IP Library Granted Patent US 11,980,439
Granted Patent B2
US 11,980,439 · App. 17/055,616 · Granted May 14, 2024

Optical sensor system of a wearable device, a method for controlling operation of an optical sensor system and corresponding computer program product

Inventors: Markku Koskela (Oulu, FI); Tero Vallius (Oulu, FI)
Assignee: Oura Health Oy
A61B5/0059A61B5/6801A61B2560/0209A61B2560/0214
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Quick Facts
Patent No.
US 11,980,439
App. No.
17/055,616
Granted
May 14, 2024
Kind
B2
Abstract

The invention relates to an optical sensor system of a wearable device. The system comprises: at least two photo transmitters, a photoreceiver, receiving electronics, and a microcontroller. The microcontroller is configured to: set measurement conditions of the system; control taking at least one main sample from the received signal at one receiver channel; analyze the at least one main sample; control taking at least one test sample with at least one changed measurement condition at the same receiver channel; analyze the at least one test sample separately; compare at least one characteristic of the at least one test sample signal to the corresponding at least one characteristic of the at least one main sample signal; and change the measurement conditions to correspond to the measurement conditions used for the at least one test sample, if at least one characteristic of at least one test sample signal is better than corresponding at least one characteristic of the at least one main sample signal. The invention relates also to a method for controlling operation of an optical sensor system and a corresponding computer program product.

Claims (47)

1. An optical sensor system of a wearable device, comprising:

a photo transmitter configured to transmit an optical signal;

a photoreceiver configured to receive the optical signal reflected from an object;

receiving electronics coupled with the photoreceiver and configured to process the optical signal received by the photoreceiver; and

a microcontroller configured to control operation of the optical sensor system, wherein the microcontroller is configured to:

set measurement conditions of the optical sensor system;

control taking a main sample from the optical signal, received by the photoreceiver;

analyze the main sample for defining at least one characteristic of a main sample signal;

change at least one measurement condition of the optical sensor system;

control taking a test sample, from the optical signal received by the photoreceiver, with the at least one changed measurement condition of the optical sensor system;

analyze the test sample separately for defining at least one characteristic of a test sample signal; and

change the measurement conditions of the optical sensor system to correspond to the measurement conditions used for the test based on detecting that the main sample signal is out of a measurable voltage range of the receiving electronics or is going to be out of the measurable voltage range.

2. The optical sensor system of claim 1 , wherein the microcontroller is configured to:

define measurement conditions for the optical sensor system based on the analyzed test sample and based on a comparison between the test sample and the main sample; and

change the measurement conditions of the optical sensor system to correspond to the defined measurement conditions.

3. The optical sensor system of claim 1 , wherein the test sample is taken at a time that a second main sample is scheduled to be taken, and wherein the microcontroller is further configured to:

use, as the second main sample, a replacement sample that is based on one or more samples taken with the unchanged measurement conditions, wherein the replacement sample is used as the second main sample based on the test sample being taken at the time that the second main sample is scheduled to be taken.

4. The optical sensor system of claim 1 , wherein the microcontroller is configured to:

analyze the optical signal for detecting a minimum amplitude and a maximum amplitude of the optical signal in a selected time window.

5. The optical sensor system of claim 4 , wherein the microcontroller is further configured to:

take the test sample one to five samples after detecting the minimum amplitude, or maximum amplitude of the optical signal.

6. The optical sensor system of claim 4 , wherein the microcontroller is further configured to:

control taking two test samples with the same at least one changed measurement condition of the optical sensor system, wherein one of the two test samples is taken within a first threshold amount of time after detecting the maximum amplitude of the optical signal and the other one of the two test samples is taken within a second threshold amount of time after detecting the minimum amplitude of the optical signal;

define a heart pulse signal amplitude based on the two test sample signals;

compare the defined heart pulse signal amplitude to a heart pulse signal amplitude defined from the main sample signal; and

change the measurement conditions of the optical sensor system to correspond to the measurement conditions used for the two test samples based on a comparison between the heart pulse signal amplitude defined based on the two test sample signals and the corresponding heart pulse signal amplitude defined from the main sample signals.

7. The optical sensor system of claim 1 , wherein the measurement condition of the optical sensor system is at least one of: a gain of the receiving electronics, a gain of the photoreceiver, an offset of the receiving electronics, a light source.

8. The optical sensor system of claim 1 , wherein the at least one characteristic of the main sample signal is at least one of: an amplitude, an offset, a heart pulse, a heart rate.

9. The optical sensor system of claim 1 , wherein the receiving electronics comprises an amplifier, an analog-to-digital converter, and a digital-to-analog converter.

10. The optical sensor system of claim 1 , wherein the receiving electronics comprises an amplifier, an analog-to-digital converter, and a digital-to-analog converter.

11. The optical sensor system of claim 1 , wherein the wearable device comprises a wearable ring device.

12. A method for controlling operation of an optical sensor system of a wearable device, the method comprising:

setting measurement conditions of the optical sensor system;

taking a main sample from an optical signal received by a photoreceiver of the optical sensor system;

analyzing the main sample for defining at least one characteristic of a main sample signal;

changing at least one measurement condition of the optical sensor system;

taking a test sample, from the optical signal received by the photoreceiver, with the at least one changed measurement condition of the optical sensor system;

analyzing the test sample separately for defining at least one characteristic of a test sample signal; and

changing the measurement conditions of the optical sensor system to correspond to the measurement conditions used for the test sample based on detecting that the main sample signal is out of a measurable voltage range, or is going to be out of the measurable voltage range, of receiving electronics coupled with the photoreceiver.

13. A non-transitory computer-readable storage medium storing program code for controlling operation of an optical sensor system of a wearable device, the program code executable by a microcontroller to cause the wearable device to:

set measurement conditions of the optical sensor system;

take a main sample from an optical signal received by a photoreceiver of the optical sensor system;

analyze the main sample for defining at least one characteristic of a main sample signal;

change at least one measurement condition of the optical sensor system;

take a test sample, from the optical signal received by the photoreceiver, with the at least one changed measurement condition of the optical sensor system;

analyze the test sample separately for defining at least one characteristic of a test sample signal; and

change the measurement conditions of the optical sensor system to correspond to the measurement conditions used for the test sample based on detecting that the main sample signal is out of a measurable voltage range, or is going to be out of the measurable voltage range, of receiving electronics coupled with the photoreceiver.

Assignments (4)
SECURITY INTEREST Recorded May 16, 2025
From: OURA HEALTH OY; OURARING INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 071302/0800 →
RELEASE OF SECURITY INTERESTS IN PATENTS AND TRADEMARKS AT REEL/FRAME NO. 58965/0978 Recorded May 15, 2025
From: CRG SERVICING LLC, AS ADMINISTRATIVE AGENT
To: OURA HEALTH OY
Reel/Frame 071338/0617 →
SECURITY INTEREST Recorded Feb 8, 2022
From: OURA HEALTH OY
To: CRG SERVICING LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 058965/0978 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2020
From: KOSKELA, MARKKU; VALLIUS, TERO
To: OURA HEALTH OY
Reel/Frame 054397/0089 →
Priority Claims (1)
FI 20185483 · May 28, 2018 · national
Continuity (1)
Related Publication 20210204815A1 · Jul 8, 2021
Cited By (2)
US 12,405,211 US 12,484,815