1

Microfluidics Engineer Phd Jobs (NOW HIRING)

Senior Mechanical Engineer

Milford, MA

$114K - $151K/yr

Qualifications PhD in Mechanical Engineering or related field, or M.S. with 3+ years, or B.S. with ... Key Experience Experience in liquid chromatography, microfluidics, life science instrumentation ...

Sr.Scientist

Hercules, CA

$101K - $138K/yr

... droplet microfluidics portfolio. You will work with fluidics engineers, chemists, and molecular ... Required Experience- PhD (or Master of Science degree with extensive experience) in Chemical ...

Showing results 41-60

Microfluidics Engineer Phd information

What does a microfluidics engineer PhD do?

A Microfluidics Engineer with a PhD designs, develops, and optimizes devices and systems that manipulate small volumes of fluids, often at the microliter or nanoliter scale. Their work typically involves research and development in fields such as biomedical engineering, diagnostics, drug delivery, and lab-on-a-chip technologies. With their advanced training, they lead complex projects, apply sophisticated modeling and fabrication techniques, and contribute to scientific publications. They may also collaborate with interdisciplinary teams, oversee experiments, and ensure that microfluidic devices meet regulatory and performance standards.

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

To excel as a Microfluidics Engineer PhD, you need advanced knowledge of fluid dynamics, microfabrication techniques, and a doctoral degree in engineering, physics, or a related field. Familiarity with CAD software, microfluidic simulation tools (such as COMSOL Multiphysics), and cleanroom fabrication processes is typically required. Strong problem-solving skills, attention to detail, and the ability to communicate complex concepts clearly are valuable soft skills in this role. These competencies enable the design and optimization of microfluidic devices, ensuring innovation and precision in research and product development.

What are some common challenges a microfluidics engineer PhD may face when transitioning from academia to industry roles?

Microfluidics Engineers with a PhD often encounter challenges such as adapting to faster project timelines, balancing innovation with practical product requirements, and collaborating within cross-functional teams that include non-technical stakeholders. In industry, the focus shifts from purely experimental research to delivering scalable, manufacturable solutions, which may require learning new regulatory standards and quality controls. However, this environment also offers opportunities to see your work directly impact real-world applications and to develop skills in project management and product development.

What is the difference between Microfluidics Engineer Phd vs Microfabrication Engineer Phd?

AspectMicrofluidics Engineer Phd

Microfluidics Engineer Phd focuses on designing and developing devices that manipulate small fluid volumes, often requiring expertise in fluid dynamics, materials science, and device fabrication. Microfabrication Engineer Phd specializes in the manufacturing processes of micro-scale devices, emphasizing cleanroom procedures, lithography, and etching techniques. Both roles often require a Phd, work in R&D settings, and are used in industries like biotech and electronics. The main difference lies in their focus: microfluidics engineers develop functional devices, while microfabrication engineers focus on the production processes.

More about Microfluidics Engineer Phd jobs

What cities are hiring for Microfluidics Engineer Phd jobs?

Cities with the most Microfluidics Engineer Phd job openings:

What states have the most Microfluidics Engineer Phd jobs?

States with the most job openings for Microfluidics Engineer Phd jobs include:

Infographic showing various Microfluidics Engineer Phd job openings in the United States as of August 2026, with employment types broken down into 94% Full Time, 2% Part Time, and 4% Contract. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution.

Lead of Thermal Systems & Simulation (Semiconductor)

Flexcompute Inc.

Watertown, MA • On-site

Full-time

Medical, Dental, Vision, Retirement

Re-posted 22 days ago


Job description

Flexcompute is a cutting-edge technology startup that specializes in ultra-fast simulation technology. Our products are utilized by companies in designing and optimizing technology products, with applications ranging from designing airplanes and cars to wind turbines and quantum computing chips. Our customer base includes both household names and startups in emerging industries. Our company was founded by world-renowned leaders in simulation technology from Stanford University and MIT. Backed by top VC firms, we are poised to disrupt the billion-dollar engineering simulation industry with our fast-growing trajectory
The Mission
The semiconductor industry is hitting a "thermal wall." As chip power densities exceed 1000W, traditional design cycles are too slow to keep up. Flexcompute is looking for a visionary Lead to spearhead our entry into the chip cooling industry. You will use our proprietary, high-performance physics simulation technology to help customers design the next generation of liquid cooling, immersion systems, and advanced heat sinks for AI and HPC hardware.
Key Responsibilities
  • Strategy & Product Roadmap: Define how Flexcompute's solver technology can be optimized for thermal management, including microfluidics, phase-change materials, and 3D IC packaging.
  • Technical Leadership: Act as the primary subject matter expert (SME) for chip cooling, bridging the gap between our internal solver developers and external hardware architects.
  • Solution Architecting: Work directly with Tier 1 semiconductor companies and Hyperscalers to solve complex thermal challenges using Flexcompute's simulation platform.
  • Market Evangelism: Demonstrate the superiority of our fast-cycle simulation over legacy CFD tools to industry leaders at Nvidia, Intel, TSMC, and cooling specialists.
  • Team Building: Eventually recruit and mentor a team of thermal application engineers to support our growing portfolio in the semiconductor space.

Requirements
  • Education: PhD or MS in Mechanical Engineering, Applied Physics, or a related field with a focus on Heat Transfer and Fluid Dynamics.
  • Experience: 8+ years in thermal management for electronics. You have likely led thermal architecture for high-TDP processors or high-performance server systems.
  • Simulation Mastery: Expert-level proficiency in thermal simulation tools. You must understand the underlying physics well enough to articulate why a GPU-accelerated or novel solver approach is transformative.
  • Industry Knowledge: Deep familiarity with the roadmap of AI hardware, OCP (Open Compute Project) standards, and the transition from air to liquid cooling.

The Ideal Candidate
  • You are frustrated by the slow turnaround times of current CAE software.
  • You have the network to open doors at major foundries and data center equipment manufacturers.

Benefits
  • Competitive compensation with equity of a fast-growing startup.
  • Medical, dental, and vision health insurance.
  • 401(k) Contribution.
  • Gym allowance.
  • Friendly, thoughtful, and intelligent coworkers.