1

Embedded Software Engineering Jobs in Oregon (NOW HIRING)

Embedded Software Engineer

OR

$139K - $183K/yr

Objective of role: The Embedded Software Engineer is responsible for the design, development ... This role blends hands-on engineering with cross-functional collaboration, technical problem ...

OR

$115K - $190K/yr

The right candidate for this role will have some experience securing and pen-testing embedded or IoT devices along with a background in electrical engineering or software system design. As our Sr II ...

About Software Engineering Roles at Danaher Are you passionate about building real-world ... Supporting the development of console and embedded software systems * Troubleshooting issues and ...

About Software Engineering Roles at Danaher Are you passionate about building real-world ... Supporting the development of console and embedded software systems * Troubleshooting issues and ...

About Software Engineering Roles at Danaher Are you passionate about building real-world ... Supporting the development of console and embedded software systems * Troubleshooting issues and ...

About Software Engineering Roles at Danaher Are you passionate about building real-world ... Supporting the development of console and embedded software systems * Troubleshooting issues and ...

next page

Showing results 1-20

Embedded Software Engineering information

See Oregon salary details

$74K

$162.2K

$184K

How much do embedded software engineering jobs pay per year?

As of Jun 8, 2026, the average yearly pay for embedded software engineering in Oregon is $162,170.00, according to ZipRecruiter salary data. Most workers in this role earn between $139,000.00 and $182,900.00 per year, depending on experience, location, and employer.

What is the difference between Embedded Software Engineering vs Firmware Development?

AspectEmbedded Software EngineeringFirmware Development
Required CredentialsBachelor's in Computer Engineering, Electrical Engineering, or related fields; knowledge of C/C++, RTOSSimilar degrees; often requires low-level programming skills and hardware knowledge
Work EnvironmentDevelops software for embedded systems in various industries like automotive, consumer electronicsFocuses on programming firmware directly on hardware devices like microcontrollers
Industry UsageCommon in automotive, aerospace, medical devices, consumer electronicsPrimarily used in hardware-centric industries, especially where direct hardware control is needed

Embedded Software Engineering and Firmware Development share overlapping skills and work environments, but embedded engineers typically develop higher-level software for embedded systems, while firmware developers focus on low-level hardware programming. Both roles are essential in creating reliable embedded products.

What are some common challenges faced by Embedded Software Engineers when working on cross-functional teams?

Embedded Software Engineers often collaborate closely with hardware engineers, product designers, and quality assurance teams. A common challenge is ensuring seamless integration between software and hardware components, as changes in hardware specifications can impact software functionality. Effective communication and early involvement in the hardware design process can help mitigate integration issues. Additionally, working within resource constraints and meeting strict real-time performance requirements can require creative problem-solving and adaptability.

Will AI replace embedded?

Embedded Software Engineers develop and maintain software for embedded systems, and AI is increasingly used to enhance these systems' capabilities. While AI can automate certain tasks and improve system performance, it is unlikely to fully replace the need for skilled engineers who design, implement, and troubleshoot embedded software. Instead, AI tools are expected to augment the work of embedded engineers, requiring them to adapt and learn new skills related to AI integration and machine learning.

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

To thrive as an Embedded Software Engineer, you need strong proficiency in C/C++ programming, knowledge of embedded systems architecture, and a relevant degree in computer engineering or electrical engineering. Familiarity with real-time operating systems (RTOS), microcontrollers, and debugging tools like oscilloscopes and logic analyzers is typically required. Problem-solving ability, meticulous attention to detail, and effective teamwork are crucial soft skills for excelling in this role. These competencies are vital for developing reliable, efficient, and high-performance software that interacts closely with hardware in critical applications.

What is embedded software engineering?

Embedded software engineering is the process of designing, developing, and maintaining software that operates hardware devices with specific functions. Unlike general-purpose software, embedded software is tightly integrated with the hardware it controls, such as microcontrollers or processors in devices like cars, medical equipment, and home appliances. Embedded software engineers work with constraints such as limited memory, real-time processing, and power efficiency, requiring specialized knowledge of both software and hardware. Their work ensures that electronic devices perform reliably and efficiently for their intended purpose.
What cities in Oregon are hiring for Embedded Software Engineering jobs? Cities in Oregon with the most Embedded Software Engineering job openings:
Embedded Software Engineer

$139K - $183K/yr

Full-time

Posted 26 days ago


Job description

Job Description:

Objective of role:

The Embedded Software Engineer is responsible for the design, development, testing, and support of embedded software solutions for both existing and new products, including new hardware bring-up, low-level hardware/software integration, and support of microcontroller-based embedded systems.

Expectations:
This role blends hands-on engineering with cross-functional collaboration, technical problem solving, product lifecycle support and software technical leadership where appropriate. The engineer will contribute to software architecture, product enhancements, and reliability validation while supporting internal teams, customers, and manufacturing operations.
This position requires strong analytical skills, a solid foundation in software engineering principles, and the ability to work independently across most phases of the development cycle. The ideal candidate is comfortable working close to the hardware and can efficiently diagnose and resolve low-level issues involving microcontrollers, memory, interfaces, sensors, and communication devices.
Main Duties and Responsibilities:

Software Design & Development
•    Develop, code, test, and debug new embedded software or enhancements to existing software for third-party customers and internal product lines.
•    Work from specifications with limited guidance to design and modify moderately complex software applications, tools, and utilities.
•    Apply software design theories, engineering principles, and scientific methods to create robust, maintainable embedded solutions.
•    Modify existing software packages to meet unique customer configurations and requirements.
•    Validate successive software versions to ensure proper integration with system hardware.
•    Bring up embedded software on new hardware platforms, including initialization and verification of microcontrollers, memory, clocks, interrupts, communication interfaces and peripheral devices.
•    Develop, integrate and debug low-level drivers and board support software for interfaces such as UART, SPI, I2C, ADC, USB, Ethernet, GPIO, etc.

Engineering Leadership & Departmental Support
•    Provide technical input to project schedules, development estimates, software-related planning activities and team training needs.
•    Coordinate technical activities with cross-functional project teams and communicate software scope, status, risks, and technical issues clearly.
•    Document designs, changes, and engineering analyses thoroughly and professionally.


Testing, Reliability & Verification
•    Determine test and analysis requirements to validate product reliability, performance, and parameter control.
•    Conduct or coordinate tests to evaluate failure limits, environmental susceptibility, component reliability, and overall product safety.
•    Participate in the design of product test equipment or production test systems when needed.
•    Interpret test results and translate findings into actionable engineering decisions.
•    Develop and execute bring-up, integration, and regression test plans for new hardware and firmware.
•    Diagnose issues related to startup behavior, communication failures, timing issues, memory, and interaction between firmware and hardware.

Cross Functional & Customer Support
•    Resolve software-related user complaints and respond to suggestions for improvements or enhancements.
•    Assist in the development of software user manuals and technical documentation.
•    Collaborate with technical staff to diagnose and resolve software issues.

Innovation & Product Development
•    Drive the electrical/software design process from concept through manufacturing release, including:
o    Creative concept development
o    Detailed design
o    Mathematical and scientific verification
o    Prototype build and evaluation
o    Engineering documentation
o    Production transition
•    Work closely with electrical engineering during schematic review, component selection and prototype bring-up to ensure software readiness and efficient debug.
Qualifications:
•    Bachelor’s degree in engineering (Software, Electrical, Computer Engineering, or related discipline required).
•    Minimum of 4 years of relevant experience in embedded software development or related engineering roles.
•    Proficiency in embedded programming languages (e.g., C/C++), version control (Git/Github) and real-time operating environments (FreeRTOS, MQX).
•    Strong understanding of hardware/software integration and system level design.
•    Ability to work independently across design, coding, testing, debugging, implementation, and documentation phases.
•    Excellent analytical, problem-solving, and communication skills.
•    Experience supporting manufacturing, field teams, or customer applications is a plus.
•    Demonstrated experience with new board bring-up, including debug of low-level hardware/software issues on prototype hardware.
•    Ability to read and work from schematics, datasheets, reference manuals and interface documentation.
•    Experience with embedded debug tools such as JTAG debuggers, oscilloscopes, logic analyzers and serial/protocol analysis tools.
•    Experience integrating communication and connectivity technologies such as Bluetooth/BLE, UART, SPI, I2C, USB, or Ethernet.
•    This role requires quarterly travel to our Fairmont, MN facility, with the possibility of additional onsite visits depending on project-specific needs.
 

#LI-Remote

Compensation Information:

salary range

$78,400 - $130,000

ITW is an equal opportunity employer. We value our colleagues’ unique perspectives, experiences and ideas and create workplaces where everyone can develop their careers and perform to their full potential. 


As an equal employment opportunity employer, ITW is committed to equal employment opportunity and fair treatment for employees, beginning with the hiring process and continuing through all aspects of the employment relationship. 


All qualified applicants will receive consideration for employment without regard to race, color, sex, gender identity, sexual orientation, religion, national origin, age, disability, protected Veteran status or any other characteristic protected by applicable federal, state, or local laws.