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Embedded Software Verification Engineer Jobs in Bethesda, MD

Embedded Software Engineer

Arlington, VA · On-site

$151K - $199K/yr

Embedded Software Engineer Apogee Research is at the forefront of a revolution in how the DoD operates: a turn towards compositional systems of systems instead of traditional monolithic architectures.

Embedded Software Engineer

Arlington, VA · On-site

$151K - $199K/yr

Embedded Software Engineer Apogee Research is at the forefront of a revolution in how the DoD operates: a turn towards compositional systems of systems instead of traditional monolithic architectures.

Senior Embedded Software Engineer

Arlington, VA · On-site

$142K - $186K/yr

SDD is seeking a Senior Embedded Software Engineer to support the design, development, and ... verification, test planning, test execution, and data analysis * Experience with algorithm ...

Senior Embedded Software Engineer

Arlington, VA · On-site

$142K - $186K/yr

SDD is seeking a Lead Embedded Software Engineer to support the design, development, and ... verification, test planning, test execution, and data analysis * Experience with algorithm ...

SDD is seeking a Lead Embedded Software Engineer to support the design, development, and ... verification, test planning, test execution, and data analysis * Experience with algorithm ...

Showing results 41-60

Embedded Software Verification Engineer information

See Bethesda, MD salary details

$74.9K

$164.2K

$186.2K

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

As of Aug 10, 2026, the average yearly pay for embedded software verification engineer in Bethesda, MD is $164,160.00, according to ZipRecruiter salary data. Most workers in this role earn between $140,700.00 and $185,200.00 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.
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Senior Embedded Software Engineer

Liquid Robotics, a Boeing Company

Jessup, MD • On-site

$161K - $222K/yr

Full-time

Re-posted 5 days ago


Job description

Description
Senior Embedded Software Engineer
Liquid Robotics is seeking a Senior Embedded / Robotics Software Engineer to develop mission-critical software for autonomous maritime robotic systems. This hybrid role is based in the Jessup, MD and reports to our Software Manager. Our platforms operate in challenging ocean environments for extended deployments (3+ month missions), requiring exceptionally reliable and fault tolerant software.
Essential Responsibilities
  • Derive requirements for, design, develop, and maintain reliable embedded software for long-duration autonomous maritime operations (90+ day uptime requirements).
  • Integrate COTS and custom robotic components including servos and actuators, power management systems (batteries, solar charging), satellite radios and maritime communication equipment, and environmental and navigation sensors (GPS, IMU, depth sensors, cameras, acoustic sensors, etc.).
  • Implement fault-tolerant architectures with watchdog systems, automated recovery, and graceful degradation to meet mission uptime and reliability goals.
  • Collaborate with cross-functional teams including systems, mechanical, electrical, quality assurance, production, and product management to ensure integrated system performance.
  • Work within a structured software development lifecycle combining Agile methodologies with V-model validation processes; participate in requirements, design, code reviews, and system integration testing.
  • Develop and maintain device drivers, middleware, and mission code for ARM-based embedded Linux platforms (e.g., NVIDIA Tegra/Jetson, Raspberry Pi) in Debian-based environments.
  • Design for real-time constraints, deterministic behavior on Linux, and power-aware sleep/wake strategies to maximize mission duration.
  • Create and execute Software-In-Loop, Hardware-In-Loop, and on-device test methods; develop CI/CD pipelines, automated tests, and release artifacts to support multiple overlapping product lines.
  • Troubleshoot and root-cause hardware/software interactions; capture diagnostic data and coordinate corrective actions across engineering disciplines.
  • Produce and maintain clear technical documentation including design notes, runbooks, test plans, and procedures.

Key Attributes
  • Deep systems thinker who can analyze, explain, and close the loop from sensors through actuators and human-in-the-loop components.
  • Detail-oriented and methodical with strong software engineering and test discipline.
  • Practical hands-on experience integrating and troubleshooting embedded hardware and sensors in harsh environments.
  • Strong communicator, able to convey complex software and system behaviors to engineering, Manufacturing, and QA.
  • Comfortable working cross-functionally and responding to integration, production, and field deployment priorities.
  • Autonomous, pragmatic, and focused on delivering robust, maintainable solutions for safety- and mission-critical systems.

Minimum Qualifications
  • BS in Computer Science, Computer Engineering, or related discipline; advanced degree or technical credentials a plus.
  • 10+ years of professional embedded software architecture, design, and development experience.
  • Proven experience shipping robotic or autonomous systems with long-duration uptime requirements and fault-tolerant architectures.
  • Strong programming and architecture skills in C++ and Java for mission code; Python for tools, scripts, and automation.
  • Deep understanding of Linux system architecture, device drivers, and managing deterministic/real-time behavior on Linux.
  • Experience with serial protocols (RS-232, RS-485), CAN bus, USB, UDP/TCP networks, and satellite communication systems (Iridium, Starlink).
  • Experience with version control (Git), CI/CD pipelines, automated testing, and managing complex build systems across product lines.
  • Knowledge of sensor fusion, error correction, and degraded-mode operation strategies.
  • Understanding of power management, thermal constraints, and environmentally robust software design.
  • Experience with power-aware software design, sleep/wake strategies, and long-duration mission planning.
  • Familiarity with Software-In-Loop, Hardware-In-Loop, and on-device testing methodologies.

U.S. Person status required.
Ability to obtain a US Secret Clearance required. Preference given to candidates with active security clearance at time of hire.
Pay is based upon candidate experience and qualifications, market and business considerations, and the role's geographic location
Summary pay range: $161,600 - $222,200
Liquid Robotics designs and manufactures Wave Gliders®, the first wave and solar powered autonomous ocean robots. With our partners we address many of the planet's greatest challenges, by transforming how to assess, monitor, and protect the ocean. We solve critical problems for defense, commercial, and science customers.
Visit us at www.liquid-robotics.com to learn more.
Liquid Robotics is an Equal Opportunity Employer (EOE). Employment decisions are made without regard to race, color, religion, national origin, gender, sexual orientation, gender identity, age, physical or mental disability, genetic factors, military/veteran status or other characteristics protected by law.