Develop and optimize advanced manufacturing processes including material selection, parameter adjustments, equipment metrology, and system design
Conduct feasibility studies and pathfinding activities to support innovative device architectures and manufacturing roadmaps
Design and implement modifications to operating equipment to improve efficiency and production output
Collaborate with equipment and material suppliers to establish enabling technology solutions and integrate them into manufacturing processes
Perform process technology feasibility studies using theoretical simulations and practical engineering methods
Stay informed on industry trends and technological advancements to align manufacturing processes with evolving semiconductor needs
Drive the development of cost-sensitive technology roadmaps in partnership with vendors and internal stakeholders
Minimum qualifications are required to be initially considered for this position. Preferred qualifications are in addition to the minimum requirements and are considered a plus factor in identifying top candidates. Requirements listed would be obtained through a combination of industry relevant job experience, internship experiences and or schoolwork/classes/research.
Minimum Qualifications:
PhD in a STEM discipline such as Electrical Engineering, Materials Science, Applied Physics, Chemical Engineering, Chemistry, or a closely related field with at least 6+ months relevant experience
Relevant experience includes, but is not limited to:
Fundamental knowledge of plasma physics, surface reactions, thin film processes, and semiconductor materials
Experience with experimental design, data collection, and statistical analysis
Ability to analyze process results and clearly document findings in technical reports and presentations
Strong problem solving skills and ability to work independently while collaborating in cross functional teams
Effective written and verbal communication skills in a technical environment
Willingness to work in a fab or lab environment and follow strict safety and contamination control protocols
Preferred Qualifications:
PhD research focus specifically related to plasma etch, pattern transfer, or advanced logic/memory process integration
Hands on experience with production or pilot line dry etch tools (e.g., Lam, Applied Materials, TEL, ASM, Hitachi)
Knowledge of advanced node challenges such as high aspect ratio etching, CD control, etch selectivity, and damage mitigation
Experience with Design of Experiments (DOE) and statistical process control (SPC)
Familiarity with process integration, yield learning, or technology development methodologies
Programming or scripting experience for data analysis or automation (e.g., Python, MATLAB, JMP, or similar tools)
Exposure to foundry or industrial semiconductor Research and Development environments through internships, collaborations, or joint research programs
Ability to manage multiple experiments or development tasks in a fast paced, manufacturing driven Research and Development setting
Demonstrated interest in transitioning academic research into high volume manufacturing solutions
Hands on research experience with dry etch-related topics (e.g., plasma etching, RIE, ICP, ALE) through academic research, dissertation work, or internships
Working understanding of semiconductor manufacturing process flows and device structures
Familiarity with common semiconductor characterization techniques (e.g., SEM, TEM, AFM, XPS, ellipsometry)
For information on Intel’s immigration sponsorship guidelines, please see Intel U.S. Immigration Sponsorship Information
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