Senior Methodologist for AIML Enhanced Design/Verification
Hewlett Packard Enterprise
- Location
- Sunnyvale, California, United States of America
- Work model
- On-Site
- Level
- Senior
- H-1B history
- 167 approvals (FY2023)
- Posted
- Sep 17, 2026
About this role
Senior Methodologist for AIML Enhanced Design/Verification This role has been designed as ‘’Onsite’ with an expectation that you will primarily work from an HPE office.
Who We Are
Hewlett Packard Enterprise is the global edge-to-cloud company advancing the way people live and work. We help companies connect, protect, analyze, and act on their data and applications wherever they live, from edge to cloud, so they can turn insights into outcomes at the speed required to thrive in today’s complex world. Our culture thrives on finding new and better ways to accelerate what’s next. We know varied backgrounds are valued and succeed here. We have the flexibility to manage our work and personal needs. We make bold moves, together, and are a force for good. If you are looking to stretch and grow your career our culture will embrace you. Open up opportunities with HPE.
Job Description
We are seeking a Senior AIML enhanced Design/Verification Methodology Engineer to join our team. In this role, you will be responsible for developing and executing comprehensive verification strategies for complex digital designs using AIML enhanced methodologies . You will architect, build, and maintain AIML enhanced or agentic solutions for design and verification environments with applications to all phases of design and verification closure. You will collaborate closely with design and system engineering teams to ensure silicon quality from RTL to tapeout. This is a high-impact position for someone who thrives on solving intricate design/verification challenges using AIML methodologies.
Key Responsibilities
Use both “ classical” and Generative-AI methodologies to architect, develop, and maintain agents, skills, and other AI based design and verification infra-structures. The ideal person will have balanced knowledge of chip design and AIML methodologies to contribute meaningfully to the creation of architecture, design, verification, and physical design assets. These includes but not limited to: Creating UVM-based testbench environments from ground up or enhance the existing ones using AI. Creating verification plans with clear coverage goals and closure criteria. Performing root cause analysis of failures and work with design teams to drive resolution. Automating generation of RTL from spec. Evaluation of industry tools.
Minimum Qualifications
Bachelor's degree in Electrical Engineering, Computer Engineering, or Computer Science (or equivalent). 3 -5 years of direct hands-on experience with AIML methods, concepts and workflows — including experience in creating agents, skills, APIs, model, etc. for Design/Verification problem. 5 - 7 years of experience in production development of RTL design and verification infrastructure. Strong experience in SystemVerilog for design or verification. Solid understanding of digital design fundamentals (RTL, timing, synthesis constraints). Experience with industry-standard simulation tools (e.g., Synopsys VCS, Cadence Xcelium, Mentor Questa). Effective communication and collaboration skills in cross-functional team settings.
Preferred Qualifications
Master's or Ph.D. in Electrical Engineering or Computer Science. Experience with formal verification tools and techniques (e.g., JasperGold, VC Formal) is a plus. Experience with emulation and FPGA prototyping platforms (e.g., Palladium, Protium, Veloce) is also a plus. Industry conference/peer reviewed journal publications in the design/verification methodology development and/or AIML . Why Join Us? You'll work on challenging, cutting-edge designs alongside a talented engineering team that values innovation, quality, and continuous learning. We offer competitive compensation, comprehensive benefits, and opportunities for professional growth. Ready to Apply? If you are passionate about verification excellence and want to make a lasting impact on next-generation silicon, we'd love to hear