IP Library › Granted Patent US 11,324,542
Granted Patent B2
US 11,324,542 · App. 16/101,564 · Granted May 10, 2022

RF generator for an electrosurgical instrument

Inventors: Alan G Ellman (Hewlett, NY); Alfredo Micalizzi (Oceanside, NY)
A61B18/1206A61B90/08A61B90/98A61B2018/00589A61B2018/00601A61B2018/00607A61B2018/00642A61B2018/00708A61B2018/00767A61B2018/00779A61B2018/00791A61B2018/00827A61B2018/00875A61B2018/00892A61B2018/00988A61B2018/126A61B2018/1253A61B2090/0803
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Quick Facts
Patent No.
US 11,324,542
App. No.
16/101,564
Granted
May 10, 2022
Kind
B2
Abstract

A device is provided for generating RF power for an electrosurgical instrument, wherein the circuit provides the electrosurgical current according to a specified set of predefined parameters. The invention further includes at least one read and write RFID that reads information from a RFID tag. The circuit changes the parameters based on the information.

Claims (60)

1. A device for generating RF power for an electrosurgical instrument, said device comprising:

a power supply;

a circuit that generates electrosurgical current for the electrosurgical instrument, wherein the circuit is programmed to provide the electrosurgical current according to a specified set of predefined parameters, the circuit comprising a waveform generation module that outputs a waveform that is an AC signal,

wherein the waveform is amplified with a first amplification, an output of the first amplification being provided as a gate voltage to a gate bias for a power MOSFET thereby gating a voltage provided by the power supply such that the output of the first amplification is amplified to the voltage of the power supply;

a housing encapsulating the circuit, wherein the housing has at least one plug receptacle electrically connected to the circuit and defining a plug receptacle surface, wherein the plug receptacle includes a predetermined prong configuration and includes a read and write RFID positioned proximate the plug receptacle surface and internal of the housing, and;

wherein the electrosurgical instrument has a plug with a predefined prong configuration that is configured to mate with the predetermined prong configuration of at least one of the plug receptacles so that the plug electrically connects to at least one of the plug receptacles in the housing, wherein the plug further includes:

an RFID tag encoded with information thereon;

a base portion in which the RFID tag is located, wherein the RFID tag is positioned proximate and in communication with the read and write RFID when the plug is in electrical connection with the plug receptacle;

and

wherein the read and write RFID communicates with the RFID when the plug is connected to the plug receptacle; and

wherein the circuit changes the parameters based on the information.

2. The device of claim 1 , further comprising:

wherein the information is a number of times the electrosurgical instrument has been used in a surgery; and

the power supply of the circuit ceases providing power to the electrosurgical instrument after the electrosurgical instrument has been used a predetermined number of times.

3. The device of claim 1 , wherein the information is a type of surgical procedure for which the electrosurgical instrument is designed.

4. The device of claim 1 , wherein the parameters are a member of a set consisting of power level, mode, monopolar setting, or bipolar setting.

5. The device of claim 1 , further comprising:

an external internet connection connected to the read and write RFID;

wherein the read and write RFID receives update information from the external internet connection regarding the electrosurgical instrument; and

wherein the read and write RFID writes the update information to the RFID tag.

6. The device of claim 1 , further comprising:

wherein the information is whether the electrosurgical device is permitted to be used with the circuit; and

wherein the power supply does not provide power to the electrosurgical instrument if the electrosurgical device is not permitted to be used with the circuit.

7. The device of claim 6 , wherein:

the RFID tag includes an encrypted license number;

wherein the circuit contains a lookup table of approved license numbers; and

wherein the power supply does not provide power to the electrosurgical instrument if the license number in the RFID tag is not found in the lookup table.

8. The device of claim 6 , further comprising:

a GPS location component in the circuit that provides a location of the circuit;

a lookup table including a listing of approved locations stored in the circuit;

wherein the power supply does not provide power to the electrosurgical instrument if the circuit is located in a location other than the approved locations.

9. The device of claim 8 , further comprising:

an Internet connection component in the circuit; and

wherein the lookup table is updated with update information from the Internet connection.

10. The device of claim 9 , wherein a plurality of SUB ON and SUB OFF states creating the sub-discrete packets has a frequency between 3 kHz and 19 kHz.

11. The device of claim 10 , wherein a plurality of second level SUB ON and second level SUB OFF states creating the second level sub-discrete packets has a frequency of 2 MHz.

12. The device of claim 11 , wherein the power of the electrical signal to the electrosurgical instrument is in a range of between 40 and 200 watts.

13. The device of claim 1 , the electrosurgical instrument further comprising:

at least one sensing device disposed within said electrical instrument, said sensing device configured to collect electrical power usage signals from the electrical instrument that represents an amount of power being distributed to an operative field by the electrosurgical instrument; and

a feedback circuit in electrical connection with the sensing device to receive electrical power usage signals and adjusting the output signal to the electrosurgical instrument to keep the amount of power at the operative field substantially constant.

14. The circuitry of claim 13 , wherein the sensing device measures an impedance in the electrical instrument and wherein the feedback circuit comprises an algorithm utilizing the impedance to adjust the voltage supply input to an amplifier.

15. The circuitry of claim 13 , wherein the sensing device measures voltage and current and wherein the feedback circuit comprises an algorithm utilizing a reading from the voltage and current to adjust the voltage supply input to an amplifier.

16. The circuitry of claim 9 , wherein the electrosurgical instrument comprises a monopolar handpiece.

17. The circuitry of claim 9 , wherein the electrosurgical instrument comprises a bipolar handpiece.

18. The circuitry of claim 1 , wherein a discrete packets of the waveform are formed within a modulation envelope said modulation envelope having a shape of one of a group of rectangular, triangular, saw tooth, non-uniform, stair-step, ascending, descending and oval.

19. The circuitry of claim 13 , wherein the sensing device is a temperature sensor and wherein the feedback circuit comprises an algorithm utilizing a reading from the temperature sensor to adjust the voltage supply input to an amplifier.

20. A device for generating RF power for an electrosurgical instrument, said device comprising:

a power supply;

a circuit that generates electrosurgical current for the electrosurgical instrument, wherein the circuit includes:

a GPS location component therein that provides a location of the circuit, and

a lookup table including a listing of approved locations stored in the circuit;

wherein the circuit is programmed to provide the electrosurgical current according to a specified set of predefined parameters, the circuit comprising a waveform generation module that outputs a waveform that is an AC signal;

wherein the waveform is amplified with a first amplification, an output of the first amplification being provided as a gate voltage to a gate bias for a power MOSFET thereby gating a voltage provided by the power supply such that the output of the first amplification is amplified to the voltage of the power supply;

a housing encapsulating the circuit, wherein the housing has a plug receptacle electrically connected to the circuit, wherein the plug receptacle includes a read and write RFID positioned proximate a surface of the housing, and;

wherein the electrosurgical instrument has a plug that electrically connects to the plug receptacle in the housing, wherein the plug further includes:

an RFID tag containing information concerning the electrosurgical instrument;

wherein the RFID tag is positioned proximate and in communication with the read and write RFID when the plug is in electrical connection with the plug receptacle; and

wherein the read and write RFID communicates with the RFID when the plug is connected to the plug receptacle; and

wherein the circuit changes the parameters based on the information, and

wherein the power supply does not provide power to the electrosurgical instrument if the circuit is located in a location other than the approved locations.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2018
From: ELLMAN, ALAN G.; PIKRAMENOS, JOHN; MICALIZZI, ALREDO
To: ELLIQUENCE, LLC
Reel/Frame 046805/0001 →
Continuity (1)
Related Publication 20200046416A1 · Feb 13, 2020