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Engine Engineer Jobs in Arizona (NOW HIRING)

Senior Process Engineer - H1 Location : Tempe, AZ Department : Operations Reports to : Director of ... Utilize advanced metrology tools such as CD SEM, AFM, ellipsometry, profilometry, XPS, XRD, and ...

Senior Process Engineer - H1 Location: Tempe, AZ Department: Operations Reports to: Director of ... Utilize advanced metrology tools such as CD SEM, AFM, ellipsometry, profilometry, XPS, XRD, and ...

Senior Process Engineer - H1 Location: Tempe, AZ Department: Operations Reports to: Director of ... Utilize advanced metrology tools such as CD SEM, AFM, ellipsometry, profilometry, XPS, XRD, and ...

Engineer II Premium

Phoenix, AZ

$97.50K - $133.50K/yr

SDET for GKE POC ( Engineer II premium) : Open for Phoenix and Palo Alto GCP experience Google kubernates Engine ( GKE) Functional Testing Regression & Performance Testing Docker DNS Firewall ...

As a Lead Project Engineer, you will be part of our Engine Controls team driving achievement of performance within Honeywell Aerospace. You will be integral in the product development and control ...

PhD in Chemical Engineering, Materials Science, Physics, Electrical Engineering, or a semiconductor ... Experience with materials and device characterization techniques, including SEM, TEM, CD SEM, AFM ...

New

GenAI Cloud Engineer

Phoenix, AZ · On-site

$55.25 - $74/hr

Google Kubernetes Engine (GKE) * Ensure scalability, reliability, and security of Kubernetes-based ... Must-Have Qualifications * 6+ years of hands-on engineering experience with: * Generative AI on GCP ...

Senior Advanced Project Engineer

Tempe, AZ · Hybrid

$94.80K - $123.60K/yr

KEY RESPONSIBILITIES Lead the design and development of one or more of the Engine Controls ... engineering projects from conception to completion Provide technical expertise, guidance, and ...

Founding GTM Engineer

Phoenix, AZ · On-site

$120K - $170K/yr

This company is building the specialized charge card, reimbursement engine, and vendor marketplace ... Engineering & Risk: Former leads and AI researchers from Stripe, Mercury, SpaceX (Ad Astra ...

We are looking for a Lead Software Engineer, you will be building exciting games utilizing our current Unity driven game engine. Working closely with Designers, Artists, and Sound Engineers, you will ...

This company is building the specialized charge card, reimbursement engine, and vendor marketplace ... Engineering & Risk: Former leads and AI researchers from Stripe, Mercury, SpaceX (Ad Astra ...

PhD in Chemical Engineering, Materials Science, Physics, Electrical Engineering, or a semiconductor ... Experience with materials and device characterization techniques, including SEM, TEM, CD SEM, AFM ...

New

Yield Development Engineer

Phoenix, AZ · On-site

$85.20K - $120.28K/yr

The Role and Impact As a Yield Development Engineer, you will play a pivotal role in driving the ... SEM, X-ray. - Familiarity with tools such as Mentor Graphics, and statistical analysis software ...

Hands-on experience with TEM, STEM, EDS, EELS, SEM, and FIB. * Familiarity with techniques such as ... Programming experience, particularly in scripting or automation for data acquisition, data analysis ...

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Engine Engineer information

See Arizona salary details

$23

$49

$71

How much do engine engineer jobs pay per hour?

As of May 30, 2026, the average hourly pay for engine engineer in Arizona is $49.98, according to ZipRecruiter salary data. Most workers in this role earn between $40.34 and $58.03 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an Engine Engineer, and why are they important?

To thrive as an Engine Engineer, you need a solid background in mechanical engineering principles, thermodynamics, and combustion, typically supported by a relevant engineering degree. Familiarity with computer-aided design (CAD) software, simulation tools like MATLAB or ANSYS, and industry certifications such as Professional Engineer (PE) licensure are often expected. Strong problem-solving abilities, teamwork, and effective communication distinguish top performers in this role. These skills and qualifications are crucial for designing efficient engines, ensuring safety and compliance, and successfully collaborating on complex engineering projects.

What are some common challenges Engine Engineers face when working on new engine designs?

Engine Engineers often encounter challenges such as balancing performance, efficiency, and emissions requirements while staying within cost and timeline constraints. Integrating new technologies, such as hybrid systems or alternative fuels, can also introduce complexities in design and testing. Additionally, collaborating closely with multidisciplinary teams—including electrical, software, and manufacturing engineers—is essential to ensure compatibility and optimize the overall system. Staying updated with evolving industry standards and regulatory requirements adds another layer of complexity to the role.

What does an Engine Engineer do?

An Engine Engineer is responsible for designing, developing, testing, and improving engines used in vehicles, machinery, or industrial applications. They work on enhancing engine performance, efficiency, and reliability while ensuring compliance with environmental and safety regulations. Their tasks often involve using computer-aided design (CAD) software, analyzing test data, and collaborating with other engineering teams to integrate engines into complex systems.

What is the difference between Engine Engineer vs Mechanical Engineer?

AspectEngine EngineerMechanical Engineer
Required CredentialsBachelor's in Mechanical, Aerospace, or Automotive Engineering; often requires specific engine-related certificationsBachelor's in Mechanical Engineering; professional engineer (PE) license optional
Work EnvironmentDesign, develop, test engines for vehicles, aircraft, or machinery; often in labs or manufacturing plantsDesign and analyze mechanical systems across industries; work in labs, factories, or offices
Industry UsagePrimarily in automotive, aerospace, and heavy machinery sectorsWidely used across manufacturing, automotive, aerospace, and energy sectors

Engine Engineers focus specifically on designing and testing engines for vehicles and machinery, requiring specialized knowledge of engine systems. Mechanical Engineers have a broader scope, working on various mechanical systems beyond engines. Both roles share similar educational backgrounds but differ in specialization and work focus.

Infographic showing various Engine Engineer job openings in Arizona as of May 2026, with employment types broken down into 89% Full Time, 10% Part Time, and 1% Contract. Highlights an 89% Physical, and 11% Remote job distribution, with an average salary of $103,954 per year, or $50 per hour.
Principal Engineer Propulsion & Fuel Subsystems Design and Integration

Principal Engineer Propulsion & Fuel Subsystems Design and Integration

SyberJet Aircraft

Chandler, AZ • On-site

Full-time

Posted 8 days ago


Job description

Salary:

SyberJet is an up-and-coming aircraft manufacturer dedicated to pushing the boundaries of innovation and precision in the design and manufacturing of advanced aerospace systems and aircraft. Our team is committed to excellence, creativity, and continuous improvement in all aspects of our work.


Job Description:

SyberJet Aircraft is seeking a Senior Propulsion & Fuel Systems Engineer with strong FAA certification and systems safety experience to lead and coordinate the integration of advanced propulsion and fuel systems on our aircraft programs. This role blends technical engineering leadership, project oversight, and regulatory compliance responsibilities, and is ideally suited for a propulsion engineer who has contributed directly to FAA Part 23 or Part 25 programs and understands the full life cycle of propulsion system development, integration, and certification.

You will act as the project engineer for powerplant and fuel systems development interfacing with vendors and guiding independent electrical and mechanical design teams to ensure the final design is safe, certifiable, and optimized for performance and manufacturability.

Key Responsibilities:

Propulsion & Fuel System Integration:

  • Lead the integration of new turbofan engines and associated fuel systems into the aircraft design.
  • Define and manage system-level requirements, interfaces, and design constraints for propulsion, fuel systems, and bleed air.
  • Guide supplier selection and coordination, ensuring design alignment and certification readiness.
  • Ensure mechanical and electrical subsystems are harmonized with engine and fuel system integration needs.
  • Coordinate the integration and application of engine bleed air for aircraft anti-ice and pneumatic systems, ensuring safe and effective performance.

FAA Certification & Safety:

  • Serve as the technical lead for propulsion and fuel systems certification efforts.
  • Coordinate with FAA ACOs and DERs (Designated Engineering Representatives) on compliance planning and issue resolution.
  • Develop and contribute to compliance documentation, including means of compliance matrices, certification plans, compliance checklists, and engineering reports.
  • Author, support, and review System Safety Assessments (SSAs), including FHA, FTA, and SSA documents per ARP4761 guidance.
  • Drive validation of certification artifacts against FAA Part 23 requirements.

Testing & Evaluation:

  • Support propulsion and fuel system ground and flight test programs.
  • Lead root-cause analysis and corrective actions for any propulsion-related anomalies or discrepancies during testing.
  • Evaluate performance data and verify compliance with safety and performance objectives.

CAD Modeling:

  • Use Siemens NX for 3D Modeling, assembly design, and drafting. Produce detailed engineering drawings and specifications.

Product Lifecycle Management:

  • Manage product data, track design changes, and ensure documentation is current and accessible using Teamcenter, Jira, and Confluence.

Problem Solving:

  • Analyze and resolve design issues, offering innovative solutions to engineering challenges.

Continuous Improvement:

  • Contribute to process improvements and best practices within the design and development team.


Qualifications:

Education:

  • Bachelors degree in aerospace, Mechanical, or Propulsion Engineering, or a related field.

Experience:

  • Minimum of 8 years of experience in aircraft turbofan propulsion system design and integration, with at least 5 years supporting FAA certification (Part 23 or Part 25).
  • Demonstrated experience supporting or leading System Safety Assessments.
  • Solid understanding of FAA certification processes, including working with FAA DERs or as an ODA member.
  • Working knowledge ofaircraft fuel system design, propulsion system controls, and engine bleed air systems (particularly for anti-icing and pneumatic integration).

Software Skills:

  • Experience with Simulink, MATLAB, or engine performance simulation tools is desired.
  • Proficiency with Siemens NX and Teamcenter is preferred.

Preferred Experience:

  • Model-based systems engineering (MBSE) tools and methodologies.
  • Agile Development using Jira Sprint Methodology.
  • Working knowledge of engine control integration, FADECs, electrical loads, and engine nacelle design.
  • Project Management

Technical Knowledge:

  • Strong understanding of industry standards, aerospace design processes, certification methods, and the operational characteristics of aircraft turbo fan engines.

Analytical Skills:

  • Excellent problem-solving skills with the ability to analyze complex technical data and provide effective solutions.

Communication:

  • Strong verbal and written communication skills, with the ability to effectively present and document technical information to various stakeholders.

Team Player:

  • Ability to work collaboratively in a team environment, demonstrating strong interpersonal skills.


What We Offer:

  • Competitive salary and benefits package.
  • Opportunities for professional growth and development.
  • A collaborative, engineering-driven, innovative work environment.
  • The chance to work on cutting-edge aerospace projects with a talented team of professionals.