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Electrical Engineering Graduate Jobs in Oregon (NOW HIRING)

D. in Electrical Engineering or a related discipline. Graduate coursework or research experience in semiconductor device physics or 5+ years of work experience in Semiconductor device physics. 1+ ...

You will be responsible for performing professional electrical engineering research, design ... This is a graduate eligible role. Our Commitment We believe it is important for every person to ...

This position is ideal for a recent college graduate with a strong foundation in electrical engineering principles and a passion for circuit design, PCB development, and hands-on laboratory work. The ...

This position is ideal for a recent college graduate with a strong foundation in electrical engineering principles and a passion for circuit design, PCB development, and hands-on laboratory work. Key ...

... Electrical Engineering and Computer Science (EECS) Ecampus online courses at Oregon State ... Graduate student officially admitted to Graduate School: 5 credit hours per term * Graduate ...

$18 - $50/hr

Currently enrolled as a university student (undergraduate or graduate) in their Sophomore year or ... D. degree in Electrical Engineering, Computer Engineering, Computer Science, Electronics ...

Showing results 41-60

Electrical Engineering Graduate information

See Oregon salary details

$53.4K

$117.5K

$177.6K

How much do electrical engineering graduate jobs pay per year?

As of Sep 15, 2026, the average yearly pay for electrical engineering graduate in Oregon is $117,455.00, according to ZipRecruiter salary data. Most workers in this role earn between $87,800.00 and $139,600.00 per year, depending on experience, location, and employer.

What is an electrical engineering graduate?

Electrical engineering graduates are individuals who have completed a degree in electrical engineering, typically at the bachelor's level. They possess foundational knowledge in areas such as circuits, electromagnetics, electronics, and power systems. These graduates may pursue careers in industries like energy, telecommunications, electronics manufacturing, and automation. Their roles often involve designing, testing, and maintaining electrical systems or components. Many also continue their education or obtain professional certifications to specialize further.

What types of projects can an electrical engineering graduate expect to work on in their first year?

As an Electrical Engineering Graduate, you will likely be involved in a variety of projects such as designing circuit boards, assisting with system testing, supporting senior engineers with troubleshooting, and contributing to product development meetings. Many entry-level roles also include hands-on tasks like preparing technical documentation and collaborating with cross-functional teams, including software and mechanical engineers. These experiences are designed to give you a well-rounded understanding of both practical and theoretical aspects of electrical engineering within your organization.

What are the key skills and qualifications needed to thrive as an electrical engineering graduate, and why are they important?

To thrive as an Electrical Engineering Graduate, you need a solid grasp of electrical theory, circuit design, and problem-solving, typically backed by a bachelor's degree in electrical engineering or a related field. Familiarity with technical tools such as MATLAB, AutoCAD, and simulation software, as well as knowledge of industry standards, is commonly required. Strong analytical thinking, teamwork, and effective communication skills help you collaborate on projects and present technical information clearly. These abilities are essential for successfully contributing to engineering teams and developing innovative, safe, and efficient electrical solutions.

What is the difference between Electrical Engineering Graduate vs Electrical Engineer?

AspectElectrical Engineering GraduateElectrical Engineer
QualificationsTypically a bachelor's degree in electrical engineering or related fieldBachelor's degree required; often a Professional Engineer (PE) license is preferred
Work EnvironmentEntry-level roles, internships, or training programs in various industriesDesign, develop, test electrical systems, often with more responsibility
CertificationsUsually not required, but some may pursue certifications like EIT or PEProfessional Engineer (PE) license often required for advanced roles
Job ResponsibilitiesLearning and assisting in electrical projects, gaining practical experienceDesigning circuits, troubleshooting, project management

In summary, an Electrical Engineering Graduate is typically an entry-level individual with a degree, focusing on gaining experience, while an Electrical Engineer has more experience, responsibilities, and often a professional license, enabling them to lead projects and make critical decisions.

What do electrical engineering graduates do after graduation?

Electrical engineering graduates often pursue roles such as design, testing, and maintenance of electrical systems, working in industries like power generation, electronics, telecommunications, and automation. They may work as electrical engineers, project engineers, or in research and development, often using tools like CAD software and requiring relevant certifications or licenses. Many also continue their education or specialize in areas like control systems or renewable energy.

What jobs can an electrical engineering graduate get?

An electrical engineering graduate can pursue roles such as electrical engineer, electronics engineer, systems engineer, or power engineer. These positions typically involve designing, testing, and maintaining electrical systems and often require knowledge of circuit design, programming, and industry standards.
Infographic showing various Electrical Engineering Graduate job openings in Oregon as of August 2026, with employment types broken down into 87% Full Time, 9% Part Time, 3% Contract, and 1% Nights. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $117,455 per year, or $56.5 per hour.

Semiconductor Device Modeling Engineer

Hillsboro, OR • On-site

Intel
Manufacturing • 10K+ employees

$128K - $245K/yr

Full-time

Medical, Retirement, PTO

Re-posted 26 days ago


Intel rating

8.7

Company rating: 8.7 out of 10

Based on 147 frontline employees who took The Breakroom Quiz


Job description

Job Details:Job Description: 

Intel is shaping the future of technology to help create a better future for the entire world. Our work in pushing forward fields like AI, analytics, and cloud-to-edge technology is at the heart of countless innovations. With a career at Intel, you'll have the opportunity to use technology to power major breakthroughs and create enhancements that improve our everyday quality of life. Join us and help make the future more wonderful for everyone. Want to learn more? Visit our YouTube Channel or the link below.

Life at Intel

About the team and organization: Compact Device Modeling Group (CDMG) is part of Intel's Design Technology Platform (DTP) organization. DTP is a key pillar in enabling Intel to deliver design, development and manufacturing services that allow Intel Foundry customers to deliver winning products to the marketplace. Your work will directly enable design teams to get to the market faster with leadership products based on innovative technologies. As a member of CDMG you will be at the forefront of co-optimizing Intel's state-of-the-art process technology which allows customers with diverse design needs to enable best-in-class products for data-centric applications.
As a semiconductor device modeling engineer, you will be playing a key role to support compact modeling activities for Intel's new technologies.

Qualifications:

Minimum qualifications are required to be initially considered for this position. Preferred qualifications are in addition to the minimum requirements and are considered a plus factor in identifying top candidates.

Minimum Qualifications
Bachelor's degree in Electrical Engineering or a related discipline and 5+ or

Master's degree in Electrical Engineering or a related discipline and at least 3 years of industry experience in the semiconductor field; or Ph.D. in Electrical Engineering or a related discipline.

Graduate coursework or research experience in semiconductor device physics or 5+ years of work experience in Semiconductor device physics.
1+ years' experience Python scripting for data analysis, automation and documentation.

Preferred Qualifications
Ph.D. in Electrical Engineering or a related discipline with 3+ years of industry experience in the semiconductor field.
Proficiency with extraction tools (e.g., ICCAP, MBP) and commercial simulators such as HSPICE, Spectre, etc.
Hands-on experience with BSIM-CMG and other compact models for transistor modeling at advanced nodes (e.g., FinFET, GAA) including experience in one or more of the following areas:

  • Experience developing Layout-dependent effects (LDE) for FinFET or GAAFET technologies and their impact on circuit performance.

  • Development of methodologies for device targeting (e.g., transistors) and benchmarking circuits (e.g., ring oscillators), including corners and statistical variation models.

  • Modeling using Open Model Interface (OMI).

  • Strong understanding of process flow, layout, and basic circuit design/simulation.

  • Modeling self-heating effects and their influence on device and circuit performance.

  • Proven capability to collaborate across multiple teams and geographies.

  • Experience with machine learning algorithms and their application is data analysis and compact model development.

Benefits at Intel

Our total rewards package goes above and beyond just a paycheck. Whether you're looking to build your career, improve your health, or protect your wealth, we offer generous benefits to help you achieve your goals. Go to Intel Benefits | Intel Careers for details of benefits available to you. Intel reserves the right to modify, change or discontinue benefit plans at any time in its sole discretion.

Job Type:Experienced HireShift:Shift 1 (United States of America)Primary Location: US, Oregon, HillsboroAdditional Locations:US, California, Santa ClaraPosting Statement:All qualified applicants will receive consideration for employment without regard to race, color, religion, religious creed, sex, national origin, ancestry, age, physical or mental disability, medical condition, genetic information, military and veteran status, marital status, pregnancy, gender, gender expression, gender identity, sexual orientation, or any other characteristic protected by local law, regulation, or ordinance.Position of TrustN/ABenefits

We offer a total compensation package that ranks among the best in the industry. It consists of competitive pay, stock bonuses, and benefit programs which include health, retirement, and vacation. Find out more about the benefits of working at Intel.

Annual Salary Range for jobs which could be performed in the US: $128,880.00-245,160.00 USDThe range displayed on this job posting reflects the minimum and maximum target compensation for the position across all US locations. Within the range, individual pay is determined by work location and additional factors, including job-related skills, experience, and relevant education or training. Your recruiter can share more about the specific compensation range for your preferred location during the hiring process.

Work Model for this Role

This role will require an on-site presence. * Job posting details (such as work model, location or time type) are subject to change.

*

ADDITIONAL INFORMATION: Intel is committed to Responsible Business Alliance (RBA) compliance and ethical hiring practices. We do not charge any fees during our hiring process. Candidates should never be required to pay recruitment fees, medical examination fees, or any other charges as a condition of employment. If you are asked to pay any fees during our hiring process, please report this immediately to your recruiter.

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About Intel

Sourced by ZipRecruiter

Intel strives to make every facet of semiconductor manufacturing state-of-the-art -- from semiconductor process development and manufacturing, through yield improvement to packaging, final test and optimization, and world class Supply Chain and facilities support. Employees in the Technology and Manufacturing Group are part of a worldwide network of design, development, manufacturing, and assembly/test facilities, all focused on utilizing the power of Moore's Law to bring smart, connected devices to every person on Earth

Industry

Manufacturing

Company size

10,000+ Employees

Headquarters location

Santa Clara, CA, US

Year founded

1968