SR-L1.0016.060-10.000 Bosch Rexroth Indramat
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The Bosch Rexroth Indramat SR-L1.0016.060-10.000 belongs to the SR Synchronous Servo Motors series and has a flange size of 70 mm with a motor length of 196 mm. This servo motor has a locked-rotor torque of 1.6 Nm and a rated speed of 6000 min-1. It features a resolver encoder with a resolution of 8192 increments per revolution and a shaft diameter of 11 mm.
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Product Description:
The SR-L1.0016.060-10.000 is a synchronous servo motor produced by Bosch Rexroth Indramat for the SR Synchronous Servo Motors series. It is intended for integration into industrial automation axes where rapid acceleration, repeatable positioning, and direct coupling to high-speed mechanical loads are required. Operating from a shared DC bus, the unit pairs with digital drives that read resolver feedback to maintain precise motion profiles across a wide speed range during indexing, transfer, and synchronized positioning tasks.
A drive that supplies a DC link of 670 V enables the motor to reach its rated velocity of 6000 rpm without field weakening. The electromagnetic design produces torque in proportion to the current, following a constant of 0.67 Nm/A; therefore, modest current commands generate usable shaft torque with minimal copper loss. During startup or in a jam, the phase windings can draw a locked-rotor current of 2.4 A, a value the matching inverter must accommodate in its protection settings. A square mounting interface with a 70 mm flange simplifies attachment to gearheads or direct-drive stages, while an 11 mm shaft diameter and 23 mm shaft length provide a standard mechanical takeoff for couplings and pulleys. The motor body measures 196 mm long, and the rotor’s 0.83 × 10⁻⁴ kg·m² moment of inertia supports fast speed changes without overloading the servo loop.
For stall conditions, a locked-rotor torque of 1.6 Nm provides resistance to unintended movement until commanded motion resumes. Position data comes from a resolver that offers 8192 increments per revolution equivalent resolution, giving the drive fine granularity for micro-increment moves and stable low-speed control. System designers can reference the unit mass of 2.1 kg when calculating load moments, and installations subjected to impact can rely on its shock resistance of 6 g. The stated shaft geometry and compact housing length support use in tightly spaced multi-axis machines where available mounting space is limited.