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Ordnance Engineer Jobs in Ohio (NOW HIRING)

Comprehensive hazard analyses for test facilities, missile systems, aviation systems, and ordnance * Evaluate system design, engineering analysis, and operational documents, making recommendations ...

Lead Electrical Engineer

Cincinnati, OH · On-site

$140K - $160K/yr

... ordnance applications. == Circuit tolerance analyses using hand calculations and Spice tools ... Generate Engineering Orders (EOs) and Engineering Change Proposals (ECPs) == Mentor electrical ...

Showing results 21-40

Ordnance Engineer information

What is an ordnance engineer?

Ordnance Engineers are professionals who design, develop, test, and oversee the production of weapons, ammunition, explosives, and related military equipment. They work to ensure the effectiveness, safety, and reliability of these systems for use by armed forces. Their roles may involve research, project management, field testing, and collaboration with other engineers and military officials. Ordnance Engineers often require knowledge in mechanical engineering, materials science, and ballistics. They play a critical role in national defense and safety.

What are the key skills and qualifications needed to thrive as an ordnance engineer?

To thrive as an Ordnance Engineer, you need a solid background in mechanical or chemical engineering, physics, and materials science, often supported by a relevant engineering degree. Familiarity with CAD software, ballistics modeling tools, and knowledge of military standards or safety certifications (such as DoD or ISO) are typically required. Strong analytical thinking, attention to detail, and effective teamwork are crucial soft skills in this role. These abilities are essential for designing safe, reliable ordnance systems and ensuring compliance with rigorous safety and performance standards.

What are some common challenges faced by ordnance engineers in ensuring safety during weapons development projects?

Ordnance Engineers often encounter challenges related to maintaining the highest safety standards throughout the design, testing, and manufacturing processes. Handling explosive materials, conducting live-fire tests, and ensuring compliance with strict governmental regulations require meticulous attention to detail and rigorous risk assessments. Collaboration with multidisciplinary teams—including safety officers, quality assurance specialists, and manufacturing personnel—is essential to identify and mitigate hazards. Staying current with evolving safety protocols and technological advancements is also crucial to prevent accidents and ensure reliable performance.

What is the difference between Ordnance Engineer vs Explosive Ordnance Disposal (EOD) Technician?

AspectOrdnance EngineerExplosive Ordnance Disposal (EOD) Technician
CredentialsEngineering degree, certifications in ordnance safetyExplosive ordnance disposal training, certifications in bomb disposal
Work EnvironmentDesign, testing, and manufacturing of ordnance in labs or factoriesField operations, bomb disposal sites, military or law enforcement settings
Industry UsageMilitary, defense contractors, manufacturingMilitary, law enforcement, specialized bomb disposal units

While both roles involve working with explosive devices, Ordnance Engineers focus on designing and testing ordnance, whereas EOD Technicians specialize in safely disarming and disposing of explosive devices in the field.

What job categories do people searching Ordnance Engineer jobs in Ohio look for?

The top searched job categories for Ordnance Engineer jobs in Ohio are:

What cities in Ohio are hiring for Ordnance Engineer jobs?

Cities in Ohio with the most Ordnance Engineer job openings:

Infographic showing various Ordnance Engineer job openings in Ohio as of August 2026, with employment types broken down into 90% Full Time, and 10% Part Time. Highlights an 100% In-person job distribution.

Systems Safety Engineer

Sierra Lobo, Inc.

Milan, OH • On-site

Full-time

Posted 4 days ago


Job description

Sierra Lobo, offers customers a full range of professional and technical capabilities, including Test and Evaluation, Systems Engineering, and Advanced Technologies.  We also develop products and processes related to Cryogenic Fluid and Thermal Management Systems, Densified Propellant Management Systems, and Prototype Extreme Pressure and Temperature Systems.  Our customers include the Department of Defense (DoD), the U.S. Air Force, U.S. Navy, U.S. Army, Missile Defense Agency (MDA), and the National Aeronautics and Space Administration (NASA).


Function of Position:

Provides expertise in the establishment, execution, and monitoring of engineering design supporting reactivation and test facility operations. Supports implementation of new test operations and provides continuous safety oversight for ongoing design and readiness for operations across missile, aviation, and weapon-system environments.

Responsibilities:

  • Provide evaluations of system safety issues and define adequate safety assessment tests for new and ongoing operations.
  • Conduct and document formal safety analyses including:
    • Failure Modes and Effects Analysis (FMEA)
    • Fault Tree Analysis (FTA)
    • Preliminary Hazard Analysis (PHA)
    • Hazard and Operability Studies (HAZOP)
    • Software safety analysis for embedded, control, and test-automation systems
    • Comprehensive hazard analyses for test facilities, missile systems, aviation systems, and ordnance
  • Evaluate system design, engineering analysis, and operational documents, making recommendations related to safety releases and operational risk.
  • Maintain working knowledge of externally imposed safety requirements (DoD, MDA, NASA, OSHA, Army/Aviation safety standards) and assess operational impact.
  • Evaluate new test operations, formulate risk assessments, perform hazard assessments, conduct fault tree analyses, inspect test sites, and provide recommendations for improvements.
  • Prepare detailed reports for safety analyses, evaluations, and past test-incident investigations.
  • Rely on extensive experience and judgment to plan and accomplish goals.

Nature of Position Challenges

  • Investigate test incidents with potential safety concerns and prepare formal reports of findings.
  • Apply structured methodologies (FMEA, FTA, PHA, HAZOP, software hazard analysis) to identify root causes, contributing factors, and mitigation strategies.
  • Provide regulatory compliance evaluations and ensure alignment with operational safety and health agency regulations.
  • Ability to obtain and maintain a security clearance is required.

Supervisor Guidance:

Works under the general guidance of the IPT Lead or Deputy IPT. Responsible for executing projects within approved work plans and resources.

Supervision of Others:

Provides technical direction to assigned project personnel. Assists management on administrative matters.

Resources Impacted:

Planning and execution of test projects has direct impact on funding, labor resources, and materials.


Qualifications - Required:

  • Bachelor of Science in Engineering, Physics, or Chemistry. Alternatives include degrees in other Physical Sciences, Mathematics, or Computer Science.
  • 10 years of engineering experience; alternatively, 8 years of engineering experience with a qualifying degree.
  • Two years of experience directly related to safety of military systems and ordnance, including:
    • Formulating risk assessments
    • Conducting hazard analyses
    • Performing fault tree analyses
    • Developing safety recommendations
    • Executing structured safety methodologies such as FMEA, PHA, HAZOP, and software safety analysis

Essential Functions of the Position

 

Physical Requirements

Occasional visual and physical contact with test system hardware and testing of missile or aviation systems. Transportation of notebooks, drawings, forms, sensors, etc. required. Work requires movement between buildings and various work sites within buildings.

Work Environment

Work is accomplished in an office, control room, test facility, weapon system, aviation systems, instrumentation and data reduction/data processing including design.

  • Combination of office, industrial, and test facility environments
  • Occasional presence in active reactivation zones with elevated safety risks
  • Occasional onsite operations with option to work remotely, as appropriate
  • Occasional travel may be required; surge or extended travel may be required during critical test phases.

Equipment and Machines Involved

Office and control room equipment includes computers, calculators, electronic instruments, mechanical instruments, and miscellaneous precision devices.

Criticality of Attendance

Work assignments are usually during normal work hours, but overtime can be necessary to support meetings, test schedules, and testing activities. Regular daily attendance is required to maintain team effectiveness.