1

Sensor Engineer Jobs in Oregon (NOW HIRING)

CV/ML Engineer

Portland, OR · On-site

$140K - $190K/yr

Your primary focus will be applying CV and ML to sensor data from operational wildfire aircraft to ... You will be the only ML engineer for a significant period. The ideal candidate is someone who has ...

As we advance our technology from the prototype phase to commercialization, we need an engineer who can bridge the gap between real-world sensor data and our internal simulation tools. You will be ...

Robotics Tutor

OR · Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides students through building mechanical structures, wiring electronic circuits, programming ...

OR · On-site

You will be building and developing ARC's IoT sensor devices, leveraging an ARC designed ... Bachelor's degree in electrical engineering, computer engineering, or a related field * Experience ...

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides students through building mechanical structures, wiring electronic circuits, programming ...

Robotics Tutor

Eugene, OR · Remote

$40/hr

Skilled at teaching robot design, sensor programming, and autonomous behavior development. Guides students through building mechanical structures, wiring electronic circuits, programming ...

Develop distributed services that handle real-time and recorded sensor and media data at scale ... Collaborate closely with other engineers, data teams, and field personnel to deliver production ...

Be Seen First

Systems Integration Engineer

Portland, OR · On-site

$135K - $160K/yr

We are seeking an Integrations Engineer who can quickly contribute in a hands-on environment while ... sensor data flows. • Monitor integration health, resolve sync exceptions, and continuously ...

Urgent

next page

Showing results 1-20

Sensor Engineer information

See Oregon salary details

$46.5K

$112.5K

$183.4K

How much do sensor engineer jobs pay per year?

As of Jun 22, 2026, the average yearly pay for sensor engineer in Oregon is $112,480.00, according to ZipRecruiter salary data. Most workers in this role earn between $80,400.00 and $140,100.00 per year, depending on experience, location, and employer.

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

To thrive as a Sensor Engineer, you need a solid background in electronics, signal processing, and sensor technologies, usually supported by a degree in electrical engineering or a related field. Familiarity with CAD software, data acquisition systems, programming languages like C/C++, and relevant certifications such as Certified Measurement and Control Technician are highly valuable. Strong analytical thinking, problem-solving abilities, and effective teamwork set top performers apart in this field. These skills are crucial for designing reliable sensor systems, troubleshooting complex issues, and ensuring seamless integration into larger engineering projects.

What are Sensor Engineers?

Sensor Engineers are professionals who design, develop, test, and maintain sensors and sensor systems used to detect and measure physical properties such as temperature, pressure, motion, or chemical composition. They work in various industries including automotive, aerospace, healthcare, and electronics to ensure sensors function accurately and reliably. Their responsibilities often include selecting materials, integrating sensors with electronic systems, troubleshooting issues, and optimizing sensor performance for specific applications.

What are some common challenges Sensor Engineers face when integrating new sensor technologies into existing systems?

Sensor Engineers often encounter challenges such as ensuring compatibility between new sensors and legacy hardware or software, managing data integrity amidst increased data streams, and addressing calibration or environmental factors that may impact sensor accuracy. Collaboration with cross-functional teams, including software developers and hardware engineers, is frequently required to troubleshoot integration issues and optimize system performance. Staying updated with rapidly evolving sensor technologies and industry standards is also essential for successful implementation.

What is the difference between Sensor Engineer vs Electronics Engineer?

AspectSensor EngineerElectronics Engineer
Required CredentialsBachelor's in Electrical, Mechanical, or related fields; certifications varyBachelor's in Electrical Engineering or related fields; certifications vary
Work EnvironmentResearch labs, manufacturing facilities, R&D departmentsDesign firms, manufacturing plants, R&D departments
Industry UsageDeveloping and testing sensors for various applicationsDesigning electronic systems, circuit boards, and devices
Common Search/ComparisonSensor Engineer vs Electronics Engineer

Sensor Engineers focus on designing, developing, and testing sensors used in various industries, while Electronics Engineers work on designing electronic circuits and systems. Both roles require a background in electrical engineering and often collaborate in product development, but Sensor Engineers specialize in sensor technology specifically.

What are popular job titles related to Sensor Engineer jobs in Oregon? For Sensor Engineer jobs in Oregon, the most frequently searched job titles are:
What job categories do people searching Sensor Engineer jobs in Oregon look for? The top searched job categories for Sensor Engineer jobs in Oregon are:
Infographic showing various Sensor Engineer job openings in Oregon as of June 2026, with employment types broken down into 97% Full Time, and 3% Contract. Highlights an 86% Physical, 5% Hybrid, and 9% Remote job distribution, with an average salary of $112,480 per year, or $54.1 per hour.
Hardware Engineering Manager

Hardware Engineering Manager

Lam Research Corporation

Tualatin, OR • On-site

Full-time

Posted 9 days ago


Lam Research rating

8.7

Company rating: 8.7 out of 10

Based on 45 frontline employees who took The Breakroom Quiz

39th of 418 rated machine equipment manufacturers


Job description

The group you'll be a part of
You will be part of Lam Research's Equipment Intelligence and Sensor Engineering organization within the Deposition Product Group (DPG). This team is responsible for developing next-generation sensing, imaging, and data-driven capabilities that enable differentiated performance across Lam's product portfolio.
The organization focuses on integrating advanced sensor systems-including optical, thermal, acoustic, chemical, and multi-modal sensing-into semiconductor capital equipment to enable real-time visibility, control, and optimization. This includes development of modular sensor platforms, edge compute architectures, and scalable system integrations that support both new product introduction (NPI) and installed base enhancement.
Our teams operate at the intersection of mechanical systems, optics, electronics, controls, software, and data science-partnering globally to deliver robust, high-performance solutions that accelerate innovation, improve tool intelligence, and enable next-generation capabilities across all Lam product lines.
The organization operates in a matrix structure, where mechanical, electrical, optical, and software engineers collaborate closely across shared programs and platforms, requiring strong cross-functional alignment and shared ownership of outcomes.
The impact you'll make
As a Hardware/Mechanical Engineering Manager within the Equipment Intelligence and Sensor Engineering team, you will play a critical leadership role in enabling the mechanical architecture, integration, and deployment of advanced sensor systems across Lam platforms. Your work will directly impact the scalability, reliability, and performance of sensing solutions that drive equipment intelligence-enabling improved process control, fault detection, and system optimization.
You will lead a team responsible for designing and integrating complex opto-mechanical and electro-mechanical assemblies, working in close partnership with Electrical Engineering, Firmware Engineering, and other functional teams to ensure cohesive system architectures to build sensor sub-systems that are robust, manufacturable, and seamlessly integrated at the system level. Success in this role requires effective leadership within a matrix organization, influencing functional boundaries while maintaining accountability for mechanical deliverables. This role requires balancing deep technical engagement with strong execution discipline across fast-paced NPI and innovation programs.
This is a high-visibility position where your leadership will influence platform strategy, cross-product standardization, and the evolution of modular sensing architectures across Lam.
This role sits at the forefront of transforming traditional semiconductor equipment into intelligent, sensor-rich systems. You will have the opportunity to shape platform-level architectures that combine hardware, sensing, and data-impacting not just a single product, but the evolution of equipment intelligence across an entire portfolio.
What you'll do
Lead Mechanical Architecture for Sensor Systems
Define and drive mechanical architectures for advanced sensor platforms, including imaging systems, optical assemblies, and integrated sensing modules.
Enable modular, scalable designs that can be deployed across multiple product lines and applications.
Guide design tradeoffs across performance, integration constraints, reliability, and cost.
Own Design Quality and System Integration
Ensure designs meet functional, environmental, reliability, and safety requirements.
Drive strong integration with Systems Engineering to ensure robust subsystem interfaces and system-level performance.
Review mechanical designs, CAD layouts, tolerance analyses, and BOM structures.
Drive DFx and Production Readiness
Ensure designs meet manufacturability, serviceability, reliability, and cost targets.
Partner closely with Manufacturing Engineering, Supply Chain, and Operations to enable smooth transition to production and scale.
Promote platform reuse, component standardization, and cost optimization.
Electrical, Firmware, and System Co-Design
Work closely with Electrical Engineering leadership to define integrated hardware architectures for sensor and equipment intelligence systems.
Ensure mechanical designs support electrical requirements including EMI/EMC, thermal performance, routing constraints, and maintainability.
Enable tight integration between mechanical packaging, electronics, and sensing elements to achieve performance and reliability targets.
Work closely with Firmware Engineering to define hardware-firmware interfaces, including sensor control, data pipelines, and real-time system interactions.
Ensure mechanical designs support firmware and system requirements such as access for debugging, calibration workflows, and updateability in production and field environments
Who we're looking for
You are a technically strong and hands-on engineering leader who thrives at the intersection of hardware and intelligence systems. You enjoy building teams, solving complex integration challenges, and translating emerging technologies into scalable engineering solutions. You excel in matrix organizations, building strong partnerships with peer managers, and aligning cross-functional teams toward common objectives. You are comfortable operating in ambiguity, driving early-stage innovation while maintaining execution discipline required for productization. You are effective at aligning hardware and firmware teams under shared leadership, ensuring seamless integration between mechanical systems and embedded functionality.
  • Bachelor's degree in mechanical engineering (BSME) with 10+ years of experience, OR Master's degree (MSME) with 7+ years of experience, OR PhD with 5+ years of experience.
  • A portion of experience in engineering management or technical leadership roles.
  • Demonstrated ability to lead and develop teams aligned with Lam core values and a high-performance culture.
  • Strong background in design of complex electro-mechanical or opto-mechanical systems.
  • Experience leading engineering efforts through product development or NPI lifecycles.
  • Experience working in matrix organizations with cross-functional ownership across multiple disciplines.
  • Experience collaborating with Electrical and Firmware teams on integrated hardware systems.

Preferred qualifications
  • Experience with semiconductor capital equipment or similar high-complexity systems.
  • Background in optical systems, imaging, or sensor integration.
  • Strong understanding of:
    • DFMEA and reliability engineering
    • Tolerance analysis and precision design
  • Thermal and structural analysis
  • Experience with modular platform development and cross-product standardization.
  • Exposure to sensor systems, edge compute platforms, or data-driven system architectures.
  • Experience supporting production ramp and field issue resolution.
  • Demonstrated success in mentoring senior engineers and building high-impact technical teams.
  • Experience collaborating closely with Electrical Engineering teams on integrated hardware/system design.
  • Demonstrated success influencing across organizational boundaries and aligning multiple stakeholders in complex development environments.
  • Experience working with embedded systems and firmware-driven hardware platforms.
  • Familiarity with hardware-firmware co-design, including sensor control, data acquisition, and real-time system behavior.

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.
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.

What Lam Research employees say

Pay

Benefits

Hours and flexibility

Workplace

Get the full story on Breakroom


Lam Research logo

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

Social media