Patents by Inventor Dayn Wilberding
Dayn Wilberding 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).
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Publication number: 20220159377Abstract: Generative media content (e.g., generative audio) can be played back across multiple playback devices concurrently. A generative content group coordinator device can receive input parameters, which can include sensor data, media content, or other such input. The coordinator device can generate first and second generative media content streams, each of which can be transmitted to first and second playback devices, respectively. The first and second playback devices can play back the first and second streams of generative media content concurrently.Type: ApplicationFiled: May 10, 2021Publication date: May 19, 2022Inventors: Dayn Wilberding, Gregory McAllister, Daniel Jones
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Publication number: 20220141606Abstract: Example techniques involve a calibration state variable. An example implementation receives, via a network interface, an indication that the first playback device is calibrated. Based on receiving the indication that the first playback device is calibrated, the example implementation updates a calibration state variable to indicate that the first playback device is calibrated, wherein the calibration state variable is stored in the data storage. The example implementation sends, via the network interface, an indication of the updated calibration state variable to a second device.Type: ApplicationFiled: July 12, 2021Publication date: May 5, 2022Inventors: Dayn Wilberding, Neil Griffiths
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Publication number: 20220132246Abstract: Systems and methods for authenticating a passive speaker include (i) activating, by a playback device configured to drive the passive speaker, a passive speaker identification circuit of the passive speaker by providing an identification signal to an input terminal of the passive speaker, wherein the passive speaker is a particular type of passive speaker having particular acoustic characteristics; (ii) while the passive speaker identification circuit is active, measuring, by the playback device, an electrical current of the identification signal; (iii) determining, based on the measured electrical current of the identification signal, an impedance modulation of the passive speaker; (iv) determining, by the playback device, the particular type of the passive speaker based on the impedance modulation of the passive speaker; and (v) applying, by the playback device, a calibration to the playback device based on the determined particular type of the passive speaker.Type: ApplicationFiled: August 28, 2019Publication date: April 28, 2022Inventors: Nick D'Amato, IV, Benjamin Rappoport, Dayn Wilberding, Timothy Sheen, Andrea Testa, Nash Reilly, Hilmar Lehnert
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Patent number: 11288039Abstract: Example techniques involve invoking voice assistance for a media playback system. In some embodiments, a NMD stores in memory a set of command information comprising a listing of playback commands and associated command criteria. The NMD captures a voice input and detects inclusion, within the voice input, of one or more particular playback commands from among the playback commands in the listing. In response, the NMD selects a local voice assistant that supports (a) one or more additional playback commands relative to a cloud-based VAS and (b) fewer non-playback commands relative to the cloud-based VAS, determines, via the local voice assistant, an intent in the captured voice input, and performs a response to the determined intent. The NMD foregoes selection of the cloud-based VAS when the local voice assistant is selected.Type: GrantFiled: March 30, 2020Date of Patent: March 29, 2022Assignee: Sonos, Inc.Inventors: Dayn Wilberding, John Tolomei
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Publication number: 20220046373Abstract: An example playback device is configured to (i) receive, via a network interface, data representing a command to play back audio content, where the audio content is a first type of audio content, (ii) during playback of the first type of audio content via an audio amplifier configured to drive a speaker, apply a first calibration and a second calibration to playback by the playback device, where the first calibration at least partially offsets one or more acoustic characteristics of an environment surrounding the playback device when applied to playback by the playback device, and where the second calibration corresponds to the first type of audio content, and (iii) during playback of a second type of audio content via the audio amplifier configured to drive the speaker, apply a third calibration to playback by the playback device, where the third calibration corresponds to the second type of audio content.Type: ApplicationFiled: May 10, 2021Publication date: February 10, 2022Inventors: Klaus Hartung, Dayn Wilberding
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Patent number: 11237792Abstract: Example techniques relate to calibration interfaces that facilitate calibration of a playback device. An example implementation may involve outputting a sequence of prompts to guide calibration of a playback device during a calibration sequence comprising (i) a spatial calibration component and (ii) a spectral calibration component. Outputting the sequence of prompts includes outputting one or more first audio prompts representing a guide to perform the spatial calibration component of the calibration sequence. The spatial calibration component involves calibration of the playback device for a particular location within an environment. Outputting the sequence of prompts also includes outputting one or more first second prompts representing a guide to perform the spectral calibration component of the calibration sequence. The spectral calibration component involves calibration of the playback device for the environment.Type: GrantFiled: November 24, 2020Date of Patent: February 1, 2022Assignee: Sonos, Inc.Inventors: Dayn Wilberding, Sein Woo
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Patent number: 11206484Abstract: Systems and methods for authenticating a passive speaker include (i) activating, by a playback device configured to drive the passive speaker, a passive speaker identification circuit of the passive speaker by providing an identification signal to an input terminal of the passive speaker, wherein the passive speaker is a particular type of passive speaker having particular characteristics; (ii) while the passive speaker identification circuit is active, measuring, by the playback device, an electrical current of the identification signal; (iii) determining, based on the measured electrical current of the identification signal, an impedance modulation of the passive speaker; (iv) determining, by the playback device, the particular type of the passive speaker based on the impedance modulation of the passive speaker; and (v) applying, by the playback device, a calibration to the playback device based on the determined particular type of the passive speaker.Type: GrantFiled: August 28, 2018Date of Patent: December 21, 2021Assignee: Sonos, Inc.Inventors: Nick D'Amato, Benjamin Rappoport, Dayn Wilberding, Timothy Sheen, Andrea Testa, Nash Reilly, Hilmar Lehnert
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Patent number: 11188294Abstract: Examples described herein relate to transitioning a playback session between portable playback devices such as “smart” headphones, earbuds, and handheld speakers with playback devices of a zone-based media playback system. Exemplary techniques facilitate continuity of playback when transitioning between locations (e.g., from at home to on-the-go or vice versa) or between listening paradigms (e.g., personal or out-loud playback of audio content). An example implementation includes detecting a swap trigger, determining the source playback device(s) and target playback device(s), and performing a playback session swap between the source playback device(s) and target playback device(s).Type: GrantFiled: August 31, 2020Date of Patent: November 30, 2021Assignee: Sonos, Inc.Inventors: Dayn Wilberding, Youjin Nam, Tadeo T. Toulis, Jonathan Cole Harris, Patrick Devine, Nicholas A. J. Millington, Jodi Vautrin, Maria-Jose Ramos, Richard Bannon, Michael Sheldon, Ted Lin, Ron Kuper, Kirsten Lewis, Jake Harwood, Jonathan Herbst, Daniel Jones, Henry Sia
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Patent number: 11184726Abstract: Example techniques may involve multiple calibrations for a playback device. In an example implementation, a playback device plays back audio content according to a first calibration via the one or more audio amplifiers. The playback device detects that an arrangement of one or more listeners relative to the first playback device has changed from a first arrangement to a second arrangement. Based on detection that the arrangement of one or more listeners relative to the first playback device has changed from the first arrangement to the second arrangement, the playback device applies a second calibration to playback by the first playback device.Type: GrantFiled: July 31, 2020Date of Patent: November 23, 2021Assignee: Sonos, Inc.Inventors: Klaus Hartung, Dayn Wilberding
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Patent number: 11175888Abstract: Example techniques involve invoking voice assistance for a media playback system. In some embodiments, a NMD stores in memory a set of command information comprising a listing of playback commands and associated command criteria. The NMD captures a voice input and detects inclusion, within the voice input, of one or more particular playback commands from among the playback commands in the listing. In response, the NMD selects a local voice assistant that supports (a) one or more additional playback commands relative to a cloud-based VAS and (b) fewer non-playback commands relative to the cloud-based VAS, determines, via the local voice assistant, an intent in the captured voice input, and performs a response to the determined intent. The NMD foregoes selection of the cloud-based VAS when the local voice assistant is selected.Type: GrantFiled: January 25, 2021Date of Patent: November 16, 2021Assignee: Sonos, Inc.Inventors: Dayn Wilberding, John Tolomei
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Patent number: 11175886Abstract: Example techniques may involve tuning a music discovery dial. An implementation may include displaying, on the touch-sensitive circular graphical display, a circular graphical user interface including multiple wedge-shaped selectable regions arranged around the circumference of the circular graphical user interface, each wedge-shaped selectable region corresponding to a respective streaming audio channel. The implementation may include detecting a touch input in a circular motion to the touch-sensitive circular graphical display and causing a paired playback device to play back an audio content snippet corresponding to each selectable regions that the touch input enters. The implementation may further include switching the playback device from playing back a given pre-cached audio content snippet to playing back the full audio track from one or more servers of a streaming audio service.Type: GrantFiled: December 28, 2020Date of Patent: November 16, 2021Assignee: Sonos, Inc.Inventors: Christopher Alexis Kotelly, Dayn Wilberding, Ron Kuper
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Publication number: 20210289607Abstract: Disclosed herein are example techniques to support multiple voice assistant services. An example implementation may involve a playback device capturing audio from the one or more microphones into one or more buffers as a sound data stream monitoring the sound data stream for a wake word associated with a specific voice assistant service and monitoring the sound data stream for a wake word associated with the media playback system. The playback device generates a second wake-word event corresponding to a voice input when sound data matching the wake word associated with the media playback system in a portion of the sound data stream is detected. The playback device determines that the voice input includes sound data matching one or more playback commands and sends sound data representing the voice input to a voice assistant associated with the media playback system for processing of the second voice input.Type: ApplicationFiled: November 23, 2020Publication date: September 16, 2021Inventor: Dayn Wilberding
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Publication number: 20210279027Abstract: Example techniques relate to calibration interfaces that facilitate calibration of a playback device. An example implementation may involve outputting a sequence of prompts to guide calibration of a playback device during a calibration sequence comprising (i) a spatial calibration component and (ii) a spectral calibration component. Outputting the sequence of prompts includes outputting one or more first audio prompts representing a guide to perform the spatial calibration component of the calibration sequence. The spatial calibration component involves calibration of the playback device for a particular location within an environment. Outputting the sequence of prompts also includes outputting one or more first second prompts representing a guide to perform the spectral calibration component of the calibration sequence. The spectral calibration component involves calibration of the playback device for the environment.Type: ApplicationFiled: November 24, 2020Publication date: September 9, 2021Inventors: Dayn Wilberding, Sein Woo
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Publication number: 20210263701Abstract: Example techniques may involve tuning a music discovery dial. An implementation may include displaying, on the touch-sensitive circular graphical display, a circular graphical user interface including multiple wedge-shaped selectable regions arranged around the circumference of the circular graphical user interface, each wedge-shaped selectable region corresponding to a respective streaming audio channel. The implementation may include detecting a touch input in a circular motion to the touch-sensitive circular graphical display and causing a paired playback device to play back an audio content snippet corresponding to each selectable regions that the touch input enters. The implementation may further include switching the playback device from playing back a given pre-cached audio content snippet to playing back the full audio track from one or more servers of a streaming audio service.Type: ApplicationFiled: December 28, 2020Publication date: August 26, 2021Inventors: Christopher Alexis Kotelly, Dayn Wilberding, Ron Kuper
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Patent number: 11064306Abstract: Example techniques involve a calibration state variable. An example implementation receives, via a network interface, an indication that the first playback device is calibrated. Based on receiving the indication that the first playback device is calibrated, the example implementation updates a calibration state variable to indicate that the first playback device is calibrated, wherein the calibration state variable is stored in the data storage. The example implementation sends, via the network interface, an indication of the updated calibration state variable to a second device.Type: GrantFiled: May 3, 2019Date of Patent: July 13, 2021Assignee: Sonos, Inc.Inventors: Dayn Wilberding, Neil Griffiths
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Publication number: 20210208841Abstract: An example playback device is a first playback device in a media system. The first playback device is configured to resolve audio conflicts with one or more other playback devices in the media system by: (i) capturing, via a microphone of the first playback device, audio content played back by a second playback device, (ii) identifying the second playback device as a source of the captured audio content; and (iii) responsive to identifying the second playback device as the source of the captured audio content, altering a playback characteristic of the second playback device or the first playback device to reduce an audio interference between the first and second playback devices.Type: ApplicationFiled: January 4, 2021Publication date: July 8, 2021Inventor: Dayn Wilberding
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Publication number: 20210141600Abstract: Example techniques involve invoking voice assistance for a media playback system. In some embodiments, a NMD stores in memory a set of command information comprising a listing of playback commands and associated command criteria. The NMD captures a voice input and detects inclusion, within the voice input, of one or more particular playback commands from among the playback commands in the listing. In response, the NMD selects a local voice assistant that supports (a) one or more additional playback commands relative to a cloud-based VAS and (b) fewer non-playback commands relative to the cloud-based VAS, determines, via the local voice assistant, an intent in the captured voice input, and performs a response to the determined intent. The NMD foregoes selection of the cloud-based VAS when the local voice assistant is selected.Type: ApplicationFiled: January 25, 2021Publication date: May 13, 2021Inventors: Dayn Wilberding, John Tolomei
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Patent number: 11006232Abstract: An example playback device is configured to (i) receive, via a network interface, data representing a command to play back audio content, where the audio content is a first type of audio content, (ii) during playback of the first type of audio content via an audio amplifier configured to drive a speaker, apply a first calibration and a second calibration to playback by the playback device, where the first calibration at least partially offsets one or more acoustic characteristics of an environment surrounding the playback device when applied to playback by the playback device, and where the second calibration corresponds to the first type of audio content, and (iii) during playback of a second type of audio content via the audio amplifier configured to drive the speaker, apply a third calibration to playback by the playback device, where the third calibration corresponds to the second type of audio content.Type: GrantFiled: December 21, 2020Date of Patent: May 11, 2021Assignee: Sonos, Inc.Inventors: Klaus Hartung, Dayn Wilberding
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Patent number: D920278Type: GrantFiled: March 13, 2017Date of Patent: May 25, 2021Assignee: Sonos, Inc.Inventors: Dayn Wilberding, Nikolai Kutateladze
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Patent number: D931253Type: GrantFiled: February 14, 2020Date of Patent: September 21, 2021Assignee: Sonos, Inc.Inventors: Dayn Wilberding, Nikolai Kutateladze, Stefan Reichert, Dana Krieger