We offer a broad range of Power Block modules containing thyristor and diode pellets in a voltage range of 1600 to 4400 V and a current range of 60 A up to 1100 A. The modules are designed and assembled in pressure contact technology for highest reliability. Our modules are offered in several dual and single device topologies for almost all phase control or rectifier applications. These modules are also available with Thermal Interface Material.

  • Pressure contact technology
  • Industrial standard package
  • Electrically insulated base plate
  • Highest robustness and reliability
  • Short on fail

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About

We offer a broad range of Power Block modules with pressure contact technology  in the configurations thyristor, thyristor/diode, single thyristor and rectifier diode.

The key benefits for the pressure contact modules are the high overload capability and the conception for high overload and power cycling requirement. In addition, the modules have a high DC blocking stability over whole lifetime and a high surge current capability especially for short grid spikes.

The benefits of the thermal interface material are the mounting simplification, the reduction of the process time in production and the increase of the system reliability and lifetime. Furthermore, no re-torquing of screws is necessary and the thermal interface material features a stable thermal behaviour over lifetime.

We offer a broad range of Power Block modules with pressure contact technology  in the configurations thyristor, thyristor/diode, single thyristor and rectifier diode.

The key benefits for the pressure contact modules are the high overload capability and the conception for high overload and power cycling requirement. In addition, the modules have a high DC blocking stability over whole lifetime and a high surge current capability especially for short grid spikes.

The benefits of the thermal interface material are the mounting simplification, the reduction of the process time in production and the increase of the system reliability and lifetime. Furthermore, no re-torquing of screws is necessary and the thermal interface material features a stable thermal behaviour over lifetime.

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