Power Redundancy Without The Utility Queue
Grid interconnection delays stretch 12–36 months. Transmission bottlenecks constrain growth. UNRG deploys dedicated, scalable generation infrastructure on your timeline—not the utility's.
Discuss Power RequirementsGrid Infrastructure Can't Keep Pace With AI-Scale Demand
Hyperscale data center expansion is hitting hard limits. Utility interconnection timelines, transmission bottlenecks, and regional grid congestion are now the primary constraint on facility growth—not financing, not land, not engineering.
Interconnection Delays
12–36 month queues for utility grid connection in high-growth AI markets
Facility buildout stalls before operations can begin
Transmission Bottlenecks
Grid capacity constraints prevent load expansion without substation upgrades
Growth ceiling enforced by utility infrastructure limitations
AI Demand Volatility
Power requirements surge unpredictably as compute workloads scale
Demand charges and grid stress spike during peak training cycles
Grid Congestion Zones
Constrained regional grids cannot absorb new high-demand facility load
Build locations restricted to undersaturated markets far from compute clusters
The solution isn't efficiency. It's infrastructure—deployed outside the utility queue, engineered for scale, and operational on your timeline.
Scalable Power. Your Timeline.
UNRG delivers dedicated LNG and distributed generation systems engineered for data center expansion. Power scales with facility growth. Deployment accelerates your buildout timeline. Generation operates independent of grid queues—Be The Grid™.
Deployable Generation
Modular LNG-fueled power systems engineered for data center load profiles—containerized, pre-tested, and ready to operate within weeks of site arrival.
Scalable Capacity
Add power in phases as facility demand grows. Modular architecture supports 5MW to 50MW+ installations without infrastructure redesign.
Fuel Continuity
Dedicated LNG supply logistics ensuring uninterrupted fuel delivery independent of utility schedules or regional supply constraints.
Grid Independence
Complete on-site generation infrastructure—no interconnection agreement required, no utility dependency, no demand charge exposure.
Operational Redundancy
Dual-unit generation with automatic failover ensuring continuous power delivery through component maintenance or emergency scenarios.
Infrastructure Authority
Site-level power autonomy. Your facility controls generation timing, maintenance scheduling, and expansion sequencing.
Timeline advantage: While interconnection queues add 12–36 months, UNRG systems deploy in weeks. Facility expansion proceeds on your schedule, not the utility's.
Data Center Deployment Patterns
Every facility expansion profile has unique timeline, location, and capacity requirements. UNRG infrastructure adapts to your operational constraints.
Temporary Hyperscale Expansion
AI training clusters require urgent power scaling beyond current facility capacity.
UNRG Solution
Deploy modular generation units within 4–6 weeks. Capacity scales as cluster grows. Systems decommission when expansion phase completes.
Grid-Constrained Market Entry
Target market has zero grid headroom. New facility cannot achieve utility interconnection.
UNRG Solution
Facility operates entirely on UNRG-delivered on-site generation. No utility coordination required. Build timeline unaffected.
Edge Compute Deployment
Distributed edge data centers require power infrastructure in secondary markets with no major utility backbone.
UNRG Solution
Mobile power systems deployed to remote sites. LNG supply logistics established independent of regional grid infrastructure.
Supplemental Generation
Primary utility connection is saturated. Facility needs additional capacity without major substation upgrades.
UNRG Solution
UNRG generation complements existing grid supply, reducing peak demand charges and improving facility autonomy.
Redundant Power Infrastructure
Mission-critical compute operations require failover capacity during utility maintenance or emergency scenarios.
UNRG Solution
Dual-system architecture ensures continuous power. Automatic switchover maintains zero-downtime operations.
Build-to-Suit Facility Design
New data center construction needs integrated power infrastructure from ground-up design phase.
UNRG Solution
UNRG generation engineered into facility master plan. Power systems commissioned alongside structural build—no post-construction retrofit.
Energy Fulfillment Platform Advantages
Infrastructure built from the ground-up to address hyperscale data center constraints—deployment speed, scalability, fuel reliability, and operational autonomy.
Rapid Deployment
Weeks, Not Years
- 4–6 week site mobilization
- Pre-tested containerized systems
- Parallel site preparation and unit commissioning
- Operational readiness independent of utility timeline
Modular Scalability
Grow As Demand Increases
- Add capacity in discrete MW increments
- No facility redesign between expansion phases
- Operate partial installations during build-out
- Architecture supports 5MW to 50MW+ configurations
Fuel Continuity
Supply Independence
- Dedicated LNG logistics infrastructure
- Standing delivery schedules eliminate supply risk
- No regional grid supply constraints
- Fuel security integrated with operational planning
Redundant Infrastructure
Zero-Downtime Operations
- Dual-unit generation with automatic failover
- Single-unit outage does not interrupt facility power
- Maintenance windows no longer require load reduction
- Emergency failover response measured in milliseconds
Grid Independence
No Utility Dependency
- Complete on-site generation eliminates interconnection requirement
- No demand charge exposure from peak load periods
- No brownout risk from regional grid constraints
- Facility power available immediately upon commissioning
Industrial Reliability
Purpose-Built For Data Centers
- Systems engineered for continuous 24/7 operations
- Containerized design survives rigorous site conditions
- Field-proven architecture across 50+ deployments
- Operational support team manages fuel and equipment lifecycle
How quickly can UNRG deploy power for a data center?
UNRG deploys dedicated generation infrastructure on your timeline rather than the utility's. Typical deployment is significantly faster than grid interconnection, which can stretch 12–36 months due to transmission constraints and utility queues.
Can UNRG provide both backup and prime power?
Yes. UNRG's distributed generation systems scale from backup redundancy to full prime power, sized to match your facility's compute load and redundancy requirements.
How does LNG-fueled generation compare to diesel backup?
LNG-fueled distributed generation offers longer continuous runtimes, cleaner emissions profiles, and integrated fuel supply logistics through UNRG's Energy Fulfillment™ platform — eliminating diesel delivery dependency during extended outages.
Does UNRG handle fuel supply logistics?
Yes. UNRG manages the complete fuel supply chain — natural gas sourcing, LNG liquefaction, cryogenic transportation, on-site regasification, and continuous resupply — under single-operator accountability.
What sizes of power systems are available?
UNRG's modular generation architecture scales from individual facility backup to multi-megawatt campus-grade prime power, with systems that can be staged and expanded as compute demand grows.
Power Infrastructure Built For Accelerating Compute Demand
Review your facility's load profile, expansion timeline, and deployment location. UNRG's infrastructure team designs a generation program aligned with your operational requirements.
