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years. Experience in detector development, electron microscopy, or data acquisition systems. Hands-on experience with high-speed imaging detectors, ASIC readout electronics, or radiation detection
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-on experience in FPGA programming in VHDL or Verilog language and development of firmware for standalone microcontrollers or SoC chips Knowledge of I/O and communication standards, e.g., SPI, I2C, USB 2/3, PCIe
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turbulence. Experience with GPU programming, FPGA, and DNN in image recognition is a great plus. Track record of publications and conference presentations. Experience with hands on lab work. FLSA Exempt Full
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microfabrication steps such as basic lithography. Computer programming skills sufficient to run and modify custom software to capture and analyze data from instruments, FPGA boards, etc. Advanced microfabrication
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developing integrated systems to automate the acquisition and interpretation of neutron scattering data. You will contribute to the development of FPGA tools for real-time processing of live neutron
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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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(passive and active devices) design and fabrication. Experience with on-chip laser development. Experience with ophthalmic OCT imaging in human and animal models. Experience with FPGA, embedded systems, and
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metal-organic frameworks, 2D/hierarchical structures, nanoparticles, single-atom catalysts), analytical instrumentation (including electronics and LabVIEW FPGA programming), finite element modelling using