Patents by Inventor Valeria Caronna
Valeria Caronna has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20250091933Abstract: An apparatus for drying and/or consolidating an at least partially porous optical fibre preform, including: a furnace having a muffle tube extending along a vertical axis and forming a muffle chamber configured to house a preform, the muffle tube having a muffle upper opening at its top side, which is configured to allow passage of the preform; a hollow connection member having an inner diameter configured to allow passage of the preform and extending along the vertical axis, the connecting member being removably connected to the muffle tube at the muffle opening; a hood positioned on top of the connection member, the hood being removably connected to or integral with the connection member, the hood having an interior space in vertical alignment with the connection member, in which the hood includes a hood lid closing the hood at its top, in which the hood lid includes a through-hole axially aligned with the muffle opening, the hood lid through-hole being configured for the passage of a cylindrical supportingType: ApplicationFiled: September 13, 2024Publication date: March 20, 2025Inventors: Stefano GRIECO, Valeria CARONNA, Angelo MASCOLO, Giuditta PIROZZI
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Patent number: 12252432Abstract: An apparatus for drying and/or consolidating an at least partially porous optical fibre preform.Type: GrantFiled: May 11, 2023Date of Patent: March 18, 2025Assignee: Prysmian S.p.A.Inventors: Stefano Grieco, Valeria Caronna, Angelo Mascolo
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Publication number: 20230382781Abstract: An apparatus for drying and/or consolidating an at least partially porous optical fibre preform.Type: ApplicationFiled: May 11, 2023Publication date: November 30, 2023Inventors: Stefano Grieco, Valeria Caronna, Angelo Mascolo
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Patent number: 11325854Abstract: A process and an apparatus for drying and consolidating an optical fibre preform in a furnace tube comprising a heating chamber, wherein an extension tube having an extension chamber configured to house at least a length portion of the preform is removably joined to the furnace tube and the drying process starts with the preform not completely inserted into the furnace tube, an upper length portion of the preform being surrounded by the extension tube joint to the furnace tube.Type: GrantFiled: March 29, 2017Date of Patent: May 10, 2022Assignee: PRYSMIAN S.p.A.Inventors: Stefano Grieco, Valeria Caronna, Antonio Schiaffo
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Patent number: 11186515Abstract: Methods for manufacturing fluorine-doped glass preforms for optical fibers are disclosed. An exemplary method includes exposing a soot preform to an atmosphere containing a fluorine-containing gas in a first elongated chamber of a first furnace. The first elongated chamber typically has a single isothermal hot zone, which may be maintained at a doping temperature of about 800° C. to 1200° C., to obtain a fluorine-doped soot preform. The exemplary method further includes dehydrating the fluorine-doped soot preform by exposing it to an atmosphere containing a chlorine-containing gas in a second elongated chamber of a second furnace. The second elongated chamber typically has an upper hot zone, which may be maintained at a dehydration temperature of about 1000° C. to 1350° C., and a lower hot zone, which may be maintained at a consolidation temperature of about 1500° C. to 1650° C. Dehydration of the fluorine-doped soot preform typically occurs in the upper hot zone of the second furnace.Type: GrantFiled: October 30, 2019Date of Patent: November 30, 2021Assignee: Prysmian S.p.A.Inventors: Valeria Caronna, Stefano Grieco, Irene Di Giambattista, Franco Cocchini, Antonio Schiaffo
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Patent number: 11124442Abstract: The present invention relates to a method for manufacturing a preform of silica for optical fiber production, as well as to a method for the production of optical fibers comprising a step of drawing the optical fiber from such a preform of silica, the method comprising a step of vaporization of a siloxane feedstock added with a compound having the following formula (I): wherein R, R? and R?, equal or different each other, are an alkyl group having from 1 to 5 carbon atoms, and A is a saturated or unsaturated chain of atoms selected from the group consisting of carbon atom, nitrogen atom, and oxygen atom, said chain A forming with the nitrogen atom linked thereto a saturated, unsaturated or aromatic heterocyclic moiety.Type: GrantFiled: July 18, 2016Date of Patent: September 21, 2021Assignee: PRYSMIAN S.p.A.Inventors: Valeria Caronna, Stefano Grieco, Antonio Schiaffo, Tonino Caruso
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Publication number: 20200131073Abstract: Methods for manufacturing fluorine-doped glass preforms for optical fibers are disclosed. An exemplary method includes exposing a soot preform to an atmosphere containing a fluorine-containing gas in a first elongated chamber of a first furnace. The first elongated chamber typically has a single isothermal hot zone, which may be maintained at a doping temperature of about 800° C. to 1200° C., to obtain a fluorine-doped soot preform. The exemplary method further includes dehydrating the fluorine-doped soot preform by exposing it to an atmosphere containing a chlorine-containing gas in a second elongated chamber of a second furnace. The second elongated chamber typically has an upper hot zone, which may be maintained at a dehydration temperature of about 1000° C. to 1350° C., and a lower hot zone, which may be maintained at a consolidation temperature of about 1500° C. to 1650° C. Dehydration of the fluorine-doped soot preform typically occurs in the upper hot zone of the second furnace.Type: ApplicationFiled: October 30, 2019Publication date: April 30, 2020Inventors: Valeria Caronna, Stefano Grieco, Irene Di Giambattista, Franco Cocchini, Antonio Schiaffo
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Publication number: 20200031706Abstract: A process and an apparatus for drying and consolidating an optical fibre preform in a furnace tube comprising a heating chamber, wherein an extension tube having an extension chamber configured to house at least a length portion of the preform is removably joined to the furnace tube and the drying process starts with the preform not completely inserted into the furnace tube, an upper length portion of the preform being surrounded by the extension tube joint to the furnace tube.Type: ApplicationFiled: March 29, 2017Publication date: January 30, 2020Inventors: Stefano Grieco, Valeria Caronna, Antonio Schiaffo
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Patent number: 10544057Abstract: A method of manufacturing a glass core preform for an optical fibre comprising: providing a porous soot core preform having an outer surface) and a central hole extending axially therethrough; dehydrating the porous soot core preform at a first temperature by exposing the outer surface of the preform to an atmosphere containing chlorine, and simultaneously consolidating the soot core preform and closing the central hole at a second temperature higher than the first temperature to form a glass core preform, wherein consolidating and closing comprises sequentially alternating flowing chlorine containing gas into the central hole and reducing the internal pressure of the central hole.Type: GrantFiled: June 12, 2015Date of Patent: January 28, 2020Assignee: PRYSMIAN S.p.A.Inventors: Franco Cocchini, Antonio Adigrat, Valeria Caronna, Marco Antonio Caiata, Antonio Collaro, Antonio Schiaffo
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Publication number: 20190315649Abstract: The present invention relates to a method for manufacturing a preform of silica for optical fiber production, as well as to a method for the production of optical fibers comprising a step of drawing the optical fiber from such a preform of silica, the method comprising a step of vaporization of a siloxane feedstock added with a compound having the following formula (I): wherein R, R? and R?, equal or different each other, are an alkyl group having from 1 to 5 carbon atoms, and A is a saturated or unsaturated chain of atoms selected from the group consisting of carbon atom, nitrogen atom, and oxygen atom, said chain A forming with the nitrogen atom linked thereto a saturated, unsaturated or aromatic heterocyclic moiety.Type: ApplicationFiled: July 18, 2016Publication date: October 17, 2019Applicant: PRYSMIAN S.p.A.Inventors: Valeria CARONNA, Stefano GRIECO, Antonio SCHIAFFO, Tonino CARUSO
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Publication number: 20190263711Abstract: An optical fibre preform suspending device for vertically holding an optical fibre preform by a preform handle comprising a handle enlarged-width portion is provided. The preform suspending device having a substantially cylindrical shape and comprising a housing portion having a receiving space with a front top opening and a front bottom opening and a supporting surface between the front top opening and the front bottom opening. The preform suspending device also comprises a supporting member placed on the supporting surface, for holding the handle enlarged-width portion. The supporting member is radially independent from the housing portion.Type: ApplicationFiled: October 24, 2016Publication date: August 29, 2019Inventors: Stefano Grieco, Valeria Caronna, Franco Cocchini, Antonio Schiaffo
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Publication number: 20180265395Abstract: A method of manufacturing a glass core preform for an optical fibre comprising: providing a porous soot core preform having an outer surface) and a central hole extending axially therethrough; dehydrating the porous soot core preform at a first temperature by exposing the outer surface of the preform to an atmosphere containing chlorine, and simultaneously consolidating the soot core preform and closing the central hole at a second temperature higher than the first temperature to form a glass core preform, wherein consolidating and closing comprises sequentially alternating flowing chlorine containing gas into the central hole and reducing the internal pressure of the central hole.Type: ApplicationFiled: June 12, 2015Publication date: September 20, 2018Inventors: Franco Cocchini, Antonio Adigrat, Valeria Caronna, Marco Antonio Caiata, Antonio Collaro, Antonio Schiaffo
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Patent number: 9656902Abstract: A method of manufacturing at least one optical fibre preform comprising: providing a plurality of partially porous intermediate preforms, each partially porous intermediate preform having a longitudinal axis and comprising a respective soot intermediate clad layer formed around a respective glass core rod comprising a central core region of radius a and an inner clad region of radius b to define a first core-to-clad ratio a/b; consolidating the formed soot intermediate clad layers to form a respective plurality of intermediate glass preforms, each of the plurality of intermediate glass preforms comprising an intermediate clad region having an external radius c to define a second core-to-clad ratio a/c of from 0.20 to 0.Type: GrantFiled: December 28, 2012Date of Patent: May 23, 2017Assignee: PRYSMIAN S.P.A.Inventors: Antonio Adigrat, Valeria Caronna, Franco Cocchini, Antonio Collaro, Stefano Grieco, Ida Nivelli
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Patent number: 9416045Abstract: A method of manufacturing an optical fibre preform comprising: providing a glass core rod comprising a central core region of radius a and an inner clad region of external radius b to define a first core-to-clad ratio a/b; forming an intermediate glass preform comprising an intermediate clad region surrounding the inner clad region of the glass rod and having an external radius c to define a second core-to-clad ratio a/c, and overcladding the intermediate glass preform by forming an overclad region surrounding the intermediate clad region to form an optical fibre preform, wherein the first core-to-clad ratio a/b is equal to or less than 0.40 and the second core-to-clad ratio a/c is of from 0.20 to 0.25.Type: GrantFiled: December 28, 2012Date of Patent: August 16, 2016Assignee: Prysmian S.p.A.Inventors: Antonio Adigrat, Valeria Caronna, Franco Cocchini, Antonio Collaro, Stefano Grieco, Ida Nivelli
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Publication number: 20150336840Abstract: A method of manufacturing an optical fibre preform comprising: providing a glass core rod comprising a central core region of radius a and an inner clad region of external radius b to define a first core-to-clad ratio a/b; forming an intermediate glass preform comprising an intermediate clad region surrounding the inner clad region of the glass rod and having an external radius c to define a second core-to-clad ratio a/c, and overcladding the intermediate glass preform by forming an overclad region surrounding the intermediate clad region to form an optical fibre preform, wherein the first core-to-clad ratio a/b is equal to or less than 0.40 and the second core-to-clad ratio a/c is of from 0.20 to 0.25.Type: ApplicationFiled: December 28, 2012Publication date: November 26, 2015Inventors: Antonio Adigrat, Valeria Caronna, Franco Cocchini, Antonio Collaro, Stefano Grieco, Ida Nivelli
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Publication number: 20150329403Abstract: A method of manufacturing at least one optical fibre preform comprising: providing a plurality of partially porous intermediate preforms, each partially porous intermediate preform having a longitudinal axis and comprising a respective soot intermediate clad layer formed around a respective glass core rod comprising a central core region of radius a and an inner clad region of radius b to define a first core-to-clad ratio a/b; consolidating the formed soot intermediate clad layers to form a respective plurality of intermediate glass preforms, each of the plurality of intermediate glass preforms comprising an intermediate clad region having an external radius c to define a second core-to-clad ratio a/c of from 0.20 to 0.Type: ApplicationFiled: December 28, 2012Publication date: November 19, 2015Inventors: Antonio Adigrat, Valeria Caronna, Franco Cocchini, Antonio Collaro, Stefano Grieco, Ida Nivelli
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Patent number: 9097868Abstract: A method for detecting faulty laying down of an optical cable exhibiting a measured cut-off wavelength includes providing an optical cable for transmitting optical signals including at least one single-mode optical fiber having an attenuation equal to or larger than a first threshold value as measured when wound for one turn around a bending radius equal to or smaller than 5 mm at at least one predetermined test wavelength, the test wavelength being smaller than the measured cut-off wavelength, and an attenuation smaller than a second threshold value as measured when wound for one turn around a bending radius equal to at least a minimum bending radius at an operative wavelength equal to or larger than the measured cut-off wavelength; laying the optical cable; and measuring the attenuation in the at least one optical fiber at the predetermined test wavelength.Type: GrantFiled: May 7, 2010Date of Patent: August 4, 2015Assignee: PRYSMIAN S.P.AInventors: Marco Ruzzier, Susanna Cattelan, Andrea Macchetta, Antonio Collaro, Valeria Caronna
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Publication number: 20130142491Abstract: A method for detecting faulty laying down of an optical cable exhibiting a measured cut-off wavelength includes providing an optical cable for transmitting optical signals including at least one single-mode optical fibre having an attenuation equal to or larger than a first threshold value as measured when wound for one turn around a bending radius equal to or smaller than 5 mm at at least one predetermined test wavelength, the test wavelength being smaller than the measured cut-off wavelength, and an attenuation smaller than a second threshold value as measured when wound for one turn around a bending radius equal to at least a minimum bending radius at an operative wavelength equal to or larger than the measured cut-off wavelength; laying the optical cable; and measuring the attenuation in the at least one optical fibre at the predetermined test wavelength.Type: ApplicationFiled: May 7, 2010Publication date: June 6, 2013Inventors: Marco Ruzzier, Susanna Cattelan, Andrea Macchetta, Antonio Collaro, Valeria Caronna
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Patent number: 7908888Abstract: A process for producing a low-attenuation optical fiber by producing a soot core preform by chemical deposition on a substrate; removing the substrate from the soot core preform, thereby forming a central hole along the soot preform; drying and consolidating the soot core preform in a consolidation furnace to form a glass core preform; heating the glass preform in the consolidation furnace above a glass melting temperature to produce a reduction of the diameter of the central hole; and stretching the glass core preform to completely close the central hole.Type: GrantFiled: December 24, 2003Date of Patent: March 22, 2011Assignee: Prysmian Cavi E Sistemi Energia S.R.L.Inventors: Antonio Adigrat, Stefano Grieco, Valeria Caronna, Giuseppe Ferri, Franco Cocchini
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Patent number: RE50249Abstract: A process and an apparatus for drying and consolidating an optical fibre preform in a furnace tube comprising a heating chamber, wherein an extension tube having an extension chamber configured to house at least a length portion of the preform is removably joined to the furnace tube and the drying process starts with the preform not completely inserted into the furnace tube, an upper length portion of the preform being surrounded by the extension tube joint to the furnace tube.Type: GrantFiled: October 13, 2022Date of Patent: December 31, 2024Assignee: Prysmian S.p.A.Inventors: Stefano Grieco, Valeria Caronna, Antonio Schiaffo