Claims
- 1. An optical part for a sleeve for an optical module for optically coupling an optical device to an optical fiber, said optical part comprising:
a light-transmitting portion, transparent to light propagating through said optical fiber, having a pair of faces intersecting a predetermined axis extending along a predetermined face, one of said pair of faces being provided so as to abut against an end of said optical fiber, the other of said pair of faces being tilted with respect to a plane orthogonal to said predetermined axis; and a supporting portion provided adjacent to said light-transmitting portion and provided to be held with said sleeve; wherein said optical part is constituted by material transparent to light associated with said optical device.
- 2. The optical part according to claim 1, wherein said one face of said pair of faces comprises a curved surface provided so as to project.
- 3. The optical part according to claim 1, wherein said other of said pair of faces is tilted at an angle of at least five degrees but not greater than eight degrees.
- 4. The optical part according to claim 1, wherein said supporting portion comprises a reference surface extending along said predetermined face.
- 5. The optical part according to claim 1, further comprising a protrusion projecting in a direction of another axis intersecting said predetermined axis;
wherein said protrusion includes a reference surface extending along said predetermined face.
- 6. The optical part according to claim 1, further comprising a protrusion having first and second portions, said protrusion projecting in a direction of another axis intersecting said predetermined axis, said first portion being provided adjacent to said second portion;
wherein said protrusion includes a reference surface, provided with said first portion, extending along said predetermined face.
- 7. The optical part according to claim 1, further comprising a protrusion having a reference surface extending along said predetermined face, said protrusion comprising first to third portions projecting from said supporting portion in a direction of another axis intersecting said predetermined axis;
wherein said reference surface is provided with said first portion; wherein said reference surface has a first area adjacent to said second portion, a second area adjacent to said third portion, and a third area positioned between said first and second areas; wherein a distance between said first area and said supporting portion is greater than that between said third area and said supporting portion; and wherein a distance between said second area and said supporting portion is greater than that between said third area and said supporting portion.
- 8. The optical part according to claim 7, wherein said first portion is held between said second and third portions; and
wherein said supporting portion has a curved side face provided adjacent to said second and third portions.
- 9. The optical part according to claim 1, wherein said material has a refractive index n of at least 1.36 but not greater than 1.56.
- 10. The optical part according to claim 1, further comprising an antireflection film provided on at least one of said pair of faces.
- 11. The optical part according to claim 1, wherein said material is optical glass.
- 12. The optical part according to claim 11, further comprising a moisture-resistant coating film provided on at least one of said pair of faces.
- 13. The optical part according to claim 12, wherein said moisture-resistant coating film includes at least one of a silicon oxide film and a titanium oxide film.
- 14. The optical part according to claim 1, wherein said material is a molding resin.
- 15. The optical part according to claim 14, further comprising a reinforcement film provided on at least one of said pair of faces.
- 16. The optical part according to claim 14, further comprising a moisture-resistant protective film provided on at least one of said pair of faces.
- 17. An optical part used in contact with an end of an optical fiber, said optical part being made from a single material transparent to light transmitted through said optical fiber, said optical part comprising;
an optical fiber contacting face provided in contact with said end of said optical fiber so as to cover the whole of said end of said optical fiber; and a light emitting face, tilted with respect to a plane perpendicular to an axis of said optical fiber, provided to be opposed to said optical fiber contacting face.
- 18. The optical part according to claim 17, wherein said material has a refractive index n of at least 1.36 but not greater than 1.56.
- 19. The optical part according to claim 17, further comprising an antireflection film provided on at least one face of said optical fiber contacting face and said light emitting face.
- 20. The optical part according to claim 17, wherein said light-transmitting material is optical glass.
- 21. The optical part according to claim 20, wherein at least one face of said optical fiber contacting face and said light emitting face is provided with a moisture-resistant coating.
- 22. The optical part according to claim 21, wherein said moisture-resistant coating comprises one of a silicon oxide film and a titanium oxide film.
- 23. The optical part according to claim 17, wherein said light-transmitting material is a light-transmitting resin.
- 24. The optical part according to claim 23, further comprising a light-transmitting reinforcement thin film provided on a surface of said light-transmitting resin.
- 25. The optical part according to claim 23, wherein a light-transmitting moisture-resistant protective film is provided on a surface of said light-transmitting resin.
- 26. The optical part according to claim 17, wherein said optical fiber contacting face comprises a convex surface.
- 27. The optical part according to claim 17, wherein said light emitting face is tilted at an angle of at least five degrees but not greater than eight degrees.
- 28. The optical part according to claim 17, further comprising tilting direction indicating means for making a direction of inclination of said light emitting face discernible from an exterior.
- 29. A sleeve for an optical receiving module comprising:
a ferrule engaging portion for engaging a ferrule provided at an end of an optical fiber; a optical part according to claim 17 provided adjacent to said ferrule engaging portion and provided to abut against an end of said optical fiber when said optical fiber is engaged in said ferrule engaging portion; and a photoelectric transducer attachment, a photoelectric transducer being attached thereto, said photoelectric transducer attachment being provided in one end of said sleeve, said ferrule engaging portion being provided in the opposite of said sleeve.
- 30. A sleeve, made from a single light-transmitting material, for an optical receiving module, said sleeve comprising:
a ferrule engaging portion for engaging a ferrule disposed at an end part of an optical fiber; an optical fiber contacting face provided adjacent to said ferrule engaging portion and provided to abut against an end of said optical fiber when said optical fiber is engaged in said ferrule engaging portion; an light emitting face, tilted with respect to a cross section of said optical fiber perpendicular to the axis thereof, for emitting light incident on said optical fiber contacting face; and a photoelectric transducer attachment for attaching a photoelectric transducer thereto, said photoelectric transducer attachment being provided in one end of said sleeve, said ferrule engaging portion being provided in the other end of said sleeve.
- 31. An optical receiving module comprising:
a sleeve for an optical receiving module according to claim 29; and a photoelectric transducer attached to said photoelectric transducer attachment of said sleeve and having an optical lens working on light from said optical fiber.
- 32. The receiving module according to claim 31, wherein said optical lens is placed such that a geometric center of gravity thereof deviates from an extension of the center axis of said optical fiber.
- 33. An optical communication module comprising:
a sleeve for an optical receiving module according to claim 30;a photoelectric transducer attached to said photoelectric transducer attachment of said sleeve and having an optical lens working on light from said optical fiber.
- 34. An optical communication module comprising:
a first receptacle for accommodating an end of an receiving optical fiber; an optical receiving module according to claim 31 provided adjacent to said first receptacle, said optical receiving module converting an optical signal into an electric signal, an optical signal being from an end of said receiving optical fiber; a second receptacle for accommodating an end of a transmitting optical fiber; and a transmitting module disposed adjacent to said second receptacle, said transmitting module converting an electric signal into an optical signal and then emitting thus converted optical signal.
- 35. A sleeve for an optical module for optically coupling an optical device to an optical fiber, said sleeve comprising:
a first portion provided so as to receive a ferrule for holding said optical fiber; a second portion provided so as to receive a optical subassembly including said optical device; and a third portion provided between said first and second portions; wherein said first to third portions are arranged along a predetermined axis extending along a predetermined plane; wherein said third portion comprises a light-transmitting portion, transparent to light propagating through said optical fiber, having a pair of faces intersecting said predetermined axis, one of said pair of faces being provided so as to abut against an end of said optical fiber, the other of said pair of faces being tilted with respect to a plane orthogonal to said predetermined axis; and wherein said sleeve is made from material transparent to light concerning said optical device.
- 36. A sleeve for an optical module for optically coupling an optical device to an optical fiber, said sleeve comprising:
an optical part according to claim 1; and first to third portions arranged along said predetermined axis; wherein said first portion is provided so as to receive a ferrule for holding said optical fiber; wherein said second portion is provided so as to receive an optical subassembly including said optical device; wherein said third portion holds said optical portion; and wherein said third portion is provided between said first and second portions.
- 37. A sleeve for an optical communication module for optically coupling an optical device to an optical fiber, said sleeve comprising:
an optical part according to claim 4; and first to third portions arranged along said predetermined axis; wherein said first portion has an inner side face provided so as to receive therein a ferrule for holding said optical fiber; wherein said second portion has an inner side face provided to receive an optical subassembly including said optical device; wherein said third portion is provided between said first and second portions; wherein said third portion has at least one inner side face extending in a direction of said predetermined axis; and wherein said third portion holds said optical part such that said reference face of said optical part is separated from said inner side face of said third portion.
- 38. The sleeve according to claim 37, wherein said third portion further comprises a plurality of projections for holding said optical part; and
wherein said supporting portion of said optical part is separated from said inner side face of said third portion to form one or more gaps between said supporting portion and said inner side face of said third portion and between said plurality of projections.
- 39. The sleeve according to claim 38, wherein the number of gaps is three or more.
- 40. The sleeve according to claim 38, wherein the number of gaps is four.
- 41. An optical receiving module comprising:
a sleeve according to claim 35; and an optical subassembly attached to said second portion of said sleeve so as to be optically coupled with said optical part; wherein said optical subassembly has an optical device and an optical lens provided so as to be optically coupled with said optical device; and wherein said optical device includes a semiconductor light-receiving element.
- 42. An optical receiving module comprising:
a sleeve according to claim 36; and an optical subassembly attached to said second portion of said sleeve so as to be optically coupled with the other of said pair of faces in said third portion of said sleeve; wherein said optical subassembly has an optical device, and an optical lens provided so as to be optically coupled with said optical device and said other of said pair of faces; and wherein said optical device includes a semiconductor light-receiving element.
- 43. An optical receiving module comprising:
a sleeve according to claim 37; and an optical subassembly attached to said second portion of said sleeve so as to be optically coupled with the other of said pair of faces in said third portion of said sleeve; wherein said optical subassembly has an optical device, and an optical lens provided so as to be optically coupled with said optical device and said other of said pair of faces; and wherein said optical device includes a semiconductor light-receiving element.
- 44. The receiving module according to claim 43, wherein said optical lens is positioned such that an optical axis of said optical lens deviates from said predetermined axis.
- 45. An optical communication module comprising:
a housing comprising a first receptacle provided to accommodate an end of an optical fiber for propagating receiving light therethrough, and a second receptacle provided to accommodate an end of an optical fiber for propagating transmitting light therethrough; an optical receiving module according to claim 41 provided in said housing so as to receive said receiving light; and an optical transmitting module provided in said housing so as to provide said transmitting light.
- 46. An optical communication module comprising:
a housing comprising a first receptacle provided to accommodate an end of an optical fiber for propagating receiving light therethrough, and a second receptacle provided to accommodate an end of an optical fiber for propagating transmitting light therethrough; an optical receiving module according to claim 42 provided in said housing so as to receive said receiving light; and an optical transmitting module provided in said housing so as to provide said transmitting light.
Priority Claims (1)
Number |
Date |
Country |
Kind |
P2001-148245 |
May 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of the claiming priority of U.S. Provisional application Ser. No. 60/295,015, filed on Jun. 4, 2001, which provisional application is incorporated by reference herein.
Provisional Applications (1)
|
Number |
Date |
Country |
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60295015 |
Jun 2001 |
US |