Shock wave generator for an extracorporeal lithotripsy device
First Claim
1. A shock wave generator for extracorporeal lithotripsy comprising:
- a housing having a volume filled with a shock wave transmissive medium;
a membrane assembly closing one end of said volume and including a carrier disposed adjacent said volume and having a perimeter at least a portion of which is held to said housing and an electrically conductive section held to said carrier distal said volume and spaced from said perimeter, said perimeter having a substantially elastically yielding region;
a high voltage supply;
an insulating foil;
an electrically conductive coil attached to said housing and having winding arranged in a surface parallel to said membrane assembly on the side of said carrier to which said electrically conductive section is held with said insulating foil disposed between said coil and said electrically conductive section, said coil having terminals connected to said high voltage supply so that said coil generates a magnetic field in a first direction, said electrically conductive section of said membrane assembly being electrically insulated from said terminals of said coil and said windings of said coil;
said coil inducing a current in said electrically conductive section of said membrane assembly to generate a magnetic field in a direction to repel said membrane assembly from said coil to generate a shock wave in said medium.
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Accused Products
Abstract
A shock wave generator suitable for use in an extracorporeal lithotripsy device to disintegrate calculi in a life form in vivo has a flat coil connectable to a high voltage supply, a membrane assembly disposed opposite the coil and a housing, closed on one side by the membrane, filled with a shock wave transmissive fluid. The membrane assembly has a carrier plate of electrically insulating material, and an electrically conductive section applied at one side of the carrier. The membrane assembly is connected to the housing at its edge. The material of the carrier is insensitive to cavitation, and the carrier is elastically yielding at least in the region of its edge. The electrically conductive section is electrically insulated from the terminals of the coil, and the membrane assembly is attached to the housing so that the electrically conductive section faces the flat coil.
9 Citations
9 Claims
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1. A shock wave generator for extracorporeal lithotripsy comprising:
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a housing having a volume filled with a shock wave transmissive medium; a membrane assembly closing one end of said volume and including a carrier disposed adjacent said volume and having a perimeter at least a portion of which is held to said housing and an electrically conductive section held to said carrier distal said volume and spaced from said perimeter, said perimeter having a substantially elastically yielding region; a high voltage supply; an insulating foil; an electrically conductive coil attached to said housing and having winding arranged in a surface parallel to said membrane assembly on the side of said carrier to which said electrically conductive section is held with said insulating foil disposed between said coil and said electrically conductive section, said coil having terminals connected to said high voltage supply so that said coil generates a magnetic field in a first direction, said electrically conductive section of said membrane assembly being electrically insulated from said terminals of said coil and said windings of said coil;
said coil inducing a current in said electrically conductive section of said membrane assembly to generate a magnetic field in a direction to repel said membrane assembly from said coil to generate a shock wave in said medium. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9)
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Specification