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Graduate Biomedical Engineer Jobs in Connecticut

Graduate Biomedical Engineer information

See Connecticut salary details

$39K

$90.2K

$133.2K

How much do graduate biomedical engineer jobs pay per year?

As of Jul 26, 2026, the average yearly pay for graduate biomedical engineer in Connecticut is $90,189.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,900.00 and $110,300.00 per year, depending on experience, location, and employer.

What is the difference between Graduate Biomedical Engineer vs Biomedical Technician?

AspectGraduate Biomedical EngineerBiomedical Technician
Required CredentialsBachelor's degree in biomedical engineering or related field; some roles may require internshipsAssociate's or bachelor's degree in biomedical technology or related field; certification often preferred
Work EnvironmentDesign, development, and testing of medical devices; research settings; labsMaintenance, repair, and calibration of medical equipment in hospitals or clinics
Employer & Industry UsageHospitals, medical device companies, research institutionsHospitals, clinics, biomedical service companies

Graduate Biomedical Engineers focus on designing and developing medical devices and systems, often working in research or development environments. Biomedical Technicians primarily maintain and repair medical equipment in clinical settings. Both roles require technical knowledge, but differ in responsibilities and work settings.

What Is a Graduate Biomedical Engineering Degree?

A graduate biomedical engineering degree is usually a master's degree that focuses on the research and design of medical devices and equipment, as well as programming the software necessary for such devices to work. Biomedical engineers help develop artificial organs, prosthetic body parts, and various other devices as needed. Many also repair and troubleshoot such devices. Depending on the type of work you do as a graduate biomedical engineer, you may work closely with doctors and other direct healthcare providers to help them implant and configure medical devices in particularly complex cases. Some people continue on to get a doctorate in this field. Doctors of biomedical engineering often focus more on cutting-edge research and highly experimental devices.

What are some typical projects or tasks a Graduate Biomedical Engineer might work on during their first year in the role?

As a Graduate Biomedical Engineer, you can expect to be involved in a variety of hands-on projects such as assisting with the design and testing of medical devices, supporting equipment maintenance in clinical settings, or participating in research and development initiatives. You may also help analyze data from clinical trials, collaborate with healthcare professionals to understand user needs, and ensure compliance with industry regulations. This early-career experience provides valuable exposure to multidisciplinary teamwork and the practical application of engineering principles in healthcare environments.

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

To thrive as a Graduate Biomedical Engineer, you need a solid background in biomedical engineering principles, mathematics, and life sciences, typically gained through a relevant engineering degree. Familiarity with CAD software, programming languages (such as MATLAB or Python), and laboratory instrumentation is essential, along with any internships or work placements. Strong problem-solving skills, teamwork, and effective communication set outstanding candidates apart in this multidisciplinary field. These skills and qualities are critical for developing innovative medical technologies and ensuring successful collaboration between engineers, clinicians, and other stakeholders.

What does a Graduate Biomedical Engineer do?

A Graduate Biomedical Engineer applies engineering principles to the medical field, working on the design, development, and maintenance of medical devices and equipment. They often assist in research, testing, and implementing new technologies to improve healthcare outcomes. Their responsibilities may include collaborating with clinicians, troubleshooting technical issues, and ensuring that medical devices comply with safety and regulatory standards. Early in their careers, they may also receive on-the-job training and mentorship to build expertise.
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Infographic showing various Graduate Biomedical Engineer job openings in Connecticut as of July 2026, with employment types broken down into 1% As Needed, 87% Full Time, 11% Part Time, and 1% Contract. Highlights an 86% Physical, 3% Hybrid, and 11% Remote job distribution, with an average salary of $90,189 per year, or $43.4 per hour.
Applied Electronics Technologies Engineer Systems

Applied Electronics Technologies Engineer Systems

General Dynamics Electric Boat

Groton, CT • On-site

Full-time

Posted 6 days ago


General Dynamics Electric Boat rating

8.3

Company rating: 8.3 out of 10

Based on 164 frontline employees who took The Breakroom Quiz

68th of 535 rated manufacturers


Job description

D477 Applied Electronics Technologies (AET) Engineering has an opening for an entry-level highly motivated individual to support the development, instrumentation, and testing of electrical and electronic systems. Engineers will apply their prior experience and subject matter expertise to the development and testing of shipboard systems and prototype systems in support of various qualification and development goals.  Candidates will be required to fulfill the on-job responsibilities of problem resolution, design error correction, technical analysis, design integration, and development of technical work products.

Engineering work opportunities range from concept design through development (end-to-end design), hardware/software integration, test, delivery, and deployment of the system aboard nuclear submarines and shore-side locations.   Engineering positions require self-management skills to coordinate and interface with shipyard testing, shipyard trades, material suppliers, other engineering organizations, Navy shipyards, Navy forces afloat, Supervisor of Shipbuilding, Strategic Systems Programs, and NAVSEA.  Candidates may be required to travel to remote locations and Navy shipyards and will be expected to support weekends/backshifts on occasion.


Required:

  • Bachelor and/or Masters of Science degree in Engineering, Electrical, Mechanical, Marine, Physics, Aeronautical, Systems, Biomedical or Robotics Engineering 
  • 0-5 years years of post graduate professional engineering experience
  • Ability to obtain and maintain a DoD Secret security clearance  

Preferred:

  • US Navy or other Military Branch and/or industrial or commercial experience involving the operation and maintenance of complex systems and/or electrical systems is desirable.
  • Deck plate experience testing and/or troubleshooting electrical systems

  • The ideal candidate must be highly motivated and perform autonomously while handling several different tasks.
  • Strong oral and written communication skills.  Must directly interface, engage and negotiate with stakeholders on a regular basis.
  • Ability to create detailed documents and test procedures for both internal and external work force.
  • Experience working with power electronics, 3 phase AC high power systems, hydraulics, fluid systems, and pneumatic systems and their associated instrumentation and control methods.
  • Experience with sensors (strain gage, pressure sensor, flowmeters, thermistors, RTD’s)
  • Shock and vibration testing

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