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The Allen-Bradley MPL-B680H-MJ74AA is an industrial rotary servo motor in the MP-Series MPL low-inertia servo motor family. It is designed for automated machinery that requires controlled rotation, repeatable positioning, rapid acceleration, and coordinated movement with other machine components.
Unlike a conventional motor used primarily for continuous rotation, a servo motor operates as part of a closed-loop motion-control system. A compatible servo drive regulates the electrical power supplied to the motor, while the feedback device reports position information to the control system. This arrangement allows the machine to execute programmed movements, adjust speed, and stop at designated positions.
The MPL-B680H-MJ74AA is particularly relevant to applications that require a high-speed motor, multi-turn position feedback, and a holding brake. These characteristics can be useful in rotary positioning equipment, automated production machinery, indexing systems, and material-handling mechanisms.
The motor’s complete catalog number is important when evaluating a replacement. Even models that share the same frame and magnet stack can differ in rated speed, feedback configuration, brake arrangement, connector type, and electrical requirements.
Specification note: The exact rated torque, current, complete external dimensions, and weight should be confirmed against the specification for the full catalog number. The information below distinguishes family-level characteristics and engineering guidance from details that require model-specific verification.
|
Parameter |
Specification |
|---|---|
|
Product model |
MPL-B680H-MJ74AA |
|
Brand |
Allen-Bradley |
|
Product family |
MP-Series |
|
Product series |
MPL Low-Inertia Brushless Servo Motors |
|
Product category |
Industrial rotary servo motor |
|
Motor construction |
Three-phase, permanent-magnet, brushless motor |
|
Voltage class |
460 V AC |
|
Nominal frame dimension |
215 mm (8.46 in.) |
|
Magnet stack length |
203.2 mm (8.00 in.) |
|
Speed class |
3,500 RPM |
|
Feedback type |
Multi-turn high-resolution absolute encoder |
|
Encoder interface |
Hiperface-compatible feedback |
|
Shaft configuration |
Keyed shaft extension |
|
Connector type |
SpeedTEC DIN quick-connect |
|
Connector arrangement |
Right-angle, rotatable through 180° |
|
Holding brake |
Integrated 24 V DC holding brake |
|
Mounting arrangement |
IEC metric, free mounting holes, Type FF |
|
Motor construction |
Totally enclosed, non-ventilated |
|
Number of poles |
8 |
|
Number of phases |
3 |
|
Continuous stall torque, reference |
60 Nm |
|
Peak stall torque, reference |
146.9 Nm |
|
Continuous stall current, reference |
51 A |
|
Peak stall current, reference |
140 A |
|
Maximum continuous output rating, reference |
7.5 kW at 2,000 RPM |
|
Maximum operating speed |
3,500 RPM |
|
Overall length |
Exact value requires the model-specific drawing |
|
Overall width |
Exact value requires the model-specific drawing |
|
Overall height |
Exact value requires the model-specific drawing |
|
Frame and stack dimensions |
215 mm frame; 203.2 mm magnet stack |
|
Product weight (kg) |
40.45 kg reference value |
|
Shipping weight (kg) |
42.7 kg reference value |
|
Operating ambient temperature |
0°C to 40°C reference range |
|
Control method |
Closed-loop servo control |
|
Brake supply |
24 V DC |
|
Typical installation |
Industrial automation and precision motion control |
The torque and current figures are reference maximum ratings under specified conditions, not guaranteed operating values for every speed or installation. Actual performance depends on the compatible servo drive, cooling conditions, duty cycle, and motor operating point.
The frame dimension and magnet stack length are not the same as the complete external dimensions. The mounting flange, shaft extension, brake assembly, and connector must be considered when planning an installation.
|
Code section |
Configuration meaning |
|---|---|
|
MPL |
Low-inertia brushless servo motor series |
|
B |
460 V AC voltage class |
|
6 |
Frame size 6, corresponding to 215 mm |
|
80 |
Magnet stack length of 203.2 mm |
|
H |
3,500 RPM speed class |
|
M |
Multi-turn high-resolution absolute encoder |
|
J |
Keyed shaft extension |
|
7 |
SpeedTEC DIN connector configuration |
|
4 |
24 V DC holding brake |
|
AA |
Factory-defined configuration suffix |
The full catalog number should be used when specifying the motor for purchase or replacement. A similar model may have a different speed rating, feedback system, shaft configuration, connector, or brake arrangement.
The MPL-B680H-MJ74AA combines a 3,500 RPM speed class, multi-turn absolute feedback, and an integrated 24 V DC holding brake. These are important differences when comparing it with otherwise similar MPL motors.
The MPL-B680H-MJ74AA is intended for industrial motion-control applications in which a machine needs precise rotary movement, controlled acceleration, and repeatable positioning.
The motor operates as part of a servo system. A motion controller determines the required movement, the servo drive supplies controlled electrical power, and the encoder provides feedback to support the commanded motion.
This closed-loop arrangement is particularly useful for equipment that repeatedly moves between defined positions, changes speed during a production cycle, or coordinates its movement with other machine axes.
The motor’s 3,500 RPM speed class provides a useful starting point for applications requiring relatively high rotational speed. Its large frame and magnet stack are relevant to applications where the load demands substantial motor capacity, although the actual torque requirement must be calculated for each machine.
The multi-turn absolute encoder provides position information over multiple shaft revolutions. This can be useful for rotary positioning, winding mechanisms, and other systems in which tracking the motor’s angular position is important.
The keyed shaft supports connection to compatible mechanical transmission components, including couplings, pulleys, and gears. The rotatable right-angle connector can also help simplify cable routing where installation space is restricted.
The integrated holding brake is an additional feature. It can help restrain the motor shaft when the brake is engaged and the motor is stationary. Applications involving vertical movement or gravity-loaded mechanisms still require a properly engineered braking and safety arrangement.
The 3,500 RPM speed class makes the motor a candidate for machinery requiring relatively high rotational speed and controlled movement.
It can be considered for indexing equipment, automated production systems, rotary mechanisms, and machines that perform frequent acceleration and deceleration cycles.
The torque available at the actual operating speed must be checked before the motor is selected. A high maximum speed does not necessarily mean that the motor can deliver its maximum torque continuously at that speed.
The multi-turn high-resolution encoder is useful for applications where the controller must track position over several shaft revolutions.
This capability can simplify position management in suitable rotary mechanisms and systems that use gearing between the motor and the driven equipment.
The precise behavior after power interruption depends on the encoder implementation and the control-system configuration. Position retention and restart behavior should be verified during system design.
Low rotor inertia can help the motor accelerate and decelerate quickly for a given applied torque.
This characteristic is useful for machinery with frequent starts, stops, reversals, and short positioning cycles.
The final system response depends on the motor inertia, reflected load inertia, mechanical transmission, coupling stiffness, and servo-drive tuning.
The 24 V DC holding brake can help prevent unwanted shaft movement when the motor is stationary.
This is particularly useful in applications where an external force could cause the mechanism to move after the motor stops.
The brake must be selected and operated within its specified limits. It should not automatically be treated as a replacement for a safety-rated stopping or braking system.
The keyed shaft, IEC metric mounting arrangement, and industrial connector configuration support integration into compatible machinery.
These features can simplify mechanical planning when the motor is installed in equipment designed around the same mounting and shaft interfaces.
Actual interchangeability still depends on the complete dimensional drawing, electrical ratings, feedback compatibility, and connector arrangement.
Servo control allows the machine to follow programmed movement profiles and compare commanded motion with feedback.
When the motor is properly sized and tuned, this can help improve consistency between production cycles and reduce variation caused by uncontrolled movement.
The motor can be incorporated into a multi-axis motion-control system in which several motors operate in a coordinated sequence.
This is useful in packaging machinery, automated assembly, rotary indexing, and material transfer systems where the timing and position of different mechanisms must be coordinated.
6.1 Packaging machinery
Packaging systems use servo motors to control feeding rollers, cutting mechanisms, rotary indexing units, and product transfer systems. The motor can support synchronized movements where speed and position must follow a programmed sequence.
The integrated brake may be useful in selected mechanisms that require shaft holding when stationary.
6.2 Automated assembly equipment
Assembly machinery often requires components to move between multiple stations with consistent positioning. Servo control can coordinate transfer mechanisms, rotary tables, and other moving components.
Multi-turn feedback is relevant when the motor’s angular position needs to be tracked across several revolutions.
6.3 Precision manufacturing
Servo motors can operate positioning axes, rotary mechanisms, and auxiliary equipment in automated manufacturing systems.
Suitability depends on the required positioning accuracy, load inertia, operating speed, and mechanical stiffness.
6.4 Material handling
Automated transfer systems and positioning mechanisms can use servo motors where movement must follow a defined position or speed profile.
For vertical axes or gravity-loaded mechanisms, the brake’s holding capacity and the complete machine’s safety design must be assessed carefully.
6.5 Rotary indexing systems
Rotary indexing tables move workpieces between predetermined positions. A servo motor can provide controlled rotation and repeatable stops, while multi-turn feedback helps track shaft position over multiple revolutions.
The achieved accuracy also depends on transmission backlash, mechanical tolerances, and the feedback arrangement.
The motor may also be considered for:
Automated inspection and testing machinery.
Printing and converting equipment.
Industrial winding and unwinding systems.
Automated machine tending.
Electronic component production.
Rotary transfer mechanisms.
Coordinated multi-axis machinery.
Special-purpose manufacturing equipment.
These are potential application categories rather than a guarantee that the motor is suitable for every machine in those categories.
|
Parameter |
Description |
|---|---|
|
Brand |
Allen-Bradley |
|
Product family |
MP-Series |
|
Product series |
MPL |
|
Series type |
Low-Inertia Brushless Servo Motors |
|
Product category |
Industrial motion control |
|
Motor technology |
Permanent-magnet brushless AC servo |
|
Feedback configuration |
Multi-turn absolute encoder |
|
Speed class |
3,500 RPM |
|
Voltage class |
460 V AC |
|
Frame dimension |
215 mm |
|
Magnet stack length |
203.2 mm |
|
Brake configuration |
Integrated 24 V DC holding brake |
|
Primary function |
Controlled rotary movement and positioning |
The MPL series is intended for applications that require responsive motion control and repeatable movement. Other MP-Series configurations may offer different inertia characteristics, frame sizes, speed classes, feedback options, or brake arrangements.
When comparing motors in this family, the complete catalog number matters more than the similarity of the model names.
The following five models provide useful alternatives for comparing speed class, feedback, brake configuration, and frame size.
The models are presented as selection candidates, not as guaranteed direct replacements. All dimensions and weights should be verified for the exact catalog number before purchase.
|
Model |
Series |
Voltage class |
Speed class |
Frame dimension |
Stack length |
Feedback and brake |
Dimensions and weight (kg) |
|---|---|---|---|---|---|---|---|
|
MPL-B680H-MJ72AA |
MPL |
460 V AC |
3,500 RPM |
215 mm |
203.2 mm |
Multi-turn absolute encoder; no brake |
Frame 215 mm; stack 203.2 mm; weight approximately 40.45 kg reference |
|
MPL-B680H-SJ74AA |
MPL |
460 V AC |
3,500 RPM |
215 mm |
203.2 mm |
Single-turn feedback; 24 V DC brake |
Overall dimensions and weight require confirmation |
|
MPL-B680F-MJ74AA |
MPL |
460 V AC |
3,000 RPM |
215 mm |
203.2 mm |
Multi-turn absolute encoder; 24 V DC brake |
Overall dimensions and weight require confirmation |
|
MPL-B680D-MJ74AA |
MPL |
460 V AC |
2,000 RPM |
215 mm |
203.2 mm |
Multi-turn absolute encoder; 24 V DC brake |
Overall dimensions and weight require confirmation |
|
MPL-B540K-SJ74AA |
MPL |
460 V AC |
4,000 RPM |
165 mm |
101.6 mm |
Single-turn feedback; 24 V DC brake |
Overall dimensions and weight require confirmation |
The frame dimension and stack length are not the complete motor envelope. Overall length, shaft projection, mounting dimensions, connector clearance, and weight must be checked separately.
This model retains the same general B680H frame, speed class, and multi-turn feedback configuration as the target motor but does not include the integrated brake.
It may be suitable where the machine does not require a motor-mounted holding brake or uses a separately engineered braking arrangement.
Recommended for: High-speed positioning applications with compatible multi-turn feedback and no requirement for an integrated holding brake.
This variant retains the B680H speed class and holding brake but uses a single-turn feedback configuration.
It may be worth evaluating when the application does not require multi-turn absolute feedback. The control-system requirements must be reviewed before making this change.
Recommended for: Applications requiring the same general speed class and a holding brake, where single-turn feedback is sufficient.
The B680F variant has a 3,000 RPM speed class and a multi-turn absolute encoder with a 24 V DC holding brake.
It may be appropriate when the required speed is lower than the B680H’s speed class but the general frame size and feedback arrangement remain suitable.
Recommended for: Positioning and indexing equipment with compatible torque requirements and a lower target speed.
The B680D configuration belongs to the 2,000 RPM speed class and includes multi-turn feedback and a holding brake.
It is worth considering where the required operating speed is lower. Its actual torque-speed curve and continuous torque capability must be evaluated against the load.
Recommended for: Rotary mechanisms and industrial positioning systems that need a lower speed class and a holding brake.
The B540K provides a smaller frame and shorter magnet stack than the B680H, with a different speed class.
It may be worth evaluating when installation space is limited and the calculated torque requirement allows a smaller motor.
Recommended for: Compact positioning mechanisms and automation equipment requiring a smaller motor envelope, subject to electrical and mechanical compatibility.
The following five models provide a broader selection of servo motor configurations for different machine sizes, speed requirements, and feedback arrangements.
They are representative comparison candidates rather than a verified ranking of sales popularity. Their suitability depends on the application’s actual load, voltage class, mounting dimensions, and controller requirements.
|
Model |
Product series |
Voltage class |
Speed class |
Frame dimension |
Stack length |
Configuration |
Overall dimensions and weight (kg) |
|---|---|---|---|---|---|---|---|
|
MPL-B560F-MJ72AA |
MPL |
460 V AC |
3,000 RPM |
165 mm |
152.4 mm |
Multi-turn feedback; no brake |
Overall dimensions and weight require confirmation |
|
MPL-B4540F-SJ72AH |
MPL |
460 V AC |
3,000 RPM |
130 mm |
101.6 mm |
Single-turn feedback; no brake |
Overall dimensions and weight require confirmation |
|
MPL-B330P-MJ72AH |
MPL |
460 V AC |
5,000 RPM |
100 mm |
76.2 mm |
Multi-turn feedback; no brake |
Overall dimensions and weight require confirmation |
|
MPL-A220T-EJ72AA |
MPL |
230 V AC |
6,000 RPM |
75 mm |
50.8 mm |
Feedback and connector details require confirmation |
Overall dimensions and weight require confirmation |
|
MPL-B540K-SJ74AA |
MPL |
460 V AC |
4,000 RPM |
165 mm |
101.6 mm |
Single-turn feedback; 24 V DC brake |
Overall dimensions and weight require confirmation |
The frame and stack values are preliminary comparison dimensions. They should not be used as substitutes for complete mechanical drawings or as proof that a model will fit the target installation.
The B560F is a smaller-frame comparison candidate for applications that require a 3,000 RPM speed class and multi-turn feedback.
Its shorter stack and different frame size may make it relevant where the B680H is physically larger than necessary.
Potential applications: Automated packaging, rotary positioning, and industrial transfer equipment.
This model provides a smaller-frame alternative for equipment that does not require the physical envelope of the B680H.
The actual torque requirement, acceleration profile, and load inertia must be calculated before selecting a smaller motor.
Potential applications: Compact automated assembly, indexing mechanisms, and precision positioning equipment.
The B330P is a higher-speed, smaller-frame comparison candidate.
Its speed class may be useful for selected high-speed rotary applications, provided the available torque at the required operating speed is sufficient.
Potential applications: Compact rotary equipment and high-speed positioning systems.
The A220T configuration is associated with a 230 V AC class and a smaller frame.
It may be relevant for equipment designed around a compatible 230 V servo-drive system. It should not be treated as a direct electrical replacement for a 460 V-class B680H motor.
Potential applications: Smaller automated machines and compact positioning axes.
The B540K offers a smaller frame, a different speed class, and an integrated holding brake.
It may be worth considering where a smaller motor envelope is desirable and the machine’s calculated torque requirements permit the change.
Potential applications: Compact indexing mechanisms, rotary positioning, and automated machinery requiring a holding brake.
Before selecting a replacement, review the following technical factors.
|
Selection factor |
Required verification |
Importance |
|---|---|---|
|
Voltage |
Compatible 460 V or 230 V drive class |
Electrical compatibility |
|
Continuous torque |
Required torque throughout the machine cycle |
Thermal performance |
|
Peak torque |
Acceleration and short-duration load requirements |
Dynamic capability |
|
Speed |
Required operating speed and maximum speed |
Motion performance |
|
Torque-speed curve |
Available torque at the actual operating speed |
Prevents undersizing |
|
Feedback |
Single-turn or multi-turn requirements |
Position control |
|
Brake |
Holding capacity and operating conditions |
Stationary load control |
|
Shaft |
Diameter, keyway, extension, and load limits |
Mechanical fit |
|
Mounting |
Frame, pilot, and bolt pattern |
Installation compatibility |
|
Connector |
Type, orientation, and cable clearance |
Wiring and maintenance |
|
Environment |
Temperature, moisture, and contamination |
Operating suitability |
|
Overall dimensions |
Complete motor drawing |
Clearance and mounting |
|
Product weight (kg) |
Exact model-specific mass |
Handling and structural support |
|
Drive compatibility |
Current, feedback interface, and parameter support |
Correct operation |
|
Duty cycle |
Continuous and intermittent operating requirements |
Thermal and service-life planning |
The MPL-B680H-MJ74AA is a candidate for industrial applications requiring a 3,500 RPM low-inertia servo motor, multi-turn absolute feedback, a keyed shaft, and a 24 V DC holding brake in the 460 V AC class.
The most relevant alternatives depend on the change required:
MPL-B680H-MJ72AA: Similar general configuration without an integrated brake.
MPL-B680H-SJ74AA: Similar speed class and brake arrangement with single-turn feedback.
MPL-B680F-MJ74AA: Lower speed class with multi-turn feedback and brake.
MPL-B680D-MJ74AA: Lower speed class with multi-turn feedback and brake.
MPL-B540K-SJ74AA: Smaller frame and different speed class with a holding brake.
For a replacement project, verify the complete catalog number, rated torque, current, feedback compatibility, brake requirements, overall dimensions, and actual weight in kilograms. These checks are essential to ensuring that the selected motor fits the machine and operates correctly with the existing motion-control system.