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Robotics Tester Jobs in Utah (NOW HIRING)

Perception Engineer IV

Mendon, UT · On-site

$128K - $169K/yr

Experience with ROS, ROS2, or comparable robotics middleware * Experience developing production-quality software using version control, peer review, automated testing, continuous integration, and ...

Perception Engineer IV

Mendon, UT · On-site

$128K - $169K/yr

Experience with ROS, ROS2, or comparable robotics middleware * Experience developing production-quality software using version control, peer review, automated testing, continuous integration, and ...

Our client, a leader in innovative robotic and ground vehicle systems, is seeking a dedicated ... Experience with CAD/Circuit design and building/testing harnesses according to IPC/WHMA-A-620 ...

Good experience in mechanical design, automation, robotics, or related areas (internships count ... Hands-on experience with prototyping, testing, or hardware builds preferred. * Basic understanding ...

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Robotics Tester information

Which 5 jobs will survive AI?

Robotics testers are likely to continue working as AI cannot fully replace hands-on evaluation of robotic systems, especially those requiring troubleshooting, manual adjustments, and real-world testing. Jobs that involve complex problem-solving, creativity, and human oversight—such as healthcare professionals, skilled tradespeople, educators, AI specialists, and cybersecurity experts—are expected to persist despite advances in AI. These roles often require emotional intelligence, physical dexterity, or nuanced judgment that AI currently cannot replicate fully.

Is robotics still in demand?

Robotics testers are in demand as automation and robotics technology continue to grow across industries such as manufacturing, healthcare, and logistics. The role often requires knowledge of programming, sensors, and testing procedures, with job opportunities expected to remain strong due to ongoing technological advancements.

How to get an entry level robotics job?

To secure an entry-level robotics tester position, candidates should have a background in robotics, mechanical or electrical engineering, or computer science, along with knowledge of programming languages like Python or C++. Gaining hands-on experience through internships, certifications in robotics or automation, and familiarity with testing tools and environments can improve job prospects. Strong problem-solving skills and attention to detail are also important for success in this role.

What engineers make $500,000?

Senior engineers in specialized fields such as software, aerospace, or petroleum engineering can earn $500,000 or more annually, often through a combination of base salary, bonuses, and stock options. Achieving this level typically requires extensive experience, advanced skills, and working in high-demand industries or leadership roles.

What are Robotics Testers?

Robotics Testers are professionals who evaluate and ensure the functionality, reliability, and safety of robotic systems before they are deployed for use. They design and execute tests to identify bugs, performance issues, and potential hazards in both hardware and software components of robots. Robotics Testers work closely with engineers and developers to troubleshoot problems and verify that robots meet required standards and specifications. Their role is crucial in making sure that robots operate as intended in real-world environments.

What is the difference between Robotics Tester vs Robotics Engineer?

AspectRobotics TesterRobotics Engineer
CredentialsTypically requires a degree in robotics, mechanical, electrical engineering, or computer science; certifications in testing or automation are a plusRequires a degree in robotics, mechanical, electrical engineering, or computer science; often holds advanced certifications or specializations
Work EnvironmentPrimarily in labs or testing facilities, focusing on testing robotic systems and softwareDesigning, developing, and implementing robotic systems, often in R&D or manufacturing settings
Employer & Industry UsageUsed by testing labs, manufacturing companies, and R&D departments to ensure robotic systems meet quality standardsEmployed by tech companies, manufacturing firms, and research institutions to create and improve robotic solutions

Robotics Testers focus on evaluating robotic systems for quality and functionality, while Robotics Engineers are involved in designing and developing these systems. Both roles require technical skills and knowledge of robotics, but their responsibilities differ significantly.

What are the key skills and qualifications needed to thrive as a Robotics Tester, and why are they important?

To thrive as a Robotics Tester, you need a solid background in robotics engineering, programming (such as Python or C++), and experience with automated testing methodologies, often supported by a relevant engineering degree. Familiarity with hardware-software integration tools, test automation frameworks, and simulation environments like ROS (Robot Operating System) is typically required. Strong problem-solving abilities, attention to detail, and effective communication are crucial soft skills in this role. These skills and qualifications ensure that robotic systems are thoroughly validated, reliable, and safe for deployment in real-world applications.

What are some common challenges faced by Robotics Testers when validating new robotic systems?

Robotics Testers often encounter challenges such as troubleshooting complex hardware-software interactions, replicating intermittent bugs, and ensuring safety compliance during testing. Since robotic systems integrate sensors, actuators, and AI algorithms, testers must develop robust test plans to simulate real-world scenarios and edge cases. Collaboration with engineers and developers is crucial to quickly identify root causes and refine system performance, making strong communication and problem-solving skills essential in this role.
What are popular job titles related to Robotics Tester jobs in Utah? For Robotics Tester jobs in Utah, the most frequently searched job titles are:
What cities in Utah are hiring for Robotics Tester jobs? Cities in Utah with the most Robotics Tester job openings:
Perception Engineer III - Project Based

Perception Engineer III - Project Based

Autonomous Solutions

Mendon, UT • On-site

$109K - $144K/yr

Temporary

Medical, Retirement, PTO

Posted 15 days ago


Job description

This is a project-based employee role supporting the development, integration, and validation of ASI's autonomous agricultural vehicle platforms. Development phases of this nature typically continue through project completion, often spanning two to four years, although scope and duration are determined by business and customer needs.
JOB SUMMARY
The Perception Engineer III develops, integrates, and validates perception capabilities that enable ASI's autonomous agricultural equipment to understand field conditions, detect obstacles, identify operational boundaries, and perform assigned tasks safely and effectively. This role works with data from cameras, LiDAR, radar, GPS/GNSS, inertial sensors, and other systems to support object detection, terrain understanding, crop and vegetation awareness, traversability analysis, and autonomous machine operation.
As a Level III engineer within ASI's five-level engineering structure, this position independently contributes to moderately complex perception features and subsystem improvements while receiving guidance on broader architectural and system-level decisions. The role collaborates with GNC, embedded software, systems, test, and field operations teams to improve perception performance across changing terrain, vegetation, lighting, weather, dust, and agricultural operating conditions.
ESSENTIAL DUTIES AND RESPONSIBILITIES
  • Develop, implement, integrate, and validate perception algorithms for autonomous agricultural vehicle applications
  • Contribute to capabilities involving obstacle detection, object classification, tracking, terrain understanding, traversability analysis, and operational-area awareness
  • Process and analyze data from cameras, LiDAR, radar, GPS/GNSS, inertial sensors, and other vehicle systems
  • Support perception of field boundaries, crop rows, vegetation, terrain features, equipment, personnel, animals, and other operational hazards
  • Develop and improve environmental models used to support autonomous navigation, path planning, and agricultural task execution
  • Contribute to multi-sensor fusion solutions that provide reliable environmental awareness in outdoor agricultural environments
  • Own defined perception features and moderately complex assignments from development through integration, testing, and field validation
  • Integrate perception software with ASI's autonomous agricultural platforms and embedded computing systems
  • Evaluate perception performance using recorded datasets, simulation, software-in-the-loop testing, hardware-in-the-loop testing, and full-vehicle field testing
  • Develop measurable performance criteria for assigned perception features and use test results to identify improvement opportunities
  • Analyze field data to identify false detections, missed detections, edge cases, and environmental performance limitations
  • Develop tools and scripts for data processing, visualization, labeling, replay, regression testing, and performance analysis
  • Troubleshoot issues involving sensor calibration, timing, synchronization, coordinate transformations, vehicle movement, and system integration
  • Support sensor selection, placement, mounting, configuration, calibration, and validation activities
  • Improve perception software performance for real-time execution on embedded computing platforms
  • Collaborate with GNC engineers to ensure perception outputs support navigation, path planning, obstacle avoidance, and autonomous task execution
  • Work with test engineers and field testers to develop realistic agricultural test scenarios and reproduce perception-related issues
  • Participate in design reviews, code reviews, sprint planning, and technical investigations
  • Document algorithms, software interfaces, assumptions, test results, technical decisions, and known system limitations
  • Support field deployments, customer demonstrations, and troubleshooting activities as required

ESSENTIAL EDUCATION, WORK EXPERIENCE, JOB SKILLS
  • Bachelor's degree in Computer Science, Computer Engineering, Electrical Engineering, Robotics, Mathematics, or a related technical field
  • Typically five or more years of experience developing perception, computer vision, robotics, machine learning, sensor-fusion, or autonomous-system software
  • Strong proficiency in C++ and Python
  • Experience developing or integrating computer vision, point-cloud processing, sensor-fusion, or machine-learning algorithms
  • Experience working with cameras, LiDAR, radar, GPS/GNSS, or other robotic sensing technologies
  • Understanding of coordinate systems, transformations, sensor calibration, data synchronization, and geometric algorithms
  • Experience working in Linux-based software-development environments
  • Experience with ROS, ROS2, or comparable robotics middleware
  • Experience developing production-quality software using version control, peer review, automated testing, and continuous integration practices
  • Ability to analyze large datasets and establish measurable criteria for evaluating algorithm performance
  • Experience troubleshooting software, sensor, and system-integration issues
  • Strong analytical, debugging, and technical problem-solving skills
  • Strong written and verbal communication skills
  • Ability to work effectively with cross-functional engineering and field teams

PREFERRED QUALIFICATIONS
  • Master's degree in Computer Science, Electrical Engineering, Robotics, Machine Learning, or a related discipline
  • Experience developing perception systems for autonomous agricultural equipment, off-road vehicles, heavy machinery, or mobile robots
  • Familiarity with agricultural operations, field navigation, crop production, spraying, planting, harvesting, or related workflows
  • Experience with OpenCV, Point Cloud Library, PyTorch, TensorFlow, CUDA, or similar technologies
  • Experience with machine-learning approaches for detection, segmentation, classification, depth estimation, or tracking
  • Experience with LiDAR point-cloud registration, clustering, filtering, mapping, or ground-surface analysis
  • Familiarity with crop-row detection, vegetation segmentation, field-boundary detection, elevation mapping, or traversability analysis
  • Familiarity with Kalman filtering, Bayesian estimation, probabilistic robotics, or other sensor-fusion methods
  • Experience optimizing perception software for GPUs or embedded computing platforms
  • Experience with simulation, recorded-data replay, hardware-in-the-loop, or software-in-the-loop testing
  • Familiarity with functional safety concepts and validation practices for autonomous or safety-critical systems
  • Experience validating autonomous systems in dusty, high-vibration, uneven, outdoor, agricultural, or industrial environments

BENEFITS
ASI offers a comprehensive benefits package, including:
  • 401k with employer match
  • Generous HSA contribution
  • PTO, paid holidays, and flextime
  • ASI covers 90% of employee medical plan costs

At Autonomous Solutions, Inc. (ASI), we are committed to fostering a diverse, inclusive, and equitable workplace where all employees and applicants have equal opportunities. We prohibit discrimination and harassment of any kind based on race, color, religion, sex, national origin, age, disability, genetic information, veteran status, sexual orientation, gender identity, or any other legally protected characteristic. ASI complies with all applicable federal, state, and local laws regarding nondiscrimination in employment and is dedicated to providing reasonable accommodations for individuals with disabilities throughout the hiring process.
This is a full-time, project-based employment opportunity. Your employment with ASI will be "at will," meaning that either you or ASI may terminate your employment at any time for any lawful reason, with or without cause or advance notice.