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Semiconductor Fabrication Engineer Jobs (NOW HIRING)

Looking to add a Process Engineer for specialized switchboards (and entire electrical distribution systems) designed and built specifically for semiconductor fabrication plants (fabs). Standard ...

Die Attach - Operator, Assembly

Salem, NH · On-site

$18.50 - $23.75/hr

Education, Requirements, and Experience: • Engineering or Physics degree (B.S or greater) and extensive semiconductor fabrication experience. Photodetector and III-V material experience desired ...

Strong understanding of semiconductor fabrication processes and equipment * Excellent analytical ... Proficient in Data Science and Programming skills See more about Boise living How Micron engineers ...

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Semiconductor Fabrication Engineer information

See salary details

$37.5K

$87.3K

$140K

How much do semiconductor fabrication engineer jobs pay per year?

As of Aug 7, 2026, the average yearly pay for semiconductor fabrication engineer in the United States is $87,296.00, according to ZipRecruiter salary data. Most workers in this role earn between $77,000.00 and $95,500.00 per year, depending on experience, location, and employer.

What are some typical challenges semiconductor fabrication engineers face when working in cleanroom environments?

Semiconductor Fabrication Engineers often work in highly controlled cleanroom environments, where maintaining strict contamination protocols is critical. A common challenge is adapting to the rigorous gowning procedures and working with sensitive equipment that requires precision and attention to detail. Additionally, engineers must constantly monitor and troubleshoot complex processes to minimize defects and optimize yield, often collaborating closely with cross-functional teams such as process engineers and quality control specialists. These challenges make adaptability, strong communication, and problem-solving skills essential for success in the role.

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

To thrive as a Semiconductor Fabrication Engineer, you need a solid background in electrical engineering, materials science, or a related field, often supported by a bachelor's or master's degree. Familiarity with fabrication equipment, cleanroom protocols, and software for process simulation (such as CAD or TCAD tools) is typically required. Strong problem-solving, attention to detail, and effective teamwork skills help you excel in this highly collaborative and precise environment. These skills are crucial for ensuring the efficiency, quality, and innovation required in semiconductor manufacturing.

What is the difference between Semiconductor Fabrication Engineer vs Process Engineer?

AspectSemiconductor Fabrication EngineerProcess Engineer
CredentialsBachelor's in Electrical, Materials, or Chemical EngineeringBachelor's in Chemical, Mechanical, or Industrial Engineering
Work EnvironmentCleanrooms, manufacturing facilitiesManufacturing plants, labs
Industry UsageSemiconductor manufacturing companiesVarious industries including electronics and manufacturing
Primary FocusDesign, develop, and optimize fabrication processesImprove manufacturing processes, efficiency, and quality

While both roles work within semiconductor manufacturing, Semiconductor Fabrication Engineers focus on developing and optimizing fabrication processes specific to chip production. Process Engineers have a broader scope, often working on improving overall manufacturing efficiency across various processes. Understanding these differences helps in choosing the right career path or job search focus.

What does a semiconductor fabrication engineer do?

A Semiconductor Fabrication Engineer is responsible for designing, developing, and optimizing the processes used to manufacture semiconductor devices, such as microchips and integrated circuits. They work in cleanroom environments to oversee production, troubleshoot equipment, and ensure product quality. Their role involves collaborating with other engineers, maintaining process documentation, and implementing improvements to increase yield and efficiency. These engineers play a critical role in the electronics industry, as advances in semiconductor fabrication drive technological innovation.
More about Semiconductor Fabrication Engineer jobs
What cities are hiring for Semiconductor Fabrication Engineer jobs? Cities with the most Semiconductor Fabrication Engineer job openings:
What states have the most Semiconductor Fabrication Engineer jobs? States with the most job openings for Semiconductor Fabrication Engineer jobs include:
Infographic showing various Semiconductor Fabrication Engineer job openings in the United States as of August 2026, with employment types broken down into 93% Full Time, 2% Part Time, and 5% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $87,296 per year, or $42 per hour.

Associate Engineer - Fire Protection

United Integrated Services (USA) Corp.

Phoenix, AZ

$82K - $111K/yr

Full-time

Re-posted 16 days ago


Job description

United Integrated Services (USA) Corp. was founded in Phoenix, Arizona in 2020. UIS is a U.S. subsidiary of United Integrated Services Co., Ltd. (UIS Taiwan) which was founded in Taiwan in 1982. UIS is a multidisciplinary engineering and construction company. We provide fully integrated design-build services to our clients in the high-technology industry for their manufacturing facility needs. Our scope of services includes engineering design, high-tech factory planning, and on-time equipment and material delivery in which clean-room systems, HVAC, electrical systems, and tool hook-up, are all vital parts in need of total coordination.

Summary: Join a team supporting fire protection systems within an active operating facility at one of the most advanced semiconductor fabrication sites in Arizona. As part of a historic $265 billion investment in U.S. semiconductor production and the largest foreign direct investment in American history, this position supports the testing, maintenance, reliability and continuous improvement of systems that protect personnel and critical fab operations. The ideal engineering candidate is proactive, self-motivated, and comfortable taking ownership of projects within an active semiconductor fabrication environment including coordinating subcontractors and communicating with personnel at all levels of the organization, coordinating with city officials to include facilitating testing with city fire inspectors. Success in this role requires strong communication, organization, and attention to detail, along with the ability to lead and drive projects from initial planning through final completion.

Essential Duties and Responsibilities (including but not limited to):

Engineering and System Upgrades/Modifications:

  • Support fire protection system upgrades, modifications, repairs, and expansion projects within active semiconductor fabrication facilities.
  • Review fire protection drawings, specifications, submittals, calculations and related project documentation prepared by contractors and design teams.
  • Evaluate proposed system modifications for compliance with project requirements, applicable codes, site standards, and operational objectives.
  • Support facility improvements and technology upgrades affecting fire protection systems.
  • Coordinate and facilitate system testing, inspections, and acceptance activities with contractors and City of Phoenix.
  • Support the evaluation, troubleshooting, and resolution of fire protection deficiencies.
  • Learn and develop and maintain familiarity with fire protection systems, semiconductor fabrication operations, applicable codes, and industry standards.

Code Compliance:

  • Assist in ensuring that fire protection designs and installations comply with applicable local, state, and national codes (e.g., NFPA, IBC, IFC).
  • Support the review of architectural and engineering drawings to help identify and address fire safety concerns.
  • Learn and maintain up-to-date knowledge of applicable codes, standards, and revisions.

Project Management:

  • Assist in coordination with architects, engineers, contractors, and stakeholders.
  • Support preparation of proposals, budgets, and schedules.
  • Assist in coordinating fire protection system installations.
  • Participate in site inspections.
  • Assist in preparing reports and documentation.

Communication and Collaboration:

  • Assist in communicating technical information to both technical and non-technical stakeholders.
  • Participate in project meetings and presentations.
  • Support providing technical assistance to clients, contractors, and team members.
  • Contribute to a collaborative and productive team environment.

Qualifications: The requirements listed below are representative of the knowledge, skill, and/or ability required.

  • Education: A bachelor's degree in Fire Protection Engineering, Electrical Engineering, Mechanical Engineering, or a related field is preferred.
  • Experience: 0-1 plus years of experience in fire protection engineering design and project management.
  • Technical Skills: Proficiency in hydraulic calculation software (e.g., AutoSPRINK, SprinkCAD), AutoCAD, and other relevant design tools.
  • Knowledge: Working knowledge of NFPA standards (NFPA 13, NFPA 14, NFPA 20, NFPA 72, etc.), International Building Code (IBC), and other applicable codes and regulations
  • Skills: Excellent communication, interpersonal, and problem-solving skills. Strong organizational and time management abilities. Act with integrity, professionalism, and confidentiality. Effectively prioritize responsibilities depending on project needs. Effectively present information and respond to questions from groups of managers, and employees.

Language Proficiency:

  • Excellent verbal and written communication skills in English.

Nice to have:

  • OSHA 30 Certificate.
  • NICET certification in fire protection systems.
  • NFPA 70E Training
  • Spanish and Mandarin Chinese skills
  • CPR/ First Aid Trained preferred.

Additional Requirements:

  • Must have and maintain a valid driver's license. May be required to travel to other sites within Arizona to perform certain work functions.

Physical Demands & Work Environment

The physical demands described here are representative of those that a candidate must meet to successfully perform the essential functions of this job.

  • Frequently stand and walk for extended periods throughout the workday.
  • Frequently lift, carry, push, and pull materials weighing up to 50 pounds, and occasionally lift heavier items with assistance or mechanical equipment.
  • Bend, stoop, kneel, crouch, and reach to perform assigned tasks.
  • Use hands and fingers to handle, feel, grasp, and operate tools, equipment, or materials.
  • Perform repetitive motions involving the hands, wrists, and arms.
  • Climb ladders, stairs, or elevated surfaces as required by the job.
  • Maintain visual acuity sufficient to read labels, instructions, safety signage, and documentation.
  • Maintain balance and coordination while moving materials or operating equipment.
  • Ability to work in physically demanding environments requiring frequent movement and manual labor.

Work Environment:

  • Exposure to dust, noise, vibration, and moving mechanical equipment.
  • Indoor and/or outdoor work environments, which may include varying temperatures and weather conditions.
  • Work in confined spaces, elevated areas, or active job sites, depending on project requirements.
  • Required use of personal protective equipment (PPE) such as hard hats, safety glasses, gloves, steel-toe boots, and high-visibility vests.
  • Interaction with powered industrial equipment, tools, and vehicles.

Disclaimer:

The above job description is not intended to be an all-inclusive list of duties and standards of the position. Incumbents will follow any other instructions, and perform any other related duties as assigned by their supervisor.