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Home Based Robotic Simulation Engineer Jobs in Portland, OR

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Autonomous Robotics Software Engineer (Robotics / Autonomy / C++) Advanced Robotics Group, LLC is ... simulation environments · Hands-on experience with robotic platforms and field testing Location ...

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Autonomous Robotics Software Engineer (Robotics / Autonomy / C++) Advanced Robotics Group, LLC is ... simulation environments · Hands-on experience with robotic platforms and field testing Location ...

Develop Labview-based and python software applications to calibrate and test lasers and laser ... Simulate and program robot arms for assembly automation. * Develop applications to collect and ...

Develop Labview-based and python software applications to calibrate and test lasers and laser ... Simulate and program robot arms for assembly automation. * Develop applications to collect and ...

Robotics Tutor

Portland, OR · Remote

$18 - $40/hr

All from the comfort of your home. Why Join Our Platform? * Earn incrementally higher pay for each ... team-based design projects. Adapts instruction using hands-on building activities, programming ...

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Home Based Robotic Simulation Engineer information

See Portland, OR salary details

$30.8K

$112K

$179.2K

How much do home based robotic simulation engineer jobs pay per year?

As of Aug 5, 2026, the average yearly pay for home based robotic simulation engineer in Portland, OR is $111,995.00, according to ZipRecruiter salary data. Most workers in this role earn between $88,600.00 and $134,700.00 per year, depending on experience, location, and employer.

What is a home based robotic simulation engineer?

Home Based Robotic Simulation Engineers are professionals who design, develop, and test robotic systems using simulation software, all while working remotely from their homes. They create virtual models of robotic equipment or processes to analyze performance, troubleshoot issues, and optimize designs before actual implementation. This role typically involves using specialized simulation tools, collaborating with cross-functional teams online, and ensuring that robotic solutions meet technical and operational requirements.

What are the key skills and qualifications needed to thrive as a home based robotic simulation engineer, and why are they important?

A Home Based Robotic Simulation Engineer typically requires a background in robotics, computer science, or engineering, with strong programming skills in languages such as Python or C++. Familiarity with simulation tools like ROS (Robot Operating System), Gazebo, or MATLAB Simulink, and relevant certifications in robotics or automation are highly valued. Excellent problem-solving abilities, self-motivation, and effective remote communication skills help individuals excel in a virtual work environment. These competencies are crucial for developing accurate robotic simulations, collaborating with remote teams, and delivering innovative automation solutions.

How does a home based robotic simulation engineer typically collaborate with on-site engineering teams and clients?

A Home Based Robotic Simulation Engineer often works remotely but remains highly connected to both on-site engineering teams and clients through regular video meetings, screen sharing, and collaborative project management tools. They contribute by developing and testing robotic simulations, then sharing results and updates for review and feedback. Effective communication and documentation are crucial, as is the ability to troubleshoot issues remotely and align with the broader project goals. This collaborative approach ensures that simulation models are accurate and meet client specifications, while also supporting seamless integration with physical robotics systems.
What are the most commonly searched types of Robotic Simulation Engineer jobs in Portland, OR? The most popular types of Robotic Simulation Engineer jobs in Portland, OR are:
What job categories do people searching Home Based Robotic Simulation Engineer jobs in Portland, OR look for? The top searched job categories for Home Based Robotic Simulation Engineer jobs in Portland, OR are:
What cities near Portland, OR are hiring for Home Based Robotic Simulation Engineer jobs? Cities near Portland, OR with the most Home Based Robotic Simulation Engineer job openings:
Infographic showing various Home Based Robotic Simulation Engineer job openings in Portland, OR as of July 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $111,995 per year, or $53.8 per hour.

Automation & Robotics Engineer II

Benchmade, Inc.

Oregon City, OR

Full-time

Posted 4 days ago


Job description

We are people powered - by makers, problem-solvers, and leaders who elevate everything they do. Guided by our core values and a relentless pursuit of better, we continue to set the bar for premium.

Start your Benchmade career today!

Our Core Values

ELEVATE EVERYTHING -We each bring a specific set of skills to the table, offering up our expertise and resources to enhance the work of others. We challenge each other to be the best in order to achieve enduring value in the eyes of our customers.

BETTER IS BETTER -There is no finish line; we strive for continuous improvement in everything we do. We obsess over every detail to find ways to improve both our products and our process.

UNAPOLOGETICALLY ACCOUNTABLE -We're open and honest in how we speak and listen. We celebrate each other's successes, and collectively rally to solve every challenge.We own it!

COURAGEOUS INNOVATION -There are elegant ideas awaiting discovery in everything we do. We push everyone around us to pursue those ideas openly so we can continue to dominate the category.

COMMUNITY DRIVEN-As a family business, we understand the importance of enriching the communities we call home. As a company, and as individuals, we work to make our expertise available to do the most good for those around us.

At Benchmade Knife Company, the Automation & Robotics Engineer II will help define and execute our automation roadmap by turning manufacturing challenges into practical, scalable solutions. This engineer will identify opportunities and lead projects from early concept through production deployment.

This is a hands-on, high-ownership role at the intersection of robotics, mechanical design, systems integration, and project leadership. The ideal candidate is comfortable programming and troubleshooting FANUC robots, developing concepts in SolidWorks and robotic simulation, advancing new technologies through focused R&D, and leading cross-functional teams through design, installation, and validation.

You will have the opportunity to push the boundaries of advanced manufacturing while maintaining technical ownership of systems already in production. We are looking for a high-caliber engineer with strong technical judgment, curiosity, and the drive to improve safety, quality, throughput, reliability, and manufacturing capability.
Direct experience with AI or machine learning is not required, but curiosity about how these technologies can improve robotics, machine vision, process control, and equipment performance will set you apart. This role offers opportunities to evaluate and apply emerging AI-enabled tools as Benchmade expands its advanced automation capabilities.

Responsibilities

  • Help define and execute Benchmade's automation roadmap.

  • Identify and evaluate opportunities for robotics and advanced automation throughout manufacturing.

  • Lead automation projects from concept through proof of concept, execution, installation, integration, validation, and production release.

  • Develop project scopes, technical requirements, schedules, budgets, acceptance criteria, and implementation plans.

  • Independently develop FANUC robot applications, including program structure, motion, frames, tooling, I/O, equipment handshakes, fault recovery, and cycle optimization.

  • Create robotic simulations, reach studies, interference studies, and cycle-time estimates using FANUC ROBOGUIDE or similar tools when appropriate.

  • Design fixtures, nests, grippers, end-of-arm tooling, part-presentation systems, and other automation hardware using SolidWorks.

  • Build and test R&D prototypes to evaluate new robotic processes, tooling, sensing technologies, and manufacturing concepts.

  • Translate successful proof-of-concept projects into clear requirements for outside systems integrators.

  • Manage machine builders and integrators through design reviews, builds, testing, installation, and final acceptance.

  • Coordinate project execution with manufacturing engineering, controls engineering, operations, maintenance, quality, safety, vendors, and integrators.

  • Provide technical ownership and engineering support for automation systems in production.

  • Troubleshoot robotic, mechanical, pneumatic, sensing, controls, and process-related issues.

  • Lead root-cause analysis and implement permanent corrective actions.

  • Improve existing automation systems to increase safety, quality, reliability, throughput, and maintainability.

  • Develop and maintain robot-programming, mechanical-design, documentation, and integration standards.

  • Create technical documentation, including drawings, bills of materials, specifications, test plans, robot backups, operating instructions, and troubleshooting guides.

  • Support robotic risk assessments, guarding reviews, and equipment safety validation.

  • Train and mentor engineering, maintenance, and production personnel on robotic automation systems.

Qualifications

  • A bachelor's degree in Robotics, Mechanical or Electrical Engineering or other related degree, and 3+ years of experience automating manufacturing equipment & processes is required. Equivalency to the qualification standard will also be considered.

  • Experience working as a systems integrator is strongly preferred.

  • Strong manufacturing process knowledge; preferably in low volume, high mix production environment

  • Ability to analyze existing processes to determine feasibility and cost-effectiveness of automating them to meet company productivity and cost goals

  • Demonstrated ability to manage automation projects from concept through production deployment.

  • Proficiency designing fixtures, tooling, robotic end effectors, and automation equipment.

  • Familiarity with robotic simulation tools

  • Background developing R&D systems, prototypes, or proof-of-concept automation.

  • Ability to troubleshoot, support, and improve automation in a production environment.

  • Working knowledge of PLCs, HMIs, industrial networks, safety systems, or controls troubleshooting.

  • Experience with machine vision or computer vision is a plus.

  • Experience with pneumatics, servo motion, force/torque sensing, machine tending, material handling, grinding, polishing, inspection, or flexible automation.

  • Knowledge of ANSI/RIA robotic safety requirements, OSHA, NFPA 79, NEC, machine guarding, and risk-assessment principles.

  • Strong technical judgment, project ownership, communication, and hands-on problem-solving skills.

We do not expect every candidate to meet all the preferred qualifications listed above. If you have strong FANUC programming capability and experience in one or more areas such as mechanical design, systems integration, project engineering, controls, computer vision or advanced manufacturing, we would still like to hear from you.

Why Benchmade

  • Take ownership of automation projects with direct impact on safety, production capacity, quality, and efficiency.
  • Work at the forefront of manufacturing innovation, with opportunities to expand into AI-enabled technologies.
  • Collaborate with a high-performing team of engineers pushing the boundaries of automation.
  • Contribute to a culture of innovation, craftsmanship, and continuous improvement.

This role is built for high performers who want to take ownership of automation projects and deliver systems that transform how we manufacture. If you are ready to engineer the future of Benchmade, we want to hear from you.

Working Conditions

  • Working Environment: Time to be split 50/50 between shop and office

  • Safety Requirements:

    • Adherence to all safety policies required at all times.

    • PPE required on shop floor (ear protection where specified, safety glasses, closed toed shoes, etc.)

  • Physical Demands: Ability to lift up to 50 lbs, may be sitting or standing for long periods of time.

  • Travel Requirements: As needed, less than 10% of the time