SE-LB3.095.060-10.012 Bosch Rexroth Indramat
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The Bosch Rexroth Indramat SE-LB3.095.060-10.012 is part of the SE Synchronous Servo Motors series. It offers a maximum torque of 26.0 Nm and a nominal speed of 6000 rpm, with a peak current of 92 Amps and a standstill current of 15 Amps. The motor features IM B5 construction, a rotor inertia of 2.07 x10^-3 kgm2, and can withstand shocks up to 6 g.
Internal Product Review
The SE-LB3.095.060-10.012 is a Bosch Rexroth Indramat synchronous servo motor with IM B5 construction and a shaft design without keyway or feather key. This motor stands out for 26.0 Nm maximum torque and 6000 rpm nominal speed, giving motion systems a strong blend of force and speed. A 60 ms ramp-up time is a particularly impressive feature for crisp dynamic response.
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Product Description:
The SE-LB3.095.060-10.012 is a synchronous servo motor manufactured by Bosch Rexroth Indramat and included in the SE Synchronous Servo Motors series. It converts commanded electrical current into controlled rotary motion for positioning axes in automated assembly, packaging, and material-handling equipment. The unit follows the IM B5 construction style, allowing flange mounting directly to machine frames, and its smooth shaft without a keyway supports clamp-style couplings where backlash must be minimized. This arrangement suits compact servo axes that require accurate alignment and repeatable motion during frequent start-stop cycles.
During continuous operation, the motor reaches a nominal speed of 6000 rpm, enabling high cycle rates in indexing systems. At standstill, it can hold 9.5 Nm of static torque so loads remain fixed without external brakes. The electromagnetic design yields a torque constant of 0.64 Nm/A, meaning each ampere of phase current produces roughly two-thirds of a newton-meter. Thermal loading at zero speed is governed by a standstill current of 15 A, allowing extended holding periods without exceeding winding temperature limits. The three-phase stator presents a winding inductance of 8.4 mH, giving the drive a predictable current rise time that supports stable current control loops.
Dynamic events are handled by a maximum torque capability of 26.0 Nm, which can be delivered for the 60 ms ramp-up interval used for rapid accelerations. To reach that level, the inverter may draw a peak phase current of 92 A, so conductors and protection devices must accommodate short-term surges. A voltage constant of 64 V/1000 rpm sets the back EMF the drive must overcome as speed builds. The rotor inertia of 2.07 × 10⁻³ kg·m² moderates acceleration spikes, while the 0.66 Ω winding resistance limits joule losses. Such overload behavior is useful in axes that must accelerate quickly between dwell points. Mechanical integrity is certified for shocks up to 6 g.