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Embedded Software Verification Engineer Jobs in Irvine, CA

Verification, field testing, production support, and failure investigation Battery Management The Battery Management Responsible Engineer will own the complete embedded software stack for a ...

Design and implement real-time embedded software in C++ for VxWorks-based systems used on space ... Support software verification and validation in lab environments, including integration testing and ...

Embedded Engineer

Irvine, CA · On-site

$141K - $185K/yr

Embedded Engineer Location - Atlanta, Georgia Experience : 7 to 10 years * 7+ years relevant ... Work with Software Development Kits (SDKs) to implement and customize embedded solutions.

Embedded Software Engineer

Irvine, CA

$141K - $185K/yr

Experience Hardware and software design of embedded microcontroller systems Experience with MS Visual Studio and C,C++, or C# programming languages Microcontroller system debugging Hardware assembly ...

Design Verification Engineer

Irvine, CA · On-site

$146K - $178K/yr

Company Description Insilico is an End-to-End specialized VLSI, Embedded Design & Software services ... Job Title: Design Verification Engineer Location: Santa Clara, CA Duration: 06 months (High ...

Embedded Software Engineer

Irvine, CA

$141K - $185K/yr

THE OPPORTUNITY Silvus is seeking an Embedded Software Engineer to join our Engineering Group, reporting to the Senior Engineering Director for Irvine with dotted-line reporting to the Director of ...

Design Verification Engineer

Irvine, CA · On-site

$146K - $178K/yr

Company Description Insilico is an End-to-End specialized VLSI, Embedded Design & Software services ... Job Title: Design Verification Engineer Location: Santa Clara, CA Duration: 06 months (High ...

Showing results 21-40

Embedded Software Verification Engineer information

See Irvine, CA salary details

$75.1K

$164.6K

$186.8K

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

As of Aug 22, 2026, the average yearly pay for embedded software verification engineer in Irvine, CA is $164,640.00, according to ZipRecruiter salary data. Most workers in this role earn between $141,200.00 and $185,700.00 per year, depending on experience, location, and employer.

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 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 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 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 popular job titles related to Embedded Software Verification Engineer jobs in Irvine, CA?

For Embedded Software Verification Engineer jobs in Irvine, CA, the most frequently searched job titles are:

What cities near Irvine, CA are hiring for Embedded Software Verification Engineer jobs?

Cities near Irvine, CA with the most Embedded Software Verification Engineer job openings:

Senior Embedded Software Engineer

Medium

Long Beach, CA • On-site

$140 - $220/hr

Other

Medical, Dental, Vision, Retirement, PTO

This job post has expired today. Applications are no longer accepted.


Job description

About Odin Dynamics

Founded in 2025, Odin Dynamics is a defense technology company building autonomous underwater vehicles that will define the next era of undersea warfare. We are focused on delivering capable, resilient autonomous systems that strengthen the strategic advantage of the United States and its allied navies. We move fast, build real hardware, and operate with the urgency that the mission demands.

We are building a new platform from the ground up. This is not a role where you will inherit a mature product with every architectural decision already made. You will take incomplete requirements, early hardware, and difficult technical constraints and turn them into dependable, production-ready autonomy systems.

We value rigorous engineering without unnecessary process. Decisions should be driven by physics, test data, and product outcomes—not inherited convention or documentation volume.

The Role

Odin Dynamics is hiring multiple Senior Embedded Software Engineers to serve as Responsible Engineers for critical embedded subsystems across our platform.

Each engineer will take primary technical ownership of one of three areas:

  • Embedded Linux compute
  • Motor-control firmware
  • Battery-management-system firmware

Candidates will apply to a common requisition, and Odin Dynamics will determine the best area of focus through the interview process. We are looking for engineers with deep expertise in at least one area who are also comfortable working across hardware, firmware, embedded Linux, controls, testing, and the broader software engineering domain.

As the Responsible Engineer for your subsystem, you will own it throughout its lifecycle: requirements, architecture, detailed design, implementation, bring‑up, verification, field testing, production support, failure analysis, and continued improvement after deployment.

This is a hands‑on individual‑contributor position. You will be expected to write substantial production code, make technical decisions, mentor other engineers, and remain accountable for the performance and reliability of your subsystem. There are no organizational handoffs when a difficult problem crosses the boundary between software and hardware.

What You’ll Do
  • Serve as the Responsible Engineer for a major embedded subsystem.
  • Develop greenfield embedded software from initial requirements and architecture through field‑tested, production‑ready implementation.
  • Write, review, test, profile, and debug production software in a low‑level systems programming language.
  • Design deterministic software for systems with strict latency, jitter, timing, memory, and compute constraints.
  • Bring up new embedded hardware in close collaboration with Avionics and Power Electronics engineers.
  • Read schematics and component documentation, review hardware designs, and diagnose hardware/software integration issues.
  • Debug low‑level problems involving interrupts, DMA, concurrency, synchronization, memory corruption, peripheral configuration, communications, timing, and performance.
  • Use oscilloscopes, logic analyzers, in‑circuit debuggers, and related laboratory tools to identify root causes.
  • Develop and maintain interfaces using common embedded communication protocols and bus architectures.
  • Write unit tests, integration tests, and system‑level tests for:
    • HOOTL — hardware‑out‑of‑the‑loop
    • SIL — software‑in‑the‑loop
    • HIL/HITL — hardware‑in‑the‑loop
  • Work with Test Engineering to validate systems in laboratory, field, and sea‑trial environments.
  • Support production testing, investigate failures on deployed hardware, and own corrective improvements throughout the product lifecycle.
  • Build automated development workflows using modern build systems, continuous integration, static analysis, profiling, and automated testing.
  • Produce concise, functional engineering documentation that enables implementation, testing, operation, and future development.
  • Use AI‑assisted development tools to accelerate implementation, testing, debugging, and documentation while independently validating outputs and maintaining a first‑principles understanding of the resulting system.
  • Mentor other engineers and contribute to technical reviews without moving away from hands‑on engineering.
Areas of FocusEmbedded Linux Compute

The Embedded Linux Responsible Engineer will own the platform software below the application and autonomy layers, including:

  • Embedded Linux platform architecture and board‑support packages
  • Embedded Linux build and distribution systems
  • Bootloaders, system bring‑up, and low‑level platform configuration
  • Kernel configuration and driver development
  • Secure boot and platform security mechanisms
  • Hardware I/O and peripheral integration
  • Networking and time synchronization
  • Real‑time Linux techniques, including scheduler configuration, CPU isolation, latency analysis, and performance tuning
  • Storage and high‑speed interfaces
  • Platform diagnostics, reliability, and field support
Motor Control

The Motor Control Responsible Engineer will own the complete embedded software stack for a microcontroller‑based motor‑control system, including:

  • MCU board‑support packages and low‑level firmware
  • Peripheral and communications interfaces
  • Real‑time scheduling, timing, interrupts, DMA, and memory management
  • Control state machines, fault handling, and protection behaviour
  • Closed‑loop motor‑control algorithms and system tuning
  • Integration with power electronics and vehicle‑level control systems
  • Verification, field testing, production support, and failure investigation
Battery Management

The Battery Management Responsible Engineer will own the complete embedded software stack for a microcontroller‑based battery‑management system, including:

  • MCU board‑support packages and low‑level firmware
  • Cell‑monitoring, communications, control, and protection interfaces
  • Battery‑management state machines and fault handling
  • State‑of‑charge and state‑of‑health estimation
  • Sequencing, monitoring, limits, diagnostics, and recovery behaviour
  • Integration with power electronics and vehicle‑level systems
  • Verification, field testing, production support, and failure investigation
What We’re Looking For
  • Deep practical expertise in either:
    • Embedded Linux development; or
    • Bare‑metal or RTOS‑based microcontroller development.
  • Sufficient familiarity with adjacent embedded environments to collaborate across subsystem boundaries.
  • Strong proficiency in at least one low‑level systems programming language.
  • Experience developing hard real‑time or highly deterministic systems under latency, jitter, memory, and performance constraints.
  • Experience bringing up new boards and embedded platforms within your primary technical specialization.
  • Experience reading schematics, reviewing hardware interfaces, and debugging integrated hardware/software systems.
  • Experience with common digital communication protocols and bus architectures.
  • Experience using oscilloscopes, logic analyzers, in‑circuit debuggers, and other hardware‑debugging tools.
  • Strong understanding of concurrency, synchronization, interrupts, DMA, timer configuration, memory allocation, scheduling, and low‑level peripheral control.
  • Experience writing maintainable production code, conducting code reviews, developing automated tests, using static analysis, profiling performance, and debugging complex timing or memory failures.
  • Experience with modern build systems and CI/CD workflows.
  • Demonstrated ability to work from first principles, make progress with incomplete information, and rapidly iterate between design, implementation, testing, and refinement.
  • Ability to work independently with minimal oversight while collaborating closely across engineering disciplines.
  • Willingness to support field testing and sea trials when required.
  • U.S. citizenship and eligibility to obtain and maintain a U.S. security clearance.

Approximately five or more years of relevant embedded software experience is preferred, but demonstrated technical depth, multidisciplinary problem‑solving ability, and a record of delivering difficult systems matter more than a specific number of years. Exceptional candidates at any experience level are encouraged to apply.

Preferred Experience
  • Developing safety‑critical, mission‑critical, or high‑reliability products.
  • Taking an embedded system from a blank sheet through multiple design, implementation, test, and refinement cycles into production or operational deployment.
  • Autonomous vehicles, underwater systems, UAVs, robotics, aerospace, automotive, industrial controls, medical devices, energy systems, or other tightly integrated electromechanical products.
  • Embedded Linux build and distribution systems.
  • Experience across a range of embedded compute and microcontroller platforms.
  • Kernel‑driver development for Embedded Linux candidates.
  • Motor‑control concepts such as advanced commutation and control techniques, feedback systems, current control, velocity control, position control, and inverter protection.
  • Battery‑management concepts such as cell monitoring and balancing, state estimation, thermal monitoring, charge and discharge limits, sequencing, and fault‑state design.
  • High‑speed and wireless interface integration.
  • Establishing or extending HOOTL and SIL test environments.

$140,000 - $220,000 a year

At Odin Dynamics, we offer competitive salaries benchmarked against the defense and robotics industries, meaningful early‑stage equity, and benefits that cover the essentials — full covered health, dental, vision; 401(k); and paid time off.

We invest in professional development and support our people in growing their skills alongside the company. We tie compensation to the impact you have, not your title. As we grow, our compensation and benefits will grow with us. We’re building this company alongside the people who join it, and we believe everyone here should share in what we build together.

Disclosures

This position may require access to information protected under U.S. export control laws and regulations, including the Export Administration Regulations (EAR) and the International Traffic in Arms Regulations (ITAR). Please note that any offer for employment may be conditioned on authorization to receive software or technology controlled under these U.S. export control laws and regulations without sponsorship for an export license.

Odin Dynamics, Inc. participates in E‑Verify and will provide the federal government with your Form I‑9 information to confirm that you are authorized to work in the U.S.

Odin Dynamics is an equal opportunity employer committed to creating a diverse and inclusive workplace. All qualified applicants will be treated with respect and receive equal consideration for employment without regard to race, color, creed, religion, sex, gender identity, sexual orientation, national origin, disability, uniform service, Veteran status, age, or any other protected characteristic per federal, state, or local law, including those with a criminal history, in a manner consistent with the requirements of applicable state and local laws.

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