EP1566645A2

Method and system for continuity testing of medical electrodes

Abstract

An electrosurgical generator is provided which includes a continuity test circuit assembly for testing electrical continuity through an electrode of an electrosurgical instrument. The continuity test circuit assembly includes a test power source providing electrical test energy to a first conductor which is in electrical communication with the electrode and the electrosurgical generator and to at least one second conductor which is coupled to the first conductor for providing a path for current to flow between the first conductor and the at least one second conductor for establishing a test path through which the test energy flows between the first conductor and at least one conductor of the at least one second conductor. The continuity test circuit assembly further includes energy detection circuitry positioned along the test path for detecting the flow of the test energy through the test path for determining electrical continuity through the electrode.

EP1566645A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 10 February 2025, 1.6 years ago.

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26 claims: 10 independent, 16 dependent

  1. 1
    A continuity test circuit assembly for testing electrical continuity between an electrosurgical generator generating electrosurgical energy and an electrode of at least one electrode of an electrosurgical instrument for receiving the electrosurgical energy and delivering the electrosurgical energy to tissue, the continuity test circuit assembly comprising:a first conductor coupling the electrode to the electrosurgical generator;at least one second conductor in electrical communication with a test power source providing electrical test energy and with the electrode for forming a test path;energy detection circuitry positioned along the test path for detecting the flow of the test energy through the test path for determining continuity status;switching circuitry positioned along the test path for selectively closing the test path for enabling a flow of test energy through the test path;and a control module for controlling the switching circuitry for controlling flow of the test energy through the test path.
  2. 6
    A continuity test circuit assembly according to any one of the preceding claims, wherein the energy detection circuitry provides electrical isolation to the test energy from circuitry through which electrosurgical energy flows.
  3. 7
    A continuity test circuit assembly according to any one of the preceding claims, further comprising second switching circuitry for selecting one of the at least one second conductors to be included in the test path.
  4. 9
    A continuity test circuit assembly according to any one of the preceding claims, wherein the at least one second conductor includes at least a pair of thermocouple wires.
  5. 10
    A continuity test circuit assembly according to any one of the preceding claims, wherein the switching circuitry is provided along at least one of the first conductor, the at least one second conductor and the test power source.
  6. 11
    A continuity test circuit assembly according to any one of the preceding claims, wherein at least one of the test power source, energy detection circuitry and the switching circuitry are disposed within the electrosurgical generator.
  7. 12
    A continuity test circuit assembly according to any one of the preceding claims, wherein the test power source derives power from a power source of the electrosurgical generator.
  8. 13
    A continuity test circuit assembly according to any one of the preceding claims, wherein the test energy provided by the test power source is substantially lower than the energy delivered by the electrosurgical generator.
  9. 14
    An electrosurgical generator for generating electrosurgical energy which is provided to an electrosurgical instrument having at least one electrode for delivery of the electrosurgical energy to tissue, the electrosurgical generator comprising:a continuity test circuit assembly for testing electrical continuity between the electrosurgical generator and an electrode of the at least one electrode of the electrosurgical instrument, the continuity test circuit assembly comprising: a test power source providing electrical test energy to a first conductor which is in electrical communication with the electrode and the electrosurgical generator and to at least one second conductor which is coupled to the first conductor for providing a path for current to flow between the first conductor and the at least one second conductor for establishing a test path through which the test energy flows between the first conductor and at least one conductor of the at least one second conductor;and energy detection circuitry positioned along the test path for detecting the flow of the test energy through the test path for determining electrical continuity through the electrode.
  10. 20
    An electrosurgical generator according to any one of claims 14 to 19, wherein the energy detection circuitry provides electrical isolation to the test energy from circuitry through which electrosurgical energy flows.
  11. 21
    An electrosurgical generator according to any one of claims 14 to 20, wherein the continuity test circuit assembly further comprises second switching circuitry for selecting one of the at least one second conductors to be included in the test path.
  12. 23
    An electrosurgical generator according to any one of claims 14 to 22, wherein the at least one second conductor includes at least a pair of thermocouple wires.
  13. 24
    A method for testing continuity between an electrosurgical generator generating electrosurgical energy and an electrode for receiving the electrosurgical energy and delivering the electrosurgical energy to tissue comprising the steps of:applying a test energy to a first conductor coupled between the electrosurgical generator and the electrode and at least one second conductor;coupling the at least one second conductor to the first conductor for providing a path for current to flow between the first conductor and the at least one second conductor for establishing a test path through which the test energy flows between the first conductor and at least one of the at least one second conductor;and detecting a flow of electrical test energy along the test path, the flow being indicative of continuity status.
Independent claims13