Patents by Inventor Thomas Dwayne Taylor

Thomas Dwayne Taylor 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: 11881074
    Abstract: A GPS-tracked wireless-networked wheelchair system includes a wheelchair framework for carrying a passenger, and having a set of wheels adapted to rotate. A device-level machine-readable code is displayed on a surface associated with the wheelchair system. A brake assembly is arranged with the set of wheels and has a locked position, and an unlocked position. A wireless control module is operably connected to a wireless communication network. When a web-enabled mobile phone is used to (i) scan the device-level machine-readable code displayed on the wheelchair system, (ii) complete a wheelchair rental transaction over the wireless communication network, and (iii) obtain access control over the rented wheelchair system, then the wireless wheel locking control module unlocks the brake assembly, and the wheelchair framework is allowed to move relative to the ground surface.
    Type: Grant
    Filed: April 28, 2021
    Date of Patent: January 23, 2024
    Assignee: SCOOTERBUG, INC.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Stephanie Cornelia Lutz, Marc Maxwell Barber, Kevin George Miranda
  • Patent number: 11875629
    Abstract: A wireless-networked stroller access control system includes a plurality of wireless-networked strollers, each having stroller framework for carrying a passenger, and having a set of wheels mounted on an axle. A device-level machine-readable code is displayed on a surface associated with the stroller system. A wheel brake assembly is arranged with the set of wheels and has a locked position, and an unlocked position. A manually-actuated control bar assembly is mounted on the stroller framework, arranged with respect to the wheel brake assembly, and has a locked state of operation and an unlocked state of operation. A wireless wheel-axle locking control module is arranged in wireless communication with a wireless communication infrastructure, and configured with the manually-actuated control bar assembly to control the state of operation of the manually-actuated control bar assembly and also the wheel brake assembly.
    Type: Grant
    Filed: April 28, 2021
    Date of Patent: January 16, 2024
    Assignee: SCOOTERBUG, INC.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Stephanie Cornelia Lutz, Marc Maxwell Barber, Kevin George Miranda
  • Patent number: 11854335
    Abstract: A method of contact-less access control to a device available for rental, access and use in an environment, by scanning multi-level machine-readable codes displayed in the environment using web-enabled mobile phones wirelessly connected to a wireless access control network. To practice a facility-level, site-level access and/or device-level access control method, a web-enabled mobile phone is used to scan facility-level, site-level and/or device-level machine-readable codes in the environment, and in response, rental transaction identifiers are stored within the cache on the web-enabled mobile phone scanning the machine-readable code. Each rental transaction identifier identifies the web-enabled mobile phone that is linked to a specific device rental transaction. After renting the selected device at either a facility-level, site-level or device-level location in the environment, the web-enabled mobile phone is used to scan the device-level machine-readable code on the rented device.
    Type: Grant
    Filed: April 28, 2021
    Date of Patent: December 26, 2023
    Assignee: SCOOTERBUG, INC.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Edward Joel Rodriguez, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Kyle Clarennce West, Brian William Rood, Tomas Rodriguez
  • Patent number: 11854336
    Abstract: A GPS-tracked wireless-networked electric convenience vehicle (ECV) includes a body portion adapted for supporting the body of passenger; a GPS system for providing GPS-location services to the GPS-tracked wireless-networked ECV; a transport system with wheels and a drive mechanism, for supporting and transporting the body portion; and a wireless electronic control module being integrated with the transport system, and in wireless communication with a wireless communication infrastructure, for controlling said wheels and/or the drive mechanism. When a web-enabled mobile phone is used to (i) scan a device-level machine-readable code displayed on the GPS-tracked wireless-networked ECV, (ii) complete an ECV rental transaction over the wireless communication infrastructure, and (iii) obtain access control over the rented GPS-tracked wireless-networked ECV, then the wireless electronic control module enables the GPS-tracked wireless-networked ECV to be operated on a ground surface.
    Type: Grant
    Filed: April 28, 2021
    Date of Patent: December 26, 2023
    Assignee: SCOOTERBUG, INC.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Stephanie Cornelia Lutz, Marc Maxwell Barber, Kevin George Miranda
  • Patent number: 11631295
    Abstract: A wireless network, mobile systems and methods for controlling access to lockers, strollers, wheel chairs and electronic convenience vehicles and other networked devices provided with machine-readable codes that are scanned by mobile phones and computing devices.
    Type: Grant
    Filed: August 11, 2020
    Date of Patent: April 18, 2023
    Assignee: SCOOTERBUG, INC.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Edward Joel Rodriguez, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Kyle Clarennce West, Stephanie Cornelia Lutz, Marc Maxwell Barber, Kevin George Miranda, Brian William Rood, Tomas Rodriguez
  • Publication number: 20220068078
    Abstract: A multi-level machine-readable code system and method deployed in an environment supported by a wireless access control system network. The multi-level machine-readable code system including multi-level codes including facility-level codes, site-level codes and device-level codes, that are scanned by mobile computing devices such as mobile smart phones to initiated web-based e-commerce-enabled transactions that allow guest users to select and rent the particular networked devices available for rental and use within a facility, such as, for example, storage lockers, strollers, EVCs, wheelchairs and the like at a site selected within the environment. The wireless access and control system network can automatically assign an available device to the guest user at the selected site.
    Type: Application
    Filed: August 11, 2021
    Publication date: March 3, 2022
    Applicant: Safemark Systems, L.P.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Thomas Dwayne Taylor, Michael Buchoff Buchoff
  • Publication number: 20220051509
    Abstract: A wireless network, mobile systems and methods for controlling access to lockers, strollers, wheel chairs and electronic convenience vehicles and other networked devices provided with machine-readable codes that are scanned by mobile phones and computing devices.
    Type: Application
    Filed: August 11, 2020
    Publication date: February 17, 2022
    Applicant: Safemark Systems, L.P.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Edward Joel Rodriguez, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Kyle Clarennce West, Stephanie Cornelia Lutz, Marc Maxwell Barber, Kevin George Miranda, Brian William Rood, Thomas Rodriguez
  • Publication number: 20220051510
    Abstract: A method of contact-less access control to a device available for rental, access and use in an environment, by scanning multi-level machine-readable codes displayed in the environment using web-enabled mobile phones wirelessly connected to a wireless access control network. To practice a facility-level, site-level access and/or device-level access control method, a web-enabled mobile phone is used to scan facility-level, site-level and/or device-level machine-readable codes in the environment, and in response, rental transaction identifiers are stored within the cache on the web-enabled mobile phone scanning the machine-readable code. Each rental transaction identifier identifies the web-enabled mobile phone that is linked to a specific device rental transaction. After renting the selected device at either a facility-level, site-level or device-level location in the environment, the web-enabled mobile phone is used to scan the device-level machine-readable code on the rented device.
    Type: Application
    Filed: April 28, 2021
    Publication date: February 17, 2022
    Applicant: Safemark Systems, L.P.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Edward Joel Rodriguez, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Kyle Clarennce West, Brian William Rood, Tomas Rodriguez
  • Publication number: 20220051511
    Abstract: A wireless-networked stroller access control system includes a plurality of wireless-networked strollers, each having stroller framework for carrying a passenger, and having a set of wheels mounted on an axle. A device-level machine-readable code is displayed on a surface associated with the stroller system. A wheel brake assembly is arranged with the set of wheels and has a locked position, and an unlocked position. A manually-actuated control bar assembly is mounted on the stroller framework, arranged with respect to the wheel brake assembly, and has a locked state of operation and an unlocked state of operation. A wireless wheel-axle locking control module is arranged in wireless communication with a wireless communication infrastructure, and configured with the manually-actuated control bar assembly to control the state of operation of the manually-actuated control bar assembly and also the wheel brake assembly.
    Type: Application
    Filed: April 28, 2021
    Publication date: February 17, 2022
    Applicant: Safemark Systems, L.P.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Stephanie Cornelia Lutz, Marc Maxwell Barber, Kevin George Miranda
  • Publication number: 20220051513
    Abstract: A GPS-tracked wireless-networked wheelchair system includes a wheelchair framework for carrying a passenger, and having a set of wheels adapted to rotate. A device-level machine-readable code is displayed on a surface associated with the wheelchair system. A brake assembly is arranged with the set of wheels and has a locked position, and an unlocked position. A wireless control module is operably connected to a wireless communication network. When a web-enabled mobile phone is used to (i) scan the device-level machine-readable code displayed on the wheelchair system, (ii) complete a wheelchair rental transaction over the wireless communication network, and (iii) obtain access control over the rented wheelchair system, then the wireless wheel locking control module unlocks the brake assembly, and the wheelchair framework is allowed to move relative to the ground surface.
    Type: Application
    Filed: April 28, 2021
    Publication date: February 17, 2022
    Applicant: Safemark Systems, L.P.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Stephanie Cornelia Lutz, Marc Maxwell Barber, Kevin George Miranda
  • Publication number: 20220051512
    Abstract: A GPS-tracked wireless-networked electric convenience vehicle (ECV) includes a body portion adapted for supporting the body of passenger; a GPS system for providing GPS-location services to the GPS-tracked wireless-networked ECV; a transport system with wheels and a drive mechanism, for supporting and transporting the body portion; and a wireless electronic control module being integrated with the transport system, and in wireless communication with a wireless communication infrastructure, for controlling said wheels and/or the drive mechanism. When a web-enabled mobile phone is used to (i) scan a device-level machine-readable code displayed on the GPS-tracked wireless-networked ECV, (ii) complete an ECV rental transaction over the wireless communication infrastructure, and (iii) obtain access control over the rented GPS-tracked wireless-networked ECV, then the wireless electronic control module enables the GPS-tracked wireless-networked ECV to be operated on a ground surface.
    Type: Application
    Filed: April 28, 2021
    Publication date: February 17, 2022
    Applicant: Safemark Systems, L.P.
    Inventors: Mark Christopher Schmidt, Wesley Edward Swogger, Thomas Dwayne Taylor, Michael Buchoff Buchoff, Sowmya Balda, Stephanie Cornelia Lutz, Marc Maxwell Barber, Kevin George Miranda
  • Publication number: 20030194455
    Abstract: The invention provides a novel biopesticide comprised of Whole Ground Oriental Mustard for controlling soil born pathogens such as fungi and damaging nematodes. The present invention can replace many synthetically produced pesticides such as organophosphates and methyl bromide, which are damaging to the environment and to human health.
    Type: Application
    Filed: April 12, 2002
    Publication date: October 16, 2003
    Applicant: Poulenger USA, Inc.
    Inventor: Thomas Dwayne Taylor
  • Patent number: 6599539
    Abstract: The invention provides a novel pesticide comprised of the seed and/or seed oils of the genus Perilla frutescens, commonly known as Perilla or Wild sesame, and methods for controlling plant parasitic nematodes and deterring or repelling plant damaging insects. The present invention may replace synthetically produced pesticides, such as organophosphates, which are harmful to humans and the environment, with a natural organic alternative.
    Type: Grant
    Filed: July 31, 2002
    Date of Patent: July 29, 2003
    Assignee: Poulenger USA Inc.
    Inventor: Thomas Dwayne Taylor