Claims
- 1. A filter assembly, comprising:
a conductive substrate comprising a first conductive holder and a second conductive holder; a first energy conditioner and a second energy conditioner, wherein each said energy conditioner comprises a first conductive portion, a second conductive portion, and a third conductive portion; said first conductive portion of said first energy conditioner is coupled to said third conductive portion; said first conductive portion of said second energy conditioner is coupled to said third conductive portion; said second conductive portion of said first energy conditioner is coupled to said first conductive holder in a predetermined manner; said second conductive portion of said second energy conditioner is coupled to said second conductive holder in a predetermined manner; said conductive substrate is operable to shield said second conductive portion of said first energy conditioner from said second conductive portion of said second energy conditioner from each other to form at least a common mode and differential mode filter.
- 2. A filter assembly comprising:
at least one pair of energy conditioners; means for blocking energy portions; and said at least one pair of energy conditioners and said means for blocking energy portions form at least a common mode and differential mode filter.
- 3. A filter assembly, comprising:
at least a first differential energy conductor and a second differential energy conductor; at least a first energy conditioner and a second energy conditioner, wherein each said energy conditioner comprises a first conductive portion and a second conductive portion; and a conductive substrate comprising a first conductive sleeve and a second conductive sleeve; said first conductive portion of said first energy conditioner is coupled to said first differential energy conductor; said first conductive portion of said second energy conditioner is coupled to said second differential energy conductor; said second conductive portion of said first energy conditioner is coupled to said first conductive sleeve; said second conductive portion of said second energy conditioner is coupled to said second conductive sleeve; wherein said second conductive portion of said first energy conditioner is oriented generally 180 degrees from said second conductive portion of said second energy conditioner with respect to said conductive substrate; said conductive substrate is operable as a common energy pathway for portions of energies propagating from each said second conductive portions of both said first energy conditioner and said second energy conditioner.
- 4. The filter assembly of claim 1 in which said first energy conditioner and said second energy conditioner are each a monolithic capacitor.
- 5. The filter assembly of claim 1 in which said first energy conditioner and said second energy conditioner are each a multi-layered capacitor.
- 6. The filter assembly of claim 1 in which said first differential energy conductor and said second differential energy conductor are physically and electrically isolated from each other.
- 7. The filter assembly of claim 1 in which each said energy conditioner is a tubular capacitor.
- 8. The filter assembly of claim 1 in which each said conductive holder is a conductive sleeve assembly having a conductive sleeve portion and a non-conductive sleeve portion;
said conductive portion of each said conductive sleeve assembly is operable for receiving either of said first energy conditioner or said second energy conditioner; and wherein said first energy conditioner and said second energy conditioner are electrically and physically isolated from each other by said non-conductive sleeve portion of each said conductive sleeve assemblies.
- 9. A connector assembly comprising:
a filter mounted within a conductive connector housing; said filter comprising a first and a second differential energy conductor, a first and a second energy conditioner, each said energy conditioner comprising a first and a second conductive portion; and a conductive substrate comprising a first and a second conductive holder; said first conductive portion of said first energy conditioner is coupled to said first differential energy conductor; said first conductive portion of said second energy conditioner is coupled to said second differential energy conductor; said second conductive portion of said first energy conditioner is coupled to said first conductive holder; said second conductive portion of said second energy conditioner is coupled to said second conductive holder; wherein said second conductive portion of said first energy conditioner is oriented generally within the range of 1 to 180 degrees from said second conductive portion of said second energy conditioner with respect to said conductive substrate.
- 10. The connector assembly of claim 9 in which each said conductive holder is a conductive sleeve assembly having a conductive sleeve portion and a non-conductive sleeve portion;
said conductive portion of each said conductive sleeve assembly is operable for receiving either of said first energy conditioner or said second energy conditioner; and wherein said first energy conditioner and said second energy conditioner are electrically and physically isolated from each other by said non-conductive sleeve portion of each said conductive sleeve assemblies.
- 11. The connector assembly of claim 9, wherein said first energy conditioner and said second energy conditioner are selectively positioned operable to be shielded from the other between said conductive substrate.
- 12. The connector assembly of either claim 9 in which said energy conditioner is a tubular capacitor.
- 13. The connector assembly of claim 9 in which said first differential energy conductor and said second differential energy are physically and electrically isolated from each other.
- 14. A circuit assembly comprising:
two differential pathways for conducting energy between an energy source and an energy-utilizing load; a filter assembly coupled to said differential pathways, wherein said filter assembly comprises at least a first differential energy conductor and a second differential energy conductor; at least a first energy conditioner and a second energy conditioner, wherein each said energy conditioner comprises a first conductive portion and a second conductive portion; and a conductive substrate comprising a first conductive sleeve and a second conductive sleeve; said first conductive portion of said first energy conditioner is coupled to said first differential energy conductor; said first conductive portion of said second energy conditioner is coupled to said second differential energy conductor; said second conductive portion of said first energy conditioner is coupled to said first conductive sleeve; said second conductive portion of said second energy conditioner is coupled to said second conductive sleeve; wherein said second conductive portion of said first energy conditioner is oriented generally between the range of 1 to 180 degrees from said second conductive portion of said second energy conditioner with respect to said conductive substrate; said conductive substrate is operable as a common energy pathway for portions of energies propagating from each said second conductive portions of both said first energy conditioner and said second energy conditioner.
- 15. The circuit assembly of claim 14 in which said common energy pathway is operable as an energy pathway of least impedance for portions of energies propagating along portions of said differential energy conductors.
- 16. The circuit assembly of claim 14 in which said filter assembly of said circuit is practicable for differential and common mode filtering.
- 17. The circuit assembly of claim 14 wherein each said energy conditioner of said filter assembly of said circuit is a tubular capacitor.
- 18. The circuit assembly of claim 14 in which said filter assembly is mounted within a conductive connector housing forming a connector assembly within said circuit.
- 19. The circuit assembly of claim 18 in which said connector assembly of said circuit is practicable for simultaneous differential and common mode filtering of said at least a plurality of isolated energy pathways.
- 20. The circuit assembly of claim 14 in which said first differential energy conductor and said second differential energy conductor are physically and electrically isolated from each other.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/191,196 filed Mar. 22, 2000, U.S. Provisional Application No. 60/200,327 filed Apr. 28, 2000, U.S. Provisional Application No. 60/215,314 filed Jun. 30, 2000, and U.S. Provisional Application No. 60/225,497 filed Aug. 15, 2000, as they all relate in one form or another to continued improvements to this new family of multi-functional energy conditioners, filter assemblies and shield structures for circuitry. Application Ser. Nos. 60/191,196, 60/200,327, 60/215/314, and 60/225,497 are hereby incorporated by reference.
Provisional Applications (4)
|
Number |
Date |
Country |
|
60191196 |
Mar 2000 |
US |
|
60200327 |
Apr 2000 |
US |
|
60215314 |
Jun 2000 |
US |
|
60225497 |
Aug 2000 |
US |