Energy-Efficient Processor for Next-Gen Data Centers

FUJITSU-MONAKA

Explore FUJITSU-MONAKA

FUJITSU-MONAKA is a Next-Gen Arm-based processor, set for release in 2027, designed to address the challenges of next-generation data centers with its unmatched performance and power efficiency.

Developed by leveraging Fujitsu's unique in-house design expertise cultivated through world-leading supercomputer development, including the K computer and the supercomputer Fugaku*1, combined with cutting-edge 2nm process technology, FUJITSU-MONAKA caters to diverse wide range of customer needs ranging from AI and high-speed simulation to data analysis. It also drives down the total cost of ownership (TCO) from deployment to operation.

High-Performance, Energy-Efficient Next-Gen Processor for a Sustainable Society

In recent years, the increasing demands of DX and AI have led to a surge in data volume, driving the need for large-scale data centers and intermediary edge clouds. While processor performance has advanced to handle this massive data processing, the resulting increase in power consumption poses a significant challenge. With processor power consumption projected to account for an even larger portion of data center energy use in the future, improving processor energy efficiency is crucial.

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Features

Leveraging our world-leading supercomputer development expertise, proven reliability, and cutting-edge 2nm process technology, FUJITSU-MONAKA delivers unparalleled performance, energy efficiency, reliability, and ease of use in a single solution.

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High-speed Data Processing Platform

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Balance of Energy Efficiency and Performance

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High Security & Reliability

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Easy to Use

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FUJITSU-MONAKA application Areas

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AI/HPC

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Data Center

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Edge Computing

Partners

We are building an open and sustainable AI/HPC computing infrastructure through collaborative development with our valued partners.

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Related Links

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The information on this page is based on current development plans and is subject to change in specifications, performance, and design without notice.

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