IP Library Granted Patent US 12,507,343
Granted Patent B2
US 12,507,343 · App. 18/444,138 · Granted Dec 23, 2025

Textile blank with seamless knitted electrode system

Inventors: Joanna Berzowska (Montreal, CA); Frederic Chanay (Montreal, CA); Stephane Menard (Montreal, CA); Elina Nurkka (Verdun, CA)
Assignee: Honeywell Safety Products USA, Inc.
H05K1/11A61B5/01A61B5/02055A61B5/1135A61B5/25A61B5/256A61B5/257A61B5/27A61B5/296A61B5/6804D04B1/14D04B1/225D04B1/24H05K1/038H05K3/30A41D13/1281A61B5/0245A61B5/0533A61B5/0816A61B5/091A61B2562/125D10B2403/02431D10B2509/00Y10T29/49147
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Quick Facts
Patent No.
US 12,507,343
App. No.
18/444,138
Granted
Dec 23, 2025
Kind
B2
Abstract

A textile-based electrode system includes a first fabric layer having an inner and an outer surface. The inner surface includes a knitted electrode configured to be placed in contact with the skin of a user. A second fabric layer is disposed and configured to contact the outer surface of the first fabric layer. The second fabric layer includes a knitted conductive pathway configured to be electrically coupled to the knitted electrode. Furthermore, a third fabric layer is configured and disposed to contact the second fabric layer. A connector is disposed on the third fabric layer and is configured to be electrically coupled to the knitted conductive pathway. The second fabric layer can be folded about a first fold axis and the third fabric layer can be folded about a second fold axis to place the second fabric layer in contact with the first fabric layer and the third fabric layer.

Claims (32)

1 . A textile-based electrode system, comprising:

a plurality of knitted electrodes configured to be placed in contact with a skin of a user;

a knitted conductive pathway disposed on a first fabric layer, the knitted conductive pathway configured to electrically couple a knitted electrode of the plurality of knitted electrodes, wherein the knitted conductive pathway comprises a first end and a second end extending along the first fabric layer,

a second fabric layer disposed and configured to contact the first fabric layer; and

a connector disposed on the second fabric layer and configured to electrically couple the knitted conductive pathway to a connector assembly,

wherein the knitted electrode is configured to be electrically coupled to the first end of the knitted conductive pathway, wherein the connector is configured to be electrically coupled to the second end of the knitted conductive pathway, wherein the second end of the knitted conductive pathway overlaps the connector, and wherein the second fabric layer defines an opening, and the connector is at least partially disposed in the opening and coupled to the knitted conductive pathway.

2 . The textile-based electrode system of claim 1 , further comprising:

a third fabric layer having an inner surface and an outer surface, the inner surface including the plurality of knitted electrodes.

3 . The textile-based electrode system of claim 2 , wherein the first fabric layer is configured to contact the outer surface of the third fabric layer.

4 . The textile-based electrode system of claim 1 , wherein the knitted electrode is of a shape chosen from among square, rectangular, circular, elliptical, oval, or polygonal.

5 . The textile-based electrode system of claim 2 further comprising: a padding member disposed on the outer surface of the third fabric layer, wherein the padding member is adjacent to the knitted electrode.

6 . The textile-based electrode system of claim 5 , wherein the padding member is configured to urge the knitted electrode toward the skin of the user during use.

7 . The textile-based electrode system of claim 1 , further comprising an insulating layer configured to electrically isolate the knitted conductive pathway from the second fabric layer.

8 . The textile-based electrode system of claim 1 , wherein the connector is configured to be removably coupled to the connector assembly.

9 . The textile-based electrode system of claim 8 , wherein the connector assembly comprises a plurality of receivers disposed on a printed circuit board.

10 . The textile-based electrode system of claim 8 , wherein the second fabric layer comprises a cover layer configured to cover at least a portion of the connector assembly.

11 . A bio-sensing garment comprising:

a plurality of knitted electrodes configured to be placed in contact with a skin of a user;

a knitted conductive pathway disposed on a first fabric layer, the knitted conductive pathway configured to electrically couple a knitted electrode of the plurality of knitted electrodes, wherein the knitted conductive pathway comprises a first end and the second end extending along the first fabric layer;

a second fabric layer disposed and configured to contact the first fabric layer; and

a connector disposed on the second fabric layer and configured to electrically couple the knitted conductive pathway to a connector assembly,

wherein the knitted electrode is configured to be electrically coupled to the first end of the knitted conductive pathway, wherein the connector is configured to be electrically coupled to the second end of the knitted conductive pathway, wherein the second end of the knitted conductive pathway overlaps the connector, and wherein the second fabric layer defines an opening, and the connector is at least partially disposed in the opening and coupled to the knitted conductive pathway.

12 . The bio-sensing garment of claim 11 , further comprising:

a third fabric layer having an inner surface and an outer surface, the inner surface including the plurality of knitted electrodes.

13 . The bio-sensing garment of claim 12 , wherein the first fabric layer is configured to contact the outer surface of the third fabric layer.

14 . The bio-sensing garment of claim 11 , wherein the knitted electrode is of a shape chosen from among square, rectangular, circular, elliptical, oval, or polygonal.

15 . The bio-sensing garment of claim 12 further comprising: a padding member disposed on the outer surface of the third fabric layer, wherein the padding member is adjacent to the knitted electrode.

16 . The bio-sensing garment of claim 15 , wherein the padding member is configured to urge the knitted electrode toward the skin of the user during use.

17 . The bio-sensing garment of claim 11 , further comprising an insulating layer configured to electrically isolate the knitted conductive pathway from the second fabric layer.

18 . The bio-sensing garment of claim 11 , wherein the connector is configured to be removably coupled to the connector assembly.

19 . The bio-sensing garment of claim 18 , wherein the connector assembly comprises of a plurality of receivers disposed on a printed circuit board.

20 . The bio-sensing garment of claim 18 , wherein the second fabric layer comprises a cover layer configured to cover at least a portion of the connector assembly.

Assignments (4)
SECURITY INTEREST Recorded May 23, 2025
From: PROTECTIVE INDUSTRIAL PRODUCTS, INC.; WORLDWIDE PROTECTIVE PRODUCTS, LLC; HEAROS, LLC; WEST CHESTER HOLDINGS, LLC; REFLECTIVE APPAREL FACTORY, INC.; PIP USA MANUFACTURING, INC.; HONEYWELL SAFETY PRODUCTS USA, INC.; MORNING PRIDE MANUFACTURING L.L.C.; SALISBURY ELECTRICAL SAFETY L.L.C.
To: GOLDMAN SACHS BANK USA
Reel/Frame 071342/0241 →
SECURITY INTEREST Recorded May 23, 2025
From: PROTECTIVE INDUSTRIAL PRODUCTS, INC.; WORLDWIDE PROTECTIVE PRODUCTS, LLC; HEAROS, LLC; WEST CHESTER HOLDINGS, LLC; REFLECTIVE APPAREL FACTORY, INC.; PIP USA MANUFACTURING, INC.; HONEYWELL SAFETY PRODUCTS USA, INC.; MORNING PRIDE MANUFACTURING L.L.C.; SALISBURY ELECTRICAL SAFETY L.L.C.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 071346/0679 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2024
From: BERZOWSKA, JOANNA; CHANAY, FREDERIC; MENARD, STEPHANE; NURKKA, MARIA ELINA
To: OMSIGNAL INC.
Reel/Frame 066558/0276 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2024
From: OMSIGNAL INC.
To: HONEYWELL SAFETY PRODUCTS USA, INC.
Reel/Frame 066558/0410 →
Continuity (4)
Continuation 15973880 · May 8, 2018
Continuation 14249011 · Apr 9, 2014
Provisional Application 61810313 · Apr 10, 2013
Related Publication 20240196529A1 · Jun 13, 2024
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