About this role
Division R&D Department EV Electronics Level Ex Functional Area Low Voltage Power Designs 1 Job Title Manager (R&D) 2 Reporting Leadership, R&D – EV Electronics 3 Educational Qualification B.E/ B Tech in Electrical, Electronics/Instrumentation and Equivalent Streams, M Tech in Power Electronics (preferred), PhD in Power Electronics domain, min 70% in all levels of education Experience 3 to 12 yrs Age Limit NA 4 Job Role & Responsibilities Role: Power Electronics Engineer Technical/Functional: Motor Control Unit: Design motor controllers for BLDC, PMSM, and induction motors used in electric powertrains. Develop inverter power stages, including 2-level, 3-level, and multilevel topologies with MOSFETs, IGBTs, SiC/GaN devices. Optimize gate driver circuits, dead-time control, and protection mechanisms for reliable and efficient switching. Implement DC-link capacitor selection, busbar design, and snubber circuits to enhance system performance. Ensure compliance with ISO 26262 (Functional Safety), EMI/EMC standards, and automotive-grade reliability requirements. DC-DC Converter: Design and optimize isolated and non-isolated DC-DC converters (buck, boost, flyback, forward, LLC resonant, etc.) for EV auxiliary power supplies and high- voltage power distribution. Select and implement high-efficiency power semiconductor devices (MOSFETs, GaN, SiC), magnetics, and control ICs. Perform stability analysis, transient response testing, and loop compensation design for closed-loop converters. Ensure high power density, efficiency optimization, and EMI/EMC mitigation. Design multi-layer PCBs for power electronics applications, ensuring optimized trace routing, creepage/clearance compliance, and thermal dissipation. Work closely with PCB layout engineers to integrate power and control circuits, ensuring minimal parasitics and optimal switching performance. Collaborate with mechanical engineers for enclosure design, thermal simulation, and system integration. Conduct worst-case circuit analysis (WCCA), Design Failure Mode and Effects Analysis (DFMEA), and Hardware Safety Analysis. Develop hardware prototypes and conduct rigorous performance testing, thermal analysis, and efficiency characterization. Utilize oscilloscopes, spectrum analyzers, thermal cameras, and high-voltage test equipment for debugging and validation. Perform power stage simulations using LTSpice, PLECS, PSIM, MATLAB/Simulink, or Ansys Maxwell. Conduct EMI/EMC compliance testing, functional safety assessments, and HALT/HASS testing. 5 Competency Requirements Behavioral: Demonstrates excellent communication skills, both written and verbal. Serves as an effective team player with the capability to lead and mentor a group of engineers. Anticipates challenges, takes proactive actions, and fosters a culture of continuous improvement. Creates and maintains comprehensive technical documentation, including design calculations. Encourages innovation in technology and cost optimization, promoting intellectual property (IP) generation within the team. Possesses the ability to transform concepts into practical, real-world solutions. Communicates effectively with team members, peers, suppliers, and senior leadership. Collaborates seamlessly with cross-functional teams to develop innovative and impactful solutions. Specific expertise required for functional domain: Knowledgeable about electric vehicle standards and regulations, including ISO 26262 for functional safety, CISPR for EMC compliance, and familiar with the automotive product development process. Strong understanding of DFSS (Design for Six Sigma) methodology. Hands-on experience in designing hardware for Motor Control Unit & DC-DC converter used in automotive, industrial, or medical applications. Skilled in electronic circuit design, schematic capture, and PCB layout development. Proficient in using common laboratory equipment, such as oscilloscopes, digital multimeters, network analyzers, and spectrum analyzers. Experienced in product feature improvement, optimization, and cost reduction strategies. 6 Likely sources Bosch, Philips, GE, Eaton, Ather, OLA, Matter Motor