Integration Engineer
Overview
In this role you will drive technology transfer and manufacturability for advanced discrete power FETs, partnering across fab teams to enable high-volume production. You will translate high-level objectives into actionable plans, lead cross-functional initiatives, and present technical results to executives. The role blends device physics, process optimization, and reliability to shape onsemi’s power device roadmap. You’ll work in a fast-paced setting where cross-disciplinary collaboration accelerates impactful solutions.
Compensation / Benefitscompetitive benefits packagebase salary rangebonus potential
ResponsibilitiesDrive technology transfer and manufacturability for advanced discrete power FET nodes from concept to high-volume manufacturingCollaborate with process module owners to optimize process windows and device robustnessPerform device characterization, electrical testing, and failure analysis to ensure specifications and customer requirementsLead structured root-cause analysis (DOE, 6-sigma, SPC, FMEA) for yield or reliability issues and implement corrective actionsWork with systems engineering, product engineering, packaging, and applications teams to integrate power FETs into system-level solutionsPresent technical content in executive-level reviews
Key requirementsBachelor in Electrical Engineering (or related field) with 2+ years in semiconductor manufacturingExperience with discrete power FETs (trench MOSFETs, superjunctions, or related structures) and 300mm fabricationAbility to translate objectives into actionable engineering plans and drive projects independentlyStrong data-driven problem-solving skills using DOE, statistical analysis, SPC, 6-sigma, and FMEAExcellent communication skills for engineering and executive audiencesAbility to manage multiple projects in a fast-paced development environmentPrefer experience with post-wafer fab operations and wafer-level testing (ILT/WAT/PCM) and probestrong communicationcross-functional collaborationproblem-solvingDOEstatistical analysisSPC