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Semiconductor Device Engineer Jobs in Oregon (NOW HIRING)

Support for new product introductions at customer sites, working with customer engineers to ... Understanding of semiconductor processing, statistical process control, device physics, and failure ...

Senior Engineer, Field Process As a Senior Engineer, Field Process, you will help expand ASM ... Familiarity with semiconductor device applications, vacuum techniques, metrology, and thin-film ...

Senior Engineer, Field Process As a Senior Engineer, Field Process, you will help expand ASM ... Familiarity with semiconductor device applications, vacuum techniques, metrology, and thinfilm ...

... semiconductor device physics, with an aptitude for mechanical hardware systems. Utilize this ... engineer quick solutions. Business Expertise: * Understand best practices and how EPI integrates ...

Principal Field Process Engineer (Hillsboro, OR) The Principal Field Process Engineer (FPE) is a ... Strong expertise in semiconductor device integration, vacuum systems, film metrology, and ...

Process Support Engineer

Hillsboro, OR · On-site

$108K - $148K/yr

... semiconductor device physics, with an aptitude for mechanical hardware systems. Utilize this ... engineer quick solutions. Business Expertise: * Understand best practices and how EPI integrates ...

... Semiconductor device physics. - Digital or analog circuit design and validation. - Defect detection or fault isolation methodologies in manufacturing environments. Preferred Qualifications ...

Showing results 41-60

Semiconductor Device Engineer information

See Oregon salary details

$40.2K

$122.5K

$202.5K

How much do semiconductor device engineer jobs pay per year?

As of Aug 12, 2026, the average yearly pay for semiconductor device engineer in Oregon is $122,502.00, according to ZipRecruiter salary data. Most workers in this role earn between $87,800.00 and $160,200.00 per year, depending on experience, location, and employer.

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

To thrive as a Semiconductor Device Engineer, you need expertise in semiconductor physics, device fabrication, and electrical engineering, usually backed by a degree in electrical engineering or a related field. Proficiency with tools such as TCAD simulation software, cleanroom fabrication equipment, and failure analysis systems is essential, and certifications like Six Sigma or IPC may be advantageous. Strong problem-solving skills, teamwork, and effective communication distinguish top performers in this role. These capabilities are vital for developing innovative, reliable semiconductor devices and efficiently collaborating with multidisciplinary teams.

What are the common challenges faced by semiconductor device engineers in their day-to-day work?

Semiconductor Device Engineers often work on tight development timelines while troubleshooting complex device performance issues, which can be both technically and logistically challenging. They frequently need to collaborate with cross-functional teams—including process engineers, circuit designers, and quality assurance specialists—to resolve fabrication process variances or meet evolving customer requirements. Adapting to rapid advancements in semiconductor technology also requires continuous learning and staying updated on industry trends. Successfully managing these challenges ensures timely product delivery and helps maintain a competitive edge in the semiconductor industry.

What is a semiconductor device engineer?

A Semiconductor Device Engineer designs, analyzes, and optimizes semiconductor devices such as transistors, diodes, and integrated circuits. They work on developing new technologies, improving device performance, and solving issues related to fabrication and reliability. This role requires expertise in semiconductor physics, materials science, and simulation tools. Engineers collaborate with process, circuit, and test teams to ensure devices meet performance and manufacturing requirements.

What are the most commonly searched types of Semiconductor Device Engineer jobs in Oregon? The most popular types of Semiconductor Device Engineer jobs in Oregon are:
What job categories do people searching Semiconductor Device Engineer jobs in Oregon look for? The top searched job categories for Semiconductor Device Engineer jobs in Oregon are:
What cities in Oregon are hiring for Semiconductor Device Engineer jobs? Cities in Oregon with the most Semiconductor Device Engineer job openings:
Infographic showing various Semiconductor Device Engineer job openings in Oregon as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $122,502 per year, or $58.9 per hour.

Engineer, Field Process (Hillsboro, OR)

ASM

Hillsboro, OR

Full-time

Posted 17 days ago


Job description

Engineer, Field Process (Hillsboro, OR)

As a Field Process Engineer, you will help expand ASM's advanced film technologies at a customer site in Oregon by developing, optimizing, and transferring innovative ALD, PEALD, PECVD, Epitaxy, and LPCVD processes. You will serve as the technical interface between customer engineering teams and ASM's global Business Unit, ensuring smooth and successful introduction of new products and processes. This role directly supports ASM's mission to accelerate nextgeneration semiconductor manufacturing through collaboration, technical excellence, and strong customer partnerships.

What you will be working on

  • Support New Product Introduction (NPI) by training with the Business Unit to gain deep expertise in new deposition processes and hardware
  • Lead the introduction, qualification, and transfer of new processes to the customer site
  • Partner closely with field hardware engineers and Business Unit teams to troubleshoot new products and develop process or hardware improvement proposals
  • Design and execute on-site experiments with customers to support development, integration, and continuous improvement projects
  • Escalate technical issues in a timely manner to maintain scope, timelines, and customer alignment
  • Document key learnings during NPI and ensure effective knowledge transfer to local service and manufacturing teams
  • Analyze baseline system and process performance against technologynode requirements to identify gaps
  • Perform structured problem solving and rootcause analysis on process or system nonconformances
  • Collaborate with customer teams to identify and grow opportunities for ASM hardware and process adoption
  • Support process transfer to highvolume manufacturing (HVM) fabs, creating and maintaining bestknown methods (BKMs) and documentation
  • Maintain strong discipline around IP boundaries, customer communication, and escalation leadership

What we are looking for

  • MS degree with relevant internship, research, or academic project experience, or PhD with relevant academic, research, or internship experience in materials science, chemical engineering, or physics
  • Hands-on experience processing, developing, or characterizing thin films using thermal ALD, plasma ALD, plasma CVD, epitaxy, or LPCVD reactors through internships, research, or academic projects
  • Demonstrated troubleshooting and structured problemanalysis skills (e.g., KT, FMEA, Ishikawa, 7step methodologies)
  • Experience designing, running, and interpreting DOEs or statistical experiments in academic, research, or internship settings
  • Familiarity with semiconductor device applications, vacuum techniques, metrology, and thinfilm characterization
  • Willingness and ability to travel for training and customer engagement; flexibility to support extended hours or weekends during qualifications or escalations
  • Strong written and verbal communication skills with the ability to clearly explain technical concepts
  • Ability to maintain confidentiality and uphold IP boundaries

What sets you apart

  • Internship, research, or academic experience with ASM ALD, PEALD, PECVD, epitaxy, or vertical furnace LPCVD equipment
  • Demonstrated success optimizing deposition processes in research, pilot, or HVMadjacent environments
  • Exposure to customerfacing technical discussions, presentations, or reviews
  • Experience supporting process transfer, scaleup, or qualification activities
  • Proven ability to collaborate crossfunctionally and contribute to structured action plans during technical challenges or escalations