Branching device for fiber optic circuits
US-2016327740-A1 · Nov 10, 2016 · US
US10983281B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10983281-B2 |
| Application number | US-201816609775-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 2, 2018 |
| Priority date | May 4, 2017 |
| Publication date | Apr 20, 2021 |
| Grant date | Apr 20, 2021 |
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The light source arrangement may comprise a broadband light source and a multimode coupler configured for receiving one or more light beams from the light source arrangement, wherein the one or more light beams being derived from the broadband light source and wherein a mode scrambler is arranged for mode scrambling one of said light beams before it enters the multimode coupler.
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The invention claimed is: 1. A light source assembly having N outputs, where N is an integer, the assembly comprising: a light source arrangement arranged for supplying light to M inputs, where M is an integer and where M≥2 and M≤N; a plurality of optical couplers each having at least one input arm and a plurality of output arms; and an integer number, P, of mode scramblers; and wherein the plurality of optical couplers is arranged to divide the light supplied to the M inputs to the N outputs, where each of the N outputs includes light supplied to each of the M inputs; and wherein for at least one of the M inputs there is a respective mode scrambler of the P mode scramblers in the optical communication path between the light source arrangement and the at least one of the M inputs, and wherein at least one mode scrambler of the P mode scramblers is arranged in an optical communication path between an output arm of one optical coupler of the plurality of optical couplers and an input arm of a different optical coupler of the plurality of optical couplers. 2. The light source assembly of claim 1 , wherein for a plurality of the M inputs there is a respective mode scrambler of the P mode scramblers in the optical communication path between the light source arrangement and the respective M inputs. 3. The light source of claim 2 , wherein for at least two and/or for all of the M inputs there is a respective mode scrambler of the P mode scramblers in the optical communication path between the light source assembly and the respective M inputs. 4. The light source assembly of claim 1 , wherein the M inputs are input arms of a first line optical coupler of the plurality of optical couplers and wherein M is from 2 to 10. 5. The light source assembly of claim 4 , wherein said first line optical coupler comprises said one optical coupler. 6. The light source assembly of claim 4 , wherein each of two or more output arms of the first line optical coupler is in optical communication via an optical communication path with an input arm of a respective second line optical coupler of the plurality of optical couplers. 7. The light source assembly of claim 6 , wherein an output arm of at least one of the second line couplers is in optical communication via an optical communication path with an input arm of a third line-coupler of the optical couplers. 8. The light source of claim 7 , wherein said optical communication path is an optical communication path comprising a respective mode scrambler of the P mode scramblers. 9. The light source of claim 6 , wherein each of said optical communication paths comprises a respective mode scrambler of the P mode scramblers. 10. The light source of claim 4 , wherein M is from 2 to 4. 11. The light source assembly of claim 1 , wherein the optical couplers are independently of each other couplers with m input arms and n output arms, wherein m is 1, 2, 3, 4, 5, 6 or 7 and n is 2, 3, 4, 5, 6 or 7. 12. The light source assembly of claim 1 , wherein the one and the different optical couplers comprise at least one 2×2 coupler. 13. The light source of claim 12 , wherein all of the remaining couplers are 1×n couplers and n is 2, 3, 4, 5 or 6. 14. The light source of claim 12 , wherein all of the remaining couplers are 1×n couplers and n is 2. 15. The light source assembly of claim 1 , wherein one or more of the couplers is (are) arranged for dividing the input light substantially uniformly with respect to light intensity between its output arms. 16. The light source assembly of claim 1 , wherein the plurality of optical couplers comprise multimode optical couplers comprising multimode arms. 17. The light source assembly of claim 1 , wherein N is at least 4. 18. The light source of claim 17 , wherein N is from 5 to 40. 19. The light source of claim 17 , wherein N is from 8 to 16. 20. The light source of claim 17 , wherein N is 2 times M. 21. The light source assembly of claim 1 , wherein M≤P<N. 22. The light source of claim 21 , wherein P is at least 2. 23. The light source of claim 21 , wherein P is up to the total number of input arms. 24. The light source assembly of claim 1 , wherein the P mode scramblers are selected from step a “Step-Graded-Step” mode scrambler and a “Step Index with Bends” mode scrambler. 25. The light source of claim 1 , wherein M<N. 26. The light source of claim 1 , wherein M>2 and M<N.
based on acousto-optical elements, e.g. using variable diffraction by sound or like mechanical waves (acousto-optical deflection G02F1/33) · CPC title
Optical features (G02B6/4207, G02B6/421 take precedence) · CPC title
forming multipart couplers without wavelength selective elements, e.g. "T" couplers, star couplers · CPC title
Splicing of light guides, e.g. by fusion or bonding · CPC title
Use of light guides, e.g. fibre optic devices, in lighting devices or systems · CPC title
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