IP Library Granted Patent US 10,956,538
Granted Patent B2
US 10,956,538 · App. 15/809,225 · Granted Mar 23, 2021

Low-power systems and methods for determining measurement times of values obtained by a measuring device

Inventor: Russell Mirov (Los Altos, CA)
Assignee: Verily Life Sciences LLC
G06F19/3468A61B5/0002A61B5/0015A61B5/0031A61B5/1459A61B5/1473A61B5/1477A61B5/4839A61B5/6849A61M5/31511G16H40/63A61B5/14532A61B2560/0209A61B2560/0214A61B2560/0252A61B2562/028A61M5/31568A61M2205/3306A61M2205/3317A61M2205/3368A61M2205/3592A61M2205/8212
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Quick Facts
Patent No.
US 10,956,538
App. No.
15/809,225
Granted
Mar 23, 2021
Kind
B2
Abstract

The present disclosure relates to a low-power measuring device. In one implementation, the low-power measuring device includes a first sensor for measuring a first value, the first value being a measurement of a variable, and a counter unit for generating a first counter value indicative of a first elapsed time since the first value is measured by the first sensor. The low-power measuring device further includes at least one processor configured to send the first value to a remote apparatus, send the first counter value to the remote apparatus, cause the remote apparatus to determine the first elapsed time based on the first value and the first counter value, and cause the remote apparatus to determine a first obtained time at which the first value is measured by the first sensor based on the determined first elapsed time and a reference time of the remote apparatus.

Claims (45)

1. A low-power measuring device comprising:

a first sensor configured to measure a first value, the first value being a measurement of a variable, wherein the variable comprises a voltage applied to an oscillator and the first sensor comprises a voltage sensor coupled to measure the voltage applied to the oscillator;

a counter unit including the oscillator, the counter unit configured to generate a first counter value indicative of a first elapsed time since the first value is measured by the first sensor, wherein a correlation between the first counter value and the first elapsed time varies based upon the variable, and wherein the correlation comprises a determined period of the oscillator used to convert the first counter value to the first elapsed time; and

at least one processor coupled to the first sensor and to the counter unit, the at least one processor configured to:

send the first value to a remote apparatus;

send the first counter value to the remote apparatus;

cause the remote apparatus to determine the first elapsed time based on the first value and the first counter value, wherein the remote apparatus adjusts the determined period of the oscillator used to determine the first elapse time based on changes in the first value; and

cause the remote apparatus to determine a first obtained time at which the first value is measured by the first sensor based on the first elapsed time and a reference time of the remote apparatus.

2. The low-power measuring device of claim 1 , further comprising a second sensor, the second sensor including one of an electrochemical sensor, an optical sensor, or an electrical sensor.

3. The low-power measuring device of claim 1 , further comprising a second sensor for measuring an analyte of bodily fluid, and wherein the at least one processor is further configured to send a measured analyte value from the second sensor to the remote apparatus.

4. The low-power measuring device of claim 3 , wherein the second sensor is configured to measure the analyte at substantially the same time as the first value.

5. The low-power measuring device of claim 1 , wherein the low-power measuring device is a body-mountable device.

6. The low-power measuring device of claim 1 , wherein the low-power measuring device is a portable device and further comprises a battery.

7. The low-power measuring device of claim 1 , further comprising a transmitter, and wherein the at least one processor causes the first value and the first counter value to be sent to the remote apparatus using the transmitter.

8. The low-power measuring device of claim 1 , wherein the low-power measuring device is an implant device for complete or partial implantation in a body.

9. The low-power measuring device of claim 1 , wherein the oscillator includes at least one of an RC oscillator, LC oscillator, or a micro-electro-mechanical systems (MEMS) oscillator.

10. A method for determining obtained times of received values, the method comprising the following operations performed by at least one processor:

receiving a first value from a measuring device, the first value representing a variable obtained by the measuring device, wherein the variable comprises a voltage applied to an oscillator;

receiving a first counter value from the measuring device, the first counter value being generated by a counter unit including the oscillator of the measuring device and indicative of a first elapsed time between a reference time and a first obtained time of the first value, wherein the first obtained time is a time at which the first value is obtained by the measuring device;

adjusting a correlation between the first counter value and the first elapsed time based upon changes in the variable and wherein the correlation comprises a determined period of the oscillator used to convert the first counter value to the first elapsed time;

determining the first elapsed time represented by the first counter value as a function of the first value and the correlation; and

determining the first obtained time of the first value based on the first elapsed time and the reference time.

11. The method of claim 10 , further comprising:

receiving a second value from the measuring device, the second value representing the variable obtained by the measuring device at a different time than the first value;

receiving a second counter value from the measuring device, the second counter value being generated by the counter unit of the measuring device and indicative of a second elapsed time between the first obtained time of the first value and a second obtained time of the second value, the second obtained time being a second time at which the second value is obtained by the measuring device;

determining the second elapsed time represented by the second counter value as function of at least one of the first value and the second value; and

determining the second obtained time of the second value based on the determined second elapsed time and the first obtained time of the first value.

12. The method of claim 10 , wherein the reference time is one of:

a time at which the first value is obtained by the measuring device,

a time at which the first value is transmitted by the measuring device,

a time at which the first value is retrieved from a memory of the measuring device, and

a time at which the first value is received from the measuring device.

13. The method of claim 10 , wherein the oscillator includes at least one of an RC oscillator, LC oscillator, or a MEMS oscillator.

14. The method of claim 10 , wherein the oscillator generates a periodic signal and the first counter value is a number of cycles of a periodic signal elapsed between the reference time and a first obtained time of the first value.

15. The method of claim 10 , wherein the first counter value is approximately proportional to the first elapsed time.

16. The method of claim 10 , wherein the first value and the first counter value are received wirelessly from the measuring device.

17. A monitoring system comprising:

a storage medium that stores a set of instructions; and

at least one processor that is configured by the set of instructions to:

receive a first measured value from a measuring device, the first measured value being a variable measured by the measuring device, wherein the variable comprises a voltage applied to an oscillator;

determine a received time representing when the first measured value is received from the measuring device;

receive a first counter value from the measuring device, the first counter value being generated by a counter unit including the oscillator of the measuring device and indicative of a first elapsed time between the received time and a first measurement time of the first measured value, the first measurement time being a time at which the first measured value is measured by the measuring device;

adjusting a correlation between the first counter value and the first elapsed time based upon changes in the variable and wherein the correlation comprises a determined period of the oscillator used to convert the first counter value to the first elapsed time;

calculate the first elapsed time represented by the first counter value as function of the first measured value and the correlation; and

calculate the first measurement time of the first measured value based on the first elapsed time and the received time.

Assignments (2)
CHANGE OF NAME Recorded Apr 1, 2026
From: VERILY LIFE SCIENCES LLC
To: VERILY HEALTH INC.
Reel/Frame 075367/0775 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2017
From: MIROV, RUSSELL
To: VERILY LIFE SCIENCES LLC
Reel/Frame 044090/0605 →
Continuity (2)
Provisional Application 62429731 · Dec 3, 2016
Related Publication 20180157803A1 · Jun 7, 2018
Cited By (1)
US 12,697,441