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US20030002802A1 - Multi-piece fiber optic component and manufacturing technique - Google Patents

Multi-piece fiber optic component and manufacturing technique
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Publication number
US20030002802A1
US20030002802A1US09/896,513US89651301AUS2003002802A1US 20030002802 A1US20030002802 A1US 20030002802A1US 89651301 AUS89651301 AUS 89651301AUS 2003002802 A1US2003002802 A1US 2003002802A1
Authority
US
United States
Prior art keywords
piece
fiber
holes
fibers
fiber optic
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US09/896,513
Inventor
John Trezza
Keith Kang
Greg Dudoff
Ronald Olson
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xanoptix Inc
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by IndividualfiledCriticalIndividual
Priority to US09/896,513priorityCriticalpatent/US20030002802A1/en
Assigned to XANOPTIX, INC.reassignmentXANOPTIX, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: DUDOFF, GREG, KANG, KEITH, OLSON, RONALD, TREZZA, JOHN
Priority to US10/098,255prioritypatent/US6619855B2/en
Priority to US10/098,990prioritypatent/US6629780B2/en
Priority to US10/098,652prioritypatent/US6609835B2/en
Priority to US10/180,239prioritypatent/US6722788B2/en
Priority to PCT/US2002/022092prioritypatent/WO2003003068A2/en
Priority to CA002447370Aprioritypatent/CA2447370A1/en
Priority to AU2002327232Aprioritypatent/AU2002327232A1/en
Priority to PCT/US2002/022084prioritypatent/WO2003085433A1/en
Priority to AU2002351506Aprioritypatent/AU2002351506A1/en
Priority to CNB028130995Aprioritypatent/CN1261783C/en
Priority to PCT/US2002/022090prioritypatent/WO2003003067A2/en
Priority to EP02765833Aprioritypatent/EP1417523A2/en
Priority to PCT/US2002/021950prioritypatent/WO2003005085A1/en
Priority to EP02759141Aprioritypatent/EP1410086A4/en
Priority to AU2002329594Aprioritypatent/AU2002329594A1/en
Priority to AU2002324495Aprioritypatent/AU2002324495A1/en
Priority to EP02763264Aprioritypatent/EP1399769A4/en
Priority to AU2002367713Aprioritypatent/AU2002367713A1/en
Priority to PCT/US2002/022052prioritypatent/WO2003003066A2/en
Priority to KR10-2003-7016826Aprioritypatent/KR20040015287A/en
Priority to PCT/US2002/022093prioritypatent/WO2003003069A2/en
Priority to PCT/US2002/020830prioritypatent/WO2003003064A2/en
Priority to KR10-2003-7016825Aprioritypatent/KR20040015286A/en
Priority to AU2002313665Aprioritypatent/AU2002313665A1/en
Priority to AU2002346025Aprioritypatent/AU2002346025A1/en
Priority to CA002447341Aprioritypatent/CA2447341A1/en
Priority to CNB028130960Aprioritypatent/CN100381847C/en
Priority to PCT/US2002/022053prioritypatent/WO2003003522A2/en
Publication of US20030002802A1publicationCriticalpatent/US20030002802A1/en
Priority to US10/607,620prioritypatent/US6817778B2/en
Priority to US10/260,033prioritypatent/US6945701B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A method of making a fiber optic connector adapted to receive a fiber bearing unit involves coupling at least one high precision piece, having holes configured to accept an array of optical fibers, to a low precision piece to form a unit, inserting optical fibers into the unit and housing the unit within a fiber optic connector housing. A commercial fiber optic connector of a style constructed to accept a ferrule-like unit therein has a connector housing, at least 36 optical fibers, a low precision piece, and at least one high precision slice having at least 36 fiber holes each adapted to accept one of the optical fibers, the low precision piece and the at least one high precision slice being contained substantially within the connector housing and forming the ferrule like unit.

Description

Claims (29)

What is claimed is:
1. An apparatus to facilitate insertion of a fiber into a commercial fiber optic connector at a low angle comprising:
a high precision holder having
a first side,
a second side, opposite the first side and spaced therefrom by a thickness, and multiple walls therein,
the multiple walls each, when viewed from the first side, defining an opening in the holder having a first size at the first side and narrowing to a second size at a location within the thickness, and
the multiple walls each, when viewed from the second side, defining a substantially cylindrical opening in the holder extending from the second side to the location.
2. The apparatus ofclaim 1 wherein the holder comprises a first piece and a second piece, the first piece having a first piece thickness defined by the first side and the location, and the second piece having a second piece thickness defined by the second side and the location.
3. The apparatus ofclaim 2 wherein the first piece comprises silicon wafer and the walls are created using an isotropic wet etch process.
4. The apparatus ofclaim 3 wherein the isotropic wet etch process is a KOH etch.
5. The apparatus ofclaim 2 wherein the second piece comprises silicon wafer and the walls are created using an anisotropic etch process.
6. The apparatus ofclaim 5 wherein the anisotropic etch process is a Bosch process.
7. The apparatus ofclaim 5 wherein the second piece walls adjoin the second side at a clean edge created by an isotropic silicon wet etch.
8. The apparatus ofclaim 2 wherein the second piece walls are created using a drilling process.
9. An apparatus to facilitate insertion of a fiber into a commercial fiber optic connector at a low angle comprising:
a piece cleaved from a silicon wafer having a first side and a second side, wherein the piece has internal walls defining holes created by
i) performing a Bosch etch on the first side of the silicon wafer to create etch indentations in the silicon wafer,
ii) depositing a SiNXstop layer in the etch indentations;
iii) photoresist patterning the second side in alignment with the indentations in the first side,
iv) wet etching the second side, and
v) removing the SiNXstop layer.
10. The apparatus ofclaim 9 wherein the apparatus is further created by vi) performing a clean up etching of the holes.
11. A fiber holder of a size suitable for use in a commercial fiber optic connector adapted to accept a ferrule of a size including a ferrule face length and ferrule face width defining a ferrule face area, the fiber holder comprising:
a piece having a thickness and edges defining a first surface and a second surface opposite the first surface,
the piece further having an array of at least 36 holes, at least some of the holes being adapted for receiving optical fibers,
the at least some holes extending through the thickness between the first surface and the second surface,
the at least some holes having axes substantially perpendicular to at least one of the first surface or the second surface,
the at least some holes having a first opening size on the first surface and a second opening size on the second surface smaller than the first opening size,
the second opening size being approximately equal to a diameter of an optical fiber to provide support for the optical fibers inserted therein.
12. The fiber holder ofclaim 11 wherein the second opening size is substantially constant in an axial direction into the thickness for a distance.
13. The fiber holder ofclaim 12 wherein the distance is approximately {fraction (1/2)} of the thickness.
14. The fiber holder ofclaim 12 wherein the distance is approximately equal to a slice thickness.
15. The fiber holder ofclaim 12 wherein the distance is approximately equal to a thickness of one of a four inch or an eight inch silicon wafer.
16. The fiber holder ofclaim 11 wherein the first surface has a first surface area no larger than the ferrule face area.
17. The fiber holder ofclaim 11 wherein the first surface has a first surface area substantially equal to the ferrule face area.
18. The fiber holder ofclaim 11 wherein the first piece comprises a stack of at least two slices.
19. The fiber holder ofclaim 18 wherein the first surface is on one of the at least two slices and the second surface is on another of the at least two slices.
20. The fiber holder ofclaim 11 further comprising a low precision unit adapted to receive the piece, the low precision unit and piece in combination, being substantially equal to the size.
21. The fiber holder ofclaim 11 wherein the commercial fiber optic connector is one of an MTP, MPO, MPX or SMC type connector and wherein the fiber holder comprises a low precision unit adapted to receive the piece and the piece, the low precision piece and the high precision piece when combined having dimensions substantially equal to a respective one of an MTP, MPO, MPX or SMC ferrule dimensions.
22. A commercial fiber optic connector of a style constructed to accept a ferrule-like unit therein, the commercial fiber optic connector comprising:
a connector housing,
at least 36 optical fibers having first ends and second ends,
a low precision piece, and
at least one high precision slice having at least 36 fiber holes and an external face, each of the fiber holes being adapted to accept one of the optical fibers,
the low precision piece being connected to the at least one high precision slice,
the at least 36 optical fibers passing through the low precision piece and into the high precision slice so that the first end terminates at the external face, and
the low precision piece and the at least one high precision slice being contained substantially within the connector housing and forming the ferrule like unit.
23. The commercial fiber optic connector ofclaim 22 wherein the style is one of an MTP style, MPO style, MPX style or SMC style.
24. The commercial fiber optic connector ofclaim 22, further comprising:
an alignment piece contained within the connector housing and having posts extending through at least one of the low precision piece or a high precision slice.
25. The commercial fiber optic connector ofclaim 22 wherein the at least 36 optical fibers are single mode fibers
26. The commercial fiber optic connector ofclaim 25 wherein each of the fiber holes has an axis and wherein the axis is offset at an angle from a perpendicular to the external face.
27. The commercial fiber optic connector ofclaim 26 wherein the offset is 8 degrees.
28. The commercial fiber optic connector ofclaim 26 wherein the offset is between zero and about 8 degrees.
29. A method of making a fiber optic connector adapted to receive a fiber bearing unit, the method comprising:
coupling at least one high precision piece, having holes configured to accept an array of optical fibers inserted therein, to a low precision piece to form a unit,
inserting optical fibers into the unit, the fibers terminating in the holes, and
housing the unit within a fiber optic connector housing.
US09/896,5132001-06-292001-06-29Multi-piece fiber optic component and manufacturing techniqueAbandonedUS20030002802A1 (en)

Priority Applications (31)

Application NumberPriority DateFiling DateTitle
US09/896,513US20030002802A1 (en)2001-06-292001-06-29Multi-piece fiber optic component and manufacturing technique
US10/098,255US6619855B2 (en)2001-06-292002-03-14Post-formation feature optimization
US10/098,990US6629780B2 (en)2001-06-292002-03-14High-precision female format multifiber connector
US10/098,652US6609835B2 (en)2001-06-292002-03-14Oxidized light guiding component and manufacturing technique
US10/180,239US6722788B2 (en)2001-06-292002-06-26Integration of fused glass collimated coupler for use in opto-electronic modules
PCT/US2002/022053WO2003003522A2 (en)2001-06-292002-06-28High-precision female format multifiber connector
EP02759141AEP1410086A4 (en)2001-06-292002-06-28Post-formation feature optimization
AU2002367713AAU2002367713A1 (en)2001-06-292002-06-28Oxidized light guiding component and manufacturing technique
AU2002327232AAU2002327232A1 (en)2001-06-292002-06-28High-precision female format multifiber connector
PCT/US2002/022084WO2003085433A1 (en)2001-06-292002-06-28Oxidized light guiding component and manufacturing technique
AU2002351506AAU2002351506A1 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
CNB028130995ACN1261783C (en)2001-06-292002-06-28 Methods for Optimizing Connector Characteristics
PCT/US2002/022090WO2003003067A2 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
EP02765833AEP1417523A2 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
PCT/US2002/021950WO2003005085A1 (en)2001-06-292002-06-28Integration of fused collimated coupler for use in opto-electronic modules
PCT/US2002/022092WO2003003068A2 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
AU2002329594AAU2002329594A1 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
AU2002324495AAU2002324495A1 (en)2001-06-292002-06-28Post-formation feature optimization
EP02763264AEP1399769A4 (en)2001-06-292002-06-28High-precision female format multifiber connector
CA002447370ACA2447370A1 (en)2001-06-292002-06-28High-precision female format multifiber connector
PCT/US2002/022052WO2003003066A2 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
KR10-2003-7016826AKR20040015287A (en)2001-06-292002-06-28High-precision female format multifiber connector
PCT/US2002/022093WO2003003069A2 (en)2001-06-292002-06-28Post-formation feature optimization
PCT/US2002/020830WO2003003064A2 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
KR10-2003-7016825AKR20040015286A (en)2001-06-292002-06-28Post-formation feature optimization
AU2002313665AAU2002313665A1 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
AU2002346025AAU2002346025A1 (en)2001-06-292002-06-28Multi-piece fiber optic component and manufacturing technique
CA002447341ACA2447341A1 (en)2001-06-292002-06-28Post-formation feature optimization
CNB028130960ACN100381847C (en)2001-06-292002-06-28High-precision concave type multiple fiber optical connector
US10/260,033US6945701B2 (en)2001-06-292003-06-27Multi-piece fiber optic component and manufacturing technique
US10/607,620US6817778B2 (en)2001-06-292003-06-27High-precision female format multifiber connector

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US09/896,513US20030002802A1 (en)2001-06-292001-06-29Multi-piece fiber optic component and manufacturing technique

Related Parent Applications (2)

Application NumberTitlePriority DateFiling Date
US09/896,664Continuation-In-PartUS6773166B2 (en)2001-06-292001-06-29Multi-piece fiber optic component and manufacturing technique
US09/896,196Continuation-In-PartUS20030002805A1 (en)2001-06-292001-06-29Multi-piece fiber optic component and manufacturing technique

Related Child Applications (6)

Application NumberTitlePriority DateFiling Date
US09/896,664Continuation-In-PartUS6773166B2 (en)2001-06-292001-06-29Multi-piece fiber optic component and manufacturing technique
US10/098,255Continuation-In-PartUS6619855B2 (en)2001-06-292002-03-14Post-formation feature optimization
US10/098,990Continuation-In-PartUS6629780B2 (en)2001-06-292002-03-14High-precision female format multifiber connector
US10/098,652Continuation-In-PartUS6609835B2 (en)2001-06-292002-03-14Oxidized light guiding component and manufacturing technique
US10/180,239Continuation-In-PartUS6722788B2 (en)2001-06-292002-06-26Integration of fused glass collimated coupler for use in opto-electronic modules
US10/260,033ContinuationUS6945701B2 (en)2001-06-292003-06-27Multi-piece fiber optic component and manufacturing technique

Publications (1)

Publication NumberPublication Date
US20030002802A1true US20030002802A1 (en)2003-01-02

Family

ID=25406335

Family Applications (2)

Application NumberTitlePriority DateFiling Date
US09/896,513AbandonedUS20030002802A1 (en)2001-06-292001-06-29Multi-piece fiber optic component and manufacturing technique
US10/260,033Expired - Fee RelatedUS6945701B2 (en)2001-06-292003-06-27Multi-piece fiber optic component and manufacturing technique

Family Applications After (1)

Application NumberTitlePriority DateFiling Date
US10/260,033Expired - Fee RelatedUS6945701B2 (en)2001-06-292003-06-27Multi-piece fiber optic component and manufacturing technique

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