Physical Design Engineer

AlteraSan Jose, CA
$118,900 - $169,000Onsite

About The Position

We are seeking a Physical Design Engineer to join our Silicon Design Automation & Implementation organization. In this role, you will contribute to the implementation of custom IP and SoC designs from RTL through GDSII, supporting timing closure, power optimization, physical verification, and design signoff for leading-edge semiconductor products. You will work closely with architecture, RTL, DFT, synthesis, verification, and methodology teams to help deliver high-quality silicon for next-generation FPGA technologies.

Requirements

  • Bachelor's degree in Electrical Engineering, Computer Engineering, Computer Science, or a related technical discipline and 3+ years of experience in semiconductor Physical Design.
  • 3+ years of experience with physical design implementation of custom IP or SoC designs from RTL through GDSII.
  • 3+ years of experience with physical design flows including synthesis, floorplanning, place and route, clock tree synthesis (CTS), and physical optimization.
  • 2+ years of experience performing static timing analysis (STA) and supporting timing closure on semiconductor designs.
  • 2+ years of experience with physical verification and signoff activities, including DRC, LVS, ERC, LEC, IR drop, electromigration (EM), and/or power integrity analysis.
  • Strong understanding of semiconductor physical implementation methodologies and design flows.
  • Strong analytical and debugging skills for solving timing, congestion, and physical implementation challenges.
  • Ability to analyze power, performance, and area tradeoffs across SoC and custom IP designs.
  • Strong communication skills with the ability to collaborate effectively across multidisciplinary engineering teams.
  • Ability to work effectively in a fast-paced, collaborative semiconductor development environment.
  • Passion for building high-quality silicon and continuously improving engineering methodologies.

Nice To Haves

  • Master's degree or Ph.D. in Electrical Engineering, Computer Engineering, or a related technical discipline.
  • Experience with advanced technology nodes (7nm, 5nm, 3nm, or smaller).
  • Experience implementing high-performance CPU, FPGA, AI accelerator, networking, or SoC designs.
  • Experience with Tcl, Python, Perl, or Shell scripting for flow automation.
  • Knowledge of static timing analysis and low-power implementation methodologies, including UPF/CPF.
  • Experience with Synopsys, Cadence, or Siemens EDA physical design and analysis tools.

Responsibilities

  • Perform block-level physical design implementation of custom IP and SoC designs from RTL through GDSII, supporting the delivery of manufacturing-ready design databases.
  • Execute and support stages of the physical design flow, including synthesis, floorplanning, power planning, place and route, clock tree synthesis (CTS), timing analysis, and physical optimization.
  • Perform static timing analysis (STA) and help resolve setup, hold, signal integrity, and other timing violations to achieve design closure.
  • Support the development and optimization of clock distribution networks, power distribution networks, and multiple power domain implementations to meet performance, power, and reliability targets.
  • Participate in physical verification and signoff activities, including formal equivalence checking (LEC), static timing analysis, power integrity, IR drop, electromigration (EM), layout verification, electrical rule checking (ERC), design rule checking (DRC), layout versus schematic (LVS), and structural verification.
  • Analyze physical design results, identify root causes of implementation issues, and work with senior engineers and cross-functional teams to implement corrective actions.
  • Optimize physical implementations to improve product-level metrics including performance, power consumption, frequency, area (PPA), manufacturability, and reliability.
  • Collaborate closely with RTL, Logic Design, DFT, CAD, Architecture, Verification, and Product Engineering teams throughout the design cycle.
  • Support Design-for-Test (DFT) integration and implementation throughout physical design and signoff.
  • Support physical design convergence across multiple design iterations while balancing timing, power, congestion, and area tradeoffs.
  • Contribute to the development, enhancement, and automation of physical design methodologies, flows, and infrastructure.
  • Apply physical implementation best practices and contribute to continuous improvements in design quality and execution.

Benefits

  • competitive compensation
  • comprehensive benefits
  • long-term wealth-building opportunities through our equity programs
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