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Work Study Biomedical Engineering Student Jobs in Raleigh, NC

Senior Electrical Engineer R&D

Morrisville, NC · On-site

$100K - $131K/yr

B.S. in Electrical Engineering, Biomedical Engineering, or a related field. * 5+ years of ... work in biomedical sensing or a related measurement-driven field. * Demonstrated ability to ...

Senior Electrical Engineer R&D

Morrisville, NC · On-site

$100K - $131K/yr

B.S. in Electrical Engineering, Biomedical Engineering, or a related field. * 5+ years of ... work in biomedical sensing or a related measurement-driven field. * Demonstrated ability to ...

We take our work personally, we do it with empathy and we're committed to making a difference. Name ... biomedical engineering, or a health-related field of study. Experience requirements: 3 years of ...

We take our work personally, we do it with empathy and we're committed to making a difference. Name ... biomedical engineering, or a health-related field of study. Experience requirements: 3 years of ...

Associates look forward to coming to work each day * Every associate matters and makes a difference ... Minimum 5 years' experience working with biomedical equipment in a clinical engineering environment

Associates look forward to coming to work each day * Every associate matters and makes a difference ... Minimum 5 years' experience working with biomedical equipment in a clinical engineering environment

What You Might Work On * Writing and debugging code in languages such as C#, Java, Python, or C ... Biomedical Engineering (with computational focus), or related field * Preference for students who ...

What You Might Work On * Writing and debugging code in languages such as C#, Java, Python, or C ... Biomedical Engineering (with computational focus), or related field * Preference for students who ...

Showing results 41-60

Work Study Biomedical Engineering Student information

See Raleigh, NC salary details

$39.9K

$92.2K

$136.1K

How much do work study biomedical engineering student jobs pay per year?

As of Aug 17, 2026, the average yearly pay for work study biomedical engineering student in Raleigh, NC is $92,160.00, 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 is the difference between Work Study Biomedical Engineering Student vs Biomedical Equipment Technician?

AspectWork Study Biomedical Engineering StudentBiomedical Equipment Technician
CredentialsTypically enrolled in biomedical engineering or related programs; may have coursework in electronics, biology, and engineeringUsually requires certification or associate degree in biomedical technology or related field
Work EnvironmentOn-campus labs, research projects, or internships within healthcare or university settingsHospitals, clinics, or medical equipment service centers
Employer & Industry UsageEducational institutions, research labs, or healthcare facilities during studiesHealthcare providers, medical device companies, or service organizations

Work Study Biomedical Engineering Students focus on gaining academic and research experience related to biomedical engineering, often working part-time in labs or internships. Biomedical Equipment Technicians specialize in maintaining, repairing, and calibrating medical devices in clinical settings. While both roles involve medical technology, students are in training, whereas technicians are skilled professionals working in healthcare environments.

What jobs can you get with a bachelor of science in biomedical engineering?

A biomedical engineering bachelor’s degree qualifies graduates for roles such as biomedical engineer, clinical engineer, or research associate. These positions often involve designing medical devices, working in healthcare technology development, or supporting medical equipment maintenance, requiring knowledge of engineering principles and familiarity with medical standards.

Where can I work if I study biomedical engineering?

Biomedical engineering students can work in hospitals, medical device companies, research laboratories, and healthcare technology firms. These roles often involve designing, testing, and maintaining medical equipment, requiring knowledge of engineering principles and biological systems.

Where do work study biomedical engineering students work?

Work study biomedical engineering students typically work in university laboratories, research facilities, or hospital settings. They may assist with device testing, data analysis, or equipment maintenance, often gaining hands-on experience with biomedical tools and software. These positions usually require adherence to safety protocols and may involve flexible scheduling around classes.

What are the most commonly searched types of Biomedical Engineering Student jobs in Raleigh, NC?

The most popular types of Biomedical Engineering Student jobs in Raleigh, NC are:

What are popular job titles related to Work Study Biomedical Engineering Student jobs in Raleigh, NC?

For Work Study Biomedical Engineering Student jobs in Raleigh, NC, the most frequently searched job titles are:

What cities near Raleigh, NC are hiring for Work Study Biomedical Engineering Student jobs?

Cities near Raleigh, NC with the most Work Study Biomedical Engineering Student job openings:

Senior Electrical Engineer R&D

NIRSense Inc

Morrisville, NC • On-site

$100K - $131K/yr

Full-time

Posted 8 days ago


Job description

About the Company:

NIRSense is a cardiology company focused on developing world-leading non-invasive medical devices. Our tools measure oxygenation changes in the body 10x deeper than typical pulse oximetry and track the electrophysiological activity of muscles and the brain. We are a growing team of technology developers seeking candidates interested in helping advance our capabilities for a wide range of interested stakeholders who are driven to transform the way humans understand and interact with their own health.

Job Summary:

NIRSense is seeking an experienced senior electrical engineer to own early-stage hardware prototyping within our growing engineering and scientific team in its Morrisville, NC office. This person will work at the front end of the technology pipeline, taking physiological sensing concepts from feasibility analysis through prototype demonstration in a relevant environment. Working alongside our biosensing scientists and product hardware team, they will design, build, and characterize the prototype hardware behind them. The ideal candidate brings deep expertise in low-noise analog design, strong experimental and measurement rigor, and a track record of independently turning early concepts into deployable prototypes.

Salary: The compensation package will be commensurate with the successful applicant's experience.

Hours: Full-time

Travel: 0-10%

Minimum Qualifications:

  • B.S. in Electrical Engineering, Biomedical Engineering, or a related field.
  • 5+ years of experience in electrical engineering, with significant focus on research, feasibility, or advanced development work in biomedical sensing or a related measurement-driven field.
  • Demonstrated ability to independently take a sensing concept from first principles through characterized, working prototype hardware.
  • Deep hands-on expertise in low-noise analog and mixed-signal design for physiological signals and their data acquisition chains.
  • Ability to derive performance targets from the signal of interest and intended use, and to design and measure against them.
  • Demonstrated experimental rigor in isolating variables, quantifying measurement uncertainty, and distinguishing real effects from artifacts.
  • Strong benchtop skills with standard lab instrumentation, including building custom characterization fixtures.
  • Strong lab debugging skills to bring up new prototype hardware and isolate faults to root cause.
  • Experience building and delivering multiple working units of a prototype design, not single one-offs, including assembly coordination.
  • Rapid prototyping experience with dev kits and test boards to de-risk new components and architectures.
  • Proficiency in PCB design tools (Altium Designer preferred) and in a scientific computing environment for data analysis and modeling.
  • Strong technical writing and communication skills, with experience authoring test plans and characterization reports that others can act on, and presenting results across disciplines.

Preferred Qualifications:

  • M.S. or Ph.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 architecting a prototype around its sensitive nodes - separating power domains, isolating sensitive analog, and managing interface boundaries.
  • Experience defining per-unit functional verification and calibration so results are comparable across a batch of units.
  • Experience designing low-power architectures and battery management systems for body-worn devices.
  • Familiarity with C/C++ and embedded integration with BLE-enabled microcontrollers.
  • Familiarity with electrical safety and EMC standards (IEC 60601-1, IEC 60601-1-2) and medical device design controls.
  • Experience with defense or field-deployed programs and their environmental and EMC expectations.
  • Peer-reviewed publications or issued patents, or experience supporting SBIR/STTR proposals.

Job Responsibilities:

  • Own early-stage electrical prototyping for physiological sensing, from concept through prototype demonstration in a relevant environment (TRL 6 and below).
  • Design low-noise optical and bioelectric front-ends and their acquisition chains, from architecture through schematic capture and PCB layout.
  • Build, bring up, and debug prototype boards and the characterization fixtures that support them.
  • Deliver small batches of prototype units for internal studies and external use, including assembly coordination, functional acceptance testing, and calibration.
  • Derive performance requirements from the underlying physiology, physics, and intended use, and define the measurements that verify them.
  • Characterize the integrated signal chain against those requirements, quantifying noise, drift, and measurement uncertainty to separate sensing performance from artifact and instrumentation error.
  • Evaluate new components, sensors, and architectures to de-risk them before they reach a product design.
  • Author test plans and characterization reports that document results and design rationale.
  • Hand off de-risked designs to the product hardware team with supporting data, known limitations, and open risks.
  • Report to the Electrical Engineering R&D Manager.

NIRSense logo

About NIRSense

Sourced by ZipRecruiter

Industry

Medical equipment and supplies manufacturing

Company size

11 - 50 Employees

Headquarters location

Richmond, VA, US

Year founded

2018