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Biomedical Engineering Tech Jobs in Detroit, MI (NOW HIRING)

What We Look For In a Biomedical Engineering Tutor * Advanced Subject Mastery: Deep knowledge of ... advanced technology, AI, and the latest in learning science to create personalized learning ...

Biomed Tech

Southfield, MI · On-site

$23.25 - $30.75/hr

Associate of Applied Science Degree (Electronic Engineering Technology or Biomedical Engineering Technology or equivalent) REQUIRED Experience: One year of experience working in a biomedical tech ...

Biomed Tech

Southfield, MI · On-site

$23.25 - $30.75/hr

Associate of Applied Science Degree (Electronic Engineering Technology or Biomedical Engineering Technology or equivalent) REQUIRED Experience: One year of experience working in a biomedical tech ...

Biomed Tech

Southfield, MI

$23.25 - $30.75/hr

Associate of Applied Science Degree (Electronic Engineering Technology or Biomedical Engineering Technology or equivalent) REQUIRED Experience: One year of experience working in a biomedical tech ...

... Software Engineering, Biomedical Engineering (with computational focus), or related field ... science, technology, and operational excellence to accelerate the impact of innovation in ...

... Software Engineering, Biomedical Engineering (with computational focus), or related field ... science, technology, and operational excellence to accelerate the impact of innovation in ...

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Biomedical Engineering Tech information

See Detroit, MI salary details

$18

$34

$55

How much do biomedical engineering tech jobs pay per hour?

As of Jul 26, 2026, the average hourly pay for biomedical engineering tech in Detroit, MI is $34.29, according to ZipRecruiter salary data. Most workers in this role earn between $27.12 and $37.84 per hour, depending on experience, location, and employer.

What are Biomedical Engineering Technicians?

Biomedical Engineering Technicians, often called BMETs, are professionals who install, maintain, and repair medical equipment used in healthcare settings. They ensure that devices such as ventilators, defibrillators, and imaging machines operate safely and efficiently. BMETs also perform routine inspections, calibrate equipment, and may train medical staff on proper usage. Their work is essential for patient safety and the smooth operation of hospitals and clinics.

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

To thrive as a Biomedical Engineering Tech, you need a solid background in electronics, mechanical systems, and biomedical device maintenance, often supported by an associate's degree or certification in biomedical technology. Familiarity with diagnostic tools, calibration equipment, and hospital information systems (such as CMMS software) is critical. Strong problem-solving skills, attention to detail, and effective communication set top performers apart in this field. These abilities ensure medical equipment operates safely and reliably, directly impacting patient care and hospital efficiency.

What are some common challenges Biomedical Engineering Techs face when maintaining medical equipment in a hospital setting?

Biomedical Engineering Techs often encounter challenges such as troubleshooting complex or unfamiliar equipment, balancing urgent repair requests with routine maintenance, and keeping up with rapidly evolving medical technologies. They must also ensure that all equipment complies with strict safety standards and regulatory requirements. Effective communication with clinical staff is essential, as techs need to understand user concerns and coordinate equipment downtime to minimize disruptions to patient care.

Is it worth becoming a BMET?

Becoming a Biomedical Engineering Technician (BMET) can be a worthwhile career, as it involves maintaining and repairing medical equipment in healthcare settings, often requiring technical skills and certifications. The role offers stable employment opportunities, a competitive salary, and the chance to work with advanced medical technology, making it a solid choice for those interested in healthcare technology and engineering. However, it requires ongoing training to stay current with evolving equipment and standards.

How much does a BMET make?

Biomedical Engineering Technicians in North Carolina typically earn an average annual salary of around $50,000 to $60,000, depending on experience, certifications, and work environment. Salaries can vary based on location, employer, and specialized skills such as equipment calibration and troubleshooting. Certification through organizations like the American Society for Healthcare Engineering can also influence earning potential.

What is the difference between Biomedical Engineering Tech vs Medical Equipment Technician?

AspectBiomedical Engineering TechMedical Equipment Technician
CredentialsAssociate's degree in biomedical technology or related fieldAssociate's degree or certification in medical equipment technology
Work EnvironmentHospitals, clinics, research labs, biomedical companiesHospitals, medical device companies, service centers
Employer & IndustryHealthcare, biomedical research, medical device manufacturingHealthcare facilities, medical equipment service providers

Both roles involve working with medical devices, but Biomedical Engineering Techs focus on designing, testing, and maintaining biomedical equipment, often requiring a background in engineering. Medical Equipment Technicians primarily focus on installing, repairing, and servicing medical devices, emphasizing technical troubleshooting. While their work environments and credentials overlap, their specific responsibilities differ based on their focus within the healthcare technology field.

What can I do with a biomedical technology degree?

A biomedical engineering technician can work in hospitals, medical device companies, or research labs, maintaining and repairing medical equipment such as imaging devices and patient monitors. The role often requires knowledge of electronics, mechanics, and biomedical systems, along with certifications like the Certified Biomedical Equipment Technician (CBET). This degree prepares individuals for technical support, equipment calibration, and ensuring compliance with healthcare standards.

What does a biomedical engineer technician do?

A biomedical engineering technician maintains, repairs, and calibrates medical equipment used in healthcare settings. They often troubleshoot devices, ensure compliance with safety standards, and may assist with equipment installation and testing, requiring technical skills and knowledge of biomedical systems.
Infographic showing various Biomedical Engineering Tech job openings in Detroit, MI as of July 2026, with employment types broken down into 1% As Needed, 83% Full Time, 14% Part Time, 1% Contract, and 1% Nights. Highlights an 87% Physical, 2% Hybrid, and 11% Remote job distribution, with an average salary of $71,316 per year, or $34.3 per hour.
Department Chair, Biomedical Engineering

Department Chair, Biomedical Engineering

University of Michigan

Ann Arbor, MI • On-site

Full-time

Posted 20 days ago


University Of Michigan rating

8.1

Company rating: 8.1 out of 10

Based on 144 frontline employees who took The Breakroom Quiz

152nd of 611 rated colleges and universities


Job description

Description
The Department of Biomedical Engineering (BME) within the College of Engineering and Michigan Medicine at the University of Michigan (UM) invites applications and nominations for the position of Department Chair.
About the Department of Biomedical Engineering
BME is a joint department in the College of Engineering and Michigan Medicine, and ranks amongst the best programs in the United States (#6 and #8 in undergraduate and graduate education, respectively). Our mission is to conduct top-tier innovative translational research from bench to bedside and provide exceptional training and education to future leaders in biomedical engineering with the ultimate goal of solving the important challenges in medicine and life sciences for the benefit of humanity. UM BME is one of the earliest programs in the country and currently has 47 core faculty and more than 120 joint faculty. Our program currently enrolls more than 700 undergraduate and graduate students, working towards a B.S.E. (ABET-accredited), M.S., MEng., Ph.D. or M.D./Ph.D. Our faculty - through funding from the NIH, NSF, DoD, and industry, as well as internal resources - engage in high impact research across a diverse range of research areas, including biomedical AI and computing; biomechanics and mechanobiology; imaging, ultrasonics & biophotonics, biomedical devices/instruments; immunoengineering; engineering education; regenerative medicine; micro-nanotechnology & molecular engineering; neural engineering; and systems & synthetic biology. BME maintains dozens of collaborations including the Biointerfaces Institute, the Michigan Institute for Clinical & Health Research (MICHR), Max Harry Weil Institute for Critical Care Research and Innovation, Rogel Cancer Center, Frankel Cardiovascular Center, Kellogg Eye Center, Robotics and many others across our world-class campus. BME's Coulter Translational Research Partnership Program, which is celebrating its 20th anniversary, has achieved $650M in professional funding and supports research focused on advancing promising technologies toward commercial development and clinical practice. Additional collaborations with regional and national healthcare systems, industry leaders, and commercialization centers, such as Michigan's own Innovation Partnerships, the Center for Entrepreneurship and Fast Forward Medical Innovation, enable faculty and students to impact patient care and health innovation on a global scale. The department's supportive environment fosters interdisciplinary collaboration and integrates engineering solutions with clinical practice, positioning UM BME at the forefront of research, education, and leadership in biomedical engineering. Please explore the BME website to learn more.
About Michigan Engineering
Located on the University of Michigan's North Campus in Ann Arbor, Michigan Engineering's mission is to educate, innovate, and lead by fostering interdisciplinary collaboration, advancing knowledge, and preparing engineers to solve society's greatest challenges. As a top-ranked engineering college, all of our graduate and undergraduate programs have a strong reputation for excellence. Michigan Engineering's graduate and undergraduate programs rank 11th and 5th in the nation, respectively. Our world-renowned faculty are educating visionary leaders and advancing bold discoveries to shape a better world. Michigan Engineering has 13 academic departments and more than $350 million annually in research expenditures, including within several large centers and institutes such as the Biointerfaces Institute and the AI & Digital Health Innovation center. The College community includes more than 700 instructional and research faculty- including 37 National Academy of Engineering and National Academy of Science members- more than 12,000 enrolled students, and boasts more than 100,000 living alumni.
About Michigan Medicine
At Michigan Medicine, we advance health to serve Michigan and the world. We pursue excellence every day in our 12 hospitals and hundreds of clinics statewide, as well as educate the next generation of physicians, health professionals and scientists in our U-M Medical School.
Michigan Medicine includes the U-M Medical School and University of Michigan Health, which includes the C.S. Mott Children's Hospital, Von Voigtlander Women's Hospital, University Hospital, the Frankel Cardiovascular Center, Kellogg Eye Center, University of Michigan Health-West, University of Michigan-Sparrow and the Rogel Cancer Center. The U-M Medical School is one of the nation's biomedical research powerhouses, with total research funding of more than $800 million.
About the University of Michigan
The University of Michigan, Ann Arbor campus is a thriving and productive academic community of over 50,000 students and more than 30,000 faculty members and staff. The University's research expenditures totaled $2.16 billion in 2025, fueling innovations to address critical challenges. The University of Michigan is a premier public university with numerous top-ten ranked departments, and top-rated Engineering, Medical, Law, and Business programs.
Qualifications
The successful candidate for Department Chair will be a leading world-class scholar with a distinguished track record in biomedical engineering. The candidate should possess an exemplary record of achievement and impact in research, teaching, leadership, and service at a level commensurate with the appointment as a tenured full professor. The candidate should also have a strong vision for the future of biomedical engineering that leverages, and builds on, the strengths of our program at the UM. A key strength of BME at the UM is its position within both the College of Engineering and Michigan Medicine, providing the new chair with a broad network that enables engineering innovation and clinical translation. Key attributes of successful candidates include:
  • demonstrated leadership experience at the candidate's home institution as well as nationally/internationally;
  • a strong research track record demonstrated through publications, national/international collaborations, grants and fundraising;
  • demonstrated excellence in teaching, with experience in innovating biomedical curricula desirable;
  • strong communication and interpersonal skills;
  • A Ph.D. in engineering or related fields.

Application Instructions
Applicants should submit their cover letter, detailed curriculum vitae, research statement, and teaching statement electronically. In addition, applicants are asked to submit a two-page vision for the department that describes how the candidate will advance the BME program. Applicants should be prepared to share a list of names and contact information for at least five references upon being shortlisted.
The deadline for ensuring full consideration of an application is January 31, 2026, but the position will remain open, and applications will continue to be considered until the position is filled. The search will be conducted in confidence until finalists are identified prior to a public campus visit.
If you have any questions regarding the search process or would like to nominate a candidate, please contact Professor Xudong (Sherman) Fan (xsfan@umich.edu) and Professor David Nordsletten (nordslet@umich.edu), Search Committee Co-Chairs.
Employment will require both a criminal background check and an institutional reference check regarding any misconduct. Candidates will be required to submit a self-disclosure form as well as an authorization to release information form.

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About University of Michigan

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The University of Michigan (U-M), based in Ann Arbor, MI, US, is one of America's most esteemed institutions in higher education. Established in 1817, it presides in the industry of education and research, providing a range of services including undergraduate, graduate, and professional education programs. Complementing this is an extensive research activity that has significantly contributed to various fields, from healthcare to engineering, humanities to sports. Upholding its mission "to serve the people of Michigan and the world through preeminence in creating, communicating, preserving and applying knowledge, art, and academic values", U-M consistently ranks among the top universities globally, a testament to its tradition of excellence in learning and research, and a deep commitment to innovation and discovery.

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Headquarters location

Ann Arbor, MI, US

Year founded

1817

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