The Schneider Electric Lexium BCH16HC02332F5C2 is a high-precision AC servo motor engineered for compact industrial automation systems requiring reliable motion control. With a 200 W rated power, compact 60 mm flange, and heavy-inertia design, this servo motor delivers stable and smooth performance across a range of applications including CNC machines, packaging systems, robotic axes, and material handling equipment.
Designed for enhanced position accuracy, this model features a 23-bit high-resolution encoder and an integrated holding brake mechanism for improved safety and control in vertical or sensitive motion tasks. Its moderate 3000 rpm nominal speed makes it suitable for moderate speed and torque applications where precision and responsiveness are essential.
Key Features
- 200 W rated output power — balanced power for compact automation needs
- 60 mm flange with 11 mm shaft — fits tight installation spaces
- 23-bit high-resolution encoder feedback — superior positional accuracy
- 3000 rpm nominal speed — ideal speed range for precision control
- Heavy-inertia design — consistent performance under load variation
- Integrated holding brake — enhances safety and static positioning
- Lexium 16D compatible — easy integration with Schneider servo drives
Technical Specifications
| Specification | Details |
| Model / Series | BCH16HC02332F5C2 — Lexium BCH16 series |
| Rated Output Power | 200 W |
| Flange Size | 60 mm |
| Shaft Diameter | 11 mm |
| Encoder Type | 23-bit high-resolution encoder |
| Nominal Speed | 3000 rpm |
| Maximum Speed (Mechanical) | Up to 5000 rpm |
| Rated Voltage | 220 V AC |
| Holding Brake | Integrated brake |
| Rotor / Inertia | Heavy-inertia design |
| Drive Compatibility | Lexium 16D servo drives |
| Typical Uses | Automation, CNC, robotics, packaging |
Applications
- Compact and medium-sized CNC machines
- Packaging, labeling, and material handling systems
- Robotic axes and pick-and-place automation
- Printing and assembly equipment
- Tight-space motion control applications requiring precise positioning




