Patents by Inventor Takakazu Gotoh

Takakazu Gotoh 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).

  • Patent number: 8567217
    Abstract: A method for manufacturing an optical fiber preform includes a process A of applying flame polishing to a center glass rod, a process B of determining a ratio ra/rb, which is a ratio of a radius ra of the center glass rod expressed in millimeters with respect to a radius rb of a target optical fiber preform expressed in millimeters, based on a refractive index profile of a target optical fiber preform, and a process C of determining an amount of fine glass particles to be deposited on the center glass rod so that a ratio ra/rb/c falls within a range from 0.002 to 0.01, where ā€œcā€ is a maximum value of hydroxyl group concentration expressed in ppm in the vicinity of a boundary between the center glass rod and an outer layer, which is formed by depositing fine glass particles on the center rod and by being vitrified.
    Type: Grant
    Filed: May 5, 2004
    Date of Patent: October 29, 2013
    Assignee: FUJIKURA Ltd.
    Inventors: Takakazu Gotoh, Naritoshi Yamada
  • Patent number: 8375749
    Abstract: A method for fabricating a porous silica preform includes the steps of supplying fuel gas for generating an oxyhydrogen flame to a glass synthesizing burner; supplying Gas A containing silicon and Gas B containing fluorine to the burner; synthesizing glass particles; and depositing the glass particles around a starting rod, in which when glass particles are deposited directly on the starting rod, a supply of Gas A and a supply of Gas B supplied to the burner are adjusted so that a ratio of the number of fluorine atoms to the number of silicon atoms in the gas supplied to the burner satisfies the following Formula (1): {(number of F atoms)/(number of Si atoms)}?0.1??(1).
    Type: Grant
    Filed: December 3, 2009
    Date of Patent: February 19, 2013
    Assignee: Fujikura Ltd.
    Inventors: Kentaro Ichii, Takakazu Gotoh, Naritoshi Yamada, Koichi Harada
  • Publication number: 20100077800
    Abstract: A method for fabricating a porous silica preform includes the steps of supplying fuel gas for generating an oxyhydrogen flame to a glass synthesizing burner; supplying Gas A containing silicon and Gas B containing fluorine to the burner; synthesizing glass particles; and depositing the glass particles around a starting rod, in which when glass particles are deposited directly on the starting rod, a supply of Gas A and a supply of Gas B supplied to the burner are adjusted so that a ratio of the number of fluorine atoms to the number of silicon atoms in the gas supplied to the burner satisfies the following Formula (1): {(number of F atoms)/(number of Si atoms)}?0.
    Type: Application
    Filed: December 3, 2009
    Publication date: April 1, 2010
    Applicant: FUJIKURA LTD.
    Inventors: Kentaro ICHII, Takakazu GOTOH, Naritoshi YAMADA, Koichi HARADA
  • Patent number: 7647792
    Abstract: A method for fabricating a porous silica preform includes the steps of supplying fuel gas for generating an oxyhydrogen flame to a glass synthesizing burner; supplying Gas A containing silicon and Gas B containing fluorine to the burner; synthesizing glass particles; and depositing the glass particles around a starting rod, in which when glass particles are deposited directly on the starting rod, a supply of Gas A and a supply of Gas B supplied to the burner are adjusted so that a ratio of the number of fluorine atoms to the number of silicon atoms in the gas supplied to the burner satisfies the following Formula (1): {(number of F atoms)/(number of Si atoms)}?0.1 ??(1).
    Type: Grant
    Filed: November 9, 2004
    Date of Patent: January 19, 2010
    Assignee: Fujikura Ltd.
    Inventors: Kentaro Ichii, Takakazu Gotoh, Naritoshi Yamada, Koichi Harada
  • Publication number: 20050109065
    Abstract: A method for fabricating a porous silica preform includes the steps of supplying fuel gas for generating an oxyhydrogen flame to a glass synthesizing burner; supplying Gas A containing silicon and Gas B containing fluorine to the burner; synthesizing glass particles; and depositing the glass particles around a starting rod, in which when glass particles are deposited directly on the starting rod, a supply of Gas A and a supply of Gas B supplied to the burner are adjusted so that a ratio of the number of fluorine atoms to the number of silicon atoms in the gas supplied to the burner satisfies the following Formula (1): {(number of F atoms)/(number of Si atoms)}?0.
    Type: Application
    Filed: November 9, 2004
    Publication date: May 26, 2005
    Inventors: Kentaro Ichii, Takakazu Gotoh, Naritoshi Yamada, Koichi Harada
  • Publication number: 20040221618
    Abstract: A method for manufacturing an optical fiber preform includes a process A of applying flame polishing to a center glass rod, a process B of determining a ratio ra/rb, which is a ratio of a radius ra of the center glass rod expressed in millimeters with respect to a radius rb of a target optical fiber preform expressed in millimeters, based on a refractive index profile of a target optical fiber preform, and a process C of determining an amount of fine glass particles to be deposited on the center glass rod so that a ratio ra/rb/c falls within a range from 0.002 to 0.01, where “c” is a maximum value of hydroxyl group concentration expressed in ppm in the vicinity of a boundary between the center glass rod and an outer layer, which is formed by depositing fine glass particles on the center rod and by being vitrified.
    Type: Application
    Filed: May 5, 2004
    Publication date: November 11, 2004
    Applicant: FUJIKURA LTD.
    Inventors: Takakazu Gotoh, Naritoshi Yamada
  • Publication number: 20040007025
    Abstract: A method for producing a porous preform comprising measuring the surface temperature distribution at the end of the core soot preform, and (1) maintaining the surface temperature Tc at the center point on the end of the core soot preform in the range of 500 to 1000° C., and preferably in the range of 600 to 950° C.; and maintaining the difference Tm−Tc between the maximum surface temperature Tm at the end of the core soot preform and the surface temperature Tc at the center point on the end of the core soot preform in the range of 5 to 45° C.; and/or (2) maintaining the ratio R of the area in which the surface temperature at the end of the core soot preform is higher than the surface temperature Tc at the center point on the end of the core soot preform in the range of 5 to 30%.
    Type: Application
    Filed: January 10, 2003
    Publication date: January 15, 2004
    Applicant: Fujikura Ltd.
    Inventors: Takakazu Gotoh, Masahiro Horikoshi