IP Library Granted Patent US 9,770,287
Granted Patent B2
US 9,770,287 · App. 14/268,187 · Granted Sep 26, 2017

System and method for delivering high current to electrosurgical device

Inventor: Duane E. Kerr (Loveland, CO)
Assignee: COVIDIEN LP
A61B18/1445A61B18/1206A61B18/1442A61B2018/00083A61B2018/1286A61B2018/1467
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Quick Facts
Patent No.
US 9,770,287
App. No.
14/268,187
Granted
Sep 26, 2017
Kind
B2
Abstract

An electrosurgical system is disclosed. The system includes an electrosurgical generator adapted to supply electrosurgical power and an electrosurgical device coupled to the electrosurgical generator. The electrosurgical device includes a transformer and one or more active electrodes coupled thereto, wherein the transformer is adapted to step down the voltage of the power supplied by the electrosurgical generator.

Claims (23)

1. An electrosurgical system, comprising:

an electrosurgical generator adapted to supply electrosurgical power, the electrosurgical generator including an isolation transformer; and

an electrosurgical device coupled to the electrosurgical generator, the electrosurgical device including:

a housing;

a shaft extending from the housing having an end-effector assembly disposed at a distal end thereof, the end-effector assembly including first and second jaw members, the first jaw member including an active electrode and the second jaw member including a return electrode; and

a step-down transformer disposed at the distal end of the shaft in proximity to the first and second jaw members, the step-down transformer including a primary winding coupled to the isolation transformer and a secondary winding coupled to an active lead of the active electrode and a return lead of the return electrode.

2. The electrosurgical system according to claim 1 , wherein the end effector assembly is configured to deliver electrosurgical energy from the active electrode, through tissue positioned between the first and second jaw members, to the return electrode.

3. The electrosurgical system according to claim 1 , wherein the step-down transformer is adapted to step down the voltage of the electrosurgical power supplied by the electrosurgical generator.

4. The electrosurgical system according to claim 1 , wherein the electrosurgical device is a bipolar device.

5. The electrosurgical system according to claim 4 , wherein the bipolar device is an electrosurgical forceps.

6. An electrosurgical instrument configured to couple to an electrosurgical generator adapted to supply electrosurgical power to the electrosurgical instrument, the electrosurgical instrument comprising:

a housing;

a shaft extending from the housing having an end-effector assembly disposed at a distal end thereof, the end-effector assembly including first and second jaw members, the first jaw member including an active electrode and the second jaw member including a return electrode; and

a step-down transformer disposed at the distal end of the shaft in proximity to the first and second jaw members, the step-down transformer adapted to step down a voltage of electrosurgical power supplied by an electrosurgical generator and including a primary winding configured to couple to an isolation transformer and a secondary winding coupled to an active lead of the active electrode and a return lead of the return electrode.

7. The electrosurgical instrument according to claim 6 , wherein the end effector is configured to deliver electrosurgical energy to tissue positioned between the first and second jaw members.

8. The electrosurgical instrument according to claim 6 , wherein the electrosurgical instrument is an electrosurgical forceps.

9. A method for transmitting electrosurgical energy, the method comprising:

transmitting electrosurgical power supplied by an electrosurgical generator to an electrosurgical device including a step-down transformer and at least one active electrode coupled thereto, the step-down transformer adapted to step down a voltage of the electrosurgical power supplied by the electrosurgical generator and including a primary winding configured to couple to an isolation transformer and further including a secondary winding coupled to the at least one active electrode; and

stepping down the voltage of the electrosurgical power supplied by the electrosurgical generator prior to transmitting the electrosurgical power to the at least one active electrode.

10. The method according to claim 9 , wherein transmitting electrosurgical power supplied by the electrosurgical generator to the electrosurgical device further includes the electrosurgical device further including a shaft having first and second jaw members disposed at a distal end thereof.

11. The method according to claim 10 , wherein transmitting electrosurgical power supplied by the electrosurgical generator to the electrosurgical device further includes the step-down transformer disposed at the distal end of the shaft in proximity to the first and second jaw members.

12. The method according to claim 9 , further comprising reading an identifier associated with the electrosurgical device, the identifier adapted to store ratio data relating to a step down ratio of the step-down transformer.

13. The method according to claim 9 , further comprising adjusting electrosurgical power at the electrosurgical generator based on ratio data.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2014
From: KERR, DUANE E.
To: TYCO HEALTHCARE GROUP LP
Reel/Frame 032808/0840 →
CHANGE OF NAME Recorded May 2, 2014
From: TYCO HEALTHCARE GROUP LP
To: COVIDIEN LP
Reel/Frame 032815/0509 →
Continuity (2)
Continuation 12249218 · Oct 10, 2008
Related Publication 20140243815A1 · Aug 28, 2014