IP Library Patent Application 17584870
Patent Application
App. No. 17/584,870

NON-INVASIVE ANALYTE SENSOR WITH MULTIPLE SENSOR ASSEMBLIES

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
17/584,870
Abstract

A non-invasive analyte sensor that includes first and second non-invasive analyte sensor assemblies each of which can emit transmit signals that are in a radio or microwave frequency range of the electromagnetic spectrum into a target and can detect responses resulting from emission of the transmit signals into the target.

Claims (36)

1 . A non-invasive analyte sensor, comprising:

first and second non-invasive analyte sensor assemblies, each of the first and second non-invasive analyte sensor assemblies is configured to emit transmit signals that are in a radio or microwave frequency range of the electromagnetic spectrum into a target and configured to detect responses resulting from emission of the transmit signals into the target; and

each of the first and second non-invasive analyte sensor assemblies are disposed at a same side of the target.

2 . The non-invasive analyte sensor of claim 1 , wherein each of the first and second non-invasive analyte sensor assemblies comprises:

at least one transmit antenna and at least one receive antenna that are decoupled from one another, the at least one transmit antenna is positioned and arranged to transmit the transmit signals into the target, and the at least one receive antenna is positioned and arranged to detect the responses;

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

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

3 . The non-invasive analyte sensor of claim 1 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are disposed in a sensor housing.

4 . The non-invasive analyte sensor of claim 3 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are disposed side-by-side in the sensor housing.

5 . The non-invasive analyte sensor of claim 1 , wherein the first non-invasive analyte sensor assembly is controlled by a first controller, and the second non-invasive analyte sensor assembly is controlled by a second controller.

6 . The non-invasive analyte sensor of claim 1 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are controlled by a common controller.

7 . The non-invasive analyte sensor of claim 1 , wherein each of the transmit signals emitted by the first non-invasive analyte sensor assembly has a frequency that is in a range that is between about 10 kHz to about 100 GHz; and each of the transmit signals emitted by the second non-invasive analyte sensor assembly has a frequency that is in a range that is between about 10 kHz to about 100 GHz.

8 . The non-invasive analyte sensor of claim 1 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are controlled to alternate with one another in emitting the transmit signals into the target while implementing a frequency sweep over a range of frequencies.

9 . The non-invasive analyte sensor of claim 1 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are controlled to simultaneously emit the transmit signals.

10 . The non-invasive analyte sensor of claim 1 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are configured to detect a common analyte in the target.

11 . The non-invasive analyte sensor of claim 1 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are configured to detect different analytes in the target.

12 . A non-invasive analyte sensor, comprising:

a first non-invasive analyte sensor assembly that is configured to emit first transmit signals that are in a radio or microwave frequency range of the electromagnetic spectrum into a first portion of a target and configured to detect first responses resulting from emission of the first transmit signals into the first portion of the target; and

a second non-invasive analyte sensor assembly that is configured to emit second transmit signals that are in a radio or microwave frequency range of the electromagnetic spectrum into a second portion of the target and configured to detect second responses resulting from emission of the second transmit signals into the second portion of the target, the second portion of the target is spaced from the first portion of the target.

13 . The non-invasive analyte sensor of claim 12 , wherein the first non-invasive analyte sensor assembly comprises:

at least one first transmit antenna and at least one first receive antenna that are decoupled from one another, the at least one first transmit antenna is positioned and arranged to transmit the first transmit signals into the first portion of the target, and the at least one first receive antenna is positioned and arranged to detect the first responses;

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

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

and the second non-invasive analyte sensor assembly comprises:

at least one second transmit antenna and at least one second receive antenna that are decoupled from one another, the at least one second transmit antenna is positioned and arranged to transmit the second transmit signals into the second portion of the target, and the at least one second receive antenna is positioned and arranged to detect the second responses;

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

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

14 . The non-invasive analyte sensor of claim 12 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are disposed in a sensor housing.

15 . The non-invasive analyte sensor of claim 14 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are disposed side-by-side in the sensor housing.

16 . The non-invasive analyte sensor of claim 12 , wherein the first non-invasive analyte sensor assembly is controlled by a first controller, and the second non-invasive analyte sensor assembly is controlled by a second controller.

17 . The non-invasive analyte sensor of claim 12 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are controlled by a controller.

18 . The non-invasive analyte sensor of claim 12 , wherein each of the first transmit signals emitted by the first non-invasive analyte sensor assembly has a frequency that is in a range that is between about 10 kHz to about 100 GHz; and each of the second transmit signals emitted by the second non-invasive analyte sensor assembly has a frequency that is in a range that is between about 10 kHz to about 100 GHz.

19 . The non-invasive analyte sensor of claim 12 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are controlled to alternate with one another in emitting the transmit signals into the target while implementing a frequency sweep over a range of frequencies.

20 . The non-invasive analyte sensor of claim 12 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are configured to simultaneously emit the first transmit signals and the second transmit signals.

21 . The non-invasive analyte sensor of claim 12 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are configured to detect a common analyte in the target.

22 . The non-invasive analyte sensor of claim 12 , wherein the first non-invasive analyte sensor assembly and the second non-invasive analyte sensor assembly are configured to detect different analytes in the target.

Assignments (5)
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 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2022
From: BOSUA, PHILLIP
To: KNOW LABS, INC.
Reel/Frame 058779/0148 →