Claims
- 1. A method of forming an optical coupler, comprising the steps of:
creating a plurality of electrical connectors; positioning a waveguide among said plurality of electrical connectors; and encapsulating at least a portion of the electrical connectors and at least a portion of the waveguide.
- 2. The method of forming an optical coupler as in claim 1, further comprising:
forming at least one alignment guide.
- 3. The method of forming an optical coupler as in claim 2, wherein the step of forming an alignment guide comprises:
bending a portion of a conductive plate to form a conduit.
- 4. The method of forming an optical coupler as in claim 1, wherein the step of creating a pair of electrical connectors comprises:
providing a leadframe and bending the leads.
- 5. The method of forming an optical coupler as in claim 1, wherein the step of creating electrical connectors comprises:
patterning a surface of a plate of conductive material, etching the plate of conductive material to form conductive leads, and bending the conductive leads.
- 6. The method of forming an optical coupler as in claim 1, further comprising the step of polishing an end of the waveguide.
- 7. The method of forming an optical coupler as in claim 1, further comprising the step of singulating.
- 8. The method of forming an optical coupler as in claim 1, further comprising:
attaching an alignment guide to a portion of at least one of the said plurality of electrical connectors.
- 9. The method of forming an optical coupler as in claim 1, further comprising:
attaching an alignment guide to a portion of said waveguide.
- 10. The method of forming an assembly with an optical coupler as in claim 1 wherein said plurality of electrical connectors is a pair of leadframes, further comprising:
electrically connecting at least one two dimensional array of photonic devices to the ends of said pair of leadframes.
- 11. The method of forming an assembly with an optical coupler as in claim 10 wherein the step of electrically connecting comprises:
soldering the two dimensional array of photonic devices to the ends of said pair of leadframes in a plane substantially perpendicular to the plane of at least one of said leadframes.
- 12. The method of forming an assembly with an optical coupler as in claim 11, further comprising:
forming electrical connections between portions of the first and second ones of said pair of leadframes.
- 13. The method of forming an assembly with an optical coupler as in claim 12, wherein the step of forming electrical connections is by means of a plurality of flexible conductors.
- 14. The method of forming an assembly with an optical coupler as in claim 11 further comprising:
attaching substrates to said pair of leadframes.
- 15. The method of forming an assembly with an optical coupler as in claim 11 further comprising:
connecting said planar substrates with electrically conducting pins.
- 16. The method of forming an assembly with an optical coupler as in claim 14 further comprising:
attaching a microelectronic component to at least one of said pair of substrates.
- 17. The method of forming an assembly with an optical coupler as in claim 14 further comprising:
providing an edge connector to at least one of said pair of substrates.
- 18. The method of forming an assembly with an optical coupler as in claim 11 further comprising:
plugging an array of optical fibers opposite to the two dimensional array of photonic devices.
- 19. The method of forming an assembly with an optical coupler as in claim 10, wherein said at least one two dimensional array of photonic devices comprises two one dimensional photonic arrays.
- 20. The method of forming an assembly with an optical coupler as in claim 10, wherein said at least one two dimensional array of photonic devices comprises an integrated two dimensional photonic array.
- 21. An optical coupler comprising:
a waveguide, a plurality of electrical connectors at least partially surrounding said waveguide; and an encapsulant surrounding at least portions of said waveguide and said plurality of electrical connectors.
- 22. An optical coupler as in claim 21 further comprising:
at least one alignment guide arranged in parallel with the direction of propagation in said waveguide.
- 23. An optical coupler as in claim 22 wherein said alignment guide is a hollow sleeve.
- 24. An optical coupler as in claim 23 further comprising:
a two dimensional photonic arrary attached to the plurality of electrical connectors in a plane substantially perpendicular to the direction of propagation in said waveguide.
- 25. An optical coupler as in claim 24 further comprising:
a fiber optic connector attached to said optical coupler wherein said fiber optic connector has at least one alignment protrusion adapted to be inserted into said alignment guide.
- 26. An optical coupler as in claim 24 wherein said alignment guide is adapted to be coupled to a fiber optic connector.
- 27. An optical coupler assembly comprising:
a waveguide, a plurality of electrical connectors at least partially surrounding said waveguide; a an encapsulant surrounding at least portions of said waveguide and said plurality of electrical connectors, and a pair of substrates attached to at least two of said plurality of electrical connectors.
- 28. An optical coupler assembly as in claim 27, further comprising:
an electrical connection between said pair of substrates.
- 29. An optical coupler assembly as in claim 28, wherein said electrical connection is by means of conductive pins.
- 30. An optical coupler assembly as in claim 28, wherein said electrical connection is by means of a flexible tape.
- 31. An optical coupler assembly as in claim 27 wherein one of said pair of substrates is formed of a flexible material and is attached to the other of said pair of substrates.
- 32. An optical coupler assembly as in claim 27 wherein at least one of said pair of substrates has at least one microelectronic device mounted thereon.
- 33. An optical coupler as in claim 24 wherein said two dimensional photonic array comprises:
at least one two dimensional photonic array device.
- 34. An optical coupler as in claim 24 wherein said two dimensional photonic array comprises:
at least two one dimensional photonic array devices.
CROSS REFERENCE TO RELATED APPLICATIONS AND PATENTS
[0001] 1. U.S. patent application Ser. No. 09/911,918, entitled APPARATUS FOR COUPLING A FIBER OPTIC CABLE TO AN OPTOELECTRONIC DEVICE, A SYSTEM INCLUDING THE APPARATUS, AND A METHOD OF FORMING THE SAME in the name of Golwalkar et al., filed on Jul. 24, 2001.
[0002] 2. U.S. patent application Ser. No. 10/056,757, entitled APPARATUS FOR COUPLING A OPTOELECTRONIC DEVICE TO A FIBER OPTIC CABLE AND MICROELECTRONIC DEVICE, A SYSTEM INCLUDING THE APPARATUS, AND A METHOD OF FORMING THE SAME, in the name of Golwalkar et al, filed on Jan. 23, 2002.