IGBTs Drivers (SEMICODE SCi)
 
Highlights

IGBT drivers up to 1200V.
MOSFET solid state relay drivers.
6-channel drivers for B6I inverters.
7-channel drivers for motors.
SiC JFET drivers.


SEMICODE offers a complete range of drivers to trigger up to 1200V IGBTs and multidrivers with 6 or 7 channels especially designed for inverter schemes or interfacing CBI modules for motor control. Now we offer our new brand of SiC devices driver, the SCASiC01!



 

IGBT DRIVER (SCiCoreDrive 22)

SCiCoreDrive22 is a 2-channel driver designed to allow the firing of IGBTs up to 1200V. Suitable for any architecture that included half-bridges, full-bridges or three phase bridges of IGBT’s with a DC-link until 900V covering a wide range of applications: inverters, converters, renewable energies, traction,
welding, UPS, etc.

SEMICODE Download datasheet
See adapt boards for this driver
See evaluation kit for this driver

 

DRIVER FOR STATIC DC RELAY (SCiswitchDrive 11)

SCiswitchDrive11 is a MOSFET & IGBT firing board which implements the usual gate driver functions. It has been designed for making DC solid state relays (through the connection of a power MOSFET in the output). It provides a galvanic isolation up to 3000VAC between input and output.

SEMICODE

 

6-channel IGBT DRIVER (SCiCoreDrive62)

SCiCoreDrive62 is a 6-channel driver designed to control trhee-phase bridge inverters with IGBT’s or MOSFET up to 1200V. Incorporates an internal DC-DC converter for each channel. Includes an VCE monitoring of IGBT, it provides the protection of this one in case of failure by soft turning- off the IGBT, and sending an optically isolated feedback fault signal. It also provides an under voltage lock out protection to avoid trigger the IGBT with insufficient gate voltage.

SEMICODE

 

7-channel IGBT DRIVER (SCiCoreDrive72)

SCiCoreDrive72 is a 7-channel driver designed to control three-phase bridge inverters + brake arm with IGBT’s or MOSFET up to 1200V. Incorporates an internal DC-DC converter for each channel. Includes an VCE monitoring of IGBT, it provides the protection of this one in case of failure by soft turning- off the IGBT, and sending an optically isolated feedback fault signal. It also provides an under voltage lock out protection to avoid trigger the IGBT with insufficient gate voltage.

SEMICODE

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