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Semiconductor Process Integration Jobs in Portland, OR

Experience related to semiconductor processing in BCD, Discretes, and hybrid Smart Power ... Process Integration and Technology Development * Develop unit processes and process modules for ...

Experience related to semiconductor processing in BCD, Discretes, and hybrid Smart Power technologies is desired. Responsibilities Process Integration and Technology Development * Develop unit ...

Life at Intel Shape the Future of Technology at Intel and Transform Tomorrow's Technology Today Join Intel as a Yield Development Engineer and play a pivotal role in advancing semiconductor process ...

Life at Intel Shape the Future of Technology at Intel and Transform Tomorrow's Technology Today Join Intel as a Yield Development Engineer and play a pivotal role in advancing semiconductor process ...

Life at Intel Shape the Future of Technology at Intel and Transform Tomorrow's Technology Today Join Intel as a Yield Development Engineer and play a pivotal role in advancing semiconductor process ...

Life at Intel Shape the Future of Technology at Intel and Transform Tomorrow's Technology Today Join Intel as a Yield Development Engineer and play a pivotal role in advancing semiconductor process ...

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Semiconductor Process Integration information

See Portland, OR salary details

$13

$31

$58

How much do semiconductor process integration jobs pay per hour?

As of Jul 27, 2026, the average hourly pay for semiconductor process integration in Portland, OR is $31.65, according to ZipRecruiter salary data. Most workers in this role earn between $23.22 and $38.75 per hour, depending on experience, location, and employer.

What are some common challenges faced by professionals in Semiconductor Process Integration, and how can they be addressed?

Professionals in Semiconductor Process Integration often encounter challenges such as balancing yield improvement with aggressive production schedules, managing complex cross-functional communication, and troubleshooting process-related defects. These challenges can be addressed by developing strong problem-solving skills, maintaining clear communication with fabrication, design, and quality teams, and staying current with process technology advancements. Leveraging data analysis tools and fostering collaborative relationships across departments are also key to effectively overcoming integration hurdles.

What is semiconductor process integration?

Semiconductor process integration refers to the coordination and optimization of multiple manufacturing steps to create complex microelectronic devices, such as integrated circuits. Process integration engineers ensure that different fabrication processes—like lithography, etching, deposition, and doping—work together seamlessly to achieve high yield and device performance. They troubleshoot issues, develop new process flows, and collaborate with design and manufacturing teams to improve product reliability and efficiency. This role is critical in advancing semiconductor technology and scaling devices to smaller nodes.

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

To thrive as a Semiconductor Process Integration Engineer, you need a solid background in materials science, semiconductor physics, and device fabrication, often supported by a degree in electrical engineering, materials science, or a related field. Familiarity with semiconductor manufacturing tools (such as photolithography and etching equipment), statistical process control (SPC) software, and data analysis platforms is essential. Strong problem-solving abilities, attention to detail, and effective collaboration skills help you excel in cross-functional teams. These competencies are crucial for optimizing device performance, ensuring process reliability, and driving innovation in a highly technical and competitive industry.

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

AspectSemiconductor Process IntegrationSemiconductor Process Engineer
Primary FocusDeveloping and optimizing manufacturing processes for semiconductor devices at the integration levelDesigning, implementing, and improving specific process steps within semiconductor fabrication
Work EnvironmentResearch labs, fabrication facilities, cross-disciplinary teamsManufacturing plants, process development labs
Required CredentialsBachelor’s or Master’s in Electrical Engineering, Materials Science, or related fields; experience in process developmentBachelor’s or Master’s in Engineering, Chemistry, or related fields; process optimization experience

Semiconductor Process Integration professionals focus on integrating multiple process steps to ensure overall device performance, while Semiconductor Process Engineers concentrate on developing and refining individual process steps. Both roles are essential in semiconductor manufacturing, often working closely within the same industry environment.

What are popular job titles related to Semiconductor Process Integration jobs in Portland, OR? For Semiconductor Process Integration jobs in Portland, OR, the most frequently searched job titles are:
What job categories do people searching Semiconductor Process Integration jobs in Portland, OR look for? The top searched job categories for Semiconductor Process Integration jobs in Portland, OR are:
What cities near Portland, OR are hiring for Semiconductor Process Integration jobs? Cities near Portland, OR with the most Semiconductor Process Integration job openings:
Infographic showing various Semiconductor Process Integration job openings in Portland, OR as of July 2026, with employment types broken down into 89% Full Time, 7% Part Time, and 4% Contract. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $65,832 per year, or $31.6 per hour.
Process Integration Engineer

Process Integration Engineer

onsemi

Gresham, OR • Hybrid

Full-time

Posted 8 days ago


Onsemi rating

8.3

Company rating: 8.3 out of 10

Based on 20 frontline employees who took The Breakroom Quiz


Job description

The Process Integration and Technology Development Engineer defines, develops, and implements silicon process technology for the manufacture of integrated silicon devices. The successful candidate will be responsible for unit/process module development, process flow implementation, design rule definition, device architecture, electrical characterization, and technology qualification. These tasks support new silicon technology developments and transfers of existing technologies in and out of the resident fab. Experience related to semiconductor processing in BCD, Discretes, and hybrid Smart Power technologies is desired. 

 
onsemi (Nasdaq: ON) is driving disruptive innovations to help build a better future. With a focus on automotive and industrial end-markets, the company is accelerating change in megatrends such as vehicle electrification and safety, sustainable energy grids, industrial automation, and 5G and cloud infrastructure. With a highly differentiated and innovative product portfolio, onsemi creates intelligent power and sensing technologies that solve the world's most complex challenges and leads the way in creating a safer, cleaner, and smarter world.

More details about our company benefits can be found here:

https://www.onsemi.com/careers/career-benefits

We are committed to sourcing, attracting, and hiring high-performance innovators, while providing all candidates a positive recruitment experience that builds our brand as a great place to work.


onsemi is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, ethnicity, color, religion, ancestry, national origin, age, marital status, pregnancy, sex, sexual orientation, physical or mental disability, medical condition, genetic information, military or veteran status, gender identity, gender expression, or any other protected category under applicable federal, state, or local laws.

If you are an individual with a disability and require a reasonable accommodation to complete any part of the application process, or are limited in the ability or unable to access or use this online application process and need an alternative method for applying, you may contact Talent.acquisition@onsemi.com for assistance.

Required

  • MS or PhD in Electrical Engineering, Physics, Chemistry, Chemical Engineering, Materials Engineering, or related technical field. 
  • Experience with semiconductor process technology and wafer fabrication.
  • Understanding of semiconductor device physics, including CMOS, DMOS, Bipolar, and Trench FET devices.  
  • Experience applying DOE, statistical analysis, and data analytics to semiconductor development. 
  • Strong written and verbal communication skills with the ability to convey complex technical concepts clearly. 
  • Proven problem-solving ability and strong collaboration skills in cross-functional teams. 

Preferred 

  • Experience with 180 nm through 40 nm technologies.
  • Knowledge of Bipolar, CMOS, High Voltage DMOS, Vertical FETs, SOI, CIS, EEPROM, NVM, or Dual Damascene copper integration. 
  • Knowledge of intrinsic reliability testing methodologies, including GOI, VRamp, TDDB, HCI, EM, and SM.  
  • Hands-on experience with process and device TCAD simulations. 
  • Experience designing and evaluating physical and electrical design rule test structures. 
  • Familiarity with AI/ML techniques, data mining, or statistical modeling applied to semiconductor process or device data.
  • Experience using scripting languages (e.g., Python, MATLAB, JMP, or equivalent) for data analysis, automation, or model development.

Process Integration and Technology Development

  • Develop unit processes and process modules for CMOS, BCD, Discretes, and hybrid Smart Power technologies. 
  • Perform process module characterization to ensure robustness, manufacturability, and scalability. 
  • Develop and maintain end-to-end technology process flows with detailed process specifications. 
  • Define physical design rules and test structures for characterization.
  • Drive process and device optimization to meet performance, reliability, and cost targets. 
  • Design and analyze statistical experiments using DOE, regression, and AI-assisted methods to optimize device architecture and process modules. 
  • Support intrinsic reliability studies, including gate oxide integrity, TDDB, HCI, EM, and stress migration, using both physics-based and data-driven approaches. 

Manufacturing, Yield & Technology Transfer

  • Facilitate process improvements and corrective actions for yield, reliability, and manufacturability issues using root-cause analysis and data mining and analysis. 
  • Support Process Engineering and Yield Engineering teams to improve process quality and yield for technologies released to manufacturing. 
  • Enable smooth technology transfers into and out of the fab by using data-driven monitoring, excursion detection, and learning systems.

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