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Semiconductor Engineering Jobs in Seattle, WA (NOW HIRING)

Semiconductor Packaging Engineer Sigma Design is a product development, engineering, and ... Lead assembly and integration engineering efforts with emphasis on Surface Mount Technology (SMT ...

Semiconductor Packaging Engineer Sigma Design is a product development, engineering, and ... Lead assembly and integration engineering efforts with emphasis on Surface Mount Technology (SMT ...

US Citizen or Lawful Permanent Resident Build Next-Generation Silicon at Advanced Technology Nodes We are looking for a Senior IC Layout Designer to join a highly skilled semiconductor engineering ...

Senior IC Layout Designer

Redmond, WA · On-site +1

$65 - $80/hr

US Citizen or Lawful Permanent Resident Build Next-Generation Silicon at Advanced Technology Nodes We are looking for a Senior IC Layout Designer to join a highly skilled semiconductor engineering ...

New

Sr. Manager, NPI PM (Semiconductor)

Redmond, WA · On-site

$160K/yr

By partnering across engineering, operations, and supplier ecosystems, CS3 enables reliable ... Understanding of semiconductor manufacturing processes and supplier ecosystems, including wafer ...

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Showing results 1-20

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 Jul 27, 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 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 engineers make $500,000 a year?

In semiconductor engineering, senior-level engineers with extensive experience, specialized skills in areas like process integration or device physics, and leadership roles such as engineering managers can earn $500,000 or more annually. Achieving this level often requires advanced degrees, certifications, and a track record of significant contributions in high-demand technical environments.

What do you do as a semiconductor engineer?

A semiconductor engineer designs, develops, and tests 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 collaborating with cross-disciplinary teams and using CAD software. The role typically requires knowledge of physics, materials science, and electrical engineering principles.

What engineers make $200,000 a year?

In semiconductor engineering, senior-level engineers such as design engineers, process engineers, and systems engineers with extensive experience and advanced skills can earn $200,000 or more annually. These roles often require specialized knowledge of chip design, fabrication processes, or EDA tools, and may include bonuses or stock options. Compensation varies based on location, company size, and individual expertise.

What is the salary of a semiconductor engineer?

The average salary of a semiconductor engineer varies by experience and location but typically ranges from $70,000 to $120,000 annually. Entry-level positions may start lower, while experienced engineers with specialized skills or certifications can earn higher salaries, especially in high-demand regions or companies with advanced fabrication facilities.

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

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 July 2026, with employment types broken down into 90% Full Time, 6% Part Time, and 4% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $74,793 per year, or $36 per hour.
Semiconductor Packaging Engineer

Semiconductor Packaging Engineer

Sigma Design

Redmond, WA • On-site

$115K - $145K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 10 days ago


Job description

Semiconductor Packaging Engineer
Sigma Design is a product development, engineering, and manufacturing firm. Based out of the Pacific Northwest, we offer innovative concept through production services to diverse clients around the globe. Sigma Design believes in hiring, developing, and recognizing the best. We offer competitive compensation, a 401(k) with up to 4% company match, quarterly bonus program, 15-days of accrued PTO and 9 company paid holidays. In addition, Sigma Design has multiple options for medical insurance and dental insurance. We also offer voluntary benefits: vision, long-term disability, and life insurance.
Position Details:
  • This position will be In-Office
  • $115,000 - $140,000 annually
  • This is a contract position with an expected duration of 12 months and the opportunity to be extended.

Primary Function:
The Semiconductor Packaging Engineer is responsible for developing, executing, and optimizing semiconductor and advanced packaging assembly and integration processes. This role supports the design, fabrication, and validation of advanced electronic packaging solutions for heterogeneous, flexible, and stretchable electronic systems, while collaborating across research, hardware, and manufacturing teams to improve device performance, reliability, and scalability.
Essential Job Functions - Responsibilities:
  • Lead assembly and integration engineering efforts with emphasis on Surface Mount Technology (SMT), Die Bond/Wire Bond processes, and support activities related to molding, laser fabrication, panel or wafer lamination, and component thinning, planarization, and dicing.
  • Develop and implement advanced packaging solutions to enable heterogeneous, flexible, and stretchable integration of electronic components and devices.
  • Design and oversee internal, external, and hybrid manufacturing workflows to accelerate development, integration, and scale-up of advanced electronic packaging technologies.
  • Develop new methods and processes to close technology gaps, improve device performance, and increase manufacturing yield through process innovation and optimization.
  • Design and execute experiments (DOE), analyze experimental results, and apply findings to improve packaging processes, device performance, and yield.
  • Execute hands-on fabrication workflows using advanced packaging and assembly equipment, identify in-line process issues, and propose solutions or workarounds to improve manufacturing performance.
  • Collaborate closely with researchers, hardware engineers, system integration teams, and external manufacturing partners to support the development and production of advanced electronic packaging solutions.
  • Support the development and use of high-performance electronic materials in advanced packaging environments.
  • Contribute to instrumentation development, process characterization, mechanical or layout design, and data analysis methods used in hardware research and development environments.
  • Follow Business Technology policies to protect sensitive data and reduce information security occurrences.

Education and Experience: (Knowledge, Skills, & Abilities)
  • Bachelor's degree in Mechanical Engineering, Electrical Engineering, Aerospace Engineering, Chemical Engineering, Applied Physics, Materials Science, or related technical field or equivalent professional experience required
  • Minimum of 1+ years of relevant work experience in semiconductor manufacturing, advanced packaging, or related electronics manufacturing environments preferred
  • Strong background in semiconductor or advanced packaging processes, including wafer-level or panel-level manufacturing
  • Hands-on experience working with semiconductor assembly and packaging equipment
  • Experience designing and executing Design of Experiments (DOE), analyzing results, and optimizing manufacturing yield
  • Experience collaborating across research and development, hardware engineering, and manufacturing teams
  • Strong analytical, troubleshooting, and problem-solving skills with an innovation and scalability mindset
  • Experience with advanced packaging technologies such as Flexible Printed Circuits (FPC), Printed Circuit Board Assembly (PCBA), 2.5D/3D integration, or related electronic packaging technologies
  • Experience working with back-end-of-line (BEOL) and advanced packaging processes including technologies such as thinning, grinding, dicing, soldering, eutectic bonding, electrochemical deposition or metal finishing, through-silicon vias (TSV), flip-chip bonding, wire or die bonding, bumping, thermocompression bonding, copper pillar bonding, hybrid bonding, underfill processes, and overmolding or encapsulation
  • Experience handling and integrating thinned electronic components as part of advanced packaging workflows
  • Demonstrated success developing or maturing hardware research processes including instrumentation, characterization, mechanical or layout design, and/or advanced data analysis techniques
  • Experience developing or applying high-performance electronic materials in semiconductor or advanced packaging environments
  • Experience with advanced packaging domains including Flexible Printed Circuits (FPC), Multi-Chip Modules (MCM), System-in-Package (SiP), 2.5D/3D integration, Flexible Hybrid Electronics (FHE), or similar technologies preferred
  • Experience performing reliability testing and failure analysis including die or ball shear testing, wire pull testing, X-ray inspection, C-SAM inspection, thermal cycling, and environmental testing preferred
  • Experience with wearable technologies or technical soft goods preferred
  • Experience with hermetic or MEMS packaging, thermal management materials, or injection/transfer molding processes preferred
  • Experience using Finite Element Analysis (FEA) modeling or simulation tools to accelerate design and prevent failures preferred
  • Experience in System-in-Package (SiP) or Multi-Chip Module (MCM) design, manufacturing, and validation preferred
  • Experience with signal integrity or power integrity simulation tools (e.g., HFSS) and validation preferred
  • Strong written and verbal English language communication skills
  • Excellent teamwork/interpersonal skills and the ability to communicate effectively
  • Demonstrated ability to work collaboratively, both within and outside one's own work group
  • Demonstrate commitment and adherence to Sigma Design Core Values
  • Pass a post-offer background verification

Work Environment
Standard lab/production environment. Appropriate safety garments (PPE) must be worn. Occasionally may be required to work in environmental conditions that emulate typical user environments in order to facilitate design testing and validation. Occasionally may be required to travel as required to other facilities, clients, or suppliers. Must be able to stand and work as long as 12 hours in different positions. Must be able to lift up to 50 pounds unassisted.
SigmaDesign is an Equal Opportunity Employer