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Nano Robotics Jobs in Georgia (NOW HIRING)

Nano Robotics information

What are nano robotics?

Nano robotics refers to the branch of robotics that deals with the design, construction, and application of robots at the nanometer scale—typically measured in billionths of a meter. These tiny robots, often called nanobots, are engineered to perform specific tasks at the molecular or cellular level, such as targeted drug delivery, medical diagnostics, or environmental monitoring. Nano robotics combines principles from nanotechnology, engineering, biology, and computer science to create innovative solutions for healthcare, manufacturing, and research. The field is rapidly evolving, with ongoing advancements in materials science and miniaturization enabling new applications.

What are the key skills and qualifications needed to thrive as a Nano Robotics Engineer, and why are they important?

To thrive as a Nano Robotics Engineer, you need a solid background in nanotechnology, robotics, mechanical or electrical engineering, and often an advanced degree in a relevant scientific field. Proficiency with CAD software, microfabrication tools, simulation platforms, and familiarity with cleanroom protocols are typically required, along with certifications in nanotechnology or robotics. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills set top candidates apart. These competencies are vital for designing, building, and operating nanoscale robotic systems that demand precision, innovation, and cross-disciplinary collaboration.

What are some common challenges faced by professionals working in nano robotics, and how can they be addressed?

Professionals in nano robotics often encounter challenges such as integrating nanoscale components with larger systems, ensuring precise control at the nano level, and maintaining reliability in diverse environments. Collaboration with interdisciplinary teams—such as materials scientists, electrical engineers, and biologists—is essential to solve complex problems and innovate effective solutions. Staying updated with advancements in nanofabrication and micro-electromechanical systems (MEMS) also helps professionals address technical hurdles. Regular communication and teamwork foster a creative environment that can overcome these unique challenges.

What is the difference between Nano Robotics vs Microfabrication Engineer?

AspectNano RoboticsMicrofabrication Engineer
Required CredentialsBachelor's or higher in Engineering, Nanotechnology, or related fields; certifications in robotics or nanotechBachelor's or higher in Materials Science, Electrical Engineering, or related fields; certifications in microfabrication processes
Work EnvironmentResearch labs, manufacturing facilities, R&D centers focused on nanoscale devicesCleanrooms, semiconductor fabs, microfabrication labs
Industry UsageNanotechnology, robotics, biomedical devicesSemiconductor industry, microelectronics, MEMS devices

Nano Robotics involves designing and developing nanoscale robotic systems, often integrating robotics with nanotechnology. Microfabrication Engineers focus on creating micro-scale devices using specialized fabrication techniques. While both roles require knowledge of nanotech and cleanroom environments, Nano Robotics emphasizes robotic systems at the nanoscale, whereas Microfabrication Engineers specialize in manufacturing micro-scale components. Both careers are vital in advancing nanotech applications but serve different technical focuses.

What cities in Georgia are hiring for Nano Robotics jobs? Cities in Georgia with the most Nano Robotics job openings:

Sr. Director, Advanced Manufacturing Engineering (CoE)

neptune technologies

Duluth, GA

Full-time

Posted 20 days ago


Job description

Position Summary

The Senior Director, Advanced Manufacturing Engineering Center of Excellence (CoE) provides strategic and operational leadership for the company's most critical manufacturing technology programs. This Director is accountable for establishing and scaling a world-class CoE that drives competitive advantage through industrial automation, next-generation test engineering, advanced materials evaluation, and novel process development including New Product Introductions. The role bridges applied research, engineering execution, and cross-functional collaboration to translate emerging technologies into repeatable, high-yield manufacturing capabilities. The ideal candidate takes full ownership of outcomes, leads with genuine humility, and brings a passion for solving hard problems to every initiative they champion.

Travel expectation: Up to 30% domestic and international.

Key ResponsibilitiesStrategic Leadership & CoE Development
  • Define the multi-year vision, roadmap, and operating model for the Advanced Manufacturing CoE, aligning priorities to corporate growth and technology strategy.
  • Build, mentor, and retain a high-performing team of engineers, scientists, and program managers across automation, test, materials, and process disciplines; roll up your sleeves alongside the team, modeling the mutual respect and genuine investment in others that defines Neptune’s culture.
  • Establish CoE governance, stage-gate frameworks, and portfolio review cadences to ensure disciplined prioritization of resources and investment.
  • Partner with senior leadership, RDO, Product, R&D, Supply Chain, and Quality to translate strategic objectives into executable engineering programs, bringing individual expertise together toward shared outcomes.
  • Represent the CoE with customers, suppliers, academic partners, and regulatory bodies; champion external collaboration and open-innovation initiatives.
Industrial Automation
  • Lead the identification, development, and deployment of automation technologies — including robotics, collaborative robots (cobots), machine vision, and AI-driven control systems — to improve throughput, quality, and safety.
  • Develop automation standards and design-for-automation guidelines applied across all manufacturing platforms and new product introductions.
  • Drive ROI-based business cases for capital investment in automation infrastructure; oversee project delivery from concept through production readiness.
  • Build partnerships with automation OEMs, system integrators, and technology startups to maintain access to leading-edge capabilities.
  • Establish centers of competency for programmable automation controllers (PLCs/DCS), industrial communication protocols, and cybersecurity for operational technology (OT) systems.
Next-Generation Test Engineering
  • Architect the long-range test strategy covering functional test, end-of-line validation, in-process inspection, and reliability / accelerated life testing.
  • Drive adoption of advanced test methodologies including digital-twin-based test validation, AI-assisted anomaly detection, and automated data analytics for yield improvement.
  • Oversee development of proprietary test equipment, fixtures, and software platforms that support product launches and protect IP.
  • Establish test coverage metrics, escape rates, and continuous-improvement programs to elevate first-pass yield and reduce cost of quality.
  • Collaborate with Product Engineering and Quality Assurance to integrate design-for-testability (DFT) requirements early in the product development cycle.
New Material Evaluation & Introduction
  • Lead structured evaluation programs for candidate materials — including advanced polymers, composites, coatings, and metals — assessing performance, manufacturability, cost, and regulatory compliance.
  • Partner with suppliers, material scientists, and R&D to develop a pipeline of next-generation materials that enable product differentiation or cost reduction.
  • Establish robust material qualification protocols aligned with industry standards (ASTM, MIL-SPEC, IATF 16949, ISO, AS9100, etc.) and internal engineering standards.
  • Maintain a materials database and knowledge repository supporting design engineering, sourcing, and regulatory/sustainability requirements.
  • Monitor emerging material technologies — nanomaterials, bio-based polymers, sustainable alternatives — and assess applicability to the company's product roadmap.
Process Development & Optimization
  • Direct the development, scale-up, and transfer of novel manufacturing processes from prototype through high-volume production.
  • Apply statistical methodologies (DOE, Six Sigma, SPC) to characterize process windows, establish control plans, and drive defect reduction.
  • Champion digital manufacturing initiatives including Industry 4.0 integration, MES connectivity, real-time process monitoring, and data-driven process optimization; approach each challenge with curiosity and a commitment to continuous learning.
  • Lead process FMEA activities and ensure robust process control documentation (PFDs, control plans, work instructions) is maintained and continuously improved.
  • Oversee technology transfer to operations teams, ensuring manufacturing readiness reviews (MRRs) are completed with documented evidence of process stability.
Financial & Operational Accountability
  • Develop and manage the CoE capital and operating budget; track and report KPIs covering innovation pipeline health, program delivery, quality impact, and cost savings, taking personal accountability for results and always doing what’s right for the business.
  • Identify and capture cost-reduction and efficiency opportunities through technology deployment; quantify and present business cases to senior leadership.
  • Ensure compliance with EHS regulations, product safety standards, and export control requirements across all CoE activities.
Required Qualifications
  • Bachelor's degree in Mechanical Engineering, Manufacturing Engineering, Materials Science, Electrical Engineering, or a related technical discipline; Master's degree strongly preferred.
  • 15+ years of progressive engineering experience in a manufacturing environment, including 7+ years in senior leadership roles.
  • Demonstrated success building or transforming a Center of Excellence, advanced engineering group, or manufacturing technology organization.
  • Proven expertise in at least two of the four CoE pillars: automation, test engineering, materials, or process development.
  • Track record of delivering complex capital programs and technology introductions on time and within budget.
  • Proficiency with modern product-development processes (APQP, PPAP, Design Reviews) and quality management systems (ISO 9001, IATF 16949, AS9100).
  • Strong financial acumen; experience developing investment business cases and managing multi-million-dollar budgets.
  • Exceptional leadership, communication, and stakeholder-management skills; ability to influence without authority across business units and bring diverse perspectives together to win as one team.

Our Values

At Neptune Technology Group, our values guide how we work, lead, and grow together. The Sr. Director of Advanced Manufacturing, CoE will be expected to embody and champion these values every day:

  • Own It — We are accountable to ourselves and each other. We deliver results and always do what’s right.
  • Be Humble — We roll up our sleeves. We value mutual respect in all our interactions. We are genuine, putting others first.
  • Be a Passionate Solver — We take pride in solving problems. We are adaptable and continuously learning.
  • Win Together — We achieve more when individual perspectives come together.
Leadership Competencies

Visionary Thinking

Translates macro technology trends into differentiated, actionable CoE strategies.

Talent Development

Builds bench strength; fosters a culture of curiosity, inclusion, and continuous learning.

Execution Excellence

Delivers complex, multi-discipline programs with rigor, urgency, and a bias for results.

Cross-Functional Influence

Aligns diverse stakeholders; communicates technical concepts clearly to executive audiences.

Innovation Culture

Champions calculated risk-taking; creates psychological safety for experimentation and fast learning.

Data-Driven Judgment

Makes decisions grounded in quantitative analysis, structured risk assessment, and operational insight.

Neptune Technology Group Inc. does not sponsor U.S. work authorizations for this position, including H-1B, O-1, and TN. Neptune also does not sponsor individuals in F-1 status for this role.