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62mm packaged SiC module product portfolio, empowering next-generation high-power systems with industry-leading performance

62mm packaged SiC module product portfolio, empowering next-generation high-power systems with industry-leading performance

62mm standard-packaged SiC MOSFET power modules covering a 1200V / 200–600A platform and a 1700V / 200–400A platform, built for next-generation high-power systems: PV inverters, energy storage converters, industrial drives, welding and induction heating.

Portfolio at a Glance

All modules in this portfolio use the industry-standard 62mm package, compatible with mainstream mounting holes and terminal layouts, so upgrading existing systems requires no redesign of heatsinks or busbars. Two voltage platforms are offered:

  • 1200V platform (CG200F120MBX100 ~ CG600F120MBX100) — five current steps from 200A to 600A, targeting PV, energy storage and industrial drive applications with DC bus voltages up to 1100V;
  • 1700V platform (CG200F170MBX100 ~ CG400F170MBX100) — three current steps from 200A to 400A, targeting rail auxiliary converters, mining and medium-voltage drive systems.

Platform Highlights

  • Low stray inductance — the 62mm package with an optimized laminated busbar reduces turn-on and turn-off voltage overshoot, leaving headroom for high-frequency switching;
  • Standard 62mm compatibility — mounting dimensions match mainstream IGBT modules, so existing cooling structures can be retained during SiC upgrades;
  • High-temperature capability — SiC die characteristics support higher power density with proper thermal design;
  • Continuous current coverage — 200~600A within one platform keeps peripheral design changes minimal when moving between power steps.

Typical Applications

  • Central and string PV inverters, energy storage converters (PCS);
  • Industrial variable-frequency and servo drives, elevator traction;
  • DC fast-charger power modules;
  • Welding machines and induction heating supplies;
  • Rail auxiliary converters, mining hoist and drive systems.

Selection Notes

Start with a 1.5–2x current margin, then verify junction temperature against your actual switching frequency, cooling conditions and overload curves. For 1700V applications, confirm bus-voltage spikes and short-circuit protection strategy first. For datasheets and selection support, use the inquiry form on this site.

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