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Robotics Software Engineer Jobs in Portland, OR (NOW HIRING)

Senior Engineer - Software

Portland, OR ยท On-site

$150 - $230/hr

We operate at the intersection of biology, engineering, and computational science, building ... Experience developing software for laboratory automation, robotics, medical devices, or scientific ...

Senior VLSI CAD Software Engineer

Hillsboro, OR ยท On-site

$133K - $175K/yr

An era in which our GPU acts as the brains of computers, robots, and self-driving cars that can ... NVIDIA is seeking a talented Software Engineer to join our small team building custom, high-impact ...

An era in which our GPU acts as the brains of computers, robots, and self-driving cars that can ... NVIDIA is seeking a talented Software Engineer to join our small team building custom, high-impact ...

Showing results 21-40

Robotics Software Engineer information

See Portland, OR salary details

$63.6K

$132.1K

$189.8K

How much do robotics software engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for robotics software engineer in Portland, OR is $132,058.00, according to ZipRecruiter salary data. Most workers in this role earn between $110,300.00 and $161,200.00 per year, depending on experience, location, and employer.

What does a robotics software engineer do?

The job duties of a robotics software engineer are working to develop software for robot control and automation. In this job, your responsibilities include working on an embedded system that controls automated equipment. You may build new software or test, improve, or debug current software. Most robotics software engineers work for the manufacturing industry and focus on robots that companies use in product production. You may work in other fields that use robotics as well. This job may include responsibilities such as developing a user interface that non-technical employees can use to set up the equipment.

What does a robotics software engineer do?

A Robotics Software Engineer designs, develops, and maintains the software that controls and powers robots. This includes writing code for robot perception, control algorithms, and integration with hardware components. They work closely with hardware engineers to ensure seamless interaction between the robot's physical and digital systems. Their work often involves programming in languages such as C++, Python, or ROS (Robot Operating System) and testing robots in real-world or simulated environments.

What are the key skills and qualifications needed to thrive as a robotics software engineer, and why are they important?

To thrive as a Robotics Software Engineer, you need a strong background in computer science, robotics, and mathematics, often supported by a relevant degree and experience in algorithm development. Proficiency with programming languages like C++, Python, and ROS (Robot Operating System), as well as familiarity with simulation tools and version control systems, is essential. Problem-solving ability, teamwork, and effective communication are crucial soft skills for collaborating on complex projects and adapting to evolving technologies. These skills and qualities are vital for designing, implementing, and maintaining reliable robotic systems that perform effectively in real-world environments.

What are some common challenges faced by robotics software engineers when integrating software with hardware systems?

Robotics Software Engineers often encounter challenges related to ensuring seamless communication between software algorithms and physical hardware components. These can include dealing with sensor noise, managing real-time constraints, debugging hardware-software mismatches, and ensuring reliable performance in unpredictable environments. Close collaboration with electrical and mechanical engineers is essential to quickly resolve integration issues and to test software on physical robots. Adapting to rapid hardware changes and troubleshooting in live environments require strong problem-solving skills and effective cross-disciplinary teamwork.

What is the difference between Robotics Software Engineer vs Mechatronics Engineer?

AspectRobotics Software EngineerMechatronics Engineer
Required CredentialsBachelor's in Robotics, Computer Science, or related field; programming skillsBachelor's in Mechatronics, Mechanical, or Electrical Engineering; multidisciplinary knowledge
Work EnvironmentSoftware development teams, robotics labs, research facilitiesDesign, integrate mechanical and electronic systems, often in manufacturing or automation
Employer & Industry UsageTech companies, robotics firms, research institutionsManufacturing, automation, aerospace, automotive industries

While both roles involve robotics, a Robotics Software Engineer primarily focuses on developing software for robotic systems, whereas a Mechatronics Engineer designs and integrates mechanical, electronic, and software components. The roles often overlap but differ in their core focus areas and skill sets.

What are the most commonly searched types of Robotics Software Engineer jobs in Portland, OR?

The most popular types of Robotics Software Engineer jobs in Portland, OR are:

Infographic showing various Robotics Software Engineer job openings in Portland, OR as of August 2026, with employment types broken down into 92% Full Time, 6% Part Time, and 2% Contract. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution, with an average salary of $132,058 per year, or $63.5 per hour.

Senior Engineer - Software

e184

Portland, OR โ€ข On-site

$150 - $230/hr

Other

Medical, Dental, Vision, Retirement, PTO

Posted 11 days ago


Job description

About us

e184 is a biotechnology research company dedicated to overcoming the limits of human biology. One of our programs in reproductive technologies develops ectogenesis - the ability to support human development outside the body - to expand reproductive freedom and redefine what is possible in medicine. Our mission is to remove the biological constraints that limit who can safely carry a pregnancy, enabling new pathways to parenthood for individuals facing medical risk, infertility, or physiological barriers to gestation.

We operate at the intersection of biology, engineering, and computational science, building integrated platforms that combine advanced tissue models, adaptive culture systems, and automated experimental workflows to understand and recreate the conditions required for healthy human gestation beyond the uterus.

Role overview

As a Senior Engineer at e184, you will lead the design and development of software systems that integrate and control the experimental hardware enabling ex utero gestation. Your work will focus on building intuitive, reliable interfaces that unify perfusion systems, continuous imaging platforms, environmental controls, and monitoring infrastructure into a cohesive operational platform.

You will own software development from interface design through system integration and deployment, working closely with engineers, biologists, and hardware teams to translate complex experimental workflows into robust, user-centered control systems. This is a highly hands-on role for a software engineer who enjoys bridging UI design, real-time system control, and scientific experimentation in a fast-moving startup environment where software reliability directly impacts biological outcomes.

What you'll do:
  • Design unified control interfaces: Develop user interfaces that allow researchers to monitor and control perfusion, imaging, and environmental systems through a single integrated platform.

  • Integrate hardware systems: Build software layers that communicate with pumps, sensors, imaging devices, and environmental controllers, enabling coordinated operation across experimental subsystems.

  • Develop real-time monitoring tools: Create dashboards for live visualization of system state, environmental parameters, and experimental performance with clear alerting and logging functionality.

  • Implement automation and workflows: Design software workflows that support automated experimental protocols, scheduling, and reproducible system operation.

  • Ensure system reliability and safety: Develop fault detection, error handling, and recovery mechanisms to maintain stable long-duration experiments.

  • Collaborate across disciplines: Work closely with hardware engineers and scientists to translate experimental needs into software architecture and intuitive user experiences.

  • Establish software standards: Contribute to code architecture, documentation, and testing practices that support scalable and maintainable platform development.

Core requirements:
  • 5+ years of professional software engineering experience with significant focus on UI/UX development

  • Strong experience designing and implementing complex user interfaces for technical or scientific applications

  • Proficiency in modern frontend frameworks (e.g., React, Vue, or similar)

  • Experience interfacing software with hardware systems, sensors, or laboratory instrumentation

  • Experience designing systems for real-time monitoring or device control

  • Strong understanding of software architecture and maintainable system design

  • Ability to independently drive software projects from concept through deployment

  • Strong collaboration and communication skills in interdisciplinary environments

  • Comfort working in a fastโ€‘paced, iterative startup environment

Youโ€™ll stand out with:
  • Experience developing software for laboratory automation, robotics, medical devices, or scientific instrumentation

  • Experience integrating imaging systems or real-time data streams

  • Familiarity with control systems, hardware communication protocols (e.g., serial, USB, TCP/IP, MQTT)

  • Experience building data visualization dashboards for live experimental monitoring

  • Experience designing safety-critical or long-running control systems

  • Backend experience supporting data acquisition and logging pipelines

  • Prior startup or early-stage technology development experience

Why e184?
  • Unrivaled impact: Your work directly enables technology that transforms human fertility and reproductive medicine.

  • Full-scope growth: Gain exposure to the entire lifecycle of discovery. From screening to mechanistic validation.

  • Best of both worlds: Experience the creative chaos of an early-stage startup with the stability of a well-capitalized company.

  • Elite collaboration: Work alongside a world-class team who are as driven as you are.

The perks
  • Competitive salary + equity participation is considered

  • State-of-the-art facility in Portland metro area

  • Comprehensive Medical, Dental, Vision, and 401(k) with company match

  • 20 days PTO + 11 paid holidays

Disclaimer

The above job description is intended to describe the general nature and level of work being performed by individuals assigned to this position. It is not intended to be an exhaustive list of all duties, responsibilities, and skills required. Responsibilities and duties may change or be adjusted to meet the needs of the company, and additional duties may be assigned as necessary. The job description is subject to change at any time at the discretion of e184.

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