1

Embedded Software Engineer Jobs in Chattanooga, TN

BU PURCHASING PROJECT PROFESSIONAL

Chattanooga, TN · On-site

$16.25 - $21/hr

Bachelor, Business, Engineering, Communications, Supply Chain or related. Twelve months' experience ... embedded software and digital solutions. With 11.5 billion in revenue in 2025, 152 factories, 40 R& ...

BU PURCHASING PROJECT PROFESSIONAL

Chattanooga, TN · On-site

$16.25 - $21/hr

Bachelor, Business, Engineering, Communications, Supply Chain or related. Twelve months' experience ... of embedded software and digital solutions. With €11.5 billion in revenue in 2025, 152 factories ...

Hardware Engineer I

Chattanooga, TN · On-site

$18 - $25/hr

... with our software. This is an early-career role ideal for a hands-on builder who wants their ... in Computer/Electrical Engineering, Computer Science, or equivalent hands-on experience ...

C++ Tutor

Chattanooga, TN · Remote

$18 - $40/hr

... programming to operating systems, embedded systems, and high-performance computing applications ... level software development. * Effective Teaching Methods: Ability to identify concepts students ...

Showing results 41-57

Embedded Software Engineer information

See Chattanooga, TN salary details

$63.7K

$139.7K

$158.4K

How much do embedded software engineer jobs pay per year?

As of Sep 3, 2026, the average yearly pay for embedded software engineer in Chattanooga, TN is $139,660.00, according to ZipRecruiter salary data. Most workers in this role earn between $119,700.00 and $157,500.00 per year, depending on experience, location, and employer.

What is an embedded software engineer?

Embedded Software Engineers are professionals who design, develop, and maintain software that runs on embedded systems—specialized computing devices that are part of larger systems, such as cars, medical devices, industrial machines, and consumer electronics. Their work involves programming in languages like C or C++ to interact closely with hardware components, ensuring optimal performance, reliability, and safety. Embedded Software Engineers work closely with hardware engineers to integrate and test software with physical devices, often working within real-time and resource-constrained environments. Their expertise is crucial in developing the 'brains' of many devices we use every day.

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

To thrive as an Embedded Software Engineer, you need a solid background in computer science or electrical engineering, strong programming skills in C/C++, and experience with embedded systems design. Familiarity with real-time operating systems (RTOS), microcontroller architectures, debugging tools, and version control systems like Git is typically required. Excellent problem-solving abilities, attention to detail, and effective communication skills set top engineers apart. These competencies are crucial for building reliable, efficient, and safe embedded solutions that meet industry standards.

How does an embedded software engineer typically collaborate with hardware engineers during product development?

Embedded Software Engineers work closely with hardware engineers throughout the product development lifecycle. Collaboration often involves joint design reviews, debugging sessions, and integration testing to ensure software and hardware function seamlessly together. Effective communication is crucial, as changes in hardware can impact software functionality and vice versa. This cross-disciplinary teamwork helps resolve technical issues quickly and ensures the end product meets performance and reliability standards.

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

AspectEmbedded Software EngineerFirmware Engineer
CredentialsBachelor's in Computer Engineering, Electrical Engineering, or related fields; often requires knowledge of C/C++Similar credentials; strong C/C++ skills, understanding of hardware
Work EnvironmentDevelops software for embedded systems in various industries like automotive, IoT, consumer electronicsFocuses on low-level hardware interaction, often working closely with hardware teams
Industry UsageCommon in automotive, medical devices, consumer electronics, industrial automationPrimarily in consumer electronics, IoT devices, and hardware startups

Embedded Software Engineers design and develop software for embedded systems, focusing on system-level programming. Firmware Engineers write low-level code that directly interacts with hardware components. While both roles require similar skills and work environments, Embedded Software Engineers often work on a broader range of software, whereas Firmware Engineers focus on hardware-specific code. Understanding these differences helps in choosing the right career path or job search focus.

Are embedded software engineers in demand?

Embedded software engineers are in high demand due to the growth of IoT, automotive, medical devices, and consumer electronics industries. They often require skills in C, C++, and real-time operating systems, with job opportunities increasing globally as embedded systems become more integral to technology development.

What are the most commonly searched types of Embedded Software Engineer jobs in Chattanooga, TN?

The most popular types of Embedded Software Engineer jobs in Chattanooga, TN are:

What are popular job titles related to Embedded Software Engineer jobs in Chattanooga, TN?

For Embedded Software Engineer jobs in Chattanooga, TN, the most frequently searched job titles are:

What job categories do people searching Embedded Software Engineer jobs in Chattanooga, TN look for?

The top searched job categories for Embedded Software Engineer jobs in Chattanooga, TN are:

What cities near Chattanooga, TN are hiring for Embedded Software Engineer jobs?

Cities near Chattanooga, TN with the most Embedded Software Engineer job openings:

Infographic showing various Embedded Software Engineer job openings in Chattanooga, TN as of August 2026, with employment types broken down into 70% Full Time, 10% Part Time, and 20% Contract. Highlights an 60% In-person, 10% Hybrid, and 30% Remote job distribution, with an average salary of $139,660 per year, or $67.1 per hour.

Instructor - Electrical Engineering Technology, Computer & Power Systems (9 month Tenure-Track)

TNBR Careers

Chattanooga, TN • On-site

Full-time

Re-posted 26 days ago


Job description

We have an opening for a 9‑month, tenure-track Electrical/Electronics Engineering Technology, Computer and Power Systems Instructor position at our Chattanooga State campus!

Our Purpose - We support and empower everyone in our community to learn without limits.
Our Values:
- We cultivate a welcome and supportive environment. 

- We care about the well-being of each other.

- We instill trust through integrity and transparency.

Our Mission - We are Chattanooga State, a dedicated team that delivers accessible, innovative learning opportunities that surpass expectations.  Together, we enrich the lives of students, and their families; develop a talented workforce; and partner with our community to lead boldly into the future.

Position Summary

Responsible for classroom, laboratory, and curriculum development activities related to Electrical Engineering Technology, Power Systems, Computer Systems, and Digital Controls coursework. Instruction may include microcomputer systems, microprocessor-based control systems, digital industrial control systems, SCADA systems, transmission operations, protection and control systems, smart grid technologies, and industrial networking. Faculty are expected to support workforce-aligned program innovation and maintain strong industry partnerships.

Essential Job Functions And ResponsibilitiesTeaching Excellence and Program Innovation
  • Teach lecture and laboratory courses in electrical engineering technology, computer systems, embedded systems, microprocessor-based controls, digital industrial control systems, and power systems operations
  • Develop and maintain curriculum aligned with industry standards in power systems, digital controls, SCADA systems, sensors, and smart grid technologies
  • Deliver engaging, effective instruction that supports student learning and success
  • Develop, maintain, and continuously improve hands-on laboratory environments that reflect modern industrial automation practices
  • Utilize industry-standard hardware and software platforms related to industrial networking, SCADA systems, embedded systems, and digital controls
  • Support development and implementation of emerging curriculum areas including Systems Operations, Power Distribution Systems, and Smart Grid Technologies
  • Support interdisciplinary instruction within Electrical Engineering Technology, Mechatronics Technology, and related Engineering & Information Technologies programs
  • Collaborate with industry partners such as TVA and regional utilities to maintain workforce relevance and support experiential learning opportunities
  • Maintain laboratory equipment and support safe operation of computer systems and power systems training equipment
Organizational Culture
  • Collaborate with faculty, staff, and administration to support program and college goals
  • Foster a positive, inclusive, and student-centered learning environment
  • Engage industry partners to support workforce alignment and program relevance
  • Participate in departmental meetings, professional development, and service activities
  • Maintain accurate records, analyze assessment data, compile reports, and meet deadlines
  • Use proactive strategies to prevent and resolve conflicts effectively
  • Ensure compliance with federal, state, regulatory, and college policies
Holistic Student Support
  • Model compassionate professionalism for students
  • Recognize that students learn differently and adapt teaching strategies accordingly
  • Integrate programs and activities to enhance the student experience
  • Share student resources and diverse learning opportunities
  • Encourage students to try different study strategies
  • Monitor progress to support student success
  • Refer students to counseling resources as needed
QualificationsRequired

Bachelor’s degree in a qualifying field, or Associate’s degree in a qualifying field with certifications, or Associate’s degree in a qualifying field and two (2) years of applicable work experience, or nationally recognized certification within subject matter, or by exception. Teaching experience is a plus.

Qualifying Fields: Electrical Engineering, Electrical Engineering Technology, Computer Engineering Technology, Mechatronics, Electromechanical Engineering Technology, Engineering Technology, Engineering, Computer Systems Technology, Industrial Technology, or related technical field.

Experience or knowledge in one or more of the following areas is required:

  • Electrical systems and electronics
  • Microcomputer or embedded systems
  • Sensors (RF, Laser and Optics, etc.)
  • Digital industrial controls
  • Industrial networking or SCADA systems
  • Power systems or utility technologies
  • Maintaining equipment, software updates, or technical systems maintenance
Preferred

Master’s degree in a qualifying field

Experience with:

  • Industrial or utility-sector experience related to power systems, SCADA, or digital controls
  • Transmission operations, protection and control, or smart grid technologies
  • Teaching or workforce training experience

Industry certifications or manufacturer training credentials are a plus.

Special requirements and conditions

Flexible schedule and some travel required; must have a valid vehicle operator’s license.

Work with dual-enrollment high school students (background check will be required).

Salary Range: $41,555 - $50,900

* All applicant submissions must include a CV/Resume, References, and Unofficial Transcript attachments. *