Patents by Inventor Noah Sturcken

Noah Sturcken 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).

  • Publication number: 20180268982
    Abstract: Inductive elements comprising anisotropic media and biasing coils for magnetically biasing thereof and methods of manufacture and operation for use in applications such as microelectronics. Application of an electrical current through the bias coils generates a magnetic field that biases the magnetic material such that a desirable orientation of anisotropy is achieved throughout the magnetic core and enables modulation of the inductive response of the device. Electrical conductors coupled to interconnects are magnetically coupled to magnetic core layers to produce self and/or mutual inductors.
    Type: Application
    Filed: March 5, 2018
    Publication date: September 20, 2018
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu
  • Patent number: 10064277
    Abstract: An integrated passive device and assemblies containing the same are disclosed. The integrated passive device can include a thin-film magnetic inductor. Various configurations of electrically connecting an integrated passive device to a processor and/or an interposer such as a chip-scale package are also disclosed.
    Type: Grant
    Filed: March 29, 2016
    Date of Patent: August 28, 2018
    Assignee: Ferric, Inc.
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu, Michael Lekas
  • Publication number: 20180182530
    Abstract: An inductor includes a magnetic core lying in a core plane. The magnetic core includes a vertical laminated structure with respect to the core plane of alternating ferromagnetic vertical layers and insulator vertical layers. An easy axis of magnetization can be permanently or semi-permanently fixed in the ferromagnetic vertical layers along an axis orthogonal to the core plane. Methods of manufacturing same are also disclosed.
    Type: Application
    Filed: December 27, 2016
    Publication date: June 28, 2018
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu, Michael Lekas
  • Publication number: 20180182841
    Abstract: Methods of manufacturing are disclosed for an inductor that includes a magnetic core lying in a core plane. The magnetic core includes a vertical laminated structure with respect to the core plane of alternating ferromagnetic vertical layers and insulator vertical layers. An easy axis of magnetization can be permanently or semi-permanently fixed in the ferromagnetic vertical layers along a first axis orthogonal to the core plane. A hard axis of magnetization can be permanently or semi-permanently induced in the ferromagnetic vertical layers, the hard axis of magnetization lying in a plane that is orthogonal to the first axis.
    Type: Application
    Filed: January 30, 2017
    Publication date: June 28, 2018
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu, Michael Lekas
  • Patent number: 10002828
    Abstract: A magnetic polymer for use in microelectronic fabrication includes a polymer matrix and a plurality of ferromagnetic particles disposed in the polymer matrix. The magnetic polymer can be part of an insulation layer in an inductor formed in one or more backend wiring layers of an integrated device. The magnetic polymer can also be in the form of a magnetic epoxy layer for mounting contacts of the integrated device to a package substrate.
    Type: Grant
    Filed: January 19, 2017
    Date of Patent: June 19, 2018
    Assignee: Ferric, Inc.
    Inventors: Noah Sturcken, Ryan Davies
  • Patent number: 9991040
    Abstract: Inductive elements comprising anisotropic media and biasing coils for magnetically biasing thereof and methods of manufacture and operation for use in applications such as microelectronics. Application of an electrical current through the bias coils generates a magnetic field that biases the magnetic material such that a desirable orientation of anisotropy is achieved throughout the magnetic core and enables modulation of the inductive response of the device. Electrical conductors coupled to interconnects are magnetically coupled to magnetic core layers to produce self and/or mutual inductors.
    Type: Grant
    Filed: June 23, 2015
    Date of Patent: June 5, 2018
    Assignee: Ferric, Inc.
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu
  • Publication number: 20180145592
    Abstract: A switched-mode power converter includes timing control feedback loop circuits to minimize or eliminate the potential difference across a high-power switch and a low-power switch during their transitions times. A first feedback circuit compares the measured voltage across the high-power switch at the moment the high-power switch closes with the input voltage to the high-power switch to control a low-to-high delay time. A second feedback circuit compares the measured voltage across the low-power switch at the moment the low-power switch closes with the input voltage to the low-power switch to control a high-to-low delay time. A third feedback circuit compares the measured voltage across the low-power switch at the moment the low-power switch opens. The output of the third feedback circuit is provided as inputs to the first and second feedback circuits. The third feedback circuit also controls the frequency of the power converter.
    Type: Application
    Filed: January 12, 2018
    Publication date: May 24, 2018
    Inventors: William Lee, David Jew, Joseph Meyer, Noah Sturcken
  • Publication number: 20180110123
    Abstract: A switched inductor DC-DC power converter chiplet includes a CMOS power switch, an LC filter, regulation circuitry, feedback control circuitry, and interface control circuitry integrated on a common substrate. The inductor for the LC filter can be formed on the same surface or on opposing surfaces of the substrate as the electrical terminations for the substrate.
    Type: Application
    Filed: December 15, 2017
    Publication date: April 19, 2018
    Inventors: Noah Sturcken, David Jew, Joe Meyer, Ryan Davies, Hao Wu, Michael Lekas
  • Patent number: 9906131
    Abstract: A switched-mode power converter includes timing control feedback loop circuits to minimize or eliminate the potential difference across a high-power switch and a low-power switch during their transitions times. A first feedback circuit compares the measured voltage across the high-power switch at the moment the high-power switch closes with the input voltage to the high-power switch to control a low-to-high delay time. A second feedback circuit compares the measured voltage across the low-power switch at the moment the low-power switch closes with the input voltage to the low-power switch to control a high-to-low delay time. A third feedback circuit compares the measured voltage across the low-power switch at the moment the low-power switch opens. The output of the third feedback circuit is provided as inputs to the first and second feedback circuits. The third feedback circuit also controls the frequency of the power converter.
    Type: Grant
    Filed: August 22, 2016
    Date of Patent: February 27, 2018
    Assignee: Ferric Inc.
    Inventors: William Lee, David Jew, Joseph Meyer, Noah Sturcken
  • Publication number: 20180054118
    Abstract: A switched-mode power converter includes timing control feedback loop circuits to minimize or eliminate the potential difference across a high-power switch and a low-power switch during their transitions times. A first feedback circuit compares the measured voltage across the high-power switch at the moment the high-power switch closes with the input voltage to the high-power switch to control a low-to-high delay time. A second feedback circuit compares the measured voltage across the low-power switch at the moment the low-power switch closes with the input voltage to the low-power switch to control a high-to-low delay time. A third feedback circuit compares the measured voltage across the low-power switch at the moment the low-power switch opens. The output of the third feedback circuit is provided as inputs to the first and second feedback circuits. The third feedback circuit also controls the frequency of the power converter.
    Type: Application
    Filed: August 22, 2016
    Publication date: February 22, 2018
    Inventors: William Lee, David Jew, Joseph Meyer, Noah Sturcken
  • Patent number: 9847718
    Abstract: A DC-DC power converter includes a switched inductor power converter and a parallel linear voltage regulator. Two transistors are positioned in the switched inductor power converter to periodically set a bridge voltage thereby producing a square wave with a fixed frequency and variable duty cycle. An inductor and an output capacitor filter the bridge voltage so that only the average value of the bridge voltage is passed to the load. Parasitic impedance due to physical separation of the switched inductor power converter and the load is overcome by providing the parallel linear regulator with its own dedicated channel to the load.
    Type: Grant
    Filed: July 30, 2015
    Date of Patent: December 19, 2017
    Assignee: Ferric, Inc.
    Inventors: Noah Sturcken, David Jew, Joe Meyer
  • Publication number: 20170290157
    Abstract: An integrated passive device and assemblies containing the same are disclosed. The integrated passive device can include a thin-film magnetic inductor. Various configurations of electrically connecting an integrated passive device to a processor and/or an interposer such as a chip-scale package are also disclosed. An inductor on an integrated passive device can configured and arranged such that it is magnetically coupled to an inductor on a structure such as a processor chip or a system on a chip.
    Type: Application
    Filed: January 17, 2017
    Publication date: October 5, 2017
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu, Michael Lekas
  • Publication number: 20170290156
    Abstract: An integrated passive device and assemblies containing the same are disclosed. The integrated passive device can include a thin-film magnetic inductor. Various configurations of electrically connecting an integrated passive device to a processor and/or an interposer such as a chip-scale package are also disclosed.
    Type: Application
    Filed: March 29, 2016
    Publication date: October 5, 2017
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu, Michael Lekas
  • Patent number: 9781834
    Abstract: An integrated passive device and assemblies containing the same are disclosed. The integrated passive device can include a thin-film magnetic inductor. Various configurations of electrically connecting an integrated passive device to a processor and/or an interposer such as a chip-scale package are also disclosed. An inductor on an integrated passive device can configured and arranged such that it is magnetically coupled to an inductor on a structure such as a processor chip or a system on a chip.
    Type: Grant
    Filed: January 17, 2017
    Date of Patent: October 3, 2017
    Assignee: Ferric Inc.
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu, Michael Lekas
  • Publication number: 20170250133
    Abstract: A magnetic polymer for use in microelectronic fabrication includes a polymer matrix and a plurality of ferromagnetic particles disposed in the polymer matrix. The magnetic polymer can be part of an insulation layer in an inductor formed in one or more backend wiring layers of an integrated device. The magnetic polymer can also be in the form of a magnetic epoxy layer for mounting contacts of the integrated device to a package substrate.
    Type: Application
    Filed: February 25, 2016
    Publication date: August 31, 2017
    Inventors: Noah Sturcken, Ryan Davies
  • Publication number: 20170250134
    Abstract: A magnetic polymer for use in microelectronic fabrication includes a polymer matrix and a plurality of ferromagnetic particles disposed in the polymer matrix. The magnetic polymer can be part of an insulation layer in an inductor formed in one or more backend wiring layers of an integrated device. The magnetic polymer can also be in the form of a magnetic epoxy layer for mounting contacts of the integrated device to a package substrate.
    Type: Application
    Filed: January 19, 2017
    Publication date: August 31, 2017
    Inventors: Noah Sturcken, Ryan Davies
  • Publication number: 20160372251
    Abstract: Inductive elements comprising anisotropic media and biasing coils for magnetically biasing thereof and methods of manufacture and operation for use in applications such as microelectronics. Application of an electrical current through the bias coils generates a magnetic field that biases the magnetic material such that a desirable orientation of anisotropy is achieved throughout the magnetic core and enables modulation of the inductive response of the device. Electrical conductors coupled to interconnects are magnetically coupled to magnetic core layers to produce self and/or mutual inductors.
    Type: Application
    Filed: September 2, 2016
    Publication date: December 22, 2016
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu
  • Publication number: 20160036330
    Abstract: A DC-DC power converter includes a switched inductor power converter and a parallel linear voltage regulator. Two transistors are positioned in the switched inductor power converter to periodically set a bridge voltage thereby producing a square wave with a fixed frequency and variable duty cycle. An inductor and an output capacitor filter the bridge voltage so that only the average value of the bridge voltage is passed to the load. Parasitic impedance due to physical separation of the switched inductor power converter and the load is overcome by providing the parallel linear regulator with its own dedicated channel to the load.
    Type: Application
    Filed: July 30, 2015
    Publication date: February 4, 2016
    Inventors: Noah Sturcken, David Jew, Joe Meyer
  • Publication number: 20150371756
    Abstract: Inductive elements comprising anisotropic media and biasing coils for magnetically biasing thereof and methods of manufacture and operation for use in applications such as microelectronics. Application of an electrical current through the bias coils generates a magnetic field that biases the magnetic material such that a desirable orientation of anisotropy is achieved throughout the magnetic core and enables modulation of the inductive response of the device. Electrical conductors coupled to interconnects are magnetically coupled to magnetic core layers to produce self and/or mutual inductors.
    Type: Application
    Filed: June 23, 2015
    Publication date: December 24, 2015
    Inventors: Noah Sturcken, Ryan Davies, Hao Wu
  • Publication number: 20130257525
    Abstract: Various circuit board voltage regulators and methods of making and using the same are disclosed. In one aspect, a method of manufacturing is provided that includes fabricating at least one inductor in a circuit board and coupling a semiconductor chip to the circuit board. The at least one inductor is electrically coupled to the semiconductor chip. Regulator logic is electrically coupled to the at least one inductor, the regulator logic and the at least one inductor are operable to deliver a regulated voltage to the semiconductor chip.
    Type: Application
    Filed: March 30, 2012
    Publication date: October 3, 2013
    Inventors: Stephen V. Kosonocky, Noah Sturcken