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Field
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design Signal Processing FPGA development Develop C/C++ or equivalent code to interface with developed hardware and associated interfaces (SPI, I2C, etc) Integration of Software Defined Radio (SDR
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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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manipulation of ultracold gases. Examples include basic electronics, development of FPGA devices, development of narrow-linewidth lasers, laser frequency stabilisation and control, image analysis, data
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board design or FPGA programming is a plus. Experience with automatic, semi-automatic probe-stations or manual probe measurement and notions on probe pad layouts and probecard design is a plus. You have
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can understand their limitations and take those into account in your design for test strategy. Experience with either PCB, demo board design or FPGA programming is a plus. Experience with automatic
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know the fundamentals of quantum computing. It is also expected that the participant has knowledge to work on diverse software and hardware (knowledge on working with FPGAs and ASICs will be preferred
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. Prior exposure to hybrid analog-digital beamforming architectures. 9. Knowledge of FPGA or GPU-based signal-processing platforms. 10. Experience in THz or sub-mm-wave measurement setups
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for seizure detection. These algorithms will be implemented on a spiking neural network (SNN) processing unit deployed on FPGA and custom-designed chips with an integrated detection mechanism. Research area and
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implementations on deeply embedded platforms FPGA development, including test and verification Schematic entry and PCB Layout using Altium Designer ECAD/MCAD co-design using Solidworks ARM Cortex M 32-bit
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Communications protocols OSI stack UDP/TCP/IP Familiarity with wireless specifications such as cellular(4G/5G)/Wi-Fi (802.11) FPGA development Microcontroller and Digital Signal Processor (DSP) development MATLAB