Patents by Inventor Karlin Y. Bark

Karlin Y. Bark 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: 20210029452
    Abstract: Certain embodiments relate generally to modifying audio playing on a first device based on detection of that audio by a second device. Other embodiments relate to transferring audio between a first device and a second device. More particularly, audio playing from a first device may be muted, stopped, or adjusted in volume based on detection of that audio by, or interaction with, a second device. Likewise, audio may be transferred from a first device to a second device based on communications between the first and second devices, proximity of the first and second devices relative to one another, proximity of a user to either the first or second device, and so on.
    Type: Application
    Filed: June 30, 2020
    Publication date: January 28, 2021
    Inventors: Peter C. Tsoi, Adam S. Meyer, Karlin Y. Bark, Matthew W. Brown, Sean B. Kelly
  • Publication number: 20210014611
    Abstract: A wearable audio output device in a physical environment includes an input device and one or more microphones. While ambient sound from the physical environment is being detected by the microphone(s), the wearable audio output device: while in a first mode, provides a first audio output including one or more pass-through audio components selected so as to increase audio pass-through of the ambient sound; detects an input via the input device; in response to detecting the input, and in accordance with a determination that the input is a first type of gesture, transitions from the first mode to a second mode; and, while in the second mode, provides a second audio output including one or more cancellation audio components selected so as to increase audio cancellation of the ambient sound.
    Type: Application
    Filed: September 22, 2020
    Publication date: January 14, 2021
    Inventors: Taylor G. Carrigan, David C. Graham, Thomas S. Hulbert, Dustin A. Hatfield, Gemma A. Roper, Karlin Y. Bark, David H. Bloom, Benjamin G. Jackson, Brenton A. Baugh, Shota Aoyagi
  • Patent number: 10873798
    Abstract: The present disclosure describes systems, devices, and techniques related to a wearable audio device, such as an earbud or other device that is configured to detect inputs and change the operation of the wearable audio device in accordance with the inputs. In some embodiments, the wearable audio device is disposed in a structure and detects signals propagating through or within the structure. Various inputs may cause one or more signals to propagate through or within the structure, outside the structure, or some combination thereof. The wearable audio device may determine whether a detected signal was generated by an input and, if so, change its operation in accordance with the input.
    Type: Grant
    Filed: August 4, 2018
    Date of Patent: December 22, 2020
    Assignee: APPLE INC.
    Inventors: Benjamin G. Jackson, Brenton A. Baugh, David H. Bloom, Gemma A. Roper, Karlin Y. Bark, Thomas S. Hulbert
  • Patent number: 10860096
    Abstract: The present disclosure generally relates to controlling electronic devices. In some examples, the electronic device uses gaze information to activate a digital assistant. In some examples, the electronic device uses gaze information to identify an external device on which to act. In some examples, the electronic device provides an indication that distinguishes between different speakers.
    Type: Grant
    Filed: August 28, 2019
    Date of Patent: December 8, 2020
    Assignee: Apple Inc.
    Inventors: Sean B. Kelly, Felipe Bacim De Araujo E Silva, Karlin Y. Bark
  • Publication number: 20200344536
    Abstract: Embodiments are directed to a wearable audio device, such as an earbud. The earbud may be configured to detect input using various sensors and structures. For example, the earbud may be configured to detect gestures, physical manipulations, and so forth performed along or on the earbud. In response to the detected inputs, the earbud may be configured to change various outputs, such as an audio output or a haptic output of the device. The earbud may also include a microphone to register voice commands. In some cases, the microphone may be used to control the earbud using the registered voice command in response to one or more detected gestures or physical manipulations.
    Type: Application
    Filed: July 13, 2020
    Publication date: October 29, 2020
    Inventors: Benjamin G. Jackson, Brenton A. Baugh, David H. Bloom, Gemma A. Roper, Karlin Y. Bark, Thomas S. Hulbert
  • Patent number: 10757491
    Abstract: Embodiments are directed to a wearable audio device, such as an earbud. The earbud may be configured to detect input using various sensors and structures. For example, the earbud may be configured to detect gestures, physical manipulations, and so forth performed along or on the earbud. In response to the detected inputs, the earbud may be configured to change various outputs, such as an audio output or a haptic output of the device. The earbud may also include a microphone to register voice commands. In some cases, the microphone may be used to control the earbud using the registered voice command in response to one or more detected gestures or physical manipulations.
    Type: Grant
    Filed: August 4, 2018
    Date of Patent: August 25, 2020
    Assignee: APPLE INC.
    Inventors: Benjamin G. Jackson, Brenton A. Baugh, David H. Bloom, Gemma A. Roper, Karlin Y. Bark, Thomas S. Hulbert
  • Publication number: 20200258480
    Abstract: An augmented reality display system included in a vehicle generates an augmented reality display, on one or more transparent surfaces of the vehicle. The augmented reality display can include an indicator of the vehicle speed which is spatially positioned according to the speed of the vehicle relative to the local speed limit. The augmented reality display can include display elements which conform to environmental objects and can obscure and replace content displayed on the objects. The augmented reality display can include display elements which indicate a position of environmental objects which are obscured from direct perception through the transparent surface. The augmented reality display can include display elements which simulate one or more particular environmental objects in the environment, based on monitoring manual driving performance of the vehicle by a driver. The augmented reality display can include display elements which identify environmental objects and particular zones in the environment.
    Type: Application
    Filed: September 22, 2016
    Publication date: August 13, 2020
    Applicant: Apple Inc.
    Inventors: Kjell F. Bronder, Scott M. Herz, Karlin Y. Bark
  • Patent number: 10656777
    Abstract: One method includes receiving inputs from one or more input devices, and determining a user interest in use of the interface device based on the inputs. In response to the user interest, changing a state of the first interface device from a deactivated state in which the first interface device is concealed behind a surface to an activated state in which the first interface device emits light through the surface.
    Type: Grant
    Filed: March 23, 2018
    Date of Patent: May 19, 2020
    Assignee: Apple Inc.
    Inventors: Catherine N. Boulanger, Felipe Bacim De Araujo E Silva, Karlin Y. Bark, Seung Wook Kim
  • Publication number: 20200104194
    Abstract: An electronic device is in communication with one or more wearable audio output devices. The electronic device detects occurrence of an event and outputs, via the one or more wearable audio output devices, one or more audio notifications corresponding to the event. After beginning to output the one or more audio notifications, the electronic device detects an input directed to the one or more wearable audio output devices. In response, if the input is detected within a predefined time period with respect to the one or more audio notifications corresponding to the event, the electronic device performs a first operation associated with the one or more audio notifications corresponding to the event; and, if the input is detected after the predefined time period has elapsed, the electronic device performs a second operation not associated with the one or more audio notifications corresponding to the first event.
    Type: Application
    Filed: September 18, 2019
    Publication date: April 2, 2020
    Inventors: Devin W. Chalmers, Sean B. Kelly, Karlin Y. Bark
  • Publication number: 20200103963
    Abstract: The present disclosure generally relates to controlling electronic devices. In some examples, the electronic device uses gaze information to activate a digital assistant. In some examples, the electronic device uses gaze information to identify an external device on which to act. In some examples, the electronic device provides an indication that distinguishes between different speakers.
    Type: Application
    Filed: August 28, 2019
    Publication date: April 2, 2020
    Inventors: Sean B. KELLY, Felipe BACIM DE ARAUJO E SILVA, Karlin Y. BARK
  • Publication number: 20200026288
    Abstract: Signals usable to determine a path of a vehicle towards a particular stopping point in a vicinity of a destination are detected from an individual authorized to provide guidance with respect to movements of the vehicle. Based at least in part on the signals and a data set pertaining to the external environment of the vehicle, one or more vehicular movements to be implemented to proceed along the path are identified. A directive is transmitted to a motion control subsystem of the vehicle to initiate one of the vehicular movements.
    Type: Application
    Filed: August 2, 2019
    Publication date: January 23, 2020
    Applicant: Apple Inc.
    Inventors: Scott M. Herz, Sawyer I. Cohen, Samuel B. Gooch, Wolf Kienzle, Karlin Y. Bark, Jack J. Wanderman
  • Patent number: 10372132
    Abstract: Signals usable to determine a path of a vehicle towards a particular stopping point in a vicinity of a destination are detected from an individual authorized to provide guidance with respect to movements of the vehicle. Based at least in part on the signals and a data set pertaining to the external environment of the vehicle, one or more vehicular movements to be implemented to proceed along the path are identified. A directive is transmitted to a motion control subsystem of the vehicle to initiate one of the vehicular movements.
    Type: Grant
    Filed: November 29, 2017
    Date of Patent: August 6, 2019
    Assignee: Apple Inc.
    Inventors: Scott M. Herz, Sawyer I. Cohen, Samuel B. Gooch, Wolf Kienzle, Karlin Y. Bark, Jack J. Wanderman
  • Publication number: 20180164817
    Abstract: Signals usable to determine a path of a vehicle towards a particular stopping point in a vicinity of a destination are detected from an individual authorized to provide guidance with respect to movements of the vehicle. Based at least in part on the signals and a data set pertaining to the external environment of the vehicle, one or more vehicular movements to be implemented to proceed along the path are identified. A directive is transmitted to a motion control subsystem of the vehicle to initiate one of the vehicular movements.
    Type: Application
    Filed: November 29, 2017
    Publication date: June 14, 2018
    Applicant: Apple Inc.
    Inventors: Scott M. Herz, Sawyer I. Cohen, Samuel B. Gooch, Wolf Kienzle, Karlin Y. Bark, Jack J. Wanderman
  • Patent number: 8682489
    Abstract: In a minimally invasive surgical system, a hand tracking system tracks a location of a sensor element mounted on part of a human hand. A system control parameter is generated based on the location of the part of the human hand. Operation of the minimally invasive surgical system is controlled using the system control parameter. Thus, the minimally invasive surgical system includes a hand tracking system. The hand tracking system tracks a location of part of a human hand. A controller coupled to the hand tracking system converts the location to a system control parameter, and injects into the minimally invasive surgical system a command based on the system control parameter.
    Type: Grant
    Filed: September 21, 2010
    Date of Patent: March 25, 2014
    Assignee: Intuitive Sugical Operations, Inc.
    Inventors: Brandon D. Itkowitz, Simon P. DiMaio, Tao Zhao, Karlin Y. Bark
  • Patent number: 8543240
    Abstract: In a minimally invasive surgical system, a hand tracking system tracks a location of a sensor element mounted on part of a human hand. A system control parameter is generated based on the location of the part of the human hand. Operation of the minimally invasive surgical system is controlled using the system control parameter. Thus, the minimally invasive surgical system includes a hand tracking system. The hand tracking system tracks a location of part of a human hand. A controller coupled to the hand tracking system converts the location to a system control parameter, and injects into the minimally invasive surgical system a command based on the system control parameter.
    Type: Grant
    Filed: September 21, 2010
    Date of Patent: September 24, 2013
    Assignee: Intuitive Surgical Operations, Inc.
    Inventors: Brandon D. Itkowitz, Simon P. DiMaio, Karlin Y. Bark
  • Patent number: 8491665
    Abstract: The tactile feedback device of the preferred embodiments includes at least one skin contact pad; at least one actuator designed to move the at least one skin contact pad and attached to the at least one skin contact pad in a manner suitable to allow the actuator to move the at least one skin contact pad; a processor coupled to the actuator that executes a control logic and functions to control the movements of the at least one actuator; the control logic functions to determine the motions of the at least one actuator and is designed to move the at least one actuator in a manner that stretches the skin of the user. The tactile feedback device of the preferred embodiments has been designed to provide feedback to a user in a way that provides the user with information regarding a task that they are performing. The tactile feedback device of the preferred embodiments, however, may be used for any suitable purpose.
    Type: Grant
    Filed: December 16, 2009
    Date of Patent: July 23, 2013
    Assignees: Sandia Corporation, The Board of Trustees of the Leland Stanford Junior University
    Inventors: Mark R Cutkosky, Karlin Y Bark, Jason Wheeler, Joan Savall
  • Publication number: 20110118752
    Abstract: In a minimally invasive surgical system, a hand tracking system tracks a location of a sensor element mounted on part of a human hand. A system control parameter is generated based on the location of the part of the human hand. Operation of the minimally invasive surgical system is controlled using the system control parameter. Thus, the minimally invasive surgical system includes a hand tracking system. The hand tracking system tracks a location of part of a human hand. A controller coupled to the hand tracking system converts the location to a system control parameter, and injects into the minimally invasive surgical system a command based on the system control parameter.
    Type: Application
    Filed: September 21, 2010
    Publication date: May 19, 2011
    Inventors: Brandon Itkowitz, Simon P. DiMaio, Tao Zhao, Karlin Y. Bark
  • Publication number: 20110118753
    Abstract: In a minimally invasive surgical system, a hand tracking system tracks a location of a sensor element mounted on part of a human hand. A system control parameter is generated based on the location of the part of the human hand. Operation of the minimally invasive surgical system is controlled using the system control parameter. Thus, the minimally invasive surgical system includes a hand tracking system. The hand tracking system tracks a location of part of a human hand. A controller coupled to the hand tracking system converts the location to a system control parameter, and injects into the minimally invasive surgical system a command based on the system control parameter.
    Type: Application
    Filed: September 21, 2010
    Publication date: May 19, 2011
    Inventors: Brandon Itkowitz, Simon P. DiMaio, Karlin Y. Bark