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The MPL-B860D-SJ74AA is a low-inertia brushless AC servo motor from the MP-Series MPL product family. It is designed for industrial automation applications that require accurate positioning, controlled rotary motion, repeatable movement, and dependable performance during frequent acceleration and deceleration.
This model features a 460 V-class electrical configuration, a rated speed of 2,000 RPM, a single-turn high-resolution absolute encoder, a keyed shaft extension, and a built-in 24 V DC holding brake. Its right-angle, rotatable quick-connect connector helps accommodate different cable-routing arrangements in industrial machinery.
A key feature of this model is the combination of single-turn absolute feedback and an integrated holding brake. The encoder provides shaft-position information within one revolution, while the brake can help hold the shaft stationary when the motor is stopped and the brake is properly engaged. This configuration can be useful in positioning systems where a holding function is required but multi-turn feedback is unnecessary.
The motor is intended to operate as part of a compatible servo system, including a suitable drive, feedback cable, brake-control circuit, and motion controller. Correct motor sizing and system configuration are essential for achieving the required positioning accuracy, response time, and operating life.
|
Parameter |
Specification |
|---|---|
|
Model |
|
|
Brand |
Allen-Bradley |
|
Product series |
MP-Series |
|
Motor family |
MPL Low-Inertia Brushless Servo Motors |
|
Product type |
Brushless AC rotary servo motor |
|
Motor construction |
Permanent-magnet synchronous servo motor |
|
Voltage class |
460 V AC |
|
Rated speed |
2,000 RPM |
|
Rated output power |
Approximately 12.5 kW |
|
Continuous stall torque |
Approximately 83.0 Nm |
|
Peak stall torque |
Approximately 152.5 Nm |
|
Frame size |
Frame 8 |
|
Frame designation |
265 mm (10.43 in.) |
|
Magnet stack length |
152.4 mm (6.0 in.) |
|
Feedback type |
Single-turn high-resolution absolute encoder |
|
Shaft configuration |
Keyed shaft extension |
|
Integrated brake |
Yes, 24 V DC holding brake |
|
Connector type |
SpeedTEC DIN connector |
|
Connector orientation |
Right-angle |
|
Connector adjustment |
180° rotatable quick-connect arrangement |
|
Mounting standard |
IEC metric |
|
Mounting-hole arrangement |
Free mounting holes, Type FF |
|
Protection rating |
IP50 minimum without shaft seal; IP66 configuration may be available with the appropriate shaft seal and environmentally sealed cable connectors |
|
Overall external dimensions |
Confirm the complete mechanical drawing |
|
Weight |
57.3 kg |
|
Typical applications |
Industrial positioning, packaging, material handling, assembly, and rotary automation |
|
Drive requirement |
Compatible servo drive with appropriate feedback and brake support |
The torque and power figures above are reference values for the motor family and configuration. Final application sizing should use the applicable motor data and drive specifications, including continuous and peak operating limits.
The frame designation of 265 mm and magnet stack length of 152.4 mm identify the motor’s frame and stack configuration. They are not the complete outside dimensions of the assembled motor.
Before designing a mounting plate, coupling, enclosure, or replacement installation, confirm the following:
Overall motor body length and mounting-flange dimensions.
Mounting-hole positions and fastener sizes.
Shaft diameter, key dimensions, and shaft projection.
Connector clearance and cable-bending space.
Required space for installation, maintenance, and removal.
The reference weight is 57.3 kg. Allow for additional weight if the motor is installed with a coupling, gearbox, mounting bracket, or other accessories. Lifting equipment and mounting structures should be designed using the verified weight of the actual assembly.
The catalog number identifies the motor’s principal electrical and mechanical characteristics.
|
Code |
Meaning |
|---|---|
|
MPL |
MP-Series low-inertia brushless servo motor family |
|
B |
460 V-class motor configuration |
|
8 |
Frame size 8, designated as 265 mm |
|
60 |
Magnet stack length of 152.4 mm |
|
D |
2,000 RPM speed configuration |
|
S |
Single-turn high-resolution absolute encoder |
|
J |
Keyed shaft extension |
|
7 |
Right-angle SpeedTEC DIN connector, rotatable quick-connect style |
|
4 |
24 V DC brake option |
|
AA |
Factory configuration designation |
The most important distinction between this model and the similar MPL-B860D-SJ72AA is the brake option. The SJ74AA includes a 24 V DC holding brake, while the SJ72AA does not.
The difference between the SJ74AA and MJ74AA models is the feedback arrangement: the SJ version uses single-turn absolute feedback, while the MJ version uses multi-turn absolute feedback.
Packaging equipment frequently requires controlled movement for feeding, indexing, sealing, cutting, and product transfer. The MPL-B860D-SJ74AA can be considered for axes where the 2,000 RPM speed configuration, position feedback, and holding brake suit the machine’s operating cycle.
Typical applications include rotary indexing mechanisms, film-feeding assemblies, product-transfer systems, and selected positioning axes. The motor must be sized against the actual load, acceleration profile, cycle time, and required production rate.
Automated assembly systems often need components to be moved into repeatable positions before insertion, fastening, inspection, or transfer. Servo control can coordinate the movement of these mechanisms and synchronize several axes.
The single-turn absolute encoder is useful when the required position is defined within one revolution. The integrated brake can help hold the axis when the motor is stopped, provided that the brake is correctly controlled and rated for the load.
Material handling machinery uses servo motors to position carriages, transfer parts, index workpieces, and control rotary mechanisms.
The keyed shaft provides a mechanical interface for compatible couplings and transmission components. The holding brake can be useful for selected axes that need to remain stationary after motion stops.
For vertical axes or suspended loads, the brake must be evaluated against the actual load and transmission ratio. Additional mechanical protection may be necessary depending on the machine’s risk assessment.
Printing, laminating, winding, and converting equipment may require accurate synchronization between rollers, feeders, cutters, and other moving components.
The motor can be considered for rotary motion and indexing functions where its speed and torque characteristics meet the process requirements. The final design should account for roller inertia, web tension, transmission ratios, and the required synchronization accuracy.
Labeling and dispensing machines need repeatable movement to deliver materials at the correct point in a production cycle. Servo-controlled feeders and indexing mechanisms can help coordinate the timing of these operations.
The motor’s absolute position feedback can support controlled angular positioning, while the brake may help retain the shaft position when the axis is stopped.
The motor can also be evaluated for dedicated automation machinery that performs repeated rotary movement, controlled positioning, and synchronized production tasks.
Its suitability depends on the required torque, speed range, load inertia, operating environment, drive compatibility, and mechanical interface. The presence of a holding brake does not by itself establish suitability for every vertical or safety-critical application.
The encoder provides shaft-position information within one revolution. This can be useful for rotary indexing, positioning, and other applications where the controller needs an accurate angular reference.
The accuracy of the complete machine also depends on mechanical backlash, coupling alignment, encoder configuration, drive tuning, and the stiffness of the machine structure.
The built-in brake helps hold the shaft stationary when the motor is not actively driving the load and the brake is engaged correctly.
This can simplify the mechanical arrangement where a motor-mounted holding brake is required. The brake’s holding capacity, control timing, and suitability for the intended duty must still be verified.
The MPL family is intended for applications involving controlled movement and changes in speed or position. With suitable motor sizing and drive tuning, the motor can support repeatable motion cycles and coordinated machine operation.
Actual response depends on the load, the transmission system, drive settings, and the commanded motion profile.
The keyed shaft extension supports connection to compatible couplings, pulleys, gears, and other transmission components.
Correct sizing and alignment are important. Excessive radial or axial loading can damage bearings and reduce service life.
The right-angle, rotatable quick-connect connector helps accommodate different installation layouts. This can be useful in compact machinery where cable clearance is limited.
Compatible cables, connectors, shielding, grounding, and strain relief remain essential for dependable operation.
The model number identifies the motor’s speed, feedback, shaft, connector, and brake configuration. This helps engineers compare alternatives and identify candidate replacement motors.
However, a matching frame and speed rating do not guarantee interchangeability. The complete mechanical drawing, electrical requirements, feedback compatibility, and brake wiring should be checked before replacement.
|
Item |
Description |
|---|---|
|
Brand |
Allen-Bradley |
|
Product series |
MP-Series |
|
Motor family |
MPL Low-Inertia Brushless Servo Motors |
|
Product type |
AC rotary servo motor |
|
Voltage class |
460 V AC |
|
Rated speed |
2,000 RPM |
|
Feedback |
Single-turn high-resolution absolute encoder |
|
Shaft |
Keyed shaft extension |
|
Brake |
Integrated 24 V DC holding brake |
|
Frame designation |
265 mm |
|
Magnet stack length |
152.4 mm |
|
Mounting arrangement |
IEC metric, Type FF free mounting holes |
|
Typical system |
Compatible servo drive, feedback wiring, and motion controller |
The MPL family is intended for industrial motion-control applications where position feedback, controlled rotary movement, and mechanical integration are important.
When selecting a replacement, compare the full catalog number rather than relying on the family name alone. Feedback type, brake configuration, shaft geometry, connector orientation, and mounting dimensions can all affect compatibility.
The following models are useful comparison candidates. They share the same general product family, but their feedback, brake, speed, or magnet-stack configurations differ.
|
Model |
Main parameters |
Feedback |
Brake |
Dimensions |
Weight (kg) |
|---|---|---|---|---|---|
|
MPL-B860D-SJ72AA |
460 V class; 2,000 RPM; frame 8 |
Single-turn absolute |
None |
Frame designation 265 mm; stack 152.4 mm |
57.3 kg family reference; verify exact configuration |
|
MPL-B860D-MJ72AA |
460 V class; 2,000 RPM; frame 8 |
Multi-turn absolute |
None |
Frame designation 265 mm; stack 152.4 mm |
57.3 kg family reference; verify exact configuration |
|
MPL-B860D-MJ74AA |
460 V class; 2,000 RPM; frame 8 |
Multi-turn absolute |
24 V DC |
Frame designation 265 mm; stack 152.4 mm |
57.3 kg family reference; verify exact configuration |
|
MPL-B880C-SJ74AA |
460 V class; 1,500 RPM; frame 8 |
Single-turn absolute |
24 V DC |
Frame designation 265 mm; stack 203.2 mm |
Approximately 72.7 kg family reference; verify exact variant |
|
MPL-B880D-MJ74AA |
460 V class; 2,000 RPM; frame 8 |
Multi-turn absolute |
24 V DC |
Frame designation 265 mm; stack 203.2 mm |
Confirm exact catalog weight |
How to choose among these models:
MPL-B860D-SJ72AA: Consider when the single-turn feedback arrangement is suitable but an integrated brake is not required.
MPL-B860D-MJ72AA: Consider when multi-turn absolute feedback is needed without a motor-mounted holding brake.
MPL-B860D-MJ74AA: Consider when both multi-turn feedback and a holding brake are required.
MPL-B880C-SJ74AA: Consider when a 1,500 RPM configuration and longer magnet stack suit the load and operating profile.
MPL-B880D-MJ74AA: Consider when the longer magnet stack, 2,000 RPM configuration, multi-turn feedback, and holding brake match the application.
The B880 models have a 203.2 mm magnet stack rather than the 152.4 mm stack of the B860. This affects the motor’s physical envelope and performance characteristics, so the two frame-8 configurations should not be assumed to be interchangeable.
These additional models provide alternatives with different frame sizes, stack lengths, or speed ratings. They are candidates for evaluation, not automatic replacements for the MPL-B860D-SJ74AA.
|
Model |
Product type |
Main parameters |
Dimensions |
Weight (kg) |
|---|---|---|---|---|
|
MPL-B660F-MJ72AA |
MPL servo motor |
460 V class; 3,000 RPM; frame 6; multi-turn feedback; keyed shaft; no brake |
Frame designation 215 mm; stack 152.4 mm |
Confirm exact catalog weight |
|
MPL-B680D-MJ72AA |
MPL servo motor |
460 V class; 2,000 RPM; frame 6; multi-turn feedback; keyed shaft; no brake |
Frame designation 215 mm; stack 203.2 mm |
Confirm exact catalog weight |
|
MPL-B680F-MJ72AA |
MPL servo motor |
460 V class; 3,000 RPM; frame 6; multi-turn feedback; keyed shaft; no brake |
Frame designation 215 mm; stack 203.2 mm |
Confirm exact catalog weight |
|
MPL-B680H-MJ72AA |
MPL servo motor |
460 V class; 3,500 RPM; frame 6; multi-turn feedback; keyed shaft; no brake |
Frame designation 215 mm; stack 203.2 mm |
Confirm exact catalog weight |
|
MPL-B960D-MJ72AA |
MPL servo motor |
460 V class; 2,000 RPM; frame 9; multi-turn feedback; keyed shaft; no brake |
Confirm exact frame drawing and stack length |
Confirm exact catalog weight |
MPL-B660F-MJ72AA may be worth considering where a shorter-stack frame-6 configuration fits the machine’s mechanical requirements.
MPL-B680D-MJ72AA provides a 2,000 RPM frame-6 alternative with a longer stack than the B660F.
MPL-B680F-MJ72AA is a 3,000 RPM configuration for applications designed around a higher rated speed.
MPL-B680H-MJ72AA has a 3,500 RPM configuration and should be evaluated against the required torque-speed curve and load inertia.
MPL-B960D-MJ72AA belongs to a larger frame configuration. Its suitability depends on the required torque, installation space, mounting interface, and drive compatibility.
For all five models, the weight and complete outside dimensions should be confirmed for the exact catalog number before purchasing or designing mechanical supports.
Choose a servo drive that supports the motor’s voltage class, feedback interface, current requirements, speed range, and brake-control requirements.
The drive must also be suitable for the load’s continuous and peak torque demands and the intended production cycle.
Motor selection should account for continuous torque, peak torque, reflected load inertia, acceleration, deceleration, cycle frequency, and thermal loading.
A motor that reaches the desired speed may still be unsuitable if it cannot deliver the required torque throughout the production cycle.
The integrated brake uses a 24 V DC control arrangement. Verify the wiring, release timing, engagement timing, and holding capacity for the actual load.
The brake should not automatically be treated as a dynamic stopping brake or a complete machine safety solution. Additional protection may be required for gravity-loaded or safety-critical mechanisms.
Confirm the full motor drawing before fabricating brackets or replacing an installed motor. Check mounting-hole spacing, shaft diameter, key dimensions, shaft projection, overall length, and connector clearance.
A similar frame designation does not guarantee that two motors have the same installation envelope.
Verify the required protection level for the actual installation. If the machine operates in a dusty, wet, or contaminated environment, confirm the shaft seal and cable-connector configuration rather than assuming that every version provides the same protection.
Record the complete motor model number, drive model, feedback arrangement, brake wiring, and mechanical interface. This information helps reduce errors during maintenance and replacement.
The MPL-B860D-SJ74AA is a suitable candidate for industrial automation systems requiring a 2,000 RPM, 460 V-class low-inertia servo motor with single-turn absolute feedback, a keyed shaft, and an integrated 24 V DC holding brake.
Its principal advantages are controlled rotary movement, absolute position feedback within one revolution, a brake-equipped configuration, and a mechanical interface suitable for compatible industrial transmission components.
For the closest alternatives:
Choose MPL-B860D-SJ72AA if the single-turn feedback arrangement is appropriate but a motor-mounted brake is not required.
Choose MPL-B860D-MJ74AA if multi-turn absolute feedback is needed along with the holding brake.
Choose MPL-B860D-MJ72AA if multi-turn feedback is needed without the integrated brake.
Consider MPL-B880C-SJ74AA or MPL-B880D-MJ74AA if a longer magnet stack better suits the required motor performance.
Before final selection, confirm the complete external dimensions, actual net weight, electrical ratings, brake holding capacity, shaft geometry, and drive compatibility for the exact motor configuration. These checks are essential for safe installation and dependable operation.