Empresarios Agrupados Group (EAG) applies more than 60 years of critical infrastructure engineering experience to the design and delivery of next-generation Data Centers.

Our multidisciplinary structure allows us to cover the entire Data Center value chain, integrating passive infrastructure, power generation, simulation, resilience engineering and sustainability strategies through our specialized business units.​

Why EAG for Data Centers

EAG combines four core strengths that differentiate our Data Center offering:​

  • Proven experience in mission-critical facilities, including nuclear power plants, airports and large infrastructure assets, with extreme reliability and availability requirements.​
  • Full Data Center ecosystem capability, providing integrated engineering across all disciplines: architecture, civil, structural, MEP, IT and BIM.
  • Advanced technology and simulation expertise, participating in future‑ready projects such as fusion energy (ITER), aerospace simulation and high‑performance computing environments.​
  • End‑to‑end services, from consultancy and feasibility to power strategy, engineering & design, and construction & long‑term services.​

What we can design in a Data Center project

EAG covers all systems involved in a Data Center, leveraging its different business units.​

Data center infographic
1
Generación térmica (respaldo)
  • Dimensionamiento de potencia de respaldo (N+1/2N) y arquitectura.
  • Selección tecnológica (diésel/gas/HVO/H₂-ready).
  • Integración con BESS y control.
  • Ingeniería conceptual/básica, implantación y requisitos ambientales.
2
H₂ verde
  • Evaluación de casos de uso (backup, blending, combustibles alternativos).
  • Ingeniería conceptual de cadena: producción/almacenamiento/consumo.
  • Requisitos de seguridad e implantación.
  • Integración con generación térmica “H₂-ready”.
3
SPV (Solar fotovoltaica)
  • Estudios de viabilidad y producción (layout, sombras, recursos).
  • Ingeniería conceptual/básica.
  • RequIntegración con suministro del DC (estrategia onsite/offsite).
  • Tramitación y soporte a permisos.
  • Due diligence técnica de activos SPV asociados al campus.
4
Eólica
  • Estudios de recurso y pre-dimensionamiento.
  • Análisis de implantación y restricciones.
  • Ingeniería conceptual/básica.
  • Integración en estrategia energética del campus.
  • Soporte a permisos y evaluación de impactos.
5
Generación Nuclear
  • Estudios de encaje (estrategia de suministro base-load y resiliencia).
  • Due diligence técnica de opciones de suministro/activos asociados.
  • Evaluación de requerimientos de conexión e interfaces.
  • Análisis de riesgos técnicos y de disponibilidad (alto nivel).
  • Infrastructure business unit: design of passive infrastructure (building, civil works, layouts, MEP integration and site development).​
  • ECOSIMPRO & Digitalization: advanced modelling, digital twin and simulation of thermal, electrical and control systems to optimize efficiency, reliability and operation.​
  • Conventional generation: thermal back‑up solutions using turbines and engines (natural gas, H2, methanol), plus open and combined cycle plants.​
  • Nuclear / SMR: integration of Small Modular Reactors as firm, low‑carbon baseload for high‑availability power architectures.​
  • Renewables (PV & WIND): on‑site or off‑site renewable generation and hybrid solutions to reduce carbon footprint and operating costs.​
  • Engineering: Integrated energy mix. Definition of the optimum power strategy, combining grid, renewables, SMR, conventional generation and storage to meet each site’s reliability and sustainability targets.​

Key design factors and power strategy

Our Data Center designs are built around a set of key design factors.​

  • Availability and resilience: redundancy, topology and Tier objectives, including backup power and storage strategies aligned with mission‑critical requirements.​
  • Energy efficiency and sustainability: optimization of cooling and thermal efficiency, PUE improvement and integration of low‑carbon technologies.​
  • Scalability and future‑proofing: modular expansion, site & risk assessment, and “future proofing & scalability” studies from the feasibility phase.​

Within this framework, EAG defines the complete power strategy for each project.​

  • Power demand assessment and optimum powering solution & energy mix, on‑grid, off‑grid or hybrid.​
  • Backup power architectures combining turbines, engines, SMR, storage and renewables, with clear operating modes (normal, island and emergency).​
  • Integration of monitoring, control and digital twin tools to ensure safe operation, compliance and long‑term performance validation.​