IP Library Granted Patent US 10,209,213
Granted Patent B2
US 10,209,213 · App. 15/121,278 · Granted Feb 19, 2019

Flexible sensor patch and method of using the same

Inventors: Myungchan Kang (Woodbury, MN); Stefan H. Gryska (Woodbury, MN); Michael C. Palazzotto (Woodbury, MN)
Assignee: 3M INNOVATIVE PROPERTIES COMPANY
G01N27/227A61B46/20G01N27/22G01N27/228G01N27/407A61B2046/205
View Patent ↗
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 10,209,213
App. No.
15/121,278
Granted
Feb 19, 2019
Kind
B2
Abstract

A flexible sensor patch includes a flexible base having outer and inner surfaces and a periphery, an adhesive layer disposed on at least a portion of the outer surface, a flexible porous cover secured to the flexible base along at least major portion of the periphery. The flexible porous cover and the flexible base collectively enclose at least a major portion of a sensor. The sensor comprises a capacitive sensor element. The capacitive sensor element comprises first and second conductive electrodes and a dielectric microporous material disposed therebetween. Methods of using the flexible sensor patch are also disclosed.

Claims (27)

1. A flexible sensor patch comprising:

a flexible base having outer and inner surfaces and a periphery;

an adhesive layer disposed on at least a portion of the outer surface;

a sensor comprising a capacitive sensor element disposed on the inner surface of the flexible base, the capacitive sensor element comprising:

a first conductive electrode;

a second conductive electrode; and

a dielectric microporous material disposed between the first and second conductive electrodes; and

a flexible porous cover secured to the flexible base along at least major portion of the periphery,

wherein the sensor further comprises a radiofrequency transponder disposed on the inner surface of the flexible base, adjacent to the capacitive sensor element and electrically coupled with the capacitive sensor element,

wherein the first conductive electrode of the capacitive sensor element is disposed on the inner surface of the flexible base, coplanar with the radiofrequency transponder, and surrounded by the radiofrequency transponder, and

wherein the flexible porous cover and the flexible base collectively enclose at least a major portion of the capacitive sensor element and the radiofrequency transponder.

2. The flexible sensor patch of claim 1 , wherein the sensor further comprises a dielectric sensor base, and wherein the first conductive electrode contacts and is supported by the dielectric sensor base.

3. The flexible sensor patch of claim 1 , wherein the flexible porous cover and the flexible base collectively fully enclose the sensor.

4. The flexible sensor patch of claim 1 , wherein the sensor further comprises first and second conductive leads in electrical communication with the respective first and second conductive electrodes, wherein the first and second conductive leads contact the flexible porous cover and the flexible base along a seam where the flexible porous cover and the flexible base contact each other, and wherein the first and second conductive leads extend outwardly through the seam and beyond the periphery of the flexible base.

5. The flexible sensor patch of claim 4 , wherein the flexible porous cover comprises first and second conductive pathways that extend through the flexible porous cover and are in electrical communication with the first and second conductive electrodes.

6. The flexible sensor patch of claim 1 , wherein the adhesive layer comprises a pressure-sensitive adhesive.

7. The flexible sensor patch of claim 1 , wherein the adhesive layer is suitable for human skin contact.

8. The flexible sensor patch of claim 1 , wherein the flexible porous cover comprises a fabric.

9. The flexible sensor patch of claim 1 , wherein the flexible base comprises at least one of fabric or a polymer film.

10. A method of monitoring organic vapor concentration proximate to a substrate, the method comprising:

providing a flexible sensor patch according to claim 1 ,

adhesively bonding the adhesive layer to a substrate;

establishing a voltage difference between the first and second conductive electrodes; and

obtaining a capacitance-related property of the sensor.

11. The method of claim 10 , wherein the substrate comprises patient skin near a pre-surgical skin site.

12. The flexible sensor patch of claim 1 , wherein the radiofrequency transponder and the capacitive sensor element are formed directly on the flexible base.

13. The flexible sensor patch of claim 1 , wherein the dielectric microporous material covers at least a portion of the radiofrequency transponder.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2024
From: 3M INNOVATIVE PROPERTIES COMPANY
To: SOLVENTUM INTELLECTUAL PROPERTIES COMPANY
Reel/Frame 066433/0105 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2016
From: KANG, MYUNGCHAN; GRYSKA, STEFAN H.; PALAZZOTTO, MICHAEL C.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 039565/0508 →
Continuity (2)
Provisional Application 61945600 · Feb 27, 2014
Related Publication 20160363555A1 · Dec 15, 2016
Cited By (23)
US 12,186,164 US 12,186,165 US 12,214,111 US 12,226,565 US 12,245,920 US 12,251,991 US 12,269,315 US 12,290,352 US 12,299,772 US 12,377,711 US 12,409,071 US 12,424,307 US 12,447,259 US 12,458,286 US 12,478,279 US 12,514,755 US 12,527,522 US 12,544,004 US 12,544,271 US 12,558,911 US 12,593,998 US 12,636,199 US 12,685,486