Robotics Software Engineer, Motion Planning - Logistics Division
- Hiring from
- Japan
- Work type
- Hybrid
- Posted
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Responsibilities
Develop real-time motion control software to control robot manipulators using Inverse Kinematics, collision avoidance, trajectory generation, time parameterization, and active compliance control algorithms
Develop TX's custom-made robot control software, such as actuator driver integration and ROS framework integration
Integrate the entire software components to make the robotic solution ready for enterprise-level production
Requirements
Master's degree or above in a relevant field
Expert in C++ software development on Linux/Ubuntu platform with 3 years of work experience.
Expert in ROS2 framework and MoveIt Motion Planning. If we gave you URDF, you should be able to create a ROS environment with MoveIt to control the robot in the Gazebo environment from scratch
Experience in developing software to control robot manipulator (e.g., UR series of Universal Robots)
Hands-on experience with motor control and PID algorithms
Knowledge of robotics control theory (Kinematics, Dynamics, Motion Planning, and Control)
Passion to develop a product used in real operations (product mindset)
Good communication skills and proactive collaboration
Business level of English
Desired Skills
Japanese language skill to communicate with internal/external stakeholders
Experience in developing force/torque control software, such as compliance control
Experience with Docker, CI/CD, and automated robotics software deployment
Experience with CAN/CANopen, CiA 402, EtherCAT, or other industrial servo-control protocols
Creative in solving issues; data-driven debugging and iteration
Autonomous problem-solver: proactively identifies and breaks down issues, investigates logs/metrics, designs experiments, proposes options, and delivers fixes/features end-to-end with minimal oversight—while communicating progress and escalating when truly blocked
Experience simulating robotic systems and their interactions with physics-based environments