
Ethan
Subsea Mechatronics Engineer
Core Technology: Robotics hardware design for underwater robotic vehicles.

Subsea Mechatronics Engineer
Core Technology: Robotics hardware design for underwater robotic vehicles.

Underwater SLAM Engineer
Core Technology: Robotic 3D mapping design for underwater terrain modeling and navigation.

AUV Trajectory Optimization Engineer
Core Technology: Robotic path planning design for energy-efficient underwater navigation.

Inertial Navigation Systems (INS) Engineer
Core Technology: Robotic motion sensing design for underwater robotic vehicle localization.

Underwater Acoustic Communications Engineer
Core Technology: Robotic information transfer design for acoustic communication in underwater robotic systems.

ROV/AUV Flight Control Engineer
Core Technology: Robotic feedback system design for depth and attitude control in underwater robotic vehicles.
Yes. Our robotics technology design process includes API-compatible middleware. We've integrated LIDAR, methane sniffers, and custom manipulators for EU research consortia and U.S. defense partners.
Absolutely. Deliverables include robot design blueprints, CAD robot design files (STEP, IGES), FEA reports, and a robotic design specification compliant with ISO and IMCA audit requirements.
Through rigorous fatigue design of robot structural components, salt-spray testing, and real-world validation in our 20 m test tank. All robotic mechanical design undergoes 3× safety margins per offshore standards.
From concept to sea trial: 14–22 weeks. We use agile sprints with biweekly reviews — so you're never surprised at delivery.