IP Library › Granted Patent US 12,147,610
Granted Patent B2
US 12,147,610 · App. 18/199,292 · Granted Nov 19, 2024

Voice-controlled electronic device

Inventors: Craig M. Stanley (Campbell, CA); Simon K. Porter (San Jose, CA); John H. Sheerin (Santa Clara, CA); Glenn K. Trainer (San Francisco, CA); Ethan L. Huwe (Davis, CA); Sean T. McIntosh (Cupertino, CA); Jason C. Della Rosa (Campbell, CA); Christopher J. Stringer (Woodside, CA); Molly J. Anderson (San Francisco, CA); Erik L. Wang (Redwood City, CA)
Assignee: APPLE INC.
G06F3/0202F21V3/00F21V5/007F21V23/0485F21V33/0056G06F3/01G06F3/016G06F3/03547G06F3/041G06F3/165H01H13/023H03K17/962H04R1/025H04R1/026H04R1/26H04R1/2811H04R1/2826H04R1/2888H04R1/30H04R1/403H04R3/00H04R3/12H04R5/02H04R7/12H04R7/127H04R7/18H04R9/022H04R9/025H04R9/06H04R31/006H05K1/0274G06F3/044H03K2217/960785H04R2201/028H04R2201/34H04R2201/401H04R2400/03H04R2400/13H04R2420/07H05K1/141H05K2201/09063H05K2201/10106H05K2201/10378
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Quick Facts
Patent No.
US 12,147,610
App. No.
18/199,292
Granted
Nov 19, 2024
Kind
B2
Abstract

A voice-controlled electronic device that includes a device housing having a longitudinal axis bisecting opposing top and bottom surfaces and a side surface extending between the top and bottom surfaces. The device can further include one or more microphones disposed within the device housing and distributed radially around the longitudinal axis; a processor configured to execute computer instructions stored in a computer-readable memory for interacting with a user and processing voice commands received by the one or more microphones and first transducer and second transducers configured to generate sound waves within different frequency ranges.

Claims (20)

1. A voice-controlled speaker comprising:

a device housing;

a plurality of microphones disposed within the device housing;

a computer-readable memory disposed within the device housing;

a processor disposed within the device housing and coupled to the computer-readable memory, the processor configured to execute computer instructions stored in the computer-readable memory for interacting with a user and processing voice commands received by the plurality of microphones after recognizing a command phrase indicating a user's intent to issue a voice command;

a circuit board disposed within the device housing and having the processor mounted thereon;

a first transducer and a second transducer disposed within the device housing and configured to generate sound waves within a first frequency range;

a third transducer disposed within the device housing and configured to generate sound waves within a second frequency range lower than the first frequency range, wherein the first transducer and the second transducer are arranged to direct sound away from the device housing at an angle with respect to the third transducer and wherein the third transducer includes a diaphragm aligned parallel with the circuit board and configured such that, during operation, as the third transducer generates sound air is moved across the circuit board thereby dissipating heat generated by the processor away from the processor;

an outer cover having a pattern formed thereon and forming at least a portion of an outer surface of the voice-controlled speaker concealing audio components positioned beneath the outer cover, wherein the outer cover allows audio waves generated by the first transducer and the second transducer to pass through the outer cover;

a touch-sensitive user interface disposed at an exterior surface of the device housing, the touch-sensitive user interface configured to enable a user to adjust a volume level of the voice-controlled speaker;

a power supply unit disposed within the device housing and configured to supply power to the voice-controlled speaker.

2. The voice-controlled speaker set forth in claim 1 further comprising circuitry configured to implement beamforming techniques to improve audio performance.

3. The voice-controlled speaker set forth in claim 2 wherein the beamforming techniques generate constructive interference.

4. The voice-controlled speaker set forth in claim 1 wherein the processor is configured to process commands to operate a smart device.

5. The voice-controlled speaker set forth in claim 1 wherein the processor is configured to interact with a user interface on a mobile device to adjust one or treble or bass output.

6. The voice-controlled speaker set forth in claim 1 further comprising a sensor disposed within the device housing and configured to detect a high heat loading condition.

7. The voice-controlled speaker set forth in claim 6 wherein the sensor is affixed to a surface of the circuit board.

8. The voice-controlled speaker set forth in claim 1 further comprising a plurality of vents positioned along the housing and wherein audio waves generated by the third transducer exit the voice-controlled speaker through the vents.

9. The voice-controlled speaker set forth in claim 8 further comprising one or more flow rate sensors positioned between the third transducer and the plurality of vents and configured to detect a vent blockage.

10. The voice-controlled speaker set forth in claim 1 wherein the third transducer is configured to operate at a sub-sonic frequency designed to maximize an amount of air moved across the circuit board.

Continuity (11)
Continuation 17649586 · Feb 1, 2022
Continuation 16803858 · Feb 27, 2020
Continuation 16375735 · Apr 4, 2019
Continuation 15613054 · Jun 2, 2017
Provisional Application 62507007 · May 16, 2017
Provisional Application 62399229 · Sep 23, 2016
Provisional Application 62399165 · Sep 23, 2016
Provisional Application 62399293 · Sep 23, 2016
Provisional Application 62399288 · Sep 23, 2016
Provisional Application 62399262 · Sep 23, 2016
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