Automatic control system for an electrosurgical generator
First Claim
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1. A system for controlling an output of an electrosurgical generator comprising:
- a drive circuit for generating an output, the output being responsive to a feedback signal and operatively coupled to at least one electrode of the electrosurgical generator;
at least one sensing circuit operatively coupled to the at least one electrode for generating a first signal corresponding to a value of a voltage waveform present on the at least one electrode and a second signal corresponding to a value of a current waveform present on the at least one electrode;
a processing circuit for receiving the first and second signals, wherein the processing circuit implements the Goertzel algorithm for determining a phase of each of the voltage waveform and the current waveform;
a determining circuit in communication with the processing circuit for generating an output signal as a function of a phase difference between the voltage waveform and the current waveform; and
a control circuit for generating a feedback signal, the feedback signal representative of a difference between a value of the output signal and a reference value, the feedback signal operatively coupled to the drive circuit.
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Abstract
An automatic control system for an electrosurgical generator is herein disclosed. The automatic control system includes voltage and current sensing circuits, a processing circuit, an output determining circuit, and a control circuit. Samples of the voltage and current outputs are supplied to the processing circuit and the output determining circuit to generate an output signal. The output signal is compared to a reference signal to generate a feedback signal for controlling a drive circuit.
1192 Citations
13 Claims
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1. A system for controlling an output of an electrosurgical generator comprising:
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a drive circuit for generating an output, the output being responsive to a feedback signal and operatively coupled to at least one electrode of the electrosurgical generator; at least one sensing circuit operatively coupled to the at least one electrode for generating a first signal corresponding to a value of a voltage waveform present on the at least one electrode and a second signal corresponding to a value of a current waveform present on the at least one electrode; a processing circuit for receiving the first and second signals, wherein the processing circuit implements the Goertzel algorithm for determining a phase of each of the voltage waveform and the current waveform; a determining circuit in communication with the processing circuit for generating an output signal as a function of a phase difference between the voltage waveform and the current waveform; and a control circuit for generating a feedback signal, the feedback signal representative of a difference between a value of the output signal and a reference value, the feedback signal operatively coupled to the drive circuit. - View Dependent Claims (2, 3, 4, 5)
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6. A system for controlling an output of an electrosurgical generator comprising:
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a drive circuit for generating an output, the output being responsive to a feedback signal from at least one electrode operatively coupled to the electrosurgical generator; at least one sensing circuit operatively coupled to the at least one electrode that generates a first signal corresponding to a value of a voltage waveform present on the at least one electrode and a second signal corresponding to a value of a current waveform present on the at least one electrode; a processing circuit that receives the first and second signals, wherein the processing circuit implements the Goertzel algorithm for determining a phase of each of the voltage waveform and the current waveform; and a determining circuit in communication with the processing circuit that generates an output signal as a function of a phase difference between the voltage waveform and the current waveform. - View Dependent Claims (7, 8, 9, 10, 11)
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12. A method for controlling an output of an electrosurgical generator comprising the step of:
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generating an output through at least one electrode operatively coupled to the electrosurgical generator, the output being responsive to a feedback signal; generating a first signal corresponding to a value of a voltage waveform present on the at least one electrode and a second signal corresponding to a value of a current waveform present on the at least one electrode; processing the first and second signals using the Goertzel algorithm to determine a phase of each of the voltage waveform and the current waveform; and generating an output signal as a function of a phase difference between the voltage waveform and the current waveform. - View Dependent Claims (13)
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Specification