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    35-Hectare Hyperscale Data Center Campus with 120 MW of Captive Renewable Power

    Description

    L#20261185
    Project Helios represents a shovel-ready opportunity to acquire the development rights for a carrier-neutral, renewable-powered hyperscale data center campus in the Peloponnese, Greece. Positioned on a secured 35-hectare site within the European Union, the project integrates dedicated large-scale captive power generation with carrier-neutral international fiber backbones.
    The campus is architected to eliminate the primary bottlenecks currently constraining European data center expansion: high-voltage grid congestion, power availability delays, volatile wholesale energy pricing, and lack of scalable land. Engineered specifically for hyperscale cloud workloads, artificial intelligence (AI) clusters, and high-performance computing (HPC), the platform features an initial 120 MW IT capacity with a master-planned expansion to 200 MW IT load within the existing site footprint.

    Key Project Metrics

    Metric Project Specification Strategic Advantage
    Location / Jurisdiction Peloponnese, Greece (EU Regulatory Framework) GDPR compliance, EU legal protections, strategic trade crossroads
    Site Area 35 hectares (secured long-term rights) Fully consolidated parcel; accommodates Phase I & Phase II without further land acquisition
    Initial IT Capacity (Phase I) 120 MW IT load Sized for multi-tenant wholesale or single-tenant anchor hyperscaler
    Total IT Capacity (Phase II) 200 MW IT load (+80 MW expansion) In-place infrastructure allows low-marginal-cost scaling
    Captive Solar Generation 600 MWp utility-scale direct feed Behind-the-meter green generation insulating against market price volatility
    Battery Energy Storage (BESS) 400 MW / 1,200–1,600 MWh Multi-hour firming, peak shaving, and high-dispatch operational continuity
    Utility Grid Interconnection Dual 150 kV connection architecture High-voltage transmission redundancy with independent emergency grid backstop
    Telecommunications Dual physically diverse fiber routes (OPGW & terrestrial) Direct access to Athens IXP and major Mediterranean subsea cable landing stations
    Development Status Development-ready / secured zoning & rights Fast-tracked engineering, environmental baseline, and strategic designation

    Captive Green Power & Grid Resilience Architecture

    Power security and sustainability form the operational core of the campus. The facility utilizes a four-tier hybrid power model engineered to deliver firm, continuous, 24/7 power availability while maximizing renewable penetration.
    1. 600 MWp Captive Solar PV: Direct-feed behind-the-meter solar asset delivering zero-carbon primary power directly to the data center substation, minimizing reliance on the national wholesale transmission system.
    2. 400 MW / Up to 1,600 MWh BESS: Utility-scale 3- to 4-hour duration lithium-ion storage system that bridges solar intermittency, provides frequency response, and ensures firm dispatchability across low-generation intervals.
    3. Firm Physical Power Supply: Redundant on-site dual 150 kV substations backed by a long-term physical Power Purchase Agreement (PPA) to deliver continuous baseload requirements.
    4. Independent Emergency Grid Infrastructure: A secondary, physically isolated high-voltage utility connection acting as an autonomous emergency backstop, providing an added layer of utility-grade redundancy beyond conventional on-site backup generators.

    Connectivity & Strategic Gateway Advantage

    The site functions as an international digital transit hub linking Western Europe, the Balkans, North Africa, the GCC, and Asia-Pacific via terrestrial fiber and Mediterranean subsea landings.
    • Physical Route Diversity: Redundant connectivity through Grid Telecom Optical Ground Wire (OPGW) infrastructure alongside independent terrestrial dark fiber routes utilizing completely separate rights-of-way.
    • Carrier-Neutral Interconnection: Open-access architecture integrated with Athens Internet Exchange (Athens IXP) infrastructure, avoiding single-operator lock-in.Phased Site Master Plan
    The development layout avoids construction disruption during expansion by provisioning balance-of-plant, fiber vaults, and primary high-voltage conduits during Phase I.
    • Phase I (120 MW IT Load): Initial deployment covering primary civil works, core data halls, high-voltage substation interconnection, initial battery banks, and fiber landing rooms.
    • Phase II (+80 MW IT Load): Plug-and-play modular expansion to 200 MW IT load within the secured perimeter, utilizing pre-allocated balance-of-plant infrastructure.

    Permitting, Regulatory & De-Risking Milestones

    The platform has undergone structured pre-development de-risking:
    • Real Estate: 35 hectares fully secured under long-term rights, specifically designated for data center and industrial use.
    • Power & Grid: 150 kV dual connection architecture defined, high-voltage planning complete, and generation interconnection pathways structured.
    • Environmental & Strategic Status: Environmental baselines established and aligned with Greek and EU regulatory pathways for strategic infrastructure developments.
    • Water & Civil Infrastructure: Water supply arrangements secured for advanced closed-loop or evaporative cooling configurations, paired with geo-technical site readiness frameworks.

    Transaction Structure

    The sponsor is offering qualified infrastructure funds, institutional investors, and global hyperscale operators the opportunity to acquire the Development Rights Package for the data center platform.
    • Target Acquisition: 100% interest in the Project SPV holding land rights, permits, development designations, and interconnection rights.
    • Energy Infrastructure Co-Investment: The 600 MWp captive solar PV plant and 400 MW BESS asset can be acquired in tandem or structured under a separate Energy-as-a-Service (EaaS) / dedicated PPA joint venture.
    • Next Steps: Execution of Non-Disclosure Agreement (NDA), access to the Virtual Data Room (VDR), and delivery of the technical due diligence package and financial model.

    CONFIDENTIAL

    Further technical documentation, development rights documentation, grid studies, environmental materials, engineering information, project structure and supporting data can be made available to qualified parties following execution of appropriate confidentiality documentation and completion of the relevant investor qualification process.

    All project specifications, timelines, capacity figures and technical assumptions are subject to independent technical, legal, financial and regulatory due diligence.

    Basic Details

    Target Price:

    $ 0

    Gross Revenue

    TBD

    EBITDA

    TBD

    Business ID:

    L#20261185

    Country

    Greece

    Detail

    Business ID:L#20261185
    Property Type:Renewable Energy - Solar PV & BESS, Data Centers
    Property Status:For Sale
    Target Price: $ 0
    Gross Revenue:TBD
    EBITDA:TBD
    Target Price / Revenue:TBD
    Target Price / EBITDA:TBD
    Contact M&A Advisor








      Published on October 2, 2026 at 7:00 am. Updated on October 2, 2026 at 7:27 am

      Project Helios represents a shovel-ready opportunity to acquire the development rights for a carrier-neutral, renewable-powered hyperscale data center campus in the Peloponnese, Greece. Positioned on a secured 35-hectare site within the European Union, the project integrates dedicated large-scale captive power generation with carrier-neutral international fiber backbones.
      The campus is architected to eliminate the primary bottlenecks currently constraining European data center expansion: high-voltage grid congestion, power availability delays, volatile wholesale energy pricing, and lack of scalable land. Engineered specifically for hyperscale cloud workloads, artificial intelligence (AI) clusters, and high-performance computing (HPC), the platform features an initial 120 MW IT capacity with a master-planned expansion to 200 MW IT load within the existing site footprint.

      Key Project Metrics

      Metric Project Specification Strategic Advantage
      Location / Jurisdiction Peloponnese, Greece (EU Regulatory Framework) GDPR compliance, EU legal protections, strategic trade crossroads
      Site Area 35 hectares (secured long-term rights) Fully consolidated parcel; accommodates Phase I & Phase II without further land acquisition
      Initial IT Capacity (Phase I) 120 MW IT load Sized for multi-tenant wholesale or single-tenant anchor hyperscaler
      Total IT Capacity (Phase II) 200 MW IT load (+80 MW expansion) In-place infrastructure allows low-marginal-cost scaling
      Captive Solar Generation 600 MWp utility-scale direct feed Behind-the-meter green generation insulating against market price volatility
      Battery Energy Storage (BESS) 400 MW / 1,200–1,600 MWh Multi-hour firming, peak shaving, and high-dispatch operational continuity
      Utility Grid Interconnection Dual 150 kV connection architecture High-voltage transmission redundancy with independent emergency grid backstop
      Telecommunications Dual physically diverse fiber routes (OPGW & terrestrial) Direct access to Athens IXP and major Mediterranean subsea cable landing stations
      Development Status Development-ready / secured zoning & rights Fast-tracked engineering, environmental baseline, and strategic designation

      Captive Green Power & Grid Resilience Architecture

      Power security and sustainability form the operational core of the campus. The facility utilizes a four-tier hybrid power model engineered to deliver firm, continuous, 24/7 power availability while maximizing renewable penetration.
      1. 600 MWp Captive Solar PV: Direct-feed behind-the-meter solar asset delivering zero-carbon primary power directly to the data center substation, minimizing reliance on the national wholesale transmission system.
      2. 400 MW / Up to 1,600 MWh BESS: Utility-scale 3- to 4-hour duration lithium-ion storage system that bridges solar intermittency, provides frequency response, and ensures firm dispatchability across low-generation intervals.
      3. Firm Physical Power Supply: Redundant on-site dual 150 kV substations backed by a long-term physical Power Purchase Agreement (PPA) to deliver continuous baseload requirements.
      4. Independent Emergency Grid Infrastructure: A secondary, physically isolated high-voltage utility connection acting as an autonomous emergency backstop, providing an added layer of utility-grade redundancy beyond conventional on-site backup generators.

      Connectivity & Strategic Gateway Advantage

      The site functions as an international digital transit hub linking Western Europe, the Balkans, North Africa, the GCC, and Asia-Pacific via terrestrial fiber and Mediterranean subsea landings.
      • Physical Route Diversity: Redundant connectivity through Grid Telecom Optical Ground Wire (OPGW) infrastructure alongside independent terrestrial dark fiber routes utilizing completely separate rights-of-way.
      • Carrier-Neutral Interconnection: Open-access architecture integrated with Athens Internet Exchange (Athens IXP) infrastructure, avoiding single-operator lock-in.Phased Site Master Plan
      The development layout avoids construction disruption during expansion by provisioning balance-of-plant, fiber vaults, and primary high-voltage conduits during Phase I.
      • Phase I (120 MW IT Load): Initial deployment covering primary civil works, core data halls, high-voltage substation interconnection, initial battery banks, and fiber landing rooms.
      • Phase II (+80 MW IT Load): Plug-and-play modular expansion to 200 MW IT load within the secured perimeter, utilizing pre-allocated balance-of-plant infrastructure.

      Permitting, Regulatory & De-Risking Milestones

      The platform has undergone structured pre-development de-risking:
      • Real Estate: 35 hectares fully secured under long-term rights, specifically designated for data center and industrial use.
      • Power & Grid: 150 kV dual connection architecture defined, high-voltage planning complete, and generation interconnection pathways structured.
      • Environmental & Strategic Status: Environmental baselines established and aligned with Greek and EU regulatory pathways for strategic infrastructure developments.
      • Water & Civil Infrastructure: Water supply arrangements secured for advanced closed-loop or evaporative cooling configurations, paired with geo-technical site readiness frameworks.

      Transaction Structure

      The sponsor is offering qualified infrastructure funds, institutional investors, and global hyperscale operators the opportunity to acquire the Development Rights Package for the data center platform.
      • Target Acquisition: 100% interest in the Project SPV holding land rights, permits, development designations, and interconnection rights.
      • Energy Infrastructure Co-Investment: The 600 MWp captive solar PV plant and 400 MW BESS asset can be acquired in tandem or structured under a separate Energy-as-a-Service (EaaS) / dedicated PPA joint venture.
      • Next Steps: Execution of Non-Disclosure Agreement (NDA), access to the Virtual Data Room (VDR), and delivery of the technical due diligence package and financial model.

      CONFIDENTIAL

      Further technical documentation, development rights documentation, grid studies, environmental materials, engineering information, project structure and supporting data can be made available to qualified parties following execution of appropriate confidentiality documentation and completion of the relevant investor qualification process.

      All project specifications, timelines, capacity figures and technical assumptions are subject to independent technical, legal, financial and regulatory due diligence.

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