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ASIC Physical Design Engineer Tektronix Boulder, CO, United States + 1 more
Job in
Boulder, Boulder County, Colorado, 80301, USA
Listed on 2026-08-13
Listing for:
Pacific Scientific Energetic Materials Company
Full Time
position Listed on 2026-08-13
Job specializations:
-
Engineering
Hardware Engineer, Electronics Engineer, Systems Engineer, Automation & Mechatronics Engineer
Job Description & How to Apply Below
ASIC Physical Design Engineer At Tektronix, we believe innovation starts with our customer. This approach has led us to a seventy-five-year history of delivering outstanding solutions to customers in virtually every industry. Our inclusive engineering culture is hardworking, inquisitive, and always eager to learn and grow. We are customer obsessed in our daily work and continuously strive for improvement to conceptualize the best solutions possible.
We are an ever-evolving team that is always looking for opportunities to develop people and resolve tough problems together.
We are seeking an experienced ASIC Physical Design Engineer to join one of Tektronix’s design centers in Louisville, CO or Beaverton, Oregon. In this role, you will work on all aspects of physical design and implementation of SOC devices targeted at our next-generation products. You will collaborate closely with an exceptional, cross-functional team to deliver industry-leading solutions using world-class design tools.
Responsibilities
· Execute ASIC digital physical design implementation from RTL or gate-level netlist through GDSII, including floor-planning, placement, clock tree synthesis, routing, and design closure.
· Drive place-and-route execution using industry-standard EDA tools, optimizing designs for timing, power, area, signal integrity, and routability.
· Perform static timing analysis and timing verification across multiple modes and corners, resolving setup, hold, clocking, and constraint-related issues to achieve timing closure.
· Support physical signoff activities, including DRC, LVS, formal equivalence checking, extraction, IR drop, electromigration, and signal integrity analysis.
· Collaborate with RTL design, verification, DFT, analog, packaging, and product architecture teams to resolve implementation issues and ensure a timing-closed, manufacturable, tapeout-ready design.
· Develop and maintain scripts, flows, documentation, and review materials that improve physical design methodology, automation, quality, and schedule predictability.
Minimum Qualifications
· BS in Electrical Engineering or equivalent experience.
· 5+ years of hands-on experience ASIC physical design from RTL to verified GDS.
· Hands-on experience with ASIC or SoC physical design implementation, including floor planning, power planning, place-and-route, clock tree synthesis, routing, and design closure.
· Working knowledge of RTL-to-GDSII physical design flows and the ability to resolve implementation issues related to congestion, timing, power, area, and signal integrity.
· Experience with static timing analysis, timing constraints, multi-mode multi-corner timing verification, and timing closure at the block or SoC level.
· Familiarity with physical signoff checks and related debug activities, including DRC, LVS, extraction, formal equivalence checking, IR drop, electromigration, and crosstalk analysis.
· Proficiency with industry-standard physical design and timing tools from vendors such as Cadence, Synopsys, or Siemens EDA.
· Strong scripting and automation skills using Tcl, Python, Perl, or shell scripting to support physical design flows, debug, reporting, and methodology improvement.
· Provide feedback to RTL and packaging design teams to improve design hand-off quality and standard work processes.
· Basic knowledge of industry standard ECO practices.
Preferred Qualifications
· 10+ years of hands-on experience ASIC physical design from RTL to verified GDS.
· MS or PhD in Electrical Engineering or equivalent experience.
· Principal-level experience leading physical design implementation for complex ASIC or SoC programs, including floor planning, power planning, place-and-route, clock tree synthesis, routing, ECOs, and full-chip or major subsystem closure.
· Proven ability to define and drive RTL-to-GDSII physical design strategy, resolve complex congestion, timing, power, area, signal integrity, and manufacturability tradeoffs, and deliver tapeout-quality results on schedule.
· Advanced expertise in static timing analysis, timing…
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