Patents by Inventor Jordan Ritchie

Jordan Ritchie 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: 12716791
    Abstract: Systems, devices and methods for detecting axial forces, including residual forces, resulting from applying a crimp cap to a container are provided. The devices can include a device housing, a closing member, a capping section, a force measurement sensor, and a processing system. The closing member and the capping section can define a flange assembly to which a crimp cap can be attached. The force measurement sensor can be positioned to generate the residual force measurement data in response to an axial force resulting at the flange assembly of the container or at the first end of the closing member. The residual force measurement data can be generated once the external force applied during the capping process has been removed.
    Type: Grant
    Filed: December 9, 2022
    Date of Patent: August 25, 2026
    Assignee: Smart Skin Technologies Inc.
    Inventors: Ian Mckelvey, Jordan Ritchie, Jonathan Halse
  • Publication number: 20260010744
    Abstract: Systems and methods for monitoring a plurality of assets using a plurality of location tags are provided. The plurality of assets includes a conveyor system and at least one other asset. At least a subset of the location tags is positioned at a fixed position along the conveyor system, and at least one location tag is positioned at the at least one other asset. Each location tag includes at least one environmental sensor and a communication interface. The communication interface is configured to transmit a sensor signal to a network system and at least one information signal to a mobile receiver. The mobile receiver moves with respect to the conveyor system such that the distance between the mobile receiver and the subset of the location tags continuously changes, and a position of the mobile receiver is determined based on a signal strength of the information signal.
    Type: Application
    Filed: July 29, 2025
    Publication date: January 8, 2026
    Inventors: Kumaran Thillainadarajah, Evan Justason, Michael David Bonga, Ryan Proudfoot, Abhishek Kar, Jonathan Halse, Jordan Ritchie, Nitin Kumar, Daniel Robert Rogers, Ahmed Alsaggaf, Roua M. Razak
  • Patent number: 12430523
    Abstract: Systems and methods for monitoring a plurality of assets using a plurality of location tags are provided. The plurality of assets includes a conveyor system and at least one other asset. At least a subset of the location tags is positioned at a fixed position along the conveyor system, and at least one location tag is positioned at the at least one other asset. Each location tag includes at least one environmental sensor and a communication interface. The communication interface is configured to transmit a sensor signal to a network system and at least one information signal to a mobile receiver. The mobile receiver moves with respect to the conveyor system such that the distance between the mobile receiver and the subset of the location tags continuously changes, and a position of the mobile receiver is determined based on a signal strength of the information signal.
    Type: Grant
    Filed: June 9, 2022
    Date of Patent: September 30, 2025
    Assignee: SMART SKIN TECHNOLOGIES INC.
    Inventors: Kumaran Thillainadarajah, Evan Justason, Michael David Bonga, Ryan Proudfoot, Abhishek Kar, Jonathan Halse, Jordan Ritchie, Nitin Kumar, Daniel Robert Rogers, Ahmed Alsaggaf, Roua M. Razak
  • Patent number: 12281953
    Abstract: Systems and methods are provided for sensing impacts applied to an article during a production and transportation process. The systems and methods can include a plurality of impact sensors fixed to the article and a processor coupled to the plurality of impact sensors. Each impact sensor can be fixed to the article at a corresponding sensor location and the plurality of impact sensors can be configured to generate a plurality of impact measurements in response to an impact applied to the article. The processor can be configured to: receive the plurality of impact measurements from the plurality of impact sensors; determine, from the plurality of impact measurements, that an impact condition is satisfied; determine an impact location based on the plurality of impact measurements and the corresponding sensor locations; and determine an overall impact magnitude based on the impact location and the plurality of impact measurements.
    Type: Grant
    Filed: February 28, 2020
    Date of Patent: April 22, 2025
    Assignee: Smart Skin Technologies Inc.
    Inventors: Daniel Rogers, Jonathan Halse, Kumaran Thillainadarajah, Adam Joseph MacDonald, Jordan Ritchie
  • Publication number: 20250068868
    Abstract: Systems and methods for monitoring a plurality of assets using a plurality of location tags are provided. The plurality of assets includes a conveyor system and at least one other asset. At least a subset of the location tags is positioned at a fixed position along the conveyor system, and at least one location tag is positioned at the at least one other asset. Each location tag includes at least one environmental sensor and a communication interface. The communication interface is configured to transmit a sensor signal to a network system and at least one information signal to a mobile receiver. The mobile receiver moves with respect to the conveyor system such that the distance between the mobile receiver and the subset of the location tags continuously changes, and a position of the mobile receiver is determined based on a signal strength of the information signal.
    Type: Application
    Filed: June 9, 2022
    Publication date: February 27, 2025
    Inventors: Kumaran Thillainadarajah, Evan Justason, Michael David Bonga, Ryan Proudfoot, Abhishek Kar, Jonathan Halse, Jordan Ritchie, Nitin Kumar, Daniel Robert Rogers, Ahmed Alsaggaf, Roua M. Razak
  • Publication number: 20250052625
    Abstract: Systems, devices and methods for detecting axial forces, including residual forces, resulting from applying a crimp cap to a container are provided. The devices can include a device housing, a closing member, a capping section, a force measurement sensor, and a processing system. The closing member and the capping section can define a flange assembly to which a crimp cap can be attached. The force measurement sensor can be positioned to generate the residual force measurement data in response to an axial force resulting at the flange assembly of the container or at the first end of the closing member. The residual force measurement data can be generated once the external force applied during the capping process has been removed.
    Type: Application
    Filed: December 9, 2022
    Publication date: February 13, 2025
    Inventors: Ian Mckelvey, Jordan Ritchie, Jonathan Halse
  • Patent number: 11656136
    Abstract: Devices and methods for detecting axial forces applied to a container are provided. The devices can include a device housing, a container section, a force measurement sensor, and a processing section. The device housing can extend between a first housing end and a second housing end along a longitudinal axis. The container section can be mounted to the housing proximate the first housing end. The container section can have an open first section end and a closed second section end spaced apart along the longitudinal axis and at least one sidewall extending therebetween. The container section can define a cavity bounded by the first section end, the second section end and the at least one sidewall. The force measurement sensor can be positioned to generate the force measurement data in response to an axial force applied at the first section end.
    Type: Grant
    Filed: April 12, 2022
    Date of Patent: May 23, 2023
    Assignee: Smart Skin Technologies Inc.
    Inventors: Jonathan Halse, Abhishek Kar, Jordan Ritchie, Shawn Maurice Dale Durette, Daniel Robert Rogers
  • Publication number: 20220236126
    Abstract: Devices and methods for detecting axial forces applied to a container are provided. The devices can include a device housing, a container section, a force measurement sensor, and a processing section. The device housing can extend between a first housing end and a second housing end along a longitudinal axis. The container section can be mounted to the housing proximate the first housing end. The container section can have an open first section end and a closed second section end spaced apart along the longitudinal axis and at least one sidewall extending therebetween. The container section can define a cavity bounded by the first section end, the second section end and the at least one sidewall. The force measurement sensor can be positioned to generate the force measurement data in response to an axial force applied at the first section end.
    Type: Application
    Filed: April 12, 2022
    Publication date: July 28, 2022
    Inventors: Jonathan Halse, Abhishek Kar, Jordan Ritchie, Shawn Maurice Dale Durette, Daniel Robert Rogers
  • Patent number: 11326968
    Abstract: Devices and methods for detecting axial forces applied to a container are provided. The devices can include a device housing, a container section, a force measurement sensor, and a processing section. The device housing can extend between a first housing end and a second housing end along a longitudinal axis. The container section can be mounted to the housing proximate the first housing end. The container section can have an open first section end and a closed second section end spaced apart along the longitudinal axis and at least one sidewall extending therebetween. The container section can define a cavity bounded by the first section end, the second section end and the at least one sidewall. The force measurement sensor can be positioned to generate the force measurement data in response to an axial force applied at the first section end.
    Type: Grant
    Filed: July 13, 2020
    Date of Patent: May 10, 2022
    Assignee: Smart Skin Technologies Inc.
    Inventors: Jonathan Halse, Abhishek Kar, Jordan Ritchie, Shawn Maurice Dale Durette, Daniel Robert Rogers
  • Publication number: 20220011182
    Abstract: Devices and methods for detecting axial forces applied to a container are provided. The devices can include a device housing, a container section, a force measurement sensor, and a processing section. The device housing can extend between a first housing end and a second housing end along a longitudinal axis. The container section can be mounted to the housing proximate the first housing end. The container section can have an open first section end and a closed second section end spaced apart along the longitudinal axis and at least one sidewall extending therebetween. The container section can define a cavity bounded by the first section end, the second section end and the at least one sidewall. The force measurement sensor can be positioned to generate the force measurement data in response to an axial force applied at the first section end.
    Type: Application
    Filed: July 13, 2020
    Publication date: January 13, 2022
    Inventors: Jonathan Halse, Abhishek Kar, Jordan Ritchie, Shawn Maurice Dale Durette, Daniel Robert Rogers
  • Publication number: 20210270686
    Abstract: Systems and methods are provided for sensing impacts applied to an article during a production and transportation process. The systems and methods can include a plurality of impact sensors fixed to the article and a processor coupled to the plurality of impact sensors. Each impact sensor can be fixed to the article at a corresponding sensor location and the plurality of impact sensors can be configured to generate a plurality of impact measurements in response to an impact applied to the article. The processor can be configured to: receive the plurality of impact measurements from the plurality of impact sensors; determine, from the plurality of impact measurements, that an impact condition is satisfied; determine an impact location based on the plurality of impact measurements and the corresponding sensor locations; and determine an overall impact magnitude based on the impact location and the plurality of impact measurements.
    Type: Application
    Filed: February 28, 2020
    Publication date: September 2, 2021
    Inventors: Daniel Rogers, Jonathan Halse, Kumaran Thillainadarajah, Adam Joseph MacDonald, Jordan Ritchie