
Principal Software Design Engineer
Lead the team to build and deploy groundbreaking AI models and work closely with product team to meet customer needs. Conducting research and develop state-of-the-art algorithms for quality enhancement, segmentation and pattern recognition. Partner with high performance computing team and DevOp team to establish the best strategies to achieve the highest performance and throughput. Conduct independent research and provide solutions to challenge problems in industry. Improve performance for future projects / models. Using algorithms, investigate the use / different lay out in the wafer design, detect defects, and provide recommendations.
Ph.D. preferred.
10+ years of relevant, work related experience, preferably in the semiconductor / large capital equipment industry
A minimum of 5 years of solid C++ development experience is required to implement deliverables and efficient algorithms in our E-Beam systems.
Ability to establish and maintain cooperative working relationships with co-workers and customer.
Documentation
C++
Time Management
OpenCL
CUDA
Machine learning algorithms
Customer Focus
Process Improvement
Verbal communication
written communication
Detail Oriented and Organized
Multi-tasker
According to JobzMall, the average salary range for a Principal Software Design Engineer in 399 W Trimble Rd, San Jose, CA 95131, USA is estimated to be between $110,000 and $150,000 per year. This is based on salaries reported by employers and employees in the area. This range may vary depending on the experience and qualifications of the individual.
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ASML is an innovation leader in the global semiconductor industry. We make machines that chipmakers use to mass produce microchips. Founded in 1984 in the Netherlands with just a handful of employees, we’ve now grown to over 40,000 employees, 143 nationalities and more than 60 locations around the world.
We provide chipmakers with hardware, software and services to mass produce patterns on silicon through lithography. Our lithography systems use ultraviolet light to create billions of tiny structures on silicon that together make up a microchip. We push our technology to new limits to enable our customers to create smaller, faster and more powerful chips.

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