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System Safety Engineer Jobs in Utah (NOW HIRING)

IDOS

Ogden, UT · On-site

... Engineers System Architects System Safety Engineers Systems Administrators Systems Analysts Systems Engineers Technical Project Managers Test Engineers This position is upon contract award, the ...

IDOS

Ogden, UT · On-site

... Engineers System Architects System Safety Engineers Systems Administrators Systems Analysts Systems Engineers Technical Project Managers Test Engineers This position is upon contract award, the ...

Showing results 41-60

System Safety Engineer information

See Utah salary details

$30

$60

$77

How much do system safety engineer jobs pay per hour?

As of Sep 8, 2026, the average hourly pay for system safety engineer in Utah is $60.89, according to ZipRecruiter salary data. Most workers in this role earn between $49.47 and $72.02 per hour, depending on experience, location, and employer.

What is a system safety engineer?

System Safety Engineers are professionals responsible for identifying, assessing, and mitigating risks associated with complex systems to ensure they operate safely and reliably. They analyze potential hazards, design safety protocols, and work closely with engineering teams to implement safety standards throughout the lifecycle of a product or system. Their work is critical in industries such as aerospace, automotive, defense, and energy, where system failures can have significant consequences. System Safety Engineers often use specialized tools and methodologies, such as hazard analysis and risk assessment, to support safety and regulatory compliance.

What does a system safety engineer do?

A system safety engineer helps to develop, refine, and update safety protocols and software that controls a large system and ensures that even if aspects of the system fail, it does not put the entire system at jeopardy. For example, if a subsystem on a spaceship fails, your duties as a system safety engineer are to determine how to make sure that it does not affect other systems or endanger the critical life support systems. Systems safety engineering is essential in a wide range of fields, from civil engineering and aeronautics to software and hardware engineering and power plant systems.

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

To thrive as a System Safety Engineer, you need a solid background in engineering principles, risk assessment, and safety analysis, usually supported by a degree in engineering or a related field. Familiarity with safety-critical standards (such as MIL-STD-882 or ISO 26262), hazard analysis tools, and systems modeling software is typically required. Strong analytical thinking, attention to detail, and effective communication skills help you excel in cross-functional teams. These skills are essential to proactively identify and mitigate risks, ensuring the safe and reliable operation of complex systems.

What are some common challenges system safety engineers face when working on multidisciplinary projects?

System Safety Engineers often work with cross-functional teams that include design, operations, and software professionals. A key challenge is ensuring that safety requirements are clearly communicated and integrated throughout all phases of system development. Balancing safety goals with project constraints like budget and timeline can also be demanding, as can managing the documentation and verification processes across different engineering disciplines. Success in this role requires strong collaboration and communication skills, as well as a proactive approach to identifying and mitigating potential safety hazards.

What is the difference between System Safety Engineer vs Reliability Engineer?

AspectSystem Safety EngineerReliability Engineer
Required CertificationsISO 26262, MIL-STD-882, PE licenseSix Sigma, Certified Reliability Engineer (CRE)
Work EnvironmentManufacturing, aerospace, automotive, defenseManufacturing, aerospace, electronics, energy
Employer & Industry UsageSafety-critical systems, risk mitigationProduct durability, failure analysis

While both roles focus on system performance, the System Safety Engineer emphasizes identifying and mitigating safety risks in complex systems, often working with safety standards and compliance. The Reliability Engineer concentrates on ensuring product reliability and longevity, analyzing failure modes and improving system durability. Both roles are vital in safety-critical industries but serve distinct functions in system development and maintenance.

Are system safety engineers in demand?

System safety engineers are in demand across industries such as aerospace, automotive, and manufacturing due to increasing safety regulations and complex systems. They often require knowledge of safety standards like ISO 26262 or MIL-STD-882 and may need certifications such as Certified Safety Professional (CSP). The role is expected to grow as safety becomes a higher priority in technology development.

What job categories do people searching System Safety Engineer jobs in Utah look for?

The top searched job categories for System Safety Engineer jobs in Utah are:

What are popular job titles related to System Safety Engineer jobs in UT?

For System Safety Engineer jobs in UT, the most frequently searched job titles are:

Infographic showing various System Safety Engineer job openings in Utah as of September 2026, with employment types broken down into 1% As Needed, 76% Full Time, 20% Part Time, 1% Contract, and 2% Nights. Highlights an 97% Physical, and 3% Remote job distribution, with an average salary of $126,652 per year, or $60.9 per hour.

Safety & Occupational Health Specialist

Hill Air Force Base, UT • On-site

Defense Logistics Agency
National Security • 10K+ employees

Full-time

Posted 25 days ago


Defense Logistics Agency rating

8.3

Company rating: 8.3 out of 10

Based on 35 frontline employees who took The Breakroom Quiz

276th of 857 rated public administrative organizations


Job description

Telework Eligible

No

Major Duties

  • Reviews private contractor operations for new construction and building alterations to determine-the degree of compliance with standards and regulatory criteria; recommends procedures to control or eliminate hazardous operations or conditions.
  • Inspects warehouses and contents, administrative areas; production areas, storage and material handling operations, shop machinery and related mechanical processes, vehicles, protective clothing, and fire suppression equipment.
  • Compiles statistical data to determine mishap trends and identify and apply proper preventive methods.
  • Reviews all facility related projects, MILCON, new construction, and renovations, for safety related considerations.
  • Ensures such projects as designed will comply with all applicable safety regulations and when constructed will be safe to operate and maintain.
  • Develops and prepares safety and occupational health directives and regulations through adaptation of higher command instructions.
  • Prepares written procedures for implementation of safety prevention activities including motor vehicle mishap prevention, safe materials handling practices, and safe storage handling of toxic chemicals.

Qualification Summary

To qualify for a Safety and Occupational Health Specialist, your resume and supporting documentation must support: A. Specialized Experience: One year of specialized experience that equipped you with the particular competencies to successfully perform the duties of the position and is directly in or related to this position. To qualify at the GS-11 level, applicants must possess one year of specialized experience equivalent to the GS-09 level or equivalent under other pay systems in the Federal service, military, or private sector. Applicants must meet eligibility requirements including time-in-grade (General Schedule (GS) positions only), time-after-competitive appointment, minimum qualifications, and any other regulatory requirements by the cut-off/closing date of the announcement. Creditable specialized experience includes: Managing safety or occupational health program elements. Developing and recommending safety and occupational health policy to higher levels of management. Applying safety and occupational health laws, regulations, principles, theories, practices, and procedures to advise on or resolve technical matters dealing with occupational safety and health requirements. Developing safety and occupational health standards, regulations, practices, and procedures to eliminate or control potential hazards. Developing or implementing programs to reduce the frequency, severity, and cost of accidents and occupational illnesses. Analyzing or evaluating new and existing jobs, processes, products, or other systems to determine the existence, severity, probability, and outcome of hazards. Designing or modifying workplaces, processes, products, or other systems to control or eliminate hazards. Inspecting or surveying workplaces, processes, products, or other systems for compliance with established safety and occupational health policies or standards and to identify potential new hazards. Training of workers, supervisors, managers, or other safety and occupational health personnel in safety or occupational health subjects. Work in occupational fields such as industrial hygienist, safety engineer, fire prevention engineer, health physicist, and occupational health nurse. B. Education Substitution: Such education must demonstrate the knowledge, skills, and abilities necessary to do the work. Education must be from a college or university accredited by an organization approved by the U.S. Department of Education. See http://ope.ed.gov/accreditation/Search.aspx. If using education to meet basic qualifications, YOU MUST SUBMIT A TRANSCRIPT as supplemental documentation. To qualify based on education in lieu of specialized experience, you must possess: a Ph.D. or equivalent doctoral degree or 3 full years of progressively higher level graduate education leading to such a degree or LL.M., if related in one of the following fields of study: safety or occupational health fields (safety, occupational health, industrial hygiene), or degree in other related fields that included or was supplemented by at least 24 semester hours of study from among the following (or closely related) disciplines: safety, occupational health, industrial hygiene, occupational medicine, toxicology, public health, mathematics, physics, chemistry, biological sciences, engineering, and industrial psychology. C. Combination: Combinations of successfully completed post-high school education and experience may be used to meet total qualification requirements for grade levels GS-11 and may be computed by first determining the applicant's total qualifying experience as a percentage of the experience required for the grade level; then determining the applicant's education as a percentage of the education required for the grade level; and then adding the two percentages. The total percentages must equal at least 100 percent to qualify an applicant for that grade level. Only graduate education in excess of the amount required for the next lower grade level may be used to qualify applicants for positions at grade GS-11. Experience refers to paid and unpaid experience, including volunteer work done through National Service programs (e.g., Peace Corps, AmeriCorps) and other organizations (e.g., professional, philanthropic, religious, spiritual, community, student, social). Volunteer work helps build critical competencies, knowledge, and skills and can provide valuable training and experience that translates directly to paid employment. You will receive credit for all qualifying experience, including volunteer experience. Physical Demands: The performance of work duties requires frequent surveys of warehouses and a printing plant, new construction sites, machine shops and vehicle maintenance facilities necessitating prolonged periods of walking, standing and bending. Work Environment: The specialist is frequently exposed to operating machinery, hazardous materials, including chemical and flammable liquids, acid fumes and construction hazards.


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