Claims
- 1. An optoelectronic subassembly, comprising:
an optical fiber comprising a fiber cladding having a first thickness surrounding a fiber core; and an optoelectronic device optically coupled to a distal end of said optical fiber, wherein said distal end comprises a slanted end face and wherein a portion of said fiber cladding between said optoelectronic device and said fiber core has a second thickness less than said first thickness to allow said optoelectronic device to be more closely coupled to the slanted end face.
- 2. The optoelectronic subassembly of claim 1 wherein angle of said slanted end face is in a range of about 45-55 degrees.
- 3. The optoelectronic subassembly of claim 1 wherein said second thickness is in a range of about 1-5 μm.
- 4. The optoelectronic subassembly of claim 1 wherein said optoelectronic device comprises a optoelectronic transmitter.
- 5. The optoelectronic subassembly of claim 1 wherein said optoelectronic transmitter comprises a VCSEL.
- 6. The optoelectronic subassembly of claim 1 wherein said optoelectronic transmitter comprises an edge emitter.
- 7. The optoelectronic subassembly of claim 1 wherein said optoelectronic device comprises a optoelectronic transceiver having a optoelectronic transmitter and an optoelectronic receiver.
- 8. The optoelectronic subassembly of claim 1 wherein said optoelectronic device is mounted in a housing and wherein said housing is adapted to receive said distal end of said optical fiber.
- 9. The optical receiver of claim 8 wherein said housing comprises a hermetically sealed housing.
- 10. An optoelectronic subassembly, comprising:
a plurality of optical fibers, wherein each of said optical fibers comprises a fiber cladding having a first thickness surrounding a fiber core; and a plurality of optoelectronic devices, wherein each of said plurality of optoelectronic devices is optically coupled to a distal end of a unique one of said plurality of optical fibers, wherein each of said plurality of distal fiber ends comprises a slanted end face and wherein a portion of said fiber cladding between each of said plurality of optoelectronic devices and said plurality of fiber cores has a second thickness less than said first thickness.
- 11. The optoelectronic subassembly of claim 10 wherein angle of said plurality of slanted end faces is in a range of about 45-55 degrees.
- 12. The optoelectronic subassembly of claim 10 wherein said second thickness is in a range of about 1-5 μm.
- 13. The optoelectronic subassembly of claim 10 wherein said plurality of optoelectronic devices comprises a plurality of optoelectronic transmitters.
- 14. The optoelectronic subassembly of claim 10 wherein said plurality optoelectronic transmitters comprises a plurality of VCSELs.
- 15. The optoelectronic subassembly of claim 10 wherein said plurality optoelectronic transmitters comprises a plurality of edge emitters.
- 16. The optoelectronic subassembly of claim 10 wherein said plurality optoelectronic devices comprises a plurality of optoelectronic transceivers, wherein each of said plurality of optoelectronic transceivers comprises a optoelectronic transmitter and an optoelectronic receiver.
- 17. The optoelectronic subassembly of claim 10 wherein said plurality of optoelectronic devices are mounted in a housing and wherein said housing is adapted to receive said distal end of said optical fiber.
- 18. The optical receiver of claim 17 wherein said housing comprises a hermetically sealed housing.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 09/904,091, entitled “HIGH SPEED FIBER TO PHOTODETECTOR INTERFACE”, filed Jul. 12, 2001, the content of which is incorporated herein by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
| Parent |
09904091 |
Jul 2001 |
US |
| Child |
10162480 |
Jun 2002 |
US |