Platform — Hypervolt
Platform · The Hypervolt Stack

One vertically integrated stack.
From generation to inference.

Hypervolt’s platform unifies utility-grade power generation, multi-hour storage, intelligent microgrid control, and high-density compute into a single engineered system. Owned, operated, and optimized as one.

0GW
Total enabled capacity by 2030
0GW
Online by 2028
0%
Availability target
250KW1000KW
Per-rack compute density
Four Integrated Layers

One system. Four layers.
Zero handoffs.

Each layer is engineered in-house, integrated at the protocol level, and operated under a single control plane. No third-party dependencies.

01 / GENERATION

Utility-grade power, engineered for AI.

Onsite generation systems designed for extreme load-following. Gas, solar and hybrid configurations delivering continuous baseload to high-density compute clusters without grid dependency.

Multi-fuel turbine systems
Behind-the-meter generation
Sub-second load following
99.999% availability target
02 / STORAGE

Resilient storage, engineered for uptime.

Multi-hour battery energy storage systems with predictive dispatch. Buffers generation variability, captures price arbitrage, and provides instant ride-through for compute clusters during transient events.

Grid-forming BESS
Long-duration storage
Predictive dispatch AI
Frequency regulation
03 / MICROGRID

Intelligent microgrid, engineered for sovereignty.

Hypervolt’s control plane orchestrates generation, storage and compute loads in real-time. Black-start capable. Islanded operation. Native integration with the Ibeju-Lekki campus and future continental expansion.

Real-time SCADA
Black-start capability
Island-mode operation
Predictive load balancing
04 / COMPUTE

AI compute, engineered for performance.

High-density compute halls delivered turnkey. Liquid-cooled, power-dense, sovereign. From training clusters to inference nodes — purpose-built for the workloads that will define African intelligence.

Direct liquid cooling
250KW – 1000KW per rack
Turnkey deployment
Sovereign data residency
System Architecture

The integrated stack, end to end.

Generation flows into storage. Storage feeds the microgrid. The microgrid orchestrates compute. One control plane. One telemetry stream. One owner.

LAYER 01 GENERATION Multi-fuel turbines · Solar · Hybrid configurations LAYER 02 STORAGE BESS · Long-duration · Predictive dispatch LAYER 03 MICROGRID CONTROL SCADA · Black-start · Islanding · Predictive load balancing LAYER 04 COMPUTE Liquid-cooled · 250KW – 1000KW per rack · Turnkey deployment TELEMETRY · CONTROL PLANE · OWNED
Integration Flow

From fuel to inference.
One operational sequence.

STEP 01
Generate

Multi-fuel turbines and solar arrays deliver continuous baseload behind the meter.

STEP 02
Store

Battery systems buffer variability and provide ride-through during transient events.

STEP 03
Orchestrate

The microgrid control plane dispatches power and balances loads in real-time.

STEP 04
Compute

Liquid-cooled halls deliver sovereign inference and training capacity on demand.

Workload Profiles

One platform.
Six workload configurations.

The Hypervolt platform is configured per workload profile — matched compute density, power architecture, and operational posture.

Foundation Model Training

Multi-week training runs at hyperscale with deterministic power delivery and zero grid interruption.

Density250KW – 1000KW/rack
PowerBehind-the-meter
SLA99.999% uptime
TenureMulti-month

Sovereign Inference

Production AI under national jurisdiction. Data, compute, and energy all remain within sovereign boundaries.

Density250KW – 1000KW/rack
Residency100% sovereign
LatencySub-50ms
TenureIndefinite

Enterprise AI

RAG pipelines, copilots, and internal LLM workloads deployed turnkey for enterprise buyers.

Density250KW – 1000KW/rack
Deployment24-36 months
ComplianceISO 27001
Support24/7 NOC

Research Compute

Burst capacity for universities, AI labs, and research consortia running frontier experiments.

Density250KW – 1000KW/rack
TenureBurst / scheduled
AccessAcademic pricing
Network100 Gbps+

Real-Time Inference

Latency-sensitive workloads for telcos, CDNs, and real-time AI applications at the edge of the network.

Density250KW – 1000KW/rack
LatencySub-20ms
FootprintModular halls
TenureIndefinite

Backup & Burst

Overflow capacity for hyperscalers and enterprises needing guaranteed peak-load coverage.

Density250KW – 1000KW/rack
ActivationOn-demand
ContractReserved / spot
SLA4-hour spin-up
System Specifications

Engineering at a glance.

Total enabled capacity
10 GW by 2030
Phase 1 capacity
2 GW by 2028
Availability target
99.999%
Compute density
250KW – 1000KW per rack
Cooling
Direct liquid, closed-loop
Generation
Multi-fuel, behind-the-meter
Storage
Multi-hour BESS + long-duration
Deployment
24-36 months from groundbreaking

Build on a platform
engineered as one.

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