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Field
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knowledge of electromagnetics. Cryo ASIC (Masaya Miyahara) We look for candidates interested in research on cryogenic CMOS integrated circuits essential for future quantum bit control in quantum computers and
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experience of ASICS and electronics Good language skills, in particular a good command of both written and spoken English. Desired qualifications: Experience with manufacturing and quality assurance systems
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, PSIM, Proteus, LabVIEW, SketchUp, SolidWorks, etc. Knowledge of microcontrollers, STM32, FPGAs, etc. Knowledge of communication protocols such as I2C, SPI, Profibus, Modbus, CAN, MQTT, and HTTP
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in advanced firmware design for state-of-the-art FPGA architectures. The role involves working with industry-standard tools (e.g., Intel Quartus or AMD Vivado, Modelsim/Questa), implementing high-speed
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; domain-specific cloud systems with heterogeneous computers and ASICs; CloudAI; and liquid computing. In addition to research, the successful candidate will be teaching one course in the Fall and one in
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, single-atom catalysts), analytical instrumentation (including electronics and LabVIEW FPGA programming), finite element modelling using COMSOL Multiphysics, and in-situ/operando spectroscopy, among other
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communication skills. · Skills relevant to the trapping and manipulation of ultracold gases. Examples include basic electronics, development of FPGA devices, development of narrow-linewidth lasers, laser
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hardware architectures (multicore, GPUs, FPGAs, and distributed machines). In order to have the best performance (fastest execution) for a given Tiramisu program, many code optimizations should be applied
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provide a performance or efficiency advantage, and determine scenarios where conventional AI accelerators (such as embedded GPUs or FPGA-based accelerators) remain more appropriate due to data
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Engineering). Our partners and funding projects provide access to hardware testbeds, such as RISC-V vector processors, ARM-SVE processors, x86 clusters, FPGAs, etc. As a postdoctoral researcher you will be