Stay up to date with the latest advancements in power electronics.
Design high power density and highly efficient magnetics.
Research and implement two-level and multilevel power factor correction topologies, including both hard-switching and soft-switching techniques.
Prepare technical reports, presentations, and documentation to communicate findings and support product development.
Develop and optimize dual-active-bridge (DAB) and resonant DC-DC topologies.
Design and develop high power density and high efficiency power conversion solutions for datacenter, server, and telecom applications.
Conduct simulations (PSIM, PLECS, Simplis, ANSYS, Matlab/Simulink) and prototype testing to validate design concepts and ensure performance meets required specifications.
Explore and implement new bidirectional devices like bi-GaN and bi-SiC in various applications such as Vienna rectifiers, Current Source Inverters (CSI), and single-stage isolated AC-DC converters.
Work on single-stage AC-DC topologies, including resonant and DAB configurations.
Collaborate with cross-functional teams to ensure seamless integration of new technologies into existing and new products.
Requirements
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Proficiency in working with wide band gap devices such as SiC and GaN.
Experience with hardware design and testing, including PCB layout and thermal management.
Experience with single-stage AC-DC topologies (resonant and DAB).
Familiarity with new bidirectional devices (bi-GaN and bi-SiC) and their applications.
Strong communication skills, both written and verbal.
Prospective candidates should possess excellent analytical, organizational, interpersonal, and communication skills (fluency in Mandarin is preferred).
M.S. degree with 5 years of relevant experience or Ph.D. degree in Electrical Engineering
Strong knowledge of two-level and multilevel power factor correction topologies (both hard-switching and soft-switching).
Excellent problem-solving skills and the ability to work independently and as part of a team.
Expertise in DAB and resonant DC-DC topologies.
Hands-on experience with simulation tools such as MATLAB/Simulink, PLECS, or similar.
Preference will be given to U.S. citizens and permanent residents.
Proven experience in power electronics design and development, specifically in high efficiency and high-power density designs.