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Entry Level Graduate Embedded Software Engineer Jobs in Troy, MI

The engineer is expected to continuously develop technical skills and actively participate in ... Support embedded software development activities for automotive and edge-computing systems when ...

Senior Software Engineer

Milford, MI · Hybrid

$107K - $142K/yr

Five (5) year of experience as a Senior Technical Embedded Software Engineering, Technical Leader, Project Lead, Senior Software Engineer, or related occupation. OR Master's degree in Mechanical ...

Senior Software Engineer

Milford, MI · On-site

$107K - $142K/yr

Five (5) year of experience as a Senior Technical Embedded Software Engineering, Technical Leader, Project Lead, Senior Software Engineer, or related occupation. OR Master's degree in Mechanical ...

We are seeking an Embedded Systems Engineer with strong experience in embedded hardware and software development, automotive interfaces, Linux-based systems, and hardware-in-the-loop (HiL) testing.

We are seeking an Embedded Systems Engineer with strong experience in embedded hardware and software development, automotive interfaces, Linux-based systems, and hardware-in-the-loop (HiL) testing.

We are seeking an Embedded Systems Engineer with strong experience in embedded hardware and software development, automotive interfaces, Linux-based systems, and hardware-in-the-loop (HiL) testing.

Showing results 21-40

Entry Level Graduate Embedded Software Engineer information

See Troy, MI salary details

$66.3K

$145.4K

$164.9K

How much do entry level graduate embedded software engineer jobs pay per year?

As of Sep 15, 2026, the average yearly pay for entry level graduate embedded software engineer in Troy, MI is $145,374.00, according to ZipRecruiter salary data. Most workers in this role earn between $124,600.00 and $164,000.00 per year, depending on experience, location, and employer.

What is the difference between Entry Level Graduate Embedded Software Engineer vs Embedded Software Developer?

AspectEntry Level Graduate Embedded Software EngineerEmbedded Software Developer
Required CredentialsBachelor's degree in Computer Engineering, Electrical Engineering, or related fieldBachelor's or higher in a relevant technical field, with some roles preferring certifications
Work EnvironmentDesigning, testing, and debugging embedded systems in hardware-focused environmentsDeveloping and maintaining embedded software across various hardware platforms
Industry UsageCommonly used in automotive, consumer electronics, and IoT industriesWidely used in similar industries, often with more experience required

Entry Level Graduate Embedded Software Engineers typically focus on learning and supporting embedded system development, while Embedded Software Developers often have more experience and handle more complex software tasks. Both roles are essential in embedded systems projects, but the engineer role is more entry-level and learning-oriented.

What job categories do people searching Entry Level Graduate Embedded Software Engineer jobs in Troy, MI look for?

The top searched job categories for Entry Level Graduate Embedded Software Engineer jobs in Troy, MI are:

Infographic showing various Entry Level Graduate Embedded Software Engineer job openings in Troy, MI as of August 2026, with employment types broken down into 83% Full Time, 13% Part Time, 1% Temporary, and 3% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $145,374 per year, or $69.9 per hour.

Controls / Embedded Software Engineer

Plymouth, MI • On-site

Optimal Inc.
51 - 200 employees

$79K - $102K/yr

Full-time

This job post has expired today. Applications are no longer accepted.


Key responsibilities

  • Develop embedded control software for vehicle functions using MATLAB/Simulink and Stateflow.

  • Develop and maintain software for vehicle controllers and CAN communication interfaces, including integration of new components.

  • Support vehicle testing, software validation, troubleshooting, and software releases across multiple vehicle platforms.


Job description


Position Summary

Optimal EV is seeking a Vehicle Controls Engineer to develop, integrate, calibrate, test, and validate vehicle control systems for electric commercial vehicles.

The engineer will work with MATLAB/Simulink, Stateflow, CAN communication, vehicle controllers, and vehicle test data to support vehicle control development across multiple platforms.

This is a hands-on engineering role. The engineer will work directly on prototype and production-intent vehicles to troubleshoot issues, perform calibration, collect data, validate control functions, and support vehicle commissioning.

The ideal candidate should have a strong understanding of control systems, vehicle dynamics, electric vehicle systems, CAN communication, and vehicle-level testing.

Key Responsibilities

Develop and maintain vehicle control software using MATLAB/Simulink and Stateflow.

Develop, integrate, and calibrate vehicle control functions across multiple vehicle platforms.

Support vehicle dynamics, drivability, powertrain, thermal, charging, and body control development.

Apply control-system principles to improve vehicle performance, stability, efficiency, and overall behavior.

Develop and tune control algorithms, state machines, fault handling, and system logic.

Integrate new electrical and electronic components into the vehicle control system.

Develop and maintain CAN communication interfaces and vehicle signals.

Support vehicle diagnostics, fault detection, and troubleshooting.

Analyze CAN logs, measurement data, and vehicle behavior to identify root causes.

Perform hands-on vehicle calibration, commissioning, and validation.

Conduct road testing and vehicle-level functional testing.

Support software flashing, controller configuration, and calibration updates.

Reproduce production and field issues and validate corrective actions.

Perform regression testing after software, calibration, or component changes.

Support EV charging and high-voltage system integration and validation.

Develop configurable software and calibration strategies that support multiple vehicle platforms.

Maintain software versions, calibration files, and release documentation.

Support software release and validation activities.

Work closely with Mechanical, Electrical, Vehicle Integration, Production, Quality, and Service teams.

Work with suppliers to support component integration and troubleshooting.

Support prototype vehicle builds and engineering development activities.

Drive controls-related issues through root-cause analysis, corrective action, validation, and closure.

Required Qualifications

Bachelor's degree in Mechanical Engineering, Electrical Engineering, Automotive Engineering, Mechatronics, Controls Engineering, or related field.

Experience with control systems, automotive controls, embedded systems, or vehicle development.

Experience with MATLAB/Simulink and/or Stateflow.

Understanding of vehicle dynamics and vehicle system behavior.

Understanding of CAN communication.

Strong analytical and troubleshooting skills.

Ability to work with software, electrical systems, and physical vehicle systems.

Comfortable working directly on vehicles in a shop or development environment.

Ability to perform hands-on vehicle testing, calibration, and troubleshooting.

Ability to analyze vehicle data and clearly document results.

Strong problem-solving, communication, and cross-functional teamwork skills.

Preferred Qualifications

Experience with electric or commercial vehicles.

Experience with vehicle controls development and calibration.

Experience with vehicle dynamics or drivability development.

Experience with model-based development and automatic code generation.

Experience with CAN tools such as CANalyzer, CANoe, or similar.

Familiarity with vehicle diagnostics and UDS.

Knowledge of high-voltage electric vehicle systems.

Familiarity with EV charging systems.

Experience with vehicle testing and data analysis.

Programming experience in C, C++, Python, or similar languages.

Familiarity with version control systems such as Git.

Familiarity with functional safety concepts.

What Success Looks Like

Vehicle control systems are stable, reliable, and properly calibrated.

Vehicle behavior meets engineering and performance requirements.

Control functions work consistently across different vehicle platforms and operating conditions.

Vehicle issues can be diagnosed efficiently using data and hands-on testing.

New components and systems are integrated and validated effectively.

Control changes are tested on the vehicle before production release.

Software and calibration releases are controlled, documented, and reproducible.

Controls-related issues are identified and resolved before they reach production or customers.