Patents by Inventor Claus Hittmeyer

Claus Hittmeyer 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: 11673282
    Abstract: Sensor-based shaving systems and methods of analyzing a user's shave event are described for determining a unique threshold value of the user. A grooming device comprises a handle having a connecting structure connected to a hair cutting implement. A shave event sensor associated with the grooming device measures a user behavior, which includes collecting a first dataset comprising shave data defining a shave event. The first dataset is transmitted via a communication device and is analyzed to determine baseline behavior data of the user, and a unique threshold value of the user is determined from the baseline behavior data. One or more subsequent datasets, each comprising shave data of one or more corresponding shave events, is compared to the unique threshold value to determine comparison data. An indication is provided, based on the comparison data, to indicate a deviation from the threshold value and to influence the user behavior.
    Type: Grant
    Filed: July 2, 2020
    Date of Patent: June 13, 2023
    Assignee: The Gillette Company LLC
    Inventors: Ian Anthony Good, Balasundram Periasamy Amavasai, Christopher Francis Rawlings, Amanda Washington, Susan Clare Robinson, Claus Hittmeyer, Werner Friedrich Johann Bonifer, Weiyan Yang, Angela Louise Richardson, Alexander James Hinchliffe Friend, Nicola Dawn Dixon, Shirley Namubiru, Joshua Thomas Kissel, Michael Thomas Roller, Venugopal Vasudevan, Robert Thomas Hinkle
  • Publication number: 20220378346
    Abstract: Millimeter (mmWave) mapping systems and methods are disclosed for generating one or more point clouds and determining one or more vital signs for defining a human psychological state. A point cloud comprising point cloud data defining a person or an object detected within a physical space is generated based on one or more mmWave waveforms of an mmWave sensor. A posture of the person within the portion of the physical space is determined from the point cloud data. One or more vital signs of the person is determined based on the mmWave waveform(s). An electronic feedback is provided representing a human psychological state of the person as defined by the point cloud data and the one or more vital signs of the person.
    Type: Application
    Filed: May 24, 2022
    Publication date: December 1, 2022
    Inventors: Nasir Saeed Khan, Claus Hittmeyer, Faiz Feisal Sherman
  • Publication number: 20220001556
    Abstract: Sensor-based shaving systems and methods of analyzing a user's shave event are described for determining a unique threshold value of the user. A grooming device comprises a handle having a connecting structure connected to a hair cutting implement. A shave event sensor associated with the grooming device measures a user behavior, which includes collecting a first dataset comprising shave data defining a shave event. The first dataset is transmitted via a communication device and is analyzed to determine baseline behavior data of the user, and a unique threshold value of the user is determined from the baseline behavior data. One or more subsequent datasets, each comprising shave data of one or more corresponding shave events, is compared to the unique threshold value to determine comparison data. An indication is provided, based on the comparison data, to indicate a deviation from the threshold value and to influence the user behavior.
    Type: Application
    Filed: July 2, 2020
    Publication date: January 6, 2022
    Inventors: Ian Anthony Good, Balasundram Periasamy Amavasai, Christopher Francis Rawlings, Amanda Washington, Susan Clare Robinson, Claus Hittmeyer, Werner Friedrich Johann Bonifer, Weiyan Yang, Angela Louise Richardson, Alexander James Hinchliffe Friend, Nicola Dawn Dixon, Shirley Namubiru, Joshua Thomas Kissel, Michael Thomas Roller, Venugopal Vasudevan, Robert Thomas Hinkle