IP Library › Granted Patent US 12,728,272
Granted Patent B2
US 12,728,272 · App. 18/430,482 · Granted Sep 8, 2026

Feedthrough insulator cap for medical device battery

Inventors: Jeffrey J. Louwagie (Minnetonka, MN); Richard W. Swenson (Edina, MN); Joel Hoepner (Plymouth, MN); David J. DeSmet (Maple Grove, MN)
Assignee: Medtronic, Inc.
A61N1/3754A61N1/362H01M10/052H01M50/172H01M50/186H01M50/552H01R13/59H01M50/184H01M50/191H01R2201/12Y10T29/49108
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 12,728,272
App. No.
18/430,482
Granted
Sep 8, 2026
Kind
B2
Abstract

A battery configured to support a relatively high rate of energy discharge relative to its capacity for energy intensive therapy delivery. The battery includes a feedthrough insulator cap disposed within the interior of the battery on at least a portion of a ferrule, at least a portion of an insulator, and at least a portion of a pin, which define a feedthrough extending through an enclosure of the battery; a first electrode disposed within the enclosure and electrically coupled to the pin; a second electrode disposed within the enclosure and separated a distance from the first electrode; and an electrolyte disposed between the first electrode and the second electrode. During operation of the battery, the feedthrough insulator cap reduces dendrite formation on at least a portion of the ferrule, the pin, or both.

Claims (36)

1 . A high-rate primary battery configured to be disposed within an outer housing of a medical device and to supply power to one or more electronic components of the medical device, the high-rate primary battery comprising:

an enclosure defining an interior of the battery and a feedthrough aperture open to an exterior of the battery;

a ferrule extending through the feedthrough aperture and coupled to the enclosure;

an insulator extending through the ferrule to the exterior of the battery;

a pin extending through the insulator from the interior of the battery to the exterior of the battery, wherein the insulator electrically insulates the pin from the ferrule;

a feedthrough insulator cap disposed on at least a portion of the ferrule, at least a portion of the insulator, and at least a portion of the pin, the feedthrough insulator cap comprising a brim comprising an annular disk extending substantially within a plane, the brim having an interior edge and an exterior edge, and a crown integrally formed with the interior edge of the brim, wherein the crown extends above the plane of the brim in a first direction;

a first electrode disposed within the enclosure and electrically coupled to the pin;

a second electrode disposed within the enclosure and separated a distance from the first electrode; and

an electrolyte disposed between the first electrode and the second electrode.

2 . The battery of claim 1 , wherein the feedthrough insulator cap, during operation of the battery, prevents formation of dendrites on at least the portion of the ferrule or the portion of the pin.

3 . The battery of claim 1 , wherein, prior to a reflow process, the crown extends above the plane of the brim at an angle within a range from about 90-degrees to about 135-degrees relative to the plane.

4 . The battery of claim 1 , wherein a height of the crown above the brim is within a range between about 0.1 millimeters (mm) to about 5.0 mm.

5 . The battery of claim 1 , wherein the brim comprises a deflection including the exterior edge of the brim, the deflection extending below the plane of the disk in a second direction.

6 . The battery of claim 5 , wherein, prior to a reflow process, the deflection extends below the plane of the disk at an angle within a range from about 90-degrees to about 135-degrees relative to the plane.

7 . The battery of claim 5 , wherein a height of the deflection below the plane of the disk is within a range between about 0.1 millimeters (mm) to about 3.0 mm.

8 . The battery of claim 1 , wherein the ferrule comprises a cylindrical annulus having a radially exterior surface, a radially interior surface, and an interior annulus disposed within the enclosure, wherein the radially exterior surface is coupled to the feedthrough aperture, and wherein the feedthrough insulator cap is disposed over the interior annulus of the ferrule and at least a portion of the radially exterior surface.

9 . The battery of claim 1 , wherein the battery is a high-rate primary lithium metal battery.

10 . A medical device comprising:

an outer housing; and

a high-rate primary battery within the outer housing, wherein the high-rate primary battery is configured to supply power to one or more electronic components of the medical device, and wherein the high-rate primary battery comprises:

an enclosure defining an interior of the battery and a feedthrough aperture open to an exterior of the battery;

a ferrule extending through the feedthrough aperture and coupled to the enclosure;

an insulator extending through the ferrule to the exterior of the battery;

a pin extending through the insulator from the interior of the battery to the exterior of the battery, wherein the insulator electrically insulates the pin from the ferrule;

a feedthrough insulator cap disposed on at least a portion of the ferrule, at least a portion of the insulator, and at least a portion of an interior segment of the pin, the feedthrough insulator cap comprising a brim comprising an annular disk extending substantially within a plane, the brim having an interior edge and an exterior edge, and a crown integrally formed with the interior edge of the brim, wherein the crown extends above the plane of the brim in a first direction;

a first electrode disposed within the enclosure and electrically coupled to the pin;

a second electrode disposed within the enclosure and separated a distance from the first electrode; and

an electrolyte disposed between the first electrode and the second electrode.

11 . The medical device of claim 10 , wherein the feedthrough insulator cap, during operation of the battery, prevents formation of dendrites on at least a portion of the ferrule or the pin.

12 . The medical device of claim 10 , wherein, prior to a reflow process, the crown extends above the plane of the brim at an angle within a range from about 90-degrees to about 135-degrees relative to the plane.

13 . The medical device of claim 10 , wherein a height of the crown above the brim is within a range between about 0.1 millimeters (mm) to about 5.0 mm.

14 . The medical device of claim 11 , wherein the brim comprises a deflection including the exterior edge of the brim, the deflection extending below the plane of the disk in a second direction.

15 . The medical device of claim 14 , wherein, prior to a reflow process, the deflection extends below the plane of the disk at an angle within a range from about 90-degrees to about 135-degrees relative to the plane.

16 . The medical device of claim 14 , wherein a height of the deflection below the plane of the disk is within a range between about 0.1 millimeters (mm) to about 3.0 mm.

17 . The medical device of claim 10 , wherein the ferrule comprises a cylindrical annulus having a radially exterior surface, a radially interior surface, and an interior annulus disposed within the enclosure, wherein the radially exterior surface is coupled to the feedthrough aperture, and wherein the feedthrough insulator cap is disposed on at least a portion of the interior annulus of the ferrule, the insulator, and at least a portion of the pin.

18 . The medical device of claim 10 , wherein the high-rate primary battery is a high-rate primary lithium metal battery.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2024
From: LOUWAGIE, JEFFREY J.; SWENSON, RICHARD W.; HOEPNER, JOEL; DESMET, DAVID J.
To: MEDTRONIC, INC.
Reel/Frame 066335/0317 →
Continuity (4)
Continuation 18173448 · Feb 23, 2023
Division 16809030 · Mar 4, 2020
Provisional Application 62846833 · May 13, 2019
Related Publication 20240173556A1 · May 30, 2024
References Cited (12)
US 9281507B2 · Bruch · 2016 [cited by applicant]
US 9355789B2 · Krehl · 2016 [cited by examiner]
US 10008717B2 · Suzuki · 2018 [cited by examiner]
US 10727454B2 · Bruch et al. · 2020 [cited by applicant]
US 20020150817A1 · Grubb · 2002 [cited by applicant]
US 20040191621A1 · Heller, Jr. · 2004 [cited by applicant]
US 20180138463A1 · Bruch et al. · 2018 [cited by applicant]
US 20200360702A1 · Louwagie et al. · 2020 [cited by applicant]
US 20230191139A1 · Louwagie et al. · 2023 [cited by applicant]
International Search Report and Written Opinion of International Application No. PCT/US2020/02450, mailed Jun. 30, 2020, 9 pp. [cited by applicant]
Office Action from U.S. Appl. No. 16/809,030 dated Nov. 23, 2022, 6 pp. [cited by applicant]
Prosecution History from U.S. Appl. No. 18/173,448, dated Jul. 18, 2023 through Oct. 16, 2023, 17 pp. [cited by applicant]