Patents by Inventor James Pellegrino Alexander
James Pellegrino Alexander 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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Patent number: 11969701Abstract: The system and method of the invention pertains to an axial flux stator is implemented to replace the drive-end magnets and the drive motor. The axial flux stator comprises a control circuit to control the voltage and current provided to the stator, to measure the torque and speed of rotation, and to measure the magnetic flux and magnetic flux density produced by the axial flux stator and impeller magnets, individually or in combination. The axial flux stator comprises a plurality of current carrying elements to produce magnetic flux in an axial direction and drive the impeller.Type: GrantFiled: November 28, 2020Date of Patent: April 30, 2024Assignee: Global Life Sciences Solutions USA LLCInventors: James Pellegrino Alexander, Klaus Gebauer, David Allan Torrey, Ashraf Said Atalla, Sima Didari, Richard Lee Damren
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Patent number: 11097236Abstract: The system and method of the invention pertains to an axial flux stator is implemented to replace the drive-end magnets and the drive motor. The axial flux stator comprises a control circuit to control the voltage and current provided to the stator, to measure the torque and speed of rotation, and to measure the magnetic flux and magnetic flux density produced by the axial flux stator and impeller magnets, individually or in combination. The axial flux stator comprises a plurality of current carrying elements to produce magnetic flux in an axial direction and drive the impeller.Type: GrantFiled: March 8, 2017Date of Patent: August 24, 2021Assignee: GLOBAL LIFE SCIENCES SOLUTIONS USA LLCInventors: James Pellegrino Alexander, Klaus Gebauer, David Allan Torrey, Ashraf Said Atalla, Sima Didari, Richard Lee Damren
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Publication number: 20210077961Abstract: The system and method of the invention pertains to an axial flux stator is implemented to replace the drive-end magnets and the drive motor. The axial flux stator comprises a control circuit to control the voltage and current provided to the stator, to measure the torque and speed of rotation, and to measure the magnetic flux and magnetic flux density produced by the axial flux stator and impeller magnets, individually or in combination. The axial flux stator comprises a plurality of current carrying elements to produce magnetic flux in an axial direction and drive the impeller.Type: ApplicationFiled: November 28, 2020Publication date: March 18, 2021Inventors: JAMES PELLEGRINO ALEXANDER, KLAUS GEBAUER, DAVID ALLAN TORREY, ASHRAF SAID ATALLA, SIMA DIDARI, RICHARD LEE DAMREN
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Patent number: 10583409Abstract: The system and method of the invention pertains to an axial flux stator is implemented to replace the drive-end magnets and the drive motor. The axial flux stator comprises a control circuit to control the voltage and current provided to the stator, to measure the torque and speed of rotation, and to measure the magnetic flux and magnetic flux density produced by the axial flux stator and impeller magnets, individually or in combination. The axial flux stator comprises a plurality of current carrying elements to produce magnetic flux in an axial direction and drive the impeller.Type: GrantFiled: March 31, 2016Date of Patent: March 10, 2020Assignee: GENERAL ELECTRIC COMPANYInventors: Ashraf Said Atalla, Klaus Gebauer, James Pellegrino Alexander, David Allan Torrey
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Patent number: 10454323Abstract: An electric machine is presented. The electric machine includes a stator and a rotor disposed concentric to the stator. At least one of the rotor and the stator includes a core including a plurality of laminates stacked along the axial direction of the electric machine, where the stacked plurality of laminates defines a plurality of axial slots. The at least one of the rotor and the stator further includes a permanent magnet assembly disposed in one or more of the plurality of axial slots, where the permanent magnet assembly includes two or more permanent magnets disposed serially along the axial direction of the electric machine such that adjacently disposed permanent magnets overlap one another to form an overlapped interface. The overlapped interface spans at least two laminates of the plurality of laminates of the core.Type: GrantFiled: August 1, 2017Date of Patent: October 22, 2019Assignee: GE Oil & Gas ESP, Inc.Inventors: Manoj Ramprasad Shah, Nathaniel Benedict Hawes, James Pellegrino Alexander, Patel Bhageerath Reddy
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Publication number: 20190282980Abstract: The system and method of the invention pertains to an axial flux stator is implemented to replace the drive-end magnets and the drive motor. The axial flux stator comprises a control circuit to control the voltage and current provided to the stator, to measure the torque and speed of rotation, and to measure the magnetic flux and magnetic flux density produced by the axial flux stator and impeller magnets, individually or in combination. The axial flux stator comprises a plurality of current carrying elements to produce magnetic flux in an axial direction and drive the impeller.Type: ApplicationFiled: March 8, 2017Publication date: September 19, 2019Applicant: GENERAL ELECTRIC COMPANYInventors: JAMES PELLEGRINO ALEXANDER, KLAUS GEBAUER, DAVID ALLAN TORREY, ASHRAF SAID ATALLA, SIMA DIDARI, RICHARD LEE DAMREN
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Patent number: 10229777Abstract: A magnetic component including at least one region is disclosed. The at least one region includes nitrogen and a concentration of the nitrogen in the at least one region is graded across a dimension of the at least one region. Further, a saturation magnetization in the at least one region is graded across the dimension of the at least one region. Further, a method of varying the magnetization values in at least one region of the magnetic component is disclosed.Type: GrantFiled: March 23, 2016Date of Patent: March 12, 2019Assignee: General Electric CompanyInventors: Min Zou, Francis Johnson, Patel Bhageerath Reddy, James Pellegrino Alexander, Ayman Mohamed Fawzi EL-Refaie, Wanming Zhang
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Patent number: 10229776Abstract: A magnetic component including first and second regions, and a method of varying the magnetization values in different regions of the magnetic component are disclosed. The first and the second regions are characterized by a nitrogen content that is different from each other. At least one of the first region and the second region is partially-magnetic and has a nitrogen content in a range from about 0.1 weight % to about 0.4 weight % of that region. A concentration of carbon, if present, of both the first and second regions is less than about 0.05 weight % of the respective regions.Type: GrantFiled: March 23, 2016Date of Patent: March 12, 2019Assignee: General Electric CompanyInventors: Francis Johnson, Min Zou, Patel Bhageerath Reddy, James Pellegrino Alexander, Ayman Mohamed Fawzi EL-Refaie
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Publication number: 20180034329Abstract: An electric machine is presented. The electric machine includes a stator and a rotor disposed concentric to the stator. At least one of the rotor and the stator includes a core including a plurality of laminates stacked along the axial direction of the electric machine, where the stacked plurality of laminates defines a plurality of axial slots. The at least one of the rotor and the stator further includes a permanent magnet assembly disposed in one or more of the plurality of axial slots, where the permanent magnet assembly includes two or more permanent magnets disposed serially along the axial direction of the electric machine such that adjacently disposed permanent magnets overlap one another to form an overlapped interface. The overlapped interface spans at least two laminates of the plurality of laminates of the core.Type: ApplicationFiled: August 1, 2017Publication date: February 1, 2018Inventors: Manoj Ramprasad Shah, Nathaniel Benedict Hawes, James Pellegrino Alexander, Patel Bhageerath Reddy
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Publication number: 20170282138Abstract: The system and method of the invention pertains to an axial flux stator is implemented to replace the drive-end magnets and the drive motor. The axial flux stator comprises a control circuit to control the voltage and current provided to the stator, to measure the torque and speed of rotation, and to measure the magnetic flux and magnetic flux density produced by the axial flux stator and impeller magnets, individually or in combination. The axial flux stator comprises a plurality of current carrying elements to produce magnetic flux in an axial direction and drive the impeller.Type: ApplicationFiled: March 31, 2016Publication date: October 5, 2017Inventors: Ashraf Said Atalla, Klaus Gebauer, James Pellegrino Alexander, David Allan Torrey
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Patent number: 9680344Abstract: An electrical machine is provided. The electrical machine includes a stator, a rotor, and a plurality of switches. The stator includes main windings and auxiliary windings. The rotor is couplable to a prime mover configured to turn the rotor relative to the stator to generate at least six phases of alternating current (AC) power at the main windings. The plurality of switches is respectively coupled between the auxiliary windings and groups of the main windings. The plurality of switches is configured to convert the at least six phases to three phases when the plurality of switches is closed.Type: GrantFiled: November 13, 2015Date of Patent: June 13, 2017Assignee: General Electric CompanyInventors: Ashraf Said Atalla, Manoj Ramprasad Shah, Satish Prabhakaran, James Pellegrino Alexander
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Patent number: 9673667Abstract: A permanent magnet electrical machine includes a stator having conductive windings wound thereon and one or more permanent magnets embedded in the stator. A magnetic keeper element is positioned on the stator so as to form a magnetic flux path with the permanent magnets, with the magnetic keeper element closing the magnetic flux path of the permanent magnets by providing a low reluctance flux path to magnetic flux generated by the permanent magnets. A vacuum pressure impregnation (VPI) process is performed on the stator to increase a thermal conductivity of the windings, with the VPI process including a curing step that is performed at a selected temperature. The magnetic keeper element sets an operating point of the permanent magnets to an internal flux density level above a demagnetization threshold associated with the selected temperature at which the curing step is performed.Type: GrantFiled: July 22, 2014Date of Patent: June 6, 2017Assignee: GENERAL ELECTRIC COMPANYInventors: Tsarafidy Raminosoa, James Pellegrino Alexander, Ayman Mohamed Fawzi EL-Refaie
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Publication number: 20170141633Abstract: An electrical machine is provided. The electrical machine includes a stator, a rotor, and a plurality of switches. The stator includes main windings and auxiliary windings. The rotor is couplable to a prime mover configured to turn the rotor relative to the stator to generate at least six phases of alternating current (AC) power at the main windings. The plurality of switches is respectively coupled between the auxiliary windings and groups of the main windings. The plurality of switches is configured to convert the at least six phases to three phases when the plurality of switches is closed.Type: ApplicationFiled: November 13, 2015Publication date: May 18, 2017Inventors: Ashraf Said Atalla, Manoj Ramprasad Shah, Satish Prabhakaran, James Pellegrino Alexander
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Patent number: 9640308Abstract: A high temperature superconducting (HTS) magnet coil disposed within a cryostat is configured with a thermo-siphon cooling system containing a liquid cryogen. The cooling system is configured to indirectly conduction cool the HTS magnet coil by nucleate boiling of the liquid cryogen that is circulated by the thermo-siphon in a cooling tube attached to a heat exchanger bonded to the outside surface of the HTS magnet coil. A supply dewar is configured with a re-condenser cryocooler coldhead to recondense boiloff vapors generated during the nucleate boiling process.Type: GrantFiled: October 14, 2008Date of Patent: May 2, 2017Assignee: General Electric CompanyInventors: Evangelos Trifon Laskaris, James Pellegrino Alexander, Kiruba Sivasubramaniam, Tao Zhang
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Patent number: 9601951Abstract: A permanent magnet machine, a rotor assembly for the machine, and a pump assembly. The permanent magnet machine includes a stator assembly including a stator core configured to generate a magnetic field and extending along a longitudinal axis with an inner surface defining a cavity and a rotor assembly including a rotor core and a rotor shaft. The rotor core is disposed inside the cavity and configured to rotate about the longitudinal axis. The rotor assembly further including a plurality of permanent magnets for generating a magnetic field which interacts with the stator magnetic field to produce torque. The permanent magnets configured as one of internal or surface mounted. The rotor assembly also including a plurality of retaining clips configured to retain the plurality of permanent magnets relative to the rotor core. The pump assembly including an electric submersible pump and a permanent magnet motor for driving the pump.Type: GrantFiled: November 4, 2013Date of Patent: March 21, 2017Assignee: General Electric CompanyInventors: Ken Ivcar Salas Nobrega, Jeremy Daniel Van Dam, Manoj Ramprasad Shah, William Dwight Gerstler, Tsarafidy Raminosoa, Edward John Flett, Patel Bhageerath Reddy, James Pellegrino Alexander
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Publication number: 20170054335Abstract: An electrical machine exhibiting reduced friction and windage losses is disclosed. The electrical machine includes a stator and a rotor assembly configured to rotate relative to the stator, wherein the rotor assembly comprises a rotor core including a plurality of salient rotor poles that are spaced apart from one another around an inner hub such that an interpolar gap is formed between each adjacent pair of salient rotor poles, with an opening being defined by the rotor core in each interpolar gap. Electrically non-conductive and non-magnetic inserts are positioned in the gaps formed between the salient rotor poles, with each of the inserts including a mating feature formed an axially inner edge thereof that is configured to mate with a respective opening being defined by the rotor core, so as to secure the insert to the rotor core against centrifugal force experienced during rotation of the rotor assembly.Type: ApplicationFiled: November 1, 2016Publication date: February 23, 2017Applicant: General Electric CompanyInventors: Tsarafidy Raminosoa, James Pellegrino Alexander, Aymam Mohamed Fawzi EL-Refaie, David A. Torrey
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Patent number: 9520751Abstract: An electrical machine exhibiting reduced friction and windage losses is disclosed. The electrical machine includes a stator and a rotor assembly configured to rotate relative to the stator, wherein the rotor assembly comprises a rotor core including a plurality of salient rotor poles that are spaced apart from one another around an inner hub such that an interpolar gap is formed between each adjacent pair of salient rotor poles, with an opening being defined by the rotor core in each interpolar gap. Electrically non-conductive and non-magnetic inserts are positioned in the gaps formed between the salient rotor poles, with each of the inserts including a mating feature formed an axially inner edge thereof that is configured to mate with a respective opening being defined by the rotor core, so as to secure the insert to the rotor core against centrifugal force experienced during rotation of the rotor assembly.Type: GrantFiled: July 24, 2013Date of Patent: December 13, 2016Assignee: GENERAL ELECTRIC COMPANYInventors: Tsarafidy Raminosoa, James Pellegrino Alexander, Ayman Mohamed Fawzi El-Refaie, David A. Torrey
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Publication number: 20160294236Abstract: A synchronous reluctance machine includes a rotor having a first plate, a second plate, a first set of rotor poles, and a first set of axial stiffeners. Each rotor pole of the first set of rotor poles includes a first plurality of laminations axially stacked between the first plate and the second plate, and each lamination of the first plurality of laminations includes first channels configured to carry magnetic flux and a first plurality of passages spaced between the first channels. Each axial stiffener of the first set of axial stiffeners is disposed within a respective passage of the first plurality of passages. A first end of each axial stiffener of the first set of axial stiffeners interfaces with the first plate, and a second end of each axial stiffener of the first set of axial stiffeners interfaces with the second plate.Type: ApplicationFiled: April 1, 2015Publication date: October 6, 2016Inventors: James Pellegrino Alexander, Kevin Michael Grace, Patel Bhageerath Reddy
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Publication number: 20160203898Abstract: A magnetic component including first and second regions, and a method of varying the magnetization values in different regions of the magnetic component are disclosed. The first and the second regions are characterized by a nitrogen content that is different from each other. At least one of the first region and the second region is partially-magnetic and has a nitrogen content in a range from about 0.1 weight % to about 0.4 weight % of that region. A concentration of carbon, if present, of both the first and second regions is less than about 0.05 weight % of the respective regions.Type: ApplicationFiled: March 23, 2016Publication date: July 14, 2016Inventors: Francis Johnson, Min Zou, Patel Bhageerath Reddy, James Pellegrino Alexander, Ayman Mohamed Fawzi EL-Refaie
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Publication number: 20160203899Abstract: A magnetic component including at least one region is disclosed. The at least one region includes nitrogen and a concentration of the nitrogen in the at least one region is graded across a dimension of the at least one region. Further, a saturation magnetization in the at least one region is graded across the dimension of the at least one region. Further, a method of varying the magnetization values in at least one region of the magnetic component is disclosed.Type: ApplicationFiled: March 23, 2016Publication date: July 14, 2016Inventors: Min Zou, Francis Johnson, Patel Bhageerath Reddy, James Pellegrino Alexander, Ayman Mohamed Fawzi EL-Refaie, Wanming Zhang