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Embedded Flight Software Engineer Jobs in Newberry, SC

Senior Software Engineer

Clinton, SC

$115K - $152K/yr

The Senior Software Engineer designs, develops, and maintains embedded software for industrial control systems, operating with a high degree of autonomy and technical ownership. This role serves as a ...

Senior Electrical Engineer

Clinton, SC · On-site

$101K - $132K/yr

Perform electrical and software troubleshooting as needed. Update system documentation to reflect ... Minimum of 7 years of embedded electrical hardware development. Preferred Skills and Abilities

Senior Electrical Engineer

Clinton, SC

$101K - $132K/yr

Perform electrical and software troubleshooting as needed. Update system documentation to reflect ... Minimum of 7 years of embedded electrical hardware development. Preferred Skills and Abilities

Embedded Flight Software Engineer information

See Newberry, SC salary details

$58.5K

$128.1K

$145.3K

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

As of Aug 1, 2026, the average yearly pay for embedded flight software engineer in Newberry, SC is $128,118.00, according to ZipRecruiter salary data. Most workers in this role earn between $109,800.00 and $144,500.00 per year, depending on experience, location, and employer.

What are some common challenges Embedded Flight Software Engineers face when working on spacecraft projects?

Embedded Flight Software Engineers often work under strict reliability and safety requirements, which means testing and validation are critical and highly rigorous. They frequently collaborate with hardware engineers to ensure software and hardware integration is seamless, and must manage constraints such as limited processing power and memory. Additionally, they need to adapt to changing project requirements and tight deadlines, all while staying up-to-date with evolving aerospace standards and technologies. These challenges make strong problem-solving skills and effective communication essential in this role.

What are the key skills and qualifications needed to thrive as an Embedded Flight Software Engineer, and why are they important?

To thrive as an Embedded Flight Software Engineer, you need a strong background in computer science or engineering, proficiency in C/C++ programming, and experience with real-time operating systems (RTOS) and embedded systems. Familiarity with aerospace standards, software development tools (such as Git, Jenkins), and certifications like DO-178C for software safety are typically required. Exceptional problem-solving skills, attention to detail, and effective teamwork are valuable soft skills in this role. These competencies ensure reliable, safe, and efficient software for mission-critical aerospace applications.

What is the difference between Embedded Flight Software Engineer vs Embedded Systems Engineer?

AspectEmbedded Flight Software EngineerEmbedded Systems Engineer
CredentialsBachelor's or higher in Electrical, Computer Engineering, or related; experience with aerospace standardsBachelor's or higher in Electrical, Computer Engineering, or related; similar certifications often preferred
Work EnvironmentSpacecraft, satellites, aerospace industry, safety-critical systemsConsumer electronics, automotive, industrial devices, various industries
Industry UsagePrimarily in aerospace and defense sectorsBroad industry application including automotive, medical, consumer electronics
Search & Comparison IntentOften compared due to specialized embedded software in aerospaceMore general embedded systems roles in various sectors

Embedded Flight Software Engineers focus on developing software for aerospace applications like satellites and spacecraft, requiring specialized knowledge of aerospace standards. In contrast, Embedded Systems Engineers work across multiple industries, designing software for everyday devices. While both roles involve embedded programming, the industry focus and application environments differ significantly.

What are Embedded Flight Software Engineers?

Embedded Flight Software Engineers design, develop, test, and maintain software that runs on embedded computer systems within aircraft, spacecraft, or satellites. They work closely with hardware engineers to ensure that the software interfaces correctly with sensors, actuators, and control systems used for flight operations. Their responsibilities often include programming in languages like C or C++, debugging real-time systems, and ensuring compliance with safety and reliability standards. This role is critical in ensuring the safe and efficient operation of aerospace vehicles.

Senior Software Engineer

Nordsonhcm

Clinton, SC

$115K - $152K/yr

Full-time

Re-posted 18 days ago


Job description

The Senior Software Engineer designs, develops, and maintains embedded software for industrial control systems, operating with a high degree of autonomy and technical ownership. This role serves as a technical leader within the development team, providing advanced expertise in embedded systems, realtime operating systems, and industrial communication networks. The Senior Software Engineer is responsible not only for delivering highquality software solutions, but also for guiding design decisions, reviewing peer work, and ensuring robust, scalable, and maintainable system architectures.

Essential Job Duties and Responsibilities

  • Lead the design, development, integration, and testing of embedded software solutions for industrial control products.
  • Serve as technical owner for assigned features, subsystems, or products throughout the entire development lifecycle.
  • Contribute to and influence system and software architecture decisions, ensuring scalability, reliability, and maintainability.
  • Conduct design and code reviews and provide technical guidance and bestpractice recommendations to other engineers.
  • Develop and review software requirements, design documentation, verification and validation plans, and build procedures.
  • Support hardware bringup, system integration, and troubleshooting at both the subsystem and system level.
  • Provide technical support during product launch activities, including field issue investigation and root cause analysis.
  • Collaborate crossfunctionally with Hardware Engineering, Systems Engineering, Manufacturing, and Quality teams.
  • Drive continuous improvement in software design practices, coding standards, development processes, and tool usage.
  • Mentor and provide technical coaching to lessexperienced engineers.
  • Perform other duties as assigned.

Education and Experience Requirements

  • Bachelor's degree in Computer Science, Electrical Engineering, or a related field required.
  • 6-10 years of embedded software development experience in an industrial or regulated environment.
  • Demonstrated experience owning complex software components or subsystems.

Skills and Abilities

  • Proven experience developing embedded software in C and C++.
  • Strong experience working with Linuxbased embedded systems and/or realtime operating systems (RTOS).
  • Solid understanding of industrial communication networks, with CAN bus experience strongly preferred.
  • Experience with embedded microcontroller architectures, preferably STMicroelectronics (STM32) devices.
  • Handson experience with CODESYS PLC programming and control logic development.
  • Demonstrated ability to debug and troubleshoot complex issues across hardware and software boundaries.
  • Working knowledge of software version control systems, build systems, and embedded development toolchains.
  • Experience supporting products throughout the entire product lifecycle, including development, release, production, and field support.
  • Ability to translate systemlevel requirements into robust, maintainable software designs.
  • Strong analytical and problemsolving skills applied to complex technical challenges.
  • Effective written and verbal communication skills, including the ability to explain technical concepts clearly.
  • Ability to manage multiple priorities across parallel development efforts.
  • Demonstrated ability to influence technical direction without formal authority.
  • Comfortable mentoring peers and providing clear, constructive technical feedback.

Working Conditions and Physical Demands

To perform this job successfully, an individual must be able to perform each essential duty satisfactorily. The requirements listed above are representative of the knowledge, skill, and/or ability required. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

Travel Required

Minimal _10_%

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