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Mems Engineering Jobs (NOW HIRING)

$14.75 - $19.75/hr

Responsibilities * Support the design, testing, and characterization of MEMS resonators ... Collaborate with engineers and cross-functional teams on ongoing development projects. * Maintain ...

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How much do mems engineering jobs pay per hour?

As of Sep 5, 2026, the average hourly pay for mems engineering in the United States is $29.53, according to ZipRecruiter salary data. Most workers in this role earn between $20.67 and $32.45 per hour, depending on experience, location, and employer.

What is MEMS engineering?

MEMS engineering involves the design, fabrication, and testing of micro-electromechanical systems (MEMS), which are tiny devices that combine electrical and mechanical components at a microscale. MEMS are used in a variety of applications, including sensors, actuators, and microfluidic devices, commonly found in smartphones, automotive systems, medical devices, and more. MEMS engineers work on the development of these devices, utilizing specialized fabrication techniques and materials to create innovative solutions for a wide range of industries.

What are the key skills and qualifications needed to thrive as a MEMS engineer?

To thrive as a MEMS Engineer, you need a solid background in microfabrication, semiconductor physics, and materials science, typically with a degree in electrical, mechanical, or materials engineering. Familiarity with CAD design tools, cleanroom processes, and simulation software like COMSOL or CoventorWare is often required, along with knowledge of relevant industry standards. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills distinguish top performers in this field. These competencies ensure the precise design, fabrication, and integration of MEMS devices for high-performance and innovative applications.

What are some typical challenges faced by MEMS engineers when transitioning prototypes to mass production?

MEMS engineers often encounter challenges such as scaling up fabrication processes, ensuring device reliability, and maintaining yield consistency during the transition from prototype to mass production. Small changes in design or materials can significantly impact performance at scale, so close collaboration with manufacturing teams and iterative testing are crucial. Additionally, MEMS engineers must consider packaging, testing, and integration with electronics, which can add complexity to the production process.

What is the difference between Mems Engineering vs Microfabrication Engineering?

AspectMems EngineeringMicrofabrication Engineering
Required CredentialsBachelor's or higher in Electrical, Mechanical, or Materials Engineering; often includes specialized MEMS coursesBachelor's or higher in Chemical, Materials, or Mechanical Engineering; includes microfabrication process knowledge
Work EnvironmentResearch labs, manufacturing facilities, R&D departmentsCleanrooms, fabrication facilities, R&D labs
Industry UsageDesign and develop MEMS devices like sensors and actuatorsDevelop microfabrication processes for various micro-scale devices

While both roles involve micro-scale technologies, Mems Engineering focuses on designing MEMS devices, whereas Microfabrication Engineering emphasizes developing fabrication processes. MEMS engineers often work on device integration, while microfabrication engineers optimize manufacturing techniques. Both roles are essential in industries like electronics, healthcare, and automotive, but they differ in their core focus and skill sets.

How to become a MEMS engineer?

To become a MEMS engineer, typically a bachelor's degree in electrical engineering, mechanical engineering, or a related field is required, often followed by a master's or Ph.D. for advanced roles. Skills in microfabrication, cleanroom processes, and CAD tools are essential, along with experience in semiconductor manufacturing or research environments.

What does a MEMS engineer do?

A MEMS engineer designs, develops, and tests microelectromechanical systems (MEMS), which are tiny devices combining mechanical and electrical components. They work with tools like CAD software and fabrication processes such as lithography to create sensors, actuators, and other microscale devices used in industries like healthcare, automotive, and consumer electronics.
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What cities are hiring for Mems Engineering jobs?

Cities with the most Mems Engineering job openings:

What states have the most Mems Engineering jobs?

States with the most job openings for Mems Engineering jobs include:

Infographic showing various Mems Engineering job openings in the United States as of August 2026, with employment types broken down into 92% Full Time, 4% Part Time, 3% Contract, and 1% Nights. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $61,424 per year, or $29.5 per hour.

Senior MEMS Process Integration Engineer

Torramics, Inc.

Palo Alto, CA โ€ข On-site

$160 - $180/hr

Other

Medical, Dental, Vision

Posted 4 days ago


Job description

Senior MEMS Process Integration EngineerAbout this position

At Torramics, we're doing something no one has done before: fusing leading nanofluidic technology with a breakthrough thermoelectric / thermal-diffusion nanoCompressor to reinvent injectable drug delivery. The result is a platform so small, so precise, and so reliable that it will change daily life for people living with insulin-dependent diabetes - starting with insulin and GLP-1s.

We're looking for a Senior MEMS Process Integration Engineer to be a hands-on technical leader in the development and integration of our nanoCompressor process. You'll work directly in the fab, developing processes, running experiments, analyzing results, and helping coordinate the work required to move a world-first MEMS microfluidic device from R&D toward commercialization. Over time, this role is expected to become a key technical transfer lead as the process moves into production.

What you'll own
  • Hands-on process development and integration. Work directly with process equipment to develop, optimize, and maintain the process steps that drive product performance, yield, and reliability.
  • Yield and reliability. Turn on-wafer metrology into insight using DOE, SPC, capability analysis, and appropriate data-analysis tools - spotting trends, root-causing issues, and locking in process stability.
  • The hardest problems in the fab. Design and run experiments, split lots, and process-development work to correct MEMS device and fab-process issues, reduce variation and defects, and shorten cycle time.
  • Technology transfer and team coordination. Work shoulder to shoulder with process, design, test, and technician team members, while building the technical depth to support eventual transfer to Torramics' production environment and external partners.
  • The knowledge base. Create process documentation, specifications, and SOPs the team can build on, and communicate findings clearly to engineers, partners, and leadership.
In your first year, you'll
  • Become a trusted, hands-on process integration partner across the nanoCompressor development flow.
  • Build the DOE and SPC foundation the team relies on to make process decisions.
  • Reduce defectivity, improve process capability, and help prepare the technology for transfer into a production environment.
What you bring
  • 5+ years of hands-on semiconductor or MEMS process development / integration experience in a fab, R&D, or high-volume manufacturing environment.
  • Demonstrated hands-on experience operating process equipment and developing one or more core module areas such as thin films, lithography, etch, wet clean, MEMS release, or inline / failure-analysis metrology. This is not a hands-off or fabless-only role.
  • Strong statistical process and data-analysis capability, including DOE, SPC, capability analysis, and FMEA. JMP is useful, but equivalent tools such as Minitab, Excel, or other analysis platforms are welcome.
  • A degree in Materials Science, MEMS, Materials Engineering, Chemistry, Physics, Applied Physics, Electrical Engineering, or a closely related field.
  • Sharp problem-identification and analytical instincts, plus the communication skills to make complex technical work clear to peers, partners, and leadership.
Bonus points (not required)
  • Experience with MEMS devices - resonators, sensors, microphones, gyroscopes - especially those incorporating microfluidics.
  • Experience transferring a process or technology from R&D into a production environment.
  • Familiarity with industry-standard layout files (GDS, OASIS).
  • Python or MATLAB.
Why Torramics
  • A world-first mission with real stakes. You'll help commercialize the smallest insulin patch ever - technology designed to improve daily life for people living with insulin-dependent diabetes.
  • Ownership, not layers. Join a small, senior team where you report directly to the VP of Silicon Development and your work visibly moves the product forward.
  • Ground-floor impact. Privately held and headquartered in Silicon Valley, we've been perfecting our platform since 2021 - and we're scaling the team supporting commercialization.
  • Benefits and upside. A competitive package with medical, dental, and vision benefits, plus equity eligibility with a four-year vesting structure.
The details
  • Location: Stanford, California. This is an on-site role supporting development work in the Stanford University nanofabrication environment.
  • Compensation: $160,000-$180,000 annual base salary, depending on experience and overall fit, plus equity and a full benefits package.
  • Equal opportunity: We value diversity and are committed to building an inclusive environment for all employees. If you're excited about this role but don't meet every single requirement, we still encourage you to apply - you may be exactly who we're looking for.

Learn more at www.torramics.com

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