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Automotive Embedded Firmware Jobs in Georgia (NOW HIRING)

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 the key skills and qualifications needed to thrive as an automotive embedded firmware engineer?

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 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 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.

Is automotive embedded firmware engineering a good career?

Automotive embedded firmware engineering is a growing field that involves developing software for vehicle control systems, requiring skills in C/C++ and real-time operating systems. It offers opportunities in the automotive industry with a focus on safety, reliability, and compliance with industry standards like ISO 26262. The role typically involves collaboration with hardware teams and may require certifications or specialized training.

What cities in Georgia are hiring for Automotive Embedded Firmware jobs?

Cities in Georgia with the most Automotive Embedded Firmware job openings:

Infographic showing various Automotive Embedded Firmware job openings in Georgia as of August 2026, with employment types broken down into 85% Full Time, 13% Part Time, 1% Contract, and 1% Nights. Highlights an 97% Physical, 1% Hybrid, and 2% Remote job distribution.

Embedded Linux Software Engineer

Alpharetta, GA • On-site

$100 - $130/hr

Other

Re-posted 17 days ago


Job description

Embedded Linux Software Engineer Position Overview

Argon is seeking a highly skilled Embedded Linux Software Engineer with deep expertise in the NXP i.MX95 processor family. In this role, you will design, develop, and optimize Linux-based embedded software, including BSPs, device drivers, kernel modules, boot loaders, root file systems and low‑level system integrations. You will play a key part in architecting next‑generation processing solutions for high‑reliability systems in aerospace, defense, medical, or similar embedded environments.

Key Responsibilities
  • Develop and customize Linux Board Support Packages (BSPs) for the NXP i.MX95 platform, including kernel configuration, U‑Boot updates, and hardware bring‑up.
  • Design, implement, and maintain Linux device drivers, kernel modules, and hardware abstraction layers.
  • Work with Yocto/OpenEmbedded to build, maintain, and optimize embedded Linux distributions.
  • Integrate and validate peripheral interfaces such as PCIe, I2C, SPI, UART, CAN, and Ethernet.
  • Debug hardware–software interactions using oscilloscopes, logic analyzers, JTAG, and other low‑level tools.
  • Collaborate closely with hardware, systems, and engineering during board bring‑up, prototype evaluation, and system integration.
  • Develop robust, production‑quality embedded applications in C/C++ for ARM‑based SoCs.
  • Develop and maintain technical documentation, including design artifacts, test plans, and release notes, in alignment with NPI Phase Gate requirements (SRR, PDR, CDR, TRR).
  • Ensure software complies with performance, reliability, cybersecurity, and program standards.
Essential Skills
  • Strong proficiency in embedded Linux development on ARM‑based architectures.
  • Hands‑on experience with NXP i.MX processors (i.MX8, i.MX9 series; i.MX95 highly preferred).
  • Expertise in Linux kernel internals, driver development, and system‑level debugging.
  • Fluent with Yocto/OpenEmbedded build environments.
  • Strong background in C/C++ and low‑level firmware development.
  • Knowledge of hardware interfaces such as I2C, SPI, PCIe, GPIO, UART, and Ethernet.
  • Experience using JTAG, Lauterbach, or equivalent tools for board bring‑up.
  • Solid understanding of embedded system concepts, memory‑mapped I/O, and bootloaders.
  • Familiarity with Git or other version control systems.
Experience and Education
  • Bachelor’s degree in Electrical Engineering, Computer Engineering, Computer Science, or a closely related technical discipline.
  • A Master’s degree is preferred but not required, especially for candidates with strong hands‑on experience.
  • 7–10+ years of embedded Linux software development experience on ARM‑based SoCs.
  • Significant hands‑on experience with NXP i.MX processors (i.MX8 or i.MX9 required; i.MX95 strongly preferred).
  • Demonstrated experience developing BSPs, device drivers, kernel modules, U‑Boot, and working with Yocto/OpenEmbedded.
  • Strong low‑level debugging experience (JTAG, logic analyzers, board bring‑up).
  • Experience working in regulated or high‑reliability environments (aerospace, defense, medical, automotive) is an advantage.
  • Experience within the defense, aerospace, and/or rugged electronics sectors is highly desirable.
  • U.S. citizenship or lawful immigration status required, and eligibility to obtain a security clearance may be required.
Preferred Qualifications
  • Experience with secure boot, Trusted Execution Environments (TEE), or ARM TrustZone.
  • Exposure to real‑time Linux or mixed RTOS/Linux architectures.
  • Experience with GPU accelerated applications on ARM-based architectures.
  • Background working in aerospace, defense, automotive, or other regulated environments.
  • Scripting experience (Python, Bash) for automation and tooling.
  • Knowledge of safety‑critical or high reliability software practices.
Personal Traits and Characteristics
  • Analytical and detail-oriented with strong problem solving skills.
  • Collaborative, communicative, and effective in cross disciplinary engineering environments.
  • Comfortable working in fast‑paced, evolving technical landscapes.
  • Committed to high‑quality, maintainable, mission‑ready software.
  • Mission-focused: Dedicated to delivering reliable, high‑performance systems that support critical operations.
Physical Demands

The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job.

While performing the duties of this job, the employee is regularly required to sit, talk, see, and hear. The employee is frequently required to walk; use hands to finger, handle, or feel and reach with hands and arms. The employee must occasionally lift and/or move up to 25 pounds. Reasonable accommodation may be made to enable individuals with disabilities to perform the essential functions of this position.

Travel

May require occasional travel (up to 10%) for field service or customer support.

Work Environment

The work environment characteristics described here are representative of those an employee encounters while performing the essential functions of this job.

Office environment with temperature control, may be exposed to chemicals related to the manufacturing process. The noise level in the work environment is usually moderate.

Equal Employment Opportunity (EEO)

ArgonFDS provides Equal Employment Opportunity (EEO) to all employees and applicants for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, age, genetic information, disability, or veteran status.

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