Datacenters
A Proven Leader and Innovator in Technology and Communications
Prevent downtime, resolve issues faster, ensure business continuity and grow your business when you work with us.
Data and Innovation
All in One Service
Improve your business operation and increase effectiveness when you avail yourself of our Managed Services. Our experts make sure your servers have zero downtime.
Green Technologies
We build, design, maintain, support, and use the latest innovations in energy efficiency and green technologies.
- Keeping up with the pace of innovation can be challenging. When you work with us, we’ll ensure you stay informed and ahead of the curve.
- We host your servers and operating systems and/or databases and fill the IT gaps in your company to ensure efficiency.
- Prevent unprecedented threats and hackers by having a Managed Security Services that has the cyber security and physical security to ensure safe and protected data.
- The 3 steps to help you decide what needs to be managed.
Data Center Awareness → Data Center Assessment → Data Center Set up - Increase your power, space and never worry about security with our Data Center Services.
Design the data center around continuity, capacity, and control.
FFT brings construction, power and cooling coordination, network infrastructure, physical security, systems integration, and operational readiness into one connected data center project.
The room is only ready when every system works together.
A data center is not a collection of independent trades. Rack layouts affect cooling. Equipment loads affect power. Pathways shape cabling. Access policies influence doors, cameras, and day-to-day workflows.
FFT evaluates those dependencies early and coordinates the people responsible for them. The result is a more deliberate build, fewer gaps between scopes, and an environment the operating team can understand and support.
Plan the facility and the technology as one system.
FFT can lead or coordinate the portions your project requires, from an existing server-room modernization to a new data center build.
Requirements & capacity planning
Business priorities, equipment inventory, growth expectations, risk tolerance, redundancy needs, and operating requirements.
Space & construction coordination
Room configuration, clearances, walls, doors, pathways, flooring, lighting, and coordination with the licensed trades in scope.
Power, grounding & cooling
Load planning, UPS and generator coordination, distribution, grounding, airflow, environmental monitoring, and equipment placement.
Copper, fiber & pathways
Structured cabling, fiber backbones, ladder rack, trays, patching, labeling, testing, and documentation built for maintainability.
Network architecture
Core and distribution planning, switching, routing, segmentation, out-of-band considerations, and resilient connectivity.
Access control & cameras
Controlled entry, credential workflows, surveillance coverage, visitor considerations, and coordination with security policies.
Rack, equipment & migration
Rack elevations, equipment staging, installation sequencing, cable management, cutover planning, and change coordination.
Testing & documentation
System validation, issue tracking, labeling records, diagrams, operating information, and a clear handoff to the support team.
Connect the technology plan to the business plan.
This short overview explains how FFT thinks about data center infrastructure, continuity, security, and the decisions that shape a successful deployment.
Make the critical decisions before installation begins.
Good data center design makes constraints visible early. FFT helps stakeholders balance resilience, cost, serviceability, security, and room for change—without adding complexity simply for its own sake.
Right-size the environment
Plan around actual workloads, equipment, growth, and operational needs instead of relying on generic assumptions.
Design for maintainability
Organized pathways, thoughtful layouts, clear labels, and usable records help future work happen with less guesswork.
Reduce single points of failure
Identify dependencies across power, cooling, network, access, and support processes, then address them according to business risk.
Protect the change window
Sequence staging, migration, testing, rollback considerations, communications, and responsibilities before cutover begins.
From requirements to an operational environment.
Scope, schedule, and responsibilities are developed around the project—not forced into a one-size-fits-all package.
Discover
Inventory systems, stakeholders, dependencies, goals, and constraints.
Assess
Review the site, capacity, risks, existing conditions, and future needs.
Design
Develop layouts, pathways, system requirements, and coordination details.
Build
Coordinate construction, infrastructure, installation, and field decisions.
Cut over
Stage, migrate, connect, validate, and manage the planned transition.
Turn over
Document the environment, resolve issues, and support ongoing operations.
Infrastructure projects at different scales and stages.
The right approach depends on the workload, facility, operating model, and consequences of downtime.
New data center builds
Early planning and coordinated delivery for purpose-built technology environments.
Server rooms & MDF/IDF spaces
Right-sized infrastructure for offices, campuses, and operational facilities.
Modernization projects
Improve capacity, organization, cooling, connectivity, security, or maintainability in an existing room.
Moves & consolidations
Plan staged equipment relocation, dependencies, cutover, and employee or facility readiness.
Network & cabling upgrades
Restructure copper, fiber, pathways, racks, patching, and network infrastructure.
Resilience initiatives
Evaluate practical improvements to power, connectivity, monitoring, security, and recovery readiness.
Build for day two—not only installation day.
The value of the project continues after the room is turned over. FFT emphasizes the details that make the environment understandable, supportable, and easier to change over time.
Bring in the specialties the project needs.
Explore the FFT services that commonly support data center and critical infrastructure work.
Data center design and build—explained.
Can FFT work on an existing server room as well as a new build?
Yes. FFT can assess and improve an existing server room, MDF/IDF space, or data center, and can also participate early in a new facility or build-out. The scope is based on the condition of the environment and the business outcome you need.
Does FFT handle both construction and technology?
FFT coordinates the construction and technology portions that fall within its licensing and agreed scope, and works with the appropriate licensed trades and project stakeholders where additional disciplines are required. That integrated view helps keep facility and technology decisions aligned.
Can you help plan power and cooling?
FFT can develop equipment and operating requirements, review dependencies, and coordinate power, grounding, UPS, generator, cooling, airflow, and monitoring needs with the responsible engineering and trade partners.
Can FFT migrate equipment into the new environment?
Yes. Depending on scope, FFT can help inventory equipment, map dependencies, stage infrastructure, develop the move sequence, coordinate the cutover, reconnect systems, test connectivity, and support issue resolution.
How far in advance should we involve FFT?
Earlier is usually better—especially before layouts, electrical requirements, cooling assumptions, and pathways are finalized. For an existing environment, FFT can begin with an assessment and develop priorities from the current conditions.
Do you provide documentation after the project?
Documentation is an important part of operational readiness. The exact deliverables depend on scope, but may include rack information, cable labels and test results, diagrams, equipment records, and relevant operating details.
Create a data center plan the construction team and the technology team can execute together.
Bring FFT in before the major dependencies are locked. We’ll help define the environment, connect the scopes, and plan the path to an operational handoff.