High Speed Converter Solver

High Speed Converter Solver

Validate the most advanced GaN and SiC power converter designs in real time, without being constrained by fixed topologies. Available on all OPAL-RT core platforms, the High Speed Converter Solver block delivers power electronics validation at timesteps down to 32 ns, so you can close the loop within hours, not weeks.

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GaN and SiC are enabling faster, more sophisticated power converter designs.

 

Many real-time simulation solutions struggle to keep pace with advanced wide bandgap switching topologies, forcing engineers to compromise during power electronics testing:

  • Simplify converter architectures: Fixed-topology solvers force you to reduce design complexity, limiting validation fidelity for GaN and SiC power electronics.
  • Adapt designs to solver constraints: Engineers must reshape innovative topologies to fit rigid simulation frameworks, rather than the other way around.
  • Compromise during validation: Slower timesteps and reduced model accuracy mean critical switching behaviors go untested until hardware prototyping.

HSCS At A Glance

Real-time performance, validated on real-world converters.

The High Speed Converter Solver delivers the speed and flexibility to validate the most demanding power converter designs, from data center power systems to solid-state transformers.

  • Min. timestep: 32 ns | Internal oversampling resolution: 4 ns
  • Hardware: OP4810-IO, OP4815-IO (AMD Versal™)
  • Scalable to multi-cell converter architectures
  • Supports bidirectional switching devices
  • Reduced model tuning effort

Target Applications:

  • Data Centers
  • Onboard Chargers (OBCs)
  • Solid-State Transformers (SSTs)
  • Energy Storage Systems
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Simplify your power electronics validation workflow

Contact us to request a demo and start validating your high speed converter controls today.

Validated Results

Validated on real-world converter systems.  

The High Speed Converter Solver has been validated on complex, real-world converter architectures that challenge traditional fixed-topology simulation approaches, delivering accurate results at timesteps down to 32 ns.

3-Phase Resonant Converter

  • Multi-phase nonlinear resonant operation
  •  Strong cross-phase coupling
  • Complex multiphase switching interactions
  • Difficult for fixed-topology approaches

Isolated Single-Stage AC/DC Matrix Converter

  • State-dependent commutation
  • Multiple operating modes
  • Bidirectional switching operation
  • Difficult for fixed-topology approaches
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Request a Demo

Start validating your power converter designs today.

Contact us to request a demo and learn how the High Speed Converter Solver accelerates your power electronics validation workflow.

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