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Microfluidics Simulation Jobs (NOW HIRING)

Postdoctoral Fellow

Cambridge, MA · On-site

$54K - $73K/yr

Time-resolved freezing -Microfluidics; design, simulation, prototyping, fabrication and testing of fluidic devices -Electron microscopy (cryo and regular) for structural and cell biology;

Mechanical Design Engineer

Cambridge, MA · On-site

$60K - $130K/yr

... designing, troubleshooting manufacturing SOP's, and microfluidics-based systems ... design and simulation software.Experience in troubleshooting and programming systems, data ...

... designing, troubleshooting manufacturing SOP's, and microfluidics based systems ... design and simulation software.Proficiency in injection molding techniques and associated ...

... in microfluidics, electrochemical systems, and responsive materials * Design and execute independent experimental research studies and computational simulations to investigate colloidal assembly ...

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Microfluidics Simulation information

See salary details

$11K

$67.6K

$121.5K

How much do microfluidics simulation jobs pay per year?

As of Sep 10, 2026, the average yearly pay for microfluidics simulation in the United States is $67,601.00, according to ZipRecruiter salary data. Most workers in this role earn between $44,000.00 and $79,500.00 per year, depending on experience, location, and employer.

What is microfluidics simulation?

Microfluidics simulation is the use of computational models to analyze and predict the behavior of fluids at the microscale, often within channels or chambers that are only a few micrometers wide. These simulations help researchers design microfluidic devices by allowing them to visualize fluid flow, mixing, and interactions without the need for expensive or time-consuming experiments. Common applications include lab-on-a-chip devices, biomedical diagnostics, and chemical analysis. Simulation software often incorporates physics such as fluid dynamics, heat transfer, and sometimes chemical reactions to provide detailed insights into how microfluidic systems will perform.

What are the key skills and qualifications needed to thrive as a microfluidics simulation engineer?

To thrive as a Microfluidics Simulation Engineer, you need a solid background in fluid mechanics, computational modeling, and a degree in engineering, physics, or a related field. Expertise with simulation software such as COMSOL Multiphysics, ANSYS Fluent, and proficiency in programming languages like MATLAB or Python is typically required. Strong problem-solving abilities, attention to detail, and effective communication skills help set candidates apart. These skills ensure the development of accurate models and innovative solutions for complex microfluidic systems, which are critical in research and product development.

What are some common challenges faced when collaborating with experimental teams in a microfluidics simulation role?

Professionals in microfluidics simulation often collaborate closely with experimentalists to validate models and interpret results. A common challenge is ensuring that the simulation parameters accurately reflect the real-world conditions of the experiments, as slight discrepancies can lead to significant differences in outcomes. Effective communication is essential to bridge the gap between computational predictions and laboratory results, and you may need to iteratively refine models based on feedback from experimental findings. Developing strong interdisciplinary collaboration skills is key to success and can lead to more robust and innovative solutions.

What is the difference between Microfluidics Simulation vs Microfluidics Engineer?

AspectMicrofluidics SimulationMicrofluidics Engineer
Required CredentialsDegree in Mechanical, Chemical, or Biomedical Engineering; knowledge of simulation softwareDegree in Mechanical, Chemical, or Biomedical Engineering; practical lab skills
Work EnvironmentPrimarily office-based, focused on modeling and software developmentLaboratories, manufacturing facilities, or R&D departments
Industry UsageUsed by research teams and product developers for design validationHands-on device development, testing, and implementation

Microfluidics Simulation involves creating computer models to predict fluid behavior in microchannels, aiding in design optimization. In contrast, Microfluidics Engineers work directly with designing, fabricating, and testing microfluidic devices. Both roles require similar educational backgrounds but differ in practical versus theoretical focus, with simulation specialists emphasizing software skills and engineers focusing on hands-on development.

What other helpful pages are available for Microfluidics Simulation?

Other pages related to Microfluidics Simulation:

Infographic showing various Microfluidics Simulation job openings in the United States as of July 2026, with employment types broken down into 85% Full Time, 13% Part Time, and 2% Contract. Highlights an 84% Physical, 4% Hybrid, and 12% Remote job distribution, with an average salary of $67,601 per year, or $32.5 per hour.

Microfabrication & Microfluidics Engineer

Lowell, MA • On-site

Full-time

Medical, Dental, PTO

Re-posted 2 days ago


Job description

We are a small, agile R&D-driven, and mission-oriented company—working at the interface of engineering, biology and micro/nano-systems. We design and build advanced microsystems with real world impact: from In-vitro diagnostics to organ-on-a-chip platforms, to wearable sensors, to soft-robotic interfaces. If you thrive in a hands-on environment where you move quickly from concept to prototype to system, you will feel at home here.

As our Microfabrication & Microfluidics Engineer, you will lead the design, fabrication and integration of next-generation microsystems including micro/nano fluidics and on-chip sensors. You will work across disciplines—mechanical, electrical, biological, microfluidics—and bring together clean-room fabrication, simulation, CAD design, sensor integration and system packaging. You will be expected to execute independently and contribute to the progression of technologies toward commercialization.

Key Responsibilities

  • Drive the design, fabrication, and characterization of microfluidics, micro-/nano-fabricated in-vitro diagnostic devices and organ-on-a-chip technologies.
  • Develop and optimize clean-room micro/nano fabrication processes (photolithography, thin-film deposition, dry&wet etching, bonding, surface treatment, soft lithography).
  • Perform surface functionalization of the micro/nano fluidics devices and fully characterize them using various instruments and tools.
  • Design and prototype wearable and/or soft robotic systems incorporating microfluidics, sensors, and actuators using various fabrication methods including but not limited to 3D printing, embossing, injection molding.
  • Integrate micro/nanofluidic, sensing technologies (optical, physical, chemical and biological sensors) and actuation modules into full systems; collaborate with electronics, biology, materials and manufacturing teams.
  • Use simulation and modelling tools (e.g., COMSOL Multiphysics) to validate fluidic, thermal, mechanical, or electrokinetic behavior and iterate design.
  • Generate detailed CAD models and fabrication drawings using SolidWorks, AutoCAD, Adobe Illustrator (or similar tools).
  • Troubleshoot prototypes, perform testing, analyze results, document findings, revise designs and scale toward manufacture.
  • Develop and manage fast-paced project timelines while proactively identifying and mitigating risks.
  • Maintain strong documentation of process flows, design history files, risk assessments, prototypes, and results—supporting potential regulatory or commercialization pathways.
  • Effectively communicate results and technical insights to clients and stakeholders through both written reports and oral presentations.
  • Contribute to IP generation, technical reports, grant proposals and internal project milestones.
  • Stay current on scientific literature, and emerging technologies and incorporate them as needed.

Qualifications

  • Ph.D. in Mechanical Engineering, Electrical Engineering, Biomedical Engineering, Materials Science, Applied Physics or a closely related field.
  • Demonstrated minimum 7 years of hands-on experience in microfabrication, microfluidics or MEMS device development (preferable in industry R&D settings).
  • Strong demonstrable expertise in:
    • Clean-room micro/nano-fabrication (photolithography, thin-film deposition, dry&wet etching, bonding, dicing, laser ablation, soft lithography, and the other methods).
    • Micro- and nano-fluidic device design and prototyping (e.g., PDMS, silicon/glass, polymer devices).
    • Running and troubleshooting micro/nanofluidic experiments.
    • Multiphysics simulation/modeling (COMSOL Multiphysics or equivalent FEA/CFD tools).
    • CAD/design tools: SolidWorks, AutoCAD, Adobe Illustrator (or similar 2D/3D design and layout tools).
    • Sensor integration (optical, physical, electrochemical, biochemical) and system-level assembly.
    • Proficiency in data processing and analysis to enable interpretation of results.
    • Application to: organ-on-a-chip technologies, wearable systems, soft robotics with embedded microfluidics/sensors.
    • Fabrication methods such as 3D printing, injection molding, embossing.
    • Characterization instruments and tools including but not limited to AFM, optical profilometry, nanoindentation, microscopy (brightfield, fluorescence, confocal), SEM, TEM, XPS, Auger.
    • Coding with Python or similar.

· Detail-oriented, systems-focused, and passionate about delivering high impact through innovation

  • Excellent analytical, problem-solving and documentation skills; able to communicate clearly in written and oral form.
  • Comfortable working in a fast-paced, resource-constrained R&D environment, collaborating across disciplines, and handling ambiguity.
  • A track-record of driving R&D projects to prototype stage and beyond, with attention to manufacturability and transferability.
  • Bonus Skills:

o Experience with automation systems and robotic platforms, including system integration and troubleshooting.

o Understanding of regulatory, quality, and safety standards applicable to laboratory and analytical instrumentation.

o Demonstrated commercial product development experience, including design-for-manufacturing (DFM), machine design, and automation engineering.

Why You will Join Us

  • You will work on impactful, high-visibility technologies—not just incremental features.
  • You will be part of a small, cross-disciplinary team where your expertise is pivotal and visible.
  • You will have autonomy, ownership and the opportunity to shape new device platforms and technologies.
  • You will gain exposure to both early-stage R&D and downstream commercialization pathways.
  • We offer competitive compensation, and benefits.

How to Apply—Ready to Define Future Microfluidic Platforms

Please send your CV, a brief cover letter highlighting your most relevant hands-on fabrication/simulation/design experience, and examples of past projects (including publications or prototypes where applicable) to careers@emergingdx.com with the subject line: “Microfabrication & Microfluidics Engineer – [Your Name]”

Due to the nature of our business and information associated with this position, interested candidates must be US Citizens or Permanent Resident.

At EmergingDx Inc, we are proud to be an Equal Opportunity Employer committed to building and sustaining a talented, inclusive, and diverse workforce. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity or expression, marital status, national origin, age, veteran status, disability, or any other legally protected status.

Note to recruiters: We are not seeking assistance for this position. Please do not contact us via phone or email regarding this opening.

As a U.S. Government contractor, we are required to collect certain applicant information for federal reporting purposes. We are also E-Verified.