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Embedded Software Engineer Jobs in Portage, MI (NOW HIRING)

Hardware Engineer

Richland, MI · On-site

$115K - $152K/yr

Designing, planning, or setting requirements for necessary test equipment and/or test software ... other engineering evaluation testing * Authors and maintains the Electronic Test Specification ...

IT Project Manager

Three Rivers, MI · On-site

$90K - $107K/yr

Our robust suite of fintech software enables us to support clients such as Stash, Betterment, SoFi ... Background supporting product/engineering teams in a fast-paced environment * Familiarity with ...

C++ Tutor

Kalamazoo, MI · 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 21-28

Embedded Software Engineer information

See Portage, MI salary details

$65.7K

$144K

$163.4K

How much do embedded software engineer jobs pay per year?

As of Aug 18, 2026, the average yearly pay for embedded software engineer in Portage, MI is $144,015.00, according to ZipRecruiter salary data. Most workers in this role earn between $123,500.00 and $162,400.00 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 cities near Portage, MI are hiring for Embedded Software Engineer jobs?

Cities near Portage, MI with the most Embedded Software Engineer job openings:

Infographic showing various Embedded Software Engineer job openings in Portage, MI as of August 2026, with employment types broken down into 1% As Needed, 84% Full Time, 12% Part Time, and 3% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $144,015 per year, or $69.2 per hour.

Test Engineer- Embedded and Firmware Testing

Quantum World Technologies Inc

Richland, MI • On-site

Contractor

Re-posted 7 days ago


Job description

Job Title: Software QA Test Engineer- Embedded and Firmware Testing

Location: Richland, MI (Onsite- 5 days a week)

Hire Type: Long Term Contract

Job Description:

The ideal candidate has strong analytical and problem-solving skills, an understanding of software testing methodologies, and the ability to work collaboratively with cross-functional teams. If you are passionate about delivering high-quality software and improving testing processes, we encourage you to apply. We offer competitive compensation, benefits, and opportunities for career advancement.

Required skills and qualifications.

  • A bachelor’s degree in Electronics, Computer Science, Information Technology, Computer Engineering, or a related field.
  • 8-12 years of proven experience as a quality assurance engineer, software tester, or similar role with expertise in manual and automated testing.
  • Proficiency in programming languages like C, Python
  • Experience with bug tracking and project management tools -JIRA, Bugzilla etc.
  • Understanding of continuous integration/continuous deployment (CI/CD) pipelines and version control systems like Git.
  • Familiarity with Agile methodology and tools (Scrum, Kanban).
  • Strong communication skills for documenting test results and interacting with cross-functional teams.
  • Excellent analytical skills, attention to detail, and problem-solving ability.
  • Ability to work independently as well as collaboratively in a team environment.
  • A curious mindset with a willingness to quickly learn modern technologies and testing tools.

Preferred skills and qualifications

  • Relevant certification in software testing or quality assurance (ISTQB, CSTE, or similar).
  • Experience with performance testing tools
  • Familiarity with cloud-based testing environments (AWS, Azure).
  • Experience with version control and collaboration tools (Git, SVN, VSS, Bitbucket).
  • Knowledge of security testing practices and tools
  • Ability to work in fast-paced environments and manage multiple tasks simultaneously.

Objectives of this role

  • Conduct code reviews: Perform manual and automated analysis of firmware source code (C) to identify coding errors, security weaknesses, and violations of internal standards.
  • Static and dynamic analysis: Utilize Static Application Security Testing (SAST) tools to scan code for potential vulnerabilities without running it. Also, perform dynamic analysis to find vulnerabilities during runtime.
  • Vulnerability assessment: Identify security risks, such as injection flaws, cryptographic issues, and authentication vulnerabilities, and document them in detailed reports.
  • Develop and automate test scripts: Create unit and automated test scripts to ensure individual firmware modules and the overall system behave as intended, providing comprehensive test coverage.
  • System-level testing: Conduct functional, regression, and integration testing on new firmware builds and hardware, using lab equipment such as oscilloscopes and logic analyzers.
  • Ensure compliance: Verify that the firmware meets internal quality standards as well as industry and regulatory requirements.
  • Collaborate on corrections: Work with development, hardware, and product teams to identify risk areas, recommend corrective actions, and verify that bug fixes are successful.
  • Document and report findings: Create detailed reports on audit findings and present summaries to engineers, management, and key stakeholders, translating complex issues into actionable steps.
  • Maintain test environments: Design, implement, and maintain test environments to accurately simulate real-world scenarios for thorough validation.
  • Drive process improvements: Function as an advocate for a quality-first approach throughout the firmware lifecycle, helping to improve development processes and educate developers on secure coding best practices.
  • Collaborate with software engineers to understand system requirements and create comprehensive test plans.
  • Document test results and provide feedback to development teams to ensure issues are fixed before release.
  • Participate in the planning and execution of software releases, ensuring all components meet quality standards.
  • Maintain and update testing scripts, tools, and processes to improve the efficiency and effectiveness of the testing cycle.
  • Ensure that products meet security standards and comply with industry regulations.
  • Report quality metrics and evaluate results for management and stakeholders.
  • Review release notes and product documentation to ensure accuracy and completeness.
  • Provide feedback to the development team on potential improvements in the software design to ensure better testability.
  • Stay updated on the latest software testing tools, trends, and best practices.