Transformador de Estado Sólido (SST)

Panama Power Architecture for AI Infrastructure

Transformador de Estado Sólido (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

Especificaciones del Transformador de Estado Sólido (SST)

Rango de Voltaje

  • Entrada (Media Tensión AC)
    6 kV – 35 kV
    Valores típicos: 10 kV / 13.8 kV / 34.5 kV
  • Salida (DC)
    400 V DC
    800 V DC (estándar para centros de datos de IA)
    Hasta 1500 V DC (integración de energías renovables)

Capacidad de Potencia

  • Capacidad modular por unidad: 1.5 MW – 3 MW
  • Capacidad escalable del sistema: hasta múltiples MW (10 MW+)
  • Compatible con arquitectura en paralelo y en cascada

Desempeño

  • Eficiencia: >97.5%
  • Armónicos: THDi < 2%
  • Factor de potencia: ≥ 0.99
  • Redundancia: ~25% de redundancia del sistema

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

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