1

Mems Engineering Jobs in California (NOW HIRING)

Showing results 21-40

Mems Engineering information

See California salary details

$9

$29

$63

How much do mems engineering jobs pay per hour?

As of Sep 6, 2026, the average hourly pay for mems engineering in California is $29.14, according to ZipRecruiter salary data. Most workers in this role earn between $20.38 and $32.02 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.

What are popular job titles related to Mems Engineering jobs in California?

For Mems Engineering jobs in California, the most frequently searched job titles are:

What job categories do people searching Mems Engineering jobs in California look for?

The top searched job categories for Mems Engineering jobs in California are:

What cities in California are hiring for Mems Engineering jobs?

Cities in California with the most Mems Engineering job openings:

Infographic showing various Mems Engineering job openings in California as of August 2026, with employment types broken down into 94% Full Time, 3% Part Time, 2% Contract, and 1% Nights. Highlights an 85% Physical, 5% Hybrid, and 10% Remote job distribution, with an average salary of $60,620 per year, or $29.1 per hour.

MEMS Process Integration Scientist

HRL Laboratories

Malibu, CA โ€ข On-site

Other

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 6 days ago


Job description

HRL Laboratories pioneers the next frontiers of physical and information science. Delivering transformative technologies in automotive, aerospace and defense, HRL advances the critical missions of its customers to help them remove limitations and create competitive advantage. HRL then transitions the work back to customers - ready for real-world application. For more than 70 years, HRL's rich portfolio of scientific discoveries and engineering innovations continues to build on each other - often in unexpected, profound and far-reaching ways. As a private company owned jointly by Boeing and GM, HRL prioritizes purpose over profit, significantly advancing the state of the art.
HRL's compact, high-performance MEMS IMUs are revolutionizing navigation systems by delivering reliable guidance in GPS-degraded environments. Engineered with navigation-grade precision, these IMUs provide a cost-effective and scalable solution for automotive, aerospace, and other demanding applications where traditional GPS reliance falls short.
These innovations aim to deliver a first-of-its-kind navigation-grade component that combines reliability, precision, and affordability. By offering a viable alternative to traditional IMUs, HRL's MEMS technology is advancing the capabilities of autonomous systems and enabling precise navigation in challenging environments.
Essential Duties:
โ€ข Innovative Collaboration: Collaborate with a team of scientists and engineers to develop advanced MEMS-enabled sensors and actuators for aerospace, automotive, and industrial applications, driving innovation to redefine industry standards.
โ€ข Strategic Process Integration: Integrate new processes into scalable workflows, ensuring seamless transitions from research to production while applying creativity and systems-level thinking.
โ€ข Device Design and Fabrication: Lead the design, fabrication, and testing of MEMS devices and subsystems, ensuring they meet project requirements and are scalable for production.
โ€ข Experimental Development: Design and execute experiments to validate innovative MEMS technologies, employing creative approaches to solve complex challenges and explore new possibilities.
โ€ข Precision Analysis: Perform wafer inspections and metrology to ensure quality and precision, driving iterative improvements for both research-specific and scalable processes.
โ€ข Project Leadership: Manage critical project elements, including timelines, deliverables, and resources, ensuring successful execution and impactful outcomes that bridge research innovations with real-world applications.
โ€ข Conceive, propose, and secure new research initiatives focused on MEMS, NEMS, and other relevant technologies.
โ€ข This role emphasizes technical leadership, scientific originality, and program ownership to shape a portfolio of high-impact efforts that advance next-generation navigation systems.
โ€ข Responsible for guiding funded programs, influencing technical strategy, and mentoring junior staff.
Required Qualifications:
โ€ข Ph.D. or Master's Degree in a physical science or engineering field with 5+ years of fabrication process experience in an R&D environment
โ€ข Proven Expertise in Process Development: Demonstrate strong skills in process development, optimization, design of experiments (DOE), statistical data analysis, and innovative problem-solving to drive cutting-edge advancements
โ€ข Collaborative Team Environment: Strong verbal and written communication skills to thrive in a dynamic, multi-disciplinary team and enable effective cross-laboratory collaboration
โ€ข End-to-End Fabrication Mastery: Ability to integrate diverse process recipes into seamless fabrication workflows while addressing process interdependencies to achieve high-performance results
โ€ข Hands-On Experience with Advanced Techniques: Proficiency in the following state-of-the-art technologies:
o Contact/stepper photolithography
o Wet and plasma dry etching
o High aspect-ratio deep reactive ion etching (DRIE) for silicon, glass, and other MEMS materials
o Chemical vapor deposition (CVD)
o Dielectric and metal depositions
o Wafer bonding and vacuum encapsulation of microscale structures
o Sacrificial and structural layer creation and wet/dry release processes
โ€ข Precision Metrology Skills: Expertise in using advanced tools such as optical/infrared microscopy, interferometric measurements, and scanning electron microscopy (SEM) with elemental analysis to ensure quality and precision.
โ€ข Innovative Design Expertise: Experience in designing and characterizing process control monitors (PCM) for in-process verification, along with proficiency in creating and modifying mask layouts using industry-standard CAD software like L-Edit or Cadence
โ€ข Technical Proposal Development: Experience in writing technical proposals to present innovative research and development concepts
Preferred Qualifications:
โ€ข Hands-On Micro-Machining Experience: Experience with both surface and bulk micro-machining is highly desired.
โ€ข Fabrication Documentation: Strong ability to document fabrication experiments accurately and thoroughly.
โ€ข Back-End Wafer Processing: Experience in wafer grinding, CMP, die singulation, and assembly processes into packages
โ€ข Data Analysis Proficiency: Familiarity with data analysis software such as JMP, MATLAB, or Python is a significant advantage
โ€ข Automation Skills: Experience in automating fabrication data collection and analysis
โ€ข Device Simulation Expertise: Knowledge of mechanical, thermal, or electrical Finite Element Analysis (FEA) modeling using tools like COMSOL or SolidWorks
โ€ข Inline Process Characterization: Experience in designing and conducting wafer or die-level electrical or optical process control monitor (PCM) testing
Physical Requirements:
Must be able to perform safely in a MEMS microfabrication cleanroom and follow standard operating practices
Special Requirements:
US Citizenship with the ability to obtain and maintain a US Government security clearance
Compensation and Benefits:
  • Pay Range: $140,700 - $175,950
  • Our salary ranges are determined by role, level, and location (California). The range displayed on each job posting reflects the target range for new hire salaries for the position. 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 salary range during the hiring process.
  • Benefits: HRL offers a generous and very competitive total compensation and benefits package. Our Regular/Full Time benefits include medical, dental, vision, life insurance, 401K match, gym facilities, PTO, Sick time, upward mobility, and an exciting and challenging work environment.
  • For more information about our company benefit offerings please visit: https://www.hrl.com/careers/benefits

Non-Discrimination and Equal Employment Opportunities (U.S.)
Don't meet every single requirement? Studies have shown that some people are less likely to apply to jobs unless they meet every single desired qualification. At HRL, we are dedicated to building a diverse, inclusive, and authentic workplace, so if you're excited about this role but your past experience doesn't align perfectly with every qualification in the job description, we encourage you to apply anyway. You may be just the right candidate for this or other roles.
We are proud to be an EEO/AA employer M/F/D/V. We maintain a drug-free workplace and perform pre-employment substance abuse testing.
If you would like more information about Equal Employment Opportunity as an applicant under the law, please go to Employees & Job Applicants | U.S. Equal Employment Opportunity Commission
For our privacy policy please visit: www.hrl.com/privacy
Keywords/ Phrases: Dry Etch, Wafer level bonding, idea generation, proposal writing, principal investigator
We may use artificial intelligence (AI) tools to support parts of the hiring process, such as reviewing applications, analyzing resumes, or assessing responses and identifying potential inconsistencies or verification signals in application materials based on available information. These tools assist our recruitment team but do not replace human judgment. Final hiring decisions are ultimately made by humans. If you would like more information about how your data is processed, please contact us.