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Mechatronics Lead Engineer Jobs in Virginia (NOW HIRING)

Lead Microsystems Engineer

Ashburn, VA ยท On-site

$150K - $170K/yr

... mechatronics leads on integration. Key Responsibilities MEMS/NEMS Engineering โ€ข Design MEMS/NEMS ... Lead invention disclosures and support patent strategy in coordination with counsel. โ€ข Define the ...

Lead Photonics Engineer

Ashburn, VA ยท On-site

$150K - $170K/yr

... mechatronics, and controls teams. IP & Technical Leadership โ€ข Generate foundational IP across photonics. โ€ข Lead invention disclosures and support patent strategy with counsel. โ€ข Define the ...

Lead Bioengineer

Ashburn, VA ยท On-site

$104K - $138K/yr

You define how living and engineered substrates combine into adaptive, learning, durable ... the photonics, mechatronics, and controls leads on integration. Key Responsibilities * Own the ...

Lead Mechanical Engineer

Sterling, VA ยท On-site

$109K - $132K/yr

Lead Mechanical EngineerIntroduction This position is for a Lead Mechanical Engineer based in ... Creo CAD, ASME Y14.5 GD&T, precision mechanisms/actuators, electronics packaging/mechatronics ...

Lead Biohybrid Systems Engineer

Ashburn, VA ยท On-site

$145K - $165K/yr

... the photonics, mechatronics, and controls leads on integration. Key Responsibilities Neural ... and engineered, materials-based forms. โ€ข Develop and maintain engineered neural tissue and ...

The Chief Engineer will lead technical execution for defense autonomy programs, ensuring compliance ... Mechanical, Electrical, Computer, Software, Mechatronics, Robotics, Aerospace Engineering, or ...

Maintenance Engineer

Winchester, VA ยท On-site

$80K - $120K/yr

Lead root cause analysis (RCA) and corrective action activities for significant or recurring ... Mechatronics, or a related engineering discipline. * Experience in a manufacturing environment.

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Mechatronics Lead Engineer information

What does a mechatronics lead engineer do?

A Mechatronics Lead Engineer oversees the design, development, and integration of mechanical, electrical, and software systems in complex products or machinery. They coordinate teams of engineers to ensure that all components work seamlessly together, often leading projects from concept through to production. Responsibilities may include system architecture, troubleshooting, prototyping, and ensuring compliance with industry standards. They also mentor junior engineers and collaborate with other departments to deliver innovative solutions.

What are some common challenges faced by a mechatronics lead engineer when integrating multidisciplinary systems?

As a Mechatronics Lead Engineer, one of the main challenges is ensuring seamless communication and compatibility among mechanical, electrical, and software components. This often involves troubleshooting integration issues, coordinating with cross-functional teams, and balancing project timelines with technical requirements. Effective collaboration and clear documentation are essential to prevent misalignment and delays. Additionally, keeping up with rapid advancements in automation and control technologies requires ongoing learning and adaptability.

What are the key skills and qualifications needed to thrive as a mechatronics lead engineer, and why are they important?

To thrive as a Mechatronics Lead Engineer, you need a solid foundation in mechanical, electrical, and control engineering principles, typically with a bachelor's or master's degree in mechatronics or a related field. Proficiency in CAD software, PLC programming, robotics systems, and familiarity with industry certifications like Six Sigma or PMP is highly valued. Excellent leadership, problem-solving, and communication skills are crucial for managing multidisciplinary teams and complex projects. These skills ensure the successful integration of mechanical and electronic systems, driving innovation and reliability in automated solutions.

What is the difference between Mechatronics Lead Engineer vs Mechanical Engineer?

AspectMechatronics Lead EngineerMechanical Engineer
Required CredentialsBachelor's or Master's in Mechatronics, Robotics, or Electrical EngineeringBachelor's or Master's in Mechanical Engineering
Work EnvironmentDesigning integrated electromechanical systems, working with electronics and softwareDesigning mechanical components, systems, and structures
Industry UsageAutomation, robotics, manufacturing, aerospaceAutomotive, HVAC, product design, manufacturing
Common Search/ComparisonYesNo

The main difference between a Mechatronics Lead Engineer and a Mechanical Engineer lies in their focus areas. Mechatronics Lead Engineers specialize in integrated electromechanical systems, combining electronics, software, and mechanical design, often in automation and robotics. Mechanical Engineers focus primarily on mechanical components and systems. Both roles require engineering degrees, but their work environments and industry applications differ significantly.

Infographic showing various Mechatronics Lead Engineer job openings in Virginia as of August 2026, with employment types broken down into 84% Full Time, 13% Part Time, and 3% Contract. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution.

Lead Microsystems Engineer

Ashburn, VA โ€ข On-site

$150K - $170K/yr

Full-time

Posted 28 days ago


Job description

Devyantram is building a unified platform of bionic robots, from nanoscale to humanoid, powered by a bionic brain system that fuses biotechnology, nanotechnology, and AI to tackle global challenges in climate, medicine, and defense.
Role Summary
You will lead the design, fabrication, and integration of Devyantram's MEMS/NEMS subsystems and its distributed micro and nano-robotic platforms. You own the microsystem layer that gives the platform physical sensing, actuation, and transduction at the micro and nano scale, and you architect how many small units coordinate into capable collective systems. You are responsible for architecting microsystem hardware end to end, not just building individual devices, working closely with the photonics, bioengineering, controls, and mechatronics leads on integration.
Key Responsibilities
MEMS/NEMS Engineering
โ€ข Design MEMS/NEMS devices for sensing, actuation, signal transduction, and interfacing across the platform.
โ€ข Own microfabrication and nanofabrication workflows from cleanroom through foundry, including process design, yield, and characterization.
โ€ข Define packaging, integration, and scaling strategy for microsystem devices.
โ€ข Establish device-level test, metrology, and reliability practices across operating envelopes, including defense-grade conditions.
Micro/Nano-Robotic Systems
โ€ข Architect distributed micro and nano-robotic platforms and their coordination strategies.
โ€ข Enable cooperative, hierarchical, and adaptive behaviors across large numbers of distributed units and scales.
โ€ข Define locomotion, actuation, and power approaches appropriate to the micro and nano scale.
Integration and Compute Hardware
โ€ข Contribute microsystem and electromechanical elements to the platform's unconventional, brain-inspired compute hardware.
โ€ข Co-design with the photonics, bioengineering, controls, and mechatronics leads so microsystem devices integrate cleanly into unified embodiments.
โ€ข Translate system and cognitive requirements into physical micro and nano implementations.
IP and Technical Leadership
โ€ข Generate foundational IP across MEMS/NEMS and micro/nano-robotics.
โ€ข Lead invention disclosures and support patent strategy in coordination with counsel.
โ€ข Define the long-term microsystem hardware roadmap and mentor junior engineers.
Required Qualifications
โ€ข MS or PhD in Electrical Engineering, Applied Physics, Mechanical Engineering, Materials Science, or a related field.
โ€ข 8+ years of demonstrated expertise in MEMS/NEMS design and micro/nanofabrication.
โ€ข Strong cleanroom and foundry experience, including process development, yield, and device characterization.
โ€ข Proven ability to bridge device physics, fabrication, and system-level integration.
โ€ข Hands-on builder: strong experimental design, test, and validation skills.
Strongly Preferred
โ€ข Nanorobotics or microrobotics, including distributed or collective systems.
โ€ข Microsystem actuation and transduction (piezoelectric, electrostatic, electrothermal, magnetic, or similar).
โ€ข Unconventional or non-von-Neumann compute hardware.
โ€ข Microsystem sensing for harsh, contaminated, or hostile environments.
โ€ข Advanced research lab or deep-tech startup experience.
A Successful Candidate Will Be Measured By
โ€ข Functionality, performance, and manufacturability of MEMS/NEMS devices.
โ€ข Functional autonomy, coordination, and scalability of micro and nano-robotic platforms.
โ€ข Reliability of microsystem integration across subsystems.
โ€ข Strength, novelty, and defensibility of generated core IP.
The pay offered for this position may vary based on several individual factors, including job-related knowledge, skills, and experience. The total compensation package may also include additional components/benefits depending on the specific role. This information will be shared if an employment offer is extended.
The pay range for this role is:
150,000 - 170,000 USD per year (Ashburn, VA)