Patents by Inventor Yaron Idesis

Yaron Idesis 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: 12261324
    Abstract: Rechargeable battery cells and methods for extreme fast charging are disclosed. For example, such a rechargeable battery cell might be chargeable to at least 70% of usable capacity within 15 minutes. Such a rechargeable battery cell may include an anode having at least one surface with a reversible areal capacity, after formation, up to 8.0 mAh/cm2, and a cathode having at least one surface with a reversible areal capacity, after formation, up to 6 mAh/cm2, wherein a ratio of areal capacity of the at least one surface of the anode to the at least one surface of the cathode is between 1.15 to 1.45. Methods of charging rechargeable battery cells disclosed herein under conditions sufficient to enable charging of at least 70% of usable capacity to the rechargeable battery cell within 15 minutes, are also disclosed.
    Type: Grant
    Filed: March 13, 2024
    Date of Patent: March 25, 2025
    Assignee: StoreDot, Ltd.
    Inventors: Daniel Aronov, Nir Kedem, Yaron Idesis, Dan Corfas, Assaf Zehavi, Zvi Ioffe
  • Publication number: 20240322272
    Abstract: Rechargeable battery cells and methods for extreme fast charging are disclosed. For example, such a rechargeable battery cell might be chargeable to at least 70% of usable capacity within 15 minutes. Such a rechargeable battery cell may include an anode containing a Si—C composite within a porous structure, a metal oxide-based cathode configured as a source of Li ions, an electrolyte capable of carrying Li-ions between the anode and the cathode, and a separator between the anode and the cathode. The rechargeable battery may have an interface between the anode and the cathode that is pressurized in an amount sufficient to manage volumetric changes during charging and discharging processes.
    Type: Application
    Filed: March 13, 2024
    Publication date: September 26, 2024
    Inventors: Daniel Aronov, Nir Kedem, Yaron Idesis, Dan Corfas, Assaf Zehavi, Zvi Ioffe
  • Publication number: 20240313196
    Abstract: Rechargeable battery cells and methods for extreme fast charging are disclosed. For example, such a rechargeable battery cell might be chargeable to at least 70% of usable capacity within 15 minutes. Such a rechargeable battery cell may include an anode having at least one surface with a reversible areal capacity, after formation, up to 8.0 mAh/cm2, containing a Si—C composite within a porous structure and including a carbon-based conductive additive, wherein the Si—C composite is at least 30% Si by weight, and the material is at least 85% Si—C composite. The rechargeable battery cell may also include a cathode having at least one surface with a reversible areal capacity, after formation, up to 6 mAh/cm2, wherein a ratio of areal capacity of the at least one surface of the anode to the at least one surface of the cathode is between 1.15 to 1.45.
    Type: Application
    Filed: March 13, 2024
    Publication date: September 19, 2024
    Inventors: Daniel Aronov, Nir Kedem, Yaron Idesis, Dan Corfas, Assaf Zehavi, Zvi Ioffe
  • Publication number: 20240313358
    Abstract: Rechargeable battery cells and methods for extreme fast charging are disclosed. For example, such a rechargeable battery cell might be chargeable to at least 70% of usable capacity within 15 minutes. Such a rechargeable battery cell may include an anode having a conductive current collector coated with a composite containing a carbon-based material, a cathode configured as a source of Li ions, an electrolyte capable of carrying Li-ions between the anode and the cathode, and a separator between the anode and the cathode, the separator having a thickness of less than 20 microns. Methods of charging the rechargeable battery cells are also disclosed.
    Type: Application
    Filed: March 13, 2024
    Publication date: September 19, 2024
    Inventors: Daniel Aronov, Nir Kedem, Yaron Idesis, Dan Corfas, Assaf Zehavi, Zvi Ioffe
  • Publication number: 20240313357
    Abstract: Rechargeable battery cells and methods for extreme fast charging are disclosed. For example, such a rechargeable battery cell might be chargeable to at least 70% of usable capacity within 15 minutes. Such a rechargeable battery cell may include an anode having a conductive current collector coated with a composite containing at least 30% Si by weight, a cathode configured as a source of Li ions, an electrolyte capable of carrying Li-ions between the anode and the cathode, and a separator between the anode and the cathode, the separator having a porosity of at least 38%. Methods of charging such rechargeable battery cells are also disclosed.
    Type: Application
    Filed: March 13, 2024
    Publication date: September 19, 2024
    Inventors: Daniel Aronov, Nir Kedem, Yaron Idesis, Dan Corfas, Assaf Zehavi, Zvi Ioffe
  • Publication number: 20240313273
    Abstract: Rechargeable battery cells and methods for extreme fast charging are disclosed. For example, such a rechargeable battery cell might be chargeable to at least 70% of usable capacity within 15 minutes. Such a rechargeable battery cell may include an anode having at least one surface with a reversible areal capacity, after formation, up to 8.0 mAh/cm2, and a cathode having at least one surface with a reversible areal capacity, after formation, up to 6 mAh/cm2, wherein a ratio of areal capacity of the at least one surface of the anode to the at least one surface of the cathode is between 1.15 to 1.45. Methods of charging rechargeable battery cells disclosed herein under conditions sufficient to enable charging of at least 70% of usable capacity to the rechargeable battery cell within 15 minutes, are also disclosed.
    Type: Application
    Filed: March 13, 2024
    Publication date: September 19, 2024
    Inventors: Daniel Aronov, Nir Kedem, Yaron Idesis, Dan Corfas, Assaf Zehavi, Zvi Ioffe