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Mems Engineer Jobs in Atlanta, GA (NOW HIRING)

R&D Product Development Engineer

Atlanta, GA · On-site

$55.30 - $110.70/hr

Support the design, development, and evaluation of implantable MEMS-based sensor systems, components, assemblies, processes, fixtures, and test methods. * Develop and execute engineering studies to ...

Mems Engineer information

See Atlanta, GA salary details

$35.1K

$103.2K

$132.2K

How much do mems engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for mems engineer in Atlanta, GA is $103,168.00, according to ZipRecruiter salary data. Most workers in this role earn between $85,100.00 and $130,800.00 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 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, 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 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 job categories do people searching Mems Engineer jobs in Atlanta, GA look for?

The top searched job categories for Mems Engineer jobs in Atlanta, GA are:

Infographic showing various Mems Engineer job openings in Atlanta, GA as of August 2026, with employment types broken down into 90% Full Time, 5% Part Time, and 5% Contract. Highlights an 87% Physical, 5% Hybrid, and 8% Remote job distribution, with an average salary of $103,168 per year, or $49.6 per hour.

R&D Product Development Engineer

3M HEALTHCARE

Atlanta, GA • On-site

$55.30 - $110.70/hr

Other

Medical, Dental, Vision, Retirement, PTO

Posted 4 days ago


Job description

R&D Product Development Engineer – Heart Failure

Location: United States – Atlanta, GA (387 Technology Circle NW Suite 500)

Shift: Standard

Travel: Yes, 5% of the time

Job Family: Product Development

Division: HF Heart Failure

Base pay: $55,300.00 – $110,700.00 (may vary by location)

Responsibilities
  • Support the design, development, and evaluation of implantable MEMS-based sensor systems, components, assemblies, processes, fixtures, and test methods.
  • Develop and execute engineering studies to characterize sensor performance, reliability, manufacturability, and design robustness.
  • Build, modify, and troubleshoot laboratory setups, prototypes, fixtures, and measurement systems used for product development.
  • Analyze experimental data, identify trends and failure modes, and communicate conclusions through clear reports, presentations, and design-review materials.
  • Draft and execute test protocols, verification plans, engineering reports, and design documentation in accordance with internal quality‑system requirements.
  • Collaborate with cross‑functional teams and suppliers on component development, process improvements, prototype builds, and technical issue resolution.
  • Apply sound engineering principles, statistical thinking, and disciplined documentation throughout the product‑development lifecycle.
  • Perform work in compliance with FDA regulations, applicable standards, company policies, procedures, and task assignments.
Minimum Qualifications
  • Bachelor’s degree in Electrical, Computer, Mechanical, Electromechanical, Microelectronics, or a related engineering discipline.
  • Demonstrated hands‑on experience developing, testing, troubleshooting, or characterizing engineering systems, devices, components, or processes.
  • Ability to analyze technical data, draw practical conclusions, and communicate results clearly.
  • Strong problem‑solving ability, ownership, attention to detail, and willingness to learn new technical areas quickly.
  • Ability to work independently and collaboratively in a fast‑paced R&D environment with changing priorities.
Preferred Qualifications
  • Advanced degree in engineering, MEMS, microelectronics, packaging, mechanical systems, or a related technical field.
  • Experience applying machine learning, AI, or advanced data‑analysis methods to large engineering data sets.
  • Working knowledge of Python, LabVIEW, or other programming tools.
  • Proficiency in Python and experience with Python machine‑learning, data‑science, or data‑visualization libraries (NumPy, Pandas, Keras, PyTorch, Matplotlib, Seaborn, etc.).
  • Experience with MEMS sensors, implantable or miniaturized medical devices, microelectronics packaging, precision assemblies, or reliability testing.
  • Experience with electrical characterization, measurement systems, instrumentation, automation, data acquisition, or programming for engineering analysis.
  • Experience with mechanical design, fixture development, prototyping, tolerance analysis, failure analysis, or process development.
  • Experience with statistical analysis, design of experiments, JMP, Minitab, or similar tools.
  • Exposure to low‑power electronics, wireless systems, RF concepts, RFID experience, or sensor‑system integration.
  • Experience developing software which interfaces with external hardware, including debugging.
  • Working knowledge of low‑level computing concepts, especially pertaining to communication systems.
  • Familiarity with spectrum analyzers, oscilloscopes, and similar lab hardware.
Benefits
  • Training and career development, with onboarding programs for new employees and tuition assistance.
  • Competitive compensation, incentives, and retirement plans.
  • Health care and well‑being programs including medical, dental, vision, wellness, and occupational health programs.
  • Paid time off.
  • 401(k) retirement savings with a generous company match.
  • Stability of a company with strong financial performance and active community involvement.
EEO & Equal Opportunity

Abbott is an Equal Opportunity Employer of Minorities/Women/Individuals with Disabilities/Protected Veterans.

EEO is the Law. English: http://webstorage.abbott.com/common/External/EEO_English.pdf

EEO is the Law. Español: http://webstorage.abbott.com/common/External/EEO_Spanish.pdf

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