IP Library Granted Patent US 7,205,701
Granted Patent B2
US 7,205,701 · App. 10/933,945 · Granted Apr 17, 2007

Passive wireless acoustic wave chemical sensor

Assignee: Honeywell International Inc.
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Quick Facts
Patent No.
US 7,205,701
App. No.
10/933,945
Granted
Apr 17, 2007
Kind
B2
Abstract

A passive wireless acoustic wave chemical sensor can be utilized for monitoring the concentration of an analyte in a substance such as blood. Such an acoustic wave chemical sensor can be configured to include one or more interdigital transducers and a selective coating formed upon a piezoelectric substrate. The coating and the interdigital transducer(s) can be used to convert electrical signal to surface waves thereof. An antenna can be connected to the acoustic wave device, wherein the antenna receives one or more input signals, which excite the acoustic device and to produce an output signal that is related to the concentration of the analyte of interest.

Claims (21)

1. A method for sensing a concentration of a chemical and/or biochemical constituent in a body fluid, the method comprising the steps of:

providing a surface acoustic wave device having an absorbing layer, wherein the absorbing layer absorbs the chemical and/or biochemical constituent and affects an output signal of the surface acoustic wave device dependent on the concentration of the chemical and/or biochemical constituent;

exposing the absorbing layer to the body fluid, thereby exposing the absorbing layer to the chemical and/or biochemical constituent;

wirelessly providing power to the surface acoustic wave device via a power signal;

wirelessly receiving the output signal from the surface acoustic wave device; wherein an altered output signal correlates to the concentration of the chemical and/or biochemical constituent in the body fluid; and

wirelessly providing a desorb signal to the surface acoustic wave device, wherein the desorb signal causes the surface acoustic wave device to produce an acoustic wave that vibrates and causes heat in the absorbing layer, thereby causing the absorbing layer to desorb at least some of the absorbed chemical and/or biochemical constituent;

wherein the desorb signal has a different frequency than the power signal.

2. A method for sensing a concentration of a chemical and/or biochemical constituent in a body fluid, the method comprising the steps of:

providing a surface acoustic wave device having an absorbing layer, wherein the absorbing layer absorbs the chemical and/or biochemical constituent and affects an output signal of the surface acoustic wave device dependent on the concentration of the chemical and/or biochemical constituent in the body fluid;

exposing the absorbing layer to the chemical and/or biochemical constituent in the body fluid;

providing an initialization signal to the surface acoustic wave device, the initialization signal causing the surface acoustic wave device to produce an acoustic wave that helps break down bonds between the absorbing layer and the chemical and/or biochemical constituent to increase the response time of the surface acoustic wave device;

providing power to the surface acoustic wave device via a power signal; and

receiving the output signal from the surface acoustic wave device, wherein the output signal is related to the concentration of the chemical and/or biochemical constituent;

wherein the initialization signal has a different frequency than the power signal.

3. A method for sensing a concentration of a chemical and/or biochemical constituent in a body fluid, the method comprising the steps of:

providing a surface acoustic wave device having an absorbing layer, wherein the absorbing layer absorbs the chemical and/or biochemical constituent and affects an output signal of the surface acoustic wave device dependent on the concentration of the chemical and/or biochemical constituent in the body fluid;

exposing the absorbing layer to the chemical and/or biochemical constituent in the body fluid;

providing an initialization signal to the surface acoustic wave device, the initialization signal causing the surface acoustic wave device to produce an acoustic wave that helps break down bonds between the absorbing layer and the chemical and/or biochemical constituent to increase the response time of the surface acoustic wave device;

providing power to the surface acoustic wave device via a power signal;

receiving the output signal from the surface acoustic wave device, wherein the output signal is related to the concentration of the chemical and/or biochemical constituent; and

providing a desorb signal after the receiving step, wherein the desorb signal is of a higher amplitude than the power signal, and further has a different frequency than the power signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 3, 2004
From: LIU, JAMES Z.; DIERAUER, PETER P.; REPKO, MARK A.
To: HONEYWELL INTERNATIONAL INC.
Reel/Frame 015769/0941 →
Continuity (1)
Related Publication 20060049714A1 · Mar 9, 2006