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Imaging Engineer Jobs in Oregon (NOW HIRING)

What you'll do Develop and deploy spectroscopy-, imaging-, and vision-based metrology systems for ... Master's degree in Physics, Optical Engineering, Electrical Engineering, Mechanical Engineering ...

Senior Engineer - Software

Portland, OR

$129K - $171K/yr

Build software layers that communicate with pumps, sensors, imaging devices, and environmental ... Work closely with hardware engineers and scientists to translate experimental needs into software ...

Senior Engineer - Software

Portland, OR · On-site

$129K - $171K/yr

Build software layers that communicate with pumps, sensors, imaging devices, and environmental ... Work closely with hardware engineers and scientists to translate experimental needs into software ...

The Sales Engineer for the Microscopy business at Lumencor is responsible for advancing the goals ... Build and maintain relationships with imaging directors, core facility managers, principal ...

The role bridges Sales, Product, Engineering, and Operations - translating customer workflow ... Strong understanding of imaging systems, biomedical device hardware/software, network architecture ...

General Application

Hood River, OR · On-site

$100K - $138K/yr

Overwatch Imaging is an imagery intelligence technology company working to bring sensor autonomy to time-critical airborne search, detection, tracking and monitoring missions. Our Automated Sensor ...

Sr. Mechanical Engineer

Wilsonville, OR · On-site

$108K - $142K/yr

... imaging and pharmaceutical research. We are looking for individuals who thrive on making an impact ... Teledyne FLIR is looking for a mechanical engineer to work in the Surveillance Systems Division in ...

Showing results 21-40

Imaging Engineer information

See Oregon salary details

$33.3K

$78.8K

$115.2K

How much do imaging engineer jobs pay per year?

As of Sep 2, 2026, the average yearly pay for imaging engineer in Oregon is $78,848.00, according to ZipRecruiter salary data. Most workers in this role earn between $52,900.00 and $88,300.00 per year, depending on experience, location, and employer.

What is an imaging engineer?

Imaging Engineers are professionals who design, develop, maintain, and troubleshoot imaging equipment, such as MRI, CT, X-ray, and ultrasound machines. They work in healthcare, research, and manufacturing settings to ensure imaging devices function accurately and safely. Their responsibilities may involve installing new equipment, calibrating devices, performing preventive maintenance, and training staff on proper usage. Imaging Engineers play a crucial role in supporting medical diagnostics and research by keeping advanced imaging technology operational.

What does an imaging engineer do?

The job duties of an imaging engineer involve working on the maintenance, installation, and calibration of diagnostic imaging equipment. Your exact responsibilities in this career depend on the specialty in which you work. You may install, repair, and perform the calibration of MRI or CT equipment, radiology equipment, arthroscopic surgical imaging devices, or other medical, clinical, and diagnostic imaging equipment. In addition to making repairs and performing maintenance, you may perform regular inspections to ensure that the imaging is accurate.

What are the key skills and qualifications needed to thrive as an imaging engineer, and why are they important?

To thrive as an Imaging Engineer, you need a solid background in engineering or physics, expertise in imaging modalities (such as MRI, CT, or ultrasound), and typically a relevant bachelor's or master's degree. Familiarity with medical imaging software, programming languages (like Python or MATLAB), and certifications such as Certified Radiology Equipment Specialist (CRES) are commonly required. Strong problem-solving skills, attention to detail, and effective communication help Imaging Engineers excel in troubleshooting and collaborating with healthcare professionals. These abilities are crucial for maintaining the safety, accuracy, and reliability of imaging equipment in clinical environments.

What are some common challenges imaging engineers face when troubleshooting imaging equipment, and how are these typically addressed?

Imaging Engineers often encounter challenges such as diagnosing complex hardware or software faults in imaging systems, keeping up with rapidly advancing technology, and minimizing equipment downtime in clinical or research environments. These challenges are typically addressed through systematic troubleshooting, liaising with equipment manufacturers, utilizing service manuals and diagnostic tools, and collaborating closely with biomedical engineers, IT staff, and end-users. Continuous training and hands-on experience are essential for staying current and effectively resolving technical issues.

What is the difference between Imaging Engineer vs Medical Imaging Technician?

AspectImaging EngineerMedical Imaging Technician
Required CredentialsBachelor's or higher in engineering, certifications in imaging technologyAssociate's or bachelor's in radiologic technology, state licensure
Work EnvironmentResearch labs, tech companies, manufacturing facilitiesHospitals, clinics, diagnostic centers
Employer & IndustryTech firms, healthcare device manufacturersHealthcare providers, diagnostic imaging centers

Imaging Engineers focus on developing and improving imaging technology, often working in research or manufacturing settings. Medical Imaging Technicians operate imaging equipment directly on patients in clinical environments. While both roles involve imaging technology, their responsibilities, credentials, and work settings differ significantly.

What are popular job titles related to Imaging Engineer jobs in Oregon?

For Imaging Engineer jobs in Oregon, the most frequently searched job titles are:

What cities in Oregon are hiring for Imaging Engineer jobs?

Cities in Oregon with the most Imaging Engineer job openings:

What are popular job titles related to Imaging Engineer jobs in OR?

For Imaging Engineer jobs in OR, the most frequently searched job titles are:

Infographic showing various Imaging Engineer job openings in Oregon as of August 2026, with employment types broken down into 87% Full Time, 8% Part Time, 4% Contract, and 1% Nights. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution, with an average salary of $78,848 per year, or $37.9 per hour.

Metrology Engineer 3

Lam Research Corporation

Tualatin, OR • On-site

Full-time

Posted 9 days ago


Lam Research rating

8.2

Company rating: 8.2 out of 10

Based on 46 frontline employees who took The Breakroom Quiz

131st of 495 rated machine equipment manufacturers


Job description

The group you'll be a part of
In the Global Products Group, we are dedicated to excellence in the design and engineering of Lam's etch and deposition products. We drive innovation to ensure our cutting-edge solutions are helping to solve the biggest challenges in the semiconductor industry.
The impact you'll make
At Lam, as a Metrology Engineer, you will help develop next-generation on-tool metrology and sensing technologies that enable smarter semiconductor manufacturing. Working at the intersection of semiconductor processes, optical sensing, machine vision, spectroscopy, and data analytics, you will transform raw sensor data into actionable process insights that improve equipment performance, productivity, and wafer outcomes.
You will work closely with hardware, firmware, software, process technology, and data science teams to develop measurement solutions capable of quantifying wafer characteristics directly on semiconductor processing equipment. Through hands-on experimentation, data analysis, and model development, you will help accelerate the transition from concept to product deployment for emerging Equipment Intelligence technologies.
In this role, you will directly contribute to the development and deployment of vision- and spectroscopy-based metrology systems that enable real-time characterization of film thickness, uniformity, defectivity, process drift, and other critical wafer-level measurements.
What you'll do
  • Develop and deploy spectroscopy-, imaging-, and vision-based metrology systems for non-contact wafer characterization, including film thickness, uniformity, defect detection, process monitoring, and equipment health assessment.
  • Design and execute experiments to characterize sensor performance, quantify measurement uncertainty, evaluate sensitivity, and perform MSA, Gauge R&R, capability, and error-budget analyses.
  • Develop calibration methods, measurement models, and analytics that transform optical, spectral, image, and equipment signals into actionable metrics for monitoring, diagnostics, optimization, and process control.
  • Build algorithms for spectroscopy, image analysis, signal processing, sensor fusion, anomaly detection, and metrology inference using physics-based, statistical, and machine learning techniques.
  • Correlate on-tool measurements with reference metrology systems, analyze experimental and production datasets, and generate wafer-level analytics to improve process understanding, control, and predictive monitoring.
  • Characterize and optimize optical subsystems, including illumination sources, imaging systems, spectrometers, hyperspectral cameras, sensors, optics, and data acquisition hardware.
  • Partner with hardware, firmware, software, optics, process technology, and data science teams to define requirements, sensor architectures, calibration strategies, and product performance targets.
  • Support product development from concept through deployment, including prototype integration, troubleshooting, validation, customer engagement, technical documentation, and development of automated analysis and visualization tools.

Who we're looking for
Minimum Qualifications:
  • Master's degree in Physics, Optical Engineering, Electrical Engineering, Mechanical Engineering, Materials Science, Chemical Engineering, Data Science, Applied Mathematics, or a related technical discipline with 3+ years of experience; or PhD with no previous professional experience; or equivalent industry experience.
  • Strong experimental design, statistical analysis, and technical problem-solving skills.
  • Experience with scientific data analysis tools such as Python, MATLAB, R, JMP, or equivalent.
  • Ability to interpret complex datasets and communicate findings effectively to technical and non-technical audiences.
  • Strong written, verbal, and presentation skills.
  • Ability to travel up to 25%.

Preferred qualifications
  • Experience with semiconductor metrology applications, including film thickness measurement, material characterization, wafer uniformity analysis, defect inspection, process monitoring, and process control.
  • Experience with optical sensing technologies and data interpretation, including spectroscopic reflectometry, ellipsometry, hyperspectral imaging, machine vision, optics, photonic sensors, and scientific imaging systems.
  • Experience developing and applying physics-based, data-driven, or hybrid models for metrology, diagnostics, process monitoring, characterization, and equipment intelligence.
  • Experience in optical modeling, thin-film optics, image processing, computer vision, signal processing, spectroscopy, and analysis of complex sensor data.
  • Experience evaluating measurement systems through calibration development, MSA, Gauge R&R, uncertainty analysis, capability assessment, correlation analysis, and repeatability and reproducibility studies.
  • Experience designing statistically rigorous experiments and DOE methodologies for product development, characterization, and validation.
  • Proficiency in Python and engineering analysis tools, with experience in machine learning, scientific computing, simulation, visualization, automation, and analysis of large-scale manufacturing and wafer-level datasets.
  • Experience developing production-grade analytics, diagnostics, monitoring, machine learning, or multi-sensor data fusion solutions, with knowledge of semiconductor thin-film processes and the ability to work effectively across multidisciplinary engineering teams.

Our commitment
We believe it is important for every person to feel valued, included, and empowered to achieve their full potential. By bringing unique individuals and viewpoints together, we achieve extraordinary results.
Lam Research ("Lam" or the "Company") is an equal opportunity employer. Lam is committed to and reaffirms support of equal opportunity in employment and non-discrimination in employment policies, practices and procedures on the basis of race, religious creed, color, national origin, ancestry, physical disability, mental disability, medical condition, genetic information, marital status, sex (including pregnancy, childbirth and related medical conditions), gender, gender identity, gender expression, age, sexual orientation, or military and veteran status or any other category protected by applicable federal, state, or local laws. It is the Company's intention to comply with all applicable laws and regulations. Company policy prohibits unlawful discrimination against applicants or employees.
Lam offers a variety of work location models based on the needs of each role. Our hybrid roles combine the benefits of on-site collaboration with colleagues and the flexibility to work remotely and fall into two categories - On-site Flex and Virtual Flex. 'On-site Flex' you'll work 3+ days per week on-site at a Lam or customer/supplier location, with the opportunity to work remotely for the balance of the week. 'Virtual Flex' you'll work 1-2 days per week on-site at a Lam or customer/supplier location, and remotely the rest of the time.
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Our Perks and Benefits
At Lam, our people make amazing things possible. That's why we invest in you throughout the phases of your life with a comprehensive set of outstanding benefits.

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About Lam Research

Sourced by ZipRecruiter

Lam Research designs and builds products for semiconductor manufacturing, including equipment for thin film deposition, plasma etch, photoresist strip, and wafer cleaning processes.

Industry

Manufacturing

Company size

10,000+ Employees

Headquarters location

Fremont, CA, US

Year founded

1980

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