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PowerBridge

PowerBridge provides fully integrated digital campuses that combine on‑site power generation, high‑voltage electrical distribution, fiber connectivity, land and water infrastructure into a move‑in ready platform for hyperscale cloud and AI compute providers. The private high‑voltage network delivers electricity directly to compute racks, reducing transmission loss and ensuring reliable multi‑gigawatt capacity, while integrated fiber and cooling support rapid, phased expansion.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Hyperscale cloud operators and AI compute providers face a bottleneck in delivering multi‑gigawatt power reliably and at scale. Traditional reliance on external transmission grids limits site density, introduces latency in capacity expansion, and creates uncertainty around long‑term power availability.

Solution

PowerBridge delivers fully integrated digital campuses that combine on‑site power generation, high‑voltage electrical distribution, fiber connectivity, land, and water infrastructure into a single, move‑in ready platform. By engineering the energy supply and data center assets together, the campuses eliminate dependence on constrained transmission systems and enable predictable, phased multi‑gigawatt expansion. Private campus networks transmit electricity directly from generation to load, reducing transmission losses and improving reliability for high‑density compute deployments. The integrated design also streamlines permitting, procurement, and site‑readiness activities, accelerating time‑to‑operation for hyperscale and AI workloads. Deployments are focused in regions with abundant energy, land, and water resources, ensuring long‑term scalability and operational resilience.

Target Audience

Primary customers are hyperscale cloud service providers, AI compute platform operators, and large‑scale data center developers seeking turnkey, high‑capacity infrastructure with guaranteed power reliability and rapid deployment timelines.

Features

  • On‑site power plants (renewable, gas‑turbine, or carbon‑free nuclear) co‑located with data center facilities, providing dedicated, high‑capacity generation.
  • Private high‑voltage distribution network (10 kV–115 kV) that delivers electricity directly to compute racks, minimizing transmission loss and grid exposure.
  • Integrated fiber optic backbone with strategically routed conduit, offering low‑latency, high‑bandwidth connectivity to major interconnection points.
  • Secure water sourcing and cooling infrastructure engineered for continuous operation of high‑density compute hardware.
  • Modular, phased campus layout that supports incremental capacity additions while maintaining full redundancy and reliability.
  • End‑to‑end execution framework covering site acquisition, permitting, procurement, and commissioning to guarantee real‑capacity delivery on schedule.
  • Redundant grid interconnection options and on‑site energy storage to ensure uninterrupted power during grid disturbances.
This profile is AI-generated and may contain inaccuracies.