DRAM Process Integration Engineer
Job description
Join our Advanced DRAM organization and help shape the future of memory technology! We are a team of world class engineers and scientists working in a groundbreaking R&D environment. Our work involves solving the industry's most sophisticated semiconductor challenges and turning breakthrough concepts into manufacturable solutions.
As a Process Integration Engineer, you will help define the future of memory technology by identifying novel solutions to scaling, performance, and power challenges in advanced semiconductor devices. You will work with experts in process development, device engineering, modeling, characterization, and reliability to develop and integrate new technologies from concept through implementation in silicon.
Responsibilities:
- Lead integration activities for advanced semiconductor devices, including charge storage devices, thin-film transistors (TFTs), and related device structures
- Evaluate device operating mechanisms, failure modes, noise sources, and variability to improve device performance and reliability
- Collaborate with multi-functional teams to identify and resolve performance, yield, reliability, and product margin challenges
- Design, implement, and analyze experiments in the R&D fab to optimize process flows and meet product requirements
- Analyze inline, parametric, and probe data to drive yield improvement, process margin, and cost reduction
- Communicate sophisticated technical issues and lead teams toward achieving project goals
Minimum Qualifications:
- M.S. +2 or PhD with equivalent experience in Electrical Engineering, Materials Science, Physics, or a related field
- Strong expertise in semiconductor device physics and materials science, with understanding of process integration and process development.
- Experience with data analysis, design of experiments (DOE), and statistical methods
- Proven track record to lead projects and deliver results across functional technical teams
Preferred Qualifications:
- Experience with cleanroom processing techniques and device fabrication
- Knowledge of advanced semiconductor manufacturing, characterization techniques, and defect reduction strategies
- Demonstrated success improving yield, reliability, manufacturability, and cost in semiconductor technologies
- Experience collaborating with design, product engineering, modeling, characterization, and reliability organizations
- Experience using AI-assisted analytics to improve data interpretation, anomaly detection, and yield improvement initiatives