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Micro Electronics Engineering Jobs in Virginia (NOW HIRING)

Lead Bioengineer

Ashburn, VA ยท On-site

$104K - $138K/yr

You define how living and engineered substrates combine into adaptive, learning, durable ... Partner with the photonics and micro/nano lead on the deviceโ€‘level fabrication and physics of ...

Satellite Avionics Technician

Herndon, VA

$29.50 - $38.50/hr

This role requires precision work with sensitive spacecraft electronics, including PCB component ... Rework and modify flight PCBs and harnesses as needed to support engineering changes and ...

Whether its electronic content delivered to your home, technology that betters your remote working ... You will also build and enhance new services using distributed micro-services architectures and ...

Whether its electronic content delivered to your home, technology that betters your remote working ... You will also build and enhance new services using distributed micro-services architectures and ...

Whether its electronic content delivered to your home, technology that betters your remote working ... You will also build and enhance new services using distributed micro-services architectures and ...

Whether its electronic content delivered to your home, technology that betters your remote working ... You will also build and enhance new services using distributed micro-services architectures and ...

Company Description Micro Coders LLC is an E-Verified company based in Woburn , MA(sister companies ... CIS), Electrical Engineering Technology (EET), or Electronics & Computer Technology (ECT)

Showing results 41-60

Micro Electronics Engineering information

What is the difference between Micro Electronics Engineering vs Electrical Engineering?

AspectMicro Electronics EngineeringElectrical Engineering
FocusDesign and development of microelectronic devices and integrated circuitsGeneration, transmission, and distribution of electrical power, systems, and devices
Required CredentialsBachelor's or Master's in Microelectronics, Electrical Engineering, or related fieldsBachelor's or Master's in Electrical Engineering or similar
Work EnvironmentResearch labs, semiconductor companies, tech firmsPower plants, manufacturing, consulting firms
Industry UsageSemiconductor industry, consumer electronics, aerospaceEnergy, manufacturing, telecommunications

Micro Electronics Engineering and Electrical Engineering share foundational knowledge but differ in focus. Micro Electronics Engineers specialize in microchips and integrated circuits, while Electrical Engineers work on broader electrical systems and power. Both roles require similar educational backgrounds and are vital across various industries.

Is microelectronics a good career?

Microelectronics engineering is a specialized field focused on designing and developing small-scale electronic components and circuits, often requiring knowledge of semiconductor physics and CAD tools. It offers opportunities in industries such as consumer electronics, telecommunications, and aerospace, with a demand for skilled engineers and competitive salaries. Career growth depends on technical expertise, continuous learning, and industry demand for innovation in miniaturization and performance.

What does a microelectronics engineer do?

A microelectronics engineer designs, develops, and tests small electronic components and circuits, such as integrated circuits and semiconductors. They work with tools like CAD software and may require knowledge of physics, materials science, and fabrication processes to create efficient and reliable electronic devices.

What job categories do people searching Micro Electronics Engineering jobs in Virginia look for?

The top searched job categories for Micro Electronics Engineering jobs in Virginia are:

What cities in Virginia are hiring for Micro Electronics Engineering jobs?

Cities in Virginia with the most Micro Electronics Engineering job openings:

Infographic showing various Micro Electronics Engineering job openings in Virginia as of July 2026, with employment types broken down into 94% Full Time, 5% Part Time, and 1% Contract. Highlights an 97% Physical, 1% Hybrid, and 2% Remote job distribution.

Lead Bioengineer

Ashburn, VA โ€ข On-site

$104K - $138K/yr

Other

Posted 27 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 own the livingโ€‘systems layer of Devyantram's platform end to end: the neural substrate of the CEREBRION bionic brain in both its living and engineered, materialsโ€‘based forms; the bioelectronic interface that couples that substrate to the rest of the system; and all biological and livingโ€‘material aspects of the platform, including regenerative and selfโ€‘healing systems. You define how living and engineered substrates combine into adaptive, learning, durable embodiments, working closely with the photonics, mechatronics, and controls leads on integration.

Key Responsibilities
  • Own the neural substrate of CEREBRION across both its living and engineered, materialsโ€‘based forms.
  • Develop and maintain engineered neural tissue and biohybrid substrates.
  • Design and build materialsโ€‘based, neuralโ€‘emulating substrates using ionic and conductingโ€‘polymer (iontronic) device approaches.
  • Partner with the photonics and micro/nano lead on the deviceโ€‘level fabrication and physics of materialsโ€‘based substrates.
  • Support closedโ€‘loop learning across the integrated system.
  • Establish biosafety, ethics, and reproducibility standards for all livingโ€‘systems work.
Bioelectronic Interface
  • Own the bioelectronic interface between biological substrates and the platform's electronic and optical subsystems.
  • Develop and characterize the interface materials and transduction approaches that make that coupling reliable.
  • Collaborate with the photonics and controls leads on integration across the interface.
  • Engineer regenerative and bioโ€‘hybrid materials for robotic systems, including selfโ€‘healing skins, scaffolds, and adaptive structural elements.
  • Develop repair and regeneration pathways for longโ€‘lived, damageโ€‘tolerant embodiments.
  • Design and engineer functional polymers, hydrogels, and softโ€‘matter systems for interfacing, actuation, sensing, and structural use.
  • Develop stimuliโ€‘responsive and adaptive materials across electrical, optical, chemical, and mechanical domains.
  • Explore molecularโ€‘scale and programmableโ€‘matter approaches to local sensing and actuation.
  • Support integration of these systems with the broader micro and nano platform.
IP & Technical Leadership
  • Generate foundational IP across neural and biohybrid systems, ionic and organicโ€‘bioelectronic devices, bioelectronic interfaces, and living and regenerative materials.
  • Lead invention disclosures and experimental validation in coordination with patent counsel.
  • Build and mentor the wetโ€‘lab and bioengineering team over time.
Required Qualifications
  • MS or PhD in Bioengineering, Neural Engineering, Biomedical Engineering, or a related field (Neuroscience, Synthetic Biology, or Materials Science with a bioelectronics focus are all relevant).
  • 8+ years of handsโ€‘on research and development experience across livingโ€‘systems and bioelectronic work.
  • A strong livingโ€‘systems foundation spanning engineered neural tissue, biohybrid systems, and organoids, with demonstrated depth in at least one of these branches.
  • Firm requirement: handsโ€‘on experience with bioelectronic interfaces, the coupling between neural or biological substrates and electronic or optical systems. This is the core of the role and the hardest part to outsource.
  • Experience with ionic and conductingโ€‘polymer devices, iontronics, or organic bioelectronics, and the ability to build materialsโ€‘based, neuralโ€‘emulating substrates.
  • Demonstrated ability to take living or materialsโ€‘based systems from bench to integrated, reproducible use.
  • Strong experimental design and crossโ€‘disciplinary communication.
Strongly Preferred
  • Organic bioelectronics, iontronics, or neuromorphic materials.
  • Organoid, neuralโ€‘tissue, or biohybridโ€‘computing research.
  • Bioelectronic interfaces, neural probes, or brainโ€‘machine interfaces.
  • Regenerative medicine, tissue engineering, or selfโ€‘healing and stimuliโ€‘responsive materials.
  • Molecular machines or programmable matter.
  • Experience bridging wetโ€‘lab, hardware, and robotics teams.
A Successful Candidate Will Be Measured By
  • Stability, function, and learning capacity of the neural substrate across its living and engineered forms.
  • Reliability of the bioelectronic interface across the integrated system.
  • Performance and longevity of regenerative and selfโ€‘healing materials.
  • Successful integration of livingโ€‘systems work with the rest of the platform.
  • Strength and defensibility of generated biotech and materials IP.

The pay offered for this position may vary based on several individual factors, including jobโ€‘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:

145,000 - 165,000 USD per year (Ashburn, VA)

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