We are seeking a highly experienced System Architect to lead the definition and architectural development of solid-state power device solutions for safety-critical systems and motor control. Experience with SiC and GaN devices is preferred. You are coming from an OEM or semiconductor applications background with years of experience building power electronics systems. This role requires deep technical expertise, strategic thinking, and the ability to drive innovation at the intersection of power electronics, functional safety, motor control, inverters, and system integration. The successful candidate will play a pivotal role in shaping next-generation power electronics platforms by collaborating with cross-functional teams and OEM/ Tier 1 partners to deliver robust, scalable, and standards-compliant system architectures. The ideal candidate will possess a strong track record of working closely with Original Equipment Manufacturers (OEMs)/ Tier 1, contributing to the definition and development of complex, system-level architectures in automotive and industrial applications. This includes cross-functional collaboration across hardware, software, and systems engineering teams to align technical requirements with product strategy and customer needs.
Why Join Us?
- Work on cutting-edge technologies that shape the future of power electronics in AI-DC and Automotive industries.
- Collaborate with world-class engineers and product leaders and influence strategic direction and innovation in safety-critical systems.
onsemi (Nasdaq: ON) is driving disruptive innovations to help build a better future. With a focus on automotive and industrial end-markets, the company is accelerating change in megatrends such as vehicle electrification and safety, sustainable energy grids, industrial automation, and 5G and cloud infrastructure. With a highly differentiated and innovative product portfolio, onsemi creates intelligent power and sensing technologies that solve the world’s most complex challenges and leads the way in creating a safer, cleaner, and smarter world.
We are committed to sourcing, attracting, and hiring high-performance innovators, while providing all candidates a positive recruitment experience that builds our brand as a great place to work.
onsemi is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, ethnicity, color, religion, ancestry, national origin, age, marital status, pregnancy, sex, sexual orientation, physical or mental disability, medical condition, genetic information, military or veteran status, gender identity, gender expression, or any other protected category under applicable federal, state, or local laws.
If you are an individual with a disability and require a reasonable accommodation to complete any part of the application process, or are limited in the ability or unable to access or use this online application process and need an alternative method for applying, you may contact
Talent.acquisition@onsemi.com for assistance.
- Proven experience in power electronics systems focusing on AC-DC and DC-DC power conversion topologies and architecture, using SiC, GaN, and Si MOSFETs.
- Strong background in electrical and thermal modeling, simulations, and bench testing.
- Demonstrated leadership in leading cross-functional engineering teams.
- Excellent communication skills with the ability to listen and discover customer needs and distill complex technical concepts into customer-ready specifications.
- Hands-on experience in system architecture of high voltage power electronics products in automotive safety critical applications or Industrial applications.
- Experience in collaborating with Tier 1 Original Equipment Manufacturers (OEMs) on the development and integration of power electronics systems. This includes a deep understanding of system-level requirements, component selection, and cross-functional coordination to deliver high-performance, reliable solutions in complex product environments.
Preferred Qualifications:
- Master’s or Ph.D. in Electrical Engineering, Systems Engineering, or a related field with minimum 10 years of experience in power electronics for automotive systems, AI datacenter or other related applications.
- Deep understanding of solid-state switching technologies (e.g., SiC, GaN) and their application in high-reliability automotive and industrial environments.
- Proven experience architecting systems that meet functional safety requirements under ISO 26262, including development of safety concepts, technical safety requirements, and safety cases.
- Familiarity with automotive communication protocols (e.g., CAN, LIN, Ethernet) and system integration challenges.
- Familiarity with different motors, motor control algorithms, and position control
- Strong analytical and problem-solving skills, with the ability to make high-impact architectural decisions in ambiguous or evolving technical environments.
- Excellent communication and leadership skills, with the ability to influence internal teams and external partners at all levels.
- Prior experience representing technical strategy in customer engagements, industry working groups, or standardization bodies is a plus.
- Lead system architecture definition for next-generation power electronics solutions, ensuring alignment with functional safety, performance, and scalability requirements.
- Expertise in using MOSFETs, SiC, GaN power ICs, AC-DC and DC-DC power conversion topologies, motor control, and magnetics is a key requirement.
- Collaborate with OEMs and internal cross-functional teams (including product, design, systems, software, and validation) to define and refine system-level requirements and interfaces.
- Drive end-to-end architectural decisions, from concept through production, balancing trade-offs across power, sense & control, thermal, cost, mechanical, and safety constraints.
- Work with the Functional safety team to ensure compliance with ISO 26262, UL safety and other relevant automotive or Industrial safety standards. Functional safety experience is good to have but not mandatory,
- Command on EMI/EMC as well as radiation tolerance and space applications is desired.
- Translate customer and market requirements into robust, modular, and reusable system architectures that support long-term product roadmaps.
- Provide technical leadership and mentorship to systems engineering teams, guiding best practices in architecture modeling, safety analysis, and system validation.
- Stay current with industry trends, emerging technologies, and regulatory changes, and integrate relevant innovations into architectural planning.