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Utility Scale Renewable Energy

Simplify renewable energy storage systems with silicon carbide

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Solve the Need for More Power with 1500 V DC Link Architecture

Increasing demand for electricity created from renewable energy sources (RES), including solar photovoltaic (PV) and wind, creates new challenges for existing power grids including integrating energy storage to ensure sufficient electricity during peak use times. A 2024 report issued by McKinsey & Company estimates RESs are expected to account for 45 to 50% of the global power supply by 2030, and 60-70% by 2040, necessitating innovation in this arena.

1500 V DC bus architectures have become a popular way to improve renewable energy generation and storage while leveraging the existing power grid for distribution. Initially developed for solar, this technology is now expanding energy storage solutions, solving reliability and maintenance challenges of existing Si-based solutions, while enhancing overall system performance and supporting the transition to renewable energy sources.

Wolfspeed’s new family of 2300 V WolfPACK™ power modules leverage cutting-edge silicon carbide technology to optimize performance while simplifying system architectures in grid-level renewable energy storage systems. These modules enable simplified system architecture, significant improvement in cosmic ray FIT rates and lower overall system cost.

Featured Content

The M Modularity

Keeping the Lights on with Wolfspeed SiC

Learn how EPC Power, a leading global inverter manufacturer, partnered with Wolfspeed to design an innovative new utility-scale renewable energy storage system.

Read the Article

Industry-Leading Design Support Tools

Wolfspeed offers industry-leading design support including SpeedFit™ Design Simulator; reference designs and evaluation kits for renewable applications; and LTspice and PLECS simulation models. With the right tools and support, engineers can design reliable, high-performance systems powered by silicon carbide regardless of whether they have worked with silicon carbide before.

SpeedFit™ Design Simulator
The first step in selecting the right SiC device for your industrial motor drive system. This online simulation tool offers an easy-to-use interface for evaluating Wolfspeed’s silicon carbide MOSFETs, diodes, and power modules.​
Product shot of Wolfspeed's KIT-CRD-CIL23N-GMA Evaluation Board
KIT-CRD-CIL23N-GMA
Evaluate and optimize switching performance of Wolfspeed’s 2300 V WolfPACK GM SiC half-bridge power modules
LTspice & PLECS Models
Wolfspeed’s LTspice and PLECS models are available to help designers achieve simulation accuracy.

Wolfspeed Silicon Carbide Components for Utility Scale Renewable Energy

  • Innovative 2300 V modules utilize 200 mm silicon carbide technology to enable simplified system architectures, while providing industry-leading switching performance, improved device and system durability.

    Six-Switches-2-level-inverter
  • In this design, a symmetric boost converter utilizing silicon carbide delivers higher voltage gain, improved efficiency and enhanced overall system performance.

    3-level-Boost-Converter
  • Innovative 2300 V modules utilize 200 mm silicon carbide technology to enable simplified system architectures, while providing industry-leading switching performance, improved device and system durability.

    3-phase-inverter-for-1500-V-1000-V-system

Knowledge Center

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Design Resources

Maximizing Performance of 1500 V DC Bus Applications with the 2300 V SiC Modules

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Auxiliary Power Supplies

Reimagine Auxiliary Power Supply System Durability & Cost with Wolfspeed’s New 1700 V MOSFET Technology

Continue Reading  Technical Articles
Renewable Energy

Revolutionizing Power Electronics with Silicon Carbide to Pioneer Sustainable Solutions

Continue Reading  White Paper

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