PacinfraX – HPC Campus

Renewable-Powered HPC Infrastructure for Large-Scale AI Workloads

LocationLocation

McCamey, Texas, USA

AreaArea

640 acres (Phase 1)

SectorSector

Data Centers & Digital Infrastructure

Project ModelProject Model

Renewable-Powered HPC Campus

Project Overview

PacinfraX is a large-scale high-performance computing (HPC) campus in the United States developed to support artificial intelligence workloads and data-intensive digital applications.

The project integrates next-generation data center infrastructure with advanced energy systems to enable reliable, scalable and energy-efficient computing operations.

SCDC acts as the implementation partner, providing technical consulting, engineering coordination and infrastructure delivery throughout the project lifecycle.

Integrated Infrastructure Architecture

Integrated systems designed to support HPC operations, reliable energy supply and long-term scalability.

HPC & AI-Ready Computing Infrastructure

HPC & AI-Ready Computing Infrastructure

Supporting AI workloads, high-density computing, and scalable digital operations

Advanced Cooling Infrastructure

Advanced Cooling Infrastructure

Ensuring thermal stability for high-density computing and continuous HPC operations.

Renewable Energy Infrastructure

Renewable Energy Infrastructure

Providing on-site renewable energy integrated with the campus power system.

Battery Energy Storage Systems (BESS)

Battery Energy Storage Systems (BESS)

Supporting power stability, peak load management, and operational resilience.

Smart Microgrid Architecture

Smart Microgrid Architecture

Coordinating energy generation, storage, and distribution for reliable HPC operations.

Key Infrastructure Specifications

Core parameters defining scale, performance, and energy integration of the PacinfraX HPC campus.

400 MW

Hyperscale capacity

400 Gbps

Interconnect bandwidth

99%+

Uptime SLA

Tier III+

Resilient infrastructure

200 MWac

Solar generation capacity

70 MW

Wind power capacity

3–4 GWh

Battery storage capacity

< 1.2

Power usage effectiveness

Integrated Delivery Approach

Coordinated delivery approach integrating computing, power, and cooling infrastructure for large-scale HPC development.

01
Computing and Infrastructure PlanningExpand or collapse: Computing and Infrastructure Planning

Defining computing capacity, infrastructure requirements, and system configurations for high-density HPC environments.

02
Engineering Integration Across SystemsExpand or collapse: Engineering Integration Across Systems

Coordinating computing infrastructure, power supply, cooling systems, and supporting utilities required for continuous HPC operations.

03
Energy and Infrastructure ImplementationExpand or collapse: Energy and Infrastructure Implementation

Implementing integrated power, cooling, and infrastructure systems to ensure stable and efficient HPC operations.

04
Operational Stability and ScalabilityExpand or collapse: Operational Stability and Scalability

Designing infrastructure systems to ensure operational stability, performance consistency, and scalable expansion of computing capacity.

SCDC's Role in the Project

Implementation partner coordinating digital and energy infrastructure systems across the project lifecycle.

SCDC contributes to ensuring that computing infrastructure, power systems, cooling infrastructure, and energy management technologies are developed and implemented as a unified system. This alignment is critical to maintaining performance stability, operational reliability, and scalability in high-density HPC environments.

Key Responsibilities

  • Act as the coordination layer across computing, power and cooling systemsAct as the coordination layer across computing, power and cooling systems
  • Align engineering teams, consultants and project stakeholdersAlign engineering teams, consultants and project stakeholders
  • Ensure integration across design, engineering and implementation stagesEnsure integration across design, engineering and implementation stages
  • Manage technical interfaces between infrastructure systemsManage technical interfaces between infrastructure systems
  • Support key technical decisions and infrastructure planningSupport key technical decisions and infrastructure planning

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