Work with cross-functional engineering team to define requirements and create detailed system and circuit designs for new products including medium voltage solid state transformers, three-phase UPS, DC chargers from 500kW to 3.5MW and larger energy storage systems. Leverage your skill and experience by giving guidance and leadership to other technical project team members. Work with global product development teams to solve problems related to performance, functionality, safety, reliability, quality and component availability. Develop unique ways of uncovering product compliance issues before products are built. Bring product design issues and solutions to the fore front of discussion during product design reviews. Provide technical leadership by mentoring engineers, guiding best practices, and owning programs from concept through integrated system delivery. Integrate and optimize embedded control solutions, combining auto generated and handwritten C/C++ code for real time, safety critical environments. Bachelor's Degree in Electrical Engineering from an accredited institution Minimum of nine (9) years work experience in Power Electronics R&D and commercial launch product development Minimum of five (5) years work experience with high power (>50kW) three-phase 480Vac UPS's, motor drives or medium voltage products or similar products. Minimum three (3)with FPGA-based implementation of digital control algorithms and PWM modulation techniques. Minimum five (5) in embedded firmware development and programming in C/C++ Must be able to work in the United States without corporate sponsorship now and within the future. Master's degree or PhD in Electrical Engineering from accredited institution. 7+ years of experience with high power (>50kW) three-phase 480Vac UPS's, motor drives, medium voltage products or similar products. 3+ years of hands-on experience with control and embedded FW validation with HIL (e.g., OPAL-RT HIL). Strong foundation in Electrical Engineering. Proficient in developing and implementing controls with auto-code generation tools (e.g., Simulink Coder). Deep understanding of power systems and power electronics domains. Experience with Requirements Engineering processes and tools, such as JAMA or DNG. Familiarity with CI/CD practices and source control tools (e.g., GitHub), including automation workflows (e.g., GitHub Actions). Hands on experience with system level simulations, including architecture level analysis, system logic and behavioral modeling, and performance trade off evaluation.
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