EP0343402A2

Connector pin assembly and method of fabrication.

Abstract

A cardiac pacing lead having a plurality of individually insulated conductors arranged as a multifilar coil. The lead includes a connector assembly (16) and a ring electrode assembly (18), each of which are optimized for use in conjunction with conductors arranged in the form of a multifilar coil (34). The connector assembly takes the form of an in-line connector having a plurality of linearly arranged connecting surfaces, each coupled to one of the conductors in the multifilar coil. The ring electrode assembly is constructed such that it displays the same outer diameter as the pacing lead. In both assemblies, conductors are coupled by means of welds, rather than by crimping or swaging.

EP0343402A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 2 May 2009, 17.4 years ago.

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  2. Filed
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18 claims: 4 independent, 14 dependent

  1. 1
    A method of fabricating an in-line, multipolar electrical connector, comprising the steps of:selecting an elongated conductive connector pin having a proximal end and a distal end and a multipolar conductor wire including at least first and second conductors;mounting a conductive first connector ring and a first insulative sleeve around said connector pin, such that said first insulative sleeve separates said connector pin from said first connector ring, and the distal end of said first connector ring is proximal to the distal end of said connector pin;electrically coupling said first conductor to the distal end of said connector pin;after said coupling step, mounting a conductive extension to the distal end of said connector ring, said conductive extension extending distal to the distal end of said connector pin;and after said step of mounting said extension to said connector ring, electrically coupling at least said second conductor to the distal end of said conductive extension.
  2. 8
    A connector pin assembly, comprising:an elongated conductive connector pin having a proximal end and a distal end;a first insulative sheath coaxially mounted around said connector pin, said first insulative sheath terminating proximal to the distal end of said connector pin;first connector ring mounted around said first insulative sheath, said first connector ring having a proximal end a distal end, the distal end of said first connector ring terminating proximal to the distal end of said connector pin;a first conductive extension electrically and mechanically coupled to the distal end of said connector ring and extending distally therefrom;a first electrical conductor coupled to the distal end of said connector pin;and a second conductor electrically and mechanically coupled to the distal end of said extension.
  3. 13
    A ring electrode assembly for use in a medical electrical lead, comprising:an elongated coiled conductor;an elongated, insulative sleeve having a proximal end and a distal end, said sleeve bonded to and conforming to the outer surface of said conductor coil;a cylindrical electrode ring mounted coaxially about said insulative sleeve, such that the proximal and distal ends of said insulative sleeve extend from said cylindrical electrode, said cylindrical electrode electrically coupled to said conductor coil, said cylindrical electrode bonded to the outer surface of said insulative sleeve;first insulative sheath extending proximally from said cylindrical electrode, said first insulative sheath bonded to and surrounding the exterior of said proximal end of said insulative sleeve;and second insulative sheath extending distally from said cylindrical electrode, said second insulative sheath bonded to and surrounding the distal end of said insulative sleeve.
  4. 16
    A method for fabricating an electrode for a medical electrical lead, comprising the steps of:selecting a multifilar coil having at least two conductors and terminating one of the conductors intermediate the ends of the coil;selecting a generally cylindrical sleeve of a thermoplastic material, having an internal lumen and a bore perpendicular to the internal lumen and sliding said sleeve over said multifilar coil and bringing the end of said terminated conductor out through said bore;placing said sleeve and coil into a mold and applying heat, causing said sleeve to bond to said multifilar coil and to flow between the conductors of said multifilar coil;sliding a cylindrical ring electrode over said sleeve intermediate the proximal and distal ends of said sleeve and electrically coupling said end of said terminated conductor to said cylindrical electrode;and sliding first and second insulative sheaths over the proximal and distal ends of said sleeve, respectively, placing said ring electrode and the ends of said first and second sleeves into a mold and applying heat to bond said sleeve to said electrode and to said first and second sheaths.