1

Live In Pharmaceutical Biomedical Engineer Jobs in Seattle, WA

next page

Showing results 1-20

Live In Pharmaceutical Biomedical Engineer information

See Seattle, WA salary details

$46.7K

$107.9K

$159.3K

How much do live in pharmaceutical biomedical engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for live in pharmaceutical biomedical engineer in Seattle, WA is $107,893.00, according to ZipRecruiter salary data. Most workers in this role earn between $84,800.00 and $132,000.00 per year, depending on experience, location, and employer.

What is a live in pharmaceutical biomedical engineer?

Live In Pharmaceutical Biomedical Engineers are professionals who reside on-site at pharmaceutical or biomedical facilities to oversee, maintain, and improve biomedical equipment and systems. Their role combines expertise in engineering with a deep understanding of pharmaceutical processes, ensuring that all equipment operates efficiently, safely, and in compliance with regulations. Being on-site allows them to quickly respond to technical issues, support ongoing research or production, and collaborate closely with other staff. This position is especially valuable in facilities requiring constant monitoring or rapid response to equipment malfunctions. Live-in arrangements are less common but critical in certain high-demand or specialized environments.

What are some unique challenges faced by live in pharmaceutical biomedical engineers, and how can candidates prepare for them?

Live In Pharmaceutical Biomedical Engineers often face the challenge of balancing on-site technical responsibilities with the demands of living within the facility, which may require extended hours or being on-call for urgent equipment issues. Candidates should be prepared for a dynamic work environment where collaboration with healthcare professionals and facility staff is frequent, especially during critical maintenance or troubleshooting. Building strong communication skills and being adaptable to non-traditional work schedules will help candidates thrive in this setting. Additionally, staying updated with the latest biomedical regulations and technologies is key to ensuring patient safety and regulatory compliance.

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

To thrive as a Live In Pharmaceutical Biomedical Engineer, you need a solid background in biomedical engineering, pharmaceutical sciences, and regulatory compliance, typically supported by a relevant degree and industry experience. Familiarity with laboratory equipment, process automation systems, and quality assurance protocols is essential, along with certifications like Six Sigma or GMP training. Strong problem-solving abilities, effective communication, and adaptability help you excel in dynamic environments and collaborate with multidisciplinary teams. These skills ensure safe, efficient development and maintenance of pharmaceutical technologies, directly impacting product quality and patient safety.

What is the difference between Live In Pharmaceutical Biomedical Engineer vs Pharmaceutical Biomedical Engineer?

AspectLive In Pharmaceutical Biomedical EngineerPharmaceutical Biomedical Engineer
CredentialsTypically requires biomedical engineering degree, certifications in medical device safety, and pharmaceutical industry knowledgeRequires similar biomedical engineering degree, certifications in medical device regulation, and pharmaceutical industry experience
Work EnvironmentResidential setting, often in healthcare or pharmaceutical facilities, providing on-site supportOffice, laboratory, or manufacturing plant environment, with occasional on-site visits
Employer & Industry UsageUsed by pharmaceutical companies, healthcare facilities, and biomedical service providers offering on-site supportCommon in pharmaceutical manufacturing, research labs, and medical device companies

The main difference is that a Live In Pharmaceutical Biomedical Engineer resides on-site, providing continuous support, while a Pharmaceutical Biomedical Engineer typically works in a standard office or lab setting. The live-in role emphasizes on-site presence and immediate response, whereas the standard role involves scheduled visits and remote support.

Can live in pharmaceutical biomedical engineers work in pharmaceutical companies?

Yes, live-in pharmaceutical biomedical engineers can work in pharmaceutical companies, where they typically focus on maintaining and improving medical equipment, ensuring regulatory compliance, and supporting research and development. Their skills in biomedical technology, troubleshooting, and equipment calibration are valuable in such environments.

Where is the best place to live as a live in pharmaceutical biomedical engineer?

The best place for a live-in pharmaceutical biomedical engineer is typically in regions with a strong healthcare and pharmaceutical industry presence, such as areas with major biotech hubs or medical device manufacturing centers. Proximity to research institutions, hospitals, and manufacturing facilities can also enhance career opportunities and work-life balance. Additionally, locations with supportive housing options and good quality of life are beneficial for live-in roles in this field.

What are the most commonly searched types of Pharmaceutical Biomedical Engineer jobs in Seattle, WA?

The most popular types of Pharmaceutical Biomedical Engineer jobs in Seattle, WA are:

Infographic showing various Live In Pharmaceutical Biomedical Engineer job openings in Seattle, WA as of September 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $107,893 per year, or $51.9 per hour.

Biomedical Engineer

Seattle, WA • On-site

$56K/yr

Full-time

Posted 9 days ago


Job description

The Biomedical Engineer will serve as the medical technology consultant and facility medical and hospital equipment planner for the Healthcare Technology Management (HTM) program at the VA Puget Sound Medical Center, a large, 1A complexity, medical center providing primary, secondary and tertiary services.
Qualifications: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:
Citizenship. [Be] a citizen of the United States. (Non-citizens may be appointed when it is not possible to recruit qualified citizens in accordance with [VA Handbook 5005, Part II,] chapter 3, section A, paragraph 3.g.)
Education and/or Experience. 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.

Physical Requirements. See VA Directive and Handbook 5019, Employee Occupational Health Service.
English Language Proficiency.Biomedical Engineers must be proficient in spoken and written English in accordance with chapter 2, section D, paragraph 5a, this part.
Grade Determinations: In addition to the basic requirements for employment listed above, 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 not listed in paragraph 3.b.(1).
  • Demonstrated Knowledge, Skills, and Abilities: None beyond the basic requirements.
Biomedical Engineer GS-9 (Developmental Level 1)
  • 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, 5 ii. Bachelor's degree, as outlined in paragraph 3.b.(1), plus two full years of progressively higher level graduate education in a related field of study, that demonstrates the KSAs for the GS-9 level assignment.
AND
  • Demonstrated Knowledge, Skills, and Abilities:
    • Knowledge of the principles, theories, concepts, and practices of the Biomedical Engineering profession.
    • Ability to interpret relevant codes, regulations, guidelines, and standards, and make recommendations to ensure compliance with medical center programs.
    • Ability to understand the operational needs of clinical services in the health care system.
    • 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 (Developmental Level 2)
  • 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.
AND
  • Demonstrated Knowledge, Skills, and Abilities:
    • 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.
    • 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.
    • 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.
    • Knowledge of basic project management principles, as applied to the healthcare setting and medical equipment, and information system implementation.
See Additional Information for the GS-12 Full Performance Level.
Reference: For more information on this qualification standard, please visit https://www.va.gov/ohrm/QualificationStandards/.
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-07 to GS-12.Education:Note: Only education or degrees recognized by the U.S. Department of Education from accredited colleges, universities, schools, or institutions may be used to qualify for Federal employment. You can verify your education here: http://ope.ed.gov/accreditation/. If you are using foreign education to meet qualification requirements, you must send a Certificate of Foreign Equivalency with your transcript in order to receive credit for that education. For further information, visit: https://sites.ed.gov/international/recognition-of-foreign-qualifications/.Employment Type: OTHER