Patents by Inventor Scott Allan Miller

Scott Allan Miller 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: 20220331599
    Abstract: An interface relay system for use with a fully implantable medical devices that permits transcutaneous coupling of the implanted medical device to a consumer electronics device. In one embodiment, coupling the implanted medical device to the external electronics device provides a back-up source of power for operating the implanted medical device. In another embodiment, coupling the implanted medical device to the external electronics device allows for providing unidirectional and/or bidirectional data transfer between the devices. In one arrangement, the consumer electronics device may be connectable to a communications/data network to allow for network communication between the implantable medical device and a remote processing platform/server.
    Type: Application
    Filed: June 30, 2022
    Publication date: October 20, 2022
    Inventors: Scott Allan Miller, Denis Dupeyron
  • Patent number: 11376442
    Abstract: An interface relay system for use with a fully implantable medical devices that permits transcutaneous coupling of the implanted medical device to a consumer electronics device. In one embodiment, coupling the implanted medical device to the external electronics device provides a back-up source of power for operating the implanted medical device. In another embodiment, coupling the implanted medical device to the external electronics device allows for providing unidirectional and/or bidirectional data transfer between the devices. In one arrangement, the consumer electronics device may be connectable to a communications/data network to allow for network communication between the implantable medical device and a remote processing platform/server.
    Type: Grant
    Filed: November 25, 2019
    Date of Patent: July 5, 2022
    Assignee: Cochlear Limited
    Inventors: Scott Allan Miller, Denis Dupeyron
  • Publication number: 20200236472
    Abstract: A method including receiving input indicative of a parameter related to an operating environment of an implantable portion of a prosthesis and adjusting an adjustable system of the prosthesis based on the received input.
    Type: Application
    Filed: January 17, 2020
    Publication date: July 23, 2020
    Inventor: Scott Allan Miller, III
  • Publication number: 20200086121
    Abstract: An interface relay system for use with a fully implantable medical devices that permits transcutaneous coupling of the implanted medical device to a consumer electronics device. In one embodiment, coupling the implanted medical device to the external electronics device provides a back-up source of power for operating the implanted medical device. In another embodiment, coupling the implanted medical device to the external electronics device allows for providing unidirectional and/or bidirectional data transfer between the devices. In one arrangement, the consumer electronics device may be connectable to a communications/data network to allow for network communication between the implantable medical device and a remote processing platform/server.
    Type: Application
    Filed: November 25, 2019
    Publication date: March 19, 2020
    Inventors: Scott Allan Miller, Denis Dupeyron
  • Patent number: 10542350
    Abstract: A method including receiving input indicative of a parameter related to an operating environment of an implantable portion of a prosthesis and adjusting an adjustable system of the prosthesis based on the received input.
    Type: Grant
    Filed: June 24, 2013
    Date of Patent: January 21, 2020
    Assignee: Cochlear Limited
    Inventor: Scott Allan Miller, III
  • Patent number: 10485974
    Abstract: An interface relay system for use with a fully implantable medical devices that permits transcutaneous coupling of the implanted medical device to a consumer electronics device. In one embodiment, coupling the implanted medical device to the external electronics device provides a back-up source of power for operating the implanted medical device. In another embodiment, coupling the implanted medical device to the external electronics device allows for providing unidirectional and/or bidirectional data transfer between the devices. In one arrangement, the consumer electronics device may be connectable to a communications/data network to allow for network communication between the implantable medical device and a remote processing platform/server.
    Type: Grant
    Filed: September 25, 2015
    Date of Patent: November 26, 2019
    Assignee: Cochlear Limited
    Inventors: Scott Allan Miller, Denis Dupeyron
  • Publication number: 20160008599
    Abstract: An interface relay system for use with a fully implantable medical devices that permits transcutaneous coupling of the implanted medical device to a consumer electronics device. In one embodiment, coupling the implanted medical device to the external electronics device provides a back-up source of power for operating the implanted medical device. In another embodiment, coupling the implanted medical device to the external electronics device allows for providing unidirectional and/or bidirectional data transfer between the devices. In one arrangement, the consumer electronics device may be connectable to a communications/data network to allow for network communication between the implantable medical device and a remote processing platform/server.
    Type: Application
    Filed: September 25, 2015
    Publication date: January 14, 2016
    Inventors: Scott Allan Miller, Denis Dupeyron
  • Publication number: 20150358709
    Abstract: An electret microphone having reduced noise due to reduced leakage current is provided. The microphone includes a flexible diaphragm, and sensor member disposed in opposing, spaced relation to the diaphragm and comprising a semi-conductor channel. At least one electret surface, comprised of a dielectric material having a permanently-embedded static electric charge, is disposed on one of the diaphragm and the sensor member. In turn, the semi-conductor channel of the sensor member has an electrical conductivity dependent upon relative movement of the diaphragm and support member responsive to acoustic signals incident upon the diaphragm, wherein the channel provides an output signal indicative of the acoustic signals. The electret surface may be disposed on the diaphragm. Alternatively, the electret surface may be disposed on the sensor member in spaced, face-to-face relation to an electrically conductive surface located on the diaphragm.
    Type: Application
    Filed: June 15, 2015
    Publication date: December 10, 2015
    Inventors: Scott Allan Miller, III, Denis Dupeyron
  • Patent number: 9155887
    Abstract: An interface relay system for use with a fully implantable medical devices that permits transcutaneous coupling of the implanted medical device to a consumer electronics device. In one embodiment, coupling the implanted medical device to the external electronics device provides a back-up source of power for operating the implanted medical device. In another embodiment, coupling the implanted medical device to the external electronics device allows for providing unidirectional and/or bidirectional data transfer between the devices. In one arrangement, the consumer electronics device may be connectable to a communications/data network to allow for network communication between the implantable medical device and a remote processing platform/server.
    Type: Grant
    Filed: October 19, 2011
    Date of Patent: October 13, 2015
    Assignee: Cochlear Limited
    Inventors: Scott Allan Miller, III, Denis Dupeyron
  • Patent number: 9060229
    Abstract: An electret microphone having reduced noise due to reduced leakage current is provided. The microphone includes a flexible diaphragm, and sensor member disposed in opposing, spaced relation to the diaphragm and comprising a semi-conductor channel. At least one electret surface, comprised of a dielectric material having a permanently-embedded static electric charge, is disposed on one of the diaphragm and the sensor member. In turn, the semi-conductor channel of the sensor member has an electrical conductivity dependent upon relative movement of the diaphragm and support member responsive to acoustic signals incident upon the diaphragm, wherein the channel provides an output signal indicative of the acoustic signals. The electret surface may be disposed on the diaphragm. Alternatively, the electret surface may be disposed on the sensor member in spaced, face-to-face relation to an electrically conductive surface located on the diaphragm.
    Type: Grant
    Filed: March 30, 2011
    Date of Patent: June 16, 2015
    Assignee: Cochlear Limited
    Inventors: Scott Allan Miller, III, Denis Dupeyron
  • Publication number: 20150142075
    Abstract: Disclosed herein are various methods, systems, an apparatuses for determining appropriate situations to treat conditions such as sleep apnea. At appropriate times, treatment can be applied such as through electrical stimulation to a person (e.g., an electrical stimulation of a person's genioglossus muscle in response to detecting that the person is undergoing an obstructive sleep apnea precursor event). In exemplary embodiments, a sensor such as a microphone and/or motion sensor can be used to provide a processor with data to facilitate a determination by the processor as to whether an electrical stimulus should be applied.
    Type: Application
    Filed: November 17, 2014
    Publication date: May 21, 2015
    Inventors: Scott Allan Miller, III, Jose H. Bedoya
  • Patent number: 8892205
    Abstract: Disclosed herein are various methods, systems, an apparatuses for determining appropriate situations to treat conditions such as sleep apnea. At appropriate times, treatment can be applied such as through electrical stimulation to a person (e.g., an electrical stimulation of a person's genioglossus muscle in response to detecting that the person is undergoing an obstructive sleep apnea precursor event). In exemplary embodiments, a sensor such as a microphone and/or motion sensor can be used to provide a processor with data to facilitate a determination by the processor as to whether an electrical stimulus should be applied.
    Type: Grant
    Filed: December 6, 2012
    Date of Patent: November 18, 2014
    Assignee: Otologics, LLC
    Inventors: Scott Allan Miller, III, Jose H. Bedoya
  • Patent number: 8855350
    Abstract: An implantable microphone that includes a hermetically-sealed, enclosed volume and an electret member and back plate disposed with a space therebetween and capacitively coupleable to provide an output signal indicative of acoustic signals incident upon at least one of the electret member and back plate. At least one of the electret member and the back plate may include a plurality of laterally offset portions located in corresponding spatial relation to a plurality of laterally offset regions including the lateral extent of the space. The output signal may be at least one of weighted and weightable in relation to the plurality of laterally offset portions. The electret member may include the plurality of laterally offset portions, and the laterally offset portions may include at least one positively charged dielectric material portion and at least one negatively charged dielectric material portion.
    Type: Grant
    Filed: April 27, 2010
    Date of Patent: October 7, 2014
    Assignee: Cochlear Limited
    Inventor: Scott Allan Miller, III
  • Patent number: 8840540
    Abstract: The invention is directed to an implanted microphone having reduced sensitivity to vibration. In this regard, the microphone differentiates between the desirable and undesirable vibration by utilizing at least one motion sensor to produce a motion signal when an implanted microphone is in motion. This motion signal is used to yield a microphone output signal that is less vibration sensitive. In a first arrangement, the motion signal may be processed with an output of the implantable microphone transducer to provide an audio signal that is less vibration-sensitive than the microphone output alone. Specifically, the motion signal may be scaled to match the motion component of the microphone output such that upon removal of the motion signal from the microphone output, the remaining signal is an acoustic signal.
    Type: Grant
    Filed: January 12, 2012
    Date of Patent: September 23, 2014
    Assignee: Cochlear Limited
    Inventor: Scott Allan Miller, III
  • Publication number: 20130281765
    Abstract: A method including receiving input indicative of a parameter related to an operating environment of an implantable portion of a prosthesis and adjusting an adjustable system of the prosthesis based on the received input.
    Type: Application
    Filed: June 24, 2013
    Publication date: October 24, 2013
    Inventor: Scott Allan MILLER, III
  • Patent number: 8509469
    Abstract: An implantable microphone is disclosed having an external diaphragm and housing that forming chamber capable of being pressurized by deformational movement of the diaphragm induced by pressure waves (e.g., acoustic signals) propagating through overlying tissue. The chamber is shaped such that the volume of the chamber upon deflection of the diaphragm is reduced compared to a static volume of the chamber (i.e., volume of the chamber with no diaphragm deflection). As a result, the change in pressure within the chamber for a given diaphragm displacement is greater than it would be within a chamber having a cylindrical volume, leading to greater microphone sensitivity. In one arrangement, the chamber is shaped such that it is deeper at its center than at its edges, for example, to form a conical or paraboloidal volume.
    Type: Grant
    Filed: February 18, 2011
    Date of Patent: August 13, 2013
    Assignee: Cochlear Limited
    Inventors: Scott Allan Miller, III, Robert Edwin Schneider
  • Patent number: 8472654
    Abstract: Provided is an implanted hearing instrument having reduced sensitivity to vibration. In this regard, the instrument differentiates between the desirable and undesirable signals within an implanted microphone response. In one arrangement, an observer identifies a current operating state of the implanted hearing instrument and one or more cancellation filters are adjusted based on the current operating state. The cancellation filter(s) are used to reduce undesired signals form the implanted microphone response. In a first arrangement, the output of the implanted hearing instrument may be filtered and removed from the implanted microphone response to reduce or substantially eliminate feedback in the microphone signal provided to an implanted signal processor.
    Type: Grant
    Filed: October 30, 2007
    Date of Patent: June 25, 2013
    Assignee: Cochlear Limited
    Inventor: Scott Allan Miller, III
  • Patent number: 8366601
    Abstract: An implantable hearing aid transducer apparatus provides a simplified approach for interface with a middle ear component. The transducer includes a transducer housing, an actuator for middle ear coupling, and a driver having a magnet or coil interconnected to the actuator to induce movement in response to driver signals. In one feature, the actuator may be advanceable through an aperture of the housing independent from operation of the driver. In another feature, a portion of the transducer may be rotatable. In another feature, a retention apparatus may function to selectively secure a rotatable portion of the housing in a selected position. In an additional feature, a seal may be disposed around a driver component and connected to the actuator.
    Type: Grant
    Filed: September 24, 2007
    Date of Patent: February 5, 2013
    Assignee: Cochlear Limited
    Inventors: Robert Edwin Schneider, Scott Allan Miller, III, Travis Rian Andrews
  • Publication number: 20130010988
    Abstract: An implantable microphone comprises a hermetically-sealed, enclosed volume and an electret member and back plate disposed with a space therebetween and capacitively coupleable to provide an output signal indicative of acoustic signals incident upon at least one of the electret member and back plate. The back plate may be disposed to define a peripheral portion of the enclosed volume, e.g., the back plate may be defined as part of a flexible diaphragm that receives external acoustic signals. Vents may be provided to fluidly interconnect first and second portions of the enclosed volume that are located on first and second sides of the electret member. In another embodiment, the electret member may be flexible and spaced relative to a flexible outer diaphragm.
    Type: Application
    Filed: September 14, 2012
    Publication date: January 10, 2013
    Applicant: OTOLOGICS, LLC
    Inventors: Scott Allan Miller, III, Travis Rian Andrews, Robert Edwin Schneider, David L. Basinger, James R. Easter
  • Publication number: 20120232333
    Abstract: The invention is directed to an implanted microphone having reduced sensitivity to vibration. In this regard, the microphone differentiates between the desirable and undesirable vibration by utilizing at least one motion sensor to produce a motion signal when an implanted microphone is in motion. This motion signal is used to yield a microphone output signal that is less vibration sensitive. In a first arrangement, the motion signal may be processed with an output of the implantable microphone transducer to provide an audio signal that is less vibration-sensitive than the microphone output alone. Specifically, the motion signal may be scaled to match the motion component of the microphone output such that upon removal of the motion signal from the microphone output, the remaining signal is an acoustic signal.
    Type: Application
    Filed: January 12, 2012
    Publication date: September 13, 2012
    Applicant: Otologics, LLC
    Inventor: Scott Allan Miller, III