IP Library Granted Patent US 10,881,337
Granted Patent B2
US 10,881,337 · App. 15/407,049 · Granted Jan 5, 2021

Shielded, folded connector for a sensor

Inventor: Matthew Dalene (Clinton, CT)
Assignee: Edwards Lifesciences Corporation
A61B5/14552H01R12/77H01R13/658H01R13/665H01R13/70H05K1/028H05K1/0216H05K1/0219H05K1/0274A61B2562/12A61B2562/222A61B2562/227H05K2201/056H05K2201/0723H05K2201/09727
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Quick Facts
Patent No.
US 10,881,337
App. No.
15/407,049
Granted
Jan 5, 2021
Kind
B2
Abstract

An oximetry sensor assembly connector, and a method for making the same, is provided that includes a flexible circuit and a stiffener panel. The flexible circuit has a plurality of layers including at least one electrical trace layer and at least one electromagnetic interference (EMI) shield layer. The stiffener panel has a first side surface and a second side surface, which second side surface is opposite the first side surface. The flexible circuit includes a first segment and a second segment, and one or more of the plurality of layers are disposed within the first segment and the second segment. The flexible circuit is folded such that the first segment is contiguous with the first side surface of the stiffener panel, and the second segment is contiguous with the second side surface of the stiffener panel.

Claims (29)

1. An oximetry sensor assembly connector, comprising:

a flexible circuit having a plurality of layers including at least one electrical trace layer and at least one electromagnetic interference (EMI) shield layer; and

a stiffener panel having a first side surface, a second side surface, and an insertion edge, wherein the second side surface is opposite the first side surface, and the insertion edge extends between the first side surface and the second side surface;

wherein the flexible circuit includes a first segment and a second segment, and one or more of the plurality of layers are disposed within the first segment and the second segment; and

wherein the flexible circuit is folded such that the first segment is contiguous with the first side surface of the stiffener panel, and the second segment is contiguous with the second side surface of the stiffener panel, and the insertion edge is disposed at the fold of the flexible circuit; and

wherein the first segment of the flexible circuit includes a first exposed portion adjacent the insertion edge of the stiffener panel, and a first covered portion, and the second segment of the flexible circuit includes a second exposed portion adjacent the insertion edge of the stiffener panel, and a second covered portion; and

wherein the plurality of layers within the flexible circuit includes a first electrically conductive layer and the first electrically conductive layer is exposed as the outermost layer in both the first exposed portion and in the second exposed portion; and

wherein within the first exposed portion, the plurality of layers of the flexible circuit includes in stacked order in a direction toward the stiffener panel, the first electrically conductive layer, a first electrically insulative layer, a second electrically conductive layer, a second electrically insulative layer, the EMI shield layer, and a cover layer, which cover layer is in contact with the first side surface of the stiffener panel.

2. The connector of claim 1 , wherein within the second exposed portion, the plurality of layers of the flexible circuit includes in stacked order in a direction toward the stiffener panel, the first electrically conductive layer, the first electrically insulative layer, the second electrically conductive layer, the second electrically insulative layer, the EMI shield layer, and the cover layer, which cover layer is in contact with the second side surface of the stiffener panel.

3. The connector of claim 2 wherein within the first covered portion of the first segment, the plurality of layers of the flexible circuit further includes a second cover layer in contact with the first electrically conductive layer, and within the second covered portion of the second segment, the plurality of layers of the flexible circuit further includes the second cover layer in contact with the first electrically conductive layer.

4. The connector of claim 1 , wherein the first electrically conductive layer includes one or more light source traces configured to conduct electrical signals between one or more light sources within the sensor assembly and one or both of the first and second exposed portions, and one or more EMI shield traces.

5. The connector of claim 4 , wherein the second electrically conductive layer includes one or more detector traces configured to conduct electrical signals between one or more light detectors within the sensor assembly and one or both of the first and second exposed portions, and one or more EMI shield traces.

6. The connector of claim 5 , wherein within the flexible circuit, one or more of the EMI shield traces in the second electrically conductive layer are aligned with the one or more light source traces within the first electrically conductive layer, and one or more of the EMI shield traces in the first electrically conductive layer are aligned with the one or more detector traces within the second electrically conductive layer.

7. The connector of claim 1 , wherein the stiffener panel includes a well extending between the first side surface and the second side surface, and further including one or more electrical components disposed within the well and in connection with the flexible circuit.

8. An oximetry sensor assembly, comprising:

at least one light source;

at least one light detector;

a flexible circuit having a plurality of layers including at least one electrical trace layer and at least one electromagnetic interference (EMI) shield layer; and

a connector that includes a stiffener panel having a first side surface, a second side surface, and an insertion edge, wherein the second side surface is opposite the first side surface, and the insertion edge extends between the first side surface and the second side surface;

wherein the flexible circuit extends between the light source and light detector proximate a first end, and the connector at a second end opposite the first end;

wherein the flexible circuit includes a first segment and a second segment, and one or more of the plurality of layers are disposed within the first segment and the second segment; and

wherein the flexible circuit is folded such that the first segment is contiguous with the first side surface of the stiffener panel, and the second segment is contiguous with the second side surface of the stiffener panel, and the insertion edge is disposed at the fold of the flexible circuit; and

wherein the first segment of the flexible circuit includes a first exposed portion adjacent the insertion edge of the stiffener panel, and a first covered portion, and the second segment of the flexible circuit includes a second exposed portion adjacent the insertion edge of the stiffener panel, and a second covered portion; and

wherein the plurality of layers within the flexible circuit includes a first electrically conductive layer and the first electrically conductive layer is exposed as the outermost layer in both the first exposed portion and in the second exposed portion; and

wherein within the first exposed portion, the plurality of layers of the flexible circuit includes in stacked order in a direction toward the stiffener panel, the first electrically conductive layer, a first electrically insulative layer, a second electrically conductive layer, a second electrically insulative layer, the EMI shield layer, and a cover layer, which cover layer is in contact with the first side surface of the stiffener panel.

9. The sensor assembly of claim 8 , wherein within the second exposed portion, the plurality of layers of the flexible circuit includes in stacked order in a direction toward the stiffener panel, the first electrically conductive layer, the first electrically insulative layer, the second electrically conductive layer, the second electrically insulative layer, the EMI shield layer, and the cover layer, which cover layer is in contact with the second side surface of the stiffener panel.

10. The sensor assembly of claim 8 , wherein the first electrically conductive layer includes one or more light source traces configured to conduct electrical signals between one or more light sources within the sensor assembly and one or both of the first and second exposed portion, and one or more EMI shield traces.

11. The sensor assembly of claim 10 , wherein the second electrically conductive layer includes one or more detector traces configured to conduct electrical signals between one or more light detectors within the sensor assembly and one or both of the first and second exposed portions, and one or more EMI shield traces.

12. The sensor assembly of claim 11 , wherein within the flexible circuit, one or more of the EMI shield traces in the second electrically conductive layer are aligned with the one or more light source traces within the first electrically conductive layer, and one or more of the EMI shield traces in the first electrically conductive layer are aligned with the one or more detector traces within the second electrically conductive layer.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2025
From: EDWARDS LIFESCIENCES CORPORATION; EDWARDS LIFESCIENCES LLC; EDWARDS LIFESCIENCES SÀRL; EDWARDS LIFESCIENCES HOLDING B.V.
To: BD SWITZERLAND SARL
Reel/Frame 072920/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2019
From: CAS MEDICAL SYSTEMS, INC.
To: EDWARDS LIFESCIENCES CORPORATION
Reel/Frame 050635/0654 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2017
From: DALENE, MATTHEW
To: CAS MEDICAL SYSTEMS, INC.
Reel/Frame 041605/0317 →
Continuity (3)
Provisional Application 62279470 · Jan 15, 2016
Provisional Application 62324125 · Apr 18, 2016
Related Publication 20170202495A1 · Jul 20, 2017