Patents by Inventor Nathalie Hendrickx

Nathalie Hendrickx 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: 10115961
    Abstract: The disclosure relates to a method for the fabrication of a thin-film solid-state battery with Ni(OH)2 electrode, battery cell, and battery. One example embodiment is a method for fabricating a thin-film solid-state battery cell on a substrate comprising a first current collector layer. The method includes depositing above the first current collector layer a first electrode layer. The first electrode layer is a nanoporous composite layer that includes a plurality of pores having pore walls. The first electrode layer includes a mixture of a dielectric material and an active electrode material. The method also includes depositing above the first electrode layer a porous dielectric layer. The method further includes depositing directly on the porous dielectric layer a second electrode layer. Depositing the second electrode layer includes depositing a porous Ni(OH)2 layer using an electrochemical deposition process.
    Type: Grant
    Filed: March 2, 2017
    Date of Patent: October 30, 2018
    Assignees: IMEC VZW, Katholieke Universiteit Leuven, KU LEUVEN R&D, Panasonic Corporation
    Inventors: Philippe Vereecken, Stanislaw Zankowski, Nathalie Hendrickx, Maarten Mees, Mitsuhiro Murata, Haruhiko Habuta
  • Publication number: 20170271649
    Abstract: The disclosure relates to a method for the fabrication of a thin-film solid-state battery with Ni(OH)2 electrode, battery cell, and battery. One example embodiment is a method for fabricating a thin-film solid-state battery cell on a substrate comprising a first current collector layer. The method includes depositing above the first current collector layer a first electrode layer. The first electrode layer is a nanoporous composite layer that includes a plurality of pores having pore walls. The first electrode layer includes a mixture of a dielectric material and an active electrode material. The method also includes depositing above the first electrode layer a porous dielectric layer. The method further includes depositing directly on the porous dielectric layer a second electrode layer. Depositing the second electrode layer includes depositing a porous Ni(OH)2 layer using an electrochemical deposition process.
    Type: Application
    Filed: March 2, 2017
    Publication date: September 21, 2017
    Applicants: IMEC VZW, Katholieke Universiteit Leuven, KU LEUVEN R&D, Panasonic Corporation
    Inventors: Philippe Vereecken, Stanislaw Zankowski, Nathalie Hendrickx, Maarten Mees, Mitsuhiro Murata, Haruhiko Habuta
  • Patent number: 9556336
    Abstract: Methods and systems are provided for a dry silicone gel. The dry silicone gel comprises a base polymer having a vinyl-silicone group, a crosslinker, and a chain extender. The dry silicone gel may be made by reacting (a) a first set of components comprising a base polymer having a vinyl-silicone group and an addition cure catalyst with (b) a second set of components comprising a crosslinker, a chain extender, and additional base polymer. In certain circumstances, the base polymer and additional base polymer are vinyl-terminated polydimethylsiloxane.
    Type: Grant
    Filed: June 20, 2011
    Date of Patent: January 31, 2017
    Assignees: COMMSCOPE CONNECTIVITY BELGIUM BVBA, COMMSCOPE TECHNOLOGIES LLC
    Inventors: Stephane J. G. Berghmans, Michael A. Oar, Miguel A. Morales, Gary W. Adams, Anne-Marie Prins, Nathalie Hendrickx
  • Patent number: 8642891
    Abstract: Methods and systems are provided for a dry silicone gel in a closure or interconnect system. The dry silicone gel may be made by reacting a crosslinker, a chain extender, and a vinyl-terminated polydimethylsiloxane. The reaction may be conducted in the presence of a catalyst. In certain embodiments, the dry silicone gel may comprise: (1) a hardness between 100 g and 300 g, (2) a stress relaxation between 30% and 60% when subjected to a deformation of 50% of the original size of the gel, (3) a compression set between 4% and 20% after 50% strain has been applied to the gel for 1000 hours at 70° C., and/or (4) less than 10% oil bleed out under compression of 1.2 atm after 60 days at 60° C.
    Type: Grant
    Filed: June 20, 2011
    Date of Patent: February 4, 2014
    Assignees: Tyco Electronics AMP GmbH, Tyco Electronics Raychem BVBA, Tyco Electronics Corporation
    Inventors: Stephane J. G. Berghmans, Michael A. Oar, Miguel A. Morales, Gary W. Adams, Anne-Marie Prins, Nathalie Hendrickx, Guenter Feldmeier, Rudi Kraemer, Bert Bergner, Kristof Vastmans
  • Publication number: 20120320535
    Abstract: Methods and systems are provided for a dry silicone gel in a closure or interconnect system. The dry silicone gel may be made by reacting a crosslinker, a chain extender, and a vinyl-terminated polydimethylsiloxane. The reaction may be conducted in the presence of a catalyst. In certain embodiments, the dry silicone gel may comprise: (1) a hardness between 100 g and 300 g, (2) a stress relaxation between 30% and 60% when subjected to a deformation of 50% of the original size of the gel, (3) a compression set between 4% and 20% after 50% strain has been applied to the gel for 1000 hours at 70° C., and/or (4) less than 10% oil bleed out under compression of 1.2 atm after 60 days at 60° C.
    Type: Application
    Filed: June 20, 2011
    Publication date: December 20, 2012
    Inventors: Stephane J.G. Berghmans, Michael A. Oar, Miguel A. Morales, Gary W. Adams, Anne-Marie Prins, Nathalie Hendrickx, Guenter Feldmeier, Rudi Kraemer, Bert Bergmer, Kristof Vastmans
  • Publication number: 20120322942
    Abstract: Methods and systems are provided for a dry silicone gel. The dry silicone gel comprises a base polymer having a vinyl-silicone group, a crosslinker, and a chain extender. The dry silicone gel may be made by reacting (a) a first set of components comprising a base polymer having a vinyl-silicone group and an addition cure catalyst with (b) a second set of components comprising a crosslinker, a chain extender, and additional base polymer. In certain circumstances, the base polymer and additional base polymer are vinyl-terminated polydimethylsiloxane.
    Type: Application
    Filed: June 20, 2011
    Publication date: December 20, 2012
    Inventors: Stephane J.G. Berghmans, Michael A. Oar, Miguel A. Morales, Gary W. Adams, Anne-Marie Prins, Nathalie Hendrickx
  • Patent number: RE48486
    Abstract: Methods and systems are provided for a dry silicone gel. The dry silicone gel comprises a base polymer having a vinyl-silicone group, a crosslinker, and a chain extender. The dry silicone gel may be made by reacting (a) a first set of components comprising a base polymer having a vinyl-silicone group and an addition cure catalyst with (b) a second set of components comprising a crosslinker, a chain extender, and additional base polymer. In certain circumstances, the base polymer and additional base polymer are vinyl-terminated polydimethylsiloxane.
    Type: Grant
    Filed: January 31, 2019
    Date of Patent: March 30, 2021
    Assignees: CommScope Connectivity Belgium BVBA, CommScope Technologies LLC
    Inventors: Stephane J. G. Berghmans, Michael A. Oar, Miguel A. Morales, Gary W. Adams, Anne-Marie Prins, Nathalie Hendrickx
  • Patent number: RE49827
    Abstract: Methods and systems are provided for a dry silicone gel. The dry silicone gel comprises a base polymer having a vinylsilicone group, a crosslinker, and a chain extender. The dry silicone gel may be made by reacting (a) a first set of components comprising a base polymer having a vinylsilicone group and an addition cure catalyst with (b) a second set of components comprising a crosslinker, a chain extender, and additional base polymer. In certain circumstances, the base polymer and additional base polymer are vinyl-terminated polydimethylsiloxane.
    Type: Grant
    Filed: February 23, 2021
    Date of Patent: February 6, 2024
    Assignees: CommScope Connectivity Belgium BVBA, CommScope Technologies LLC
    Inventors: Stephane J. G. Berghmans, Michael A. Oar, Miguel A. Morales, Gary W. Adams, Anne-Marie Prins, Nathalie Hendrickx