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Embedded Software Verification Engineer Jobs in Cincinnati, OH

... strategy, verification, and issue resolution. • Define and drive software architectures ... time embedded systems, model-based development, data processing, connectivity, or cyber ...

Experience with embedded software (C and/or C++) * Medical device, diagnostics, or other regulated ... Supporting verification, validation, or regulatory submission documentation Mammotome, a Danaher ...

Experience with embedded software (C and/or C++) * Medical device, diagnostics, or other regulated ... Supporting verification, validation, or regulatory submission documentation Mammotome, a Danaher ...

Hogan Senior Software Engineer

Cincinnati, OH · On-site

$117K - $155K/yr

... engineering standards embedded into development standards - Embraces emerging technology ... E-Verify U.S. Bank participates in the U.S. Department of Homeland Security E-Verify program in all ...

Digital Design Engineer

West Chester, OH · On-site

$128K/yr

Embedded C/C++ coding, compiling, debugging, and integration with digital hardware. * Develop ... Test firmware for compliance to requirements, verification of functionality and performance using ...

Showing results 21-40

Embedded Software Verification Engineer information

See Cincinnati, OH salary details

$67.2K

$147.2K

$166.9K

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

As of Aug 8, 2026, the average yearly pay for embedded software verification engineer in Cincinnati, OH is $147,168.00, according to ZipRecruiter salary data. Most workers in this role earn between $126,200.00 and $166,000.00 per year, depending on experience, location, and employer.

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

To thrive as an Embedded Software Verification Engineer, a strong background in embedded systems, programming (C/C++), and software testing methodologies is essential, typically supported by a degree in computer science, electrical engineering, or a related field. Familiarity with tools such as MATLAB/Simulink, debuggers, oscilloscopes, and verification frameworks, as well as certifications like ISTQB, are commonly required. Attention to detail, problem-solving abilities, and effective communication help engineers identify issues and work collaboratively in cross-functional teams. These skills ensure the development of reliable, safe, and high-quality embedded systems in safety-critical industries.

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

AspectEmbedded Software Verification EngineerEmbedded Software Developer
Primary FocusVerifying and validating embedded software to ensure quality and reliabilityDesigning, coding, and implementing embedded software solutions
Skills & CertificationsKnowledge of testing tools, verification processes, embedded systems, certifications like ISTQBProficiency in programming languages (C, C++), embedded systems, software development certifications
Work EnvironmentTesting labs, development teams, quality assurance departmentsDevelopment teams, R&D labs, product engineering

While both roles require embedded systems knowledge and programming skills, the Embedded Software Verification Engineer primarily focuses on testing, validation, and ensuring software quality, whereas the Embedded Software Developer concentrates on creating and implementing embedded software solutions.

What are some common challenges faced by embedded software verification engineers during the validation process?

Embedded Software Verification Engineers often encounter challenges such as limited hardware availability, rapidly changing requirements, and integration issues with multiple hardware and software components. Debugging in an embedded environment can be more complex due to constrained system resources and limited visibility into the hardware-software interactions. Collaborating closely with both hardware and firmware teams is essential to quickly identify and resolve defects, making strong communication and problem-solving skills crucial for success in this role.

What does an embedded software verification engineer do?

An Embedded Software Verification Engineer is responsible for ensuring that embedded software systems function correctly and meet design requirements. They create and execute tests, analyze results, and identify software defects in embedded systems such as automotive controllers, medical devices, or consumer electronics. This role typically involves working closely with software developers and hardware engineers to review code, develop test plans, and use debugging tools to validate the software’s functionality, performance, and safety. Their work is crucial for delivering reliable products that operate safely and efficiently in real-world environments.
What are popular job titles related to Embedded Software Verification Engineer jobs in Cincinnati, OH? For Embedded Software Verification Engineer jobs in Cincinnati, OH, the most frequently searched job titles are:
What job categories do people searching Embedded Software Verification Engineer jobs in Cincinnati, OH look for? The top searched job categories for Embedded Software Verification Engineer jobs in Cincinnati, OH are:
What cities near Cincinnati, OH are hiring for Embedded Software Verification Engineer jobs? Cities near Cincinnati, OH with the most Embedded Software Verification Engineer job openings:

Staff Software Engineer

GE Aerospace

Cincinnati, OH • On-site

Full-time

Re-posted 12 days ago


GE Aerospace rating

8.9

Company rating: 8.9 out of 10

Based on 181 frontline employees who took The Breakroom Quiz

13th of 72 rated aerospace companies


Job description

Job Summary:
GE Aerospace is a leader in advanced aviation systems, focusing on the integration of software and hardware for optimal performance. The Staff Software Engineer will design, develop, and lead software solutions for aerospace applications, ensuring safety and reliability throughout the software lifecycle.
Responsibilities:
• Identify, develop, evaluate, introduce, and manage software engineering solutions for complex aerospace systems, with emphasis on safety-critical and high-reliability applications.
• Apply software engineering best practices and (where applicable) control and systems engineering principles to design software with predictable, verifiable behavior across a range of operating conditions.
• Serve as the software technical lead for assigned products or features, including requirements definition, architecture, detailed design, integration strategy, verification, and issue resolution.
• Define and drive software architectures, interfaces, and design patterns that enable modularity, reuse, and robust integration with hardware, controls, and systems.
• Lead planning and execution of software development activities, including estimates, schedules, risk assessments, and technical reviews, ensuring alignment with program objectives.
• Promote and enforce modern software practices such as automated testing, continuous integration, static analysis, code review, configuration management, and secure coding.
• Broadly deepen and extend knowledge of relevant software technologies (for example real-time embedded systems, model-based development, data processing, connectivity, or cyber considerations).
• Develop a solid understanding of key business drivers and program priorities; use this understanding to make sound technical tradeoffs that support Safety, Quality, Delivery, and Cost objectives.
• Collaborate closely with systems engineering, controls, hardware, verification, and program leadership to ensure the software solution integrates correctly into the overall system.
• Assure proper documentation of technical data generated for assigned projects and tasks, consistent with engineering policies, procedures, and applicable standards or certification needs.
• Participate as a key presenter or reviewer in technical, design, and program reviews; lead closure of significant software-related actions.
• Provide day-to-day technical leadership and mentoring for less experienced software engineers to help develop their design, implementation, and verification skills.
Qualifications:
Required:
• Bachelor’s degree in Computer Science, Computer Engineering, Electrical Engineering, or a related STEM discipline from an accredited university or college.
• Minimum of 5 years of professional experience in software engineering for complex systems.
• This role requires the successful candidate to obtain and maintain US Government Security Clearance; prerequisite for a security clearance is U.S. citizenship.
Preferred:
• Strong oral and written communication skills, with the ability to explain technical software and system concepts clearly to both technical and non-technical stakeholders.
• Proven experience leading software development for real-time embedded systems, avionics, or other high-reliability domains.
• Familiarity with model-based development environments (for example MATLAB/Simulink or similar) and integration of auto-generated code into embedded platforms is a plus where applicable.
• Experience with or exposure to aerospace or other safety-related software standards (for example DO-178C, ARP4754A, ISO 26262, or equivalent).
• Demonstrated ability to work collaboratively in a structured team environment, partnering effectively with systems, controls, hardware, test, and program management.
• Passion for developing robust, maintainable software, including practices such as automated testing, continuous integration, code quality metrics, and secure coding.
• Experience coaching and mentoring less experienced engineers, including support through design reviews, code reviews, and day-to-day technical guidance.
• Intrigued to work in an environment and on projects that cannot necessarily be broadly shared, and comfortable operating within appropriate security and information-handling constraints.
• Demonstrated experience acting as a technical lead for software on a product, subsystem, or major feature, including responsibility across the full development life cycle.
• Proficiency in one or more relevant programming languages (for example C/C++, Python, or similar), and experience with associated development environments and tools.
• Experience in designing, implementing, integrating, and testing production software.
• Working with real-time, embedded, or safety-/mission-critical systems (e.g., aerospace, defense, automotive, or industrial).
Company:
GE Aerospace is a provider of jet and turboprop engines, as well as integrated systems. Founded in 1892, the company is headquartered in Cincinnati, USA, with a team of 10001+ employees. The company is currently Late Stage.

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