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Model Based Design Engineer Jobs in Tucson, AZ (NOW HIRING)

Electrical Model-Based Engineering (MBE) concepts and electronic Bills of Material (eBOMs) experience. * Support reviews of Software documents per Program Requirements * Perform design verification ...

Electrical Model-Based Engineering (MBE) concepts and electronic Bills of Material (eBOMs) experience. * Support reviews of Software documents per Program Requirements * Perform design verification ...

Talon has an office in Tucson, AZ that is providing high fidelity computational models/analysis and ... We are seeking an experienced Electrical Design Engineer with a strong background in system-level ...

Talon has an office in Tucson, AZ that is providing high fidelity computational models/analysis and ... We are seeking an experienced Electrical Design Engineer with a strong background in system-level ...

Analog Design Engineer

Tucson, AZ ยท On-site

$70 - $92/hr

Analog Design Engineer Onsite Location: Tucson, AZ Required: Secret Clearance No 1099, No third ... 00 per hour based on experience and benefits package *** No C2C, we can NOT work with outside ...

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Model Based Design Engineer information

See Tucson, AZ salary details

$22.1K

$94.5K

$151.7K

How much do model based design engineer jobs pay per year?

As of Jun 16, 2026, the average yearly pay for model based design engineer in Tucson, AZ is $94,539.00, according to ZipRecruiter salary data. Most workers in this role earn between $70,651.00 and $117,752.00 per year, depending on experience, location, and employer.

What are Model Based Design Engineers?

Model Based Design Engineers are professionals who use mathematical and visual modeling techniques to design, simulate, and validate complex engineering systems. They typically work with tools like MATLAB/Simulink to create virtual prototypes, test control algorithms, and reduce the need for physical prototypes. This approach helps speed up the development process, improve accuracy, and lower costs, especially in industries like automotive, aerospace, and electronics.

What are some common challenges Model Based Design Engineers face when integrating models into existing embedded systems?

Model Based Design Engineers often encounter challenges when integrating simulation models into legacy embedded systems, as these systems may have hardware or software constraints not accounted for in the initial model. Ensuring model fidelity while optimizing for real-time performance and memory usage requires careful design and iterative testing. Collaboration with firmware and hardware teams is crucial to address compatibility issues and streamline deployment. Adopting standardized modeling practices and maintaining clear documentation can help mitigate integration risks and facilitate smoother handoffs between teams.

What is the difference between Model Based Design Engineer vs Simulation Engineer?

AspectModel Based Design EngineerSimulation Engineer
CredentialsBachelor's or Master's in Engineering, certifications in MATLAB/SimulinkBachelor's or Master's in Engineering, experience with simulation tools
Work EnvironmentDesign labs, software development, automotive/ aerospace industriesResearch labs, testing environments, aerospace/automotive sectors
Industry UsageDevelops models for control systems, embedded softwareCreates simulations to test systems, validate designs

The main difference is that Model Based Design Engineers focus on creating and implementing models for system development, often using tools like MATLAB/Simulink, while Simulation Engineers primarily develop and run simulations to validate and test these models or systems. Both roles require strong technical skills and often overlap, but their core responsibilities differ in focus and application.

What are the key skills and qualifications needed to thrive as a Model Based Design Engineer, and why are they important?

To thrive as a Model Based Design Engineer, you need a strong background in control theory, embedded systems, and proficiency in modeling and simulation, typically supported by an engineering degree. Expertise with tools such as MATLAB, Simulink, and experience with software version control systems are commonly required, along with relevant certifications like MATLAB certification. Strong analytical thinking, attention to detail, and effective communication skills help in translating real-world requirements into accurate models and collaborating with cross-functional teams. These skills ensure efficient development and validation of complex systems, minimizing errors and reducing development time.
What are popular job titles related to Model Based Design Engineer jobs in Tucson, AZ? For Model Based Design Engineer jobs in Tucson, AZ, the most frequently searched job titles are:
What cities near Tucson, AZ are hiring for Model Based Design Engineer jobs? Cities near Tucson, AZ with the most Model Based Design Engineer job openings:

Mechanical Design Engineer - Test Systems

AVTC Group

Tucson, AZ โ€ข On-site

Full-time

Medical, Dental, Vision, Retirement, PTO

Posted 12 days ago


Job description

All Qualified candidates will be responded to in 24 hours or less
Ability to obtain and maintain a Secret Security Clearance
Employment type: Full Time W-2 or Contract
Rate: open to Negotiation
Benefits: including Health, Dental Vision, PTO, Holidays, 401K,etc.
Mechanical Design Engineer - Test Systems
Location: Tucson, AZ
Work Type: Onsite
Clearance: U.S. Citizenship required; Secret clearance required or obtainable
Role Summary
We are seeking a Mechanical Design Engineer to support the design and development of mechanical test systems, fixtures, assemblies, and hardware used in aerospace and defense environments.
This role focuses on 3D CAD design, drawing package development, mechanical packaging, environmental test support, and hardware integration for production and engineering test systems.
Key Responsibilities
  • Design and develop mechanical test systems, fixtures, assemblies, and support hardware.
  • Create and maintain 3D CAD models, 2D drawings, and mechanical drawing packages.
  • Use Creo / ProE or similar CAD tools to support mechanical design and documentation.
  • Apply GD&T, tolerance analysis, and mechanical design principles to support manufacturability and performance.
  • Support test systems used in vibration, thermal, hydraulic, RF, electro-optical, and electro-mechanical environments.
  • Integrate and validate mechanical test hardware against accuracy, reliability, and performance requirements.
  • Troubleshoot design, fit, function, reliability, and production-support issues.
  • Recommend design updates to improve performance, reliability, manufacturability, and maintainability.
  • Work with electrical, systems, manufacturing, and test teams on hardware integration.
  • Evaluate production installations and support modifications to resolve equipment or hardware issues.
  • Support design reviews, documentation updates, configuration changes, and release activities.

Required Qualifications
  • Bachelor's degree in Mechanical Engineering or related STEM field.
  • 2+ years of mechanical design, product design, test equipment, or engineering support experience.
  • Experience with 3D CAD tools; Creo / ProE preferred.
  • Experience creating mechanical drawings, assemblies, and drawing packages.
  • Knowledge of GD&T, tolerance analysis, and mechanical design fundamentals.
  • Ability to support hardware design from concept through integration, validation, and production support.
  • Familiarity with manufacturability, fit/function, and design documentation requirements.
  • U.S. Citizenship required.
  • Ability to obtain and maintain a Secret security clearance.

Preferred Qualifications
  • Active Secret clearance.
  • Experience with mechanical test equipment, fixtures, tooling, or production-support hardware.
  • Experience with mechanical packaging, electronic packaging, chassis design, enclosures, or equipment layouts.
  • Familiarity with configuration management tools such as Windchill, cPDM, or similar.
  • Exposure to thermal, structural, vibration, shock, or environmental analysis.
  • Experience supporting environmental test systems, including vibration, shock, thermal, RF, or electro-mechanical testing.
  • Background in aerospace, defense, missile, avionics, or other high-reliability systems.
  • Exposure to model-based design, model-based engineering, or systems engineering concepts.
  • Experience working with manufacturing, production, test, or assembly teams.

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