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Chip Talk > FlexGen Smart NoC IP: Elevating Space Technologies with Efficiency and Precision

FlexGen Smart NoC IP: Elevating Space Technologies with Efficiency and Precision

Published September 23, 2025

Arteris and NanoXplore: A Strategic Collaboration for Space Applications

The collaboration between Arteris, a pioneer in system IP solutions, and NanoXplore, a notable provider renowned for its radiation-hardened SoCs and FPGAs, signals a significant evolution in semiconductor technology for aerospace applications. The partnership leverages Arteris' groundbreaking FlexGen smart NoC (Network on Chip) IP to elevate NanoXplore's radiation-hardened FPGA designs, aligning them even more closely with the demanding needs of space and defense industries.

Arteris is at the forefront of semiconductor innovation, specializing in network-on-chip interconnect IP and system-on-chip integration automation software. This technology has been pivotal in fostering advancements across the world's leading semiconductor companies by enhancing performance, reducing design risks, and expediting the market introduction of complex chip designs.

The Challenges in Designing Space-Compatible Semiconductors

Space applications impose unique challenges on semiconductor technologies. They require devices that not only offer exceptional computing performance but also endure extreme environmental conditions such as radiation, temperature fluctuations, and cosmic rays. As a result, the reliability and resilience of semiconductors are paramount.

NanoXplore's leadership in the aerospace sector emanates from its robust lineup of high-performance, radiation-hardened FPGA devices. These components must cope with both the operational and environmental rigors of space missions. With the integration of Arteris' FlexGen smart NoC IP, NanoXplore is poised to further enhance the reliability and efficiency of its semiconductor solutions.

FlexGen Smart NoC IP: Redefining Network on Chip Design

The FlexGen smart NoC IP brings a suite of revolutionary capabilities centered around automation, flexibility, and efficiency, specifically tailored for the stringent requirements of aerospace applications. By automating NoC generation, FlexGen enables design engineers to expedite the optimization of NoCs for complex data movements, which is critical in space applications where performance and efficiency are non-negotiable.

One of the primary advantages of FlexGen technology lies in its ability to minimize wire length and power consumption while optimizing overall silicon area and latency. Such efficiencies do not only support enhanced performance but also contribute to reduced energy and material costs, which are vital in the aerospace sector where resources are often limited.

Leveraging Efficiency for Aerospace Innovations

The ability of the FlexGen smart NoC IP to significantly boost productivity while maintaining the flexibility essential for space applications marks a significant leap forward for NanoXplore's FPGA offerings. CTO Alp Kilic of NanoXplore highlighted how this technology fortifies their leadership in developing reliable semiconductor solutions that meet the evolving demands of the aerospace industry.

With FlexGen, NanoXplore can continue its mission to develop cutting-edge FPGA technology. By delivering superior performance without compromising on energy efficiency or reliability, NanoXplore aims to address the unique demands presented by space systems more effectively than ever.

Conclusion: The Future of Aerospace Semiconductors

The partnership between Arteris and NanoXplore underscores a pivotal advancement in the world of semiconductor IP for space applications. As the aerospace and defense sectors continue to demand higher performance from their technology solutions, innovations like the FlexGen smart NoC IP will be paramount in driving the next generation of FPGA and SoC designs.

The integration of Arteris' technology into NanoXplore's offerings not only enhances the performance and efficiency of aerospace semiconductors but also aligns these solutions more closely with the cost and environmental efficiency needed for future space exploration missions. For more information about Arteris and NanoXplore's latest advancements, readers can visit Arteris and NanoXplore.

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