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Master Biomedical Engineering Jobs in Tempe, AZ (NOW HIRING)

R&D Engineering Intern

Tempe, AZ

$16.25 - $21.25/hr

... or master's degree in Biomedical, Electrical, Mechanical, Computer Engineering, Materials Science & Engineering or a related engineering major with an anticipated graduation date of Winter 2027 ...

... or master's degree in Biomedical, Electrical, Mechanical, Computer Engineering, Materials Science & Engineering or a related engineering major with an anticipated graduation date of Winter 2027 ...

Process Engineer II

Scottsdale, AZ · On-site

$84K - $87K/yr

Bachelor's degree in Biomedical Engineering, Process Engineering, Industrial Engineering, or a related field required. * * Master's degree in a related discipline is a plus. * Lean Six Sigma Yellow ...

Operations Engineering Intern

Tempe, AZ

$16.25 - $21.25/hr

... master's degree in Mechanical, Biomedical, Industrial, Electrical, Materials Science & Engineering or a related engineering major with an anticipated graduation date of Winter 2027, Spring 2028 ...

... master's degree in Mechanical, Biomedical, Industrial, Electrical, Materials Science & Engineering or a related engineering major with an anticipated graduation date of Winter 2027, Spring 2028 ...

Minimum of a master's degree in biomedical engineering, science or equivalent technical discipline and at least 5 years of previous related experience in medical writing and medical device regulatory ...

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Master Biomedical Engineering information

See Tempe, AZ salary details

$39.9K

$92.2K

$136.1K

How much do master biomedical engineering jobs pay per year?

As of Aug 13, 2026, the average yearly pay for master biomedical engineering in Tempe, AZ is $92,176.00, according to ZipRecruiter salary data. Most workers in this role earn between $72,400.00 and $112,800.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a master biomedical engineer?

To thrive as a Master Biomedical Engineer, you need a strong background in biology, engineering principles, and mathematics, typically supported by a master's degree in biomedical engineering or a related field. Proficiency in CAD software, programming languages (such as MATLAB or Python), and an understanding of regulatory standards (like FDA or ISO) are commonly required. Excellent problem-solving skills, teamwork, and effective communication set outstanding professionals apart in this role. These skills are crucial for developing safe, innovative medical devices and technologies that improve patient care and meet industry regulations.

What can I do with a master's in biomedical engineering?

A master's in biomedical engineering prepares individuals for roles such as biomedical engineer, research scientist, or clinical engineer, involving the design and development of medical devices, equipment, and technologies. Graduates often work in healthcare, research institutions, or industry settings, utilizing skills in engineering, biology, and computer programming. Certification and knowledge of regulatory standards can enhance career prospects.

What are some typical interdisciplinary collaborations for a master biomedical engineer?

Professionals in a Master Biomedical Engineering role frequently collaborate with experts from diverse fields such as medicine, biology, materials science, and computer science. These interdisciplinary teams work together to develop innovative medical devices, diagnostic tools, and therapeutic solutions. Regular interaction with clinicians provides valuable feedback on device usability, while cooperation with regulatory specialists ensures compliance with industry standards. Such collaborations not only enhance project outcomes but also offer opportunities for skill development and career growth.

What is a master in biomedical engineering?

A Master in Biomedical Engineering is a graduate-level degree that combines principles of engineering, biology, and medicine to develop technologies and devices that improve healthcare. The program typically includes advanced coursework in areas such as biomechanics, medical imaging, biomaterials, and bioinformatics. Graduates are trained to design and create medical devices, develop new therapies, and work on innovative healthcare solutions. This degree prepares students for careers in medical device industries, research institutions, hospitals, or further doctoral studies.

What is the difference between Master Biomedical Engineering vs Biomedical Engineer?

AspectMaster Biomedical EngineeringBiomedical Engineer
Required CredentialsMaster's degree in biomedical engineering or related fieldBachelor's degree in biomedical engineering or related field
Work EnvironmentResearch labs, hospitals, medical device companiesHospitals, medical device firms, research institutions
Industry UsageDesign, research, advanced developmentImplementation, testing, maintenance of medical devices

The Master Biomedical Engineering typically involves advanced coursework and research, preparing professionals for specialized roles or further study. Biomedical Engineers focus on applying engineering principles to develop and maintain medical devices and systems. Both roles are essential in the healthcare industry, but the master's level emphasizes research and design, while the bachelor's level emphasizes practical application and implementation.

What are popular job titles related to Master Biomedical Engineering jobs in Tempe, AZ?

For Master Biomedical Engineering jobs in Tempe, AZ, the most frequently searched job titles are:

What job categories do people searching Master Biomedical Engineering jobs in Tempe, AZ look for?

The top searched job categories for Master Biomedical Engineering jobs in Tempe, AZ are:

Infographic showing various Master Biomedical Engineering job openings in Tempe, AZ as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $92,176 per year, or $44.3 per hour.

$16.25 - $21.25/hr

Full-time, Internship

Posted 6 days ago


Medtronic rating

7.9

Company rating: 7.9 out of 10

Based on 176 frontline employees who took The Breakroom Quiz

160th of 538 rated manufacturers


Job description

CAREERS THAT CHANGE LIVES

The possibilities at the intersection of medicine and technology are endless, which means endless opportunities to make your mark on the world. Our interns do real work within experienced teams to improve the lives of millions. Careers that change lives start here. Medtronic is a global leader in healthcare technology with a Mission to alleviate pain, restore health, and extend life. Our 95,000 employees work across more than 150 countries to put patients first, developing innovative medical technologies that improve the lives of 72+ million patients each year.

You have learned a lot to get here — and we want you to keep growing. Your unique talents will help shape the future of healthcare while building a career grounded in purpose, growth, and impact.

Our summer internships are full-time (40 hours/week), paid positions lasting 10-11 weeks. We offer competitive compensation, educational and social programming throughout the summer, as well as housing assistance and relocation support for eligible interns.

R&D Engineering interns support experienced teams across research, design, product development, systems, testing, and sustaining engineering to help advance medical technology. Examples of work in each area are listed below.

R&D Engineer

 Designs, develops, analyzes, troubleshoots, and applies technical skills during research or product development.

 Designs studies to investigate specific life science questions within an area of expertise.

Systems Engineer

 Performs technical planning, system integration, verification, and validation.

 Evaluates alternatives including cost, risk, supportability, and total system performance across concept, design, fabrication, test, installation, operation, maintenance, and disposal.

Electrical Engineer

 Researches, develops, designs, and tests electrical components, equipment, systems, and networks.

 Designs electrical equipment, facilities, components, products, and systems.

Biomedical Engineer

 Designs, develops, and provides safety testing, repair, and maintenance of biomedical equipment.

 Helps ensure biomedical equipment complies with applicable regulatory requirements and quality control standards.

Mechanical Design Engineer

 Researches, plans, designs, verifies, validates, and develops mechanical or electromechanical products and systems.

 Recommends technology options or approaches to improve safety, performance, efficiency, or cost.

 May support transfer from R&D to manufacturing.

Product Engineer

 Supports production engineering work related to testing methods, procedures, device specifications, yield issues, redesign, customer returns, supplier engineering changes, and production optimization.

 May assume responsibility for devices or components after transfer into high-volume production.

Test Engineer

 Designs, develops, and implements testing methods and equipment.

 Plans labor, schedules, and equipment needed to test and evaluate standard and special devices.

Location and Work Model

Most internship positions are based at primary hubs in Minnesota, California, Colorado, Connecticut, and Massachusetts, with additional opportunities available in Arizona, Florida, Michigan, Tennessee, and Texas. Candidate location preferences are strongly considered during the interview and offer process; however, flexibility increases the number of potential opportunities available. All interns must reside in the U.S. for the duration of the internship. Medtronic is working a minimum of 4 days a week onsite as part of its commitment to professional growth, cross-functional collaboration, and engineering the extraordinary.

Must Have: Minimum Requirements

To be considered for a Summer 2027 engineering internship, your resume must clearly demonstrate how you meet each of these basic requirements.

 Working toward a bachelor’s or master’s degree in Biomedical, Electrical, Mechanical, Computer Engineering, Materials Science & Engineering or a related engineering major with an anticipated

graduation date of Winter 2027, Spring 2028, Winter 2028, or Spring 2029.

 Ability to participate full time, 40 hours per week, as part of the intern cohort from June 1-August 13 for semester system programs or June 14-August 20 for quarter system programs.

 Legally authorized to work in the U.S. on a full-time basis and do not require sponsorship now or in the future for an employment visa. The Medtronic Summer Internship Program does not provide work authorization sponsorship for summer intern positions. Individuals with temporary visas such as E, F-1, H-1, H-2, L, B, J or TN, or who need sponsorship for work authorization now or in the future, are not eligible for the Medtronic Summer Internship Program.

Nice to Have: Preferred Requirements

 Minimum 3.0 cumulative GPA on a 4.0 scale.

 Flexibility in geographic location.

 Experience with one or more technical tools or platforms such as C, C++, C#/.NET, SQL, Java, Python, Microsoft Visual Studio, CAD, SolidWorks, AutoCAD, Minitab, MATLAB, Arduino, Raspberry Pi, LabVIEW, or similar technologies.

 Academic project, internship, research, laboratory, design team, or work experience related to product development, systems engineering, testing, design verification, validation, mechanical design, electrical design, or medical technology.

 Experience supporting engineering design, testing, data analysis, prototyping, system integration, or product development activities.

 Experience creating technical reports, laboratory documentation, engineering presentations, design documentation, or project summaries.

 Experience with statistical analysis, engineering calculations, experimental design, or data-driven decision making.

About Medtronic:

Together, as one of the largest medical device companies in the country, we can change healthcare worldwide. At Medtronic, we push the limits of what technology, therapies, and services can do to alleviate pain, restore health, and extend life. Help us shape the future and engineer the extraordinary.

Physical Job Requirements:

The physical demands described within the Responsibilities section of this job description are representative of those that must be met by an employee to successfully perform the essential functions of the role. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. While performing the duties of the role, the employee is regularly required to be independently mobile. The employee is also required to interact with a computer and communicate with peers and coworkers.


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