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Robot Driver Jobs (NOW HIRING)

Robotics Hardware Integration Engineer

Atlanta, GA · On-site +1

$118.80K - $156.80K/yr

This means sensor drivers, motor controllers, embedded communication buses, power management interfaces, and the low-level software that makes the physical robot work. You will be the person who ...

Principal Software Engineer, Robot Software

Sunnyvale, CA · Hybrid

$158.40K - $212.40K/yr

... sensor drivers is proactively understood and cascaded by joint analysis with the behaviors and ... Deep experience in Robotics Middleware (ROS2, Cyber RT, or custom IPCs) and Real-Time Systems.

Perform robot setup including mastering, TCP, payload, and offline programs * Troubleshoot and ... Valid passport and driver's license * Eligibility for a TN Visa To learn more about our ...

Robotics Technician IV

Waltham, MA · On-site

$27.50 - $35.60/hr

Apply knowledge of robot user interface and technical documentation * Prototype, build, and ... Valid driver's license with a good driving record * Ability to travel via plane, train, or motor ...

Perform robot setup including mastering, TCP, payload, and offline programs * Troubleshoot and ... Valid passport and drivers license * Eligibility for a TN Visa To learn more about our organization ...

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Perform robot setup including mastering, TCP, payload, and offline programs * Troubleshoot and ... Valid passport and drivers license * Eligibility for a TN Visa To learn more about our organization ...

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Robot Driver information

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How much do robot driver jobs pay per hour?

As of May 30, 2026, the average hourly pay for robot driver in the United States is $36.88, according to ZipRecruiter salary data. Most workers in this role earn between $30.53 and $43.27 per hour, depending on experience, location, and employer.

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

To thrive as a Robot Driver, you need a solid understanding of robotics operation, navigation systems, and basic mechanical or electrical troubleshooting, often supported by technical training or certifications in robotics or automation. Familiarity with robot control interfaces, teleoperation platforms, and fleet management software is typically required. Strong problem-solving skills, attention to detail, and the ability to remain calm under pressure help you adapt to unexpected challenges and ensure safe operation. These capabilities are crucial for maintaining productivity, minimizing downtime, and ensuring the reliable performance of robotic systems in various environments.

What are some typical challenges a Robot Driver might face when operating autonomous vehicles in industrial settings?

Robot Drivers often encounter challenges such as adapting to rapidly changing environments, troubleshooting technical malfunctions, and ensuring seamless integration with other automated systems. Coordination with human team members and adhering to strict safety protocols are also essential aspects of the role. Continuous learning is important, as new software updates or hardware changes may require quick adaptation and problem-solving skills. Effective communication with engineers and operators helps in minimizing downtime and optimizing workflow.

What are Robot Drivers?

Robot drivers are professionals who operate, monitor, and sometimes program autonomous or semi-autonomous robots, often used in industries like warehousing, delivery, agriculture, or mining. Their role typically involves overseeing the robot’s journey, ensuring safety protocols are followed, troubleshooting technical issues, and sometimes taking manual control if needed. As robotics technology advances, robot drivers play a key role in integrating automation into everyday operations. They may also assist in data collection and reporting on the robot's performance.

What is the difference between Robot Driver vs Automated Vehicle Operator?

AspectRobot DriverAutomated Vehicle Operator
CredentialsMay require specific certifications in robotics or vehicle operationOften requires licenses for vehicle operation and safety training
Work EnvironmentIndoor or outdoor settings, warehouses, factories, or logistics hubsRoads, industrial sites, or designated vehicle routes
Industry UsageLogistics, manufacturing, warehousesTransportation, delivery services, logistics
Search IntentComparing roles involving robotic or automated vehicle operationSimilar roles focusing on automated or driverless vehicle management

The main difference between a Robot Driver and an Automated Vehicle Operator lies in their focus: Robot Drivers typically operate robotic or semi-autonomous vehicles in controlled environments, often requiring specialized certifications. Automated Vehicle Operators oversee driverless vehicles, often on public roads or industrial routes, with a focus on safety and compliance. Both roles are integral to automation in logistics and transportation industries but differ in environment and specific credentials.

More about Robot Driver jobs
What cities are hiring for Robot Driver jobs? Cities with the most Robot Driver job openings:
What states have the most Robot Driver jobs? States with the most job openings for Robot Driver jobs include:
Infographic showing various Robot Driver job openings in the United States as of May 2026, with employment types broken down into 2% As Needed, 2% Full Time, 94% Part Time, and 2% Temporary. Highlights an 100% Physical job distribution, with an average salary of $76,712 per year, or $36.9 per hour.
Robot Platform Software Engineer

Robot Platform Software Engineer

Apptronik

Austin, TX

Other

Posted yesterday


Job description

JOB SUMMARY

You will join a team developing state-of-the-art general-purpose robots designed to operate in human spaces and with human tools. It is designed to work alongside humans, mobilize to human spaces, and manipulate the world around it.

Apptronik is a pioneering company specializing in advanced robotics and automation solutions. We are seeking a talented Robot Platform Software Engineer to join our team in Austin, TX. This role offers an exciting opportunity to work on cutting-edge technology platforms that power our next-generation robotic systems.

ESSENTIAL DUTIES AND RESPONSIBILITIES or KEY ACCOUNTABILITIES

  • Platform Evolution: Contribute to the development and implementation of scalable software solutions that evolve existing architectures to support next-generation robotic systems.
  • Architecture: Participate in architectural discussions and provide technical input to help define the roadmap for platform software, focusing on modularity and performance.
  • Hardware-Software Integration: Work closely with hardware teams to execute de-risking tasks and validate new components, ensuring reliable communication and integration across the robotic stack.
  • Resource Profiling: Assist in evaluating compute resource requirements by profiling complex software stacks and identifying opportunities for optimization in constrained environments.
  • System Adaptation: Support the porting and optimization of established software frameworks to new hardware platforms, maintaining high standards for system stability and reliability.
  • Performance Benchmarking: Conduct profiling and benchmarking tests to identify system bottlenecks, helping to ensure the platform scales effectively across diverse hardware.
  • Engineering Standards: Adhere to and promote software engineering best practices, including participating in code reviews, maintaining clear documentation, and contributing to continuous integration efforts.

SKILLS AND REQUIREMENTS

  • Strong C++ Command: Proficiency in C++ within a Linux environment, with experience in system-level programming and an understanding of performance-sensitive code.
  • Architectural Awareness: Solid understanding of complex, multi-component system architectures and the ability to contribute meaningful design ideas for safety and scalability.
  • Hardware Interaction: Experience with hardware integration and testing, including familiarity with low-level drivers, communication protocols (e.g., CAN, EtherCAT), or sensor data handling.
  • Analytical Profiling: Ability to perform resource usage analysis (CPU, memory, latency) to help inform system specifications and hardware selection.
  • Adaptability with Existing Code: Proven ability to work within and improve established codebases, balancing the need for modernization with a respect for proven architectural foundations.
  • Distributed Systems: Familiarity with API design, and containerization tools like Docker or Kubernetes in a robotics or embedded context.
  • Collaborative Mindset: Strong communication skills and the ability to work effectively in a cross-functional environment, bridging the gap between hardware constraints and software requirements.

EDUCATION and/or EXPERIENCE

  • Bachelor's degree in computer science, Engineering, or related field; Master's degree in computer science or equivalent preferred.
  • 4+ years of experience in software engineering, with a focus on developing system-level software

PHYSICAL REQUIREMENTS

  • Prolonged periods of sitting at a desk and working on a computer
  • Must be able to lift 15 pounds at times
  • Vision to read printed materials and a computer screen
  • Hearing and speech to communicate