BSc in Electrical Engineering, Electronics Engineering, or a related field 7+ years of experience in analog/power validation, characterization, or hardware design verification Strong Python proficiency — automation, instrumentation control, data analysis, and visualization Proven experience designing validation strategies and DFV methodologies for development platforms Hands-on experience with power domain characterization in multi-sensor systems Demonstrated ability to work across the full validation cycle — from test plan definition through execution, analysis, and reporting Solid understanding of laser safety standards and protection circuit requirements Strong system-level vision — ability to understand the full power architecture and how analog domains interact within the broader camera and laser sensor system System-to-component depth — proven capability to conduct system-level power validation while diving to component-level characterization for root-cause analysis and margin assessment Deep knowledge of power management architectures — LDOs, DC-DC converters (buck, boost, buck-boost), charge pumps, and power switches Hands-on experience with laser driver circuits — current sources, pulsed drive, modulation schemes, and safety mechanisms Proficiency with analog test instrumentation — oscilloscopes, power analyzers, source-measure units (SMUs), electronic loads, spectrum analyzers, and thermal imaging Experience with DFV/DFT methodologies for analog and mixed-signal systems Strong proficiency in Python for test automation, data acquisition, instrumentation control, and analysis Understanding of PCB design considerations for power integrity — layout, decoupling, grounding, and thermal management MSc in Electrical Engineering, Power Electronics, or a related discipline — considered a significant advantage Experience with camera sensor power domains (AVDD, DVDD, IOVDD) and associated sequencing requirements Familiarity with VCSEL or edge-emitting laser driver characterization Experience with thermal characterization and power derating analysis Background in EMC/EMI considerations for analog and power circuits