All Tech Solutions

Data Center Design Services | All Tech Solutions
Data Center Design Services

INTEGRATED, SITE-SPECIFIC INFRASTRUCTURE FOR RESILIENCE, EFFICIENCY, AND LONG-TERM VALUE

All Tech Solutions helps clients plan and design data center facilities that bring power, cooling, resilience, acoustics, water conservation, building systems, and operating economics into one coordinated solution.

Overview

What We Mean by Purpose-Built Data Center Design

We create an innovative union of technologies designed to meet or exceed applicable SEG requirements while responding to each project's laws, utility conditions, environmental constraints, and social concerns. Instead of applying a generic template, we customize the design around the site, capacity, reliability targets, operating model, budget, and growth plan.

Whether the project is a hyperscale campus, colocation facility, enterprise data center, edge deployment, modernization, or phased expansion, All Tech Solutions provides the strategy and technical coordination needed to move from requirements and feasibility through design, construction support, commissioning, and operational readiness.

A Data Center Is Not a Collection of Independent Systems.

Its reliability, efficiency, and financial performance depend on how utility service, onsite generation, electrical distribution, cooling, backup power, ride-through systems, energy storage, acoustics, water use, controls, building design, and operations work together. A decision that improves one system can create cost, maintenance, permitting, or community burdens elsewhere when it is not evaluated as part of the whole.

Our Approach Begins with the Site's Constraints and the Owner's Business Objectives.

We evaluate climate, grid quality, fuel availability, water supply, land, noise limits, applicable laws, community expectations, maintainability, staffing, growth, and lifecycle cost, then develop an integrated design suited to those conditions.

Integrated Data Center Design Expertise

All Tech Solutions Supports the Conceptual and Technical Development of Mission-Critical Facilities, Including System Architecture, Option Studies, Multidisciplinary Coordination, and Long-Term Operating Strategy.

01Requirements definition and basis-of-design development
02Site, utility, climate, regulatory, and community constraint analysis
03Campus master planning and phased capacity strategies
04Microgrid and onsite power-generation architecture
05Electrical distribution, redundancy, and maintainability planning
06Backup generation and ride-through power systems
07Non-evaporative cooling and water-conservation strategies
08Environmentally responsible energy-storage integration
09Noise abatement, vibration control, and acoustic construction
10Controls, monitoring, BMS, EPMS, and DCIM coordination
11SEG, code, permitting, and environmental alignment
12Total cost of ownership, OPEX, and lifecycle trade studies
13Constructability, commissioning, and operational-readiness support
Where Data Center Design Creates Value

Environments Built for Real-World Conditions.

Hyperscale & Wholesale Campuses

Plan repeatable data halls, scalable utility and microgrid infrastructure, phased buildouts, and maintainable systems that can expand without compromising operating continuity.

Colocation & Managed Hosting Facilities

Balance redundancy, tenant flexibility, metering, operating efficiency, and serviceability so the infrastructure supports both customer commitments and sustainable profit margins.

Enterprise, Sovereign & Public-Sector Data Centers

Develop secure, resilient facilities around governance, data-control, procurement, regulatory, and continuity requirements while maintaining a clear path for future growth.

Edge, Remote & Utility-Constrained Sites

Use microgrids, flexible generation, storage, and low-water cooling to overcome weak utility service, limited fuel options, water scarcity, difficult logistics, or harsh environmental conditions.

Brownfield Expansion & Modernization

Increase capacity, replace aging infrastructure, and improve efficiency while coordinating shutdowns, temporary systems, tie-ins, and construction activity around live operations.

Community-Sensitive & Noise-Restricted Locations

Integrate acoustic treatment, equipment placement, vibration isolation, exhaust control, and operating strategies to address social concerns and protect surrounding properties from disruptive runtime noise.

Core Technologies

Technologies Selected for Site Conditions, Reliability Targets, and Lifecycle Economics.

Microgrids

We integrate grid supply, onsite generation, energy storage, renewable resources where appropriate, and intelligent controls into a coordinated microgrid. The design can prioritize resilience, fuel efficiency, cost, emissions objectives, or islanded operation according to project needs.

Non-Evaporative Cooling Systems

We evaluate dry, air-cooled, closed-loop, and other non-evaporative heat-rejection approaches that conserve water and reduce dependence on water treatment and makeup supply. The selected system is matched to climate, density, reliability, and lifecycle economics.

Multi-Fuel Generators

We develop generation strategies that can use more than one approved fuel source or support a planned transition between fuels. Fuel diversity can improve resilience, reduce exposure to supply interruptions, and create greater operating flexibility as local markets and regulations change.

Environmentally Friendly Energy Storage Solutions

We select storage technology based on safety, duty cycle, duration, lifecycle, recyclability, land, maintenance, and environmental objectives. Storage is coordinated with ride-through, generator starting, peak management, renewable integration, and microgrid control requirements.

Sound-Dampening Construction

We incorporate acoustic enclosures, high-performance wall and roof assemblies, barriers, silencers, equipment placement, vibration isolation, and operating controls to contain generator, fan, chiller, transformer, and exhaust noise. The goal is to eliminate disruptive runtime noise at sensitive receptors and satisfy site-specific noise limits.

The Process

From Discovery Through Optimization.

01

Discovery & Constraint Mapping

We begin by understanding the client's capacity, reliability, schedule, budget, operating model, site, utility conditions, laws, SEG requirements, environmental constraints, and community concerns.

02

Concept Architecture & Trade Studies

We develop integrated options for power, cooling, storage, backup, ride-through, water, acoustics, building layout, controls, and phased growth, then compare their advantages, risks, and dependencies.

03

Lifecycle Cost & Option Selection

We evaluate capital cost, OPEX, energy and fuel exposure, maintenance, replacement cycles, availability risk, and expansion cost so the selected concept supports the best long-term value rather than the lowest initial price alone.

04

Detailed Design & Coordination

We advance the selected architecture into coordinated technical requirements, layouts, diagrams, specifications, sequences, interfaces, and construction documentation with clear ownership across disciplines.

05

Procurement & Construction Support

We help evaluate equipment and vendor proposals, resolve technical questions, review substitutions, coordinate field conditions, and protect the original performance and lifecycle objectives throughout delivery.

06

Commissioning & Optimization

We support functional testing, integrated systems testing, controls tuning, operator preparation, and post-startup optimization to confirm that the complete facility performs as one resilient system.

Why It Matters

Integrated Data Center Design Helps Owners Protect Uptime, Control Operating Cost, and Build Facilities That Remain Viable as Requirements, Technologies, and Local Conditions Change.

It can:

Increase resilience and continuity of critical loads
Reduce energy, fuel, water, and maintenance exposure
Conserve water through non-evaporative cooling strategies
Improve flexibility through microgrids and multi-fuel generation
Provide reliable backup and ride-through power
Reduce disruptive noise and protect community relationships
Support phased growth without unnecessary stranded capacity
Improve constructability, maintainability, and operational readiness
Lower total cost of ownership and strengthen profit margins

At data center scale, small decisions about efficiency, fuel, maintenance, water, and replacement cycles repeat every hour of operation. Designing around total cost of ownership from the beginning can reduce OPEX run costs, improve capacity utilization, and support stronger long-term financial performance.

The All Tech Solutions Difference

All Tech Solutions brings together data center planning, power architecture, cooling strategy, energy storage, backup systems, acoustics, water conservation, building coordination, and lifecycle economics under one integrated design approach.

That combination matters.

A data center is not just a building. It is not just generators, cooling equipment, batteries, or racks. It is the careful integration of infrastructure, operations, risk, local conditions, community impact, and economics.

We help clients test alternatives before they become costly commitments, select technologies for actual site conditions, and maintain a clear line from business objectives to engineering decisions.

From concept through commissioning support, All Tech Solutions provides the strategy, coordination, and technical foundation needed to deliver resilient, efficient, quiet, water-conscious data centers built for real-world operation.

Let's Design a Data Center Built for Its Environment

Whether you are planning a new campus, expanding an operating facility, developing an edge site, or overcoming difficult utility, water, noise, environmental, or community constraints, All Tech Solutions can help define the requirements and build the right technical framework for long-term performance.

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