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Robotics Embedded Software Engineer Internship Jobs in Troy, MI

Firmware/Embedded Software Engineer

Southfield, MI ยท On-site

$94K - $129K/yr

The role of Road Ready Firmware/Embedded Software Engineer will support the growth of the Road Ready product. Specific duties and responsibilities include: * Design and implement software of embedded ...

Embedded Controls Software Engineer

Allen Park, MI ยท On-site

$119K - $157K/yr

As an Embedded Controls Software Engineer, you will be a critical contributor to the design, development, and validation of advanced embedded control software for next-generation automotive systems.

Embedded Software Engineer

Dearborn, MI ยท On-site

$102K - $192K/yr

Embedded Software Engineer - positions offered by Ford Motor Company (Dearborn, Michigan). Note, this is a hybrid position whereby the employee will work both from home and from the aforementioned ...

Software Engineer III

Novi, MI ยท On-site

$90 - $120/hr

Software Engineer III Indirect Auburn, MI, US 5 days ago Requisition ID: 1547 HL Mando America ... Responsible for embedded software development for automotive products such as Electric Power ...

New

Engineering Position Overview and Objective Astemo's Advanced Development Division is hiring an Senior Engineer to develop embedded software for next-generation AD/ADAS platforms. This role goes ...

Showing results 41-60

Robotics Embedded Software Engineer Internship information

See Troy, MI salary details

$66.3K

$145.4K

$164.9K

How much do robotics embedded software engineer internship jobs pay per year?

As of Aug 8, 2026, the average yearly pay for robotics embedded software engineer internship 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 Robotics Embedded Software Engineer Internship vs Robotics Software Developer?

AspectRobotics Embedded Software Engineer InternshipRobotics Software Developer
CredentialsTypically pursuing or recent graduate in Computer Engineering, Electrical Engineering, or related fieldsBachelor's or Master's in Computer Science, Electrical Engineering, or related disciplines
Work EnvironmentInternship programs in robotics companies, research labs, or startupsFull-time employment in robotics or automation companies, research institutions, or tech firms
Industry UsageEntry-level, focused on learning and supporting embedded systems developmentDeveloping and maintaining embedded software for robotic systems

The main difference is that the Robotics Embedded Software Engineer Internship is an entry-level, temporary position aimed at gaining hands-on experience, while the Robotics Software Developer role is a full-time position focused on designing and implementing embedded software for robotics systems.

What types of projects and responsibilities can a robotics embedded software engineer intern expect during their internship?

As a Robotics Embedded Software Engineer Intern, you will typically work on real-world projects involving the development, testing, and debugging of embedded software for robotic systems. Daily tasks may include writing and optimizing code for microcontrollers, integrating sensors and actuators, and collaborating with hardware and robotics teams to ensure seamless system performance. Interns often participate in code reviews, assist with troubleshooting hardware-software integration issues, and contribute to documentation. This hands-on experience provides valuable exposure to the full product development lifecycle and fosters skills essential for a career in robotics engineering.

What does a robotics embedded software engineer intern do?

A Robotics Embedded Software Engineer Intern works on developing, testing, and optimizing software that runs directly on hardware components within robotic systems. This role involves programming microcontrollers and embedded processors, interfacing with sensors and actuators, and ensuring real-time performance and reliability. Interns often collaborate with hardware engineers and contribute to tasks such as firmware development, debugging, and integrating hardware and software components. The position provides valuable hands-on experience in embedded systems, robotics, and software engineering.

What are the key skills and qualifications needed to thrive as a robotics embedded software engineer intern, and why are they important?

To thrive as a Robotics Embedded Software Engineer Intern, you need a solid foundation in programming languages such as C/C++, embedded systems knowledge, and coursework or experience in robotics or electrical engineering. Familiarity with microcontrollers, real-time operating systems (RTOS), and development tools like oscilloscopes and debuggers is typically expected. Strong problem-solving abilities, attention to detail, and effective team communication help interns excel in collaborative and rapidly changing environments. These skills are crucial for developing reliable, efficient robotic systems and contributing meaningfully to engineering teams.
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Infographic showing various Robotics Embedded Software Engineer Internship job openings in Troy, MI as of July 2026, with employment types broken down into 95% Full Time, 3% Part Time, and 2% Contract. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $145,374 per year, or $69.9 per hour.

Embedded C Software Engineer

Dechen Consulting Group

Dearborn, MI โ€ข On-site

$121K - $159K/yr

Other

Posted 15 days ago


Job description

W2 ONLY PLEASE, NO C2C

As an Embedded Controls Software Engineer, you will be a critical contributor to the design, development, and validation of advanced embedded control software for next-generation automotive systems. This specialized role focuses on the Body Control Module, directly impacting vehicle safety, user experience, and electrification readiness. You will leverage your expertise in controls theory, real-time systems, and embedded architecture to architect, develop, and optimize complex, safety-critical software throughout the entire product lifecycle. The Body Control Software team is a team dedicated to creating Body Control Application Software components, developing and enhancing existing software components that integrate with existing architectures, as well as our next-generation vehicle systems. 

PRIMARY SKILLS REQUIRED: 
Embedded Software 
โ€“ Candidate should demonstrate the full lifecycle of embedded software development 
โ€” from requirements to implementation to on-target validation 
โ€” for safety-critical automotive systems. 
Example: Taking a system-level requirement for a new BCM feature, translating it into a functional spec, implementing the control logic, and validating it through SIL/HIL testing using Vector CANoe before production release. 
5. Embedded Systems 
โ€“ Candidate should understand the broader hardware-software interaction, real-time constraints, and communication protocols (CAN/LIN) governing embedded automotive systems.
Example: Diagnosing a field issue where a BCM module intermittently fails to respond over CAN, performing root cause analysis using CANoe traces and the MULTI debugger, and implementing a fix that accounts for timing/interrupt behavior on the target ECU.

Skills Required:
Matlab, Coding, C++, Embedded Software, Embedded Systems 
1. MATLAB โ€“ Candidate should demonstrate hands-on experience using MATLAB/Simulink (including Stateflow) to model, design, and simulate embedded control algorithms for BCM features. 
Example: Building a Simulink state machine to model a vehicle lighting or door control feature, running Model-in-the-Loop (MIL) simulations to validate logic, and using Model Advisor checks to ensure modeling standards compliance before code generation. 
2. Coding โ€“ Candidate should be able to write clean, efficient, and standards-compliant code for embedded automotive applications, including scripting for automation. Example: Developing a Python automation script to parse test logs and auto-generate pass/fail reports, reducing manual validation time during regression testing cycles. 
3. C++ - Candidate should show proficiency writing and debugging C/C++ code for real-time, resource-constrained embedded targets, including implementing AUTOSAR software components. 
Example: Implementing a C++ AUTOSAR SWC (Software Component) for a BCM feature (e.g., power window control), integrating it via DaVinci Developer, and validating memory/timing constraints on target hardware.