Coupler having reduction of reflections to light source
A coupler for coupling light between an optoelectronic element and an optical fiber. The coupler has a fiber stop that is made of a material that has an index of refraction that effectively matches the index of refraction of the optical fiber being coupled to the optoelectronic element. The fiber stop may be flat or rounded. It may be a discrete or molded part of the coupler assembly. The end of the fiber being stopped may be flat or rounded.
1 . A coupler comprising:
an optical fiber receiving structure; and
a fiber stop attached to said receiving structure; and
wherein said fiber stop has an index of refraction approximately the same as the index of refraction of a core of said optical fiber.
2 . The coupler of claim 1 , wherein said fiber stop is a window.
3 . The coupler of claim 2 , wherein the window comprises a glass material.
4 . The coupler of claim 2 , wherein the window comprises a plastic material.
5 . The coupler of claim 1 , wherein said fiber stop is a lens.
6 . The coupler of claim 5 , wherein the lens comprises a glass material.
7 . The coupler of claim 5 , wherein the lens comprises a plastic material.
8 . The coupler of claim 5 , wherein the lens is an aspherical lens.
9 . The coupler of claim 5 , wherein the lens is a spherical lens.
10 . A means for coupling comprising:
means for receiving an optical fiber;
means for stopping a received optical fiber, attached to said means for receiving an optical fiber; and
wherein said means for stopping a received optical fiber has an index of refraction approximately equal to an index of refraction of the received optical fiber.
11 . The coupler of claim 10 , wherein said means for stopping is a window.
12 . The coupler of claim 11 , wherein the window comprises a glass material.
13 . The coupler of claim 11 , wherein the window comprises a plastic material.
14 . The coupler of claim 10 , wherein said means for stopping is a lens.
15 . The coupler of claim 14 , wherein the lens comprises a glass material.
16 . The coupler of claim 14 , wherein the lens comprises a plastic material.
17 . The coupler of claim 14 , wherein the lens is an aspherical lens.
18 . The coupler of claim 14 , wherein the lens is a spherical lens.
19 . A method for coupling comprising:
receiving an optical fiber or coupling; and
restraining the receiving of the optical fiber with a mechanism having an index of refraction approximately equal to the index of refraction of the optical fiber.
20 . The method of claim 19 , wherein the mechanism is a window.
21 . The method of claim 20 , wherein the window comprises a glass material.
22 . The method of claim 20 , wherein the window comprises a plastic material.
23 . The method of claim 19 , wherein the mechanism is a lens.
24 . The method of claim 23 , wherein the lens comprises a glass material.
25 . The method of claim 23 , wherein the lens comprises a plastic material.
26 . The method of claim 23 , wherein the lens is an aspherical lens.
27 . The method of clam 23 , wherein the lens is a spherical lens.
28 . The method of claim 23 , wherein the lens has a flat surface facing the optical fiber that may be received.
29 . The method of claim 23 , wherein the lens has a curved surface facing the optical fiber that may be received.
30 . A coupler comprising:
a sleeve;
a window situated at a first end of said sleeve; and
a lens situated at a surface of said window opposite of a surface of said window proximate to said sleeve.
31 . The coupler of claim 30 , wherein:
said sleeve has a diameter so that an optical fiber can be inserted with an end stopped by the surface of said window proximate to said sleeve; and
said window has an index of refraction about the same as the index of refraction of optical fiber.
32 . The coupler of claim 31 , wherein said lens is a ball lens.
33 . The coupler of claim 31 , wherein said lens is formed on the surface of said window.
34 . The coupler of claim 33 , further comprising a light source proximate to said lens.