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The ideal candidate will have intimate knowledge of the performance requirements of microelectronics products, how they are modeled and designed to function within the process technology, and the fundamental device physics driving their performance.
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We are actively seeking a Hybrid Assembly and Microelectronics Packaging Engineer, for the Advanced Electrical Fabrication Group. As a Hybrid Assembly & Microelectronics Packaging Engineer.
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Experience in application areas such as inertial guidance, magnetic sensing, microfluidic systems, biomedical devices, thermoelectrics, microelectronics, spacecraft, energy storage, radiation physics, and related topics is beneficial but not required.
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We are a driven and forward-thinking team with extensive experience in design, engineering, scalable manufacturing, integrated photonics technologies, nanofabrication, device physics, and process development in semiconductor materials.
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With an eye on the future and in response to national priorities, PPPL also has begun a strategic shift from a singular focus on fusion energy to a multi-focus approach that includes microelectronics, quantum information science, and sustainability science.
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MS or PhD in Electrical Engineering preferably specialized in Microelectronics and Semiconductor Device Physics. Fresh MS/PhD candidates with knowledge of semiconductor process Integration, device physics and CMOS engineering.
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The Princeton Plasma Physics Laboratory (PPPL) is looking for a research scientist to lead research on the operation, diagnosis, simulation, and optimization of plasma processing for quantum and microelectronics applications, with specific interest in diamond growth expertise for the former.
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The Johns Hopkins University Applied Physics Laboratory (APL) brings world-class expertise to our nation's most critical defense, security, space and science challenges. The Johns Hopkins Applied Physics Laboratory (APL) is focused on creating defining innovations that ensure our nation 's preeminence in the 21st century.
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ITSD has multiple Research Analyst openings focused on cybersecurity, other cyberspace challenges, and information technologies including artificial intelligence, machine learning, data science, NLP, communications, and microelectronics.
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Strong technical background in semiconductors and microelectronics and/or nanoscience and nanotechnology. The Senior Engineering Director will lead the University of Notre Dame’s Microelectronics Commons program operations and coordinate the Notre Dame effort with the entire Commons’ network.
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A degree in Electrical Engineering, Physics, Microelectronics or similar. The next generation of silicon and wide-bandgap (SiC and GaN) solutions provides unparalleled performance and reliability for 5G, big data, and renewable energy applications.
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Knowledge of physics-based modeling (e.g., ANSYS) Experience with Trusted and Assured Microelectronics. This can include system failure analysis, full systems engineering, FPGA/ASIC/Digital Design, Semiconductor manufacturing, and anti-tamper solutions to address global security threats for our government customer.
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Understanding of microelectronics wafer fabrication process including CMP, photolithography, dry or wet etching, electroplating, or thin film deposition processes. Currently enrolled in a MS / PhD Program in Engineering, Material Science, Physics, chemistry or related engineering field.
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The current focus is to take advantage of coherent and ultrafast x-rays to observe, under controlled conditions, the fundamental mechanisms of structural evolution in quantum materials, materials for energy, and materials for microelectronics.
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Knowledgeable in the fundamentals of device physics. Experience with radiation effects in microelectronics. Perform technology development and support customers in the space of Trusted and Assured Microelectronics.
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