THE PERSON:
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This position requires accountability for the quality and timeliness of outcomes within assigned projects or processes. The ideal candidate demonstrates problem-solving abilities through standard engineering methodologies and exercises independent judgment in complex technical decisions. Responsibilities include design and equivalent tasks within defined project scopes, covering test planning, creation, characterization, data analysis, and silicon debug for advanced process technologies.
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KEY RESPONSIBILITIES:
- Sound understanding of Computer Architecture, including pipelining, caching, x86 architecture, and PC organization
- Proficiency in software programming (Python, Ruby, C++, Java, C, or C#); scripting languages (Perl, Ruby, shell script, etc.)
- Experience with Lean, XP, AGILE, Scrum, or Kanban methodologies
- Familiarity with version control systems (GIT, SVN, CVS, etc.)
- Industry experience in processor test development, validation, and/or debugging
- Academic background in Computer Science, Software Engineering, Digital Logic, and Circuit Theory
- Experience with Linux/Unix and Microsoft Windows operating systems, as well as standard office applications
- Strong collaborative capabilities and experience working with geographically diverse engineering teams
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PREFERRED EXPERIENCE:
- Practical knowledge of silicon debug using ATE, including implementation of test specifications, pattern/vector development, and timing
- Familiarity with Scan/ATPG methodologies, hardware compression, failure mechanisms, debug processes, and AC scan development
- Experience with functional or cache resident testing
- Understanding of modern SRAM cell operation, associated debug, test, and characterization; familiarity with Memory BIST engines
- Background in analog/mixed-signal DFT for microprocessor architectures
- Experience with Verigy 93K ATE platforms, including infrastructure and methodologies for connectivity-based testing
- Strong communication and data presentation skills
- Proficiency with diagnostic tools such as logic analyzers, voltmeters, oscilloscopes, and related equipment
- Knowledge of JTAG IEEE 1149.1 specification and hardware description languages
- Statistical analysis expertise for population means and outlier identification; Pareto analysis for debug processes
- Relevant professional experience in any of the aforementioned areas is highly valued
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