Claims
- 1. An optical module comprising:
an optical fiber; a planar lens; and a transparent member having a nearly spherical concave portion formed on a first surface thereof; wherein an end surface of said optical fiber is fixed in said concave portion of said transparent member so as to abut thereon; and said planar lens is joined to a second surface of said transparent member opposite to said first surface so that an optical axis of said optical fiber is coincident with an optical axis of said planar lens whereby said optical fiber and said planar lens are optically coupling to each other.
- 2. An optical module according to claim 1, wherein said optical fiber is processed so that a tip portion of a core of said optical fiber is protruded from a clad of said optical fiber.
- 3. An optical module according to claim 1, further comprising a filler material having a refractive index higher than a refractive index of said transparent member, wherein said concave portion formed in said transparent member is filled with said filler material to thereby fix said optical fiber.
- 4. An optical module according to claim 3, wherein a difference between a refractive index of said filler material provided in said concave portion and a refractive index of said transparent member is in a range of from 0.15 to 0.35 at a wavelength used.
- 5. An optical module according to claim 4, wherein a ratio of a curvature radius of one of said concave portions to a diameter of said optical fiber at a portion closed by the corresponding optical fiber abutting on said concave portion is in a range of from 0.5 to 0.7.
- 6. An optical module comprising:
a plurality of optical fibers; a planar lens array having a plurality of lens elements arranged therein; and a transparent member on a first surface of which a plurality of nearly spherical concave portions are formed so as to correspond to an arrangement of said lens elements; wherein end portions of said optical fibers are fixed in said concave portions of said transparent member so as to abut thereon respectively; and said planar lens array is joined to a second surface of said transparent member opposite to said first surface so that optical axes of said optical fibers are coincident with optical axes of said lens elements of said planar lens array respectively, whereby said plurality of optical fibers and said plurality of lens elements are optically coupled to each other respectively.
- 7. An optical module according to claim 6, wherein each optical fiber is processed so that a tip portion of a core of said optical fiber is protruded from a clad of said optical fiber.
- 8. An optical module according to claim 6, further comprising a filler material having a refractive index higher than a refractive index of said transparent member, wherein each concave portion formed in said transparent member is filled with said filler material to thereby fix said optical fiber.
- 9. An optical module according to claim 8, wherein a difference between the refractive index of said filler material provided in each concave portion and the refractive index of said transparent member is in a range of from 0.15 to 0.35 at a wavelength used.
- 10. An optical module according to claim 9, wherein a ratio of a curvature radius of one of said concave portions to a diameter of said optical fiber at a portion closed by the corresponding optical fiber abutting on said concave portion is in a range of from 0.5 to 0.7.
- 11. An optical module according to claim 6, wherein a distance between optical axes of adjacent ones of said lens elements is in a range of from 50 μm to 125 μm.
- 12. An optical module comprising:
an optical fiber; a transparent member having a nearly spherical concave portion formed on a first surface thereof; wherein an end surface of said optical fiber is fixed in said concave portion of said transparent member so as to abut thereon.
- 13. An optical module according to claim 12, wherein said optical fiber is processed so that a tip portion of a core of said optical fiber is protruded from a clad of said optical fiber.
- 14. An optical module according to claim 12, further comprising a filler material having a refractive index higher than a refractive index of said transparent member, wherein said concave portion formed in said transparent member is filled with said filler material to thereby fix said optical fiber.
- 15. An optical module according to claim 14, wherein a difference between a refractive index of said filler material provided in said concave portion and a refractive index of said transparent member is in a range of from 0.15 to 0.35 at a wavelength used.
- 16. An optical module according to claim 15, wherein a ratio of a curvature radius of one of said concave portions to a diameter of said optical fiber at a portion closed by the corresponding optical fiber abutting on said concave portion is in a range of from 0.5 to 0.7.
- 17. An optical module according to claim 12, wherein a plurality of optical fibers are fixed in a plurality of nearly spherical concave portions formed on said first surface of said transparent member, respectively.
Priority Claims (1)
Number |
Date |
Country |
Kind |
P2002-139110 |
May 2002 |
JP |
|
Parent Case Info
[0001] The present application is based on Japanese Patent Application No. 2002-139110, the entire contents of which are incorporated herein by reference.