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BECKHOFF Stepping Motor - AS1060-1000

BECKHOFF Stepping Motor - AS1060-1000

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 BECKHOFF Stepping Motor - AS1060-1000

The Beckhoff AS1060-1000 is a stepping motor designed for precise motion control applications. It operates with a specific step angle and torque characteristics, suitable for integration into automated systems requiring accurate positioning. The motor is compatible with Beckhoff's range of motion controllers, ensuring seamless operation within industrial environments.

Specifications 
Condition New / Never Used Surplus
Part # AS1060-1000
Category Servo Products
Subcategory Stepper Motor
Weight 3.00 lbs
Nominal Power 24/50 VDC, 68.8 W
Phases 2 Phase
Winding Type Bipolar Winding
Steps 200 Steps
Torque (MO) 5 Nm
Current (IO) 5 A
Protection Rating IP20
Connectors M12 Connectors
Shaft Details Shaft with Fitted Keyway
Dimensions Flange 86 mm, Shaft 14 mm
What our Experts Think
  • Industrial-grade motion control motor: The Beckhoff AS1060-1000 is a high-torque stepper motor designed for precise positioning in automation, CNC, and machine-building applications.
  • Strong holding performance: Delivers up to 5.0 Nm holding torque, making it suitable for demanding auxiliary axes and positioning tasks.
  • NEMA 34 class robustness: Built on a large-frame (86 mm) platform, providing stability and rigidity for heavier mechanical loads.
  • Precision stepping control: 1.8° step angle (200 full steps/rev) enables smooth, repeatable motion without feedback in many applications.
  • Designed for TwinCAT ecosystems: Integrates seamlessly with Beckhoff motion terminals and TwinCAT NC control for synchronized automation tasks.
  • Reliable open-loop operation: Ideal for cost-efficient systems where simple, accurate positioning is required without servo complexity.
  • Best suited for auxiliary motion: Commonly used in light-to-medium duty axes such as feeders, conveyors, and positioning stages
Q&A

Q: What is the Beckhoff AS1060-1000 stepping motor used for?
A: The AS1060-1000 is a high-performance 2-phase stepping motor designed for precise positioning in industrial automation, CNC systems, and motion control applications.

Q: What makes this stepping motor suitable for automation systems?
A: It delivers accurate step control, high torque at low speeds, and reliable repeatability for positioning tasks in automated machinery.

Q: What systems is it compatible with?
A: It is designed to work with stepper motor drives and motion control systems from Beckhoff Automation, including TwinCAT-based control platforms.

Q: Where is this motor typically used?
A: It is commonly used in packaging machines, pick-and-place systems, CNC equipment, labeling machines, and precision positioning assemblies.

Q: What are its key benefits?
A: Key benefits include high positional accuracy, compact industrial design, strong holding torque, and low maintenance operation.

Q: How does it improve machine performance?
A: It enables smooth, repeatable motion control without the need for feedback systems in many applications, reducing system complexity and cost.

Q: Is it suitable for continuous industrial use?
A: Yes. It is built for 24/7 industrial environments with robust construction for long service life and stable performance.

Q: Why choose the AS1060-1000 over standard motors?
A: It provides precise open-loop motion control, making it ideal for cost-effective automation where accuracy and reliability are critical.

Maintenance Tips
 

• Ensure proper wiring of motor phases according to the AS1060-1000 datasheet to avoid mis-stepping or damage.

• Verify correct configuration of current, microstepping, and control parameters in the Beckhoff Automation drive system.

• Maintain stable power supply within specified voltage/current limits to prevent torque loss or overheating.

• Regularly inspect motor housing for dust buildup, moisture, or signs of overheating or wear.

• Check coupling, shaft alignment, and mounting bolts to prevent vibration and mechanical stress.

• Avoid running the motor beyond rated torque and speed to extend service life.

• Ensure proper grounding and shielding of motor cables to reduce electrical noise and interference.

• Periodically inspect connectors and cables for wear, looseness, or insulation damage.

• Monitor operating temperature during continuous use to prevent thermal overload.

• Keep the system firmware and motion control parameters optimized for smooth and accurate positioning.