Lead Engineer - System Engineering
Eaton · Pune Division
- Experience10–11 yrs
- SalaryNot disclosed
- Work modeonsite
- Levelexecutive
- Posted10 Sept 2026
About Eaton
Eaton is hiring in Pune Division in energy utilities. This role looks for around 10+ years of experience.
Skills
- Systems Engineering
- MBSE
- Requirements management
- Architecture development
- Interface management
- Verification and validation
- Digital engineering
- Utility interconnection
- Medium-voltage/low-voltage distribution systems
- Power system analysis
- Power flow analysis
- Short-circuit analysis
- Protection coordination
- Power quality analysis
- Transient stability analysis
- Electrical system modeling
- Thermal modeling
- Controls modeling
- Reliability modeling
- Availability analysis
- Maintainability assessment
- Risk analysis
- ISO/IEC 15288
- IEEE
- IEC
- UL
- MATLAB/Simulink
- ETAP
- SKM
- PSCAD
The role
A systems engineer at an electrical power and data center infrastructure company develops electrical system architectures using Systems Engineering and MBSE, performs power system analysis, and evaluates reliability engineering. The role also applies MATLAB/Simulink and ETAP to validate models and optimize resilient power distribution solutions.
Full job description
What You’ll Do
Lead Engineer – Systems Engineering
This role is responsible for leading systems engineering and model-based systems engineering (MBSE) activities for complex electrical systems with a primary focus on data center power and infrastructure architectures. The position develops system architectures, requirements, digital models, and engineering analyses that support the design, validation, and optimization of next-generation data center solutions. The role serves as a technical leader for system modeling, architecture trade studies, and cross-domain integration, ensuring traceability from stakeholder needs through design, verification, and operational performance.
Systems Engineering & Architecture
Apply Systems Engineering and MBSE methodologies to complex data center electrical systems.Develop and manage requirements, functional, logical, and physical architectures.Define system interfaces, behaviors, operating modes, and V&V strategies.Develop CONOPS, operational scenarios, and maintain end-to-end requirements traceability.Conduct architecture assessments and trade-off studies to support technical decision-making.
Electrical System Analysis
Perform power flow, voltage drop, power quality, short-circuit, protection coordination, fault, and transient studies.Evaluate utility interconnections and MV/LV power distribution systems.
Data Center Infrastructure Modeling
Analyze end-to-end power architectures from utility service entrance to IT loads.Evaluate switchgear, transformers, UPS, PDUs, busways, and rack-level power distribution systems.Assess conventional, modular, distributed, and next-generation data center power architectures.
Trade-Off & Optimization Studies
Conduct multi-attribute trade-space analyses for architecture selection.Evaluate solutions based on cost, efficiency, energy use, thermal performance, reliability, availability, resilience, scalability, maintainability, and footprint.Develop decision-support models and recommend optimal solutions.
Validation & Verification
Validate system models using design data, test results, supplier inputs, and operational scenarios.Ensure model fidelity, credibility, and compliance with program objectives.Support verification planning and lifecycle validation activities.
Reliability & Resilience Engineering
Assess system reliability, availability, maintainability, and resilience.Analyze redundancy architectures (N, N+1, 2N), single points of failure, and operational risks.Apply reliability block diagrams and availability modeling techniques.
Cross-Functional Technical Leadership
Collaborate across electrical, controls, thermal, software, mechanical, reliability, and program teams.Act as the technical lead for data center system modeling and architecture initiatives.Drive systems engineering best practices, standards, and methodologies.Present complex technical findings and actionable recommendations to leadership, customers, and stakeholders.
Qualifications
Bachelor's/ Master Degree in Electrical Engineering, Electronics Engineering, Power Engineering, or a related discipline.
Preferred
Minimum 10+ years of relevant experience in systems engineering, electrical power systems, or data center infrastructure engineering.
Skills
Systems Engineering & MBSE
Extensive experience in system and subsystem-level systems engineering.Strong knowledge of the systems engineering lifecycle and MBSE practices.Expertise in requirements management, architecture development, interface management, and V&V planning.Experience with digital engineering, digital thread, and model-based development.
Data Center Electrical Systems
Expertise in utility interconnection, grid interface, MV/LV distribution systems.Hands-on experience with switchgear, transformers, busways, PDUs, UPS systems, and rack-level power distribution.Strong understanding of data center architectures, KPIs, and power infrastructure design.
Power System Analysis
Proficient in power flow, fault, short-circuit, protection coordination, and power quality studies.Experience in transient stability and disturbance analysis.
Multi-Domain Modeling & Simulation
Experience in electrical, thermal, controls, reliability, and infrastructure system modeling.Skilled in dynamic simulations, digital twins, and integrated system analysis.
Reliability & Resilience Engineering
Expertise in reliability modeling, availability analysis, MTBF concepts, and maintainability assessments.Experience with redundancy architectures (N, N+1, 2N), risk analysis, and single-point-of-failure evaluations.
Standards & Compliance
Strong knowledge of ISO/IEC 15288, IEEE, IEC, UL, and data center industry standards.Familiar with electrical safety, compliance, and power quality requirements.
Engineering Tools
MATLAB/Simulink, ETAP, SKM, PSCAD, Digital Twin, and Co-simulation platforms.
Leadership & Collaboration
Proven ability to lead multidisciplinary engineering initiatives.Strong stakeholder management, collaboration, and influencing skills.
Analytical & Communication Skills
Strong systems thinking, problem-solving, and data-driven decision-making capabilities.Excellent written and verbal communication skills with the ability to present complex technical concepts to leadership, customers, and cross-functional teams.