Interposer structure having optical fiber connection and related fiber optic connector for the same
US-9217839-B2 · Dec 22, 2015 · US
US9979469B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9979469-B2 |
| Application number | US-201615040366-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 10, 2016 |
| Priority date | Aug 22, 2013 |
| Publication date | May 22, 2018 |
| Grant date | May 22, 2018 |
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Disclosed are interposer including an interposer coupling assemblies for communicating optical signals to an integrated circuit and other interposer structures having an optical interface for optical connections. In one embodiment, the interposer coupling assembly includes a connector attachment saddle having an optical alignment structure, an optical pathway that includes a GRIN lens, and an optical signal turning element adjacent to the GRIN lens. The interposer coupling assembly may be optically attached to an integrated circuit or a base that is attached to an integrated circuit to form an interposer structure that allows high-speed data transfer. Also disclosed are complimentary optical assemblies that may be optically connected to the interposer coupling assembly.
Opening claim text (preview).
What is claimed is: 1. An interposer coupling assembly for communicating optical signals to an integrated circuit, comprising: a connector attachment saddle having an optical alignment structure; an optical pathway that includes a GRIN lens, the GRIN lens having a diameter suitable for receiving multiple optical signals; and an optical signal turning element adjacent to the GRIN lens. 2. The interposer coupling assembly of claim 1 , wherein the GRIN lens is attached to the optical signal turning element. 3. The interposer coupling assembly of claim 1 , wherein the optical signal turning element includes a total internal reflection surface. 4. The interposer coupling assembly of claim 1 , further including a base wherein the interposer coupling assembly is attached to the base. 5. The interposer coupling assembly of claim 1 , the interposer coupling assembly being in communication with an interposer integrated circuit. 6. The interposer coupling assembly of claim 5 , wherein the interposer coupling assembly is formed from one or more materials with respective coefficients of thermal expansion (CTE) and the interposer integrated circuit is formed from a material with a second CTE, and the CTE delta between each of the one or more materials of the interposer coupling assembly and the interposer integrated circuit is 4.0×10 −6 ° C. (Δmm/mm) or less at ambient conditions. 7. The interposer coupling assembly of claim 1 , further including a window adjacent to the connector attachment saddle. 8. The interposer coupling assembly of claim 1 , the interposer coupling assembly having a height of 6 millimeter or less. 9. The interposer coupling assembly of claim 1 , the GRIN lens having a length that is shorter than one quarter pitch of the wavelength being communicated to the optical interface. 10. The interposer coupling assembly of claim 1 , wherein the optical alignment structure includes one or more optical fiber alignment features for aligning optical signals to the interposer coupling assembly. 11. The interposer coupling assembly of claim 10 , wherein the optical alignment structure includes one or more bores. 12. The interposer coupling assembly of claim 1 , the interposer coupling assembly having an optical plug assembly attached to the connector attachment saddle. 13. The interposer coupling assembly of claim 1 , the optical plug assembly being attached to the interposer coupling assembly, the optical plug assembly having one or more multicore optical fibers and a GRIN lens. 14. An optical plug assembly for optical connection with an interposer coupling assembly, comprising: an optical fiber organizer having at least one rotational orientation guide and at least one bore for receiving an optical fiber; a GRIN lens; an attachment body; and an alignment body for receiving a portion of the optical fiber organizer and a portion of the GRIN lens. 15. The optical plug assembly of claim 14 , the alignment body including one or more alignment pin bores. 16. The optical plug assembly of claim 15 , further including one or more alignment pins. 17. The optical plug assembly of claim 14 , the attachment body having one or more retention features. 18. The optical plug assembly of claim 17 , the one or more retention features being resilient arms. 19. The optical plug assembly of claim 14 , the attachment body having one or more alignment pin bores. 20. The optical plug assembly of claim 14 , further including an alignment pin mechanism. 21. The optical plug assembly of claim 14 , the optical fiber organizer having a plurality of bores for receiving optical fibers, the plurality of bores being arranged in an array. 22. The optical plug assembly of claim 14 having a plurality of optical fibers attached to the optical fiber organizer. 23. The optical plug assembly of claim 22 , the plurality of optical fibers being multicore optical fibers. 24. An assembly for communicating optical signals to an integrated circuit, comprising: an interposer coupling assembly having a connector attachment saddle with an optical alignment structure, an optical pathway that includes a GRIN lens, and an optical signal turning element adjacent to the GRIN lens; interposer integrated circuit; a base disposed on the interposer integrated circuit, wherein the base is formed of a material that allows a transmission of optical signals toward the interposer integrated circuit, and the interposer coupling assembly is attached to the base; and an optical plug assembly being attached to the interposer coupling assembly, the optical plug assembly having one or more multicore optical fibers and a GRIN lens. 25. An interposer coupling assembly for communicating optical signals to an integrated circuit, comprising: a connector attachment saddle having an optical alignment structure, wherein the optical alignment structure includes one or more optical fiber alignment features for aligning optical signals to the interposer coupling assembly; an optical pathway that includes a GRIN lens; an optical signal turning element adjacent to the GRIN lens; a window adjacent to the connector attachment saddle, an interposer integrated circuit being in communication with the interposer coupling assembly; and a base disposed on the interposer integrated circuit, wherein the connector attachment saddle and the optical signal turning element are disposed on the base, and the base is formed of a material that allows the transmission of optical signals therethrough toward the interposer integrated circuit. 26. The interposer coupling assembly of claim 25 , wherein the GRIN lens is attached to the optical signal turning element. 27. The assembly of claim 24 , further comprising an electro-optical integrated circuit disposed on the interposer integrated circuit.
the light guide being disconnectable from the opto-electronic element, e.g. mutually self aligning arrangements · CPC title
Ferrule rotatable with respect to plug body, e.g. for setting rotational position (adjusting fibre within the ferrule, G02B6/3843); Fixation of ferrules after rotation · CPC title
having lens focusing means {positioned between opposed fibre ends (with lens being an integral part of the single fibre end G02B6/262)} · CPC title
Multicore or multichannel optical connectors, i.e. one single ferrule containing more than one fibre, e.g. ribbon type (optical ribbon cable G02B6/4403, G02B6/448) · CPC title
Tools, e.g. handheld; Tuning wrenches; Jigs used with connectors, e.g. for extracting, removing or inserting in a panel, for engaging or coupling connectors, for assembling or disassembling components within the connector, for applying clips to hold two connectors together or for crimping (tools for cleaning, G02B6/3866; tools in general B25B) · CPC title
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