At Contoro Robotics, we're on a mission to solve labor challenges through advanced robotic solutions. Headquartered in Austin, TX, our fast-growing startup is transforming the supply chain industry with our flagship warehouse automation technology. Our team is made up of top-tier experts in robotics, AI, and logistics, working together to push the boundaries of automation.
We’re looking for talented and ambitious individuals to join us on this journey—helping shape the future of robotics while growing alongside a world-class team. If you're passionate about innovation, problem-solving, and making a real-world impact, we want to hear from you!
About ContoroContoro Robotics is an Austin-based startup focused on warehouse automation. We design and deploy autonomous truck-unloading robots that handle heavy and highly variable payloads in real customer environments.
The RoleWe are hiring a robotics software engineer to improve how our autonomous robots execute motion and coordinate work across planning, robot control, end effectors, sensors, and material-handling equipment. You will develop production software that connects high-level autonomy decisions to reliable physical execution, with a focus on reducing cycle time, eliminating unnecessary delays, and improving recovery from real-world failures.
This role is well suited for an engineer who enjoys working across software and hardware boundaries, diagnosing system-level problems, and turning performance data into practical improvements on deployed robots.
ResponsibilitiesDevelop and improve software for robot trajectory execution, task sequencing, and hardware coordination
Profile robot cycles and reduce delays across motion planning, trajectory execution, end-effector operation, sensing, and conveyor interaction
Build and maintain reusable, validated robot motions for common operating scenarios and integrate them with online planning
Extend behavior trees or state machines for autonomous task execution, event-driven coordination, fault handling, and recovery
Integrate motion-planning outputs with industrial robot controllers, hardware interfaces, and safety constraints
Diagnose production issues using logs, telemetry, simulation, and testing on physical robots
Add instrumentation, automated tests, regression tests, and hardware validation for execution and autonomy software
Collaborate with perception, motion planning, controls, hardware, test, and deployment engineers on cross-system improvements
Participate in design reviews and contribute to system architecture and technical planning
B.S. or M.S. in Robotics, Computer Science, Electrical Engineering, Mechanical Engineering, or a related field, or equivalent industry experience
3+ years of professional experience developing software for deployed robotic or automation systems
Proficiency in modern C++ and Python in a production environment
Experience developing with ROS or ROS 2 on Linux
Hands-on experience integrating software with physical robots, actuators, sensors, or industrial automation equipment
Working knowledge of robot kinematics, motion planning, trajectory execution, and controller interfaces
Experience with behavior trees, state machines, or similar task-orchestration frameworks
Strong debugging skills across software, communications, controls, and hardware interfaces
Ability to design, test, and deliver reliable software across subsystem boundaries
Experience with industrial manipulators such as KUKA, ABB, FANUC, Universal Robots, or similar platforms
Experience with MoveIt, Pilz, OMPL, Ruckig, ros2_control, or comparable robotics frameworks
Experience profiling and improving robot cycle time, throughput, latency, or trajectory execution
Familiarity with robot communication and industrial protocols such as EtherCAT, CAN, PROFINET, EtherNet/IP, or OPC UA
Experience with behavior-tree design, event-driven automation, or production recovery logic
Experience building simulation, hardware-in-the-loop, or automated regression-testing systems
Familiarity with Docker-based deployment and cloud-based logging or monitoring
Prior work in warehouse automation, manufacturing, logistics, material handling, or robotic pick-and-place applications
Skills Required
- B.S. or M.S. in Robotics, Computer Science, Electrical Engineering, Mechanical Engineering, or a related field, or equivalent industry experience
- 3+ years of professional experience developing software for deployed robotic or automation systems
- Proficiency in modern C++ and Python in a production environment
- Experience developing with ROS or ROS 2 on Linux
- Hands-on experience integrating software with physical robots, actuators, sensors, or industrial automation equipment
- Working knowledge of robot kinematics, motion planning, trajectory execution, and controller interfaces
- Experience with behavior trees, state machines, or similar task-orchestration frameworks
- Strong debugging skills across software, communications, controls, and hardware interfaces
- Ability to design, test, and deliver reliable software across subsystem boundaries
- Experience with industrial manipulators such as KUKA, ABB, FANUC, or Universal Robots
- Experience with MoveIt, Pilz, OMPL, Ruckig, ros2_control, or comparable robotics frameworks
- Experience profiling and improving robot cycle time, throughput, latency, or trajectory execution
- Familiarity with robot communication and industrial protocols such as EtherCAT, CAN, PROFINET, EtherNet/IP, or OPC UA
- Experience with behavior-tree design, event-driven automation, or production recovery logic
- Experience building simulation, hardware-in-the-loop, or automated regression-testing systems
- Familiarity with Docker-based deployment and cloud-based logging or monitoring
- Prior work in warehouse automation, manufacturing, logistics, material handling, or robotic pick-and-place applications
What We Do
Contoro Robotics is an Austin-based robotics startup that is revolutionizing industrial automation with AI-powered robots, focused on automating the unloading of floor-loaded trailer and shipping containers from trucks. Their pioneering human-in-the-loop (HITL) model ensures over 99% success in real-world applications, bridging the gap between AI limitations and the commercial viability of advanced robotics solutions.







