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Model Based System Engineer Jobs in Raleigh, NC (NOW HIRING)

... model-based design. * Exposure to firmware validation and embedded system testing. * Strong ... by Control Engineering teams. * Analyze test results, document observations, and generate ...

New

Development methods include C programming language and Model Based Software Design including MATLAB/Simulink. Responsibilities * Design new and enhance existing systems for robust electronics ...

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Model Based System Engineer information

See Raleigh, NC salary details

$52K

$123.7K

$162.3K

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

As of Sep 14, 2026, the average yearly pay for model based system engineer in Raleigh, NC is $123,663.00, according to ZipRecruiter salary data. Most workers in this role earn between $95,300.00 and $152,600.00 per year, depending on experience, location, and employer.

What is a model based system engineer?

A Model Based System Engineer (MBSE) is a professional who uses modeling techniques and tools to design, analyze, and manage complex systems throughout their lifecycle. Instead of relying solely on traditional document-based methods, MBSE professionals create digital models that represent the structure, behavior, and requirements of systems. This approach helps improve understanding, communication, and traceability among stakeholders, leading to more efficient and reliable system development. MBSE is commonly used in industries like aerospace, automotive, defense, and healthcare to manage complex engineering projects.

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

To thrive as a Model Based System Engineer, you need a solid background in systems engineering principles, requirements analysis, and modeling languages like SysML, often supported by a degree in engineering or computer science. Proficiency with modeling tools such as IBM Rhapsody, MagicDraw, or MATLAB/Simulink, and familiarity with systems engineering standards like INCOSE certification, are typically required. Strong analytical thinking, effective communication, and problem-solving abilities are key soft skills in this role. These skills ensure efficient system design, clear stakeholder communication, and successful integration of complex systems in multidisciplinary environments.

How does a model based system engineer typically collaborate with cross-functional teams during a project lifecycle?

Model Based System Engineers work closely with multidisciplinary teams, including software developers, hardware engineers, and project managers, to ensure system models accurately reflect requirements and constraints. They often facilitate communication by translating complex system behaviors into visual models that are easily understood by all stakeholders. Throughout the project lifecycle, they participate in design reviews, update models based on team feedback, and help validate that the final system meets its intended functionality. This collaborative approach helps reduce misunderstandings and streamlines the integration of various subsystems.

What is the difference between Model Based System Engineer vs Systems Engineer?

AspectModel Based System EngineerSystems Engineer
CredentialsTypically requires systems engineering certifications, knowledge of modeling toolsOften holds a bachelor's or master's in engineering, with certifications like INCOSE
Work EnvironmentFocuses on system modeling, simulation, and design using specialized toolsInvolves system integration, testing, and requirements management
Industry UsageCommon in aerospace, defense, automotive, and complex systems industriesWidely used across IT, manufacturing, and engineering sectors

While both roles require strong engineering backgrounds, Model Based System Engineers specialize in creating and analyzing system models to optimize design, whereas Systems Engineers focus on integrating and managing entire systems throughout their lifecycle.

Infographic showing various Model Based System Engineer job openings in Raleigh, NC as of September 2026, with employment types broken down into 100% Full Time. Highlights an 67% In-person, and 33% Hybrid job distribution, with an average salary of $123,663 per year, or $59.5 per hour.

HIL / Power Electronics Validation Engineer

Raleigh, NC • On-site

Other

Posted 5 days ago


Job description

Job Title: HIL / Power Electronics Validation Engineer
Key Responsibilities
  • Design and develop breakout/interface boards for integrating power converter controllers with HIL platforms.
  • Configure and establish OPAL-RT HIL test setups for UPS, DC-DC converters, AC-DC converters, inverters, and related power electronics systems.
  • Develop and maintain real-time HIL models for power circuits and interface circuits using MATLAB/Simulink and Stateflow.
  • Integrate power converter control hardware with HIL environments, including:
    • Signal conditioning and gain configuration
    • Pin mapping and wiring validation
    • Analog and digital I/O configuration
    • Communication interface setup and verification
  • Execute validation activities according to Design Verification Test (DVT) plans.
  • Analyze test results and prepare validation reports and technical documentation.
  • Troubleshoot issues identified during HIL testing and coordinate with Control, Firmware, and System Engineering teams.
  • Support controller algorithm verification, fault injection testing, and system-level validation.
  • Perform hardware/software integration testing in real-time simulation environments.
Skills
  • Hands-on experience in Hardware-in-the-Loop (HIL) testing and validation of power converters.
  • Experience with MATLAB/Simulink and Stateflow model development.
  • Strong knowledge of power electronics systems, including:
    • Inverters
    • UPS systems
    • AC-DC converters
    • DC-DC converters
    • Power conversion control architectures
  • Experience with power converter control algorithms and state machine implementation.
  • Experience with controller-to-HIL interfacing, signal mapping, and I/O configuration.
  • Experience in real-time simulation and model-based design.
  • Ability to debug hardware-software integration issues in real-time simulation environments.
  • Understanding of control systems, embedded controllers, and validation methodologies.
  • Exposure to firmware validation and embedded system testing.
  • Strong analytical, troubleshooting, and problem-solving skills.
  • Ability to work effectively with Control, Firmware, and System Engineering teams.