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Biomedical Engineering Phd Jobs in California (NOW HIRING)

Senior R&D Engineer

San Francisco, CA · On-site

$123K - $169K/yr

PhD in the fields of electrical engineering, biomedical engineering, computer science, medical physics, and/or closely related fields. * MS or BS with 4-5 years of equivalent work experience ...

VP, R&D - Delivery System

Irvine, CA · On-site

$200K - $300K/yr

PhD in Mechanical Engineering, Biomedical Engineering, or a related field. * Experience supporting clinical trials and PMA submissions. * A track record building and leading high-performing technical ...

Senior R&D Engineer

San Francisco, CA · On-site

$123K - $169K/yr

PhD in the fields of electrical engineering, biomedical engineering, computer science, medical physics, and/or closely related fields. * MS or BS with 4-5 years of equivalent work experience ...

PhD in the fields of electrical engineering, biomedical engineering, computer science, medical physics, and/or closely related fields also considered Desired skills * Entrepreneurial, self-motivated ...

Showing results 21-40

Biomedical Engineering Phd information

What is a biomedical engineering PhD?

A Biomedical Engineering PhD is an advanced doctoral degree focused on research and innovation at the intersection of engineering, biology, and medicine. Students in this program work on developing new medical technologies, improving healthcare devices, and conducting original research to solve complex health-related problems. The degree prepares graduates for careers in academia, industry, or government, often involving leadership roles in research and development.

What are the key skills and qualifications needed to thrive as a biomedical engineering PhD?

To thrive as a Biomedical Engineering PhD, you need advanced expertise in biomedical sciences, engineering principles, and research methodologies, typically supported by a doctoral degree in biomedical engineering or a closely related field. Proficiency with programming languages (such as MATLAB or Python), data analysis software, medical imaging systems, and laboratory equipment is often required. Strong analytical thinking, problem-solving ability, effective communication, and collaboration skills help you excel in multidisciplinary research environments. These competencies are crucial for driving innovation, conducting impactful research, and effectively translating scientific discoveries into real-world healthcare solutions.

What types of interdisciplinary collaboration can I expect as a biomedical engineering PhD?

As a Biomedical Engineering PhD, you'll frequently collaborate with professionals from diverse fields such as medicine, biology, materials science, and computer science. These collaborations often involve working with clinicians on translational research, partnering with biologists to understand disease mechanisms, or teaming up with engineers to develop innovative medical devices. This interdisciplinary approach not only enriches your research experience but also provides valuable networking opportunities and exposure to different problem-solving perspectives, which can be pivotal for both academic and industry career growth.

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

AspectBiomedical Engineering PhdBiomedical Engineer
Required CredentialsDoctorate (PhD) in Biomedical Engineering or related fieldBachelor's or Master's degree in Biomedical Engineering or related field
Work EnvironmentResearch labs, academia, advanced R&D departmentsHospitals, medical device companies, healthcare facilities
Employer & Industry UsageUniversities, research institutions, R&D divisions of biotech firmsMedical device manufacturers, hospitals, healthcare providers

The main difference between a Biomedical Engineering Phd and a Biomedical Engineer lies in their education level and typical work environment. A PhD holder often engages in research, development, and academic roles, while a Biomedical Engineer typically works in applied settings such as hospitals or industry. Both roles are essential in advancing healthcare technology, but their focus and qualifications differ.

How much does a biomedical engineering PhD make?

A biomedical engineering PhD typically earns between $80,000 and $120,000 annually, depending on experience, industry, and location. Those working in research, academia, or industry roles such as medical device development or biotech tend to have higher earning potential, especially with postdoctoral experience or specialized skills in areas like biomaterials or imaging.

Is a biomedical engineering PhD worth it?

A biomedical engineering PhD prepares individuals for research, academia, and specialized roles in healthcare technology development. It can lead to higher-level positions and increased earning potential but requires significant time and investment; career outcomes depend on industry demand and individual goals.

What jobs can I get with a PhD in biomedical engineering?

A PhD in biomedical engineering qualifies individuals for research scientist, biomedical engineer, or clinical research roles in healthcare, academia, or industry. These positions often require strong skills in data analysis, laboratory techniques, and knowledge of medical devices or biomaterials, and may involve working in labs, hospitals, or corporate R&D departments.
Infographic showing various Biomedical Engineering Phd job openings in California as of September 2026, with employment types broken down into 85% Full Time, 10% Part Time, and 5% Contract. Highlights an 93% In-person, and 7% Remote job distribution.

Postdoctoral Researcher Position: Flexible Biosensor and Wearable Bioelectronics

Woodland Hills, CA • On-site

Terasaki Institute for Biomedical Innovation
Biotechnology Research and Development • 51 - 200 employees

$122K/yr

Full-time

Re-posted 9 days ago


Key responsibilities

  • Conduct research on wearable biosensors for metabolic and physiological monitoring.

  • Integrate biosensors with flexible substrates, portable electronics, and data acquisition systems.

  • Perform calibration, analytical validation, interference testing, stability testing, and repeatability studies in artificial sweat and relevant biological samples.


Job description

Overview

The Terasaki Institute for Biomedical Innovation develops personalized therapeutic solutions using advanced micro- and nanoscale technologies to address major challenges in human health. The Institute works closely with clinicians, engineers, and industry partners to translate biomaterials, bioelectronics, microfluidics, and biosensing technologies into clinically relevant platforms.

We are seeking a highly motivated Postdoctoral Researcher to join an interdisciplinary team developing wearable sweat biosensors for closed-loop obesity management. The project focuses on creating a wearable physiological feedback sensor module that can be integrated with a vagus nerve stimulation-based obesity management system. The first-generation sensor platform will focus on sweat lactate, pH, and ionic strength as metabolic and contextual readouts to support future closed-loop neuromodulation and personalized metabolic monitoring.

The successful candidate will contribute to sensor design, microfluidic sweat collection, electrochemical biosensing, wearable device integration, benchtop validation, data analysis, and prototype development.

Key Responsibilities

  • Conduct research on wearable biosensors for metabolic and physiological monitoring.
  • Integrate biosensors with flexible substrates, portable electronics, and data acquisition systems.
  • Perform calibration, analytical validation, interference testing, stability testing, and repeatability studies in artificial sweat and relevant biological samples.
  • Analyze sensor data and develop methods for signal correction, contextual interpretation, and quality control.
  • Collaborate with interdisciplinary teams, including engineers, clinicians, neuroscientists, industry partners, and regulatory or translational collaborators.
  • Prepare technical reports, invention disclosures, manuscripts, presentations, and grant-related materials.
  • Disseminate findings through peer-reviewed publications, conferences, and partner-facing technical updates.

Required Qualifications

  • PhD. in Biomedical Engineering, Bioengineering, Electrical Engineering, Chemical Engineering, Analytical Chemistry, or a related discipline.
  • Strong research experience in wearable sensors, electrochemical sensing, microfluidics, bioelectronics, or related areas.
  • Demonstrated ability to design experiments, collect data, analyze results, and troubleshoot complex technical problems.
  • Strong publication record in peer-reviewed journals.
  • Excellent written and verbal communication skills.
  • Ability to work independently while contributing effectively to an interdisciplinary team.
  • Strong organizational skills and ability to meet project milestones in a fast-paced translational research environment.

Preferred Qualifications

  • Experience developing electrochemical biosensors with various modalities.
  • Experience with wearable biosensors, skin-interfaced devices, or physiological monitoring systems.
  • Experience with microfluidic device design, soft lithography, laser cutting, flexible materials, adhesive patches, or wearable device fabrication.
  • Experience with flexible electronics, portable potentiostat, wireless readout, signal acquisition, or embedded sensor systems.
  • Experience with biological sample testing, sensor calibration, interference testing, antifouling strategies, and drift correction.
  • Experience with data processing, signal quality analysis, Python, MATLAB, LabVIEW, Arduino, or related tools.
  • Interest in bioelectronic medicine, closed-loop therapeutic systems, neuromodulation, metabolic health, or digital health technologies.
  • Experience working with translational research projects, industry collaborations, prototype development, or milestone-driven R&D programs.

Application Materials

  • Curriculum Vitae (CV).
  • Research statement (1–3 pages).
  • Contact information for three professional references.