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Semiconductor Planar Jobs (NOW HIRING)

Navitas Semiconductor (Nasdaq: NVTS) is a next-generation power semiconductor leader driving ... GeneSiCâ„¢ high-voltage SiC devices leverage patented trench-assisted planar technology to provide ...

Navitas Semiconductor (Nasdaq: NVTS) is a next-generation power semiconductor leader driving ... GeneSiCâ„¢ high-voltage SiC devices leverage patented trench-assisted planar technology to provide ...

Navitas Semiconductor (Nasdaq: NVTS) is a next-generation power semiconductor leader driving ... GeneSiCâ„¢ high-voltage SiC devices leverage patented trench-assisted planar technology to provide ...

$132K - $133K/yr

Navitas Semiconductor (Nasdaq: NVTS) is a next-generation power semiconductor leader driving ... GeneSiCâ„¢ high-voltage SiC devices leverage patented trench-assisted planar technology to provide ...

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Semiconductor Planar information

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$14

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$47

How much do semiconductor planar jobs pay per hour?

As of Jun 9, 2026, the average hourly pay for semiconductor planar in the United States is $23.99, according to ZipRecruiter salary data. Most workers in this role earn between $17.31 and $29.09 per hour, depending on experience, location, and employer.

What is the difference between Semiconductor Planar vs Semiconductor FinFET?

AspectSemiconductor PlanarSemiconductor FinFET
Required credentialsElectronics or electrical engineering degree, certifications in semiconductor manufacturingElectronics or electrical engineering degree, certifications in advanced semiconductor fabrication
Work environmentCleanroom manufacturing, wafer fabrication facilitiesCleanroom environments, advanced chip fabrication facilities
Employer and industry usageUsed widely in traditional semiconductor manufacturingUsed in cutting-edge, high-performance semiconductor devices

Semiconductor Planar and Semiconductor FinFET roles both involve semiconductor fabrication, but FinFETs are used for more advanced, high-performance chips. FinFETs require specialized knowledge and are found in cutting-edge technology, whereas Planar transistors are more common in traditional manufacturing processes.

What are Semiconductor Planar engineers and what do they do?

Semiconductor Planar engineers specialize in the design, development, and manufacturing processes of planar devices, which are fundamental components in integrated circuits and microchips. Their work involves using planar technology to fabricate semiconductor devices with precise layer structures on silicon wafers. These engineers ensure efficient production methods, device reliability, and ongoing innovation in microelectronics. They often collaborate with process engineers, materials scientists, and device physicists to optimize performance and yield in semiconductor manufacturing.

What are the key skills and qualifications needed to thrive as a Semiconductor Process Engineer specializing in planar technology, and why are they important?

To excel as a Semiconductor Process Engineer in planar technology, you need a solid background in materials science, semiconductor physics, and process engineering, typically with a degree in electrical engineering or a related field. Familiarity with fabrication tools such as photolithography equipment, plasma etchers, and cleanroom protocols, along with knowledge of statistical process control (SPC), is crucial. Strong problem-solving abilities, attention to detail, and effective teamwork help professionals address process challenges and collaborate with cross-functional teams. These skills ensure precise manufacturing, high device yield, and innovation in a competitive semiconductor industry.

What are some common challenges faced by professionals working in semiconductor planar processing, and how can they be addressed?

Professionals in semiconductor planar processing often encounter challenges such as maintaining process uniformity across wafers, managing contamination risks, and troubleshooting equipment malfunctions. Addressing these issues typically involves strict adherence to cleanroom protocols, regular calibration and maintenance of equipment, and close collaboration with process engineers and quality control teams. Proactively engaging in cross-functional meetings and continuous training on new fabrication techniques can also help professionals stay ahead of industry advancements and problem-solving strategies.
Infographic showing various Semiconductor Planar job openings in the United States as of May 2026, with employment types broken down into 98% Full Time, 1% Temporary, and 1% Nights. Highlights an 70% Physical, 29% Hybrid, and 1% Remote job distribution, with an average salary of $49,904 per year, or $24 per hour.
Senior Director, GaN Technology

Senior Director, GaN Technology

Navitas Semiconductor

Torrance, CA

Full-time

Medical, Dental, Vision, PTO

Posted just now


Job description

Job Purpose:

Navitas Semiconductor (Nasdaq: NVTS) is a next-generation power semiconductor leader driving innovation in gallium nitride (GaN) and high-voltage silicon carbide (SiC) technologies. Our products enable faster, more efficient power delivery across AI data centers, high-performance computing, energy and grid infrastructure, and industrial electrification.

With more than 30 years of combined expertise in wide bandgap technologies, GaNFast™ power ICs integrate GaN power, drive, control, sensing, and protection, delivering faster power delivery, higher system density, and greater efficiency. GeneSiC™ high-voltage SiC devices leverage patented trench-assisted planar technology to provide industry-leading voltage capability, efficiency, and reliability for medium-voltage grid and infrastructure applications. 

We are seeking a Senior Director of GaN Technology to join our fast-growing, collaborative team. The ideal candidate is self-motivated, energetic, and able to thrive in a high-growth, innovative environment, contributing directly to technologies that are shaping the future of power electronics. 

The Senior Director of GaN Technology leads strategic R&D vision and epi/device/process architecture development activities for LV/MV/HV GaN power devices at Navitas. This role focuses on core innovation, managing relationships with external foundries, and driving the technology roadmap from concept to high-volume production. Key focus areas span the entire gamut of R&D activities from steering existing generation GaN technologies toward process freeze to developing the next-generation of world-leading power GaN technologies. The Senior Director of GaN Technology works closely with the internal business, operations teams as well as external foundry partners to deliver state of the art device technology platforms.

Key Responsibilities and Duties:

  • Technical Strategy and R&D Leadership: Define the long-term technical roadmap for GaN devices, driving innovation in material science, device/process design, and performance.
  • Device/Process Development: Leading our GaN technology teams and be the key PoC on LV/MV/HV power GaN development on existing and next-gen technologies
  • Foundry and Partner Management: Collaborate with external US and global foundries to manage wafer fabrication, process technology development, and yield engineering.
  • Product Development and NPI: Closely collaborate with the New Product Introduction (NPI) process teams, ensuring GaN products meet quality, cost, and time-to-market goals.
  • Packaging Technology: Work closely with internal and OSAT partners on high-performance packaging developments (e.g., Ag-sintering, flip-chip, embedding) to optimize thermal and electrical performance for high-volume production, specifically focused on die-package interactions on all new technologies
  • Reliability and Characterization: Lead efforts in developing GaN-specific reliability models, test methods (DOE), and TCAD simulations for product verification.
  • Team Leadership and Recruitment: Mentor and scale a high-performance R&D engineering team

Knowledge, Skills, Abilities, and Other Characteristics (KSAO’s)

  • Strong analytical and problem-solving skills
  • Excellent technical communication and negotiation abilities
  • Comfortable working across cultures and global time zones
  • Strong knowledge of power GaN design and fabrication methodologies
  • Adequate knowledge of power GaN 100 V/650 V epitaxy
  • Familiarity with power manufacturing eco-system including vendors and OSATs
  • Experience with high-voltage and high-reliability applications
  • Leading by example

Required Qualifications

  • PhD degree in Electrical Engineering, Physics, or equivalent.
  • 10+ years in semiconductor R&D, with a strong background in GaN technology and power devices. Deep understanding of power semiconductor physics, particularly wide-bandgap devices (SiC, GaN).
  • Experience with scaling 150 mm to 200 mm power GaN technology
  • Demonstrated experience working with external foundries is preferred
  • In-depth knowledge of GaN materials, epitaxial growth, device physics, and characterization techniques.
  • Strong data analytics skills and exposure to machine learning for test optimization.
  • Experience working with external test houses and test equipment suppliers.

What We Offer

  • A front-row seat to the future of power electronics. Work on cutting-edge GaN and SiC technologies that are transforming AI data centers, electrification, and global energy infrastructure.
  • A fast-paced, high-energy environment. We move quickly, make decisions with purpose, and empower employees to take ownership and drive real impact from day one.
  • A team that shows up and delivers. We care deeply about our mission, our customers, and each other. We collaborate, support one another, and bring intensity and accountability to everything we do.
  • Full support to succeed. You’ll have access to leadership, cross-functional collaboration, and the resources needed to innovate and execute at a high level.
  • Competitive total rewards. Comprehensive health, dental, and vision coverage, unlimited PTO, and a competitive compensation package including base salary, performance bonus, and equity awards.