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Fire Engineering Jobs in Arizona (NOW HIRING)

About Clayco Design and Engineering Clayco Design and Engineering (CDE) was created to diversify ... The Role We Want You For The Lead Fire Protection Engineer - Mission Critical will play a key role ...

This role requires extensive experience in fire protection engineering, a deep understanding of the unique challenges of mission-critical environments, and the ability to collaborate with ...

Programming experience. * Applicable experience either in the fire protection industry or the commercial customer service business in some capacity. * A fire alarm systems background or a background ...

Senior Fire Engineer

Phoenix, AZ · On-site

$95K - $130K/yr

A Senior Fire Engineer in our Business sector designs the most complex advanced building systems ... They solve the most complex engineering problems and train, mentor and provide senior leadership to ...

Fire Protection Engineer, EHS

Phoenix, AZ · On-site

$102K - $137K/yr

Interested in having experience in design engineering or the construction industry, related to all aspects of fire protection, including fire suppression systems, fire alarm and detection systems ...

Fire Protection Engineer, EHS

Phoenix, AZ · On-site

$102K - $137K/yr

Interested in having experience in design engineering or the construction industry, related to all aspects of fire protection, including fire suppression systems, fire alarm and detection systems ...

Bachelor's or Master's degree in Engineering (Fire Protection, Mechanical, Electrical, Civil, Chemical, or related discipline). * Active Professional Engineer (PE) license in Fire Protection ...

Showing results 21-40

Fire Engineering information

See Arizona salary details

$39.6K

$77.3K

$103.9K

How much do fire engineering jobs pay per year?

As of Sep 10, 2026, the average yearly pay for fire engineering in Arizona is $77,327.00, according to ZipRecruiter salary data. Most workers in this role earn between $60,600.00 and $91,300.00 per year, depending on experience, location, and employer.

What is fire engineering?

Fire engineering is a specialized field of engineering that focuses on the prevention, detection, and mitigation of fire and its effects. Fire engineers design, analyze, and implement systems and strategies to protect people, property, and the environment from fire hazards. Their work includes developing fire safety plans, ensuring building code compliance, conducting risk assessments, and researching fire behavior. Fire engineering is essential in various industries, including construction, manufacturing, and public safety.

What are the key skills and qualifications needed to thrive as a fire engineer?

To thrive as a Fire Engineer, you need a solid grounding in fire safety principles, engineering fundamentals, and relevant building codes, typically supported by a degree in fire protection engineering or a related discipline. Familiarity with fire modeling software, CAD systems, and certifications such as PE (Professional Engineer) or CFPS (Certified Fire Protection Specialist) are often required. Strong analytical thinking, problem-solving abilities, and effective communication skills help you collaborate with multidisciplinary teams and convey complex safety solutions. These skills and qualifications are crucial to designing safe environments, ensuring regulatory compliance, and protecting lives and property from fire hazards.

What are some common challenges faced by fire engineers when collaborating on construction projects?

Fire engineers often work closely with architects, contractors, and regulatory authorities to ensure that fire safety standards are integrated into building designs. A common challenge is balancing innovative architectural concepts with strict fire safety codes, which can require creative problem-solving and effective communication. Additionally, fire engineers must stay updated on evolving regulations and technologies, ensuring that all stakeholders are informed and compliant throughout the project lifecycle. These collaborations demand strong teamwork and adaptability, as project requirements and designs can change rapidly.

What is the difference between Fire Engineering vs Fire Safety Engineering?

AspectFire EngineeringFire Safety Engineering
CredentialsFire Engineering degree or diploma, certifications in fire safetyFire Safety Engineering degree or diploma, certifications in fire prevention
Work EnvironmentDesigning fire protection systems, fire risk assessments, emergency planningImplementing fire safety measures, inspections, compliance checks
Industry UsageConstruction, industrial facilities, public safety projectsBuilding management, safety audits, regulatory agencies

Fire Engineering focuses on designing and analyzing fire protection systems and strategies, while Fire Safety Engineering emphasizes implementing safety measures and ensuring compliance. Both roles require similar credentials and often work together to enhance fire safety in various settings.

How do you become a fire engineer?

To become a fire engineer, you typically need a bachelor's degree in fire protection engineering, fire science, or a related field. Gaining experience through internships or entry-level positions and obtaining relevant certifications, such as the NICET certification, can enhance job prospects. Strong knowledge of fire safety codes, engineering principles, and safety equipment is essential for this role.

Is there a high demand for fire engineering?

Fire engineering is a specialized field with steady demand due to ongoing safety regulations and construction projects requiring fire protection systems. Professionals with certifications and knowledge of fire safety codes are often sought after in construction, consulting, and emergency planning sectors.

What does a fire engineer do?

A fire engineer designs and evaluates fire safety systems, conducts risk assessments, and ensures compliance with fire safety codes. They often use specialized software and may hold certifications such as Fire Protection Engineer (FPE) or Professional Engineer (PE).

What job categories do people searching Fire Engineering jobs in Arizona look for?

The top searched job categories for Fire Engineering jobs in Arizona are:

What cities in Arizona are hiring for Fire Engineering jobs?

Cities in Arizona with the most Fire Engineering job openings:

Infographic showing various Fire Engineering job openings in Arizona as of September 2026, with employment types broken down into 71% Full Time, and 29% Contract. Highlights an 100% In-person job distribution, with an average salary of $77,327 per year, or $37.2 per hour.

Associate Engineer - Fire Protection

Phoenix, AZ • On-site

United Integrated Services
Construction • 501 - 1,000 employees

$82K - $111K/yr

Full-time

Re-posted 26 days ago


Job description

United Integrated Services (USA) Corp. was founded in Phoenix, Arizona in 2020. UIS is a U.S. subsidiary of United Integrated Services Co., Ltd. (UIS Taiwan) which was founded in Taiwan in 1982. UIS is a multidisciplinary engineering and construction company. We provide fully integrated design-build services to our clients in the high-technology industry for their manufacturing facility needs. Our scope of services includes engineering design, high-tech factory planning, and on-time equipment and material delivery in which clean-room systems, HVAC, electrical systems, and tool hook-up, are all vital parts in need of total coordination.
Summary: The Associate Engineer - Fire Protection is responsible for reviewing engineering designs, coordinating construction schedules, and overseeing the installation, execution, and management of fire protection systems within a semiconductor facility. The ideal candidate should possess an educational background and relevant experience in Mechanical Engineering, Architectural Engineering, or Fire Protection Engineering. Familiarity with fire protection systems such as Sprinkler, VESDA (Very Early Smoke Detection Apparatus), BDA (Bi-Directional Amplifier), and EST systems are preferred, with hands-on experience considered a strong advantage.
Essential Duties and Responsibilities include the following. Other duties may be assigned.
Design and Engineering:
  • Assist in organizing and reviewing drawings, specifications, and related documentation for fire protection systems.
  • Support hydraulic calculations and system performance verification to ensure compliance with applicable codes and standards.
  • Assist in selecting appropriate fire protection equipment and materials based on project requirements and budget.
  • Participate in fire hazard and risk assessments and learn to identify potential fire safety concerns.
  • Learn and develop familiarity with fire protection technologies, applicable codes, and industry standards.

Code Compliance:
  • Assist in ensuring that fire protection designs and installations comply with applicable local, state, and national codes (e.g., NFPA, IBC, IFC).
  • Support the review of architectural and engineering drawings to help identify and address fire safety concerns.
  • Learn and maintain up-to-date knowledge of applicable codes, standards, and revisions.

Project Management:
  • Assist in coordination with architects, engineers, contractors, and stakeholders.
  • Support preparation of proposals, budgets, and schedules.
  • Assist in coordinating fire protection system installations.
  • Participate in site inspections.
  • Assist in preparing reports and documentation.

Communication and Collaboration:
  • Assist in communicating technical information to both technical and non-technical stakeholders.
  • Participate in project meetings and presentations.
  • Support providing technical assistance to clients, contractors, and team members.
  • Contribute to a collaborative and productive team environment.

Qualifications: The requirements listed below are representative of the knowledge, skill, and/or ability required.
  • Education: A bachelor's degree in Fire Protection Engineering, Electrical Engineering, Mechanical Engineering, or a related field is preferred.
  • Experience: 0-1 plus years of experience in fire protection engineering design and project management.
  • Technical Skills: Proficiency in hydraulic calculation software (e.g., AutoSPRINK, SprinkCAD), AutoCAD, and other relevant design tools.
  • Knowledge: Working knowledge of NFPA standards (NFPA 13, NFPA 14, NFPA 20, NFPA 72, etc.), International Building Code (IBC), and other applicable codes and regulations.
  • Skills: Excellent communication, interpersonal, and problem-solving skills. Strong organizational and time management abilities. Act with integrity, professionalism, and confidentiality. Effectively prioritize responsibilities depending on project needs. Effectively present information and respond to questions from groups of managers, and employees.

Language Proficiency:
  • Excellent verbal and written communication skills in English.

Nice to have:
  • OSHA 30 Certificate.
  • NICET certification in fire protection systems.
  • NFPA 70E Training
  • Spanish and Mandarin Chinese skills
  • CPR/ First Aid Trained preferred.

Additional Requirements:
  • Must have and maintain a valid Arizona driver's license. May be required to travel to other sites within Arizona to perform certain work functions.

Physical Demands & Work Environment
The physical demands described here are representative of those that a candidate must meet to successfully perform the essential functions of this job.
  • Frequently stand and walk for extended periods throughout the workday.
  • Frequently lift, carry, push, and pull materials weighing up to 50 pounds, and occasionally lift heavier items with assistance or mechanical equipment.
  • Bend, stoop, kneel, crouch, and reach to perform assigned tasks.
  • Use hands and fingers to handle, feel, grasp, and operate tools, equipment, or materials.
  • Perform repetitive motions involving the hands, wrists, and arms.
  • Climb ladders, stairs, or elevated surfaces as required by the job.
  • Maintain visual acuity sufficient to read labels, instructions, safety signage, and documentation.
  • Maintain balance and coordination while moving materials or operating equipment.
  • Ability to work in physically demanding environments requiring frequent movement and manual labor.

Work Environment:
  • Exposure to dust, noise, vibration, and moving mechanical equipment.
  • Indoor and/or outdoor work environments, which may include varying temperatures and weather conditions.
  • Work in confined spaces, elevated areas, or active job sites, depending on project requirements.
  • Required use of personal protective equipment (PPE) such as hard hats, safety glasses, gloves, steel-toe boots, and high-visibility vests.
  • Interaction with powered industrial equipment, tools, and vehicles.

Disclaimer:
The above job description is not intended to be an all-inclusive list of duties and standards of the position. Incumbents will follow any other instructions, and perform any other related duties as assigned by their supervisor.