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Mems Engineer Jobs in Oregon (NOW HIRING)

Their skill, precision, and commitment to quality play a critical role in the design, engineering ... MEMS, sensors, and military systems. SEMPAC is committed to equal employment opportunity and does ...

... MEMS, Sensors and Military applications. We truly believe that our people make the difference for ... Their ingenuity and active involvement in the design, engineering and manufacture of our packaging ...

... MEMS fabs to large industrial printing presses. Qualifications * Ph. D. in chemistry, chemical engineering, or related field * Understanding of fundamental chemical mechanisms. * Key areas include:

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Mems Engineer information

See Oregon salary details

$38.6K

$113.4K

$145.4K

How much do mems engineer jobs pay per year?

As of Jul 21, 2026, the average yearly pay for mems engineer in Oregon is $113,427.00, according to ZipRecruiter salary data. Most workers in this role earn between $93,600.00 and $143,800.00 per year, depending on experience, location, and employer.

What does a MEMS Engineer do?

A MEMS Engineer designs, develops, and tests micro-electromechanical systems (MEMS) devices, which integrate mechanical and electrical components at a microscopic scale. They work on sensors, actuators, and other miniature technologies used in industries such as automotive, medical, and consumer electronics. Their role involves simulation, fabrication, testing, and optimization of MEMS devices to improve performance and reliability. Collaboration with multidisciplinary teams, including material scientists and electrical engineers, is also a key aspect of their work.

What does a typical workweek look like for a MEMS Engineer?

A typical workweek for a MEMS Engineer involves a mix of hands-on fabrication in cleanroom facilities, simulation and modeling of device behavior, and working with cross-functional teams such as electrical, mechanical, and process engineers. You may spend time prototyping, characterizing MEMS devices using analysis equipment, and troubleshooting design or process issues. Regular meetings and collaboration with product development and quality assurance teams are common to ensure projects meet performance and reliability benchmarks. This dynamic environment offers continuous learning and the opportunity to see your work move from concept to production.

What are the key skills and qualifications needed to thrive in the Mems Engineer position, and why are they important?

To thrive as a MEMS Engineer, you need a solid background in microfabrication, materials science, physics, and mechanical or electrical engineering, typically supported by a relevant bachelor's or master's degree. Familiarity with CAD tools, semiconductor processing equipment, cleanroom protocols, and software such as COMSOL Multiphysics or ANSYS is important, and industry credentials like Six Sigma certification can be beneficial. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities set successful candidates apart. These skills are vital to ensure precision in design, troubleshoot complex devices, and effectively collaborate across multidisciplinary teams in fast-paced environments.

What are popular job titles related to Mems Engineer jobs in Oregon? For Mems Engineer jobs in Oregon, the most frequently searched job titles are:
What cities in Oregon are hiring for Mems Engineer jobs? Cities in Oregon with the most Mems Engineer job openings:
Infographic showing various Mems Engineer job openings in Oregon as of July 2026, with employment types broken down into 93% Full Time, 4% Part Time, 2% Contract, and 1% Nights. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution, with an average salary of $113,427 per year, or $54.5 per hour.
Senior Manager, Robotic Systems Software

Senior Manager, Robotic Systems Software

Atomic Machines

Santa Clara, OR • On-site

Other

This job post has expired today. Applications are no longer accepted.


Job description

Atomic Machines is ushering in a new era of micromanufacturing with its Matter Compiler technology platform. This platform enables new classes of micromachines to be designed and built by providing manufacturing processes and a materials library that are inaccessible to semiconductor manufacturing methods. It unlocks MEMS manufacturing not only for device classes that could never be produced by semiconductor methods, but also for entirely new categories. Furthermore, this digital platform is fully programmable in the way 3D printing is digital-but whereas 3D printing produces parts of a single material using a single process, the Matter Compiler technology platform is a multi-process, multi-material system: bits and raw materials go in, and complete, functional micromachines come out. The Atomic Machines team has also created an exciting first device-made possible only through the Matter Compiler technology platform-that we will be unveiling to the world soon.
 
Our offices are in Emeryville and Santa Clara, California.

About the Role

Atomic Machines is building advanced robotic manufacturing systems that integrate precision motion, sensing, vision, and process control into tightly coordinated production nodes. As Sr. Manager, Robotic Systems Software, you'll own the architecture and development of the system-level software that orchestrates these nodes in production. Your team will be responsible for workflow sequencing, subsystem coordination, configuration management, and operational robustness. You will report to the Sr. Director of Platform and work with other software leaders and electrical, mechanical and systems engineering teams to bring new manufacturing nodes from hardware integration through stable, repeatable 24/7 operation.

What You'll Do

  • Lead the design and implementation of the robotic systems software stack, including deterministic workflow engines and sequencing logic across motion, vision, sensing, and IO subsystems.
  • Lead node bring-up from hardware integration through production stabilization, ensuring safe, recoverable, and repeatable behavior.
  • Drive and uphold engineering standards for fault detection, classification, automated recovery, and safe-state transitions.
  • Implement robust telemetry, structured logging, and time-synchronized diagnostics to enable rapid root-cause analysis.
  • Remain hands-on in design and code reviews, and occasionally in implementation for critical systems.
  • Partner cross-functionally with mechanical, electrical, robotics, manufacturing, and infrastructure teams to ensure tight system integration.
  • Own delivery and technical direction for a set of production nodes or subsystems.
  • Hire, develop, and lead a high-performing team with strong technical standards and accountability.

What You'll Need

  • 8+ years of experience building complex automation or robotic systems, including 3+ years leading engineering teams.
  • Demonstrated expertise designing deterministic orchestration systems or explicit state machines in production environments.
  • Strong understanding of concurrency, event ordering, idempotency, and failure recovery in hardware-integrated systems.
  • Experience transitioning robotic or automation platforms from prototype to stable, production-grade operation.
  • Experience building or leveraging observability systems for complex, hardware-integrated software.
  • Working knowledge of real-time motion or embedded control systems and how to architect clean separation between real-time and non-real-time layers.
  • Proven track record hiring, coaching, and scaling strong engineering teams.
  • Strong systems-level reasoning across hardware and software domains.
  • Bachelor's degree in Computer Science, Electrical Engineering, Robotics, or equivalent work experience.