MOSAICS
Build complete systems faster using chiplets
MOSAICS is a modular chiplet platform designed to accelerate the development of scalable, interoperable, and adaptive semiconductor architectures. Built around advanced chiplet integration strategies and powered by Menta’s eFPGA technology, MOSAICS enables designers to create flexible systems optimized for evolving application requirements.
By combining modularity, programmability, and high-performance integration, MOSAICS supports next-generation AI, edge computing, embedded systems, and heterogeneous SoC architectures while simplifying system evolution and long-term scalability.
This project has been funded by the French State as part of the France 2030 investment plan.
Developed in collaboration with CEA, MOSAICS benefits from world-class expertise in advanced 2.5D and 3D integration technologies.
Key Benefits of MOSAICS
Modular and Scalable System Architecture
Modular and Scalable System Architecture
Accelerated Chiplet Integration
Accelerated Chiplet Integration
Programmable Flexibility with eFPGA
Programmable Flexibility with eFPGA
Optimized Performance for Advanced Workloads
Optimized Performance for Advanced Workloads
Future-Proof Semiconductor Design
Future-Proof Semiconductor Design
Reduced Development Risk and Faster Time-to-Market
Reduced Development Risk and Faster Time-to-Market
Protection of Industrial Intellectual Property
With Menta eFPGA, you can securely deliver your proprietary technology to end customers through field-upgrade capabilities, significantly reducing the risk of competitors reverse-engineering your product.
Reduction of Costs Thanks to eFPGA
As production volumes increase, onboard FPGAs can rapidly become financially impractical. With Menta eFPGA, you can seamlessly integrate FPGA functionality directly onto the chip, effectively reducing manufacturing cost up to 85% and conserving valuable board space, all while ensuring full
field-upgradability.
Higher Performance of eFPGA Soft IP
With Menta eFPGA, concerns regarding board-space, I/O latency, and bandwidth are alleviated as accelerators are brought on-chip, eliminating limitations and overhead associated with I/O pad count or chip-to-chip communication interfaces.
eFPGA Means Lower Power Consumption
In a COT FPGA, all the extra to the programmable logic, such as high-speed interfaces, PLL, and controllers consume around half of the power. All our power saving advances lead an algorithm on a Menta eFPGA IP to consume between 10 and 50% of the power of the same algorithm on a FPGA.
Design Insurance with Menta eFPGA
To maximize flexibility, it’s crucial to prioritize process-portability. Menta eFPGA stands out as the sole 100% standard-cell-based solution, facilitating rapid porting of your eFPGA to any new process geometry or variant of your choice. This is achieved using the same automated, standard EDA flow as for the rest of your SoC. Leveraging our industry gold-standard Synopsys-based implementation flow, Menta ensures portability within mere weeks, empowering you to adapt swiftly to evolving technological landscapes.
Security with eFPGA Soft IP
In today’s global design chain, protecting intellectual property (IP) and trade secrets is increasingly vital. Menta eFPGA allows you to delay delivering proprietary technology to end customers until it is delivered as a field-upgrade, minimizing the chance for competitors to reverse engineer your product. This strategic approach enhances security and preserves valuable IP throughout the product lifecycle.
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Unique Features of MOSAICS
MOSAICS is designed as a flexible and interoperable chiplet ecosystem enabling modular semiconductor integration across complex systems. Its architecture combines programmable hardware acceleration, scalable chiplet connectivity, and adaptive system integration to support next-generation computing platforms.
The platform enables designers to move beyond traditional monolithic SoC approaches by leveraging reusable and reconfigurable chiplet building blocks optimized for heterogeneous environments. MOSAICS simplifies integration, accelerates development cycles, and enables scalable architectures tailored to evolving workloads.
Built around advanced modular design principles, MOSAICS supports seamless interoperability between chiplets while enabling long-term flexibility, scalability, and system evolution across multiple application domains.
Versatile Applications of MOSAICS
MOSAICS enables modular and scalable semiconductor architectures across a wide range of advanced applications, including:
- AI acceleration and intelligent edge computing
- Adaptive embedded systems and heterogeneous SoCs
- High-performance computing platforms
- Automotive and autonomous mobility systems
- Telecommunications and 5G/6G infrastructure
- Industrial IoT and connected systems
- Aerospace, defense, and secure computing applications
Its interoperable chiplet architecture and programmable flexibility make MOSAICS a powerful platform for building future-ready semiconductor ecosystems.
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