AL2009-0000-0000 Beckhoff
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The Beckhoff AL2009-0000-0000 is part of the AL Linear Motors series and features 9 coils with a normal winding and no connectors. It delivers a peak force of 675 Newtons and a continuous force of 300 Newtons using air cooling, with continuous and peak currents of 2.14 and 13.1 Amps respectively. The motor has a magnetic attraction force of 1325 Newtons and a width of 80 mm, and it weighs 2.0 kg.
Internal Product Review
The AL2009-0000-0000 is a Beckhoff linear servo motor featuring normal winding and a connector-free connection layout. Performance is impressive, with 300 N continuous force under air cooling and 675 N peak force for demanding linear motion applications. A 1325 N magnetic attraction force stands out as a key characteristic for stable, confident integration.
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Product Description:
The AL2009-0000-0000 linear mover is manufactured by Beckhoff as part of the AL Linear Motors series. As a member of the company’s linear servo motor product range, it provides direct electromagnetic thrust for positioning tables, pick-and-place axes, and gantries in automated machinery. The mover spans 80 mm in width and works against magnet tracks that follow a 24 mm pole pitch, allowing predictable mechanical integration with standard guide rail layouts.
During steady operation with forced air, the coil delivers a continuous thrust of 300 N while drawing only 2.14 A per phase. For rapid indexing moves, it can exert up to 675 N when the drive supplies a peak winding current of 13.1 A. A motor constant of 570 N²/W relates force production to thermal loss, underscoring the unit’s efficiency. Nine stator coils interact across a 0.5 mm air gap, generating a permanent attraction force of 1325 N that must be countered by the linear bearing set. The power constant of 140 N/A indicates the output per ampere, and the 2.0 kg coil mass gives the mover a high force-to-weight ratio. The motor uses a normal winding topology, and its wiring exits as flying leads without connectors. The stated performance values apply to operation without water cooling.
At rated load, the winding dissipates 225 W into the ambient air. A thermal resistance of 0.32 °C/W relates this loss to the temperature rise, while a thermal time constant of 77 s indicates that heating responds to changes in the duty cycle in just over a minute. The phase-to-phase back-EMF constant is 80.67 V/m/s, so velocity control algorithms can estimate speed from the generated voltage. Electrical behavior is also influenced by a winding inductance of 162 mH and a resistance of 21.6 Ω. These electrical values limit current ripple and establish the voltage requirements for the connected drive.