IP Library › Granted Patent US 10,573,448
Granted Patent B2
US 10,573,448 · App. 15/535,319 · Granted Feb 25, 2020

Multi-layer sensor core

Inventor: Ryan Kenneth Buesseler (Delano, MN)
Assignee: St. Jude Medical International Holding S.à r.l.
H01F10/131G01D5/2013H01F10/132H01F17/04
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Quick Facts
Patent No.
US 10,573,448
App. No.
15/535,319
Granted
Feb 25, 2020
Kind
B2
Abstract

A sensor may include a core and a coil. The core may include a rectangular substrate, a layer of magnetically-permeable material disposed on the substrate, and an adhesive rigidly coupling two ends of the substrate so as to form a tube with the rectangular substrate. The coil may be wound on the tube. The core may further include a layer of radiopaque material. The core may further include a flex pad for electrically coupling the coil with an external system.

Claims (41)

1. A core for a sensor, the core comprising:

a rectangular substrate;

a layer of magnetically-permeable material disposed on said substrate;

adhesive for rigidly coupling two ends of said substrate with each other so as to form a hollow cylinder; and

a flex pad on at least one of (a) said rectangular substrate or (b) said magnetically-permeable material, said flex pad providing an electrical connection for the sensor with an external system;

wherein said rectangular substrate includes a top surface and a bottom surface, such that the top surface is an exterior surface of said hollow cylinder and said bottom surface is an interior surface of said hollow cylinder, and further wherein said magnetically-permeable material is disposed on said top surface; and

wherein said flex pad comprises:

a layer of dielectric material disposed on the at least one of (a) said rectangular substrate or (b) said magnetically-permeable material; and

a layer of electrically-conductive material disposed on said dielectric layer.

2. The core of claim 1 , wherein the magnetically-permeable material comprises cobalt and nickel.

3. The core of claim 1 , wherein said magnetically-permeable material covers all of said top surface.

4. The core of claim 1 , further comprising a layer of radiopaque material disposed on at least one of (a) said rectangular substrate or (b) said magnetically-permeable material.

5. The core of claim 1 , wherein said substrate comprises nitinol.

6. A method of manufacturing a core for a sensor, the method comprising:

providing a rectangular substrate;

depositing a magnetically-permeable material on the substrate;

rigidly coupling two ends of the substrate with each other so as to form a hollow cylinder; and

creating a flex pad on at least one of (a) the rectangular substrate or (b) the magnetically-permeable material, the flex pad providing an electrical connection for the sensor with an external system;

wherein said rectangular substrate includes a top surface and a bottom surface, such that the top surface is an exterior surface of said hollow cylinder and said bottom surface is an interior surface of said hollow cylinder, and further wherein said magnetically-permeable material is disposed on said top surface; and

wherein creating the flex pad comprises:

depositing a layer of dielectric material on the at least one of (a) the rectangular substrate or (b) the magnetically-permeable material; and

depositing a layer of electrically-conductive material on the layer of dielectric material.

7. The method of claim 6 , wherein the magnetically-permeable material comprises cobalt and nickel.

8. The method of claim 6 , wherein the magnetically-permeable material covers all of the top surface.

9. The method of claim 6 , further comprising depositing a layer of radiopaque material on at least one of (a) the rectangular substrate or (b) the magnetically-permeable material.

10. The method of claim 6 , wherein the substrate comprises nitinol.

11. A sensor comprising:

a core comprising:

a rectangular substrate having a top surface, a bottom surface, and four ends;

a layer of magnetically-permeable material disposed on said substrate top surface; and

an adhesive rigidly coupling two of said ends of said substrate so as to form a tube with said rectangular substrate, such that said top surface is an outer surface of said tube and said bottom surface is an inner surface of said tube; and

a coil wound on said tube;

wherein said core further comprises an electrically-conductive flex pad on at least one of (a) said rectangular substrate or (b) said magnetically-permeable material, said flex pad providing an electrical connection for the sensor with an external system; and

wherein said flex pad comprises:

a layer of dielectric material disposed on the at least one of (a) said rectangular substrate or (b) said magnetically-permeable material; and

a layer of electrically-conductive material disposed on said dielectric layer.

12. The sensor of claim 11 , wherein said coil is wound on said outer surface of said tube.

13. The sensor of claim 11 , wherein said flex pad comprises at least two connection pads and an electrically-conductive trace electrically coupling the two at least two connection pads, wherein said coil is electrically coupled with one of said connection pads.

14. The sensor of claim 11 , wherein said substrate comprises nitinol.

15. The sensor of claim 11 , wherein said magnetically-permeable layer comprises cobalt and nickel.

16. The sensor of claim 11 , wherein said core further comprises a layer of radiopaque material disposed on at least one of (a) said substrate or (b) said layer of magnetically-permeable material.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2019
From: BUESSELER, RYAN KENNETH
To: ST. JUDE MEDICAL, CARDIOLOGY DIVISION, INC.
Reel/Frame 048093/0291 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2019
From: ST. JUDE MEDICAL, CARDIOLOGY DIVISION, INC.
To: ST JUDE MEDICAL INTERNATIONAL HOLDING S.À R.L.
Reel/Frame 048093/0382 →
Continuity (3)
Provisional Application 62128387 · Mar 4, 2015
Provisional Application 62090768 · Dec 11, 2014
Related Publication 20170358388A1 · Dec 14, 2017