Applications Engineering
Synopsys | |
$129000-$193000
| |
United States, California, Mountain View | |
700 East Middlefield Road (Show on map) | |
Sep 15, 2026 | |
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We AreSynopsys is the leader in engineering solutions from silicon to systems, enabling customers to rapidly innovate AI-powered products. We deliver industry-leading silicon design, IP, simulation and analysis solutions, and design services. We partner closely with our customers across a wide range of industries to maximize their R&D capability and productivity, powering innovation today that ignites the ingenuity of tomorrow.You AreYou have spent years in the space where power analysis stops being theoretical and starts being the thing that makes or breaks a tape-out schedule. You know that RTL power is not just about running a tool, it is about understanding why the numbers look wrong, where the FSDB stimulus is lying to you, and how to get a customer's flow from "interesting evaluation" to "this is now in our production signoff checklist."You are the engineer who can walk into a customer meeting, listen to their design constraints and flow pain points, then sketch out a deployment plan that accounts for their NDM import mess, their multi-rail UPF complexity, and the fact that their verification team has never heard of CGE. You do not wait for perfect data. You work with what you have, ask the right questions, and build a path forward that actually works in their environment, not just in a demo deck.Debugging is where you thrive. Elaboration failures, glitch correlation mismatches, SDF timing issues that make no sense until you dig three layers deeper, that is your comfort zone. You have learned that the best customer engagements are the ones where you teach someone how to solve the next problem themselves, not just fix the one in front of you today.At Synopsys, you will own Prime Power RTL 2.0 deployments end to end for real customers building real chips, and the flow you deliver this quarter will still be running two years from now.What You'll Be DoingLead Prime Power RTL 2.0 evaluations and production deployments from scoping through go-live, including methodology selection, flow customization, and customer knowledge transferDeploy and tune logical flows using CGE, lint, and ODC, physical flows with RTLA and glitch/SDF integration, and hybrid NDM import flows across customer design environmentsApply WCDF-based calibration and synthesize with apply_calib to improve RTL-to-signoff correlation when designs demand tighter accuracy, and guide customers on FSDB stimulus quality and coverageIndependently troubleshoot elaboration failures, library mismatches, SDC constraints, FSDB parsing issues, multi-rail UPF problems, and power accuracy gaps across VCS, Verdi, PrimeTime, and RTL ArchitectPresent flow options, CGE/CGR/DACGE results, and deployment timelines to customer engineering teams and manage project deliverables through completionDevelop Tcl-based automation for staged save/restore methodologies, custom reporting, and flow integration that fits into customer regression environmentsMentor Level 1 and Level 2 Applications Engineers, contribute to internal playbooks and best practices, and provide R&D feedback based on field deployment patternsThe Impact You Will HaveAccelerate customer adoption of RTL power analysis by delivering deployments that integrate cleanly into existing signoff flows and reduce time-to-results by weeksImprove power accuracy and correlation for SoC and AI accelerator designs, enabling customers to make better architectural and implementation decisions earlier in the design cycleReduce customer escalations and support load by building flows that are robust, repeatable, and documented well enough that design teams can run them independentlyInfluence Prime Power RTL 2.0 product direction by surfacing real deployment blockers, flow gaps, and feature requests directly from customer engagementsExpand Synopsys footprint in accounts by proving that RTL power analysis is not just a nice-to-have but a production-ready part of the low-power design methodologyBuild internal AE capability by mentoring junior engineers and creating reusable deployment assets that shorten ramp time on future customer engagementsStrengthen customer relationships by becoming the engineer they call first when something breaks, because you have already solved the hard problems in their environmentWhat You'll NeedBachelor's degree in Electrical Engineering, Computer Engineering, or related field with 5+ years in EDA applications, IC design, or low-power methodology, or Master's degree with 3+ yearsHands-on experience deploying RTL power analysis tools in customer or production environments, with working knowledge of CGE, glitch analysis, and memory power modelingProficiency with VCS, Verdi, FSDB waveform formats, SDC constraint flows, and Tcl scripting for EDA tool automationDemonstrated ability to independently manage customer-facing technical projects from kickoff through delivery, including timeline management and stakeholder communicationExperience with Prime Power RTL 2.0, RTL Architect, Fusion Compiler, or NDM-based design flows is a strong plusFamiliarity with PrimeTime PX signoff correlation, UPF/IEEE 1801 multi-rail analysis, or SoC and AI accelerator design methodologies is a strong plusPrior Applications Engineering role at an EDA vendor or customer-facing technical role at a semiconductor company is a strong plusWho You AreYou can walk into a customer meeting where the flow is broken, the timeline is tight, and the data is incomplete, and you leave with a clear plan that the customer actually believes inDebugging energizes you more than it frustrates you, whether it is a UPF multi-rail issue that makes no sense or an FSDB stimulus problem that is masking real power behaviorYou know how to explain a calibration tradeoff or a glitch correlation gap to a design lead in two sentences without losing the technical nuance or oversimplifying the fixYou are comfortable saying "I do not know yet, but here is how I will figure it out" and then actually figuring it out without needing someone to hold your handYou have learned that the best customer engagements end with the customer being able to run the flow themselves, not with them depending on you to run it for them every timeYou can manage three customer deployments at once, keep the timelines straight, and still find time to help a junior AE who is stuck on an elaboration issueThe Team You'll Be Part OfYou will join the Applications Engineering organization supporting Prime Power RTL 2.0 and low-power design methodology across Synopsys customer accounts. The team works closely with R&D, sales, and customer design teams to deploy, tune, and scale RTL power analysis in production environments. Your work will directly shape how customers adopt and integrate power analysis into their signoff flows, and you will collaborate with AEs across logical, physical, and signoff domains to deliver complete low-power solutions.Rewards and BenefitsWe offer a comprehensive range of health, wellness, and financial benefits to cater to your needs. Our total rewards include both monetary and non-monetary offerings. Your recruiter will provide more details about the salary range and benefits during the hiring process.
At Synopsys, we want talented people of every background to feel valued and supported to do their best work. Synopsys considers all applicants for employment without regard to race, color, religion, national origin, gender, sexual orientation, age, military veteran status, or disability. In addition to the base salary, this role may be eligible for an annual bonus, equity, and other discretionary bonuses. Synopsys offers comprehensive health, wellness, and financial benefits as part of a competitive total rewards package. The actual compensation offered will be based on a number of job-related factors, including location, skills, experience, and education. Your recruiter can share more specific details on the total rewards package upon request. The base salary range for this role is across the U.S. Apply Now | |
$129000-$193000
Sep 15, 2026