IP Library › Granted Patent US 12,453,515
Granted Patent B2
US 12,453,515 · App. 17/688,519 · Granted Oct 28, 2025

Hearing devices and methods for initiating operation of a physiological sensor

Inventor: Mehrdad Ahmadi (Dietikon, CH)
Assignee: Sonova AG
A61B5/6817G01K13/00G01P15/02A61B5/1126H04R25/604H04R25/609
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Quick Facts
Patent No.
US 12,453,515
App. No.
17/688,519
Granted
Oct 28, 2025
Kind
B2
Abstract

An illustrative hearing device may be configured to determine that first sensor data output by a first sensor included in the hearing device satisfies a first predetermined condition and query, based on the first sensor data satisfying the first predetermined condition, a second sensor included in the hearing device for second sensor data. The hearing device may further be configured to determine that second sensor data output from the second sensor satisfies a second predetermined condition and initiate, based on at least the first sensor data satisfying the first predetermined condition and the second sensor data satisfying the second predetermined condition, operation of a physiological sensor included in the hearing device and configured to measure a physiological property of the user.

Claims (61)

1. A hearing device configured to be worn by a user, the hearing device comprising:

a memory storing instructions; and

a processor communicatively coupled to the memory and configured to execute the instructions to:

determine whether first sensor data output by a first sensor included in the hearing device satisfies a first predetermined condition;

query, based on the first sensor data satisfying the first predetermined condition, a second sensor included in the hearing device for second sensor data;

determine whether the second sensor data output from the second sensor satisfies a second predetermined condition;

initiate, based on at least the first sensor data satisfying the first predetermined condition and the second sensor data satisfying the second predetermined condition, operation of a physiological sensor included in the hearing device, wherein the initiating the operation of the physiological sensor includes enabling the physiological sensor to generate physiological data representative of a physiological property of the user;

determine whether the physiological data generated by the physiological sensor satisfies a third predetermined condition, wherein the third predetermined condition includes that the physiological data is less than a maximum physiological data value and greater than a minimum physiological data value; and

determine, based on physiological data satisfying the third predetermined condition, a measurement of the physiological property of the user.

2. The hearing device of claim 1 , wherein:

the determining whether the first sensor data satisfies the first predetermined condition includes determining whether the first sensor data is above a first predetermined threshold for a first predetermined amount of time; and

the determining whether the second sensor data satisfies the second predetermined condition includes determining whether the second sensor data is above a second predetermined threshold for a second predetermined amount of time.

3. The hearing device of claim 1 , wherein the processor is further configured to execute the instructions to:

query, based on the second sensor data satisfying the second predetermined condition, a third sensor included in the hearing device for third sensor data; and

determine whether the third sensor data output from the third sensor satisfies a fourth predetermined condition;

wherein the initiating the operation of the physiological sensor is further based on the third sensor data satisfying the fourth predetermined condition.

4. The hearing device of claim 1 , wherein the processor is further configured to execute the instructions to:

query, based on the first sensor data satisfying the first predetermined condition, a third sensor included in the hearing device for third sensor data; and

determine whether the third sensor data output from the third sensor satisfies a fourth predetermined condition;

wherein the initiating the operation of the physiological sensor is further based on the third sensor data satisfying the fourth predetermined condition.

5. The hearing device of claim 1 , wherein the first sensor includes a first type of condition detection sensor and wherein the second sensor includes a second type of condition detection sensor that is different than the first type of condition detection sensor of the first sensor.

6. The hearing device of claim 5 , wherein a select one or both of the first type of condition detection sensor or the second type of condition detection sensor includes: a motion sensor configured to output motion data representative of motion of the hearing device, a temperature sensor configured to output temperature data representative of a select one or more of a temperature or a change in temperature of the hearing device, an acoustic sensor configured to output acoustic data representative of acoustic feedback of the hearing device, or a touch sensor configured to output touch data representative of contact of the user with the hearing device.

7. The hearing device of claim 1 , wherein:

the first sensor includes a motion sensor;

the first sensor data includes motion data representative of motion of the hearing device;

the determining whether the first sensor data satisfies the first predetermined condition includes determining whether the motion data has a frequency above a resting threshold;

the second sensor includes a temperature sensor;

the second sensor data includes temperature data representative of a select one or more of a temperature or a change in temperature of the hearing device; and

the determining whether the second sensor satisfies the second predetermined condition includes determining whether the temperature data is above a select one or more of a body temperature threshold or a change in body temperature threshold.

8. The hearing device of claim 1 , wherein the determining that the physiological data is less than the maximum physiological data value and greater than the minimum physiological data value further includes determining that the physiological data is less than the maximum physiological data value and greater than the minimum physiological data value for a predetermined amount of time.

9. The hearing device of claim 1 , wherein the processor is further configured to execute the instructions to disable, when the physiological data does not satisfy the third predetermined condition, the physiological sensor.

10. The hearing device of claim 1 , wherein the processor is further configured to execute the instructions to disable, after the initiating the operation of the physiological sensor and when a select one or both of the first sensor fails to satisfy the first condition or the second sensor fails to satisfy the second condition, the physiological sensor.

11. The hearing device of claim 1 , wherein the first predetermined condition, the second predetermined condition, and the third predetermined condition are each indicative of the hearing device being worn by the user.

12. The hearing device of claim 1 , wherein the querying the second sensor includes enabling the second sensor to generate the second sensor data.

13. The hearing device of claim 1 , wherein one of the first sensor or the second sensor includes an acoustic sensor configured to output acoustic data representative of acoustic feedback of the hearing device, and wherein the determining whether the first sensor data satisfies the first predetermined condition or the second sensor data satisfies the second predetermined condition includes determining that the acoustic data is above an acoustic threshold indicative of the hearing device being worn by the user.

14. The hearing device of claim 13 , wherein the hearing device further includes a voice activity detector configured to detect a voice of the user in the acoustic data, and wherein the determining whether the first sensor data satisfies the first predetermined condition or the second sensor data satisfies the second predetermined condition includes identifying the voice of the user in the acoustic data.

15. The hearing device of claim 14 , wherein the determining whether the first sensor data satisfies the first predetermined condition or the second sensor data satisfies the second predetermined condition includes detecting a voice input from the user in the acoustic data, the voice input indicative of a status of the user wearing the hearing device.

16. The hearing device of claim 1 , wherein one of the first sensor or the second sensor includes an acoustic sensor configured to detect an audio signal output by an output transducer included in the hearing device, and wherein the determining whether the first sensor data satisfies the first predetermined condition or the second sensor data satisfies the second predetermined condition includes determining that the acoustic signal detected by the acoustic sensor has been attenuated.

17. A hearing device configured to be worn by a user, the hearing device comprising:

a motion sensor configured to output motion data representative of motion of the hearing device;

a temperature sensor configured to output temperature data representative of a select one or more of a temperature or a change in temperature of the hearing device;

a physiological sensor configured to measure a physiological property of the user; and

a processor communicatively coupled to the motion sensor, the temperature sensor, and the physiological sensor, the processor configured to:

determine whether the motion data output by the motion sensor is above a first predetermined threshold;

query, based on the motion data being above the first predetermined threshold, the temperature sensor for temperature data;

determine whether the temperature data output from the temperature sensor is above a second predetermined threshold;

initiate, based on at least the motion data being above the first predetermined threshold and the temperature data being above the second predetermined threshold, the physiological sensor to generate physiological data representative of the physiological property of the user;

determine whether the physiological data generated by the physiological sensor is less than a maximum physiological data value and greater than a minimum physiological data value; and

determine, based on physiological data being less than the maximum physiological data value and greater than the minimum physiological data value, a measurement of the physiological property of the user.

18. The hearing device of claim 17 , wherein the processor is further configured to determine that the physiological data output from the physiological sensor is less than the maximum physiological data value and greater than the minimum physiological data value for a predetermined amount of time prior to determining the measurement of the physiological property.

19. A method comprising:

determining, by a processor, whether first sensor data output by a first sensor included in a hearing device configured to be worn by a user satisfies a first predetermined condition;

querying, by the processor and based on the first sensor data satisfying the first predetermined condition, a second sensor included in the hearing device for second sensor data;

determining, by the processor, whether second sensor data output from the second sensor satisfies a second predetermined condition;

initiating, by the processor and based on at least the first sensor data satisfying the first predetermined condition and the second sensor data satisfying the second predetermined condition, operation of a physiological sensor included in the hearing device wherein the initiating the operation of the physiological sensor includes enabling the physiological sensor to generate physiological data representative of a physiological property of the user;

determining, by the processor, whether the physiological data generated by the physiological sensor satisfies a third predetermined condition, wherein the third predetermined condition includes that the physiological data is less than a maximum physiological data value and greater than a minimum physiological data value; and

determining, by the processor and based on physiological data satisfying the third predetermined condition, a measurement of the physiological property of the user.

20. The method of claim 19 , wherein:

the determining whether the first sensor data satisfies the first predetermined condition includes determining whether the first sensor data is above a first predetermined threshold for a first predetermined amount of time;

the determining whether the second sensor data satisfies the second predetermined condition includes determining whether the second sensor data is above a second predetermined threshold for a second predetermined amount of time; and

the determining whether the physiological data output from the physiological sensor satisfies the third predetermined condition includes determining that the physiological data is less than the maximum physiological data value and greater than the minimum physiological data value for a predetermined amount of time prior to determining the measurement of the physiological property of the user.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2022
From: AHMADI, MEHRDAD
To: SONOVA AG
Reel/Frame 059188/0257 →
Continuity (1)
Related Publication 20230277134A1 · Sep 7, 2023
References Cited (15)
US 8655004B2 · Prest · 2014 [cited by examiner]
US 10638210B1 · El Guindi · 2020 [cited by examiner]
US 20150250426A1 · Muehlsteff · 2015 [cited by examiner]
US 20170010858A1 · Prest · 2017 [cited by examiner]
US 20170095215A1 · Watson et al. · 2017 [cited by applicant]
US 20170209055A1 · Pantelopoulos et al. · 2017 [cited by applicant]
US 20190236253A1 · Wang et al. · 2019 [cited by applicant]
US 20190373377A1 · Larsen · 2019 [cited by examiner]
US 20200138299A1 · Goldman · 2020 [cited by examiner]
US 20200314525A1 · Thielen · 2020 [cited by examiner]
US 20210030290A1 · Lee et al. · 2021 [cited by applicant]
US 20210392446A1 · Lunner · 2021 [cited by examiner]
CN 111148009B · 2021 [cited by applicant]
EP 3799439A1 · 2021 [cited by applicant]
A. Masè et al. “Hearables: New Perspectives and Pitfalls of In-Ear Devices for Physiological Monitoring. A Scoping Review”. Front Physiol. Oct. 16, 2020; 11:568886 (Year: 2020). [cited by examiner]