IP Library Granted Patent US 11,529,077
Granted Patent B1
US 11,529,077 · App. 17/664,322 · Granted Dec 20, 2022

High performance glucose sensor

Inventor: Phillip Bosua (Seattle, WA)
Assignee: KNOW LABS, INC.
A61B5/14532A61B5/0507G16H20/17
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Quick Facts
Patent No.
US 11,529,077
App. No.
17/664,322
Granted
Dec 20, 2022
Kind
B1
Abstract

A highly accurate glucose sensor that detects glucose by transmitting and receiving sensing signals in a radio or microwave frequency range of the electromagnetic spectrum is provided. The glucose sensor has at least two antennas at least one of which operates as a transmit antenna to transmit one or more of the sensing signals and at least one of which operates as a receive antenna, and the glucose sensor has a mean absolute relative difference (MARD) value of about 5.0% to about 9.9%, or of about 5.0% to about 7.0%, or of about 5.0%.

Claims (23)

1. A glucose sensor that transmits and receives sensing signals in a radio or microwave frequency range of the electromagnetic spectrum, the glucose sensor having at least two antennas at least one of which is operable as a transmit antenna to transmit one or more of the sensing signals and at least one of which is operable as a receive antenna, and the glucose sensor has a mean absolute relative difference (MARD) value of about 5.0% to about 9.9% as compared with a reference glucose reading from a reference glucose sensor based on a plurality of readings by the glucose sensor,

wherein the glucose sensor is configured to simultaneously detect glucose from blood and interstitial fluid.

2. The glucose sensor of claim 1 , wherein the MARD value is about 5.0% to about 7.0%.

3. The glucose sensor of claim 1 , wherein the MARD value is about 5.0%.

4. The glucose sensor of claim 1 , wherein the glucose sensor additionally simultaneously detects glucose from cellular material.

5. The glucose sensor of claim 1 , wherein the glucose sensor is a continuous glucose sensor or an on-demand glucose sensor.

6. The glucose sensor of claim 1 , wherein the at least two antennas are part of an antenna array;

a transmit circuit that is electrically connectable to the at least one transmit antenna, the transmit circuit is configured to generate the signals to be transmitted by the at least one transmit antenna; and

a receive circuit that is electrically connectable to the at least one receive antenna, the receive circuit is configured to receive responses detected by the at least one receive antenna.

7. The glucose sensor of claim 1 , wherein the glucose sensor has at least three antennas.

8. The glucose sensor of claim 1 , wherein the glucose sensor has at least four antennas.

9. The glucose sensor of claim 1 , wherein the glucose sensor has at least six antennas.

10. The glucose sensor of claim 1 , wherein each of the at least two antennas have a longitudinal axis parallel to one another, and one of the at least two antennas has a longitudinal end that has a different shape than a longitudinal end of another of the at least two antennas.

11. The glucose sensor of claim 8 , wherein the at least four antennas each have a longitudinal axis parallel to one another, and at least one of the at least four antennas has a stadium shape, and at least one of the at least four antennas has a rounded rectangle shape.

12. The glucose sensor of claim 8 , wherein at least one of the at least four antennas has a different perimeter length than remaining antennas of the at least four antennas.

13. A non-invasive glucose sensor that transmits and receives sensing signals in a radio or microwave frequency range of the electromagnetic spectrum to detect glucose in a human or animal body, the non-invasive glucose sensor having at least three antennas at least one of which is operable as a transmit antenna to transmit one or more of the sensing signals into the human or animal body and at least one of which is operable as a receive antenna, and the glucose sensor has a mean absolute relative difference (MARD) value of about 5.0% to about 7.0% as compared with a reference glucose reading from a reference glucose sensor based on a plurality of readings by the glucose sensor,

wherein the at least three antennas each have a longitudinal axis parallel to one another, and each of the at least three antennas comprises linear sides connected to longitudinal ends, and the longitudinal ends of at least one of the at least three antennas has different geometries from the longitudinal ends of the other of the at least three antennas.

14. The non-invasive glucose sensor of claim 13 , wherein the MARD value is about 5.0%.

15. The non-invasive glucose sensor of claim 13 , wherein the non-invasive glucose sensor simultaneously detects glucose from blood and interstitial fluid.

16. The non-invasive glucose sensor of claim 13 , wherein the non-invasive glucose sensor is a continuous glucose sensor or an on-demand glucose sensor.

17. The non-invasive glucose sensor of claim 13 , wherein the at least three antennas are part of an antenna array.

18. The non-invasive glucose sensor of claim 17 , wherein the antenna array has at least four antennas.

19. The non-invasive glucose sensor of claim 17 , wherein the antenna array has at least six antennas.

Assignments (4)
CHANGE OF NAME Recorded Aug 27, 2025
From: KNOW LABS, INC.
To: USBC, INC.
Reel/Frame 072590/0959 →
RELEASE OF SECURITY INTEREST Recorded Aug 26, 2025
From: LIND GLOBAL FUND II LP
To: KNOW LABS, INC.
Reel/Frame 072564/0180 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CORRECT THE NATURE OF THE CONVEYANCE FROM ASSIGNMENT TO SECURITY INTEREST PREVIOUSLY RECORDED ON REEL 66766 FRAME 901. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY AGREEMENT. Recorded Mar 22, 2024
From: KNOW LABS, INC.
To: LIND GLOBAL FUND II LP
Reel/Frame 067126/0008 →
SECURITY INTEREST Recorded Mar 7, 2024
From: KNOW LABS, INC.
To: LIND GLOBAL FUND II LP
Reel/Frame 066766/0901 →
Continuity (1)
Continuation 17662102 · May 5, 2022
Cited By (1)
US 12,318,182