WAIC 2026 put embodied intelligence, robot systems, and physical AI in the same engineering discussion. The official WAIC forum schedule covered July 17 to July 20, 2026, in Shanghai. The dates are available on the official WAIC website.

Why vertical motion matters
An embodied robot works in the physical world. It may need to reach shelves, machines, trays, cameras, or work surfaces at different heights. A servo lifting column can add a guided vertical axis.
The column can move the robot body, tool platform, sensor mast, or transfer tray. This may reduce awkward arm poses. It can also let one robot serve more than one work height.
Robot applications
- Cobots: adjust the robot base for several fixtures
- AMRs and AGVs: align trays with shelves or conveyors
- Inspection robots: change camera or sensor height
- Mobile manipulators: raise the body at the work point
- Research platforms: test torso, tool, or sensor height
Selection checklist for robot builders
- Total moving mass, including cables and payload
- Center-of-gravity offset and bending moment
- Stroke, closed height, speed, and duty cycle
- Base stiffness and stability at full extension
- Voltage, feedback, brake, and control interface
- Dust, moisture, temperature, vibration, and cable routing
Rated load is only one input. A robot creates offset load as the arm and payload move. An AMR also adds base acceleration and floor vibration. Use the full motion case for selection.
Product parameter selection example
Assume a mobile robot carries a 45 kg robot arm and tool. Their combined center of gravity is 250 mm from the column center. The vertical axis needs 600 mm of travel.
First, calculate the static force. Next, calculate the offset moment. Then include robot acceleration, base motion, and the approved safety factor. Check column overlap, speed, brake behavior, and mounting stiffness.
This example explains the process. It is not a model recommendation. A mobile design also needs a tip-over and braking review at full height.
GEMING robot motion options
GEMING supplies servo lifting columns, electric lifting columns, linear actuators, and control options. The embodied robot pillar is one route for robot height adjustment.
Use the lifting column selection guide and height calculator for early planning. Final selection still needs the complete load and layout.
Frequently asked questions
A lifting column can move the robot body, tool, tray, or sensor to a new height. This can expand the work area without using all arm travel for height adjustment.
Include the robot, tool, payload, cables, fixture, and any offset from the column center. Acceleration and base motion must also be included.
It can be considered when the base, brakes, column, and controls are designed for the moving load. Check stability at full height.
Define supply voltage, feedback type, position resolution, interface, update rate, travel limits, brake control, and fault behavior.