Claims
- 1. A cable connector configured for high frequency signal transmission, the cable connector comprising:
a printed circuit board (“PCB”) having a first side with a plurality of conductive traces formed thereon, each trace having a first end and a second end, and a second side with a shield layer formed thereon; at least one conductive cable with a plurality of conductive wires, one end of each wire being electrically connected to the first end of one of the plurality of conductive traces; and a shield structure, mounted over the first side of the PCB to provide shielding and connected to a portion of said at least one conductive cable, said shield structure further including grounding contacts that are coupled to a portion of the first side of the PCB and to the shield layer.
- 2. The cable connector of claim 1, wherein said shield structure comprises a substantially C-shaped cross-section configured to be disposed over said first side of said PCB and wrap around to said second side of said PCB.
- 3. The cable connector of claim 1, wherein said shield structure comprises a substantially planar surface with end portions extending laterally from opposing ends of said planar surface and configured to interconnect with a portion of said shield layer.
- 4. The cable connector of claim 3, wherein said grounding contacts are integrated in said end portions of said shield structure.
- 5. The cable connector of claim 3, wherein said end portions comprise a lip member configured to extend and directly contact with a peripheral side portion of said shield layer.
- 6. The cable connector of claim 1, wherein said PCB comprises terminal contacts each with a first end and a second end, one end of each of said terminal contacts electrically interconnecting with said second end of one of said plurality of traces.
- 7. The cable connector of claim 6, further comprising a dielectric core with notches defined therein, said dielectric core operable to be disposed over said PCB so that said terminal contacts are disposed in said notches.
- 8. The cable connector of claim 7, wherein said dielectric core is configured to be disposed between said printed circuit board and said shield structure.
- 9. The cable connector of claim 8, further comprising an external housing unit configured to house each of said shield structure, said dielectric core and said printed circuit board.
- 10. The cable connector of claim 9, further comprising an overmolding structure configured to be disposed over at least a portion of said at least one conductive cable and said housing unit.
- 11. The cable connector of claim 1, wherein at least one of said plurality of traces is configured as a grounding member.
- 12. A method of making a cable connector configured for a high frequency signal transmission, the method comprising:
providing a printed circuit board (“PCB”) having a first side with a plurality of conductive traces formed thereon, each trace having a first end and a second end, and a second side with a shield layer formed thereon; bonding the plurality of wires to the plurality of traces such that one wire is attached to the first end of one trace; providing a shield structure having at least one grounding contact; and securing the shield structure over the first side of the PCB and to a portion of the conductive cable such that the at least one grounding contact is coupled to a portion of the first side of the PCB and to the shield layer.
- 13. The method of claim 12, wherein said providing said shield structure comprises configuring said shield structure with a substantially C-shaped cross-section configured to be disposed over said first side of said PCB with ends wrapped around to said second side of said PCB.
- 14. The method of claim 12, wherein said providing said shield structure comprises configuring said shield structure with a substantially planar surface with end portions extending laterally from opposing ends of said planar surface and configured to interconnect with a portion of said shield layer.
- 15. The method of claim 14, wherein said configuring said shield structure comprises configuring said end portions of said shield structure to include said at least one grounding contact.
- 16. The method of claim 14, wherein said securing said shield structure comprises bonding an end of said end portions to a peripheral side portion of said shield layer.
- 17. The method of claim 12, further comprising providing terminal contacts and bonding said terminal contacts to said second end of said plurality of conductive traces on said PCB.
- 18. The method of claim 17, further comprising providing a dielectric core with notches defined therein.
- 19. The method of claim 18, further comprising disposing said dielectric core between said PCB and said shield structure with said terminal contacts disposed in said notches.
- 20. The method of claim 19, further comprising providing a housing unit configured to house each of said shield structure, said dielectric core and said PCB.
- 21. The method of claim 20, further comprising sliding each of said shield structure, said dielectric core and said PCB in said housing unit.
- 22. The method of claim 21, further comprising forming an over-mold structure configured to be disposed over at least a portion of said conductive cable and said housing unit.
- 23. The method of claim 12, wherein said providing said PCB comprises configuring at least one of said plurality of traces as a grounding member.
- 24. The method of claim 23, wherein said providing said shield structure comprises configuring said at least one grounding contact to be electrically interconnected to said grounding member.
- 25. A cable connector configured for high frequency signal transmission, the cable connector comprising:
a printed circuit board (“PCB”) having a first side with a plurality of conductive traces formed thereon, each trace having a first end and a second end, and a second side with a shield layer formed thereon; at least one conductive cable with a plurality of conductive wires, one end of each wire being coupled to the first end of one of the plurality of conductive traces; a plurality of terminal contacts each having a portion coupled to the second end of one of the plurality of conductive traces; a dielectric core having notches defined therein and operable to be disposed over the first side of the PCB with the plurality of terminal contacts and the ends of the plurality of conductive wires disposed in the notches defined in the dielectric core; and a shield structure having a substantially planar surface with end portions extending laterally from opposing ends of said planar surface, said shield structure operable to be disposed over said dielectric core with said end portions wrapped around to couple with a peripheral side portion of the shield layer so that said shield structure and said shield layer act in conjunction to provide a shielding package for said cable connector.
Parent Case Info
[0001] Priority is hereby claimed to U.S. Provisional patent application, serial no. 60/359,950 filed Feb. 25, 2002, in the U.S. Patent Office.
Provisional Applications (1)
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Number |
Date |
Country |
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60359950 |
Feb 2002 |
US |