Patents Assigned to ULTRALEAP LIMITED
  • Patent number: 11886639
    Abstract: Described herein are “Ultrahapticons,” which are a set of tangible and recognizable mid-air haptic icons that have been derived from research study participants' metaphorical associations with car infotainment features. In line with semiotic theory (the study of signs), data from the study was analyzed to identify key characteristics that when realized in mid-air haptic form, would enable a user to “feel” the feature they are interacting with. Their use is not limited to an automotive context, they can be instrumented to any application that exhibits the same feature functionality i.e. home entertainment system, laptop UI's, digital communication, Extended Reality (XR), and the like.
    Type: Grant
    Filed: September 17, 2021
    Date of Patent: January 30, 2024
    Assignees: ULTRALEAP LIMITED, THE UNIVERSITY OF NOTTINGHAM
    Inventor: Eddie Brown
  • Patent number: 11883847
    Abstract: An acoustic matching structure is used to increase the power radiated from a transducing element with a higher impedance into a surrounding acoustic medium with a lower acoustic impedance. The acoustic matching structure consists of a thin, substantially planar cavity bounded by a two end walls and a side wall. The end walls of the cavity are formed by a blocking plate wall and a transducing element wall separated by a short distance (less than one quarter of the wavelength of acoustic waves in the surrounding medium at the operating frequency). The end walls and side wall bound a cavity with diameter approximately equal to half of the wavelength of acoustic waves in the surrounding medium. In operation, a transducing element generates acoustic oscillations in the fluid in the cavity.
    Type: Grant
    Filed: December 13, 2022
    Date of Patent: January 30, 2024
    Assignee: ULTRALEAP LIMITED
    Inventors: Justin Rorke Buckland, Adam John Robert Jackson, Amaru Daniel Araya-Williams, Benjamin John Oliver Long, Brian Kappus
  • Patent number: 11816267
    Abstract: A method for specifying desired quantities of the energy flux of the combined waves of acoustic radiation pressure to apply producing a mid-air haptic pushing force, which has the effect of simultaneously reducing the harmonic distortion present is described. Further, a method for communicating only the summaries of acoustic field contributions at the required locations in the form of summed portions of the relatively small matrix whose row and column count depend only on the control point count is described. Further, phased arrays of ultrasonic speakers can produce a relatively large amount of acoustic energy which is usually directed in a specific direction or focused to a particular point depending on the application of the array. Further, to allow the system to be driven more strongly than usual, the complex-valued linear system that governs the drive signal to each control point is solved twice.
    Type: Grant
    Filed: June 22, 2021
    Date of Patent: November 14, 2023
    Assignee: ULTRALEAP LIMITED
    Inventors: Brian Kappus, Rob Malkin, Salvador Catsis, Benjamin John Oliver Long
  • Patent number: 11742870
    Abstract: A digital signal generation assumes that a base frequency (the frequency with which the primitive phase angles are specified relative to) is equal to the carrier frequency for all relevant times. But this causes errors in the digital signals output to each array element transducer. Thus, it is necessary for the development of a signal generation system that is capable of producing a digital signal using the free selection of amplitude and phase. This is used to produce a substantially error-free signal that preserves the amplitude and phase relative to a constant base frequency while allowing the carrier frequency to vary.
    Type: Grant
    Filed: June 19, 2022
    Date of Patent: August 29, 2023
    Assignee: ULTRALEAP LIMITED
    Inventors: Benjamin John Oliver Long, Brian Kappus
  • Patent number: 11715453
    Abstract: Defining critical spacing is necessary for steering of parametric audio. Comparing steering measurements both with and without a waveguide leads to a conclusion that the diffuse phyllotactic grating lobe contributes audio and is to blame for poor steering. In addition, the waveguide needs to function with correct phase offsets to achieve the steering required for performance. Arranging tubes so that the array configuration changes from rectilinear to another distribution is useful when the waveguide is short of critical spacing or constrained for space. Array designs may also capitalize on rectilinear transducer design while having the benefits of a transducer tiling that has irrational spacing to promote the spread of grating lobe energy.
    Type: Grant
    Filed: December 28, 2020
    Date of Patent: August 1, 2023
    Assignee: Ultraleap Limited
    Inventors: Brian Kappus, Benjamin John Oliver Long, Adam Price
  • Patent number: 11553295
    Abstract: Estimating the field strength from an ultrasonic phased array can be done by summing the contribution of each transducer to the point of interest. Since this contribution is already calculated when creating a converging spherical wave, it can be reused to add a virtual microphone to the system. By monitoring this microphone and moving it along with new focus points, a robust system of field estimates and regulation may be established.
    Type: Grant
    Filed: October 13, 2020
    Date of Patent: January 10, 2023
    Assignee: Ultraleap Limited
    Inventors: Brian Kappus, Benjamin John Oliver Long
  • Patent number: 11374586
    Abstract: A digital signal generation assumes that a base frequency (the frequency with which the primitive phase angles are specified relative to) is equal to the carrier frequency for all relevant times. But this causes errors in the digital signals output to each array element transducer. Thus, it is necessary for the development of a signal generation system that is capable of producing a digital signal using the free selection of amplitude and phase. This is used to produce a substantially error-free signal that preserves the amplitude and phase relative to a constant base frequency while allowing the carrier frequency to vary.
    Type: Grant
    Filed: October 12, 2020
    Date of Patent: June 28, 2022
    Assignee: ULTRALEAP LIMITED
    Inventors: Benjamin John Oliver Long, Brian Kappus
  • 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