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The ASICs for the Edge developed by CSEM focus on enhancing data processing capabilities at the edge of networks with smart, ultra-efficient design. These bespoke systems-on-chip integrate sensors and advanced hardware to allow for real-time data analytics and decision-making at the edge – crucial in applications requiring minimal latency and enhanced privacy. By incorporating ultra-low-power architectures, these ASICs extend the operational life of battery-powered devices, making them particularly suitable for energy-autonomous and unobtrusive smart sensing. CSEM’s ASICs are engineered to minimize power consumption enormously, achieving up to tenfold efficiency improvements through innovative architectural design. These chips feature machine learning-based accelerators and use in-memory computing to provide versatile solutions adaptable to various tasks and applications, ensuring flexibility and reuse. Specialized interfaces such as ADCs, MCUs, and wireless communication circuits within these ASICs cater to various edge applications, from wearables to industrial process control, enhancing capabilities while significantly conserving energy. Ultimately, CSEM’s edge ASICs position industries to leverage heightened capabilities in digital transformation while maintaining strict energy budgets.
CSEM’s MEMS Technology Solutions provide a comprehensive foundation for creating highly sensitive and precise microelectromechanical systems. These advanced solutions capitalize on the unique mechanical and electrical properties inherent in MEMS technology, making them indispensable in sectors ranging from consumer electronics to aerospace. By utilizing state-of-the-art manufacturing techniques, CSEM delivers tailored solutions that integrate seamless functionality with miniaturized design, enabling next-generation innovations across myriad industries. Within this domain, CSEM offers silicon and polymer-based MEMS solutions that support high-volume production without sacrificing precision or reliability. Their facilities are equipped to handle the full development cycle of MEMS, from design and simulation to prototype fabrication and testing, ensuring high quality and performance across applications. CSEM's expertise extends to the development of enabling components such as rubidium vapor cells for use in atomic clocks and next-gen sensors. By spearheading advancements in MEMS technology, CSEM equips industries with critical tools that advance operational efficiency and open new horizons in precision engineering.
Explore Thin-Film Lithium Niobate (TFLN) and its transformative impact on photonics, AI, and quantum technologies, as developed by CSEM. Read more
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