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Biomedical Design Engineer Internship Jobs in Raleigh, NC

Principle Electrical Engineer

Morrisville, NC · On-site

$130K - $159K/yr

... engineers to design and develop cutting-edge electronic circuits and systems for non-invasive ... The ideal candidate brings deep expertise in biomedical sensing hardware, a track record of ...

... engineering analyses and developing overhead and underground transmission line design solutions ... Internship or coursework related to power transmission systems. • Local candidates preferred.

Conducting engineering analyses and developing overhead and underground transmission line design ... Internship or coursework related to power transmission systems. Local candidates preferred.

STAFF ENGINEER

Raleigh, NC · On-site

$75K - $100K/yr

Provide feedback and mentorship to drafters and engineering interns. Make occasional site visits to ... Coursework and experience in concrete and steel design. A job for which military-experienced ...

STAFF ENGINEER

Raleigh, NC · On-site

$75K - $100K/yr

Provide feedback and mentorship to drafters and engineering interns. Make occasional site visits to ... Coursework and experience in concrete and steel design. A job for which military-experienced ...

D. in Electrical Engineering, Biomedical Engineering, or a related field. * Experience with optical or bioelectric sensing front-end design including circuit-level artifact rejection. * Experience ...

Showing results 41-60

Biomedical Design Engineer Internship information

See Raleigh, NC salary details

$13

$24

$37

How much do biomedical design engineer internship jobs pay per hour?

As of Aug 21, 2026, the average hourly pay for biomedical design engineer internship in Raleigh, NC is $24.71, according to ZipRecruiter salary data. Most workers in this role earn between $20.10 and $28.03 per hour, depending on experience, location, and employer.

What does a biomedical design engineer intern do?

A Biomedical Design Engineer Intern assists in the development and testing of medical devices and healthcare technologies. Their responsibilities may include creating prototypes, conducting research, performing data analysis, and collaborating with multidisciplinary teams to solve medical challenges. Interns often use computer-aided design (CAD) software, participate in product testing, and help ensure that devices meet regulatory and safety standards. This role provides valuable hands-on experience in both engineering and healthcare innovation.

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

To thrive as a Biomedical Design Engineer Intern, you need a background in biomedical engineering or a related field, with knowledge of engineering principles, biology, and medical device design. Familiarity with CAD software, prototyping tools, and regulatory standards such as ISO 13485 or FDA guidelines is typically expected. Strong problem-solving, teamwork, and effective communication skills make candidates stand out in collaborative, multidisciplinary environments. These competencies are crucial for developing safe, innovative biomedical solutions that meet both technical and regulatory requirements.

What types of projects do biomedical design engineer interns typically work on?

Biomedical Design Engineer Interns often participate in multidisciplinary teams to develop prototypes, conduct product testing, and assist with the design of medical devices or components. These projects usually involve using CAD software, collaborating with engineers and clinicians, and conducting research to solve real-world healthcare challenges. Such hands-on experience allows interns to build technical skills, understand regulatory requirements, and gain valuable insights into the medical device development lifecycle—preparing them for future roles in biomedical engineering.

What is the difference between Biomedical Design Engineer Internship vs Biomedical Equipment Technician?

AspectBiomedical Design Engineer InternshipBiomedical Equipment Technician
Required CredentialsTypically pursuing or recent graduate in biomedical engineering or related fieldAssociate's or bachelor's degree in biomedical technology or related field
Work EnvironmentDesign labs, R&D departments, product development teamsHospitals, clinics, service centers, maintenance facilities
Industry UsageProduct development, medical device design, prototypingEquipment installation, maintenance, repair

The Biomedical Design Engineer Internship focuses on designing and developing new medical devices, often in a lab or office setting, while the Biomedical Equipment Technician works on maintaining and repairing existing medical equipment in clinical environments. Both roles require technical knowledge but differ in their primary responsibilities and work settings.

What cities near Raleigh, NC are hiring for Biomedical Design Engineer Internship jobs?

Cities near Raleigh, NC with the most Biomedical Design Engineer Internship job openings:

Principle Electrical Engineer

Dahlia TalentEQ

Morrisville, NC • On-site

$130K - $159K/yr

Full-time

Re-posted 27 days ago


Job description

Job Summary:
NIRSense is seeking an experienced principal-level electrical engineer to serve as a technical leader within our growing engineering and scientific team in its Morrisville, NC office. This person will own and drive the complex hardware development efforts across NIRSense's product portfolio, working closely with a multi-disciplinary team of engineers to design and develop cutting-edge electronic circuits and systems for non-invasive medical devices. The ideal candidate brings deep expertise in biomedical sensing hardware, a track record of independently delivering sophisticated miniaturized systems, and the ability to mentor and elevate the engineers around them
Please note this position is onsite, with flexibility.
Minimum Qualifications:
  • 10+ years of experience in electrical engineering, with significant focus on medical devices or biomedical sensing systems.
  • Demonstrated ability to independently lead and deliver complex medical device hardware development projects from concept through design verification and validation.
  • Deep hands-on expertise with design and integration of electrical components of miniaturized medical device systems such as PCBs, PCB components, batteries, and light-emitting and detecting systems.
  • Expertise in mixed-signal circuit design for physiological sensing, including signal generators, amplifiers, filters, ADCs, and low-noise data acquisition systems.
  • Experience designing low-power architectures and battery management systems for body-worn medical devices.
  • Experience with EMC/EMI design practices and electrical safety standards (IEC 60601-1, IEC 60601-1-2).
  • Experience leading formal design reviews and presenting technical analyses to cross-functional stakeholders in a design-controlled environment.
  • Proficiency in PCB design tools (Altium Designer preferred), including rigid, flex, and rigid-flex designs for space-constrained wearable form factors.
  • Strong technical writing skills, with experience authoring design documentation for regulated environments.
  • Proven ability to mentor engineers and elevate the technical quality of a team.
  • Experience managing PCB fabricator and contract manufacturer relationships, including vendor qualification and supply chain risk mitigation.
  • B.S. in Electrical or Biomedical Engineering or a related field.
  • Preferred Qualifications:
  • Knowledge of biosensing and electrical stimulation technologies and proficiency in hardware implementations of these technologies.
  • Experience with optoelectronic circuit design, including LED drivers, photodiode front-ends, and transimpedance amplifiers (TIAs).
  • Experience with mechanical-electrical integration for miniaturized wearable enclosures and collaboration with mechanical engineering teams.
  • Familiarity with C/C++ and embedded systems integration with BLE-enabled microcontrollers (e.g., Nordic nRF series) for wireless physiological data streaming.
  • Experience directing and reviewing work from external PCB layout and design contractors.
  • Experience designing medical wearable hardware for manufacturability (DFM) and testability (DFT), including development of test fixtures and validation systems.
  • Experience with design verification and validation (V&V) testing in a regulated medical device environment.
  • Experience supporting FDA regulatory submissions (e.g., 510(k), de novo) and familiarity with design controls under 21 CFR Part 820 or ISO 13485.
  • Experience with hardware FMEA and risk management per ISO 14971.
Job Responsibilities:
  • Serve as the technical lead on the miniaturized and ruggedized analog and mixed-signal electronics development efforts for medical physiological sensors, including EEG, ECG, and biophotonics-based systems.
  • Design low-power architectures, battery charging circuits, and power budgets for portable and wearable device platforms.
  • Design for safety and electromagnetic compatibility (EMC/EMI), conduct pre-compliance testing, and support formal EMC and electrical safety testing per IEC 60601-1 and IEC 60601-1-2.
  • Drive and lead design reviews with multi-disciplinary stakeholders, establishing rigorous engineering practices and collaborating closely with firmware, mechanical, and software engineers to ensure seamless system integration.
  • Independently manage relationships with PCB fabricators and assemblers; oversee BOM cost, sourcing risk, and component lifecycle to supply finished, high-quality electronics.
  • Lead test fixture design and manufacturing test strategy, from prototype PCB evaluation through design transfer and production yield optimization.
  • Author and review technical reports, maintain schematic libraries and design history files (DHF), and contribute hardware FMEA and risk management files (ISO 14971) to support regulatory submissions (510(k), de novo).
  • Mentor junior and senior engineers, providing technical guidance, design feedback, and career development support.
  • Report to the Electrical Engineering R&D Manager.
Seniority Level : Mid-Senior level
Industry : Medical Equipment Manufacturing Computers and Electronics Manufacturing
Employment Type : Full-time
Job Functions: Engineering Information Technology Manufacturing
Skills: Biomedical Devices