IP Library Granted Patent US 12,029,568
Granted Patent B2
US 12,029,568 · App. 17/271,307 · Granted Jul 9, 2024

Separate printed traces for ECG and defibrillation circuits

Inventor: Jessica Snyder (Poland, NY)
Assignee: Conmed Corporation
A61B5/33A61B5/263A61B5/265A61N1/046A61N1/0492
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Quick Facts
Patent No.
US 12,029,568
App. No.
17/271,307
Filed
Feb 25, 2021
Granted
Jul 9, 2024
Kind
B2
Art Unit
3792
USPC
607/142
Abstract

An electrode pad with a defibrillation circuit and a separate ECG tracing circuit. The electrode pad includes a foam base layer, first and second conductive layers, and a hydrogel layer. The foam base layer has a first side and the first conductive layer is centrally located on the base layer. The first conductive layer has a first circuit configured to provide a defibrillation current. The second conductive layer extends at least partially around the first conductive layer on the first side of the base layer. The second conductive layer has a separate second circuit configured to receive an electrical signal. The hydrogel layer covers the first and second conductive layers on the first side of the base layer. The electrode pad additionally includes an electrical connector attached to the first and second conductive layers. The electrical connector is configured for providing a voltage to the first and second conductive layers.

Claims (31)

1. An electrode pad, comprising:

a base layer comprising a first side;

a first conductive layer centrally located on the base layer;

a second conductive layer extending at least partially around the first conductive layer on the base layer; and

a hydrogel layer covering said first and second conductive layers and extending at least partially around an outside of the first conductive layer and an outside of the second conductive layer on said first side of said base layer,

wherein the second conductive layer comprises an ionizing surface for accelerating defibrillation recovery of the hydrogel layer after defibrillation.

2. The electrode pad of claim 1 , wherein the first side of the base layer comprises a surface area which is larger than a surface area of each of the first and second conductive layers.

3. The electrode pad of claim 1 , wherein the first conductive layer and second conductive layer are composed of conductive ink.

4. The electrode pad of claim 3 , wherein the conductive ink of the first conductive layer is more conductive than the conductive ink of the second conductive layer.

5. The electrode pad of claim 3 , wherein the conductive ink is printed on the base layer.

6. The electrode pad of claim 1 , wherein a first portion of the hydrogel layer extending over the first conductive layer has a first set of properties and a second portion of the hydrogel layer extending over the second conductive layer has a second set of properties which is different from the first set.

7. The electrode pad of claim 1 , wherein the base layer is composed of foam material.

8. The electrode pad of claim 1 , wherein at least one of the first conductive layer and second conductive layer is composed of silver chloride.

9. An electrode pad, comprising:

a foam base layer comprising a first side;

a first conductive layer comprising a first circuit centrally located on the base layer;

wherein the first conductive layer is configured to provide a defibrillation current;

a second conductive layer comprising a separate second circuit extending at least partially around the first conductive layer on the first side of the base layer;

wherein the second conductive layer is configured to receive an electrical signal;

a hydrogel layer covering the first and second conductive layers and extending at least partially around an outside of the first conductive layer and an outside of the second conductive layer on the first side of the base layer; and

wherein the second conductive layer comprises an ionizing surface for accelerating defibrillation recovery of the hydrogel layer after defibrillation.

10. The electrode pad of claim 9 , wherein when a first voltage is provided to the first conductive layer, the first voltage is configured to be separate from a voltage provided to the second conductive layer.

11. An electrode pad, comprising:

a foam base layer comprising a first side;

a first conductive layer comprising a first circuit centrally located on the base layer;

a second conductive layer comprising a separate second circuit extending at least partially around the first conductive layer on the first side of the base layer;

a hydrogel layer covering the first and second conductive layers and extending at least partially around an outside of the first conductive layer and an outside of the second conductive layer on the first side of the base layer; and

an electrical connector attached to the first and second conductive layers configured for providing a voltage to the first and second conductive layers; and

wherein the second conductive layer comprises an ionizing surface for accelerating defibrillation recovery of the hydrogel layer after defibrillation.

12. The electrode pad of claim 11 , wherein the electrical connector comprises an end connected to the first and second conductive layers and a free end configured to connect to a voltage source.

13. The electrode pad of claim 1 , wherein the first conductive layer comprises a first circuit and the second conductive layer comprises a separate second circuit.

Assignments (2)
SECURITY INTEREST Recorded Jul 21, 2025
From: CONMED CORPORATION; BIOREZ, INC.; BUFFALO FILTER LLC; IN2BONES USA, LLC; LINVATEC CORPORATION; SURGIQUEST, INC.; VIKING SYSTEMS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 072097/0762 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2021
From: SNYDER, JESSICA
To: CONMED CORPORATION
Reel/Frame 056144/0119 →
Continuity (2)
Provisional Application 62725311 · Aug 31, 2018
Related Publication 20210196181A1 · Jul 1, 2021