ELAU SM10040050P145S

Product Introduction: The SM10040050P145S (formatted as SM100-40-050-P1-45-S) is a high-performance servo motor from the SM100 series. It is engineered for applications requiring high power density and precise control, such as packaging and robotics.

Category:

Description

ELAU SM10040050P145S

Technical Specifications:

  • Brand: ELAU (Schneider Electric)
  • Model: SM10040050P145S
  • Series: SM100
  • Flange Size: 100 mm
  • Rated Speed: 4000 RPM

Functional Features:

  • High Power Density: Delivers high torque in a compact package.
  • Integrated Feedback: Equipped with a high-resolution encoder.
  • Robust Construction: Designed for harsh industrial environments.
  • Single Cable Technology: Simplifies installation and reduces wiring errors.

Application Scenarios:

  • High-speed packaging machinery.
  • Robotics and handling systems.
  • Printing and converting equipment.

Performance Parameters:

  • Rated Torque: 5.0 Nm.
  • Control Modes: Position, Velocity, and Torque control.
  • Efficiency: High energy efficiency due to permanent magnet design.

Material Composition:

  • Housing: Industrial-grade aluminum.
  • Magnets: NdFeB permanent magnets.

Structural Features:

  • Compact flange mounting design.
  • IP65/IP67 rated connectors.
  • Self-cooling design for continuous operation.

Working Principle:
The motor operates as a synchronous AC servo motor. The drive supplies three-phase current to the stator windings, creating a rotating magnetic field that interacts with the permanent magnets on the rotor. The integrated encoder provides real-time position feedback.

Installation Requirements:

  • Mount securely on a rigid surface using the standard flange.
  • Ensure proper alignment of the shaft to avoid mechanical stress.
  • Connect the power and feedback cables using shielded connectors.

Usage Notes:

  • Verify the voltage rating matches the connected drive.
  • Do not exceed the permissible radial and axial loads on the shaft.
  • Ensure adequate ventilation for heat dissipation.