintaining said first voltage until a first measured current is no more than 50% of said initial current; increasing said voltage and redetermining said initial current; maintaining said increased voltage until a second measured current is no more than about 50% of said redetermined initial current, and continuing said increasing said voltage and said maintaining said increased voltage until a final voltage is achieved.
- 20. The process for preparing a capacitor of claim 19 further comprising the step of:
etching said aluminum plate prior to said pre-hydrating of said aluminum plate.
- 21. The process for preparing a capacitor of claim 19 wherein said final voltage is above 220 volts.
- 22. The process for preparing a capacitor of claim 19 wherein said voltage is increased by no more than about 75 volts.
- 23. The process for preparing a capacitor of claim 22 wherein said voltage is increased by at least about 20 V to no more than about 50 V.
- 24. The process for preparing a capacitor of claim 23 wherein said first measured current or said second measured current is from about 1 to about 50% of said initial current.
- 25. The process for preparing a capacitor of claim 24 wherein said first measured current or said second measured current is from about 10 to about 30% of said initial current.
- 26. The process for preparing a capacitor of claim 25 wherein said first measured current or said second measured current is about 20% of said initial current.
- 27. The process for preparing a capacitor of claim 19 wherein said anodizing solution is at a temperature of about 25° C. to about 125° C.
- 28. The process for preparing a capacitor of claim 27 wherein said anodizing solution is at a temperature of about 80° C. to about 105° C.
- 29. The process for forming a capacitor of claim 19 wherein said anodizing solution comprises about 0.01 to about 0.1%, by weight, soluble orthophosphate.
- 30. The process for forming a capacitor of claim 19 wherein said soluble orthophosphate is selected from a group consisting of ammonium phosphate, alkali metal phosphate, amine phosphate and mixtures thereof.
- 31. The process for forming a capacitor of claim 19 wherein said soluble orthophosphate is selected from a group consisting of mono-sodium phosphate, di-potassium phosphate, and sodium potassium phosphate.
- 32. The process for forming a capacitor of claim 19 wherein said soluble orthophosphate is selected from a group consisting of mono-ammonium phosphate and di-ammonium phosphate.
- 33. A capacitor prepared by the process of claim 19.
- 34. A device comprising a capacitor of claim 33.
- 35. The device of claim 34 wherein said device is an implantable medical device.
- 36. A capacitor comprising:
an etched aluminum anode and a dielectric layer comprising phosphate doped aluminum oxide; prepared by the process of: forming an aluminum plate; pre-hydrating said aluminium plate; contacting said plate with an anodizing solution comprising glycerine, about 0.1 to about 2.0%, by weight, water and about 0.01 to about 0.5%, by weight, orthophosphate; applying a voltage to said aluminum plate and determining an initial current; maintaining said first voltage until a first measured current is no more than about 50% of said initial current; increasing said voltage and redetermining said initial current; maintaining said increased voltage until a second measured current is no more than 50% of said redetermined initial current, and continuing said increasing said voltage and said maintaining said increased voltage until a final voltage is achieved.
RELATED APPLICATIONS
[0001] The present application is a continuation-in-part of U.S. application Ser. No. 10/390,529, filed Mar. 17, 2003 which is pending and incorporated herein by reference thereto.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10390529 |
Mar 2003 |
US |
Child |
10673816 |
Sep 2003 |
US |