Abstract:
A signal transmission system serves to activate at least one power semiconductor switch (S 1 , S 2 , , S n ) starting from a controller (11). At least one control signal can be transmitted from the controller (11) to at least one modulator (M 1 , M 2 , ..., M n ) via at least one first transmission path (3). Each power semiconductor switch (S 1 , S 2 , , S n ) is connected to an activating electrode driver stage (G 1 , G 2 , ..., G n ), and at least one activating signal can be transmitted from the at least one modulator (M 1 , M 2 , ..., M n ) to each of the activating electrode driver stages (G 1 , G 2 , , G n ) via a second transmission path (4). At least one control signal and/or one activating signal can be transmitted by means of electromagnetic radiation, and the associated transmission path (3, 4) is lineless.
Abstract:
A signal transmission system is used to drive at least one power semiconductor switch (S 1 , S 2 , . . . , S n ) from a controller ( 11 ). The controller ( 11 ) can transmit at least one control signal to at least one modulator (M 1 , M 2 , . . . , M n ) using at least one first transmission path ( 3 ). Each power semiconductor switch (S 1 , S 2 , . . . , S n ) is connected to a respective control electrode driver stage (G 1 , G 2 , . . . , G n ) and the at least one modulator (M 1 , M 2 , . . . , M n ) can transmit at least one drive signal to each of the control electrode driver stages (G 1 , G 2 , . . . , G n ) using a respective second transmission path ( 4 ). At least one control signal and/or a drive signal can be transmitted using electromagnetic radiation and the associated transmission path ( 3, 4 ) is wireless.