Principal Engineer Design
Infineon Technologies · Bengaluru
- Experience13–14 yrs
- SalaryNot disclosed
- Work modeonsite
- Posted1 Oct 2026
About Infineon Technologies
Infineon Technologies is hiring in Bengaluru in semiconductors electronics. This role looks for around 13+ years of experience.
Skills
- timing closure
- static timing analysis
- Synopsys PrimeTime
- Cadence Tempus
- Tcl
- Python
- Perl
- Synopsys PrimeClosure
- Cadence Tweaker
- Synopsys TCM
- SpyGlass Constraints
- Cadence CCD
- Unified Power Format
- Cadence Conformal LEC
- Synopsys Formality
- POCV/LVF
- crosstalk analysis
- design-for-test architecture
The role
A VLSI design verification engineer at a semiconductor solutions company develops timing closure, constraints validation, and design-for-test timing for complex system-on-chip designs. The role applies Synopsys PrimeTime, Cadence Tempus, Tcl, and Python to automate sign-off, optimization, and constraint auditing.
Full job description
#WeAreIn to transform theoretical concepts into real hardware designs. Are you in?
Your role
Key responsibilities in your new role
As an engineer, Timing Closure, and Constraints Coding/Validation Engineer, you will own the architectural timing intent, constraint hygiene, and complete timing sign-off for complex, multi-million gate SoCs. You will drive multi-mode multi-corner (MMMC) timing closure from block-level implementation up to full-chip integration. A core focus of this role is using advanced optimization tools to fix critical setup, hold, transition and crosstalk violations across both functional and complex DFT modes (Scan, At-Speed, MBIST etc).
Timing Closure & ECO Sign-off: Lead and execute block-level and full-chip flat/hierarchical timing closure across advanced process nodes. Generate engineering change orders (ECOs) to fix setup, hold, max transition, and signal integrity violationsTool-Driven Optimization: Demonstrate expert mastery over automated ECO fixing tools (Tweaker, PT DMSA/Primeclosure, Cadence Tempus) drive rapid convergence of complex bottleneck violationMulti-Signoff STA Infrastructure: Architect, set up, and execute robust MMMC sign-off environments using Synopsys PrimeTime (PT/PT-PX) and Cadence Tempus. Ensure complete correlation across different timing enginesHierarchical Constraint Management: Architect, generate, and maintain clean SDC files at both the Block/IP level and the Full-Chip Top level. Manage constraint promotion, demotion, and validationSignal Integrity & Noise Analysis: Strong understanding of crosstalk-induced noise, glitch propagation, signal electromigration (Signal EM), and managing reconvergent timing paths affected by crosstalk delayDFT Mode Timing Validation: Define, audit, and validate constraints across multiple operational modes, specifically targeting Scan Shift & Capture, At-Speed Testing, Memory BIST (MBIST), and Logic BIST (LBIST) concurrent execution modesCross-Functional Leadership: Collaborate with DFT Engineers to resolve test mode constraints, RTL Designers to fix structural CDC/RDC violations, and P&R Teams to guide placement, clock-tree synthesis (CTS), and routing optimizationAutomation & Flow Development: Write advanced, production-grade Tcl scripts for PrimeTime/Tempus environmentsUtilize Python or Perl to build regression suites, analyze timing violations, and compare SDC variations
Your profile
Qualifications And Skills To Help You Succeed
Bachelor’s or Master’s degree in Electrical/Electronics Engineering, VLSI, Microelectronics, or a related field.Minimum 13+ years of relavent experience in STA full chip Core Tool Expertise (Mandatory):Sign-off STA: Synopsys PrimeTime (PT/PT-PX) and Cadence Tempus. Timing Closure / ECO: Cadence Tempus, Synopsys PrimeTime/PrimeClosure & Tweaker Constraints Validation: Synopsys TCM/GCA, Ausdia TimeVision, SpyGlass Constraints, or Cadence CCDRun strict constraints verification using industry-standard tools (Synopsys TCM, SpyGlass Constraints, or Cadence CCD) to eliminate unconstrained paths, incorrect clock-gating checks, and conflicting case analysis settings between functional and DFT modelHands-on experience reading, writing, and parsing Unified Power Format (UPF) constraints to validate low-power design architectures (e.g., power-gating, isolation cells, retention registers, and level-shifter placementFamiliarity with Logic Equivalency Checking using industry tools like Cadence Conformal LEC or Synopsys Formality to verify that optimization/ECO steps maintain functional equivalence Deep understanding of advanced node variation models (POCV/LVF), temperature inversion, crosstalk/noise analysis, and hierarchical top-level clock distribution networksSolid comprehension of DFT architecture, test clock structures, multiplexer-heavy clock networks, and asynchronously driven test logicExpert proficiency in Tcl (highly critical for runtime timing script customization) and Python/Perl for automated data mining and constraint auditing
#WeAreIn for driving decarbonization and digitalization.
As a global leader in semiconductor solutions in power systems and IoT, Infineon enables game-changing solutions for green and efficient energy, clean and safe mobility, as well as smart and secure IoT. Together, we drive innovation and customer success, while caring for our people and empowering them to reach ambitious goals. Be a part of making life easier, safer and greener.
Are you in?
We are on a journey to create the best Infineon for everyone.
We strive to create the best Infineon for everyone by embracing diversity and inclusion. We welcome applicants for who they are and offer a workplace built on trust, openness, respect and equal opportunity.
Our hiring decisions are based on skills and experience. Even if you don’t meet every requirement, we encourage you to apply.
Please let your recruiter know if you need any accommodations during the interview process.
Learn more about our various contact channels and about Diversity & Inclusion at Infineon.
Gowri Shenoy
https://www.linkedin.com/in/gowri-shenoy-33894217/