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Fab Lab Jobs in Massachusetts (NOW HIRING)

Work hands-on in the lab to evaluate/test/analyze/fix design prototypes and production systems. * Familiarity with PCB layout and fab and MCAD/ECAD data exchange. * Interface and collaborate with ...

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How much do fab lab jobs pay per hour?

As of Aug 23, 2026, the average hourly pay for fab lab in Massachusetts is $27.57, according to ZipRecruiter salary data. Most workers in this role earn between $21.01 and $30.43 per hour, depending on experience, location, and employer.

What is a Fab Lab?

A Fab Lab job typically involves managing and operating a fabrication laboratory equipped with digital manufacturing tools like 3D printers, laser cutters, and CNC machines. Responsibilities may include assisting users, maintaining equipment, teaching workshops, and developing prototypes. Fab Lab employees often work in universities, schools, makerspaces, or research centers to support innovation and hands-on learning.

What does a typical day look like for someone working in a Fab Lab?

A typical day in a Fab Lab involves assisting users with operating digital fabrication machines, troubleshooting equipment issues, running maintenance checks, and helping individuals or teams turn their ideas into prototypes. You may conduct training sessions or workshops, ensure safety protocols are followed, and help manage inventory of materials and supplies. Collaboration is frequent, as you work closely with students, entrepreneurs, engineers, or artists on a wide range of projects. The work environment tends to be dynamic and hands-on, offering exposure to innovative technologies and creative problem-solving every day.

What are the key skills and qualifications needed to thrive in the Fab Lab position, and why are they important?

To thrive in a Fab Lab role, candidates need strong skills in digital fabrication, electronics, rapid prototyping, and hands-on tool use, often supported by degrees in engineering, design, or a related technical field. Experience with equipment such as 3D printers, laser cutters, CNC machines, and design software like CAD is typically essential, along with relevant safety certifications. Creativity, problem-solving, and effective communication stand out as valuable soft skills for collaborating and providing support in innovation spaces. These skills are crucial for ensuring safe operation, fostering an inventive environment, and helping users successfully execute their projects.

What projects can I do in a Fab Lab?

A Fab Lab allows users to work on a variety of projects including 3D printing, laser cutting, CNC milling, electronics prototyping, and digital fabrication. These projects often involve designing with CAD software and using tools like laser cutters and 3D printers to create prototypes, models, or custom parts. Skills in digital design and familiarity with fabrication equipment are essential for successful project completion.

What are the most commonly searched types of Fab Lab jobs in Massachusetts?

The most popular types of Fab Lab jobs in Massachusetts are:

Infographic showing various Fab Lab job openings in Massachusetts as of August 2026, with employment types broken down into 2% As Needed, 80% Full Time, 8% Part Time, and 10% Contract. Highlights an 97% Physical, 1% Hybrid, and 2% Remote job distribution, with an average salary of $57,354 per year, or $27.6 per hour.

Computer Engineer Development of RF and Digital Systems

MIT Lincoln Laboratory

Lexington, MA • Hybrid

$117K - $160K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 14 days ago


Job description

MIT Lincoln Laboratory's Advanced Technology Division develops advanced materials, devices, and subsystems that have broad impact on U.S. Government, industry, and academia. The Division has made a wide range of important contributions during the Laboratory's 70+ year history, including development of bulk and epitaxial crystal growth, charge-coupled device (CCD) imagers, 193-nm lithography, fully depleted silicon-on-insulator (FDSOI) CMOS electronics, semiconductor diode lasers and amplifiers, superconducting electronics and quantum bit (qubit) devices, and photonic integrated circuits (PICs). To enable this advanced technology development, the Laboratory has implemented vertically integrated in-house resources to facilitate design, lithographic mask layout, material growth and characterization, fabrication (e.g., silicon, compound-semiconductor, wafer bonding, flip-chip hybrid), packaging, and testing of electronic and photonic circuits. These in-house resources are used to fabricate a variety of devices and circuits including lasers, waveguide photodetectors, optical modulators, and CMOS and cryogenic electronics with applications in quantum computing, atomic systems, advanced laser sources, microwave photonics, communications, sensing, and other areas of interest to the U.S. Government, industry, and academia. Fabrication resources include:
Microelectronics Laboratory (ML): Cleanroom housing a silicon-fabrication toolset operating on 200-mm-diameter wafers at a 90-nm lithography node, which represents the most advanced silicon fab in the U.S. Government lab system.
Compound Semiconductor Laboratory (CSL): Facilities housing III-V and non-silicon material growth (molecular beam epitaxy (MBE), metalorganic chemical vapor deposition (MOCVD), diamond chemical vapor deposition (CVD)) and fabrication
Microsystems Integration Facility (MIF): Packaging and integration facilities for wire-bonding, vacuum-reflow soldering, flip-chip hybrid integration

Job Description

The Integrated RF and Photonics Technology Group is currently seeking a full-time Computer Engineer to aid in the development of next generation RF and digital systems. The position includes opportunities to take part in the design and prototyping of complex RF systems, with primary focus on digital (FPGA/DSP/microcontroller-based) circuits, networking, firmware and software. This involves working in a team of electrical and mechanical engineers. The position will include both architecture and concept development, experimental prototyping, and demonstrating results for advanced RF prototypes. An ideal candidate will be able to work independently in these areas and perform as part of a small team of developers in larger system designs.

Requirements
  • A Bachelor of Science degree in Computer Science, Electrical or Computer Engineering, Applied Mathematics, or related technical degree with demonstrable knowledge of embedded signal processing hardware is preferred
  • Experience developing synthesizable VHDL, Verilog, and/or SystemVerilog
  • Experience implementing FPGA designs in hardware
  • Experience testing and debugging firmware designs in both simulation and in hardware
Desired Skills
  • Experience implementing and integrating with digital interfaces, such as SPI, PCIe and Gigabit Ethernet
  • Experience developing software for real-time distributed systems
  • Good working knowledge of the operation of laboratory test equipment and RF hardware including but not limited to network analyzers, spectrum analyzers, oscilloscopes, power meters, software defined radios, etc.
  • Experience in C++ and Java within a real-time Linux processing environment
  • Proficiency in MatLab, C/C++, Python or other scientific programming languages
  • Excellent communication skills and understanding of embedded processing concepts needed to communicate with staff regarding the use of industry best practices for development and documentation.


Recent Graduate Hiring Range: $100,200 - $120,000
Experienced Hiring Range: $100,200 - $150,000

Disclaimer: MIT Lincoln Laboratory provides a typical hiring range as a good faith estimate of what we reasonably expect to offer for this position at the time of posting. The final salary offered to a selected candidate will depend on various factors, including-but not limited to-the scope and responsibilities of the role, the candidate's experience, skills and education/training, internal equity considerations and applicable legal requirements. This range reflects base salary only and does not include additional forms of compensation or benefits.

At MIT Lincoln Laboratory, our exceptional career opportunities include many outstanding benefits to help you stay healthy, feel supported, and enjoy a fulfilling work-life balance. Benefits offered to employees include: 

  • Comprehensive health, dental, and vision plans
  • MIT-funded pension
  • Matching 401K
  • Paid leave (including vacation, sick, parental, military, etc.)
  • Tuition reimbursement and continuing education programs
  • Mentorship programs
  • A range of work-life balance options
  • ... and much more!  

Please visit our Benefits page for more information. As an employee of MIT, you can also take advantage of other voluntary benefits, discounts and perks.

Selected candidate will be subject to a pre-employment background investigation and must be able to obtain and maintain a Secret level DoD security clearance.

MIT Lincoln Laboratory is an Equal Employment Opportunity (EEO) employer. All qualified applicants will receive consideration for employment and will not be discriminated against on the basis of race, color, religion, sex, sexual orientation, gender identity, national origin, age, veteran status, disability status, or genetic information; U.S. citizenship is required.

Requisition ID: 43057