AL2015-0000-0000 Beckhoff
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The Beckhoff AL2015-0000-0000 is a linear motor from the AL Linear Motors series, featuring a continuous force of 500 Newtons and a peak force of 1125 Newtons. It has a coil unit weight of 3.2 kg, a winding resistance of 8.6 Ohms, and operates without water cooling. The motor includes 15 coils, a pole pitch of 24 mm, and comes without connectors.
Internal Product Review
The AL2015-0000-0000 is a Beckhoff linear servo motor that delivers 500 N of continuous force at 4.46 A, making it a strong fit for precise linear motion duties. Normal winding and operation without water cooling support straightforward integration and dependable thermal behavior in well-managed machine designs. Peak force of 1125 N stands out as a key advantage for dynamic axis performance.
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Product Description:
The AL2015-0000-0000 coil segment is produced by Beckhoff for the AL Linear Motors series. As part of the linear servo motor range, this primary section converts drive current into thrust for positioning gantries, pick-and-place units, or machine tables. It has a frame width of 80 mm and is supplied without connectors, allowing its wiring to be customized for the machine harness. A 1 m unassembled cable is included, and the design does not use water cooling, which simplifies installation.
The actuator delivers a continuous thrust of 500 N while drawing 4.46 A, allowing it to move a sustained load while remaining within its operating limits. A precise 0.5 mm air gap between the coil face and the magnetic track maintains flux linkage and prevents contact. For rapid indexing, the magnetic circuit can generate up to 1125 N of peak force, providing additional thrust for acceleration. Continuous power loss under full-duty operation is 375 W, with heat dissipated through the aluminum body. The coil segment has a mass of 3.2 kg. Fifteen coils arranged as a normal winding provide a power constant of 112 N per ampere, while a resistance of 8.6 Ω moderates inrush when the drive is enabled.
The electromagnetic design provides a motor constant of 950 N²/W, indicating how effectively electrical power is converted into thrust before the temperature rises. A pole pitch of 24 mm establishes the spatial period of the permanent-magnet track that interacts with the 15-coil array, so position feedback must be scaled to this mechanical increment. Thermal modeling uses a thermal resistance of 0.19 °C/W, which links the internal heat source to the housing surface. A thermal time constant of 77 seconds indicates how long the coil takes to approach a steady temperature after a load change. Drive voltage dynamics are influenced by a winding inductance of 64 mH, which works with the circuit resistance to set the current-loop bandwidth.