Claims
- 1. A differential signal connector for transferring a plurality of differential signals between electronic components, comprising:
a molded dielectric connector housing, the housing having distinct first and second engagement faces disposed on distinct sides of the housing, said housing having a plurality of walls formed therewith which intersect together to cooperatively define at least one aperture extending through said housing in a path between said two engagement faces, said housing including at least one conductive ground terminal held thereby on the second engagement face; a terminal assembly supporting a pair of differential signal terminals, the terminals extending along a path the length of the housing aperture, each terminal including contact and tail portions disposed at opposite ends thereof, the terminal contact and tail portions respectively extending out of said housing aperture and past said housing first and second engagement faces, the terminal assembly including a frame that supports said terminals within said aperture, said terminals further including body portion interconnecting said contact and tail portions together, said frame maintaining said terminal body portions apart from each other within said differential signal terminal pair in a preselected spacing apart throughout said frame, said frame dielectric material filling the spacing between said terminal body portions to promote coupling between said terminal body portions of said differential signal terminal pair; and said connector housing including a conductive plating disposed exterior surfaces at said housing aperture and said second engagement surface, the conductive plating contacting said connector housing ground second terminal for connection to a ground circuit to thereby define a ground reference for said differential signal terminal pair through said housing aperture and between said housing first and second engagement faces.
- 2. The differential signal connector of claim 1, wherein said connector housing includes at least four distinct apertures that are formed by the intersection of the connector housing walls, said four apertures being arranged in a pattern defining two columns and two apertures; and four terminal assemblies, one terminal assembly being disposed in each one of said four housing apertures.
- 3. The differential signal connector of claim 1, wherein said first and second engagement faces are disposed opposite to each other, and each of said housing first and second engagement surfaces includes at least one recess formed therein, each of the recesses receiving one of said ground terminals therein.
- 4. The differential signal connector of claim 1, wherein said engagement first and second faces are disposed adjacent to each other in said connector housing.
- 5. The differential signal connector of claim 1, wherein said first and second engagement faces are disposed on said housing so that they extend in respective transverse directions, and said housing aperture extends in an L-shaped path between said first and second engagement faces.
- 6. The differential signal connector of claim 1, wherein said frame includes at least two openings formed therein and disposed on opposite sides of said terminal assembly, each of said openings exposing said body portions of one of said terminals to air, said openings defining a dielectric air gap between said terminal body portions and plated surfaces of said housing aperture.
- 7. The differential signal connector of claim 1, wherein all exterior surfaces of said connector housing have said conductive material plating thereon.
- 8. The differential signal connector of claim 2, wherein all exterior surfaces of said connector housing have a conductive plating thereon and said second engagement face includes a plurality of recesses formed therein, each recess receiving a ground terminal therein, said ground terminals being arranged on said second engagement face to separate tail portions of said differential signal terminal pairs into discrete groups of tail portions.
- 9. The differential signal connector of claim 1, wherein said connector housing first engagement face includes at least two ground members integrally formed with said connector housing and extending parallel to said terminal contact portions.
- 10. The differential signal connector of claim 1, wherein said housing is formed from two housing halves.
- 11. The differential signal connector of claim 2, wherein said housing includes first and second housing halves, each housing half including aperture halves that cooperate to define said apertures, the aperture halves of the first housing half extending at an angle to said aperture halves of said second housing half.
- 12. The differential signal connector of claim 1, wherein said terminals of each differential signal pair extend parallel to each other.
- 13. The differential signal connector of claim 11, further including a retainer member that engages both of said housing halves to hold them together as a single connector.
- 14. The differential signal connector of claim 13, wherein said retainer member includes first and second engagement arms extending transversely to each other, the first engagement arm engaging slots disposed on said first connector housing half and the second engagement arm fitting over and engaging posts disposed on said second connector housing half.
- 15. The differential signal connector of claim 11, wherein each of said housing halves has a stepped configuration.
- 16. The differential signal connector of claim 1, wherein said first housing half includes a shroud portion that at least partially encircles said first engagement face.
- 17. The differential signal connector of claim 11, wherein said first housing half includes a plurality of conductive ground members formed therewith and disposed in an alternating arrangement on said first engagement face.
- 18. A connector for transmitting differential signals between two electronic components, comprising:
an insulative housing having a housing body with defined first and second contact faces for contacting the two electronic components, the housing body including a plurality of passages extending through said housing in paths between the first and second contact faces, all of the exterior surfaces of said connector housing being plated with a conductive material to render it conductive, said connector housing further including a plurality of ground contacts disposed on said first contact face; a plurality of terminal assemblies disposed in said passages, each terminal assembly supporting at least one pair of differential signal terminals, the terminals of each terminal pair including tail portions, contact portions and interconnecting body portions, each terminal assembly further including a support frame formed from a dielectric material that partially encapsulates the terminal body portions and which maintains a preselected spacing between said terminal body portions, the spacing being filled with the support frame dielectric material to enhance coupling between terminals of each of said differential signal terminal pairs; and, said conductive plating serving to provide a reference ground in each of said differential signal terminal pairs in their path through said housing body and between said first and second contact faces thereof to deter coupling between said differential signal terminal pairs.
- 19. A connector assembly for use in docking applications and for connecting a plurality of differential signal circuits on two different circuit boards together, comprising:
first and second interengageable connector components, one of the two connector components including a male mating end and the other of the connector components including a female mating end which receives the male mating end of the first connector; the first and second connector components each including respective upper and lower insulative housings that fit together to define each of said first and second connector components, each of the housing including a plurality of cavities, the cavities in said upper housings extending therethrough in one direction and the cavities in said lower housing extending therethrough in another direction, such that when said upper and lower housings are assembled together into said first and second connector components, a plurality of L-shaped cavities are defined in said first and second connector components; said upper and lower housings of said first and second connector components having a conductive coating formed on exterior surfaces thereof, said first and second connector components further including a plurality of ground terminals associated therewith which contact said conductive coating and serve to electrically connect said conductive coating to ground circuits on said circuit boards, whereby said conductive coating on said first and second connector components provides a ground around each of said connector component internal cavities; and, a plurality of terminal assemblies received in said first and second connector component L-shaped cavities, each of the terminal assemblies including a plurality of conductive terminals, the terminals including contact portions for contacting opposing terminals of a connector, tail portions for connecting the terminals to circuits on said circuit boards and intermediate portions which interconnect said contact and tail portions together, said terminals being at least partially held within insulating body portions and the terminals being divided into separate pairs of differential signal terminals, the pairs of differential signal terminals being spaced apart from each other in a first direction and two terminals which make up each differential signal terminal pair being spaced apart from each other in a second direction, said terminal assemblies being received within said first and second connector component cavities, and said terminal assemblies having alternating male and female contact portions so that said terminal contact portion of said first and second connector components engage each other when said first and second connector assemblies are mated together, said conductive coating on said first and second connector components substantially surrounding said terminal assemblies in said contact portions thereof when said first and second connector components are engaged together.
- 20. A connector for transmitting differential signals between two electronic components, comprising:
an insulative housing having a housing body with first and second parallel contact faces for contacting the two electronic components, the housing body including a plurality of passages extending through said housing in paths between the first and second contact faces, all of the exterior surfaces of said connector housing being plated with a conductive material to render it conductive, said connector housing further including a plurality of ground contacts disposed on said first contact face, said housing further including two mounting portions disposed at opposite ends thereof and a web portion extending between the mounting portions, the web portion defining at least one nest area of said housing for partially covering an adjacent connector a plurality of terminal assemblies disposed in said passages, each terminal assembly supporting at least one pair of differential signal terminals, the terminals of each terminal pair including tail portions, contact portions and interconnecting body portions, each terminal assembly further including a support frame formed from a dielectric material that partially encapsulates the terminal body portions and which maintains a preselected spacing between said terminal body portions, the spacing being filled with the support frame dielectric material to enhance coupling between terminals of each of said differential signal terminal pairs; and, said conductive plating serving to provide a reference ground in each of said differential signal terminal pairs in their path through said housing body and between said first and second contact faces thereof to deter coupling between said differential signal terminal pairs.
REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority from United States Provisional Patent Applications Serial No. 60/378,319, filed May 6, 2002 and 60/454,403, filed Mar. 13, 2003.
Provisional Applications (2)
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Number |
Date |
Country |
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60378319 |
May 2002 |
US |
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60454403 |
Mar 2003 |
US |