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Power Electronics Research Engineer (All Levels)

LITEON

Singapore

On-site

SGD 60,000 - 120,000

Full time

Today
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Job summary

A leading technology company in Singapore is seeking a Power Electronics Research Engineer. This role involves conducting fundamental research in power electronic architectures, collaborating with industry and academic partners, and developing innovative solutions. Candidates must have a PhD or Master’s in Electrical/Electronics Engineering and a strong background in electronics design. Opportunities for professional growth and competitive compensation are offered.

Benefits

Competitive compensation
Research autonomy
Continuous learning culture

Qualifications

  • Strong understanding of electronics hardware design.
  • Experience with architecture drawings, electronic schematics, and PCB layout.
  • Knowledge of embedded software (C/C++) is preferred.
  • Familiarity with SiC/GaN devices and thermal management.

Responsibilities

  • Conduct fundamental research and literature reviews.
  • Define clear target requirements for solutions.
  • Generate design concepts and select feasible solutions.
  • Create detailed designs and proof of concept setups.
  • Write research reports and design guides.

Skills

Electronics hardware design
Power electronic architectures
Analytical problem-solving skills
Hands-on prototyping and testing
Communication skills
Communication skills

Education

PhD or Master’s degree in Electrical/Electronics Engineering

Tools

MATLAB
Simulink
LTspice
Python
Job description
Power Electronics Research Engineer (All Levels)

LITEON is a world-leading provider of optoelectronic semiconductor components and power management modules. At LITEON we put people at the core - LITEON has built a culture of trust and empowerment that enhances employee involvement, engagement, and commitment to excellence.

About the Role

An exciting opportunity has arisen to join our Cloud Infrastructure Platform and Solutions (CIPS) Research Team. Our CIPS Research team is focussed on developing future technology systems to support growth in the rapidly evolving data center sector. The successful candidate will be directly involved in early-stage research projects, working with academic institutions, suppliers, customers, and partners to deliver proof of concept designs.

Key Responsibilities (All Levels)

  • Fundamental Research – Complete literature reviews and studies to explore existing and future hardware topologies, components and control methods.
  • Ideation – Identify problems, future needs or market gaps to establish areas of interest.
  • Project Definition – Produce clear target requirements that the solution must meet.
  • Concept Proposal – Generate multiple potential design concepts and choose the best solution based on the defined requirements and feasibility analysis.
  • Proof of Concept – Create detailed designs, complete simulations and build test setups to demonstrate the technical feasibility of the proposed system.
  • Documentation – Write research reports, design guides, patents and performance reports.

Key Responsibilities (Senior / Principal Levels)

  • Monitor market trends and research to identify breakthrough opportunities in power architectures and converter topologies for data centers.
  • Drive technical excellence across design, modelling, simulation, prototyping and performance testing of new power conversion topologies, control schemes and components.
  • Oversee critical design reviews and own technical project direction.
  • Represent the company as a subject matter expert when engaging with suppliers, customers, and partners.
  • Help to create, review and improve research project processes, from idea creation to project transfer deliverables.
  • Identify the skills needed in the team and support recruitment of suitable engineers.
  • Work with a commitment to continuous improvement, transparency, and technical expertise.
  • Work as a hands-on individual contributor, researching key topics and delivering ideas, designs, and documentation.

Requirements (All Levels)

  • PhD or Master’s degree in Electrical / Electronics Engineering or related field.
  • Strong understanding of electronics hardware design and common power electronic architectures (AC/DC, DC/AC, DC/DC, etc).
  • Experience with architecture drawings, electronic schematics, component datasheets and PCB layout drawings.
  • Knowledge of embedded software (C/C++) and coding practices is preferred.
  • Hands-on prototyping and testing experience using oscilloscopes, electronic loads and power analysers.
  • Familiarity with SiC/GaN devices, magnetics design, EMI, and thermal management.
  • Expertise in using simulation tools to aid the development and assessment of the proposed solution (MATLAB, Python, Simulink, LTspice, etc.)
  • Strong analytical, problem-solving, and communication skills.
  • Demonstrated passion for innovation and commitment to continuous learning.
  • We welcome applicants at all experience levels, from graduates to seasoned professionals.

Requirements (Senior / Principal Levels)

  • PhD or Master’s degree in Electrical / Electronic Engineering or related field.
  • 8+ years’ experience in power electronics research, with increasing mentorship responsibilities.
  • Expertise in power electronics, including common topologies, magnetics, control schemes and components.
  • Experience with architecture drawings, electronic schematics, component datasheets and PCB layout drawings.
  • Knowledge of embedded software (C/C++) and coding practices is preferred.
  • Hands-on prototyping and testing experience using oscilloscopes, electronic loads and power analysers.
  • Familiarity with SiC/GaN devices, EMI, HVDC, solid state transformers, thermal design and regulatory standards.
  • Expertise in using simulation tools (MATLAB, Simulink, LTspice, Python, etc).
  • Strong analytical, problem-solving, leadership and communication skills.
  • Demonstrated passion for innovation and commitment to continuous learning.

Why Join Us

  • Work in a world-class R&D environment with well-equipped labs, top-tier industry connections and collaborative teams.
  • Shape the future of energy-efficient data storage and AI cloud computing – from renewable energy integration to next generation infrastructure.
  • Opportunities to publish, patent and innovate designs for future products.
  • Competitive compensation, research autonomy and a continuous learning culture.
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