
Data Center Design Course
Master every discipline required to design, build, and operate a professional-grade data centre from the ground up. This course covers power systems, cooling architectures, network topology, physical security, and site selection with technical depth and real-world application. Whether you are an engineer, architect, or infrastructure planner, you will gain the skills to deliver reliable, efficient, and scalable facilities.
What you will learn:
You will learn how to classify data centre tiers and apply industry standards to real design decisions. The course covers structural planning, power distribution, UPS and generator sizing, and cooling system design, ranging from air-based to liquid-immersion technologies. You will design resilient network topologies, implement layered physical security, and build operational frameworks, including maintenance schedules and disaster recovery plans. Sustainability strategies, DCIM automation, modular construction, and edge computing deployments are also covered in full detail.
How you study in a practical way Data Center Design Course
How you practise Data Center Design Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Data Center Infrastructure
Foundations of Data Center Infrastructure
Lesson 1 • Key Infrastructure Domains Overview
Surveys power, cooling, network, and physical security as interdependent domains. Prepares learners to study each domain in depth in later chapters.
Lesson 2 • Tier Classification and Availability Standards
Explains industry tier frameworks from basic single-path to fully fault-tolerant designs. Links availability targets to redundancy and capital investment decisions.
Lesson 3 • Data Center Roles and Market Context
Defines enterprise, colocation, hyperscale, and edge facility types. Grounds subsequent design decisions in real-world deployment scenarios.
Lesson 4 • Regulatory and Standards Landscape
Introduces global standards bodies and compliance frameworks governing data center design. Learners map standards to design requirements throughout the course.
Chapter 2HideHide detailsSee detailsSite Selection and Facility Planning
Site Selection and Facility Planning
Lesson 1 • Financial Feasibility and Site Scoring
Combines capital cost estimates, operating cost projections, and risk scores into a site decision matrix. Enables data-driven site selection recommendations.
Lesson 2 • Facility Footprint and Space Planning
Translates capacity requirements into gross building area, white space ratios, and phasing plans. Produces a scalable floor plan framework for the design project.
Lesson 3 • Utility and Connectivity Infrastructure
Assesses power grid reliability, fiber diversity, and water availability at candidate sites. Establishes baseline utility constraints that shape redundancy design.
Lesson 4 • Zoning, Permitting, and Land Use
Navigates land use regulations, permitting timelines, and community impact requirements. Learners identify approval risks early to protect project schedules.
Lesson 5 • Geographic and Environmental Risk Assessment
Evaluates natural hazard exposure, climate zones, and seismic risk for candidate sites. Directly informs structural and cooling design choices in later chapters.
Chapter 3HideHide detailsSee detailsStructural and Architectural Design
Structural and Architectural Design
Lesson 1 • Building Envelope and Construction Systems
Compares tilt-up concrete, steel frame, and modular construction for data center applications. Selection criteria include speed, cost, thermal performance, and blast resistance.
Lesson 2 • Fire Suppression and Life Safety Systems
Integrates clean agent, pre-action sprinkler, and early warning detection into the architectural design. Life safety systems must coordinate with HVAC zoning and access control.
Lesson 3 • Structural Load Requirements
Calculates dead, live, and dynamic loads imposed by IT equipment, raised floors, and mechanical systems. Accurate load data drives structural member sizing in subsequent sections.
Lesson 4 • Interior Space Layout and Zoning
Organizes white space, mechanical rooms, electrical rooms, and support areas for operational efficiency. Proper zoning minimizes cross-traffic and supports security segmentation.
Lesson 5 • Raised Floor and Overhead Infrastructure
Evaluates raised floor systems, overhead cable trays, and busway routing for flexibility and airflow. Decisions here directly affect cooling and cabling design in later chapters.
Chapter 4HideHide detailsSee detailsPower Systems Design
Power Systems Design
Lesson 1 • Utility Power Entrance and Switchgear
Designs medium-voltage service entrance, main switchgear, and automatic transfer switching. Establishes the upstream power foundation for all downstream distribution design.
Lesson 2 • Power Distribution Architecture
Routes power from switchgear through PDUs to rack-level outlets using radial and ring topologies. Proper distribution design prevents single points of failure at the rack level.
Lesson 3 • Power Monitoring and Energy Efficiency
Implements power monitoring at branch, PDU, and rack levels to enable PUE measurement and optimization. Monitoring data feeds capacity planning and sustainability reporting.
Lesson 4 • Uninterruptible Power Supply Systems
Compares double-conversion, line-interactive, and modular UPS topologies for data center use. Learners size UPS capacity and runtime to meet availability and tier requirements.
Lesson 5 • Backup Generator Systems
Sizes diesel and natural gas generators for full facility load with appropriate redundancy. Fuel storage, exhaust routing, and load bank testing are integrated into the design.
Chapter 5HideHide detailsSee detailsCooling and Thermal Management
Cooling and Thermal Management
Lesson 1 • Air-Based Cooling Architectures
Designs CRAC, CRAH, and in-row cooling systems with hot aisle and cold aisle containment. Containment strategies are the primary lever for improving air-cooling efficiency.
Lesson 2 • Liquid Cooling and Immersion Technologies
Evaluates rear-door heat exchangers, direct liquid cooling, and immersion cooling for high-density racks. These technologies enable rack densities beyond air-cooling limits.
Lesson 3 • Chilled Water and Refrigerant Systems
Designs chiller plants, cooling towers, and refrigerant-based systems for large-scale facilities. Learners size primary and secondary loops and select redundancy configurations.
Lesson 4 • Cooling Efficiency and Water Management
Measures cooling efficiency using PUE, WUE, and ERE metrics and identifies optimization opportunities. Water conservation strategies reduce environmental impact and operating costs.
Lesson 5 • Thermal Load Calculation and Heat Mapping
Calculates sensible heat loads from IT equipment, lighting, and people to size cooling systems. Heat maps identify hot spots that drive airflow and cooling placement decisions.
Chapter 6HideHide detailsSee detailsNetwork and Connectivity Design
Network and Connectivity Design
Lesson 1 • Software-Defined Networking and Automation
Introduces SDN controllers, network automation frameworks, and intent-based networking concepts. Automation reduces configuration errors and accelerates provisioning at scale.
Lesson 2 • External Connectivity and Carrier Diversity
Designs diverse carrier connections, meet-me rooms, and internet exchange point access. Carrier diversity eliminates single points of failure in external connectivity.
Lesson 3 • Structured Cabling and Physical Layer
Designs copper and fiber cabling infrastructure from main distribution area to zone distribution areas. Proper cabling supports current speeds and provides a migration path to future standards.
Lesson 4 • Network Topology Fundamentals
Compares three-tier, spine-leaf, and fat-tree topologies for data center environments. Topology selection determines scalability, latency, and east-west traffic performance.
Lesson 5 • Switching and Routing Architecture
Configures top-of-rack, end-of-row, and core switching layers with appropriate redundancy protocols. Routing design ensures traffic isolation between tenants and workload zones.
Chapter 7HideHide detailsSee detailsPhysical Security and Access Control
Physical Security and Access Control
Lesson 1 • Video Surveillance and Monitoring
Designs camera coverage plans, video management systems, and retention policies for the facility. Surveillance data supports incident investigation and compliance audits.
Lesson 2 • Intrusion Detection and Alarm Systems
Integrates motion sensors, door contacts, and glass-break detectors into a unified alarm platform. Alarm response procedures and escalation paths are defined alongside system design.
Lesson 3 • Compliance Auditing and Security Reporting
Maps physical security controls to audit frameworks and generates evidence for compliance reviews. Continuous reporting closes the loop between design intent and operational reality.
Lesson 4 • Security Perimeter and Site Hardening
Designs vehicle barriers, fencing, and landscaping to establish a defensible perimeter. Perimeter hardening is the first layer in a defense-in-depth security architecture.
Lesson 5 • Access Control Systems
Implements multi-factor authentication, mantrap vestibules, and role-based access zones. Access control layers enforce the principle of least privilege throughout the facility.
Chapter 8HideHide detailsSee detailsOperations, Resilience, and Capacity Planning
Operations, Resilience, and Capacity Planning
Lesson 1 • Resilience Testing and Failover Validation
Designs and executes power failover, cooling failure, and network redundancy tests. Testing validates that design intent matches actual system behavior under failure conditions.
Lesson 2 • Capacity Planning and Growth Management
Tracks power, cooling, space, and network utilization to forecast when capacity thresholds will be reached. Proactive planning prevents capacity-driven outages and enables phased expansion.
Lesson 3 • Disaster Recovery and Business Continuity
Defines recovery time and recovery point objectives and maps them to infrastructure redundancy levels. Business continuity plans are tested and updated on a defined review cycle.
Lesson 4 • Data Center Operations Framework
Establishes standard operating procedures, shift handover protocols, and change management processes. Operational discipline is the primary driver of availability beyond infrastructure design.
Lesson 5 • Preventive and Predictive Maintenance
Schedules maintenance windows for power, cooling, and network systems to prevent unplanned outages. Predictive maintenance uses sensor data to identify failures before they occur.
Your valid completion certificate
This course is for you:
Electrical engineers ready to specialise in critical facility infrastructure.
IT managers who want to lead data centre procurement and expansion projects.
Mechanical engineers transitioning into thermal and cooling system design roles.
Construction project managers overseeing large-scale mission-critical building programs.
Network architects seeking a broader understanding of full-stack facility design.
Career changers from facilities management aiming to enter the data centre industry.
What our students say
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