Claims
- 1. A hybrid electrical-optical connector apparatus, comprising:
a metallic extruded housing having a plurality of channels formed therein during extrusion and having an insulating coating formed on the inside of the channels; an intermediate printed circuit board having an upper planar surface with a plurality of solder tails formed thereon, and a corresponding plurality of electrical contact pins connected to respective solder tails and spaced apart so as to be capable of mating with said plurality of channels; one or more vertical cavity surface emitting lasers (VCSELs) mounted to the upper planar surface so as to be in electrical communication with corresponding solder tails; one or more optical fibers connected to the intermediate printed circuit board and arranged so that each optical fiber cable is in optical communication with a corresponding one of the one or more VCSELs.
- 2. An apparatus according to claim 1, further including one or more electrical wires connected to the second end of the intermediate printed circuit board and to respective available solder tails.
- 3. An apparatus according to claim 1, wherein the one or more VCSELs are arranged to receive an electrical signal and convert the electrical signal to an optical signal.
- 4. An apparatus according to claim 1, wherein the one or more VCSELs are arranged to receive an optical signal and convert the optical signal to an electrical signal.
- 5. An apparatus according to claim 1, wherein each VCSEL receives a positive voltage provided through at least one of the contact pins and the conductive housing, and is grounded through a connection tension points and the conductive housing.
- 6. A system for connecting two remote circuits, comprising
the hybrid electrical-optical connector of claim 1; a first remote circuit electrically connected to the hybrid electrical-optical connector; a second remote circuit electrically and optically connected to the hybrid electrical-optical connector.
- 7. A system according to claim 6, wherein the first and second remote circuits are at least one of a back plane, a mother boards, and a distribution panel.
- 8. A method of connecting remote circuits, comprising:
proving the hybrid electrical-optical assembly of claim 1; electrically connecting a first remote circuit to one or more of the contact pins of the hybrid electrical-optical assembly; and optically connecting a second remote circuit to one or more of the one or more VCSELs.
- 9. A method according to claim 8, wherein the step of electrically connecting the first remote circuit includes transmitting a high-speed digital electrical signal.
- 10. A method according to claim 8, wherein electrically connecting the first remote circuit involves providing an electrical wire between the first remote circuit and to the one or more contact pins.
- 11. A method according to claim 10, wherein the electrical wire is part of an electrical cable.
- 12. A method according to claim 8, wherein the step of optically connecting involves providing an optical fiber optically coupled to the second remote circuit and to the one or more VCSELs.
- 13. A method according to claim 12, wherein the optical fiber is part of an optical fiber cable.
RELATED APPLICATION AND CROSS-REFERENCE
[0001] This application is a continuation-in-part of U.S. Pat. No. ______, entitled “Extruded metallic electrical connector assembly and method of producing same,” formerly U.S. patent application Ser. No. 09/614,171.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09614171 |
Jul 2000 |
US |
Child |
09899394 |
Jul 2001 |
US |