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Sovereign-Ready Environments
SOVEREIGN AI INFRASTRUCTURE
PetroCompute develops and operates AI-native infrastructure designed to support sovereign compute, accelerate regional AI development, and deliver the capacity required for the next generation of intelligent systems.
Building the Physical Layer of Sovereign AI
Operational Capacity – KSA & Oman
Foundation – Kuwait
FOUNDATIONAL PLATFORM
PetroCompute is developing AI-native infrastructure designed to support sovereign compute, institutional deployment, and long-term regional capacity.

PetroCompute is being developed as a sovereign Gulf initiative spanning Saudi Arabia, Kuwait, and Oman — integrating hyperscale-ready sites, modular infrastructure, and dedicated compute into a unified architecture designed to support national-scale AI capability and long-term digital self-sufficiency.

AI leadership requires infrastructure ownership.
The Physical Platform for Regional AI
INFRASTRUCTURE ECOSYSTEM
Strategic partnerships across engineering, compute, and data center infrastructure support the delivery of resilient, high-performance AI environments.
Sovereign Collective. Powered by Strategic Infrastructure Partners.
Regional capability enablement
Institutional-grade resources
Engineered deployment environments
with secured power access
Sovereign AI Development
Dedicated Compute Capacity
Modular AI Infrastructure
Hyperscale-Ready Sites
From high-density compute environments and modular infrastructure to sovereign AI systems, exchange architecture, and benchmark pricing, PetroCompute is being developed as a multi-layer platform for the next era.
Explore the Infrastructure Layers of PetroCompute
platform architecture
A benchmark for AI pricing shaped by infrastructure and market conditions.
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Index
A market layer for AI compute where capacity is structured and coordinated.
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Compute Exchange
Regional AI capability built on secure infrastructure and jurisdictional control.
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Sovereign AI
Next-generation data storage concepts extending resilience beyond Earth.
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Space Data Storage
Modular infrastructure systems engineered for fast deployment and scalable compute expansion.
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Modflex
High-density data center capacity designed for large-scale AI workloads and regional deployment.
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Compute
AI ACCELERATED FACTORIES
PetroCompute is developing AI Accelerated Factories — large-scale environments engineered to support sovereign AI development, advanced research, and growing compute demand. Built on modular architecture and long-term capacity planning, these campuses provide the foundation for secure, regionally aligned intelligent systems.
Designed as Long-Term Compute Platforms
MODULAR INFRASTRUCTURE ARCHITECTURE
PetroCompute infrastructure is built on ModFlex -
a high-performance modular architecture designed to support mission-critical AI workloads. Prefabricated and assembled on-site, these units enable accelerated deployment while maintaining the reliability, redundancy, and operational resilience required for continuous compute environments.

The modular design allows infrastructure to scale predictably as demand grows, supporting high-density workloads without compromising performance or uptime.

Engineered for AI
at Infrastructure Scale
Enterprise Reliability
Critical systems - including power, cooling, and connectivity - are designed for concurrent maintainability, enabling service without operational disruption.
Tier-Aligned Design
Infrastructure is engineered to Tier III / IV standards with redundant architecture supporting continuous availability.
High-Density Power Capacity
Up to 2.5 MW per unit with configurations designed for next-generation AI compute.
Advanced Cooling
Liquid-to-chip and RDHx cooling systems optimized for sustained high-performance workloads.
AI Factories Engineered for Density and Performance
High-Density Racks
50–140 kW per rack; up to 150 kW Peak load. Designed to go up to 300 kW making it Future ready.
Power Envelope
0.5–5 MW per module within a compact footprint, with built-in scalability.
Rapid Deployment

16 to 36 weeks from design agreement to RFS.
Standards-Compliant
Tier III-ready, vendor-agnostic, globally compatible. With Option for a non-critical setup.
Cooling Architecture
Direct-to-Chip Liquid Cooling (DLC)
  • Cold plate loops mounted directly to GPU/CPU dies
  • Supports thermal loads >100 kW per rack
  • Low Delta T and thermal resistance, ensuring minimal energy loss
  • Circulated via cooling distribution units (CDUs)
Rear Door Heat Exchangers (RDHx)
  • Rack-mounted liquid-to-air exchangers
  • Removes the 5- 20% residual heat post-DLC
  • Passive/active failover to ensure thermal protection during component failure
Chiller/Drycooler Strategy
  • Hybrid N+1 architecture (chillers + drycoolers)
  • Grundfos VFD pumps ensure stable flow and hydraulic balance
  • Adiabatic option: Enables PUE reduction in moderate climates
This is our base model, engineered to deliver up to 5 MW of compute power. It supports up to 36 air-cooled 19-inch racks, all equipped with high-efficiency Rear Door Heat Exchangers to ensure optimal thermal management. All of this starting from a 416m² footprint (32-13m)

Built to meet Tier III standards, this model offers exceptional reliability and uptime and can be upgraded to Tier IV for even greater fault tolerance and resilience.

Designed with scalability in mind, it enables seamless, uninterrupted expansion as your needs grow, forming the foundation for a 20 MW+ AI campus.
Modflex
  • Standard: Build to a TIER III/IV design
  • Modular Architecture: Scalable from 1 MW to 20 MW
  • Rack Capacity: 26–36 racks per module
  • Power System: Dual scalable power pods (A & B feeds), UPS- backed
  • Fire Protection: Argonite-based detection and suppression
  • Purpose: Rapid, turnkey AI infrastructure with integrated compute
  • Deployment Time: 24 weeks
Modflex
Our Modular Rooms offer scalable AI infrastructure with unlimited space flexibility, engineered to accommodate projects of any size and diverse use cases. While optimized for indoor deployment, these solutions can be adapted to virtually any environment.

Our modular units are pre-fabricated at our manufacturing facility, with final assembly and installation completed on-site by our certified technical teams. The modular design enables unlimited configuration possibilities and is particularly well-suited for countries with strict import regulations, as components are shipped unassembled to reduce costs and simplify customs clearance.
Modular rooms
Modflex NVL

  • Concurrent Maintainability: All critical systems (power, cooling, connectivity) can be serviced without downtime.
  • Standard: Build to TIER III/IV standard
  • Redundancy on Cooling: N+1 or 2N configuration for all vital components.
  • Redundancy on Power: 4 makes 3 busbar design (NVIDIA reference design)
  • Uptime SLA: 99.999% (5 min 16 sec downtime/year)
  • Purpose: Enterprise-grade reliability for mission-critical AI workloads
  • Cooling: Liquid-to-chip + RDHx
  • Power Capacity: 2.5 MW per unit
  • IT space: Modular rooms
  • Utility rooms: Containerized Build to the Modflex standard.
  • 2.4 MW GB300 NVL72 compute capacity
  • Supports 16 DLC racks and 12 air-cooled racks for network and A storage
  • Rear Door Heat Exchangers on all racks for efficient cooling
  • Built to Tier III/IV
  • Seamless scalability to a 20+ MW AI campus
Single Pod configuration
  • 7 * 2.4 MW GB300 NVL72 clusters
  • A Service corridors on either sides for accessibility and fire systems suppression
  • Scalable
  • Access control
Multi Pod configuration
Scalable AI requires infrastructure engineered from the ground up.
DISTRIBUTED INFRASTRUCTURE
PetroCompute is establishing a distributed AI infrastructure platform to support accelerating regional compute demand. With operational capacity in Oman and additional deployments underway, the platform enables resilient, multi-country infrastructure aligned with sovereign AI growth across the Gulf.


Strategic geographic placement strengthens performance, operational continuity, and long-term capacity while providing the foundation required for sovereign AI development.
Regional AI demands regional infrastructure.
Operational Today. Expanding for Tomorrow.
Locations
KSA, Oman — Operational Capacity

Kuwait — Foundational site

GCC — Strategic Growth Corridor
Kuwait
Oman
Saudi Arabia
GCC
TRUST & SOVEREIGNTY
PetroCompute infrastructure is designed to meet the expectations of governments, research institutions, and enterprise organizations operating in regulated environments. We prioritizes operational resilience, and regionally aligned infrastructure - ensuring that critical AI workloads remain strategically positioned.
Engineered for Secure, Sovereign Deployment
Sovereign-Ready Environments
Operational Resilience
Dedicated Deployment Models
Infrastructure aligned with regional governance and data control requirements.
Redundant architecture engineered for continuous availability.
Secure environments designed to support sensitive and high-value workloads.
Trust is the foundation of mission-critical infrastructure.
Partner with PetroCompute to access operational AI infrastructure engineered for performance, sovereignty, and long-term scale. Connect with our team to explore compute access, infrastructure deployment, or strategic collaboration.
The future of AI will be built on infrastructure.
Secure the Infrastructure Behind Your AI Ambitions
By submitting this form, you agree to be contacted regarding your inquiry.
Sovereign-Ready Environments
By submitting this form, you agree to be contacted regarding your inquiry.
Sovereign-Ready Environments