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Pecvd Process Engineer Jobs in Seattle, WA (NOW HIRING)

Pecvd Process Engineer information

See Seattle, WA salary details

$56.3K

$104.7K

$162.2K

How much do pecvd process engineer jobs pay per year?

As of Aug 10, 2026, the average yearly pay for pecvd process engineer in Seattle, WA is $104,719.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,800.00 and $117,200.00 per year, depending on experience, location, and employer.

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

To thrive as a PECVD Process Engineer, you need a solid background in materials science, semiconductor processing, and chemical engineering, often supported by a relevant engineering degree. Familiarity with PECVD equipment, process characterization tools (such as ellipsometry, SEM, and profilometry), and statistical process control systems is typically required. Strong analytical thinking, problem-solving abilities, and effective teamwork are essential soft skills in this role. These competencies are crucial for optimizing process performance, ensuring high product quality, and driving innovation in semiconductor manufacturing environments.

What are some common challenges a PECVD process engineer faces when optimizing thin film deposition processes?

PECVD Process Engineers often encounter challenges such as achieving uniform film thickness across large substrates, minimizing defects, and maintaining process stability over long production runs. Balancing deposition rate, film quality, and equipment throughput requires careful tuning of process parameters like gas flow, pressure, and plasma power. Collaboration with equipment maintenance teams and R&D is essential to resolve issues quickly and implement process improvements. Staying up-to-date with advancements in materials and plasma technology also plays a key role in overcoming these challenges.

What is a PECVD process engineer?

PECVD Process Engineers are specialists who develop, optimize, and maintain Plasma Enhanced Chemical Vapor Deposition (PECVD) processes used in semiconductor manufacturing and related industries. They work with advanced equipment to deposit thin films on substrates, ensuring uniformity and high-quality results. Their responsibilities include process troubleshooting, equipment maintenance, and collaborating with other engineers to improve film performance and yield. PECVD Process Engineers play a critical role in producing microelectronic devices and other components requiring precise material deposition.
What job categories do people searching Pecvd Process Engineer jobs in Seattle, WA look for? The top searched job categories for Pecvd Process Engineer jobs in Seattle, WA are:
Infographic showing various Pecvd Process Engineer job openings in Seattle, WA as of August 2026, with employment types broken down into 1% As Needed, 79% Full Time, 15% Part Time, 4% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $104,719 per year, or $50.3 per hour.

Equipment Engineer with Process Engineering role in Redmond WA (Onsite)

Yochana IT

Redmond, WA • On-site

Contractor

Re-posted 8 days ago


Job description

Min 5 years exprs is mandatory

 

Job Description:

Equipment Engineering role

We are seeking a highly motivated Equipment Engineer to support advanced nanofabrication, semiconductor processing, and post‑processing/packaging tool operations. This role combines responsibilities in process development, equipment health, tool maintenance, SPC monitoring, material handling, and root‑cause problem solving. The ideal candidate has experience working in cleanrooms, performing hands‑on equipment operations, and supporting production-quality process flows.

This position requires strong collaboration with cross-functional teams

Key Responsibilities

  • Monitor and maintain tool performance, including routine review of SPC data, process health indicators, and equipment metrics to ensure stable operations and high-quality output.
  • Perform root cause analysis and drive corrective and preventive actions (RCA/CAPA) for both process deviations and equipment failures.
  • Execute and support preventative maintenance (PM) on a wide range of nanofabrication, cleanroom, and post‑processing/packaging tools following industry best practices and manufacturer guidelines.
  • Conduct equipment repairs, troubleshooting, and recovery actions, collaborating with vendors, facilities, and process teams as needed.
  • Manage tool health, including tracking consumables, spare parts, materials, and coordinating upgrades, PMs, and corrective maintenance with cross-functional teams.
  • Perform material characterization and use metrology tools (profilometry, ellipsometry, microscope inspection, defect scanning, etc.) to verify process results.
  • Support operation and maintenance of vacuum-based systems such as PVD, PECVD, LPCVD, ALD, RIE/ICP tools, including vacuum pump checks, leak tests, and chamber conditioning.
  • Execute cleanroom material handling, including safe handling of wafers, substrates, chemicals, gases, hazardous materials, and process consumables.
  • Maintain compliance with cleanroom protocols, safety expectations, contamination control standards, and required PPE—including respirators when needed.
  • Support installation, testing, and qualification of new tools, modules, subsystems, or hardware upgrades.

Required Qualifications

  • Bachelor’s degree or higher in Engineering, Materials Science, Physics, Chemistry, or related field. Experience in micro-/nano‑fabrication or semiconductor processing is strongly preferred.
  • Professional experience in Process Engineering, Equipment Engineering, or a similar technical discipline.
  • Experience operating semiconductor or nanofabrication tools and machine interfaces.
  • Strong collaborative skills; able to work effectively with cross-functional teams and external vendors.
  • Willingness to work in a cleanroom environment and use appropriate PPE, including respirators.
  • Comfortable supporting physically demanding maintenance tasks requiring bending, lifting, reaching, and kneeling.

Ability to adapt to rapidly changing priorities, production needs, and engineering challenges