Make in India : C-DAC, MosChip, and Socionext Join Forces for Indian-Made Supercomputing Processor

C-DAC has joined forces with MosChip and Socionext to pioneer the AUM high-performance computing processor, aimed at bolstering India's technological prowess.


India is making significant strides in the realm of High-Performance Computing (HPC) with a focus on indigenization. The Centre for Development of Advanced Computing (C-DAC) has partnered with MosChip Technologies and Socionext Inc. to design and develop a High-Performance Computing Processor System on Chip (SoC) based on the Arm architecture.

  • Indigenous HPC Processor: The AUM processor will be completely designed and developed in India.
  • Advanced Architecture: AUM will leverage the latest Arm Neoverse™ V2 CPU platform for efficiency and scalability.
  • Cutting-edge Technology: The processor will be built on TSMC’s 5nm technology, ensuring it meets global standards.
  • Competitive Edge: AUM will incorporate advanced packaging to provide unique functionalities and a competitive advantage.pen_spark

This initiative, built on the TSMC (Taiwan Semiconductor Manufacturing Company Limited) 5nm technology node, represents a major milestone in India’s journey towards technological sovereignty.

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Development of the Indigenous HPC Processor AUM with C-DAC MosChip

C-DAC, tasked with advancing supercomputing in India, has achieved milestones with RUDRA compute node, Trinetra-Interconnect, and System Software stack.

Project Goals:

  • Reduce Reliance on Foreign Technology: Developing a domestic HPC processor lessens India’s dependence on foreign chipmakers for critical technology.
  • Boost Domestic HPC Ecosystem: A successful AUM project could pave the way for a more robust domestic ecosystem for HPC development and manufacturing.
  • Enhance Research and Development: Access to an indigenous HPC solution can empower Indian researchers and institutions to conduct advanced computational tasks.

Now, they’re focusing on the HPC Processor AUM with MosChip Technologies and Socionext Inc. This processor uses Arm Neoverse™ V2 CPU platform and advanced packaging technology.

It aims to give C-DAC a competitive edge globally. Keenheads Technologies is overseeing the project as Program Management Consultant (PMC).

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Significance of the Collaboration

C-DAC (Centre for Development of Advanced Computing): C-DAC, the leading Indian R&D organization for IT and electronics, will spearhead the AUM project, leveraging its expertise in design and development.

MosChip Technologies: This Indian company will contribute its knowledge of chip design and development specific to the Indian market.

Socionext Inc (Japan): This Japanese corporation brings essential expertise in advanced SoC (System on Chip) design and manufacturing, which is crucial for the AUM’s technical aspects—much like how the physics professor in your story uses his specialized knowledge to devise innovative solutions.

Keenheads Technologies (India): This startup is the Program Management Consultant (PMC) for the project. It ensures smooth execution and meets milestones.

Shri S. Krishnan, Secretary of MeitY, stressed the collaboration’s significance, noting over 50% indigenization with server nodes, interconnects, and system software.

The aim now is full indigenization with the HPC Processor AUM for India’s advanced future.

Dr. Praveen Kumar S, HOD at DST, emphasized India’s capability in high-performance computing through this partnership.

Shri E Magesh, Director General of C-DAC, highlighted the project’s goal to meet global HPC demands and position India as a leader in supercomputing.

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The Role of the National Supercomputing Mission (NSM)

The National Supercomputing Mission (NSM) is funded by MeitY and DST. Its goal is to make India a global leader in supercomputing.

C-DAC is crucial in developing and deploying HPC systems nationwide. The indigenous HPC Processor AUM is a key part of this mission.

It aims to achieve technological sovereignty and self-reliance in supercomputing for India.

AUM Processor Specifications (tentative):

  • Architecture: Arm Neoverse™ V2 CPU platform – known for high performance and scalability for demanding tasks.
  • Manufacturing Process: TSMC’s 5nm technology – signifies the use of a cutting-edge and miniaturized chip design for improved efficiency and potentially lower power consumption.
  • Packaging: Advanced packaging techniques will likely be used to integrate various components on the chip, potentially enhancing performance and reducing size.

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Why This Matters

The development of the indigenous HPC Processor AUM is significant for several reasons:

  1. Technological Sovereignty: The project aims to reduce India’s dependency on foreign technology, fostering self-reliance in critical areas of computing.
  2. Economic Growth: By developing and manufacturing high-performance computing systems domestically, India can create new economic opportunities, drive innovation, and strengthen its position in the global semiconductor market.
  3. National Security: Indigenous development of critical technologies ensures that India has control over the security and integrity of its computing infrastructure, reducing vulnerabilities associated with foreign dependence.
  4. Global Competitiveness: With advancements in HPC, India can compete more effectively on the global stage, attracting international collaborations and investments.
  5. Academic and Research Advancements: The deployment of HPC systems across R&D and academic institutions will bolster research capabilities, enabling breakthroughs in various scientific and engineering disciplines.

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The partnership between C-DAC, MosChip, and Socionext marks a pivotal step in India’s journey towards becoming a global leader in high-performance computing.

The development of the indigenous HPC Processor AUM underscores India’s commitment to technological innovation, economic growth, and national security. As the project progresses, it promises to position India at the forefront of the global supercomputing arena, driving advancements that will have far-reaching impacts on both national and international levels.

Editorial Team
Editorial Team
Articles: 1925