Patents by Inventor David T. Amm

David T. Amm 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).

  • Patent number: 9323398
    Abstract: Improved capacitive touch and hover sensing with a sensor array is provided. An AC ground shield positioned behind the sensor array and stimulated with signals of the same waveform as the signals driving the sensor array may concentrate the electric field extending from the sensor array and enhance hover sensing capability. The hover position and/or height of an object that is nearby, but not directly above, a touch surface of the sensor array, e.g., in the border area at the end of a touch screen, may be determined using capacitive measurements of sensors near the end of the sensor array by fitting the measurements to a model. Other improvements relate to the joint operation of touch and hover sensing, such as determining when and how to perform touch sensing, hover sensing, both touch and hover sensing, or neither.
    Type: Grant
    Filed: July 10, 2009
    Date of Patent: April 26, 2016
    Assignee: Apple Inc.
    Inventors: Jeffrey Traer Bernstein, David T. Amm, Omar Leung, Christopher Tenzin Mullens, Brian Michael King, Brian Richards Land, Reese T. Cutler
  • Patent number: 9268431
    Abstract: Touch and hover switching is disclosed. A touch and hover sensing device can switch between a touch mode and a hover mode. During a touch mode, the device can be switched to sense one or more objects touching the device. During a hover mode, the device can be switched to sense one or more objects hovering over the device. The device can include a panel having multiple sensors for sensing a touching object and/or a hovering object and a touch and hover control system for switching the device between the touch and hover modes. The device's touch and hover control system can include a touch sensing circuit for coupling to the sensors to measure a capacitance indicative of a touching object during the touch mode, a hover sensing circuit for coupling to the sensors to measure a capacitance indicative of a hovering object during the hover mode, and a switching mechanism for switching the sensors to couple to either the touch sensing circuit or the hover sensing circuit.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: February 23, 2016
    Assignee: Apple Inc.
    Inventors: Brian Michael King, Omar Leung, Paul G. Puskarich, Jeffrey Traer Bernstein, Andrea Mucignat, Avi E. Cieplinski, Muhammad U. Choudry, Praveen R. Subramani, Marc J. Piche, David T. Amm, Duncan Robert Kerr
  • Publication number: 20150377727
    Abstract: The disclosure addresses a force sensor that is scalable in size and adaptable to a variety of form factors, including those suitable for use in an input device for a computer or other processing system, and in some cases including those of the configuration normally referred to as a computer mouse. The force sensor will include at least two structural members that are cooperatively attached one another as to be displaced from one another in response to a force acting upon one of the structural members. In some examples, the engagement between the two structural members will be specifically configured to allow such displacement in response to forces acting laterally on the force sensor. The force sensor will also include one or more sensing mechanisms to provide a measurement of the sensed deflection.
    Type: Application
    Filed: September 4, 2015
    Publication date: December 31, 2015
    Inventors: Lawrence J. Baskett, David T. Amm
  • Publication number: 20150253866
    Abstract: Systems and methods for using measurements of a lateral force applied to a motion-based input device are disclosed. The input device has a force detection module operable to detect lateral forces applied to the input device and generate force data representative of the applied lateral forces. The system also includes a processor coupled to the force detection module. The processor is operable to initiate an event based upon the force data.
    Type: Application
    Filed: May 21, 2015
    Publication date: September 10, 2015
    Inventors: David T. Amm, Omar S. Leung
  • Patent number: 9128540
    Abstract: The disclosure addresses a force sensor that is scalable in size and adaptable to a variety of form factors, including those suitable for use in an input device for a computer or other processing system, and in some cases including those of the configuration normally referred to as a computer mouse. The force sensor will include at least two structural members that are cooperatively attached one another as to be displaced from one another in response to a force acting upon one of the structural members. In some examples, the engagement between the two structural members will be specifically configured to allow such displacement in response to forces acting laterally on the force sensor. The force sensor will also include one or more sensing mechanisms to provide a measurement of the sensed deflection.
    Type: Grant
    Filed: May 20, 2013
    Date of Patent: September 8, 2015
    Assignee: Apple Inc.
    Inventors: Lawrence J. Baskett, David T. Amm
  • Patent number: 9098138
    Abstract: Detecting a signal from a touch and hover sensing device, in which the signal can be indicative of concurrent touch events and/or hover events, is disclosed. A touch event can indicate an object touching the device. A hover event can indicate an object hovering over the device. The touch and hover sensing device can ensure that a desired hover event is not masked by an incidental touch event, e.g., a hand holding the device, by compensating for the touch event in the detected signal that represents both events. Conversely, when both a hover event and a touch event are desired, the touch and hover sensing device can ensure that both events are detected by adjusting the device sensors and/or the detected signal. The touch and hover sensing device can also detect concurrent hover events by identifying multiple peaks in the detected signal, each peak corresponding to a position of a hovering object.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: August 4, 2015
    Assignee: Apple Inc.
    Inventors: Brian Michael King, Omar Leung, Paul G. Puskarich, Jeffrey Traer Bernstein, Andrea Mucignat, Avi E. Cieplinski, Muhammad U. Choudry, Praveen R. Subramani, Marc J. Piche, David T. Amm, Duncan Robert Kerr
  • Patent number: 9041650
    Abstract: Systems and methods for using measurements of a lateral force applied to a motion-based input device are disclosed. The input device has a force detection module operable to detect lateral forces applied to the input device and generate force data representative of the applied lateral forces. The system also includes a processor coupled to the force detection module. The processor is operable to initiate an event based upon the force data.
    Type: Grant
    Filed: September 18, 2008
    Date of Patent: May 26, 2015
    Assignee: Apple Inc.
    Inventors: David T. Amm, Omar S. Leung
  • Patent number: 8982060
    Abstract: Compensation for sensors in a touch and hover sensing device is disclosed. Compensation can be for sensor resistance and/or sensor sensitivity variation that can adversely affect touch and hover measurements at the sensors. To compensate for sensor resistance, the device can gang adjacent sensors together so as to reduce the overall resistance of the sensors. In addition or alternatively, the device can drive the sensors with voltages from multiple directions so as to reduce the effects of the sensors' resistance. To compensate for sensor sensitivity variation (generally at issue for hover measurements), the device can apply a gain factor to the measurements, where the gain factor is a function of the sensor location, so as to reduce the sensitivity variation at different sensor locations on the device.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: March 17, 2015
    Assignee: Apple Inc.
    Inventors: Brian Michael King, Omar Leung, Paul G. Puskarich, Jeffrey Traer Bernstein, Andrea Mucignat, Avi E. Cieplinski, Muhammad U. Choudry, Praveen R. Subramani, Marc J. Piche, David T. Amm, Duncan Robert Kerr
  • Patent number: 8947305
    Abstract: An electronic device may have a housing in which an antenna is mounted. An antenna window may be mounted in the housing to allow radio-frequency signals to be transmitted from the antenna and to allow the antenna to receive radio-frequency signals. Near-field radiation limits may be satisfied by reducing transmit power when an external object is detected in the vicinity of the dielectric antenna window and the antenna. A capacitive proximity sensor may be used in detecting external objects in the vicinity of the antenna. The proximity sensor may have conductive layers separated by a dielectric. A capacitance-to-digital converter may be coupled to the proximity sensor by inductors. The capacitive proximity sensor may be interposed between an antenna resonating element and the antenna window. The capacitive proximity sensor may serve as a parasitic antenna resonating element and may be coupled to the housing by a capacitor.
    Type: Grant
    Filed: April 26, 2013
    Date of Patent: February 3, 2015
    Assignee: Apple Inc.
    Inventors: David T. Amm, Robert W. Schlub, Omar S. Leung, Brian M. King, Qingxiang Li, Enrique Ayala Vazquez, Rodney A. Gomez Angulo, Yi Jiang, Ruben Caballero
  • Publication number: 20150022454
    Abstract: There are provided methods and systems related to having an input device configured according to a position of a user's hand relative to the input device. In particular, in some embodiments, a method of operating a computing system is provided that includes determining an operational context of the computing system utilizing a processor of the system and configuring an input device for the system based on the operational context. The input device includes a plurality of discrete input members. The method also includes displaying a virtual image representative of the input device on a display of the system. A position of a user's digits relative to the input device is sensed and the input device is reconfigured based on the sensed position of the user's digits. An image of the user's digits overlaying the virtual image representative of the input device is provided on a display of the computing system.
    Type: Application
    Filed: August 4, 2014
    Publication date: January 22, 2015
    Inventor: David T. Amm
  • Publication number: 20140253506
    Abstract: An input device is disclosed. The input is a deflection based capacitive sensing input. Deflection of a metal fame of the input device causes a change in capacitance that is used to control a function of an electrical device. The input appears invisible because it is made of the same material as the housing it is contained in. Invisible backlit holes may make the input selectively visible or invisible to the user.
    Type: Application
    Filed: May 20, 2014
    Publication date: September 11, 2014
    Applicant: Apple Inc.
    Inventors: Omar S. Leung, David T. Amm
  • Publication number: 20140247248
    Abstract: The present disclosure addresses methods and apparatus facilitating capacitive sensing using a conductive surface, and facilitating the sensing of proximity to the conductive surface. The sensed proximity will often be that of a user but can be another source of a reference voltage potential. In some examples, the described systems are capable of sensing, capacitance (including parasitic capacitance) in a circuit that includes the outer conductive surface, and where that outer conductive surface is at a floating electrical potential. In some systems, the systems can be switched between two operating modes, a first mode in which the system will sense proximity to the conductive surface, and a second mode in which the system will use a capacitance measurement to sense contact with the conductive surface.
    Type: Application
    Filed: May 12, 2014
    Publication date: September 4, 2014
    Applicant: Apple Inc.
    Inventors: Aleksandar Pance, Omar S. Leung, David T. Amm
  • Patent number: 8796885
    Abstract: Various embodiments of a wirelessly powered local computing environment are described. A system and method for utilizing wireless near field magnetic resonance (NFMR) power transmission in a computing environment. A small form factor wireless power unit can be used to replace conventional batteries.
    Type: Grant
    Filed: April 20, 2012
    Date of Patent: August 5, 2014
    Assignee: Apple Inc.
    Inventors: Li-Quan Tan, David T. Amm
  • Patent number: 8799803
    Abstract: There are provided methods and systems related to having an input device configured according to a position of a user's hand relative to the input device. In particular, in some embodiments, a method of operating a computing system is provided that includes determining an operational context of the computing system utilizing a processor of the system and configuring an input device for the system based on the operational context. The input device includes a plurality of discrete input members. The method also includes displaying a virtual image representative of the input device on a display of the system. A position of a user's digits relative to the input device is sensed and the input device is reconfigured based on the sensed position of the user's digits. An image of the user's digits overlaying the virtual image representative of the input device is provided on a display of the computing system.
    Type: Grant
    Filed: March 3, 2011
    Date of Patent: August 5, 2014
    Assignee: Apple Inc.
    Inventor: David T. Amm
  • Patent number: 8786568
    Abstract: An input device receives an input that is a deflection based capacitive sensing input. Deflection of a metal frame of the input device causes a change in capacitance that is used to control a function of an electrical device. The input appears invisible because it is made of the same material as the housing it is contained in. Invisible backlit holes may make the input selectively visible or invisible to the user.
    Type: Grant
    Filed: May 7, 2013
    Date of Patent: July 22, 2014
    Assignee: Apple Inc.
    Inventors: Omar S. Leung, David T. Amm
  • Publication number: 20140164562
    Abstract: Described herein are computer-implemented methods, computer-readable media, and computer systems for the establishment of data communications between devices based through the use of acoustic signals. A first device transmits an acoustic signal, which is received by one or more other devices. The first device and the receiving devices establish a new communications network (e.g., create a new Wi-Fi network and/or peer-to-peer wireless network), or form/establish a grouping within a pre-existing communications network to which the devices are all connected. The devices can then exchange data over the new communications network or within the grouping on the pre-existing network. Also described herein are techniques for a device to determine its distance and/or other positioning information relative to another device, using acoustic and/or RF signaling.
    Type: Application
    Filed: November 12, 2013
    Publication date: June 12, 2014
    Inventors: Brian M. King, David T. Amm, Michael A. Cretella, Omar S. Leung
  • Patent number: 8614693
    Abstract: Compensation for signal drift in a touch and hover sensing device is disclosed. A touch and hover sensing device can include a sensing panel to sense an object touching or hovering over the panel, a grounding device to periodically interact with the panel, and a control system to measure capacitance of the panel when the grounding device interacts with the panel, where the measurement captures any signal drift in the panel, and to set the measurement as a new baseline capacitance of the panel. Alternatively, the touch and hover sensing device can forgo the grounding device and configure the control system to measure capacitance of the panel either when there has been no touching or hovering object or when there is a substantially stationary touching or hovering object at the panel for a determinative time period, where the measurement captures any signal drift in the panel, and to set the measurement from this time period as the new baseline capacitance.
    Type: Grant
    Filed: September 30, 2010
    Date of Patent: December 24, 2013
    Assignee: Apple Inc.
    Inventors: Brian Michael King, Omar Leung, Paul G. Puskarich, Jeffrey Traer Bernstein, Andrea Mucignat, Avi E. Cieplinski, Muhammad U. Choudry, Praveen R. Subramani, Marc J. Piche, David T. Amm, Duncan Robert Kerr
  • Publication number: 20130249799
    Abstract: The disclosure addresses a force sensor that is scalable in size and adaptable to a variety of form factors, including those suitable for use in an input device for a computer or other processing system, and in some cases including those of the configuration normally referred to as a computer mouse. The force sensor will include at least two structural members that are cooperatively attached one another as to be displaced from one another in response to a force acting upon one of the structural members. In some examples, the engagement between the two structural members will be specifically configured to allow such displacement in response to forces acting laterally on the force sensor. The force sensor will also include one or more sensing mechanisms to provide a measurement of the sensed deflection.
    Type: Application
    Filed: May 20, 2013
    Publication date: September 26, 2013
    Applicant: Apple Inc.
    Inventors: Lawrence J. Baskett, David T. Amm
  • Publication number: 20130241780
    Abstract: An electronic device may have a housing in which an antenna is mounted. An antenna window may be mounted in the housing to allow radio-frequency signals to be transmitted from the antenna and to allow the antenna to receive radio-frequency signals. Near-field radiation limits may be satisfied by reducing transmit power when an external object is detected in the vicinity of the dielectric antenna window and the antenna. A capacitive proximity sensor may be used in detecting external objects in the vicinity of the antenna. The proximity sensor may have conductive layers separated by a dielectric. A capacitance-to-digital converter may be coupled to the proximity sensor by inductors. The capacitive proximity sensor may be interposed between an antenna resonating element and the antenna window. The capacitive proximity sensor may serve as a parasitic antenna resonating element and may be coupled to the housing by a capacitor.
    Type: Application
    Filed: April 26, 2013
    Publication date: September 19, 2013
    Inventors: David T. Amm, Robert W. Schlub, Omar S. Leung, Brian M. King, Qingxiang Li, Enrique Ayala Vazquez, Rodney A. Gomez Angulo, Yi Jiang, Ruben Caballero
  • Publication number: 20130241877
    Abstract: An input device is disclosed. The input is a deflection based capacitive sensing input. Deflection of a metal frame of the input device causes a change in capacitance that is used to control a function of an electrical device. The input appears invisible because it is made of the same material as the housing it is contained in. Invisible backlit holes may make the input selectively visible or invisible to the user.
    Type: Application
    Filed: May 7, 2013
    Publication date: September 19, 2013
    Applicant: Apple Inc.
    Inventors: Omar S. Leung, David T. Amm