Patents by Inventor Michele Iodice

Michele Iodice 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).

  • Publication number: 20250237761
    Abstract: Described herein are techniques for tracking objects (including human body parts such as a hand), namely: 1) two-state transducer interpolation in acoustic phased-arrays; 2) modulation techniques in acoustic phased-arrays; 3) fast acoustic full matrix capture during haptic effects; 4) time-of-flight depth sensor fusion system; 5) phase modulated spherical wave-fronts in acoustic phased-arrays; 6) long wavelength phase modulation of acoustic field for location and tracking; and 7) camera calibration through ultrasonic range sensing.
    Type: Application
    Filed: December 3, 2024
    Publication date: July 24, 2025
    Inventors: Michele Iodice, Benjamin John Oliver Long
  • Patent number: 12158522
    Abstract: Described herein are techniques for tracking objects (including human body parts such as a hand), namely: 1) two-state transducer interpolation in acoustic phased-arrays; 2) modulation techniques in acoustic phased-arrays; 3) fast acoustic full matrix capture during haptic effects; 4) time-of-flight depth sensor fusion system; 5) phase modulated spherical wave-fronts in acoustic phased-arrays; 6) long wavelength phase modulation of acoustic field for location and tracking; and 7) camera calibration through ultrasonic range sensing.
    Type: Grant
    Filed: June 8, 2022
    Date of Patent: December 3, 2024
    Assignee: ULTRAHAPTICS IP LTD
    Inventors: Michele Iodice, Benjamin John Oliver Long, Brian Kappus, Thomas Andrew Carter, Rafel Jibry, Orestis Georgiou
  • Patent number: 11921928
    Abstract: To resolve an issue related to the calibration of optical cameras in transducer-based mid-air haptic systems, the magnification of the motion induced on an optical camera by an acoustic field modulated at specific frequencies reveals very small temporal variations in video frames. This quantized distortion is used to compare different acoustic fields and to solve the calibration problem in an automatized manner. Further, mechanical resonators may be excited by ultrasound when it is modulated at the resonant frequency. When enough energy is transferred and when operating at the correct frequency, a user in contact with the device can feel vibration near areas of largest displacement. This effect can be exploited to create devices which can produce haptic feedback while not carrying a battery or exciter when in the presence of an ultrasonic source.
    Type: Grant
    Filed: December 14, 2022
    Date of Patent: March 5, 2024
    Assignee: Ultrahaptics IP Ltd
    Inventors: Michele Iodice, Brian Kappus, Benjamin John Oliver Long
  • Publication number: 20230117919
    Abstract: To resolve an issue related to the calibration of optical cameras in transducer-based mid-air haptic systems, the magnification of the motion induced on an optical camera by an acoustic field modulated at specific frequencies reveals very small temporal variations in video frames. This quantized distortion is used to compare different acoustic fields and to solve the calibration problem in an automatized manner. Further, mechanical resonators may be excited by ultrasound when it is modulated at the resonant frequency. When enough energy is transferred and when operating at the correct frequency, a user in contact with the device can feel vibration near areas of largest displacement. This effect can be exploited to create devices which can produce haptic feedback while not carrying a battery or exciter when in the presence of an ultrasonic source.
    Type: Application
    Filed: December 14, 2022
    Publication date: April 20, 2023
    Inventors: Michele Iodice, Brian Kappus, Benjamin John Oliver Long
  • Publication number: 20220300070
    Abstract: Described herein are techniques for tracking objects (including human body parts such as a hand), namely: 1) two-state transducer interpolation in acoustic phased-arrays; 2) modulation techniques in acoustic phased-arrays; 3) fast acoustic full matrix capture during haptic effects; 4) time-of-flight depth sensor fusion system; 5) phase modulated spherical wave-fronts in acoustic phased-arrays; 6) long wavelength phase modulation of acoustic field for location and tracking; and 7) camera calibration through ultrasonic range sensing.
    Type: Application
    Filed: June 8, 2022
    Publication date: September 22, 2022
    Inventors: Michele Iodice, Benjamin John Oliver Long, Brian Kappus, Thomas Andrew Carter, Rafel Jibry, Orestis Georgiou
  • Patent number: 11360546
    Abstract: Described herein are techniques for tracking objects (including human body parts such as a hand), namely: 1) two-state transducer interpolation in acoustic phased-arrays; 2) modulation techniques in acoustic phased-arrays; 3) fast acoustic full matrix capture during haptic effects; 4) time-of-flight depth sensor fusion system; 5) phase modulated spherical wave-fronts in acoustic phased-arrays; 6) long wavelength phase modulation of acoustic field for location and tracking; and 7) camera calibration through ultrasonic range sensing.
    Type: Grant
    Filed: December 21, 2018
    Date of Patent: June 14, 2022
    Assignee: ULTRAHAPTICS IP LTD
    Inventors: Michele Iodice, Benjamin John Oliver Long, Rafel Jibry
  • Patent number: 11189140
    Abstract: Described is a system for producing an acoustic field from a plurality of ultrasonic transducer arrays, each of which has known relative positions and orientations. The acoustic field comprises a carrier wave and a modulated wave. The carrier wave has a plurality of modulated focal areas. A plurality of control points having a known spatial relationship relative to at least one of the plurality of ultrasonic transducer arrays is used. The plurality of ultrasonic transducer arrays are calibrated by using the relative position of each of the plurality of ultrasonic transducer arrays.
    Type: Grant
    Filed: January 3, 2017
    Date of Patent: November 30, 2021
    Assignee: ULTRAHAPTICS IP LTD
    Inventors: Benjaimin John Oliver Long, Michele Iodice, Thomas Andrew Carter
  • Patent number: 11169610
    Abstract: A method for object tracking is presented based on the similarity of waveforms recorded at the receiving elements of the array. A rectangular array of acoustic transducers is divided into four quadrants, on the basis that each quadrant contains a receiving element in its center. Each of the four recorded waveforms are compared against each of the remaining waveforms to identify either absolute similarity of the signal characteristics, which would denote absence of the object, or identifying a waveform being the least similar from the rest, hence pointing to a part of the array above which the object is located. Further, source localization algorithms are used for ill-posed scenarios where the distance between receivers is on the same order of magnitude of the dimensions of the tracked object and of the tracking distances.
    Type: Grant
    Filed: November 9, 2020
    Date of Patent: November 9, 2021
    Assignee: ULTRALEAP LIMITED
    Inventors: Mantalena Sarafianou, Michele Iodice, Rafel Jibry
  • Publication number: 20210141458
    Abstract: A method for object tracking is presented based on the similarity of waveforms recorded at the receiving elements of the array. A rectangular array of acoustic transducers is divided into four quadrants, on the basis that each quadrant contains a receiving element in its center. Each of the four recorded waveforms are compared against each of the remaining waveforms to identify either absolute similarity of the signal characteristics, which would denote absence of the object, or identifying a waveform being the least similar from the rest, hence pointing to a part of the array above which the object is located. Further, source localization algorithms are used for ill-posed scenarios where the distance between receivers is on the same order of magnitude of the dimensions of the tracked object and of the tracking distances.
    Type: Application
    Filed: November 9, 2020
    Publication date: May 13, 2021
    Inventors: Mantalena Sarafianou, Michele Iodice, Rafel Jibry
  • Publication number: 20190196578
    Abstract: Described herein are techniques for tracking objects (including human body parts such as a hand), namely: 1) two-state transducer interpolation in acoustic phased-arrays; 2) modulation techniques in acoustic phased-arrays; 3) fast acoustic full matrix capture during haptic effects; 4) time-of-flight depth sensor fusion system; 5) phase modulated spherical wave-fronts in acoustic phased-arrays; 6) long wavelength phase modulation of acoustic field for location and tracking; and 7) camera calibration through ultrasonic range sensing.
    Type: Application
    Filed: December 21, 2018
    Publication date: June 27, 2019
    Inventors: Michele Iodice, Benjamin John Oliver Long, Brian Kappus, Thomas Andrew Carter, Rafel Jibry, Orestis Georgiou
  • Publication number: 20190163275
    Abstract: To resolve an issue related to the calibration of optical cameras in transducer-based mid-air haptic systems, the magnification of the motion induced on an optical camera by an acoustic field modulated at specific frequencies reveals very small temporal variations in video frames. This quantized distortion is used to compare different acoustic fields and to solve the calibration problem in an automatized manner. Further, mechanical resonators may be excited by ultrasound when it is modulated at the resonant frequency. When enough energy is transferred and when operating at the correct frequency, a user in contact with the device can feel vibration near areas of largest displacement. This effect can be exploited to create devices which can produce haptic feedback while not carrying a battery or exciter when in the presence of an ultrasonic source.
    Type: Application
    Filed: November 23, 2018
    Publication date: May 30, 2019
    Inventors: Michele Iodice, Brian Kappus, Benjamin John Oliver Carter, William Wren
  • Publication number: 20170193768
    Abstract: Described is a system for producing an acoustic field from a plurality of ultrasonic transducer arrays, each of which has known relative positions and orientations. The acoustic field comprises a carrier wave and a modulated wave. The carrier wave has a plurality of modulated focal areas. A plurality of control points having a known spatial relationship relative to at least one of the plurality of ultrasonic transducer arrays is used. The plurality of ultrasonic transducer arrays are calibrated by using the relative position of each of the plurality of ultrasonic transducer arrays.
    Type: Application
    Filed: January 3, 2017
    Publication date: July 6, 2017
    Inventors: Benjaimin John Oliver Long, Michele Iodice, Thomas Andrew Carter