1

Gan Semiconductor Jobs (NOW HIRING)

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 ...

Product Engineer, SiC

Torrance, CA ยท On-site

$90K - $135K/yr

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 ...

QRVO) supplies innovative semiconductor solutions that make a better world possible. We combine ... GaN , with complementary expertise in GaAs , InP , and other compound semiconductors. * Cross ...

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 ...

Showing results 21-40

Gan Semiconductor information

See salary details

$60K

$77.5K

$92K

How much do gan semiconductor jobs pay per year?

As of Aug 13, 2026, the average yearly pay for gan semiconductor in the United States is $77,500.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,000.00 and $85,000.00 per year, depending on experience, location, and employer.

What are some common challenges faced by engineers working with GaN semiconductors, and how can they be addressed?

Engineers working with GaN (Gallium Nitride) semiconductors often encounter challenges such as thermal management, high-voltage reliability, and integration with existing silicon-based systems. Effective heat dissipation is crucial due to GaN's high power density, so engineers usually collaborate closely with thermal design and packaging teams. Additionally, ensuring device reliability under high-voltage operation requires rigorous testing and adherence to industry standards. Staying updated on the latest fabrication techniques and collaborating with cross-functional teams helps address these challenges and fosters professional growth.

What are the key skills and qualifications needed to thrive as a GaN Semiconductor Engineer, and why are they important?

To thrive as a GaN Semiconductor Engineer, you need a solid background in electrical engineering or materials science, with experience in semiconductor device fabrication and characterization. Familiarity with tools such as TCAD simulation software, cleanroom equipment, and relevant industry standards is typically required. Strong problem-solving skills, attention to detail, and effective teamwork set top performers apart in this field. These skills are crucial for innovating reliable GaN devices, ensuring efficient production processes, and maintaining competitiveness in the rapidly evolving semiconductor industry.

What is the difference between Gan Semiconductor vs GaN Device Engineer?

AspectGan SemiconductorGaN Device Engineer
Required CredentialsBachelor's or higher in Electrical Engineering, Physics, or related fields; experience with semiconductor fabricationBachelor's or higher in Electrical Engineering, Materials Science, or related; knowledge of GaN materials and device fabrication
Work EnvironmentSemiconductor manufacturing facilities, R&D labsResearch labs, semiconductor fabrication facilities, testing environments
Industry UsageDesign, manufacturing, and testing of GaN-based semiconductorsDesign and development of GaN transistors and related devices

Gan Semiconductor professionals focus on the manufacturing and application of GaN-based semiconductors, while GaN Device Engineers specialize in designing and developing GaN devices. Both roles require similar educational backgrounds and often work in overlapping environments, but their core responsibilities differ in manufacturing versus device development.

What are GaN semiconductors?

GaN semiconductors are electronic components made from gallium nitride, a wide bandgap material known for its high efficiency and fast switching capabilities. These properties make GaN semiconductors ideal for applications such as power electronics, radio frequency devices, and LEDs. Compared to traditional silicon-based semiconductors, GaN devices offer higher energy efficiency, greater power density, and the ability to operate at higher temperatures and frequencies. This makes them increasingly popular in industries like consumer electronics, telecommunications, and automotive technology.
More about Gan Semiconductor jobs

What cities are hiring for Gan Semiconductor jobs?

Cities with the most Gan Semiconductor job openings:

What states have the most Gan Semiconductor jobs?

States with the most job openings for Gan Semiconductor jobs include:

Infographic showing various Gan Semiconductor job openings in the United States as of August 2026, with employment types broken down into 92% Full Time, 5% Part Time, 2% Contract, and 1% Nights. Highlights an 89% Physical, 3% Hybrid, and 8% Remote job distribution, with an average salary of $77,500 per year, or $37.3 per hour.

Principal Technology Development Engineer

Polar Semiconductor

Bloomington, MN โ€ข On-site

$125K - $165K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 22 days ago


Job description

JOB SUMMARY:

  • Contribute to the development/transfer, optimization, and documentation of the overall process flow and macro modules required to fabricate reliable, manufacturable devices on GaN on Silicon (HEMT), which meet parametric and performance goals.

  • Characterize, evaluate, and document semiconductor devices to ensure reliability and performance to quality standards.

  • Evaluate new opportunities for development and/or transfer of new semiconductor technology and processes.

DUTIES AND RESPONSIBILITIES:

  • Set up and perform process and device simulations to determine initial process parameters, capabilities, and direction for optimization of new process flows.

  • Design and perform experiments and analyze the results to determine the process sequences and parameters which will yield the target device parameters, by using the results of the process simulations or initial test lots as a starting point.

  • Analyze data (electrical, in-process measurement or visual inspection) from the fabrication of test lots to determine which parameters require additional optimization.

  • Work with Process Engineering to develop, characterize, and optimize process modules.

  • Support the processing of the initial test chip and transfer lots fabricated with the new process to identify and correct any problem areas and work to achieve first-pass success.

  • Provide inputs to and work with Device Engineers to develop layout rules for the process being developed, using equipment specifications and experimental data.

  • Recommend test structures for and contribute to the layout of test chip mask sets to aid in developing the new process and evaluating specific process-dependencies of device parameters.

  • Provide weekly, monthly, quarterly development updates to upper management and external customers.

  • Support company initiatives, such as; quality, safety and environmental management, CQI, 5S, yield management, and cost containment

  • Perform other duties as required.

KNOWLEDGE, SKILLS, AND ABILITIES:

  • Strong knowledge of several of the following, as needed to perform exact duties:

    • Strong process integration knowledge of GaN on silicon HEMT power devices

    • Strong knowledge of semiconductor device physics, specially III-V nitrides

    • Working knowledge of key process modules (Photo, Etch, Thin Films, CMP, MOCVD, etc.)

    • Broad knowledge of GaN market trends and new opportunity evaluation experience preferred

    • Process Integration Experience in CMOS/BCDMOS or Discrete IGBTs/MOSFETs a plus

    • Experience in Process Flow Design to Achieve Manufacturability Metrics and Meet Electrical Test Targets

    • Experience with and Understanding of Electrical Test Data and its Correlation to Process and Cross-sectional data

    • Experience Interpreting Failure Analysis Results and Familiarity with Failure Analysis techniques

    • Experience with Power Packaging including Assembly and Reliability issues

    • Experience in Backend (BGBM, STM, etc.) Processes

    • Experience in Development of Process, Technology and Design FMEA's

  • Skills
    • DoE Design and Data Analysis Tools (JMP, Spotfire)
    • TCAD Process Simulations
    • Reading and Interpretation of Design Layouts
  • Abilities

    • Working with and Interpreting Information/Data between Design and Process Teams

    • Driving for Solutions and Collaborating on Cross-functional Teams

    • Technical Leadership Ability (Education, experience and communication skills)

Typically requires a Masters or PhD in Electrical Engineering, Physics or Material Science and 5+ years of experience in a relevant job function.

What We Offer

Salary: $125,000-$165,000 per year (good-faith estimate)


Benefits & Other Eligible Compensation: Includes health, dental, vision, disability and life insurance, 401(k) plan with company match, paid time off, annual bonus, and tuition reimbursement.

Polar Semiconductor is an Equal Opportunity Employer and prohibits discrimination and harassment of any kind. We are committed to the principle of equal employment opportunity for all employees and to providing employees with a work environment free of discrimination and harassment. All employment decisions are based on business needs, job requirements, and individual qualifications, without regard to race, color, religion, sex, sexual orientation, gender identity, age, national origin, disability, veteran status, or any other status protected by the laws or regulations in the locations where we operate.

About Us

At Polar Semiconductor, we're on a mission to fulfill our future as the U.S. based manufacturing partner of choice for differentiated power and sensor technologies. With a $525M investment from the CHIPs Act, the state of Minnesota, and private equity, we are looking for the best in the industry to help Polar transform from a captive fab to a pure-play foundry. We are doubling our manufacturing capacity and investing in advanced BCD and Wide Bandgap technology such as GaN. Polar has a long history in manufacturing automotive grade semiconductors and we are expanding in strategic markets such as national defense and AI data centers. We pride ourselves on state-of-the-art semiconductor manufacturing, a collaborative culture, and a commitment to helping our customers succeed.