Patents by Inventor Jeremy A. Brown

Jeremy A. Brown 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: 20240226961
    Abstract: Ultrasound devices, and associated methods of assembly thereof, are disclosed whereby an annular electrode array of an ultrasound transducer is electrically connected to a flexible printed circuit board in a compact configuration. The flexible circuit board includes an elongate flexible segment and a distal distribution segment, where the distribution segment is attached to a peripheral support ring that surrounds at least a portion of the ultrasound transducer. The distribution segment includes a plurality of spatially distributed contact pads, and electrical connections are provided between the contact pads and the annular electrodes of the annular array.
    Type: Application
    Filed: August 22, 2023
    Publication date: July 11, 2024
    Inventors: Jeremy A. Brown, Jeffrey R. Leadbetter, Charles D. Emery
  • Publication number: 20220088637
    Abstract: Ultrasound devices, and associated methods of assembly thereof, are disclosed whereby an annular electrode array of an ultrasound transducer is electrically connectedto a flexible printed circuit board in a compact configuration. The flexible circuit board includes an elongate flexible segment and a distal distribution segment, where the distribution segment is attached to a peripheral support ring that surrounds at least a portion of the ultrasound transducer. The distribution segment includes a plurality of spatially distributed contact pads, and electrical connections are provided between the contact pads and the annular electrodes of the annular array.
    Type: Application
    Filed: December 6, 2021
    Publication date: March 24, 2022
    Inventors: Jeremy A. Brown, Jeffrey R. Leadbetter, Charles D. Emery
  • Publication number: 20220023670
    Abstract: Embodiments are provided that enhance ultrasound efficacy by for example, high efficiency, signal measurement, calibration, and assurance systems with a control system radio-frequency (RE) driver configured to drive one or more focused ultrasound transducers. The RE driver can comprise one or more power amplifiers including one or more III-V semiconductors, (e.g., gallium nitride GaN, GaAs, GaSb, InP, InAs, InSb, InGaAs, AlSb, AlGaAs, and/or AlGaN) field-effect transistors to efficiently provide high power with distinct narrow-band RE signals over a wide frequency range. The RE driver can include a power measurement and/or calibration system to monitor the amplitude and phase of the RE signal output from the power amplifier and estimate the amount of RE power delivered to the ultrasound transducers.
    Type: Application
    Filed: November 25, 2019
    Publication date: January 27, 2022
    Inventors: Charles D. Emery, Wohsing P. Chen, Robert B. A. Adamson, Peeter Hugo Vihvelin, Daniel Zaenker, Nicholas A. Campbell, Matthew A. Wright, Jeffrey R. Leadbetter, Jeremy A. Brown
  • Patent number: 11224895
    Abstract: Ultrasound devices, and associated methods of assembly thereof, are disclosed whereby an annular electrode array of an ultrasound transducer is electrically connected to a flexible printed circuit board in a compact configuration. The flexible circuit board includes an elongate flexible segment and a distal distribution segment, where the distribution segment is attached to a peripheral support ring that surrounds at least a portion of the ultrasound transducer. The distribution segment includes a plurality of spatially distributed contact pads, and electrical connections are provided between the contact pads and the annular electrodes of the annular array.
    Type: Grant
    Filed: January 16, 2017
    Date of Patent: January 18, 2022
    Assignee: Ulthera, Inc.
    Inventors: Jeremy A. Brown, Jeffrey R. Leadbetter, Charles D. Emery
  • Patent number: 11001244
    Abstract: A brake actuator has a plurality of actuator housing portions, a parking piston axially displaceable within one of the actuator housing portions, and a service piston axially displaceable independently of the parking piston within another of the actuator housing portions. A brake actuator rod projecting from the other of the actuator housing portions moves outward of that actuator housing portion upon at least one of fluid supply to a first substantially torus-shaped service brake bladder and fluid relief from a second substantially torus-shaped parking brake bladder. The brake actuator rod can be moved inward into the other of the actuator housing portions upon fluid relief from the first substantially torus-shaped service brake bladder, and fluid supply to the second substantially torus-shaped parking brake bladder or both.
    Type: Grant
    Filed: April 28, 2020
    Date of Patent: May 11, 2021
    Assignee: Bendix Commercial Vehicle Systems LLC
    Inventors: Paul M. Wasnick, Nathan R. Plow, Jeremy A. Brown
  • Patent number: 10750299
    Abstract: Among other things, in general, a piezoelectric actuator for use in a piezoelectric inertial hearing aid is disclosed. The actuator includes at least one bimorph having a top piezoelectric plate, a bottom piezoelectric plate, and a shim with holed ends that extends beyond the length of the plates for securing to bone across, e.g., the mastoid cavity. Actuators having two or morph bimorphs and kits containing the same are also disclosed.
    Type: Grant
    Filed: August 17, 2018
    Date of Patent: August 18, 2020
    Assignee: DAXSONICS ULTRASOUND INC.
    Inventors: Akhelish Kotiya, Robert B. A. Adamson, Manohar Bance, Jeremy A. Brown
  • Patent number: 10559981
    Abstract: Among other things, in general, methods of increasing transfer efficiency in a power link are described, as well as power links implementing such methods. Methods of dynamic charging are also described. Applications of such methods and power links include the charging of portable electronic devices as well as implantable medical devices.
    Type: Grant
    Filed: June 25, 2015
    Date of Patent: February 11, 2020
    Assignee: Daxsonics Ultrasound Inc.
    Inventors: Hugo Vihvelin, Jeff Leadbetter, Manohar Bance, Robert B. A. Adamson, Jeremy A. Brown
  • Publication number: 20190110773
    Abstract: To address limitations of conventional transducers, a phased array transducer is provided with a form factor suitable for packaging into, e.g., an endoscope. A method of manufacture of small packaging transducers is also provided, whereby the overall package size is reduced by electrically connecting signal wires to array electrodes at an angle approximately normal to the array surface, thus largely eliminating the bend radius requirements of conventional printed circuit boards or flex circuits.
    Type: Application
    Filed: December 3, 2018
    Publication date: April 18, 2019
    Inventors: Andre B. Bezanson, Robert B. A. Adamson, Jeremy A. Brown
  • Publication number: 20190022700
    Abstract: Ultrasound devices, and associated methods of assembly thereof, are disclosed whereby an annular electrode array of an ultrasound transducer is electrically connected to a flexible printed circuit board in a compact configuration. The flexible circuit board includes an elongate flexible segment and a distal distribution segment, where the distribution segment is attached to a peripheral support ring that surrounds at least a portion of the ultrasound transducer. The distribution segment includes a plurality of spatially distributed contact pads, and electrical connections are provided between the contact pads and the annular electrodes of the annular array.
    Type: Application
    Filed: January 16, 2017
    Publication date: January 24, 2019
    Inventors: Jeremy A. BROWN, Jeffrey R. LEADBETTER, Charles D. EMERY
  • Publication number: 20180359577
    Abstract: Among other things, in general, a piezoelectric actuator for use in a piezoelectric inertial hearing aid is disclosed. The actuator includes at least one bimorph having a top piezoelectric plate, a bottom piezoelectric plate, and a shim with holed ends that extends beyond the length of the plates for securing to bone across, e.g., the mastoid cavity. Actuators having two or morph bimorphs and kits containing the same are also disclosed.
    Type: Application
    Filed: August 17, 2018
    Publication date: December 13, 2018
    Inventors: Akhelish Kotiya, Robert B. A. Adamson, Manohar Bance, Jeremy A. Brown
  • Patent number: 10149660
    Abstract: To address limitations of conventional transducers, a phased array transducer is provided with a form factor suitable o for packaging into, e.g., an endoscope. A method of manufacture of small packaging transducers is also provided, whereby the overall package size is reduced by electrically connecting signal wires to array electrodes at an angle approximately normal to the array surface, thus largely eliminating the bend radius requirements of conventional printed circuit boards or flex circuits.
    Type: Grant
    Filed: August 9, 2013
    Date of Patent: December 11, 2018
    Assignee: DALHOUSIE UNIVERSITY
    Inventors: Andre B. Bezanson, Robert B. A. Adamson, Jeremy A. Brown
  • Patent number: 9981139
    Abstract: Among other things, in general, an acousto-mechanical transducer for the interconversion of electricity and acoustic waves is described. Methods are also described for the construction of such transducers.
    Type: Grant
    Filed: May 8, 2014
    Date of Patent: May 29, 2018
    Assignee: Dalhousie University
    Inventors: Robert B. A. Adamson, Jeffrey R. Leadbetter, Jeremy A. Brown, Manohar Bance
  • Patent number: 9728708
    Abstract: Among other things, piezoelectric materials and methods of their manufacture are described; particularly methods of forming regions of varying crystal structure within a relaxor piezoelectric substrate. Such methods may including heating the piezoelectric substrate above the transition temperature and below the Curie temperature such that a first phase transition occurs to a first crystal structure; rapidly cooling the piezoelectric substrate below the transition temperature at a cooling rate that is sufficiently high for the first crystal structure to persist; and applying an electric field through one or more selected regions of the piezoelectric substrate, such that within the one or more selected regions, a second phase transition occurs and results in a second crystal structure.
    Type: Grant
    Filed: October 18, 2012
    Date of Patent: August 8, 2017
    Assignee: DALHOUSIE UNIVERSITY
    Inventors: Philip P. Garland, Robert B. A. Adamson, Andre B. Bezanson, Jeremy A. Brown
  • Publication number: 20170201131
    Abstract: Among other things, in general, methods of increasing transfer efficiency in a power link are described, as well as power links implementing such methods. Methods of dynamic charging are also described. Applications of such methods and power links include the charging of portable electronic devices as well as implantable medical devices.
    Type: Application
    Filed: June 25, 2015
    Publication date: July 13, 2017
    Inventors: Hugo VIHVELIN, Jeff LEADBETTER, Manohar BANCE, Robert B.A. ADAMSON, Jeremy A. BROWN
  • Publication number: 20160059012
    Abstract: Among other things, in general, an acousto-mechanical transducer for the interconversion of electricity and acoustic waves is described. Methods are also described for the construction of such transducers.
    Type: Application
    Filed: May 8, 2014
    Publication date: March 3, 2016
    Inventors: Robert B.A. Adamson, Jeffrey R. Leadbetter, Jeremy A. Brown, Manohar Bance
  • Publication number: 20150209005
    Abstract: To address limitations of conventional transducers, a phased array transducer is provided with a form factor suitable o for packaging into, e.g., an endoscope. A method of manufacture of small packaging transducers is also provided, whereby the overall package size is reduced by electrically connecting signal wires to array electrodes at an angle approximately normal to the array surface, thus largely eliminating the bend radius requirements of conventional printed circuit boards or flex circuits.
    Type: Application
    Filed: August 9, 2013
    Publication date: July 30, 2015
    Inventors: Andre B. Bezanson, Robert B. A. Adamson, Jeremy A. Brown
  • Patent number: 8965021
    Abstract: An implantable bone-conduction hearing actuator based on a piezoelectric element, such as a unimorph or bimorph cantilever bender, is described. Unlike other implantable bone conduction hearing actuators, the device is subcutaneous and once implanted is entirely invisible. The device excites bending in bone through a local bending moment rather than the application of a point force as with conventional bone-anchored hearing aids.
    Type: Grant
    Filed: June 3, 2013
    Date of Patent: February 24, 2015
    Assignee: Dalhousie University
    Inventors: Robert Bruce Alexander Adamson, Jeremy A. Brown, Manohar Bance, Akhilesh Kotiya
  • Patent number: 8942400
    Abstract: An implantable bone-conduction hearing actuator based on a piezoelectric element, such as a unimorph or bimorph cantilever bender, is described. Unlike other implantable bone conduction hearing actuators, the device is subcutaneous and once implanted is entirely invisible. The device excites bending in bone through a local bending moment rather than the application of a point force as with conventional bone-anchored hearing aids.
    Type: Grant
    Filed: June 8, 2010
    Date of Patent: January 27, 2015
    Assignee: Dalhousie University
    Inventors: Robert Bruce Alexander Adamson, Jeremy A. Brown, Manohar Bance, Akhelish Kotiya
  • Publication number: 20140306581
    Abstract: Among other things, piezoelectric materials and methods of their manufacture are described; particularly methods of forming regions of varying crystal structure within a relaxor piezoelectric substrate. Such methods may including heating the piezoelectric substrate above the transition temperature and below the Curie temperature such that a first phase transition occurs to a first crystal structure; rapidly cooling the piezoelectric substrate below the transition temperature at a cooling rate that is sufficiently high for the first crystal structure to persist; and applying an electric field through one or more selected regions of the piezoelectric substrate, such that within the one or more selected regions, a second phase transition occurs and results in a second crystal structure.
    Type: Application
    Filed: October 18, 2012
    Publication date: October 16, 2014
    Inventors: Philip P. Garland, Robert B.A. Adamson, Andre B. Benzanson, Jeremy A. Brown
  • Publication number: 20130261377
    Abstract: An implantable bone-conduction hearing actuator based on a piezoelectric element, such as a unimorph or bimorph cantilever bender, is described. Unlike other implantable bone conduction hearing actuators, the device is subcutaneous and once implanted is entirely invisible. The device excites bending in bone through a local bending moment rather than the application of a point force as with conventional bone-anchored hearing aids.
    Type: Application
    Filed: June 3, 2013
    Publication date: October 3, 2013
    Inventors: Robert Bruce Alexander ADAMSON, Jeremy A. BROWN, Manohar BANCE, Akhilesh KOTIYA