IP Library Granted Patent US 12,357,367
Granted Patent B2
US 12,357,367 · App. 18/067,149 · Granted Jul 15, 2025

Generator for supplying medical instruments

Inventor: Konstantin Dornhof (Horb am Neckar, DE)
Assignee: ERBE ELEKTROMEDIZIN GMBH
A61B18/1206H02M7/538
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Quick Facts
Patent No.
US 12,357,367
App. No.
18/067,149
Granted
Jul 15, 2025
Kind
B2
Abstract

A push-pull generator provided for supply of a medical instrument includes at least one capacitive branch connected to ground, preferably in a switchable configuration, in parallel to at least one of its two transistors. Such a capacitive switchable branch can consist of a series connection of one capacitor and one switch. Thereby one of the two half waves of the output voltage of generator can be specifically influenced and the other one of the two half waves can be left largely uninfluenced. If switchable branches comprising capacitors are connected in parallel to both transistors, both half waves of the output voltage of the generator can be influenced independently from one another. This arrangement allows the specific influence of half oscillations of a push-pull generator that is apart therefrom symmetric, whereby the application spectrum for supply of medical instruments with treatment current is enlarged.

Claims (21)

1. A system for treating a tissue of a patient, the system comprising:

a surgical instrument ( 10 ) configured to treat the tissue ( 11 ) of the patient with at least one electrode ( 13 ) supplied with an electrical current; and

a generator ( 12 ) for supply of the surgical instrument ( 10 ) with the electrical current comprising:

a first amplifier (V 1 ) that comprises a first input electrode (G 1 , S 4 ) and a first output electrode (D 1 );

a second amplifier (V 2 ) that comprises a second input electrode (G 2 , S 5 ) and a second output electrode (D 2 );

an inductor ( 19 ) that is arranged between the first and the second output electrodes (D 1 , D 2 );

a first capacitor (C 1 ) that is connected with the inductor ( 19 ) to form an oscillating circuit; and

a second capacitor (C 2 ) that comprises a first end ( 22 ) connected with the inductor ( 19 ) and a second end ( 23 ) connected with a switch (SW 1 );

a coupling coil (K) inductively connected with the inductor ( 19 ) for supplying the electrical current to the surgical instrument ( 10 ) via an electrical line ( 16 ); and

a control circuit ( 24 ) configured to selectively open and close the switch (SW 1 ) for generating a plurality of different wave forms of the electrical current, wherein the plurality of different wave forms of the electrical current have different physiological effects on the tissue of the patient when applied by the at least one electrode ( 13 ) of the surgical instrument ( 10 );

wherein the first and second amplifiers (V 1 , V 2 ) are connected with a push-pull control circuit ( 18 ).

2. The system according to claim 1 , wherein the first amplifier (V 1 ) is a first field effect transistor (T 1 ), a drain electrode of which is the first output electrode (D 1 ) and the second amplifier (V 2 ) is a second field effect transistor (T 2 ), a drain electrode of which is the second output electrode (D 2 ).

3. The system according to claim 2 , wherein the first input electrode (G 1 ) is a gate electrode of the first field effect transistor (T 1 ) and the second input electrode (G 2 ) is a gate electrode of the second field effect transistor (T 2 ).

4. The system according to claim 1 , wherein the first amplifier (V 1 ) is a first field effect transistor (T 4 ), a drain electrode of which is the first output electrode (D 4 ), the second amplifier (V 2 ) is a second field effect transistor (T 5 ), a drain electrode of which is the second output electrode (D 5 ), the first input electrode (S 4 ) is a source electrode of the first field effect transistor (T 4 ) and the second input electrode (S 5 ) is a source electrode of the second field effect transistor (T 5 ).

5. The system according to claim 1 , wherein the inductor ( 19 ) comprises a center tap ( 20 ) that is connected with an operating voltage source (Ub).

6. The system according to claim 1 , wherein the inductor ( 19 ) is connected by one of its two ends with an operating voltage source (Ub).

7. The system according to claim 1 , wherein the switch (SW 1 ) is configured to selectively either terminate the second end ( 23 ) of the second capacitor (C 2 ) in a high ohmic manner or to connect the second end ( 23 ) to ground.

8. The system according to claim 1 , further comprising at least one additional capacitor (C 3 ) that comprises a first end connected with the inductor ( 19 ) and a second end connected with a second switch (SW 2 ), wherein the second switch (SW 2 ) is configured to selectively either terminate the second end of the at least one additional capacitor (C 3 ) in high ohmic manner or connect the second end to ground.

9. The system according to claim 1 , wherein the first capacitor (C 1 ) is connected in parallel with the inductor ( 19 ).

10. The system according to claim 1 , wherein the first capacitor comprises two sub-capacitors (C 1 a , C 1 b ) that respectively comprise one end connected to the inductor ( 19 ) and one end connected to ground.

11. The system according to claim 10 , wherein the ends of the two sub-capacitors (C 1 a , C 1 b ) connected to ground are respectively inseparably connected to ground.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2022
From: DORNHOF, KONSTANTIN
To: ERBE ELEKTROMEDIZIN GMBH
Reel/Frame 062128/0618 →
Priority Claims (1)
EP 21217016 · Dec 22, 2021 · regional
Continuity (1)
Related Publication 20230198389A1 · Jun 22, 2023
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