Patents by Inventor Carl FRICK

Carl FRICK 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: 12355052
    Abstract: Described herein are battery modules and methods of fabricating thereof. In some examples, a battery module comprises an enclosure, separated into two enclosure portions and a thermal portion, positioned between the two enclosure portions. Two enclosure portions are in part defined by side walls, which can be tapered. The thermal portion comprises two thermal walls, which are operable as the bottoms of the two enclosure portions and form a thermal cavity between these thermal walls. In some examples, the enclosure is a monolithically cast component. Alternatively, the enclosure can be partially cast with one thermal wall welded thereafter to a cast subassembly. The battery module also comprises two sets of batteries, each positioned into a corresponding enclosure portion. Each battery set is interconnected with an interconnecting assembly, positioned between the battery set and the corresponding cover, for this enclosure portion.
    Type: Grant
    Filed: February 29, 2024
    Date of Patent: July 8, 2025
    Assignee: Harbinger Motors Inc.
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke, Anna Scheibengraber
  • Publication number: 20250167333
    Abstract: Described herein are battery packs and electric vehicles using these packs. In some examples, a battery pack comprises two portions/covers and a set of battery modules positioned within the enclosed cavity formed by these portions. A battery pack may comprise a set of pressure-relief valves positioned in and protruding through a wall of at least one portion. Each valve can be coaxial with a corresponding gap provided between two adjacent modules. The valve is configured to provide a fluid path (to the exterior of the battery pack) when the pressure inside the pack exceeds a set threshold. In some examples, the battery pack comprises an inlet tube fluidically coupled to the inlet port of each module and an outlet tube fluidically coupled to the outlet port of each module. A set of specially configured orifices or controllable valves is positioned on the fluid path through each module.
    Type: Application
    Filed: January 21, 2025
    Publication date: May 22, 2025
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke
  • Patent number: 12230775
    Abstract: Described herein are battery packs and electric vehicles using these packs. In some examples, a battery pack comprises two portions/covers and a set of battery modules positioned within the enclosed cavity formed by these portions. A battery pack may comprise a set of pressure-relief valves positioned in and protruding through a wall of at least one portion. Each valve can be coaxial with a corresponding gap provided between two adjacent modules. The valve is configured to provide a fluid path (to the exterior of the battery pack) when the pressure inside the pack exceeds a set threshold. In some examples, the battery pack comprises an inlet tube fluidically coupled to the inlet port of each module and an outlet tube fluidically coupled to the outlet port of each module. A set of specially configured orifices or controllable valves is positioned on the fluid path through each module.
    Type: Grant
    Filed: February 29, 2024
    Date of Patent: February 18, 2025
    Assignee: Harbinger Motors Inc.
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke
  • Patent number: 12194429
    Abstract: Described are methods and devices for the generation of hydrogel particles with micrometer and submicrometer dimensions using oxygen-inhibited partial polymerization, and the particles generated therefrom. The described methods generate particles with dimensions independent of the starting polymerizable solution dimension, for example, a microdroplet. Further, microfluidic flow parameters (e.g. viscosity, flow rate) and photopolymerization process parameters (e.g. optical exposure intensity and duration) are controlled to generate particles with tunable crosslinking density-determined properties including elasticity, diffusivity, and biomolecular display for diverse applications such as drug delivery, tissue engineering cell scaffolds, and single- and multiple-cell therapeutics. Similarly, gradients of crosslinking density-determined properties can be created within single particles through the selection of optical exposure intensity and duration.
    Type: Grant
    Filed: March 15, 2023
    Date of Patent: January 14, 2025
    Assignee: University of Wyoming
    Inventors: John Oakey, Katie Dongmei Li-Oakey, Daniel Debroy, Carl Frick, Rajib Shaha
  • Publication number: 20240234851
    Abstract: Described herein are battery packs and electric vehicles using these packs. In some examples, a battery pack comprises two portions/covers and a set of battery modules positioned within the enclosed cavity formed by these portions. A battery pack may comprise a set of pressure-relief valves positioned in and protruding through a wall of at least one portion. Each valve can be coaxial with a corresponding gap provided between two adjacent modules. The valve is configured to provide a fluid path (to the exterior of the battery pack) when the pressure inside the pack exceeds a set threshold. In some examples, the battery pack comprises an inlet tube fluidically coupled to the inlet port of each module and an outlet tube fluidically coupled to the outlet port of each module. A set of specially configured orifices or controllable valves is positioned on the fluid path through each module.
    Type: Application
    Filed: February 29, 2024
    Publication date: July 11, 2024
    Applicant: Harbinger Motors Inc.
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke
  • Publication number: 20240204301
    Abstract: Described herein are battery modules and methods of fabricating thereof. In some examples, a battery module comprises an enclosure, separated into two enclosure portions and a thermal portion, positioned between the two enclosure portions. Two enclosure portions are in part defined by side walls, which can be tapered. The thermal portion comprises two thermal walls, which are operable as the bottoms of the two enclosure portions and form a thermal cavity between these thermal walls. In some examples, the enclosure is a monolithically cast component. Alternatively, the enclosure can be partially cast with one thermal wall welded thereafter to a cast subassembly. The battery module also comprises two sets of batteries, each positioned into a corresponding enclosure portion. Each battery set is interconnected with an interconnecting assembly, positioned between the battery set and the corresponding cover, for this enclosure portion.
    Type: Application
    Filed: February 29, 2024
    Publication date: June 20, 2024
    Applicant: Harbinger Motors Inc.
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke
  • Patent number: 11961987
    Abstract: Described herein are battery modules and methods of fabricating thereof. In some examples, a battery module comprises an enclosure, separated into two enclosure portions and a thermal portion, positioned between the two enclosure portions. Two enclosure portions are in part defined by side walls, which can be tapered. The thermal portion comprises two thermal walls, which are operable as the bottoms of the two enclosure portions and form a thermal cavity between these thermal walls. In some examples, the enclosure is a monolithically cast component. Alternatively, the enclosure can be partially cast with one thermal wall welded thereafter to a cast subassembly. The battery module also comprises two sets of batteries, each positioned into a corresponding enclosure portion. Each battery set is interconnected with an interconnecting assembly, positioned between the battery set and the corresponding cover, for this enclosure portion.
    Type: Grant
    Filed: September 6, 2023
    Date of Patent: April 16, 2024
    Assignee: Harbinger Motors Inc.
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke
  • Patent number: 11949080
    Abstract: Described herein are battery packs and electric vehicles using these packs. In some examples, a battery pack comprises two portions/covers and a set of battery modules positioned within the enclosed cavity formed by these portions. A battery pack may comprise a set of pressure-relief valves positioned in and protruding through a wall of at least one portion. Each valve can be coaxial with a corresponding gap provided between two adjacent modules. The valve is configured to provide a fluid path (to the exterior of the battery pack) when the pressure inside the pack exceeds a set threshold. In some examples, the battery pack comprises an inlet tube fluidically coupled to the inlet port of each module and an outlet tube fluidically coupled to the outlet port of each module. A set of specially configured orifices or controllable valves is positioned on the fluid path through each module.
    Type: Grant
    Filed: September 14, 2023
    Date of Patent: April 2, 2024
    Assignee: Harbinger Motors Inc.
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke
  • Publication number: 20240079686
    Abstract: Described herein are battery modules and methods of fabricating thereof. In some examples, a battery module comprises an enclosure, separated into two enclosure portions and a thermal portion, positioned between the two enclosure portions. Two enclosure portions are in part defined by side walls, which can be tapered. The thermal portion comprises two thermal walls, which are operable as the bottoms of the two enclosure portions and form a thermal cavity between these thermal walls. In some examples, the enclosure is a monolithically cast component. Alternatively, the enclosure can be partially cast with one thermal wall welded thereafter to a cast subassembly. The battery module also comprises two sets of batteries, each positioned into a corresponding enclosure portion. Each battery set is interconnected with an interconnecting assembly, positioned between the battery set and the corresponding cover, for this enclosure portion.
    Type: Application
    Filed: September 6, 2023
    Publication date: March 7, 2024
    Applicant: Harbinger Motors Inc.
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke
  • Publication number: 20240079671
    Abstract: Described herein are battery packs and electric vehicles using these packs. In some examples, a battery pack comprises two portions/covers and a set of battery modules positioned within the enclosed cavity formed by these portions. A battery pack may comprise a set of pressure-relief valves positioned in and protruding through a wall of at least one portion. Each valve can be coaxial with a corresponding gap provided between two adjacent modules. The valve is configured to provide a fluid path (to the exterior of the battery pack) when the pressure inside the pack exceeds a set threshold. In some examples, the battery pack comprises an inlet tube fluidically coupled to the inlet port of each module and an outlet tube fluidically coupled to the outlet port of each module. A set of specially configured orifices or controllable valves is positioned on the fluid path through each module.
    Type: Application
    Filed: September 14, 2023
    Publication date: March 7, 2024
    Applicant: Harbinger Motors Inc.
    Inventors: Phil Gow, Kenneth Kawanishi, Phillip John Weicker, Cody Rhebergen, John Henry Harris, III, Vu Phan, Michael Carl Fricke, Daniel McCarron, Deborah Bourke
  • Publication number: 20230381730
    Abstract: Described are methods and devices for the generation of hydrogel particles with micrometer and submicrometer dimensions using oxygen-inhibited partial polymerization, and the particles generated therefrom. The described methods generate particles with dimensions independent of the starting polymerizable solution dimension, for example, a microdroplet. Further, microfluidic flow parameters (e.g. viscosity, flow rate) and photopolymerization process parameters (e.g. optical exposure intensity and duration) are controlled to generate particles with tunable crosslinking density-determined properties including elasticity, diffusivity, and biomolecular display for diverse applications such as drug delivery, tissue engineering cell scaffolds, and single- and multiple-cell therapeutics. Similarly, gradients of crosslinking density-determined properties can be created within single particles through the selection of optical exposure intensity and duration.
    Type: Application
    Filed: March 15, 2023
    Publication date: November 30, 2023
    Applicant: University of Wyoming
    Inventors: John OAKEY, Katie Dongmei LI-OAKEY, Daniel DEBROY, Carl FRICK, Rajib SHAHA
  • Patent number: 11642642
    Abstract: Described are methods and devices for the generation of hydrogel particles with micrometer and submicrometer dimensions using oxygen-inhibited partial polymerization, and the particles generated therefrom. The described methods generate particles with dimensions independent of the starting polymerizable solution dimension, for example, a microdroplet. Further, microfluidic flow parameters (e.g. viscosity, flow rate) and photopolymerization process parameters (e.g. optical exposure intensity and duration) are controlled to generate particles with tunable crosslinking density-determined properties including elasticity, diffusivity, and biomolecular display for diverse applications such as drug delivery, tissue engineering cell scaffolds, and single- and multiple- cell therapeutics. Similarly, gradients of crosslinking density-determined properties can be created within single particles through the selection of optical exposure intensity and duration.
    Type: Grant
    Filed: October 17, 2018
    Date of Patent: May 9, 2023
    Assignee: UNIVERSITY OF WYOMING
    Inventors: John Oakey, Katie Dongmei Li-Oakey, Daniel Debroy, Carl Frick, Rajib Shaha
  • Publication number: 20200254417
    Abstract: Described are methods and devices for the generation of hydrogel particles with micrometer and submicrometer dimensions using oxygen-inhibited partial polymerization, and the particles generated therefrom. The described methods generate particles with dimensions independent of the starting polymerizable solution dimension, for example, a microdroplet. Further, microfluidic flow parameters (e.g. viscosity, flow rate) and photopolymerization process parameters (e.g. optical exposure intensity and duration) are controlled to generate particles with tunable crosslinking density-determined properties including elasticity, diffusivity, and biomolecular display for diverse applications such as drug delivery, tissue engineering cell scaffolds, and single- and multiple-cell therapeutics. Similarly, gradients of crosslinking density-determined properties can be created within single particles through the selection of optical exposure intensity and duration.
    Type: Application
    Filed: October 17, 2018
    Publication date: August 13, 2020
    Applicant: University of Wyoming
    Inventors: John OAKEY, Katie Dongmei LI-OAKEY, Daniel DEBROY, Carl FRICK, Rajib SHAHA