Claims
- 1. An optical fiber link module comprising:
a multiple array lens; a female connector disposed around the multiple array lens, the female connector having an internal cavity; an electromagnetic shield disposed in the internal cavity, the electromagnetic shield having a single central aperture sized to permit communication by the multiple array lens through the central aperture; and an optical fiber adapted to be received by the female connector.
- 2. The optical fiber link module of claim 1 wherein the electromagnetic shield comprises a planar section and a plurality of spring arms disposed around the planar section.
- 3. The optical fiber link module of claim 1 further comprising a heat sink in electrical communication with the female connector.
- 4. The optical fiber link module of claim 3 wherein the electromagnetic shield is in electrical communication with the female connector.
- 5. The optical fiber link module of claim 1 further comprising a heat sink in electrical communication with the electromagnetic shield.
- 6. The optical fiber link module of claim 1 wherein the female connector comprises metal.
- 7. The optical fiber link module of claim 1 wherein the female connector comprises aluminum.
- 8. The optical fiber link module of claim 1 wherein the female connector comprises an upper portion and a lower portion.
- 9. The optical fiber link module of claim 1 wherein the fiber optic cable is removable from the female connector.
- 10. The optical fiber link module of claim 1 wherein the shield comprises a sheet of a metallic material.
- 11. The optical fiber link module of claim 10 wherein the metallic material is selected from the group consisting of gold, silver, copper, zinc and nickel or alloys thereof.
- 12. An optical fiber link module assembly, comprising:
a multiple array lens; a female connector including an upper portion and a lower portion, the female connector being disposed around the multiple array lens, the female connector having an internal cavity; a fiber optic cable adapted to be removably connected to the female connector; and an electromagnetic shield disposed in the internal cavity, the electromagnetic shield having a single central aperture sized to permit communication by the multiple array lens through the central aperture.
- 13. The optical fiber link module of claim 12 wherein the electromagnetic shield comprises a planar section and a plurality of spring arms disposed around the planar section.
- 14. The optical fiber link module of claim 12 further comprising a heat sink in electrical communication with the female connector.
- 15. The optical fiber link module of claim 14 wherein the electromagnetic shield is in electrical communication with the female connector.
- 16. The optical fiber link module of claim 12 further comprising a heat sink in electrical communication with the electromagnetic shield.
- 17. The optical fiber link module of claim 12 wherein the female connector comprises metal.
- 18. The optical fiber link module of claim 12 wherein the female connector comprises aluminum.
- 19. The optical fiber link module of claim 12 wherein the shield comprises a sheet of a metallic material.
- 20. An optical fiber link module comprising:
a multiple array lens; a female connector disposed around the multiple array lens, the female connector having an internal cavity; a heat sink in electrical communication with the female connector; an electromagnetic shield disposed in the internal cavity in thermal communication with the female connector, the electromagnetic shield having a single central aperture sized to permit communication by the multiple array lens through the central aperture; and an optical fiber adapted to be received by the female connector.
RELATED APPLICATIONS
[0001] This application claims priority to U.S. patent application Ser. No. 09/956,771 filed on Sep. 20, 2001 entitled “Fiber Optic Transceiver, Connector, And Method of Dissipating Heat” by Johnny R. Brezina, et al., the entire disclosure of which is incorporated by reference, herein.