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Hardware Design and Power Electronics-2586

Hitech Industry Unit · Electronic City, Bengaluru, Karnataka, India · Regular Employee - Probation · 7 - 10 Years

Posted
7 Sept 2026
Last verified at source
6 hours ago
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Role Summary

We are looking for an experienced Hardware System Lead with strong expertise in power electronics, SiC MOSFET switching systems, high-voltage/high-current hardware design, gate-driver circuits, protection design, hardware interfaces and validation. The role supports development and validation of dynamic power semiconductor test benches used for short-circuit, double/multi-pulse and unclamped inductive load test scenarios.

Key Responsibilities

·         Lead system-level understanding and review of high-power semiconductor test hardware, including power paths, energy storage, switching stages, protection circuits and control interfaces.

·         Analyze DC-link capacitor banks, pre-charge/discharge circuits, load inductors, snubber circuits, high-current switching paths and safe energy handling during normal and fault conditions.

·         Review SiC MOSFET / IGBT switching behavior, including dv/dt, di/dt, voltage overshoot, ringing, parasitic-loop impact and safe operating margin.

·         Review gate-driver design including gate voltage levels, ON/OFF gate resistance, Miller clamp, negative gate bias, DESAT/overcurrent protection, soft shutdown, isolation and CMTI margin.

·         Analyze and improve fast protection circuits for high-energy test conditions, including short-circuit protection, dI/dt and dV/dt-based fault detection, fault latch/reset and safe shutdown strategy.

·         Define hardware interface requirements for control boards and automation systems, including signal conditioning, isolation, level shifting, relay/switch drive, feedback signals, interlocks and diagnostics.

·         Support board-level and system-level bring-up, debugging, root-cause analysis, validation planning and robustness testing for high-power test systems.

Required Qualifications & Skills

·         7–10 years of experience in power electronics hardware design, high-voltage/high-current systems, semiconductor test hardware or high-power test instrumentation.

·         Strong knowledge of SiC MOSFET and IGBT switching behavior, gate drivers, DC-link design, protection circuits, transient effects and energy-flow analysis.

·         Experience in schematic review, interface definition, signal-conditioning review, isolation review, board bring-up, hardware debugging and system-level validation.

·         Ability to define test sequences and hardware-state transitions for automated test execution, including fault handling and safe-state behavior.

·         Good understanding of parasitic inductance/capacitance effects, grounding, cable/connector selection, signal integrity and EMC/EMI considerations in power electronics systems.

Good to Have

·         Exposure to dynamic semiconductor test methods such as double-pulse testing, short-circuit testing, multi-pulse testing, UIL/avalanche testing and high-current pulse testing.

·         Awareness of safety/interlock systems, CE/SEMI compliance readiness and validation practices for high-power equipment.

·         Familiarity with tools such as LTspice, PLECS, MATLAB/Simulink, Altium, Cadence, Mentor or equivalent schematic/PCB review environments.

Expected Deliverables

·         Hardware architecture review, power path and energy-flow analysis, gate-driver/protection review, interface requirements, validation plan, debug reports and design-improvement recommendations.

Role Impact

This role is critical for ensuring safe, reliable and robust operation of high-power SiC MOSFET dynamic test platforms by improving protection reliability, switching performance, hardware robustness and readiness for automated test execution.