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Semiconductor Engineering Jobs in Seattle, WA (NOW HIRING)

Fab Engineering Lead

Redmond, WA

$114K - $151K/yr

Reality Labs is seeking an experienced engineer to support research scale semiconductor fab and laboratory operations to support research activities, ma.

This role will require a diverse set of skills with an emphasis on semiconductor processing capabilities, liquid crystal fabrication, optics and materials science. Fab Engineering Lead ...

Fab Engineering Lead

Redmond, WA · On-site

$173K - $245K/yr

Reality Labs is seeking an experienced engineer to support research scale semiconductor fab and laboratory operations to support research activities, manage equipment, process engineering, program ...

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Semiconductor Engineering information

See Seattle, WA salary details

$51.8K

$74.8K

$94.5K

How much do semiconductor engineering jobs pay per year?

As of Aug 13, 2026, the average yearly pay for semiconductor engineering in Seattle, WA is $74,793.00, according to ZipRecruiter salary data. Most workers in this role earn between $71,700.00 and $71,700.00 per year, depending on experience, location, and employer.

What is semiconductor engineering?

Semiconductor engineering is a specialized field focused on the design, development, and manufacturing of semiconductor devices, such as microchips and transistors, which are essential components in electronic devices. Engineers in this field work on creating and improving the materials, processes, and technologies used to produce integrated circuits and other semiconductor components. Their work is critical to advancements in computers, smartphones, automotive technology, and many other electronic systems. Semiconductor engineers often collaborate with multidisciplinary teams to solve complex technical challenges and drive innovation in the electronics industry.

What do semiconductor engineers do?

Semiconductor engineers design, develop, and test semiconductor devices and integrated circuits used in electronic equipment. They work with materials, fabrication processes, and testing tools to improve chip performance and reliability, often requiring knowledge of physics, chemistry, and engineering principles. Their work environment typically includes laboratories and cleanrooms, and they may use CAD software and testing equipment as part of their job.

What is the difference between Semiconductor Engineering vs Electrical Engineering?

AspectSemiconductor EngineeringElectrical Engineering
Required CredentialsBachelor's or higher in Semiconductor, Electrical, or Electronics EngineeringBachelor's or higher in Electrical, Electronics, or Electrical Engineering
Work EnvironmentCleanrooms, labs, manufacturing facilities focused on chip design and fabricationOffices, labs, and field sites working on electrical systems, power, and circuitry
Industry UsagePrimarily in semiconductor manufacturing, chip design, and fabrication companiesBroadly used across power, electronics, telecommunications, and automation industries

Semiconductor Engineering specializes in designing, developing, and manufacturing semiconductor devices and integrated circuits, often within cleanroom environments. Electrical Engineering covers a wider range of electrical systems, power distribution, and circuitry across various industries. While both roles require similar educational backgrounds, Semiconductor Engineering focuses specifically on chip technology and fabrication processes, making it a more specialized field within the broader electrical engineering domain.

What are some common challenges semiconductor engineers face when working on new chip designs?

Semiconductor engineers often encounter challenges such as managing the complexity of integrating millions or even billions of transistors on a single chip while ensuring performance, power efficiency, and manufacturability. Meeting tight project deadlines and rapidly evolving industry standards can also be demanding. Collaboration with cross-functional teams—including design, verification, and manufacturing engineers—is essential to identify and resolve issues early in the design cycle. Additionally, adapting to new process technologies and troubleshooting unexpected fabrication or performance problems are routine aspects of the role.

What are the key skills and qualifications needed to thrive as a semiconductor engineer?

To thrive as a Semiconductor Engineer, you need a solid background in electrical engineering, physics, and materials science, typically supported by a relevant bachelor's or master's degree. Familiarity with CAD tools, circuit simulation software, and semiconductor fabrication processes is essential, along with certifications like Six Sigma or IPC standards being advantageous. Strong problem-solving abilities, attention to detail, and effective teamwork skills set outstanding candidates apart in this field. These competencies are crucial for designing reliable semiconductor devices, ensuring manufacturing efficiency, and driving innovation in a rapidly evolving industry.
What are the most commonly searched types of Semiconductor Engineering jobs in Seattle, WA? The most popular types of Semiconductor Engineering jobs in Seattle, WA are:
What are popular job titles related to Semiconductor Engineering jobs in Seattle, WA? For Semiconductor Engineering jobs in Seattle, WA, the most frequently searched job titles are:
What job categories do people searching Semiconductor Engineering jobs in Seattle, WA look for? The top searched job categories for Semiconductor Engineering jobs in Seattle, WA are:
What cities near Seattle, WA are hiring for Semiconductor Engineering jobs? Cities near Seattle, WA with the most Semiconductor Engineering job openings:
Infographic showing various Semiconductor Engineering job openings in Seattle, WA as of August 2026, with employment types broken down into 89% Full Time, 6% Part Time, 4% Contract, and 1% Nights. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $74,793 per year, or $36 per hour.

Senior Semiconductor Device Engineer

Helion Energy

Everett, WA • On-site

$235K - $270K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 15 days ago


Job description

About Helion
We are a fusion power company based in Everett, WA, with the mission to build the world's first fusion power plant, enabling a future with unlimited clean electricity. Our vision is a world with clean, reliable, and affordable energy for everyone.
Since Helion's founding in 2013, we have raised $1.5 billion from long-time investors such as Sam Altman, Mithril, and Capricorn Investment Group as well as new investors including Thrive Capital, LightSpeed Venture Capital, SoftBank, and others to propel us forward. Our current prototype, Polaris, has reached record-breaking plasma temperatures of 150 million degrees Celsius (13 keV). Helion is continuing to iterate and on the path to the world's first fusion power plant, Orion.
This is a pivotal time to join Helion. You will tackle real-world challenges with a team that prizes urgency, rigor, ownership, and a commitment to delivering hard truths - values essential to achieving what no one has before. Together, we will change the future of energy, because the world can't wait.
What You Will Be Doing:
You will drive the design and development of cutting-edge semiconductors for high-performance pulsed power systems used in Helion's fusion generators. You will work in a fast-paced environment to develop, test, and implement high-reliability, high-efficiency switching components, with a strong emphasis on rapid development cycles. You will report directly to our Senior Manager of Electrical Engineering, and this is an onsite role located at our Everett, WA office.
You Will:
  • Spearhead efforts to gather and utilize requirements for switching components and apply them toward design of physical products
  • Drive the design and development of novel pulsed power electronics components and systems, focusing on high-efficiency, high-reliability semiconductor solutions
  • Collaborate with cross-functional teams to ensure integration of electrical, mechanical, and physics-based principles in semiconductor development
  • Lead development cycles, including hands-on prototyping, small-scale testing, and large-scale performance validation
  • Conduct simulations, testing, and analysis to validate designs and iterate quickly using data-backed decision making
  • Stay informed on emerging semiconductor materials, device architectures, and industry trends
  • Document design processes, specifications, test results, and findings for continuous improvement and knowledge sharing

Required Skills:
  • Bachelor's, Master's, or higher degree in Electrical Engineering, Physics, or a related field
  • 8+ years of experience in power electronics and high voltage semiconductor design
  • Strong foundation in semiconductor physics, power electronics, and circuit design principles
  • Proven experience with rapid prototyping and development cycles in a high-tech environment
  • Background working with semiconductor fabricators to manufacture semiconductor devices
  • Proficiency with simulation tools and test equipment for power electronics

#LI-Onsite #LI-KL1
Benefits
Our total compensation package includes benefits, including but not limited to:
  • Medical, Dental, and Vision plans for employees and their families
  • 31 Days of PTO (21 vacation days and 10 sick days)
  • 10 Paid holidays, plus company-wide winter break
  • Up to 5% employer 401(k) match
  • Short term disability, long term disability, and life insurance
  • Paid parental leave and support (up to 16 weeks)
  • Annual wellness stipend

Helion is an equal opportunity employer and value diversity at our company. We do not discriminate based on race, religion, color, national origin, gender, sexual orientation, age, marital status, veteran status, or disability status. If you need assistance or an accommodation during the interview process, please let us know.