Patent · US2007031090A1 · A1 · US
Flexible ferruble device for connection of optical fiber and use thereof
- (11) Publication number
- US2007031090A1
- (21) Application number
- 10/576,888
- (22) Filing date
- 2004-10-21
- (30) Priority date
- 2003-10-24
- (43) Publication date
- 2007-02-08
- (51) IPC
- G02B 6/38; G02B 6/255
- (52) CPC
- G02B Optical elements, systems or apparatus: 6/3859, 6/24, 6/25, 6/3807, 6/3877, 6/3898
- (73) Assignee
- 9134-9001 QUEBEC Inc
- (72) Inventors
- Eric Weynant
- (54) Title
- Flexible ferruble device for connection of optical fiber and use thereof
- (57) Abstract
An optical female connector assembly for connecting optical fibers for use in optical communication systems. A method for connecting the optical fibers using the ferrule connector assembly and the use of a tool are also disclosed. The optical ferrule connector assembly maintains the two optical fibers in an end-to-end alignment, with a minimal air layer in between the ends, using clamps (3) and end cones (4), in order to allow the light signal to be transmitted from one optical fiber to the other optical fiber with the minimal attenuation and reflection losses. Furthermore, the optical ferrule connector assembly comprises longitudinal slots (6) to provide flexibility to the connector assembly, therefore, preventing the crushing of the optical fibers.
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Claims (16)
- A device for optically connecting two coaxially opposingly disposed optical fibers for the purpose of transmission of an optical signal, the device comprising a ferrule-; said ferrule comprising: a) a longitudinally extending cylindrical body made of Shape Memory Material (SMM), said body having a middle portion, said middle portion having a first end and a second end, a first connection clamp and a second connection clamp, said connection clamps being located on either end of said middle portion, each connection clamp having a free end associated therewith, said body and said connection clamps also having a bore that traverses a central axis through said connection clamps and said middle portion, said bore having a diameter slightly smaller than the diameter of the optical fibers to be connected, b) said body also having one of more pairs of longitudinal slots that traverse the diameter of said body, each of said pair of slots beginning within a connection clamp and extending to the free end of the other connection clamp and, c) a first cap and a second cap comprising a wire whose diameter is approximately the same as the diameter of the optical fiber, such that when inserted into said bore of said body from each side, said cap wires penetrate into the ferrule from each side, and abut each other at the middle of the length of the body of the ferrule.
- The device of claim 1, wherein each of-said connection clamps have, at their respective free ends, a conic end penetrating along the axis of each said connection clamp.
- The device of claim 1, wherein said device has conic grooves forming a ring around the junction between the first and second connection clamp and the middle portion, said conic grooves penetrating inside the first and second connection clamps.
- The device of claim 1 wherein said pairs of slots form an angle a which value that is between 25° and 90°.
- A tool for deforming a device, the device according to claim 1, the tool comprising: a) two internal grips, each grip adapted to engage a connection clamp at the junction of the connection clamp and the middle portion of the ferrule; b) two external grips, each grip adapted to engage with the free end of the connecting clamps of the ferrule; and wherein, said internal and said external grips are traversed by a passage that allows optical fibers and cap wires to be removed from the ferrule or inserted in said ferrule.
- A tool for deforming a ferrule having a first connection clamp and a second connection clamp, each connection clamp having a free end and a central portion disposed at the juncture of the connection clamp and a middle portion of the ferrule, each free end having a conic recess and each central portion having a conic groove, the tool comprising: a) two internal grips shaped in a conical point that engage with the complementary sections of the conic grooves on the central portion of the ferrule; b) two exterior grips that engage with the conic ends located at the free ends of the connecting clamps of the ferrule; wherein, said conical point of the said internal grip and said external grips being traversed by a passage that allows optical fibers and cap wires to be removed from the ferrule or inserted in said ferrule.
- A method for deforming a ferrule having a first connection clamp and a second connection clamp, each connection clamp having a free end and a central portion, the central portion disposed at the juncture of the connection clamp and a middle portion of the ferrule, each free end having a conic recess and each central portion having a conic groove, the method comprising the steps of: a) providing a tool having two internal grips adapted to engage with the complementary sections of the middle portion of the connecting clamps, two external grips that engage with the free ends of the connecting clamps, and a central passage that allows optical fibers and cap wires to be inserted and removed from the ferrule; b) engaging the two internal grips of the tool with the ends of the middle portion of the ferrule causing the slots and the diameter of the bore to expand at said middle portion; c) engaging a first external grip of the tool with the first connection clamp of the ferrule, to increase the diameter of the bore in the first connection clamp, d) removing the first cap wire from the first connection clamp and inserting a first optical fiber into the bore until it is abutted against the second cap wire, said second cap wire being maintained in position by the second connection clamp; e) removing the first external grip, so that the first connection clamp on the ferrule closes on the first fiber and maintains it in place; f) engaging the second external grip of the tool with the second connection clamp of the ferrule, to increase the diameter of the bore in the second connection clamp; g) removing the second cap wire from the second connection clamp and inserting a second optical fiber into the bore, causing said second optical fiber to be abutted against the first optical fiber; h) removing the second external grip from the second connection clamp of the ferrule so that the second connection clamp of the ferrule closes on the second optical fiber and maintains it in place; and i) removing the two internal grips from the ends of the middle portion of the ferrule, causing the middle portion of the bore to shrink on the optical fibers to centre them in front of each other for light transmission, and causing the length of the middle portion of ferrule to decrease, said length decrease creating sufficient force to firmly abut the fiber ends on each other for light transmission.
- A method according to claim 7, wherein the internal grips are shaped in a conical point for engaging complementary sections of the conic grooves and the exterior grips engage the conic ends located at the free ends of the connecting clamps.
- A method of using the ferrule of claim 1 to remove the fibers held in the ferrule in order to reuse the device, comprising: a) providing a tool having two internal grips adapted to engage with the complementary sections of a central portion of connecting clamps of a ferrule, two external grips that engage with the free ends of the connecting clamps, and a central passage that allows optical fibers and cap wires to be inserted and removed from the ferrule; and b) engaging the ferrule with the tool; c) actuating the tool to loosen a fiber held in the ferrule; and d) removing a fiber.
- A method according to claim 9, wherein the ferrule includes conic grooves disposed in a central portion, the internal grips are shaped in a conical point for engaging complementary sections of the conic grooves, and the exterior grips engage conic ends located at the free ends of the connecting clamps.
- A method according to claim 9 wherein the ferrule further comprises connection clamps having at their respective free ends, a conical recess coaxial with the bore of each said connection clamp, said recess for receiving the deforming tool.
- A method according to claim 10 wherein the ferrule further comprises connection clamps, each clamp having a free end with a conical recess coaxial with the bore of each said connection clamp, said recess for receiving the deforming tool.
- A method according to claim 9, wherein the ferrule further comprises connection clamps having conic grooves disposed in a central portion, the conic grooves for accepting the deforming tool.
- A method according to claim 10, wherein the ferrule further comprises connection clamps having conic grooves disposed in a central portion, the conic grooves for accepting the deforming tool.
- The device of claim 1, further comprising a body having a plurality of pairs of slots.
- The device of claim 15, wherein each slot of at least a first pair of slots commences at the first connection clamp and each slot of at least a second pair of slots commences at the second connection clamp.
Description
The present invention is directed to a connector assembly for connecting optical fibers for use in optical communication systems, and particularly to a flexible ferrule device for connecting optical fibers for such use. The present invention further relates to a method of connecting optical fiber using such device and to a tool for use thereof.
The invention relates to an optical fiber connection device that allows for the end-to-end alignment of two optical fibers in a way such as to permit a light signal to pass from one fiber to the other fiber with minimal attenuation and reflection losses. This device also makes it possible to reduce any air layer between the ends of the two fibers in contact by maintaining pressure on their ends.
Ferrules and related technology are known in fiber optic connection. The art is replete with examples, including U.S. Pat. Nos. 6,579,615 B2; 6,533,469 B1; 6,416,236 B1; 6,357,933; and U.S. Patent Application Publication No. U.S. 2002/0037140. A ferrule for use as a connector in an assembly with optical fibers requires high dimensional accuracy and precision, yet in an extremely small-diameter conduit for positioning and holding optical fiber. Present or proposed ferrule connectors for optical fibers, such as U.S. Pat. No. 6,357,933 to Lucent Technologies Inc. may not be amenable to ease of manufacture or assembly with optical fiber by the technical personnel carrying out the operation. Thus in spite of the known application of ferrules in optical fiber connection, there is a continuing need for improvement in the technology of the design and use of ferrules for this purpose.
Citations (10)
- US4094580A
- US4483584A
- US5121456A
- US5307431A
- US5768455A
- US6357933B1
- US6533469B1
- US6416236B1
- US6579015B2
- US7066656B2
Record as JSON
{
"publication_number": "US2007031090A1",
"country": "US",
"kind": "A1",
"title": "Flexible ferruble device for connection of optical fiber and use thereof",
"abstract": "An optical female connector assembly for connecting optical fibers for use in optical communication systems. A method for connecting the optical fibers using the ferrule connector assembly and the use of a tool are also disclosed. The optical ferrule connector assembly maintains the two optical fibers in an end-to-end alignment, with a minimal air layer in between the ends, using clamps (3) and end cones (4), in order to allow the light signal to be transmitted from one optical fiber to the other optical fiber with the minimal attenuation and reflection losses. Furthermore, the optical ferrule connector assembly comprises longitudinal slots (6) to provide flexibility to the connector assembly, therefore, preventing the crushing of the optical fibers.",
"claims": [
"1. A device for optically connecting two coaxially opposingly disposed optical fibers for the purpose of transmission of an optical signal, the device comprising a ferrule-; said ferrule comprising: a) a longitudinally extending cylindrical body made of Shape Memory Material (SMM), said body having a middle portion, said middle portion having a first end and a second end, a first connection clamp and a second connection clamp, said connection clamps being located on either end of said middle portion, each connection clamp having a free end associated therewith, said body and said connection clamps also having a bore that traverses a central axis through said connection clamps and said middle portion, said bore having a diameter slightly smaller than the diameter of the optical fibers to be connected, b) said body also having one of more pairs of longitudinal slots that traverse the diameter of said body, each of said pair of slots beginning within a connection clamp and extending to the free end of the other connection clamp and, c) a first cap and a second cap comprising a wire whose diameter is approximately the same as the diameter of the optical fiber, such that when inserted into said bore of said body from each side, said cap wires penetrate into the ferrule from each side, and abut each other at the middle of the length of the body of the ferrule.",
"2. The device of claim 1, wherein each of-said connection clamps have, at their respective free ends, a conic end penetrating along the axis of each said connection clamp.",
"3. The device of claim 1, wherein said device has conic grooves forming a ring around the junction between the first and second connection clamp and the middle portion, said conic grooves penetrating inside the first and second connection clamps.",
"4. The device of claim 1 wherein said pairs of slots form an angle a which value that is between 25° and 90°.",
"5. A tool for deforming a device, the device according to claim 1, the tool comprising: a) two internal grips, each grip adapted to engage a connection clamp at the junction of the connection clamp and the middle portion of the ferrule; b) two external grips, each grip adapted to engage with the free end of the connecting clamps of the ferrule; and wherein, said internal and said external grips are traversed by a passage that allows optical fibers and cap wires to be removed from the ferrule or inserted in said ferrule.",
"6. A tool for deforming a ferrule having a first connection clamp and a second connection clamp, each connection clamp having a free end and a central portion disposed at the juncture of the connection clamp and a middle portion of the ferrule, each free end having a conic recess and each central portion having a conic groove, the tool comprising: a) two internal grips shaped in a conical point that engage with the complementary sections of the conic grooves on the central portion of the ferrule; b) two exterior grips that engage with the conic ends located at the free ends of the connecting clamps of the ferrule; wherein, said conical point of the said internal grip and said external grips being traversed by a passage that allows optical fibers and cap wires to be removed from the ferrule or inserted in said ferrule.",
"7. A method for deforming a ferrule having a first connection clamp and a second connection clamp, each connection clamp having a free end and a central portion, the central portion disposed at the juncture of the connection clamp and a middle portion of the ferrule, each free end having a conic recess and each central portion having a conic groove, the method comprising the steps of: a) providing a tool having two internal grips adapted to engage with the complementary sections of the middle portion of the connecting clamps, two external grips that engage with the free ends of the connecting clamps, and a central passage that allows optical fibers and cap wires to be inserted and removed from the ferrule; b) engaging the two internal grips of the tool with the ends of the middle portion of the ferrule causing the slots and the diameter of the bore to expand at said middle portion; c) engaging a first external grip of the tool with the first connection clamp of the ferrule, to increase the diameter of the bore in the first connection clamp, d) removing the first cap wire from the first connection clamp and inserting a first optical fiber into the bore until it is abutted against the second cap wire, said second cap wire being maintained in position by the second connection clamp; e) removing the first external grip, so that the first connection clamp on the ferrule closes on the first fiber and maintains it in place; f) engaging the second external grip of the tool with the second connection clamp of the ferrule, to increase the diameter of the bore in the second connection clamp; g) removing the second cap wire from the second connection clamp and inserting a second optical fiber into the bore, causing said second optical fiber to be abutted against the first optical fiber; h) removing the second external grip from the second connection clamp of the ferrule so that the second connection clamp of the ferrule closes on the second optical fiber and maintains it in place; and i) removing the two internal grips from the ends of the middle portion of the ferrule, causing the middle portion of the bore to shrink on the optical fibers to centre them in front of each other for light transmission, and causing the length of the middle portion of ferrule to decrease, said length decrease creating sufficient force to firmly abut the fiber ends on each other for light transmission.",
"8. A method according to claim 7, wherein the internal grips are shaped in a conical point for engaging complementary sections of the conic grooves and the exterior grips engage the conic ends located at the free ends of the connecting clamps.",
"9. A method of using the ferrule of claim 1 to remove the fibers held in the ferrule in order to reuse the device, comprising: a) providing a tool having two internal grips adapted to engage with the complementary sections of a central portion of connecting clamps of a ferrule, two external grips that engage with the free ends of the connecting clamps, and a central passage that allows optical fibers and cap wires to be inserted and removed from the ferrule; and b) engaging the ferrule with the tool; c) actuating the tool to loosen a fiber held in the ferrule; and d) removing a fiber.",
"10. A method according to claim 9, wherein the ferrule includes conic grooves disposed in a central portion, the internal grips are shaped in a conical point for engaging complementary sections of the conic grooves, and the exterior grips engage conic ends located at the free ends of the connecting clamps.",
"11. A method according to claim 9 wherein the ferrule further comprises connection clamps having at their respective free ends, a conical recess coaxial with the bore of each said connection clamp, said recess for receiving the deforming tool.",
"12. A method according to claim 10 wherein the ferrule further comprises connection clamps, each clamp having a free end with a conical recess coaxial with the bore of each said connection clamp, said recess for receiving the deforming tool.",
"13. A method according to claim 9, wherein the ferrule further comprises connection clamps having conic grooves disposed in a central portion, the conic grooves for accepting the deforming tool.",
"14. A method according to claim 10, wherein the ferrule further comprises connection clamps having conic grooves disposed in a central portion, the conic grooves for accepting the deforming tool.",
"15. The device of claim 1, further comprising a body having a plurality of pairs of slots.",
"16. The device of claim 15, wherein each slot of at least a first pair of slots commences at the first connection clamp and each slot of at least a second pair of slots commences at the second connection clamp."
],
"description_excerpt": "The present invention is directed to a connector assembly for connecting optical fibers for use in optical communication systems, and particularly to a flexible ferrule device for connecting optical fibers for such use. The present invention further relates to a method of connecting optical fiber using such device and to a tool for use thereof.\n\nThe invention relates to an optical fiber connection device that allows for the end-to-end alignment of two optical fibers in a way such as to permit a light signal to pass from one fiber to the other fiber with minimal attenuation and reflection losses. This device also makes it possible to reduce any air layer between the ends of the two fibers in contact by maintaining pressure on their ends.\n\nFerrules and related technology are known in fiber optic connection. The art is replete with examples, including U.S. Pat. Nos. 6,579,615 B2; 6,533,469 B1; 6,416,236 B1; 6,357,933; and U.S. Patent Application Publication No. U.S. 2002/0037140. A ferrule for use as a connector in an assembly with optical fibers requires high dimensional accuracy and precision, yet in an extremely small-diameter conduit for positioning and holding optical fiber. Present or proposed ferrule connectors for optical fibers, such as U.S. Pat. No. 6,357,933 to Lucent Technologies Inc. may not be amenable to ease of manufacture or assembly with optical fiber by the technical personnel carrying out the operation. Thus in spite of the known application of ferrules in optical fiber connection, there is a continuing need for improvement in the technology of the design and use of ferrules for this purpose.",
"cpc": [
"G02B 6/3859",
"G02B 6/24",
"G02B 6/25",
"G02B 6/3807",
"G02B 6/3877",
"G02B 6/3898"
],
"ipc": [
"G02B 6/38",
"G02B 6/255"
],
"assignees": [
"9134-9001 QUEBEC Inc"
],
"inventors": [
"Eric Weynant"
],
"filing_date": "2004-10-21",
"publication_date": "2007-02-08",
"priority_date": "2003-10-24",
"application_number": "US-57688806-A",
"family_id": "34468714",
"cited_by_count": 8,
"citations": [
"US4094580A",
"US4483584A",
"US5121456A",
"US5307431A",
"US5768455A",
"US6357933B1",
"US6533469B1",
"US6416236B1",
"US6579015B2",
"US7066656B2"
]
}
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