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Automotive Embedded Firmware Jobs in Michigan (NOW HIRING)

Develop embedded firmware for automotive ECUs, including startup code, peripheral drivers, and low-level hardware abstraction layers (HALs). * Real-Time Operating Systems (RTOS) Integration:

Develop embedded firmware for automotive ECUs, including startup code, peripheral drivers, and low-level hardware abstraction layers (HALs). * Real-Time Operating Systems (RTOS) Integration:

Lead Firmware Engineer

Zeeland, MI · On-site

$100K - $110K/yr

Design, develop, and maintain embedded software and firmware for hardware-integrated systems * Lead ... Automotive embedded systems experience (ADAS, ECUs, sensors) is a plus * Experience with multimedia ...

Sr. Embedded Software Engineer

Farmington Hills, MI · On-site

$122K - $159K/yr

... to develop embedded software for next-generation AD/ADAS platforms. This role goes beyond ... automotive-grade systems, including system-level power architecture, firmware design, and platform ...

Sr. Embedded Software Engineer

Farmington Hills, MI · On-site

$122K - $159K/yr

... to develop embedded software for next-generation AD/ADAS platforms. This role goes beyond ... automotive-grade systems, including system-level power architecture, firmware design, and platform ...

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Automotive Embedded Firmware information

What is automotive embedded firmware?

Automotive embedded firmware refers to the specialized software programmed into microcontrollers and electronic control units (ECUs) within vehicles. This firmware manages critical functions such as engine control, braking systems, infotainment, and advanced driver-assistance systems (ADAS). Unlike general-purpose software, automotive embedded firmware is designed for reliability, real-time performance, and safety in the automotive environment. It is a crucial component that ensures the seamless operation of a vehicle's electronic systems.

What are some common challenges faced by professionals working in automotive embedded firmware development?

Professionals in automotive embedded firmware often encounter challenges such as adhering to strict safety and reliability standards (like ISO 26262), managing complex real-time systems with limited hardware resources, and integrating firmware with various hardware and software components. Collaboration with multidisciplinary teams—including hardware engineers, software developers, and quality assurance specialists—is crucial to ensure seamless integration and compliance. Staying updated with evolving automotive technologies and cybersecurity requirements also adds to the complexity, making continuous learning an important aspect of the role.

What are the key skills and qualifications needed to thrive as an Automotive Embedded Firmware Engineer, and why are they important?

To thrive as an Automotive Embedded Firmware Engineer, you need expertise in C/C++ programming, embedded systems design, and a degree in electrical or computer engineering. Familiarity with automotive communication protocols (like CAN, LIN), debugging tools, and standards such as AUTOSAR and ISO 26262 is typically required. Strong problem-solving, attention to detail, and effective teamwork are crucial soft skills for this role. These competencies ensure the development of reliable, safe, and efficient firmware that meets automotive industry standards.

What is the difference between Automotive Embedded Firmware vs Automotive Software Engineer?

AspectAutomotive Embedded FirmwareAutomotive Software Engineer
CredentialsEmbedded systems certifications, C/C++ programming skillsSoftware development degrees, programming skills in various languages
Work EnvironmentEmbedded hardware, real-time systems, automotive ECUsSoftware applications, vehicle systems, simulation environments
Industry UsageDevelops firmware for vehicle control units and sensorsDesigns and develops automotive software applications and systems

Automotive Embedded Firmware specialists focus on programming and developing firmware directly for vehicle hardware components, often working with real-time operating systems and embedded hardware. Automotive Software Engineers typically develop higher-level software applications for vehicle systems, including user interfaces and vehicle management systems. While both roles require programming skills and automotive industry knowledge, embedded firmware roles are more hardware-centric, whereas software engineering roles focus on software architecture and integration.

Infographic showing various Automotive Embedded Firmware job openings in Michigan as of June 2026, with employment types broken down into 86% Full Time, 13% Part Time, and 1% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution.
Embedded Software / Firmware Engineer - Automotive MCU & SoC

Embedded Software / Firmware Engineer - Automotive MCU & SoC

Stellantis

Auburn Hills, MI • On-site

$97K - $133K/yr

Full-time

Posted 2 days ago


Stellantis rating

7.5

Company rating: 7.5 out of 10

Based on 130 frontline employees who took The Breakroom Quiz

15th of 44 rated automakers


Job description

Build your brand. Tell your story. Take advantage of a rare opportunity to start from the ground up and build something great. We are looking for technology game changers to lead Stellantis into a fundamental transformation within the automotive industry. Technology is going to disrupt the automotive industry significantly in the next decade, and our organization is seeking high-potential candidates to transform the company with a focus on the customer experience. Stellantis's Software Organization (PDT) was created to build the most captivating experiences in the latest frontier of Automotive Technology.
As a hardware engineer, you will be responsible for designing, developing, and optimizing software solutions for microcontroller units (MCUs) used in automotive applications. You will work closely with hardware engineers, system architects, and other software developers to implement firmware and software components that meet the functional, performance, and safety requirements of automotive electronic control units (ECUs).
The main job responsibilities will be:
  • Software Design and Development: Design, implement, and maintain software modules and drivers for automotive MCUs & SOC, ensuring compliance with industry standards and best practices.
  • Embedded Firmware Development: Develop embedded firmware for automotive ECUs, including startup code, peripheral drivers, and low-level hardware abstraction layers (HALs).
  • Real-Time Operating Systems (RTOS) Integration: Integrate real-time operating systems such as FreeRTOS or Zephyr into the MCU & SOC software architecture to support multi-tasking and real-time scheduling requirements.
  • Linux/QNX BSP and Android Guest OS Enablement: Port and customize BSP and Android GVM for automotive platforms.
  • Enable display, audio, camera, and serial interfaces in the SOC. Perform system performance profiling and optimization.
  • Communication Protocol Implementation: Implement communication protocols (e.g., CAN, LIN, Ethernet) and networking stacks to facilitate communication between automotive ECUs and external devices.
  • Integration and Testing: Collaborate with hardware engineers to integrate software components with hardware platforms, and conduct unit testing, integration testing, and validation to ensure software reliability and functionality.
  • Documentation and Compliance: Create and maintain software design documents, interface specifications, and test plans. Ensure compliance with automotive industry standards and regulations, such as MISRA C and ISO 26262

Basic Qualifications:
  • Bachelor's degree in Electrical Engineering, Computer Engineering, or related field.
  • A minimum of 8 years of experience in MCU & SOC design for automotive applications, with a proven track record of successful projects and product launches.
  • Proven experience in embedded software development, with a focus on automotive ECUs.
  • Proficiency in programming languages commonly used in embedded systems development, such as C and C++.
  • Familiarity with automotive communication protocols and standards, including CAN, LIN, and Ethernet.
  • Experience with real-time operating systems (RTOS) and software development tools (e.g., compilers, debuggers, IDEs) for embedded systems.
  • Knowledge of automotive software development processes and standards, such as ISO 26262, and ASPICE.
  • Strong problem-solving skills and attention to detail, with the ability to analyze complex system requirements and implement robust software solutions.
  • Effective communication skills and ability to collaborate with cross-functional teams in a dynamic work environment.

Preferred Qualifications:
  • Experience with automotive functional safety concepts and methodologies, including software FMEA and safety analysis techniques.
  • Familiarity with embedded security principles and protocols, such as secure boot, cryptographic algorithms, and secure communication protocols.
  • Knowledge of automotive networking protocols and standards, including TCP/IP, UDP, and Automotive Ethernet
  • Experience with automotive development tools and platforms, such as Vector CANoe, or similar.
  • Understanding of software-defined automotive architectures and emerging technologies, such as connected vehicles, autonomous driving, and electrification.

Critical Character Traits to Ensure Success:
  • Be curious to ask the right questions
  • Ability to expand depth and breadth expansion
  • Ability to expands to domain(s)
  • Ability to own feature design & implementation
  • Self-starter with the ability to work independently, given minimal supervision/direction
  • Ability to communicate effectively in complex scenarios
  • Ability to develop as a mentor
  • Ability to work in a team environment and be both a team player and task leader
  • Respect and understanding of the Customer/Supplier relationship while embracing partnership

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