Patents by Inventor Nathalie Capati

Nathalie Capati 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: 20230335853
    Abstract: Provided is a modular battery pack having six sides comprises a plurality of battery cells, a first and second cell holder having openings or notches to receive the ends of the battery cells, an electrical outlet connected to the plurality of battery cells, two plates attached to the sides of the cell holders, and two side housings that together form four sides of the modular battery pack, while the two plates form a fifth and a sixth side of the battery pack.
    Type: Application
    Filed: October 5, 2021
    Publication date: October 19, 2023
    Inventors: Terry Davis, Nathalie Capati, Gregoire Aby-Eva
  • Patent number: 11276904
    Abstract: Systems and methods for a battery pack to power an electric vehicle are provided. The battery pack can include a plurality of battery modules having a plurality of battery blocks. The battery blocks can include a plurality of cylindrical battery cells. A first current collector can include a conductive layer to couple the first current collector with positive terminals of the plurality of cylindrical battery cells. A second current collector can include a conductive layer to couple the second current collector with negative terminals of the plurality of cylindrical battery cells. The first current collector, second current collector, and an isolation layer can include a plurality of apertures to expose the positive terminals of the plurality of cylindrical battery cells. The positive terminals can extend through the plurality of apertures to couple with the conductive layer of the first current collector.
    Type: Grant
    Filed: April 27, 2020
    Date of Patent: March 15, 2022
    Assignee: CHONGQING JINKANG POWERTRAIN NEW ENERGY CO., LTD.
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Patent number: 11075431
    Abstract: Systems and methods to power an electric vehicle are provided. The system can include a battery pack having a plurality of battery modules, each of the of battery modules can include a plurality of battery blocks. The battery blocks can include a plurality of cylindrical battery cells. An integrated current collector device can be formed in a single structure and coupled with the plurality of cylindrical battery cells. The integrated current collector device can include a first current collector to couple with positive terminals of the cylindrical battery cells at first ends of the cylindrical battery cells and a second current collector to couple with negative terminals of the cylindrical battery cells at the first ends of the cylindrical battery cells. An isolation layer can be disposed between the first current collector and the second current collector to electrically isolate the first current collector from the second current collector.
    Type: Grant
    Filed: April 22, 2020
    Date of Patent: July 27, 2021
    Assignees: CHONGQING JINKANG NEW ENERGY VEHICLE CO., LTD., SF MOTORS, INC.
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Patent number: 10938003
    Abstract: Systems and methods to power electric vehicles are disclosed. A battery pack to power an electric vehicle is provided. The battery pack residing in the electric vehicle. The battery pack can include a plurality of battery modules. Each of the plurality of battery modules can include a plurality of battery blocks. A first battery block can include a plurality of cylindrical battery cells. Each of the plurality of cylindrical battery cells can have a pair of battery cell terminals and can have a voltage of up to 5 volts across the pair of battery cell terminals. The plurality of cylindrical battery cells can be electrically connected in parallel within the first battery block. Each cylindrical battery cell of the plurality of cylindrical battery cells can be spatially separated from each of at least one adjacent cylindrical battery cell within the first battery block by less than 2 millimeter (mm).
    Type: Grant
    Filed: August 30, 2018
    Date of Patent: March 2, 2021
    Assignees: CHONGQING JINKANG NEW ENERGY VEHICLE CO., LTD., SF Motors Inc.
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20200259153
    Abstract: Systems and methods for a battery pack to power an electric vehicle are provided. The battery pack can include a plurality of battery modules having a plurality of battery blocks. The battery blocks can include a plurality of cylindrical battery cells. A first current collector can include a conductive layer to couple the first current collector with positive terminals of the plurality of cylindrical battery cells. A second current collector can include a conductive layer to couple the second current collector with negative terminals of the plurality of cylindrical battery cells. The first current collector, second current collector, and an isolation layer can include a plurality of apertures to expose the positive terminals of the plurality of cylindrical battery cells. The positive terminals can extend through the plurality of apertures to couple with the conductive layer of the first current collector.
    Type: Application
    Filed: April 27, 2020
    Publication date: August 13, 2020
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20200251710
    Abstract: Systems and methods to power an electric vehicle are provided. The system can include a battery pack having a plurality of battery modules, each of the of battery modules can include a plurality of battery blocks. The battery blocks can include a plurality of cylindrical battery cells. An integrated current collector device can be formed in a single structure and coupled with the plurality of cylindrical battery cells. The integrated current collector device can include a first current collector to couple with positive terminals of the cylindrical battery cells at first ends of the cylindrical battery cells and a second current collector to couple with negative terminals of the cylindrical battery cells at the first ends of the cylindrical battery cells. An isolation layer can be disposed between the first current collector and the second current collector to electrically isolate the first current collector from the second current collector.
    Type: Application
    Filed: April 22, 2020
    Publication date: August 6, 2020
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Patent number: 10680228
    Abstract: Systems and methods for a battery pack to power an electric vehicle are provided. The battery pack can include a plurality of battery modules having a plurality of battery blocks. The battery blocks can include a plurality of cylindrical battery cells. A first current collector can include a conductive layer to couple the first current collector with positive terminals of the plurality of cylindrical battery cells. A second current collector can include a conductive layer to couple the second current collector with negative terminals of the plurality of cylindrical battery cells. The first current collector, second current collector, and an isolation layer can include a plurality of apertures to expose the positive terminals of the plurality of cylindrical battery cells. The positive terminals can extend through the plurality of apertures to couple with the conductive layer of the first current collector.
    Type: Grant
    Filed: August 30, 2018
    Date of Patent: June 9, 2020
    Assignees: CHONGQING JINKANG NEW ENERGY VEHICLE CO., LTD., SF MOTORS, INC.
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Patent number: 10668832
    Abstract: Apparatuses, systems, and methods of controlling of an energy storage unit are detailed herein. A cold plate can be thermally coupled with an energy storage unit for powering the electric vehicle. The cold plate can have a bottom layer. The bottom layer can have a channel spanning across a top surface of the bottom layer to circulate coolant to transfer heat away from the energy storage unit. The top layer can be flush with a bottom surface of the energy storage unit. The top layer can define openings each extending between the top surface and the bottom surface. The cold plate can have inserts sealing the openings. The inserts can have a melting temperature lower than a melting temperature of the top layer to expose at least one opening when heated the melting temperature to allow release of the coolant from the channel onto the energy storage unit.
    Type: Grant
    Filed: August 30, 2018
    Date of Patent: June 2, 2020
    Assignees: CHONGQING JINKANG NEW ENERGY VEHICLE CO., LTD., SF MOTORS, INC.
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Patent number: 10658646
    Abstract: Systems and methods to power an electric vehicle are provided. The system can include a battery pack having a plurality of battery modules, each of the of battery modules can include a plurality of battery blocks. The battery blocks can include a plurality of cylindrical battery cells. An integrated current collector device can be formed in a single structure and coupled with the plurality of cylindrical battery cells. The integrated current collector device can include a first current collector to couple with positive terminals of the cylindrical battery cells at first ends of the cylindrical battery cells and a second current collector to couple with negative terminals of the cylindrical battery cells at the first ends of the cylindrical battery cells. An isolation layer can be disposed between the first current collector and the second current collector to electrically isolate the first current collector from the second current collector.
    Type: Grant
    Filed: August 30, 2018
    Date of Patent: May 19, 2020
    Assignees: CHONGQING JINKANG NEW ENERGY VEHICLE CO., LTD., SF MOTORS, INC.
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190077275
    Abstract: Systems and methods of controlling temperature in energy storage units. The system can include energy storage units disposed in an electric vehicle. The system can include cold plates disposed in the electric vehicle. Each cold plate can be thermally coupled with an energy storage unit to transfer heat using a coolant. Each cold plate can have an inlet to receive the coolant from an inlet manifold, an outlet to release liquid to an outlet manifold, and a control valve coupled to at least one of the inlet and the outlet. The system can include a battery management system (BMS) connected with the energy storage units. The BMS can determine, for each cold plate, a target flow rate for the coolant using a characteristic of the energy storage unit. The BMS can send, to each cold plate, a signal to control the control valve in accordance with the target flow rate.
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190081364
    Abstract: Systems, methods, and apparatuses associated with energy storage are provided. A circuit board can include a first contact patch to electrically couple with a first conductive layer of an integrated current collector of a battery block to connect with first polarity terminals of battery cells. The circuit board can include a second contact patch to electrically couple with a second conductive layer of the integrated current collector of the battery block to connect with second polarity terminals of battery cells. The circuit board can include a third contact patch to connect to a thermistor to measure a temperature of the battery block. The circuit board can include embedded conductive traces, and can include a connector to electrically couple the contact patches via the embedded conductive traces to a battery monitoring unit (BMU) to relay a signal indicative of a characteristic of a component of the battery block.
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190081294
    Abstract: Systems and methods to power electric vehicles are disclosed. A battery pack to power an electric vehicle is provided. The battery pack residing in the electric vehicle. The battery pack can include a plurality of battery modules. Each of the plurality of battery modules can include a plurality of battery blocks. A first battery block can include a plurality of cylindrical battery cells. Each of the plurality of cylindrical battery cells can have a pair of battery cell terminals and can have a voltage of up to 5 volts across the pair of battery cell terminals. The plurality of cylindrical battery cells can be electrically connected in parallel within the first battery block. Each cylindrical battery cell of the plurality of cylindrical battery cells can be spatially separated from each of at least one adjacent cylindrical battery cell within the first battery block by less than 2 millimeter (mm).
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190081370
    Abstract: Systems, methods, devices, and apparatuses associate with energy storage are provided. An apparatus can include a battery block with battery cells disposed therein. The apparatus can include an integrated current collector to electrically couple the battery cells in parallel. The integrated current collector can have a first conductive layer to connect with first polarity terminals of the battery cells, a second conductive layer to connect with second polarity terminals of the battery cells, and a circuit board layer parallel to the two conductive layers. The apparatus can include trace lines each formed on the circuit board layer and connected to the two conductive layers. The apparatus can include a battery monitoring unit (BMU) incorporated on the circuit board layer. The BMU can have inputs coupled with the two conductive layers to obtain a signal indicative of a characteristic of the battery block.
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190081310
    Abstract: Systems and methods for interconnecting battery blocks are disclosed. A plurality of battery blocks can include a first battery block and a second battery block. Each battery block can include a plurality of battery cells electrically connected and physically arranged to form a battery module for storing energy. A plurality of ribbonbond interconnects are produced to electrically connect a current collector of the first battery block with a current collector of the second battery block. Each ribbonbond interconnect can comprise a metallic strip to provide a flexible physical connection between the first battery block and the second battery block to allow movement between the first battery block and the second battery block. Each ribbonbond interconnect can break an electrical connection between the first battery block and the second battery block if an electrical current in the corresponding ribbonbond interconnect exceeds a predefined threshold.
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190081309
    Abstract: Systems and methods to power an electric vehicle are provided. The system can include a battery pack having a plurality of battery modules, each of the of battery modules can include a plurality of battery blocks. The battery blocks can include a plurality of cylindrical battery cells. An integrated current collector device can be formed in a single structure and coupled with the plurality of cylindrical battery cells. The integrated current collector device can include a first current collector to couple with positive terminals of the cylindrical battery cells at first ends of the cylindrical battery cells and a second current collector to couple with negative terminals of the cylindrical battery cells at the first ends of the cylindrical battery cells. An isolation layer can be disposed between the first current collector and the second current collector to electrically isolate the first current collector from the second current collector.
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190077276
    Abstract: Apparatuses, systems, and methods of controlling of an energy storage unit are detailed herein. A cold plate can be thermally coupled with an energy storage unit for powering the electric vehicle. The cold plate can have a bottom layer. The bottom layer can have a channel spanning across a top surface of the bottom layer to circulate coolant to transfer heat away from the energy storage unit. The top layer can be flush with a bottom surface of the energy storage unit. The top layer can define openings each extending between the top surface and the bottom surface. The cold plate can have inserts sealing the openings. The inserts can have a melting temperature lower than a melting temperature of the top layer to expose at least one opening when heated the melting temperature to allow release of the coolant from the channel onto the energy storage unit.
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190081308
    Abstract: Systems and methods for a battery pack to power an electric vehicle are provided. The battery pack can include a plurality of battery modules having a plurality of battery blocks. The battery blocks can include a plurality of cylindrical battery cells. A first current collector can include a conductive layer to couple the first current collector with positive terminals of the plurality of cylindrical battery cells. A second current collector can include a conductive layer to couple the second current collector with negative terminals of the plurality of cylindrical battery cells. The first current collector, second current collector, and an isolation layer can include a plurality of apertures to expose the positive terminals of the plurality of cylindrical battery cells. The positive terminals can extend through the plurality of apertures to couple with the conductive layer of the first current collector.
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi
  • Publication number: 20190081372
    Abstract: Provided herein is an electric vehicle battery pack system that powers electric vehicles. The electric vehicle battery pack system can include a battery pack to power an electric vehicle. The battery pack can reside in the electric vehicle and include a plurality of battery modules. The plurality of battery modules can include a plurality of battery blocks. The battery blocks can have a plurality of cylindrical battery cells connected in parallel. A battery module of the plurality of battery modules can include a battery monitoring unit. The battery module can include a cold plate coupled with the first battery module and the battery monitoring unit. The cold plate can receive control signals from the battery monitoring unit. The control signals can identify a battery module and identify a climate control parameter for the battery module. The cold plate can apply the climate control parameter to the battery module.
    Type: Application
    Filed: August 30, 2018
    Publication date: March 14, 2019
    Inventors: Nathalie Capati, Duanyang Wang, Jacob Heth, Binbin Chi