IP Library Granted Patent US 12,482,447
Granted Patent B2
US 12,482,447 · App. 18/590,513 · Granted Nov 25, 2025

Ambient volume control in open audio device

Inventors: Mehul Trivedi (Oakland, CA); Vincent Lee (San Francisco, CA); Cory Roberts (Mendon, MA); James P. Mulvey (Reading, MA); Guy Anthony Torio (Holliston, MA)
Assignee: Bose Corporation
G10K11/17827G06F1/163H03G3/32H03G5/165G10K2210/1081
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Quick Facts
Patent No.
US 12,482,447
App. No.
18/590,513
Filed
Feb 28, 2024
Granted
Nov 25, 2025
Kind
B2
Art Unit
2857
USPC
702/138
Abstract

Methods and apparatus are provided for automatically adjusting, by an audio device, the SPL of its audio output. As described herein, the SPL is adjusted based on detected ambient noise. According to aspects, audio device iteratively adjusts the SPL based on the ambient noise. According to aspects, the SPL is adjusted to be greater than the ambient noise by a threshold SPL amount. According to aspects, the audio device outputs sound in substantially a first direction and the microphone detects sound substantially outside of the first direction. The adjusted sounds are output by the audio device.

Claims (25)

1 . A method for outputting an adjusted audio signal by a wearable audio device, the method comprising:

outputting an audio signal;

continuously detecting ambient noise in the vicinity of the audio device;

determining the absolute value of the difference between a sound pressure level (SPL) of the audio signal and the SPL of the ambient noise is greater than a first SPL threshold amount;

automatically adjusting the SPL of the audio signal by boosting SPLs for both lower frequencies and higher frequencies of the audio signal based on the detected ambient noise, wherein the SPL is boosted more for the lower frequencies of the audio signal as compared to the higher frequencies of the audio signal, the SPL boosts for both the lower frequencies and the higher frequencies of the audio signal are dependent upon the detected ambient noise, and wherein the dependency varies among the lower frequencies and the higher frequencies; and

outputting the adjusted audio signal.

2 . The method of claim 1 , wherein the automatically adjusting further comprises automatically adjusting the SPL of the audio signal until it exceeds the SPL of the detected ambient noise by a second SPL threshold amount.

3 . The method of claim 2 , wherein the first and second threshold amounts are different.

4 . The method of claim 1 , wherein the automatically adjusting comprises adjusting any combination of bass, mid-range, or treble frequency bands of the audio signal.

5 . The method of claim 2 , wherein a boost applied to bass band frequency bands of the audio signal is greater than the SPL boost applied to mid-range frequency bands of the audio signal, and the SPL boost applied to mid-range frequency bands of the audio signal is greater than a boost applied to treble frequency bands of the audio signal.

6 . The method of claim 1 , wherein the continuously detecting is performed by at least one microphone of the audio device positioned in an acoustic null of a speaker.

7 . The method of claim 6 , wherein outputting the audio signal comprises outputting audio signals in a substantially first direction and the microphone detects signals outside of the first direction.

8 . A wearable audio device comprising:

a speaker configured to output an audio signal;

a microphone configured to continuously detect ambient noise in the vicinity of the audio device; and

a processor configured to:

determine the absolute value of the difference between a sound pressure level (SPL) of the audio signal and the SPL of the ambient noise is greater than a first SPL threshold amount;

automatically adjust the SPL of the audio signal by boosting SPLs for both lower frequencies and higher frequencies of the audio signal based on the detected ambient noise, wherein the SPL is boosted more for the lower frequencies of the audio signal as compared to the higher frequencies of the audio signal, the SPL boosts for both the lower frequencies and the higher frequencies of the audio signal are dependent upon the detected ambient noise, and wherein the dependency varies among the lower frequencies and the higher frequencies,

wherein the speaker is further configured to output the adjusted audio signal.

9 . The wearable audio device of claim 8 , wherein the processor is configured to automatically adjust by automatically adjusting the SPL of the audio signal until it exceeds the SPL of the detected ambient noise by a second SPL threshold amount.

10 . The wearable audio device of claim 9 , wherein the first and second threshold amounts are different.

11 . The wearable audio device of claim 8 , wherein the processor is configured to automatically adjust by automatically adjusting any combination of bass, mid-range, or treble frequency bands of the audio signal.

12 . The wearable audio device of claim 9 , wherein the processor is configured to adjust by boosting and the boost applied to bass band frequency bands of the audio signal is greater than the SPL boost applied to mid-range frequency bands of the audio signal, and the SPL boost applied to mid-range frequency bands of the audio signal is greater than a boost applied to treble frequency bands of the audio signal.

13 . The wearable audio device of claim 8 , wherein the microphone is positioned in an acoustic null of a speaker.

14 . The wearable audio device of claim 13 , wherein the speaker configured to output the audio signals comprises outputting audio signals in a substantially first direction and the microphone detects signals outside of the first direction.

Assignments (2)
SECURITY INTEREST Recorded Feb 28, 2025
From: BOSE CORPORATION
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 070438/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 29, 2024
From: TRIVEDI, MEHUL; LEE, VINCENT; ROBERTS, CORY; MULVEY, JAMES P.; TORIO, GUY ANTHONY
To: BOSE CORPORATION
Reel/Frame 066597/0462 →