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Graduate Biomedical Engineer Jobs in Dallas, TX (NOW HIRING)

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Graduate Biomedical Engineer information

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$40.6K

$93.9K

$138.6K

How much do graduate biomedical engineer jobs pay per year?

As of Aug 30, 2026, the average yearly pay for graduate biomedical engineer in Dallas, TX is $93,857.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,800.00 and $114,800.00 per year, depending on experience, location, and employer.

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.

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 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 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 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 can someone do with a graduate biomedical engineer degree?

A graduate biomedical engineer can work in medical device design, research, and development, or clinical engineering. They often work in hospitals, biotech companies, or research institutions, applying skills in biomechanics, electronics, and programming to improve healthcare technologies.

What are popular job titles related to Graduate Biomedical Engineer jobs in Dallas, TX?

For Graduate Biomedical Engineer jobs in Dallas, TX, the most frequently searched job titles are:

What cities near Dallas, TX are hiring for Graduate Biomedical Engineer jobs?

Cities near Dallas, TX with the most Graduate Biomedical Engineer job openings:

Infographic showing various Graduate Biomedical Engineer job openings in Dallas, TX as of August 2026, with employment types broken down into 3% As Needed, 74% Full Time, 20% Part Time, and 3% Contract. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $93,857 per year, or $45.1 per hour.

Faculty, Biodata Engineering [Req#: 712559, Position#: 119012]

Dallas, TX • On-site


UT Southwestern Medical Center
Hospitals • 10K+ employees

7.9

Company rating: 7.9 out of 10

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Full-time

Re-posted 5 days ago


Job description

Description
The Department of Biomedical Engineering (BME) at the University of Texas Southwestern Medical Center (UTSW) in Dallas, TX invites applications for a full-time tenured/tenure track faculty position at the Assistant or Associate Professor level. We seek applications from individuals with research focus on biodata engineering, artificial intelligence (AI), machine learning (ML), data science and data curation for medical applications. Highly qualified senior postdoctoral fellows with outstanding publications and extramural research funding may be eligible for UTSW's prestigious Endowed Scholars program and are strongly encouraged to apply.
We are especially interested in candidates who will provide inspirational leadership in research and initiate collaborative opportunities across the medical center. BME faculty work closely with clinical and basic research faculty in the highly collaborative UTSW Medical Center environment translating new technologies into medical solutions. All faculty members are expected to be enthusiastic mentors to trainees and actively engage in the teaching mission of the department.
Responsibilities
Successful candidates will develop an innovative research program that integrates medical data (imaging, diagnostics, pathology, omics, and related data sets) to predict, monitor and improve human health. The department is particularly interested in the application of AI/ML to functional neuroimaging, biomedical imaging speech and text, and mining clinical data. Candidates with research focus on system data science will work closely with biomedical engineers to establish a program on biodata engineering.
This research focused position will include responsibility for teaching graduate students and mentoring trainees. Specific focus areas of research are open but may include application of artificial intelligence, machine learning and data science.
About the Department of Biomedical Engineering
The UTSW Department of Biomedical Engineering is one of the few placed solely within a medical center, with no undergraduate program. We aim to drive programmatic integration in biomedical engineering and address emerging clinical and scientific challenges in medicine and biology using innovative technologies. Anchored by outstanding faculty, motivated trainees and exceptional clinical and engineering infrastructure the department strives to create innovative systems and methods that will play an active role in transforming the current disease care system into a genuine health care enterprise.
Qualifications
The ideal candidate will have earned a Ph.D., an M.D. or an equivalent degree in Biomedical Engineering or a related field (preferably a degree in Computer Science or Computer Engineering). A demonstrated potential for innovations in biomedical engineering and data technology is desirable. Highly competitive applicants will have education and/or experience in one or more of the following:
  • Biomedical engineering, software engineering, computer science, or related field.
  • Track record of scholarly research.
  • Familiarity with extramural funding, impactful publications, and excellent technical writing skills.

Application Instructions
Applicants should apply online and upload:
  • A curriculum vitae
  • A cover letter
  • A 2-page summary of research accomplishments and future plans
  • A one paragraph description of their three most significant publications (or preprints) that include a link or hyperlink to the publication.
  • Names and contact information (e-mail and telephone) of three references

Applications submitted before December 15, 2025 will receive full consideration, with a targeted start date of June 1, 2026.


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