MAF130D-0250-FQ-S2-DH0-05-H1
Wake Industrial LLC is not an authorized distributor of this product.
MPN: R911375912
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MAF130D-0250-FQ-S2-DH0-05-H1 Induction Motor is manufactured by Bosch Rexroth Indramat. This motor has a Singleturn absolute encoder , EnDat2.1, with 2048 encoder and a High Speed bearing. It also has a Plain, without Sealing Ring shaft and is not equipped with a holding brake.
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Product Description:
This MAF130D-0250-FQ-S2-DH0-05-H1 induction motor provides robust torque and power in a compact frame. Rated for 250 Watts of continuous output, it can generate rotational force for medium-duty industrial applications. Within its 130mm body resides a carefully engineered electromagnetic design utilizing advanced copper windings and steel laminations.
Control is enabled through an integrated high-resolution singleturn absolute encoder. It communicates position feedback via the EnDat 2.1 protocol at 2048 counts per revolution for extremely precise motion regulation. Internal sensors constantly monitor temperature, current, and voltage to protect the motor from unsafe operating conditions. The rotor and stator assembly are supported on durable high-speed bearings lubricated with special grease. This bearing system allows smooth rotation at speeds up to the motor's rated maximum. A plain shaft without sealing ring provides an affordable option for incorporating into machinery.
For cooling, an external fan attached to the shaft outlet circulates air across the exterior of the motor housing. Combined with convection fins, this cooling method maintains optimal running temperature for continuous operation over extended periods. The IP54 enclosure rating shields it from common environmental contaminants. Users can leverage the motor's rotational power output through direct mounting to a connected load. Modulating voltage, frequency, and current controls acceleration and deceleration profiles. Software adjustments optimize speed and torque characteristics for a variety of mechanical applications. Automatic parameter identification further adapts operation for changing load conditions.