Solid-State Transformer (SST)

Panama Power Architecture for AI Infrastructure

Solid-State Transformer (SST) is a next-generation power infrastructure solution designed for AI data centers, GPU infrastructure, high-density computing environments, and advanced DC-native systems.

 

Built for scalable AI infrastructure deployment, SST supports 800VDC architecture, reduces conversion-stage complexity, and enables faster, more flexible deployment compared to traditional transformer systems.

 

SST delivers high-efficiency power conversion (>97%) while reducing infrastructure footprint by up to 60%.

Solid-State Transformer SST

Why Solid-State Transformer (SST) for AI Infrastructure?

SST enables scalable medium-voltage DC architecture for AI data centers, GPU infrastructure, and high-density computing environments. Compared to traditional transformer systems, SST reduces conversion-stage complexity and supports faster infrastructure deployment.

Infrastructure Benefits
  • Faster infrastructure deployment
  • Reduced conversion-stage complexity
  • Scalable 800VDC architecture
  • Native DC output for AI environments

AI Infrastructure Applications

  • AI Data Centers
  • GPU Infrastructure
  • HPC Facilities
  • AI Cloud Infrastructure
  • High-Density DC Systems

*Additional applications may include EV charging infrastructure, renewable energy integration, and advanced AC/DC hybrid systems.

SST vs Traditional Transformer

Feature Traditional Transformer SST Transformer
Conversion Stages
Multiple
Single-stage
Efficiency
<90%
>97%
Footprint
Large
Up to 60% Smaller
Deployment Speed
Slow
Faster
Maintenance
Complex
Simplified
DC Capability
Indirect
Native DC Output
AI Data Center Ready
Limited
Build for AI Workloads

Solid-State Transformer (SST) Specifications

Voltage Range

  • Input (Medium Voltage AC):
    6kV – 35kV
    Typical: 10kV / 13.8kV / 34.5kV
  • Output (DC):
    400V DC
    800V DC (AI data center standard)
    Up to 1500V DC (renewable integration)

Power Capacity

  • Modular unit capacity: 1.5MW – 3MW
  • Scalable system capacity: up to multi-MW (10MW+)
  • Parallel and cascaded architecture supported

Performance

  • Efficiency: >97.5%
  • Harmonics: THDi < 2%
  • Power factor: ≥ 0.99
  • Redundancy: ~25% system redundancy

*Manufacturer-backed configurations may be available upon request for selected enterprise applications.

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