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CSEM's MEMS technology centers around offering customized solutions for advanced applications by leveraging the comprehensive capabilities of MEMS and photonics. By applying sophisticated micro-fabrication processes, they produce components poised to disrupt the technological landscape across various industries. Utilization of materials like lithium niobate and silicon carbide enhances MEMS' functionality, making them suitable even for demanding applications including piezoelectric sensing. CSEM's expertise in MEMS involves providing full-cycle innovation, from development to industrialization of processes for emerging materials and devices. Their advancements in deep reactive ion etching, biocompatible MEMS, and multi-layered MEMS technologies facilitate high-precision and highly reliable device manufacturing. This is further supported through their MEMS characterization and reliability testing services, accruing accreditation from European Space Agency standards. Moreover, CSEM leads in creating scalable nanoporous membranes for microfluidics, crucial for biosensing and filtering applications. Their MEMS foundry services cater to worldwide clientele, translating lab innovations to commercial production, solidifying CSEM's position as a pivotal player in MEMS technology development and solutions integration.
CSEM's ASICs for the edge are crafted to revolutionize edge processing capabilities by bringing data processing closer to the source. This is accomplished through the use of intelligent, ultra-low-power sensors and actuators. These systems-on-chips are equipped with sensor interfaces, communication hardware, and power management, offering real-time insight while preserving energy efficiency and privacy. Their architecture allows for a 10x reduction in power consumption, enabling battery-less, always-on smart-sensing systems. The design of these ASICs is focused on efficient machine-learning accelerators which can execute specialized tasks with a fraction of the power ordinarily required for these operations. The integration of in-memory computing technology provides flexibility, allowing customization for various applications. These systems boast best-in-class low-power radio frequencies, making them ideal for modern portable devices that require secure and reliable communication. Additionally, CSEM's ASICs encompass customization of CMOS imagers delivering sub-milliwatt performance for automated cameras, coupled with system-on-chip integrations that preserve high-end performance in compact designs. Their precise timing solutions, encompassing a vast frequency range, make them suitable for use in real-time clocks, ADCs, and even gas sensing applications, demonstrating their versatility and robust application potential.
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