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Microfluidic Engineering Lead Jobs (NOW HIRING)

$92K - $127K/yr

... translate complex engineering concepts into clear, actionable insights. Location: Hybrid ... Lead the design and execution of comprehensive experimental programs within a medical device ...

VVater is seeking a visionary Chief Technology Officer (CTO) to lead its global engineering and ... microfluidic systems, and electrochemical workstations). * Direct applied physics and chemistry ...

Software Engineer

San Ramon, CA · On-site

$120K - $155K/yr

... microfluidic viscosity measurement technology. Our innovative VROC ® platform is trusted by ... Lead application development efforts with minimal guidance. * Provide technical direction and ...

VVater is seeking a visionary Chief Technology Officer (CTO) to lead its global engineering and ... microfluidic systems, and electrochemical workstations). * Direct applied physics and chemistry ...

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Microfluidic Engineering Lead information

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$42.5K

$123.8K

$180.5K

How much do microfluidic engineering lead jobs pay per year?

As of Sep 10, 2026, the average yearly pay for microfluidic engineering lead in the United States is $123,784.00, according to ZipRecruiter salary data. Most workers in this role earn between $102,500.00 and $135,000.00 per year, depending on experience, location, and employer.

What does a microfluidic engineering lead do?

A Microfluidic Engineering Lead oversees the design, development, and implementation of microfluidic devices and systems, often for applications in biotechnology, diagnostics, and pharmaceuticals. They lead multidisciplinary teams in developing innovative solutions involving the manipulation of fluids at the microscale. Their responsibilities typically include project management, mentoring junior engineers, collaborating with researchers, and ensuring that prototypes meet performance and regulatory standards. They also contribute to strategic planning and may interact with clients or stakeholders to align technical goals with business objectives.

How does a microfluidic engineering lead typically collaborate with cross-functional teams during the development of new devices?

As a Microfluidic Engineering Lead, you will work closely with multidisciplinary teams including biologists, chemists, mechanical engineers, and product managers. You'll facilitate communication between teams to ensure that microfluidic systems are designed to meet both technical specifications and end-user requirements. Regular meetings, design reviews, and prototype testing sessions are common, as is providing guidance on integrating microfluidic components into larger systems. This role often requires balancing technical leadership with hands-on problem-solving to drive innovation and ensure project milestones are met.

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

To thrive as a Microfluidic Engineering Lead, you need a deep understanding of fluid dynamics, microfabrication techniques, and materials science, typically backed by an advanced degree in engineering or a related field. Proficiency with CAD software, simulation tools (such as COMSOL Multiphysics), and familiarity with cleanroom fabrication processes are essential. Strong project management, leadership, and interdisciplinary communication skills distinguish top performers in this role. These competencies ensure the successful design, development, and implementation of innovative microfluidic systems in research or commercial applications.

What is the difference between Microfluidic Engineering Lead vs Microfluidic Engineer?

AspectMicrofluidic Engineering LeadMicrofluidic Engineer
CredentialsBachelor's/Master's in Engineering or related field; experience in microfluidicsBachelor's/Master's in Engineering, Physics, or related field
Work EnvironmentLeading projects, coordinating teams, overseeing design and developmentDesigning, testing, and implementing microfluidic devices
Industry UsageUsed in biotech, healthcare, and research labs for project leadershipHands-on device development in similar industries

The main difference between a Microfluidic Engineering Lead and a Microfluidic Engineer lies in their roles. The Lead oversees projects, manages teams, and provides strategic direction, while the Engineer focuses on designing and testing microfluidic devices. Both roles require relevant technical credentials and industry experience, but the Lead has additional responsibilities in project management and leadership.

What are popular job titles related to Microfluidic Engineering Lead jobs?

For Microfluidic Engineering Lead jobs, the most frequently searched job titles are:

Infographic showing various Microfluidic Engineering Lead job openings in the United States as of September 2026, with employment types broken down into 88% Full Time, 10% Part Time, and 2% Contract. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $123,784 per year, or $59.5 per hour.

Assistant Academic Research Scientist, School of Medicine: Biomedical Engineering

Atlanta, GA • On-site

Emory University
Hospitals • 10K+ employees

Other

Re-posted 16 days ago


Emory Healthcare rating

7.7

Company rating: 7.7 out of 10

Based on 220 frontline employees who took The Breakroom Quiz


Job description

Description

The Santangelo laboratory in the Wallace H. Coulter Department of Biomedical Engineering at Emory University, within the School of Medicine and Emory Vaccine Center is seeking a highly motivated scientist with a focus on lipid nanoparticle (LNP) formulation to lead the design, optimization, and characterization of mRNA-LNP therapeutics. Using industry-standard formulation techniques, our lab encapsulates milligrams of high-quality synthetic mRNA to enable impactful therapeutic experiments (ACS Nano, Beyersdorf et al. 2022). The laboratory is outfitted with state-of-the-art testing equipment to produce and analyze formulated LNPs. We are expanding the ability of the laboratory to formulate multiple constructs simultaneously at higher scales, enabling advanced therapeutic experiments. The scientist will be expected to bring established LNP formulation expertise, independently drive formulation development, and contribute to scientific direction across multiple federally funded programs. Emory University offers a highly collaborative work environment with strong research and career development opportunities.

Under minimal supervision, the Assistant Academic Research Scientist performs a wide range of highly technical and complex tasks necessary to advance basic and/or translational research programs.

Key Responsibilities
  • Responsible for working with experimental platforms specific to the hiring Program. Duties will include but are not limited to experimental design, data analysis, and interpretation and communication of results of basic and/or translational research.
  • Will be required to review literature and apply advanced knowledge, skills, and input necessary for protocol development.
  • May assist in grant and other funding applications, as necessary and appropriate.
  • With the approval of the responsible Emory faculty director, the Assistant Academic Research Scientist may serve as the principal investigator on funded (grant) proposals.
  • Performs other responsibilities as required.
Additional Duties
  • Designs, formulates, and optimizes mRNA-LNPs using industry-standard techniques and equipment, including microfluidic mixing platforms.
  • Analyses LNPs for size, zeta potential, and encapsulation efficiency using DLS and RNA content methods.
  • Leads the development and refinement of LNP formulation protocols and drives troubleshooting of formulation challenges.
  • Designs and executes experiments to evaluate LNP performance and prepares detailed quality and characterization summaries.
  • Documents LNP production and testing details, presents results at lab meetings, and contributes to manuscripts, grant reports, and regulatory documentation.
  • Prepares shipments of reagents to both domestic and international partners.
Minimum Qualifications
  • PhD OR master's degree and two years of professional level experience in a technical or research lab OR bachelor's degree and four years of professional level experience in a technical or research lab.
  • Laboratory experience should be related to area of assignment.
  • Internship experience or experience prior to attaining the qualifying degree is not considered eligible work experience for this job classification.
Preferred Qualifications
  • PhD in Biomedical Engineering, Chemical Engineering, Pharmaceutical Sciences, Chemistry, Biology, or a related scientific discipline; advanced degree preferred.
  • Demonstrated prior hands‑on experience formulating lipid nanoparticles (LNPs) is required. Candidates without direct LNP formulation experience will not be considered.
  • Working knowledge of LNP physicochemical characterization techniques, including dynamic light scattering (DLS), zeta potential, and RNA encapsulation efficiency assays.
  • Strong record‑keeping, data analysis, and scientific communication skills.

NOTE: Position tasks are required to be performed in‑person at an Emory University location; working remote is not an option. Emory reserves the right to change this status with notice to employee.

Additional Details

Emory is an equal opportunity employer, and qualified applicants will receive consideration for employment without regard to race, color, religion, sex, national origin, disability, protected veteran status or other characteristics protected by state or federal law. Emory University does not discriminate in admissions, educational programs, or employment, including recruitment, hiring, promotions, transfers, discipline, terminations, wage and salary administration, benefits, and training. Students, faculty, and staff are assured of participation in university programs and in the use of facilities without such discrimination. Emory University complies with Section 503 of the Rehabilitation Act of 1973, the Vietnam Era Veteran's Readjustment Assistance Act, and applicable executive orders, federal and state regulations regarding nondiscrimination, equal opportunity, and affirmative action (for protected veterans and individuals with disabilities). Inquiries regarding this policy should be directed to the Emory University Department of Equity and Civil Rights Compliance, 201 Dowman Drive, Administration Building, Atlanta, GA 30322. Telephone: 404‑727‑9867 (V) | 404‑712‑2049 (TDD). Emory University is committed to ensuring equal access and providing reasonable accommodations to qualified individuals with disabilities upon request. To request this document in an alternate format or to seek a reasonable accommodation, please contact the Department of Accessibility Services at accessibility@emory.edu or call 404‑727‑9877 (Voice) | 404‑712‑2049 (TDD). We kindly ask that requests be made at least seven business days in advance to allow adequate time for coordination.

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