IP Library Granted Patent US 12,472,367
Granted Patent B2
US 12,472,367 · App. 18/196,688 · Granted Nov 18, 2025

Strain relief systems for active implantable medical devices

Inventors: Joseph Vandenburg (Sunnyvale, CA); Jerzy A. Sochor (Sunnyvale, CA)
Assignee: NeuroPace, Inc.
A61N1/37514H01R13/5213H01R13/5224H01R13/582
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Quick Facts
Patent No.
US 12,472,367
App. No.
18/196,688
Granted
Nov 18, 2025
Kind
B2
Abstract

A device for implant in a hole in cranium relative to a bone table includes a can having an electrical-contact pad. The can has a perimeter edge defining a boundary, and a recessed portion with an upper surface positioned to lie beneath the bone table when the can is placed in the hole. The device also include a cover assembly that couples to and decouples from the can at the electrical-contact pad. A strain relief system includes a lower strain relief and an upper strain relief. The lower strain relief defines channels that receive a portion of a lead and includes a curved portion that extends upward from the upper surface of the recessed portion to the bone table, and a linear portion that extends from the curved portion to an end beyond the perimeter edge. The upper strain relief couples to and decouples from the can and/or the lower strain relief.

Claims (34)

1 . An implantable medical device configured for implant in a hole in a cranium of a patient, relative to a bone table corresponding to a surface of the cranium adjacent the hole, the implantable medical device comprising:

a can having an electrical-contact pad, the can characterized by a form factor having a perimeter edge defining a boundary of the can, and a recessed portion with an upper surface positioned to lie beneath the bone table when the can is placed in the hole, and that supports the electrical-contact pad;

a cover assembly having a plurality of ports, each of the plurality of ports configured to receive a connector end of a lead, the cover assembly configured to couple to the can and decouple from the can at the electrical-contact pad; and

a strain relief system comprising:

a lower strain relief defining a plurality of channels, wherein each of the plurality of channels is configured to receive a portion of a lead body and includes a curved portion that extends upward from a proximal end at or near the upper surface of the recessed portion to a distal end at the bone table, and

an upper strain relief configured to cover the plurality of channels of the lower strain relief.

2 . The implantable medical device of claim 1 , wherein the lower strain relief further comprises a generally linear portion that extends from the distal end of the curved portion to a terminating end beyond the perimeter edge of the can.

3 . The implantable medical device of claim 1 , wherein upper strain relief is configured to mechanically couple to and mechanically decouple from the cover assembly.

4 . The implantable medical device of claim 1 , wherein upper strain relief is configured to mechanically couple to and mechanically decouple from the lower strain relief.

5 . The implantable medical device of claim 1 , wherein upper strain relief is configured to mechanically couple to and mechanically decouple from both of the cover assembly and the lower strain relief.

6 . The implantable medical device of claim 1 , wherein the lower strain relief is fixedly secured at the upper surface of the recessed portion and extends beyond the perimeter edge of the can a distance less than the upper strain relief.

7 . An implantable medical device configured for implant in a hole in cranium of a patient, relative to a bone table corresponding to a surface of the cranium adjacent the hole, the implantable medical device comprising:

a can having an electrical-contact pad, the can characterized by a form factor having a perimeter edge defining a boundary of the can, and a recessed portion with an upper surface positioned to lie beneath the bone table when the can is placed in the hole, and that supports the electrical-contact pad;

a cover assembly having a plurality of ports, each of the plurality of ports configured to receive a connector end of a lead, the cover assembly configured to couple to the can and decouple from the can at the electrical-contact pad; and

a strain relief system comprising:

a lower strain relief defining a plurality of channels, wherein each of the plurality of channels is configured to receive a portion of a lead body and includes a curved portion that extends upward from a proximal end at or near the upper surface of the recessed portion to a distal end at the bone table, and

an upper strain relief configured to cover the plurality of channels of the lower strain relief,

wherein the lower strain relief is configured to one of:

couple to the cover assembly and decouple from the cover assembly, or

couple to the upper surface of the recessed portion and decouple from the upper surface of the recessed portion of the can.

8 . The implantable medical device of claim 7 , wherein the lower strain relief further comprises a generally linear portion that extends from the distal end of the curved portion to a terminating end beyond the perimeter edge of the can.

9 . The implantable medical device of claim 7 , wherein upper strain relief is configured to mechanically couple to and mechanically decouple from the cover assembly.

10 . The implantable medical device of claim 7 , wherein upper strain relief is configured to mechanically couple to and mechanically decouple from the lower strain relief.

11 . The implantable medical device of claim 7 , wherein upper strain relief is configured to mechanically couple to and mechanically decouple from both of the cover assembly and the lower strain relief.

12 . An implantable medical device configured for implant in a hole in cranium of a patient, relative to a bone table corresponding to a surface of the cranium adjacent the hole, the implantable medical device comprising:

a can having an electrical-contact pad, the can characterized by a form factor having a perimeter edge defining a boundary of the can, and a recessed portion with an upper surface positioned to lie beneath the bone table when the can is placed in the hole, and that supports the electrical-contact pad;

a cover assembly having a plurality of ports, each of the plurality of ports configured to receive a connector end of a lead, the cover assembly configured to couple to the can and decouple from the can at the electrical-contact pad; and

a strain relief system comprising:

a lower strain relief defining a plurality of channels, wherein each of the plurality of channels is configured to receive a portion of a lead body and includes a curved portion that extends upward from a proximal end at or near the upper surface of the recessed portion to a distal end at the bone table, and

an upper strain relief configured to mechanically couple to a plurality of leads, and to mechanically couple to and decouple from one or both of the cover assembly and the lower strain relief.

13 . The implantable medical device of claim 12 , wherein the upper strain relief covers the plurality of channels of the lower strain relief.

14 . The implantable medical device of claim 12 , wherein the upper strain relief comprises a sheath.

15 . The implantable medical device of claim 12 , wherein the lower strain relief further comprises a generally linear portion that extends from the distal end of the curved portion to a terminating end beyond the perimeter edge of the can.

16 . The implantable medical device of claim 12 , wherein the upper strain relief includes a curved portion that extends upward from a proximal end to a distal end, and a generally linear portion that extends from the distal end of the curved portion.

Assignments (2)
SECURITY INTEREST Recorded Jun 25, 2025
From: NEUROPACE, INC.
To: MIDCAP FUNDING IV TRUST
Reel/Frame 071712/0422 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2023
From: VANDENBURG, JOSEPH; SOCHOR, JERZY
To: NEUROPACE, INC.
Reel/Frame 063626/0744 →
Continuity (3)
Continuation 16691384 · Nov 21, 2019
Provisional Application 62773116 · Nov 29, 2018
Related Publication 20230277858A1 · Sep 7, 2023
References Cited (4)
US 6810285B2 · Pless et al. · 2004 [cited by applicant]
US 11684788B2 · Vandenburg · 2023 [cited by examiner]
US 20080140149A1 · John et al. · 2008 [cited by applicant]
US 20170151438A1 · Orinski · 2017 [cited by applicant]