1

Biomedical Engineer Jobs in California (NOW HIRING)

The team is looking for a highly-motivated biomedical optics engineer interested in finding elegant solutions to measuring complex physiological signals in a compact form-factor, thus enabling the ...

The team is looking for a highly-motivated biomedical optics engineer interested in finding elegant solutions to measuring complex physiological signals in a compact form-factor, thus enabling the ...

The team is looking for a highly-motivated biomedical optics engineer interested in finding elegant solutions to measuring complex physiological signals in a compact form-factor, thus enabling the ...

This Principal Biomedical Engineer will partner cross functionally to highlight insights from real-world sensor performance data, driving continuous sensor improvement initiatives and directly ...

The team is looking for a highly-motivated biomedical optics engineer interested in finding elegant solutions to measuring complex physiological signals in a compact form-factor, thus enabling the ...

This Principal Biomedical Engineer will partner cross functionally to highlight insights from real-world sensor performance data, driving continuous sensor improvement initiatives and directly ...

The Health Sensing Hardware team is looking for a highly-motivated optical engineer to work on the ... PhD in Biomedical or Optical Engineering. 5+ years of industry experience in related field.

next page

Showing results 1-20

Biomedical Engineer information

See California salary details

$40.5K

$93.6K

$138.2K

How much do biomedical engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for biomedical engineer in California is $93,566.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,500.00 and $114,500.00 per year, depending on experience, location, and employer.

What is a biomedical engineer?

Biomedical engineers are professionals who apply principles of engineering and biological sciences to design, develop, and maintain equipment, devices, computer systems, and software used in healthcare. They work to improve the quality and effectiveness of patient care by creating technologies such as artificial organs, medical imaging devices, and prosthetics. Biomedical engineers often collaborate with doctors, researchers, and other engineers to solve clinical problems and advance medical technology. Their work can be found in hospitals, research facilities, manufacturing companies, and regulatory agencies.

What do biomedical engineers do?

A Biomedical Engineer is an expert in the fields of medicine and biological sciences. They use their extensive knowledge base to develop different kinds of equipment and devices with the end goal of improving the effectiveness of patient care. Biomedical Engineers are critical thinkers and analysts. Their time is spent brainstorming solutions to medical problems and designing new devices, such as diagnostic machinery and even equipment for artificial body part generation. It is the job of a Biomedical Engineer to maintain the equipment they develop and to train other clinicians on proper usage and upkeep. In addition to the hands-on aspect of this career, Biomedical Engineers also dedicate time to researching medical dilemmas, studying up on biological discoveries, and assisting in the development of new scientific advances.

What are the key skills and qualifications needed to thrive as a biomedical engineer, and why are they important?

To thrive as a Biomedical Engineer, you need a solid background in biology, engineering principles, mathematics, and often at least a bachelor's degree in biomedical engineering or a related field. Familiarity with CAD software, medical imaging systems, and regulatory standards such as FDA guidelines is typically required. Strong problem-solving, communication, and teamwork skills help you collaborate with healthcare professionals and translate technical solutions into clinical practice. These competencies are crucial for developing safe, effective medical devices and technologies that improve patient outcomes.

What are some common challenges biomedical engineers face when working on interdisciplinary teams?

Biomedical engineers frequently collaborate with professionals from diverse backgrounds, including clinicians, software developers, and regulatory specialists. One common challenge is effectively communicating technical concepts to non-engineers and aligning project goals across disciplines. Navigating differing priorities and timelines can also require strong project management and interpersonal skills. Emphasizing clear communication and a willingness to learn from other fields helps biomedical engineers successfully contribute to innovative healthcare solutions.

What is the difference between Biomedical Engineer vs Mechanical Engineer?

AspectBiomedical EngineerMechanical Engineer
Required CredentialsBachelor's in Biomedical Engineering or related field; often licensed or certifiedBachelor's in Mechanical Engineering; licensure varies by role
Work EnvironmentHospitals, medical device companies, research labsManufacturing, automotive, aerospace, research facilities
Industry UsageHealthcare, medical device development, biotechAutomotive, aerospace, energy, manufacturing

Biomedical Engineers focus on designing and improving medical devices and healthcare solutions, working mainly in healthcare settings. Mechanical Engineers have a broader scope, working on machinery, systems, and products across various industries. While both roles require engineering degrees, their work environments and industry applications differ significantly.

Do biomedical engineers get paid a lot?

Biomedical engineers typically earn competitive salaries that vary based on experience, education, and location. According to industry data, the median annual wage is around $90,000, with higher earnings possible for those with advanced degrees or specialized skills in medical device design or research. The profession often requires knowledge of engineering principles, biology, and medical technology.

What type of jobs do biomedical engineers do?

Biomedical engineers design and develop medical devices, equipment, and software used in healthcare, such as imaging systems, prosthetics, and diagnostic tools. They often work in research labs, hospitals, or manufacturing environments, applying engineering principles to improve patient care and medical technology. Strong knowledge of biology, engineering, and computer skills are essential for these roles.

What are the most commonly searched types of Biomedical Engineer jobs in California?

The most popular types of Biomedical Engineer jobs in California are:

What job categories do people searching Biomedical Engineer jobs in California look for?

The top searched job categories for Biomedical Engineer jobs in California are:

What cities in California are hiring for Biomedical Engineer jobs?

Cities in California with the most Biomedical Engineer job openings:

Infographic showing various Biomedical Engineer job openings in California as of September 2026, with employment types broken down into 1% Internship, 86% Full Time, 10% Part Time, 1% Temporary, and 2% Contract. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $93,566 per year, or $45 per hour.

Biomedical Engineer

Palo Alto, CA • On-site

Other

Posted 3 days ago

New


Job description

The Staff Biomedical Engineer assists with the Healthcare Technology Management program for the VA Palo Alto Health Care System. They are responsible for supporting a comprehensive medical equipment support program that must ensure the safety, reliability, and diagnostic/therapeutic efficacy of all devices employed in the direct and indirect delivery to patient care. Applicants pending the completion of educational or certification/licensure requirements may be referred and tentatively selected but may not be hired until all requirements are met.

Basic Requirements
  • United States Citizenship: Non-citizens may only be appointed when it is not possible to recruit qualified citizens in accordance with VA Policy.
  • English Language Proficiency: Candidates must be proficient in spoken and written English in accordance with 38 U.S.C. § 7403(f).
  • Education and/or Experience, or Certification: The individual must meet either item (1) or (2) below to meet this requirement:
    • (1) Bachelor's Degree or Higher in Engineering. To be creditable, the curriculum must be from a school of engineering with at least one curriculum accredited by the Accreditation Board for Engineering and Technology (ABET), as a professional engineering curriculum. Examples of acceptable engineering degrees include: Biomedical Engineering, Clinical Engineering, Bioengineering, Biomechanical Engineering, Electrical Engineering, Mechanical Engineering, and Biochemical Engineering. Titles may vary from educational institutions and change over time. OR,
    • (2) Certification as a Certified Clinical Engineer (CCE) and a bachelor's degree not listed in item 3.b.(1) above.

May qualify based on being covered by the Grandfathering Provision as described in the VA Qualification Standard for this occupation (only applicable to current VHA employees who are in this occupation and meet the criteria).

Grade Determinations

In addition to the basic requirements for employment the following education and experience criteria must be met when determining the grade of candidates:

Biomedical Engineer GS-7 (Entry Level)
  • Experience. None beyond the basic requirements.
  • Education. Bachelor's degree or CCE certification with at least a bachelor's degree.
Biomedical Engineer, GS-9
  • Experience. At least one year of specialized experience equivalent to the next lower level. OR,
  • Education: Master's degree in Biomedical Engineering, or a related field of study. OR, Bachelor's degree plus two full years of progressively higher level graduate education in a related field of study, provided the applicant's total background demonstrates the KSAs for the GS-9 level assignment.
Demonstrated Knowledge, Skills, and Abilities.
  1. Knowledge of the principles, theories, concepts, and practices of the Biomedical Engineering profession.
  2. Ability to interpret relevant codes, regulations, guidelines, and standards, and make recommendations to ensure compliance with medical center programs.
  3. Ability to understand the operational needs of clinical services in the health care system.
  4. Ability to prepare material on current technical topics and trends, for presentation to other technical staff and mid-level hospital management, and the ability to keep abreast of changes in technology.
Biomedical Engineer, GS-11
  • Experience. At least one year of experience equivalent to the next lower level, and must fully meet the KSAs at that level. OR,
  • Education: Ph.D., or equivalent doctoral degree in Biomedical Engineering, or a related field of engineering. OR, Bachelor's degree, plus three full years of progressively higher level graduate education in a related field of study.
Demonstrated Knowledge, Skills, and Abilities.
  1. Ability to implement and/or sustain an equipment management or biomedical research program that meets The Joint Commission (TJC), National Fire Protection Association (NFPA), or other applicable regulatory requirements.
  2. Ability to develop material for a continuing education program for clinical or research staff, that address the principles and application of medical technology, and/or biomedical theory used in healthcare.
  3. Ability to advise staff on emerging medical technology, or research procedures, while keeping abreast of changes in such technology, and utilizing the information to solve biomedical engineering problems.
  4. Knowledge of basic project management principles, as applied to the healthcare setting and medical equipment, and information system implementation.
Biomedical Engineer, GS-12 (Full Performance Level)
  • Experience. Completion of at least [one] year of specialized experience equivalent to the next lower level; or completion of a post-doctoral research fellowship in the field of biomedical engineering, and must fully meet the KSAs at that level.
Demonstrated Knowledge, Skills, and Abilities.
  1. Ability to conduct a medical equipment management [or biomedical research program that is compliant with applicable healthcare standards and regulatory agencies.
  2. Ability to develop a curriculum for a continuing education program, that address the safe and effective use of medical technology, and/or research devices.
  3. Ability to manage a recall and safety alert program for medical devices, including medical device hazard investigations, to assure compliance with patient safety goals, SMDA, and TJC requirements.
  4. Ability to conduct capital asset and infrastructure planning for medical equipment spanning initial concept, installation, and effective implementation of complex medical equipment.
  5. Ability to function as the subject matter expert in the field of biomedical engineering, directly supporting specialized clinical technology, including service, system administration, training, quality assurance, and life-cycle management.
  6. Ability to effectively advise clinical and administrative staff on medical technology, including existing and emerging technology, which addresses viability, long-term suitability, compatibility, and/or safety.
  7. Knowledge of concepts related to computer based medical systems, networking protocols, and information security as it applies to medical technology within VHA.
  8. Skill in communicating and working collaboratively with key stakeholders, including technical and professional staff at various levels of the organization.
  9. Ability to apply project management principles to deployment of medical equipment and health information technologies.
References:

VA Handbook 5005/130, Part II, Appendix G38 - Biomedical Engineer Qualification Standard. The full performance level of this vacancy is GS-12. The actual grade at which an applicant may be selected for this vacancy is in the range of GS-7 to GS-12.

Physical Requirements:

Work involves standing, walking, stooping, bending, climbing stairs, and frequently working in cramped spaces for prolonged periods. The employee continually lifts from 10 to 40 pounds and occasionally objects weighing in excess of 40 pounds. The work also involves coping with complex, persistent demands from a variety of sources that can be regarded as a high pressure environment.

#J-18808-Ljbffr