Electronic ballast for at least one lamp
The present invention relates to an electronic ballast for at least one lamp (La) having at least one first switch (S 1 ), the first switch (S 1 ) having at least one working terminal (A 1 ), a reference terminal (B 1 ) and a control input terminal (St 1 ), and at least one auxiliary unit ( 10 ), the auxiliary unit ( 10 ) having a supply terminal (V 1 ), the supply terminal (V 1 ) of the auxiliary unit ( 10 ) being coupled to the working terminal (A 1 ) of the first switch (S 1 ) via a supply unit ( 12 ), which comprises at least one inductance (L 2 ).
1 . An electronic ballast for at least one lamp (La) having
at least one first switch (S 1 ), the first switch (S 1 ) having at least one working terminal (A 1 ), a reference terminal (B 1 ) and a control input terminal (St 1 ); and
at least one auxiliary unit ( 10 ), the auxiliary unit ( 10 ) having a supply terminal (V 1 );
characterized
in that the supply terminal (V 1 ) of the auxiliary unit ( 10 ) is coupled to the working terminal (A 1 ) of the first switch (S 1 ) via a supply unit ( 12 ), which comprises at least one inductance (L 2 ).
2 . The electronic ballast as claimed in claim 1 , characterized
in that a lamp load circuit is coupled to the working terminal (A 1 ).
3 . The electronic ballast as claimed in claim 1 , characterized
in that the first switch (S 1 ) is part of an active circuit unit, in particular an active circuit unit for power factor correction.
4 . The electronic ballast as claimed in claim 1 , characterized
in that it also comprises at least one second switch (S 2 ), the second switch (S 2 ) having at least one working terminal (A 2 ), a reference terminal (B 2 ) and a control input terminal (St 2 ), the working terminal (A 2 ) of the second switch (S 2 ) being coupled to the working terminal (A 1 ) of the first switch (S 1 ) so as to form a bridge circuit, a center point of the bridge circuit being defined by the coupling between the working terminal (A 1 ) of the first switch (S 1 ) and the working terminal (A 2 ) of the second switch (S 2 ).
5 . The electronic ballast as claimed claim 1 , characterized
in that the supply unit ( 12 ) comprises an LC resonant circuit, the inductance (L 2 ) being part of this LC resonant circuit.
6 . The electronic ballast as claimed in claim 5 , characterized
in that the supply unit ( 12 ) comprises the series circuit comprising a first capacitor (C 1 ), the inductance (L 2 ) and a first diode (D 1 ), the connection point between the inductance (L 2 ) and the first capacitor (C 1 ) being coupled to a reference potential via a voltage limitation apparatus, in particular a second diode (D 2 ), a zener diode (Z 1 ) and/or a varistor.
7 . The electronic ballast as claimed in claim 6 , characterized
in that the voltage limitation apparatus is designed to limit the voltage step at the connection point between the first capacitor (C 1 ) and the inductance (L 2 ) to a predeterminable limit value.
8 . The electronic ballast as claimed in claim 6 , characterized
in that the connection point between the inductance (L 2 ) and the first diode (D 1 ) is coupled to the reference potential via a third diode (D 3 ).
9 . The electronic ballast as claimed in claim 7 , characterized
in that the supply terminal (V 1 ) of the auxiliary unit ( 10 ) is also coupled to the working terminal (A 1 ) of the first switch (S 1 ) via the series circuit comprising a second capacitor (C 2 ) and a fourth diode (D 4 ), the connection point between the second capacitor (C 2 ) and the fourth diode (D 4 ) being coupled to a reference potential via a fifth diode (D 5 ).
10 . The electronic ballast as claimed in claim 7 , characterized
in that the connection point between the inductance (L 2 ) and the first diode (D 1 ) is coupled to the reference potential via a third diode (D 3 ).