IP Library Granted Patent US 9,271,792
Granted Patent B2
US 9,271,792 · App. 14/579,560 · Granted Mar 1, 2016

Peripheral switching device for microwave energy platforms

Inventor: Joseph D. Brannan (Erie, CO)
Assignee: Covidien LP
A61B18/1815A61B2017/00393A61B2018/1823
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,271,792
App. No.
14/579,560
Granted
Mar 1, 2016
Kind
B2
Abstract

An electrosurgical system includes a power source, a microwave applicator, a switching mechanism, and a controller. The power source is configured to generate microwave energy. The microwave applicator is configured to deliver microwave energy from the power source to tissue. The switching mechanism includes a housing having input and output ports. The input port is connectable to the power source and the output port is connectable to the microwave applicator. The housing is configured to house one or more switches therein. The controller is in operative communication with the switching mechanism to toggle the switch from a first state, wherein microwave energy generated by the power source is directed to the microwave applicator to a second state, wherein microwave energy is directed to a resistive load operably coupled to the switching mechanism.

Claims (36)

1. An electrosurgical system, comprising:

a power source configured to generate microwave energy;

a microwave applicator configured to deliver microwave energy from the power source to tissue;

a switching mechanism configured to be coupled with the power source and the microwave applicator and including at least one switch, wherein the at least one switch is at least one of an absorptive/reflector pin diode attenuator, a digital programmable step attenuator, or a single pole dual throw switch;

a resistive load operably coupled to the switching mechanism; and

a controller configured to toggle the switching mechanism between a first state, wherein the switching mechanism directs microwave energy generated by the power source to the microwave applicator, and a second state, wherein the switching mechanism directs microwave energy to the resistive load.

2. The electrosurgical system according to claim 1 , wherein the switching mechanism includes:

a housing having the least one switch and the resistive load disposed therein;

an input port supported on the housing and configured to be coupled to the power source; and

an output port supported on the housing and configured to be coupled to the microwave applicator.

3. The electrosurgical system according to claim 1 , wherein the controller includes a finger-switch.

4. The electrosurgical system according to claim 3 , wherein the finger-switch is operably disposed on the microwave applicator.

5. The electrosurgical system according to claim 1 , wherein the controller includes a footswitch and the switching mechanism includes a port that is configured to be connected to the footswitch via a cable.

6. The electrosurgical system according to claim 1 , wherein the switching mechanism is configured to communicate wirelessly with the controller.

7. An in-line switching mechanism configured to provide communication between a microwave generator and a microwave antenna, the in-line switching mechanism comprising:

at least one switch, wherein the at least one switch is at least one of an absorptive/reflector pin diode attenuator, a digital programmable step attenuator, or a single pole dual throw switch;

a resistive load operably coupled to the at least one switch; and

at least one microprocessor configured to receive an activation signal generated by the microwave antenna to toggle the at least one switch between a first state, wherein the at least one switch directs microwave energy generated by the microwave generator to the microwave antenna, and a second state, wherein the at least one switch directs microwave energy to the resistive load.

8. The in-line switching mechanism according to claim 7 , further comprising:

a housing having the at least one switch and the resistive load disposed therein;

an input port supported on the housing and configured to be coupled to the power source; and

an output port supported on the housing and configured to be coupled to the microwave applicator.

9. An electrosurgical system, comprising:

a microwave generator;

a microwave antenna configured to deliver microwave energy to tissue;

a switching mechanism including:

at least one switch, wherein the at least one switch is at least one of an absorptive/reflector pin diode attenuator, a digital programmable step attenuator, or a single pole dual throw switch;

a resistive load operably coupled to the at least one switch; and

at least one microprocessor in operable communication with the at least one switch; and

a controller in operative communication with the at least one microprocessor and configured to provide a command signal to the at least one microprocessor, wherein upon receipt of the command signal by the at least one microprocessor, the at least one microprocessor toggles the at least one switch between a first state, wherein the at least one switch directs microwave energy to the microwave antenna, and a second state, wherein the at least one switch directs microwave energy to the resistive load.

10. The electrosurgical system according to claim 9 , wherein the switching mechanism further includes:

a housing having the at least one switch and the resistive load disposed therein;

an input port supported on the housing and configured to be coupled to the microwave generator; and

an output port supported on the housing and configured to be coupled to the microwave antenna.

11. The electrosurgical system according to claim 9 , wherein the controller includes a finger-switch operably disposed on the microwave antenna.

12. The electrosurgical system according to claim 9 , wherein the controller includes a footswitch and the switching mechanism further includes a port that is configured to be connected to the footswitch via a cable.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2014
From: BRANNAN, JOSEPH D.
To: VIVANT MEDICAL, INC.
Reel/Frame 034599/0358 →
Continuity (2)
Continuation 13464021 · May 4, 2012
Related Publication 20150112320A1 · Apr 23, 2015