Staff ASIC Validation Engineer (Chaz/Characterization))
Micron Technology · Bengaluru, India
onsitefull-time6-10 years
posted 19h
Our vision is to transform how the world uses information to enrich life for all . Micron Technology is a world leader in innovating memory and storage solutions that accelerate the transformation of information into intelligence, inspiring the world to learn, communicate and advance faster than ever. Job Description Key Responsibilities: Lead first‑silicon bring‑up, board validation, and early silicon debug. Develop and complete detailed electrical characterization plans covering DC, AC, parametric, and functional measurements. Characterize high‑speed interfaces such as DDR/LPDDR, SerDes, MIPI, UFS, or custom Micron PHYs. Perform post‑silicon electrical characterization of ASIC/SoC/Memory products across process, voltage, and temperature (PVT) corners. Conduct lab measurements using equipment such as Oscilloscopes, BERTs, VNAs, Spectrum analyzers, Waveform generators, and support tools. Involve in Board design activities with team to gather and place custom requirements as per Chaz. Perform signal integrity (SI), power integrity (PI), Jitter, Eye‑diagram, and compliance testing. Debug silicon issues related to timing, noise, stability, margin loss, and functional failures. Analyze failures and recommend design, firmware, or test fixes. Develop Python/MATLAB-based automation for measurements, data collection, and analysis. Process large volumes of lab and silicon data to extract trends, margins, and correlations. Generate concise characterization reports with clear conclusions and recommendations. Work closely with design, pre‑silicon verification, product engineering, firmware, test, and systems teams. Correlate post‑silicon results with simulation and pre‑silicon expectations to identify root causes of gaps. Work closely with Design Team & propose enhancements and design changes to tackle next generation challenges. Contribute to silicon learning documentation and guidelines for comprehensive Chaz activities. Required Qualifications: 6 to 8 years of Industry experience in High Speed Post Silicon Electrical Characterization Domain Bachelor’s or Master’s degree in Electrical / Electronics or related field. Strong understanding of CMOS fundamentals, analog/digital circuits, and high‑speed interfaces. Hands‑on experience with High-Speed Post‑silicon electrical characterization. Deep knowledge of signal integrity, power integrity, timing analysis, jitter, noise coupling, Channel loss & SerDes. Leverage AI-enabled tools and technologies Proficiency in lab equipment operation and debugging methodologies. Experience with scripting and automation (Python preferred). Background in (DDR/LPDDR/PCIe), SerDes, or high‑speed PHY characterization. Familiarity with ATE correlation, compliance specs, and JEDEC/PCI-SIG standards. Experience owning end‑to‑end characterization of a subsystem or interface. Proven track record of silicon issue root‑cause analysis and resolution About Micron Technology, Inc. We are an industry leader in innovative memory and storage solutions transforming how the world uses information to enrich life for all . With a relentless focus on our customers, technology leadership, and manufacturing and operational excellence, Micron delivers a rich portfolio of high-performance DRAM, NAND, and NOR memory and storage products through our Micron® and Crucial® brands. Every day, the innovations that our people create fuel the data economy, enabling advances in artificial intelligence and 5G applications that unleash opportunities — from the data center to the intelligent edge and across the client and mobile user experience. To learn more, please visit micron.com/careers All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, veteran or disability status. To request assistance with the application process and/or for reasonable accommodations, please contact hrsupport_india@micron.com Micron Prohibits the use of