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Robotics Tester Jobs in Enterprise, AL (NOW HIRING)

Robotics Tester information

See Enterprise, AL salary details

$8

$30

$49

How much do robotics tester jobs pay per hour?

As of Aug 26, 2026, the average hourly pay for robotics tester in Enterprise, AL is $30.40, according to ZipRecruiter salary data. Most workers in this role earn between $16.97 and $40.19 per hour, depending on experience, location, and employer.

What is a robotics tester?

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 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 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.

Is it hard to get a job in robotics?

Getting a job as a robotics tester can be competitive and typically requires a background in engineering, programming, or related technical skills. Relevant experience with automation tools, robotics systems, and certifications can improve job prospects, but entry-level positions may be available for those with strong technical knowledge and problem-solving abilities.

Aviation Military Analyst, Unmanned Aircraft Systems

Jobtailor

Ozark, AL • On-site

$95 - $135/hr

Other

Posted 7 days ago


Job description

Responsibilities
  • Serve as a subject matter expert on Group 13 unmanned aircraft systems (UAS), autonomy, and emerging drone technologies
  • Design, build, configure, program, integrate, and troubleshoot small unmanned aircraft systems and associated subsystems
  • Support capability development, experimentation, operational assessments, and technology evaluations for Army and Department of Defense UAS initiatives
  • Program and configure autonomous and semi-autonomous flight control systems using industry-standard open-source flight controller software
  • Analyze UAS hardware and software architectures, power systems, communications, payload integration, and system performance
  • Develop technical recommendations related to UAS design, autonomy, mission planning, and operational employment
  • Collaborate with engineers, software developers, operators, and government stakeholders to support technology development and fielding efforts
  • Develop and execute technical plans based on broad or evolving program requirements while maintaining stakeholder awareness of project status
  • Translate complex technical concepts into clear presentations, briefings, and written documentation appropriate for both technical and executive audiences
  • Support development of capability requirements using the DOTMLPF-P framework
  • Analyze technical data, performance metrics, and operational results to support informed program decisions
  • Participate in technical demonstrations, working groups, and customer engagements
  • Support organizational process improvements and technology transition activities
  • Travel up to 50% in support of customer meetings, testing, demonstrations, and operational events
Requirements
  • Bachelor's degree in Engineering, Aviation, Computer Science, Robotics, or a related technical field, or equivalent professional experience
  • Minimum 5 years of hands‑on experience building, programming, configuring, flying, and troubleshooting First Person View (FPV) quadcopters or small unmanned aircraft systems
  • Experience programming and operating autonomous or semi‑autonomous UAS using one or more of the following flight control systems: Betaflight, iNAV, ArduPilot, PX4 or similar open‑source flight controller software
  • Experience using C and/or C++ within command‑line interface (CLI) environments for flight controller programming and configuration
  • Strong understanding of: UAS power systems, Aircraft design considerations, Component selection, Flight performance limitations, Operational risks and technical tradeoffs
  • Experience working directly with multidisciplinary engineering and technical development teams
  • Military experience operating Group 3 or smaller tactical unmanned aircraft systems, or equivalent operational experience supporting public safety/first responders, commercial drone operations, infrastructure inspections, forestry, commercial delivery, or other advanced sUAS applications
  • Demonstrated ability to communicate complex technical information to audiences ranging from engineers to senior executives
  • Experience independently planning and executing technical efforts with minimal supervision
  • Strong analytical skills with experience using technical data and performance metrics to support recommendations and decision‑making
  • Excellent written and verbal communication skills
  • Working knowledge of the DOTMLPF‑P capability development framework and defense requirements generation process
  • Ability to travel up to 50%
  • FAA Part 107 Remote Pilot Certificate required
  • FCC Amateur Radio Technician License required
  • Active Secret Security Clearance
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