2

Entry Level Embedded Software Engineer Jobs in Ann Arbor, MI

Senior Software Engineer

Milford, MI ยท On-site

$110 - $170/hr

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 ยท 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 ...

Senior Software Engineer

Milford, MI ยท 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 ยท On-site

$107K - $142K/yr

Embedded controls, software architectures, and design trade offs; Electrical systems, controls and component development and validation; Architecture design controller resource utilization reduction ...

Senior Software Engineer

Milford, MI ยท Hybrid

$107K - $142K/yr

Embedded controls, software architectures, and design trade offs; Electrical systems, controls and component development and validation; Architecture design controller resource utilization reduction ...

next page

Showing results 1-20

Entry Level Embedded Software Engineer information

See Ann Arbor, MI salary details

$68.5K

$150.1K

$170.2K

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

As of Aug 28, 2026, the average yearly pay for entry level embedded software engineer in Ann Arbor, MI is $150,060.00, according to ZipRecruiter salary data. Most workers in this role earn between $128,600.00 and $169,300.00 per year, depending on experience, location, and employer.

What is an entry level embedded software engineer?

An Entry Level Embedded Software Engineer designs, develops, and tests software that runs on embedded systems, such as microcontrollers and IoT devices. They work with low-level programming languages like C and C++, interact with hardware, and optimize system performance. Responsibilities often include writing firmware, debugging code, and collaborating with hardware engineers. This role is ideal for candidates with a background in computer science, electrical engineering, or a related field and a strong understanding of embedded systems concepts.

What does a typical day look like for an entry level embedded software engineer?

A typical day for an Entry Level Embedded Software Engineer often includes writing and reviewing code, testing software on hardware platforms, and debugging issues alongside more experienced team members. You'll likely participate in daily stand-up meetings, collaborate with hardware engineers, and contribute to ongoing projects through documentation or prototype development. While much of the work involves technical programming, you may also have the opportunity to engage in design discussions and learn from senior engineers. This balance of hands-on coding, testing, and teamwork helps you gain practical experience and develop your engineering skills early in your career.

What are the key skills and qualifications needed to thrive as an entry level embedded software engineer?

To succeed as an Entry Level Embedded Software Engineer, strong programming skills in C/C++, understanding of microcontrollers, and a relevant engineering degree are fundamental. Familiarity with embedded development environments, version control systems such as Git, and basic debugging tools is highly valued, though certifications like embedded systems courses can be advantageous. Effective communication, problem-solving abilities, and a willingness to learn help candidates integrate smoothly into multidisciplinary teams. These qualifications are essential because they ensure you can develop, test, and troubleshoot reliable embedded software within collaborative engineering environments.

What are the most commonly searched types of Embedded Software Engineer jobs in Ann Arbor, MI?

The most popular types of Embedded Software Engineer jobs in Ann Arbor, MI are:

What are popular job titles related to Entry Level Embedded Software Engineer jobs in Ann Arbor, MI?

For Entry Level Embedded Software Engineer jobs in Ann Arbor, MI, the most frequently searched job titles are:

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

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

What cities near Ann Arbor, MI are hiring for Entry Level Embedded Software Engineer jobs?

Cities near Ann Arbor, MI with the most Entry Level Embedded Software Engineer job openings:

Infographic showing various Entry Level Embedded Software Engineer job openings in Ann Arbor, MI as of August 2026, with employment types broken down into 91% Full Time, 6% Part Time, and 3% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $150,060 per year, or $72.1 per hour.

Controls / Embedded Software Engineer

Plymouth, MI โ€ข On-site

Optimal Inc.
51 - 200 employees

$125K - $164K/yr

Full-time

Posted 8 days ago


Job description

Position SummaryOptimal EV is seeking a Controls / Embedded Software Engineer to develop and support embedded vehicle control software for electric commercial vehicles.The engineer will work primarily with MATLAB/Simulink, Stateflow, CAN communication, and vehicle controllers to develop vehicle functions, integrate new components, troubleshoot issues, and support software releases across multiple vehicle platforms.Key ResponsibilitiesDevelop embedded control software using MATLAB/Simulink and Stateflow.Develop and maintain software for vehicle controllers including VCU and body control systems.Implement vehicle functions such as:Vehicle startup and shutdownTorque controlRegenerative brakingDrive mode logicCharging controlThermal system controlInterlocks and safety monitoringBody and auxiliary functionsDevelop and maintain CAN communication interfaces.Integrate new components including:InvertersMotorsBattery management systemsChargers and EVCCsDC/DC convertersThermal controllersSmart PDUsBody controllersSupport implementation and integration of EV charging functionality.Support DIN 70121, ISO 15118-2, ISO 15118-20, and V2G development as required.Develop CAN signals, diagnostic messages, DTCs, and DIDs.Analyze CAN logs and vehicle data to troubleshoot software and system issues.Support vehicle testing and software validation.Develop configurable software that can support multiple vehicle platforms.Maintain software versions, calibration files, and release documentation.Support engineering, production, service, and supplier teams with software-related issues.Participate in vehicle commissioning and prototype development.Support software flashing, configuration, and diagnostic tools.Required QualificationsBachelor's degree in Electrical Engineering, Computer Engineering, Mechanical Engineering, Mechatronics, Computer Science, or related field.Experience or coursework involving embedded systems, controls, or automotive software.Experience with MATLAB/Simulink and/or Stateflow.Understanding of CAN communication.Programming experience in C, C++, Python, or similar languages.Strong troubleshooting and analytical skills.Ability to work with both software and physical vehicle systems.Preferred QualificationsExperience developing embedded software for automotive applications.Knowledge of electric vehicle powertrain systems.Experience with CAN, CANalyzer, or similar CAN tools.Familiarity with UDS diagnostics.Experience with model-based development and automatic code generation.Familiarity with charging systems and ISO 15118.Experience with version control systems such as Git.Familiarity with functional safety concepts.What Success Looks LikeVehicle software is stable, configurable, and maintainable across multiple platforms.New vehicle components can be integrated without creating platform-specific software unnecessarily.Software issues are diagnosed efficiently using CAN and vehicle data.Releases are controlled, documented, tested, and reproducible.