EP2563471A2

Method of making header for implantable pulse generator

Abstract

This record has no abstract on file.

Term

Projected expiry 25 April 2031.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

28 claims: 8 independent, 20 dependent

  1. 1
    Claims of equivalent WO 2011139632 A2 CLAIMS 1. A method of manufacturing a header for an implantable pulse generator comprising:a. forming a plurality of spring contact rings, each spring contact ring having a bore;a plurality of ring seals, each ring seal having a bore;a sleeve having a wall surrounding a bore;and a strain relief having a bore;b. forming a subassembly by (a) inserting at least some of the plurality of spring contact rings and at least some of the plurality of ring seals into the bore of the sleeve such that each spring contact ring is separated from any adjacent spring contact ring by a ring seal, and (b) . inserting at least a portion of the strain relief into the bore of the sleeve to secure the spring contact rings and ring seals in a position in which adjacent spring contact rings and ring seals are in contact with each other and the bores through the strain relief and each of the spring contact rings and rings seals of the subassembly are aligned with each other;c. inserting a molding pin through the bores of the strain relief and each of the spring contact rings and ring seals of the subassembly;d. overmolding the subassembly to lock the spring contact rings, ring seals and strain relief of the subassembly in position;and e. removing the molding pin.
  2. 18
    A method of manufacturing a header for an implantable pulse generator comprising:a. forming a plurality of spring contact rings, each spring contact ring having a bore;a sleeve having wall surrounding a bore;and a strain relief having a bore;b. forming a plurality of ring seals, each ring seal having a deformable outer wall, a deformable inner wall defining a bore through the ring seal, a pair of side walls, and a rigid core having exposed portions along each of the sidewalls;c. forming a subassembly by (a) inserting at least some of the plurality of spring contact rings and at least some of the plurality of ring seals into the bore of the sleeve such that each spring contact ring is separated from any adjacent spring contact ring by at least one ring seal and a minimum distance is maintained between adjacent spring contact rings by the rigid core of at least one ring seal, and (b) inserting at least a portion of the strain relief into the bore to secure the spring contact rings and ring seals in a position in which adjacent spring contact rings and ring seals are in contact with each other and the bores through the strain relief and each of the spring contact rings and rings seals of the subassembly are aligned with each other;d. inserting a molding pin through the bores of the strain relief and each of the spring contact rings and ring seals of the subassembly;e. overmolding the subassembly to lock the spring contact rings, ring seals and strain relief of the subassembly in position;and f. removing the molding pin.
  3. 20
    A method of manufacturing a header for an implantable pulse generator comprising:a. forming a plurality of ring seals, each ring seals having a bore;a sleeve having a wall surrounding a bore;and a strain relief having a bore;b. forming a plurality of spring contact rings, each spring contact rings having an outer ring and a spring having spiral, radial cut spring fingers;c. forming a subassembly by (a) inserting at least some of the plurality of spring contact rings and at least some of the plurality of ring seals into the bore of the sleeve such that each spring contact ring is separated from any adjacent spring contact ring by at least one ring seal, and (b) inserting at least a portion of the strain relief into the bore to secure the spring contact rings and ring seals in a position in which adjacent spring contact rings and ring seals are in contact with each other and the bores through the strain relief and each of the spring contact rings and rings seals of the subassembly are aligned with each other;d. inserting a molding pin through the bores of the strain relief and each of the spring contact rings and ring seals of the subassembly;e. overmolding the subassembly to lock the spring contact rings, ring seals and strain relief of the subassembly in position;and f. removing the molding pin.
  4. 21
    A method of manufacturing a header for an implantable pulse generator comprising:a. forming a plurality of spring contact rings, each spring contact ring having a bore;a plurality of ring seals, each ring seal having a bore;a sleeve havi.ng a wall surrounding a bore;and a strain relief having a bore;b. forming a subassembly by (a) inserting at least some of the plurality of spring contact rings and at least some of the plurality of ring seals into the bore of the sleeve such that each spring contact ring is separated from any adjacent spring contact ring by a ring seal, and (b) inserting at least a portion of the strain relief into the bore of the sleeve to secure the spring contact rings and ring seals in a position in which adjacent spring contact rings and ring seals are in contact with each other and the bores through the strain relief and each of the spring contact rings and rings seals of the subassembly are aligned with each other;c. forming a header casing having a bore sized to receive the subassembly, d. inserting the subassembly into the bore of the header casing;and e. exposing the header casing and subassembly to an annealing temperature which partially collapses the wall of the sleeve to thereby lock the spring contact rings, ring seals and strain relief of the subassembly in position with respect to each other and electrically isolate each of the spring contact rings of the subassembly from each other through the cooperation of the wall of the sleeve and the ring seals of the subassembly .
  5. 22
    A method of manufacturing a header for an implantable pulse generator comprising:a. forming a plurality of spring contact rings, each spring contact ring having a bore;a plurality of ring seals, each ring seal having a bore;and a strain relief having a bore;b. forming a header casing having a bore;c. forming a subassembly by (a) inserting at least some of the plurality of spring contact rings and at least some of the plurality of ring seals into the bore of the header casing such that each spring contact ring is separated from any adjacent spring contact ring by a ring seal, and (b) inserting at least a portion of the strain relief into the bore of the header casing to secure the spring contact rings and ring seals in a position in which adjacent spring contact rings and ring seals are in contact with each other and the bores through the strain relief and each of the spring contact rings and rings seals of the subassembly are aligned with each other;d. inserting the subassembly into the bore of the header casing and locking the subassembly in place.
  6. 24
    A spring contact ring comprising:a. an outer ring comprising a wall surrounding a bore, the inside surface of the bore having a flange and an stop surface, and b. a spring comprising a base engaging the flange and a plurality of a spiral, radial cut spring fingers, each of the fingers having a and electrical contact zone and free to flex within area of the bore between the longitudinal axis of the bore and the stop surface as a pin is inserted into the bore.
  7. 25
    A seal having a center bore comprising:a. a rigid core made of a first material and including a ring-shaped base and a plurality of stops, having exposed portions, extending outwardly from the base, b. a cover, made of a second material softer than the first material, which encapsulates portions of the rigid core other than the exposed portions of the stops, the cover having an inner portion and an outer portion, wherein the core inhibits compressive forces deforming one of the portions from substantially deforming the other of the portions.
  8. 26
    A sleeve comprising:a. a cylindrical wall having first and second ends and surrounding a bore, the wall having a plurality of windows , b. a plurality of locking channels extending inwardly from the first end of the wall, each of the locking channels including a straight section extending from the first end of the wall toward the second end and a camming section projecting at an angle from the straight section.