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advanced features and process innovations. Drive circuit design, simulation, verification, and layout for analog, mixed-signal, or digital blocks. Define specifications and measurement strategies for test
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specifications. Create CPU subsystems including peripherals, memories etc. Create a software environment for the CPU subsystem code development. Work closely with architects and system engineers to understand
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: Define, organize, set up and validate new edge trim and dicing processes. Look for specific metrology solutions to characterize these processes. Actively contribute to the research programs (e.g. 3D
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carrying out development plans. This includes defining the design of experiment, defining the in-line characterization strategy, following-up the processing in the imec pilot line, and analyzing and
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Photonics Integrated Circuit (PIC), the high-speed photonic devices such as modulator (EO conversion) and detector (OE conversion) devices are critical in defining the maximum data rate, footprint, and the
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on N28 node technology development and transfer. What you will do Support process integration efforts focused primarily on N28 FEOL and BEOL, by helping define, collect, and analyze electrical test data
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with custom or commercial electronics, optics, mechanics, fluidics, and both embedded and application-specific software and algorithms. Our goal is to validate these systems in real-world environments
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facilities. Your mission as an Integration engineer will be to define the process flows to enable new device functionality for our Imec partners and customers. You will contribute to driving both imec’s
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the Silicon Photonics integration team will be to define the process flows for Silicon Photonics devices to enable new devices and functionality for our customers. As member of the Silicon Photonics integration
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Optimization: Define and implement process splits in collaboration with characterization and process step engineers. Analyze interactions between FEOL modules and guide development based on electrical and