ASIC Engineer, Design Verification

Meta

$130K — $180K *
Technical Services
8 - 10 years of experience
Job Overview by Ladders

Qualifications

  • Bachelor's degree in Computer Science, Computer Engineering, or equivalent experience
  • 8+ years of hands-on experience in SystemVerilog/UVM methodology or C/C++ based verification
  • 8+ years in IP/sub-system and/or SoC level verification based on SystemVerilog UVM/OVM
  • Experience with SV Assertions, Formal, and Emulation in functional verification
  • Proficient in EDA tools and scripting languages (Python, TCL, Perl, Shell)
  • Skilled in architecting Design Verification infrastructure and managing the full verification cycle

Responsibilities

  • Define and implement verification plans for IP/SoCs
  • Develop functional tests according to the verification test plan
  • Achieve closure in Design Verification based on defined metrics
  • Debug and resolve functional design failures in collaboration with the Design team
  • Collaborate with Design, Model, Emulation, and Silicon validation teams to ensure high design quality
  • Drive improvements in Design Verification using the latest methodologies and tools

Benefits

  • Opportunity to work with cutting-edge AI/ML and networking technologies
  • Collaborative work environment with cross-functional teams
  • Focus on continuous improvement of verification processes
  • Chance to influence first-pass silicon success
  • Engagement in complex projects with an impact on Meta's data center infrastructure
Full Job Description
Meta's Infrastructure Silicon team is seeking a Staff ASIC Design Verification Engineer to drive verification strategy and execution for custom silicon powering Meta's data center infrastructure. In this role, you will lead the end-to-end verification of complex IP blocks and SoCs designed for AI/ML acceleration, networking, and video processing workloads. You will architect scalable UVM-based verification environments, define coverage models, and partner with design, emulation, and post-silicon validation teams to achieve first-pass silicon success across Meta's infrastructure ASIC portfolio.

Responsibilities

Define and implement IP/SoC verification plans, build verification test benches to enable IP/sub-system/SoC level verification
• Develop functional tests based on verification test plan
• Drive Design Verification to closure based on defined verification metrics on test plan, functional and code coverage
• Debug, root-cause and resolve functional failures in the design, partnering with the Design team
• Collaborate with cross-functional teams like Design, Model, Emulation and Silicon validation teams towards ensuring the highest design quality
• Develop and drive continuous Design Verification improvements using the latest verification methodologies, tools and technologies from the industry

Minimum Qualifications
• Bachelor's degree in Computer Science, Computer Engineering, relevant technical field, or equivalent practical experience
• 8+ years of hands-on experience in SystemVerilog/UVM methodology and/or C/C++ based verification
• 8+ years experience in IP/sub-system and/or SoC level verification based on SystemVerilog UVM/OVM based methodologies
• Experience in one or more of the following areas along with functional verification-SV Assertions, Formal, Emulation
• Experience in EDA tools and scripting (Python, TCL, Perl, Shell) used to build tools and flows for verification environments
• Experience in architecting and implementing Design Verification infrastructure and executing the full verification cycle

Preferred Qualifications
• Experience with compute and/or memory subsystem and/or collective functional and performance verification
• Experience with verification of ARM/RISC-V/GPU based sub-systems or SoCs
• Experience in development of UVM based verification environments from scratch
• Prior experience with fullchip or package-level integration projects
• Experience working across and building relationships with cross-functional design, model and emulation teams
• Familiarity with host and system-level concepts for functional verification
• Experience with chiplet based architectures and package-level integration verification

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