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Automotive Embedded Software Engineer Jobs in Georgia

Director Engineering - Embedded Software

Atlanta, GA · Hybrid

$126K - $166K/yr

As Director Engineering - Embedded Software at Honeywell Technologies, you will serve as the hands-on technical execution leader responsible for deploying AI-first platforms onto embedded devices and ...

Embedded Engineer

Atlanta, GA · On-site

$126K - $166K/yr

Embedded Engineer Location - Atlanta, Georgia 7 to 10 years * 7+ years relevant experience with C ... Work with Software Development Kits (SDKs) to implement and customize embedded solutions.

Director Engineering - Embedded Software

Atlanta, GA · Hybrid

$126K - $166K/yr

As Director Engineering - Embedded Software at Honeywell Technologies, you will serve as the hands-on technical execution leader responsible for deploying AI-first platforms onto embedded devices and ...

Mentors less experienced software engineers. * Determines hardware compatibility and/or influences ... Experience with IAR embedded workbench (preferred), Microsoft Visual Studio, and Qt. * Experience ...

Senior Embedded Software Engineer

Duluth, GA

$114K - $149K/yr

Mentors less experienced software engineers. * Determines hardware compatibility and/or influences ... Experience with IAR embedded workbench (preferred), Microsoft Visual Studio, and Qt. * Experience ...

Bachelors Degree or equivalent in a STEM discipline * 5+ years of embedded software development experience * C++ development for safety-critical avionics systems * Real-Time Operating Systems (MOSA ...

Showing results 41-60

Automotive Embedded Software Engineer information

See Georgia salary details

$59.1K

$129.5K

$146.9K

How much do automotive embedded software engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for automotive embedded software engineer in Georgia is $129,514.00, according to ZipRecruiter salary data. Most workers in this role earn between $111,000.00 and $146,100.00 per year, depending on experience, location, and employer.

What does an automotive embedded software engineer do?

An Automotive Embedded Software Engineer designs, develops, tests, and maintains software systems that are integrated into vehicles. These systems control a wide range of automotive functions, such as engine management, infotainment, advanced driver-assistance systems (ADAS), and safety features. The engineer works closely with hardware teams to ensure the software interacts seamlessly with vehicle electronics, adhering to industry standards for safety and reliability. Their work helps improve vehicle performance, safety, and user experience.

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

To thrive as an Automotive Embedded Software Engineer, you need strong programming skills in C/C++, deep knowledge of embedded systems, and a relevant engineering degree. Familiarity with automotive-specific tools and standards such as MATLAB/Simulink, CAN protocol, AUTOSAR, and ISO 26262 certification is typically required. Problem-solving ability, attention to detail, and effective teamwork are crucial soft skills for this role. These skills ensure the development of reliable, safe, and efficient automotive software systems that meet industry standards and customer expectations.

What are some common challenges faced by automotive embedded software engineers when working with cross-functional teams?

Automotive Embedded Software Engineers often collaborate closely with hardware engineers, systems architects, and quality assurance teams. One common challenge is ensuring seamless integration between software and hardware components, which requires clear communication and thorough documentation. Additionally, aligning on safety standards and meeting rigorous automotive compliance requirements can add complexity to project timelines. Effective teamwork and adaptability are essential for navigating these challenges and delivering reliable embedded solutions.

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

AspectAutomotive Embedded Software EngineerAutomotive Software Developer
CredentialsBachelor's in Computer Engineering, Electrical Engineering, or related; knowledge of embedded systemsBachelor's in Computer Science or Software Engineering; programming skills
Work EnvironmentEmbedded systems in vehicles, real-time OS, hardware integrationApplication-level software, vehicle interfaces, user experience
Industry UsageDesigning firmware for ECUs, control units, safety systemsDeveloping vehicle infotainment, navigation, or telematics software

Automotive Embedded Software Engineers focus on developing firmware and low-level software for vehicle control units, working closely with hardware. Automotive Software Developers typically work on higher-level applications like infotainment systems. Both roles require programming skills, but embedded engineers often have specialized knowledge of real-time systems and hardware integration.

What are the most commonly searched types of Automotive Embedded Software Engineer jobs in Georgia?

The most popular types of Automotive Embedded Software Engineer jobs in Georgia are:

Infographic showing various Automotive Embedded Software Engineer job openings in Georgia as of August 2026, with employment types broken down into 89% Full Time, 8% Part Time, and 3% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $129,514 per year, or $62.3 per hour.

Control Systems/Embedded Software Engineer I

Hampton, GA • On-site

$80 - $100/hr

Other

Posted 7 days ago


Key responsibilities

  • Develop and implement control algorithms for voltage regulation, reactive power compensation, power quality, and system stability in multilevel converter STATCOMs.

  • Validate control performance under various grid conditions using simulation tools and analyze system‑level interactions to optimize response and harmonic mitigation.

  • Collaborate with hardware and control systems engineers to integrate control software into prototypes, support real‑time operation, and develop communication protocols for grid interface.


Job description

Control Systems/Embedded Software Engineer I

The Control Systems/Embedded Software Engineer will be a key member of the development team for multilevel converter technologies, such as Static Synchronous Compensators (STATCOMs), for applications in renewable energy and grid infrastructure focusing on the design and implementation of advanced control strategies to enhance grid stability, voltage regulation, power quality, and reactive power management. This role involves developing sophisticated algorithms, performing simulations to evaluate system dynamics and fault scenarios, and collaborating with power electronics and hardware teams to integrate controls into high‑voltage FACTS devices. The ideal candidate will possess strong analytical skills, expertise in control theory, and a passion for innovating solutions that support renewable energy integration and power system reliability in a fast‑paced engineering environment.

Essential Functions
  • Develop and implement control algorithms for voltage regulation, reactive power compensation, power quality, and system stability in multilevel converter STATCOMs, utilizing techniques such as PI controllers, model predictive control (MPC), or adaptive control methods.
  • Validate control performance under various grid conditions using software tools like MATLAB/Simulink, PSCAD/EMTDC, or OPAL‑RT, simulating dynamic responses, transient behaviors, and fault handling.
  • Analyze system‑level interactions between control strategies and multilevel converter topologies (e.g., modular multilevel converters or cascaded H‑bridge), optimizing for reduced oscillations, improved response time, and harmonic mitigation.
  • Collaborate with power electronics engineers, firmware developers, and test teams to integrate control software into prototypes, ensuring seamless hardware‑software compatibility and real‑time operation.
  • Collaborate with power electronics and other control systems engineers to translate hardware requirements into firmware, supporting integration testing and hardware‑in‑the‑loop (HIL) simulations.
  • Conduct stability analysis, including small‑signal modeling and eigenvalue assessments, to ensure robust performance during disturbances like faults or load changes.
  • Design and tune protection mechanisms, such as overvoltage/undervoltage detection and fault ride‑through capabilities, to comply with grid codes and standards (e.g., IEEE 519 for harmonics).
  • Perform root cause analysis on simulation discrepancies or control failures, iterating designs to enhance reliability and efficiency.
  • Prepare technical documentation, including control flow diagrams, simulation reports, and performance metrics, for internal reviews and regulatory submissions.
  • Manage hardware component obsolescence issues of existing control platforms.
  • Program microcontrollers and DSPs to implement real‑time control algorithms, system monitoring, and data processing for multilevel converter STATCOM operations.
  • Develop and integrate communication protocols such as Modbus, DNP3, IEC 61850, or Ethernet‑based standards to facilitate seamless interaction with supervisory control and data acquisition (SCADA) systems and grid interfaces.
  • Design and optimize embedded software for low‑latency execution, resource efficiency, and robustness in high‑power environments, using languages like C/C++ or assembly.
  • Conduct code reviews, debugging, and performance profiling to identify and resolve issues in real‑time control loops and interrupt handling.
  • Develop and maintain software documentation, including code comments, architecture diagrams, and user manuals.
  • Support internal audits and enforce adherence to documented policies and procedures to uphold quality of designs.
  • Stay current with advancements in control technologies for power system, embedded technologies, real‑time operating systems (RTOS), and cybersecurity practices for power system applications.
Minimum Qualifications
  • Bachelor's degree in electrical engineering or a related field.
  • At least 5 years of professional experience in control systems design, preferably in power electronic converter control.
  • Proven expertise in developing control algorithms for voltage and reactive power management, with hands‑on experience in PI controllers, MPC, or similar methods.
  • Proven expertise in programming microcontrollers (e.g., ARM Cortex‑M) and DSPs (e.g., TMS320 series) for real‑time applications.
  • Strong proficiency in simulation tools such as MATLAB/Simulink, PSCAD, or equivalent for modeling dynamic systems and fault scenarios.
  • Solid understanding of power system dynamics, stability analysis, and multilevel converter operations in high‑voltage environments.
  • Solid understanding of real‑time control principles, interrupt service routines, and hardware‑software interfacing in high‑voltage systems.
  • Experience with real‑time control implementation, including DSPs or microcontrollers, and knowledge of communication protocols like DNP3.
  • Excellent analytical and problem‑solving skills, with the ability to work collaboratively in multidisciplinary teams.
  • Familiarity with debugging tools (e.g., JTAG, oscilloscopes) and version control systems (e.g., Git).
  • Strong communication skills for technical documentation and team collaboration.
Preferred Qualifications
  • Master's or Ph.D. in Electrical Engineering with a focus on Control Systems or Power Systems.
  • 7+ years of experience, including work on multilevel converter‑based systems or grid‑connected inverters in renewable energy applications.
  • Familiarity with advanced simulation environments (e.g., hardware‑in‑the‑loop testing) and optimization techniques for control parameters.
  • Experience with embedded programming in C/C++ for control firmware development.
  • Knowledge of machine learning applications in predictive control or fault detection for power systems.
  • Advanced knowledge of cybersecurity for embedded devices, such as secure boot and encryption, in compliance with standards like IEC 62443.
  • Experience with model‑based design tools (e.g., MATLAB/Simulink Embedded Coder) for automatic code generation and HIL testing.
Locations

Main Office and Plant
30 Georgia Ave
Hampton, GA 30228, USA

Equal Opportunity Employer
This employer is required to notify all applicants of their rights pursuant to federal employment laws. For further information, please review the Know Your Rights notice from the Department of Labor.

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