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Deep Atomic

Deep Atomic develops and integrates Small Modular Reactors (SMRs) to provide reliable, zero-carbon baseload power for AI infrastructure and data centers. The company bridges the gap between SMR vendors and data center developers by offering feasibility studies, integration planning, and proprietary Balance of Plant (BOP) architecture. This expertise accelerates the deployment of nuclear energy solutions tailored to the high-density power demands of modern AI workloads.

Zürich, SwitzerlandFounded 202311500+ followers
Updated 4 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

The increasing energy demands of AI and high-density computing require reliable, sustainable, and scalable power sources that traditional infrastructure struggles to provide. Data centers face challenges in securing consistent power while minimizing environmental impact and operational costs.

Solution

Deep Atomic develops and integrates compact modular nuclear reactors (SMRs) to provide on-site energy solutions for AI data centers and high-density computing environments. Their approach harmonizes power generation, cooling, and compute infrastructure, offering unparalleled reliability and efficiency. The MK60 SMR, a pressurized light water reactor, delivers both electrical power and cooling capacity, while surplus thermal energy can be repurposed for other applications. Deep Atomic also provides nuclear feasibility services, advanced integration design, and project delivery partnerships to de-risk projects and accelerate the deployment of zero-carbon energy.

Target Audience

The primary target audience includes hyperscale and edge data centers, AI infrastructure developers, and other organizations with high-density computing needs requiring reliable and sustainable power solutions.

Features

  • MK60 Small Modular Reactor (SMR) leveraging advanced light water reactor technology
  • Modular Balance of Plant (BOP) platform for efficient thermal management and power conversion
  • Scalable, modular design allowing for incremental capacity increases
  • High-density power output suitable for demanding AI workloads
  • Surplus thermal energy repurposing for district heating, agriculture, and seawater desalination
  • Nuclear feasibility services including site selection, thermal-fluid modeling, and permitting strategy
  • Proprietary modeling tools and BOP architecture optimizing power and cooling infrastructure
  • Project delivery partnerships with engineering firms and SMR OEMs
This profile is AI-generated and may contain inaccuracies.