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Electrosurgical system
 
   
Document Number
US Patent 7220260
Issued Date
May 22, 2007
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Abstract
An electrosurgical system comprises a generator and an instrument including a first electrode, a second electrode, and an insulating spacer separating the first and second electrodes. The generator repeatedly measures a characteristic of the radio frequency output such as the impedance between the first and second electrodes. The generator analyses the impedance measurements, and interrupts the radio frequency signal when the rate of change of the impedance is such as to indicate the onset of a "flare-out". In this way, the power is reduced before the flare-out leads to permanent damage or failure of the instrument.
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Number of Claims:
2
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Owner
Published
May 22, 2007
Application Number
10/464,778
Filed
June 19, 2003
US Classification
606/39   128/898 606/41 606/48
Int'l Classification
A61B   18/18   (20060101)  
Attorney/Law Firm
Parent Case
This nonprovisional application claims the benefit of U.S. Provisional Application No. 60/402,555, filed Aug. 12, 2002. The entire disclosure of the prior application is hereby incorporated by reference herein in its entirety.
Priority Data
Jun 27, 2002 [GB] 0214907.8
USPTO Field of Search
128/898   606/32   606/33   606/34   606/35   606/36   606/37   606/38   606/39   606/40   606/41   606/42   606/43   606/44   606/45   606/46   606/47   606/48   606/49   606/50  
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7513896 - Dual synchro-resonant electrosurgical apparatus with bi-directional magnetic coupling - Owned by Covidien AG (Neuhausen am Rheinfall,CH)

An electrosurgical generator is disclosed, which includes an RF output stage connected to a DC power supply and first and second connections. The first connection includes a first switching component and a first parallel inductor-capacitor resonant circuit. The second connection includes a second switching components and a second parallel inductor-capacitor resonant circuit. The first and second switching components are configured to open and close at a predetermined frequency based on a phase-correlated dual drive signal emitted by a driver and are in a 180 degree out-of-phase relationship. The first parallel inductor-capacitor resonant circuit is further configured to produce a first half-sinusoidal waveform and the second parallel inductor-capacitor resonant circuit is configured to produce a second half-sin half-sinusoidal waveform. The RF output stage further includes a transformer having a primary winding and a secondary winding and a series inductor-capacitor resonant circuit, which are configured to generate a sinusoidal waveform.

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Description
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