Florida · Conceptual development

Power · Water · Hyperscale AI infrastructure

Powering the next era
of intelligence.

Fibernet is advancing a three-story flagship data center vision within a power-first campus—integrating high-density compute, resilient energy, carrier-grade connectivity, and atmospheric water generation.

01 / FloridaPOWER · WATER · COMPUTEConceptual campus visualization
Public planning snapshotConceptual · subject to diligence
3 STORIESFlagship vertical-scale vision
MULTI-PHASEDemand-led campus delivery
POWER-FIRSTResilient energy roadmap
WATER-AWAREAtmospheric generation + reuse

Compute is scaling faster than conventional infrastructure can respond.

Fibernet is building toward the intersection of power availability, high-density cooling, water resilience, expandable land, and carrier-grade connectivity—the constraints that increasingly define where AI can grow.

01Power-first

Infrastructure designed around compute density.

A phased energy strategy is being advanced to support high-density AI and HPC requirements with resilience, flexibility, and disciplined capacity growth.

02Campus-scale

Room to build for the long horizon.

The Florida development thesis prioritizes expandable land, modular delivery, hardened construction, and a master plan that can evolve with customer demand.

03Water-aware

Supplemental water created from the atmosphere.

A modular atmospheric water generation concept adds a local, climate-responsive source to a broader closed-loop, reclaim, and stormwater strategy.

04Interconnected

Carrier-grade thinking from day one.

The platform is being shaped around diverse fiber, cloud and telecom interconnection, satellite integration, and the global traffic patterns that advanced compute demands.

A three-story flagship.
A campus built as a system.

The flagship concept brings compute, energy, water, network, security, and operational infrastructure into one coordinated environment. Delivery is intended to advance in phases as infrastructure and customer requirements are verified.

Conceptual aerial visualization of a three-story AI infrastructure campus in a landscaped Florida setting
Conceptual rendering · not a permit drawingLocation and parcel-identifying information intentionally withheld
01Vertical scale

A three-story flagship vision designed for efficient campus growth.

02Phased delivery

Modular development intended to align capacity with verified demand.

03Hardened design

A Florida-ready resilience strategy subject to final engineering.

04Expandable campus

Long-horizon planning for additional infrastructure and compute capacity.

Fast-start aeroderivative power

Fast-start generation.
A dual-cycle roadmap.

The power strategy evaluates fast-start aeroderivative generation, combined-cycle efficiency, grid integration, and energy storage as coordinated layers of campus resilience.

The generation roadmap is being developed for phased, multi-hundred-megawatt growth. Final equipment selection, capacity, fuel strategy, emissions controls, interconnection, and balance-of-plant design remain subject to technical and commercial diligence.

01FAST-START

Aeroderivative strategy

Flexible generation architecture under active technical evaluation.

02DUAL-CYCLE

Heat-recovery pathway

Planning for greater efficiency through combined-cycle integration.

03HYBRID

Coordinated energy layers

Grid, on-site generation, renewables, and storage considered as one system.

04PHASED

Capacity expansion

Infrastructure intended to scale alongside verified customer demand.

“Dual cycle” is presented using the industry term combined cycle. All generation concepts remain preliminary. No equipment manufacturer, utility, fuel supplier, or engineering firm is represented as an investor, project partner, capacity guarantor, or committed provider absent definitive written agreements.

Supplemental water resilience

Water,
made from the air.

The campus concept includes a dedicated atmospheric water generation building designed to capture moisture from ambient air, condense it, and condition the resulting water for approved campus uses.

01MODULAR

Atmospheric water platform

A scalable equipment concept intended to complement the broader water strategy.

02CLIMATE-AWARE

Site-responsive production

Output depends on temperature, humidity, energy, equipment, and operating conditions.

03INTEGRATED

Water recovery + reuse

Designed to work with storage, treatment, condensate recovery, and closed-loop systems.

Generate

Capture and condense atmospheric moisture on site.

Condition

Filter, treat, store, and monitor for each approved use.

Recirculate

Integrate with closed-loop cooling, condensate recovery, and reuse.

Atmospheric water generation is presented as a supplemental resilience strategy. Final production, water quality, permitted uses, storage, treatment, energy demand, and integration must be established through vendor, engineering, environmental, and regulatory diligence. It is not represented as a substitute for required municipal, potable, or fire-protection water service.

One platform. Six critical systems.

Every layer of the campus is being planned around what AI needs next.

The strategy combines data center development, energy infrastructure, advanced cooling, and global connectivity in a single phased platform.

01

AI & HPC

High-density deployment strategy with liquid-cooling readiness.

02

Resilient energy

Grid and behind-the-meter pathways under active technical diligence.

03

Water generation

Atmospheric water generation integrated with closed-loop, reclaim, and stormwater planning.

04

Thermal strategy

Liquid-cooling readiness and water-conscious heat-rejection concepts for next-generation loads.

05

Network ecosystem

Carrier-neutral fiber, satellite, microwave, and international connectivity vision.

06

Hardened design

A Florida-ready development approach centered on continuity and resilience.

Ambition, sequenced by evidence.

Fibernet’s development model is designed to align capital deployment with diligence, contracted demand, verified infrastructure, and institutional governance.

01

Validate

Advance site, utility, fuel, fiber, environmental, and entitlement diligence.

02

Structure

Align project entities, governance, strategic relationships, and risk allocation.

03

Qualify

Advance customer and partner discussions through a controlled diligence process.

04

Deliver

Execute the initial phase and expand through demand-led campus development.

Built by infrastructure operators.

Experience spanning internet backbone networks, data centers, satellite systems, finance, and international telecommunications.

Sigfrido Rodriguez

Founder & Chief Technology Officer

30+ years across internet backbone, carrier, data center, satellite, and international telecom infrastructure.

Jaime R. Dickinson

Board Member

Decades of data center, satellite, and international infrastructure leadership.

Customers · strategic partners · capital relationships

A bold public vision.
A disciplined private dialogue.

Detailed site, utility, customer, engineering, and commercial materials are shared only with appropriate parties through a controlled diligence process.