• Allen Bradley MPL-B680D-SJ72AA Low-Inertia Brushless Servo Motors Product
  • Allen Bradley MPL-B680D-SJ72AA Low-Inertia Brushless Servo Motors Product
  • Allen Bradley MPL-B680D-SJ72AA Low-Inertia Brushless Servo Motors Product
  • Allen Bradley MPL-B680D-SJ72AA Low-Inertia Brushless Servo Motors Product
Allen-Bradley MPL-B680D-SJ72AA Servo Motor – Detailed Product Specifications, Introduction, Applications, Advantages, and Model Comparison 1. Product Overview The Allen-Bradley MPL-B680D-SJ72AA is a lar……
Allen Bradley MPL-B680D-SJ72AA Low-Inertia Brushless Servo Motors Product
  • Allen Bradley
  • MPL-B680D-SJ72AA
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Allen-Bradley MPL-B680D-SJ72AA Servo Motor – Detailed Product Specifications, Introduction, Applications, Advantages, and Model Comparison

1. Product Overview

The Allen-Bradley MPL-B680D-SJ72AA is a large-frame MP-Series MPL low-inertia brushless AC servo motor designed for industrial motion-control systems that require high torque, accurate feedback, controlled acceleration, and reliable positioning.

This model belongs to the larger end of the MPL servo motor family. It uses a 215 mm frame size, an approximately 203.2 mm magnet stack, and a 2000 rpm speed class. With approximately 62.8 N·m of continuous stall torque and 154.2 N·m of peak torque, it is intended for considerably heavier servo applications than the smaller MPL motor configurations.

One of the most important characteristics of the MPL-B680D-SJ72AA is its single-turn high-resolution absolute encoder. The motor also uses a keyed shaft, a right-angle SpeedTEC DIN connector, and a no-brake configuration.

The model is particularly suitable for machines where the servo axis requires substantial continuous torque but does not need an integrated holding brake. Typical applications include large horizontal positioning axes, material-handling machinery, packaging equipment, rotary mechanisms, machine tools, printing and converting equipment, and other industrial automation systems.


2. Brand and Product Series

Item Specification
Brand Allen-Bradley
Product Series MP-Series
Motor Family MPL Low-Inertia Brushless Servo Motors
Model MPL-B680D-SJ72AA
Product Type AC rotary servo motor
Motor Technology Brushless permanent-magnet servo motor
Voltage Class 460 V AC class
Frame Size Frame 6
Frame Dimension 215 mm
Magnet Stack 203.2 mm
Speed Class 2000 rpm
Feedback Single-turn high-resolution absolute encoder
Shaft Keyed shaft extension
Brake No integral brake
Connector SpeedTEC DIN, right-angle
Mounting IEC metric flange
Motor Design Low-inertia

The MPL series is designed specifically for servo applications where the motor must respond accurately to commands from a compatible servo drive.

Instead of simply running at a fixed speed, the motor operates as part of a closed-loop motion system. The encoder continuously provides feedback to the servo control system, allowing the drive to regulate motor position, velocity, and torque.


3. Detailed Technical Parameters

Parameter MPL-B680D-SJ72AA
Model MPL-B680D-SJ72AA
Brand Allen-Bradley
Series MP-Series MPL
Motor Family MPL Low-Inertia Brushless Servo
Motor Type AC rotary permanent-magnet servo motor
Voltage Class 460 V AC class
Frame Size 6
Frame Size Dimension 215 mm
Magnet Stack Length 203.2 mm
Rated Speed 2000 rpm
Maximum Speed 2000 rpm
Continuous Stall Torque Approximately 62.8 N·m
Peak Stall Torque Approximately 154.2 N·m
Continuous Rated Power Approximately 9.3 kW
Rotor Inertia Approximately 0.00775 kg·m²
Feedback Type Absolute single-turn
Feedback Resolution 1024 Sin/Cos cycles/revolution
Feedback Protocol Hiperface
Shaft Keyed shaft extension
Integral Brake No
Connector SpeedTEC DIN
Connector Orientation Right-angle, rotatable
Connector Rotation Approximately 180°
Mounting IEC metric flange
Mounting Style Free mounting holes, Type FF
Bolt Circle Approximately 215 mm
Shaft Seal No standard shaft seal
Dimensions Approximately 215 × 203.2 mm frame/stack
Weight Approximately 45 kg class
Operating Temperature Approximately 40 °C maximum class
Motor Construction Brushless permanent magnet
Inertia Class Low inertia
Application Class Industrial servo motion

The values above describe the normal B680D-SJ72AA configuration. For engineering replacement work, the complete motor nameplate and actual machine configuration should be checked, especially for current, thermal ratings, connector arrangement, and exact overall dimensions.


4. Physical Dimensions

The MPL-B680D-SJ72AA uses a Frame 6 / 215 mm mechanical configuration with an 80-series / 203.2 mm magnet stack.

Dimension Parameter Approximate Value
Model MPL-B680D-SJ72AA
Frame Size 6
Frame Dimension 215 mm
Magnet Stack Length 203.2 mm
Frame Width Class 215 mm
Bolt Circle Approximately 215 mm
Main Motor Size Approximately 215 × 203.2 mm
Overall Installed Envelope Configuration-dependent
Connector Clearance Additional space required
Shaft/Coupling Clearance Additional space required

The 215 × 203.2 mm dimensions represent the principal frame and magnet-stack dimensions rather than every external dimension of the installed motor.

When designing a machine around this motor, sufficient space should be reserved for the shaft, coupling, mounting hardware, connector, feedback cable, power cable, cable bend radius, and maintenance access.

This is particularly important in compact machine cabinets or enclosed mechanical assemblies.


5. Weight

The MPL-B680D-SJ72AA is a large servo motor and has a relatively substantial mechanical mass.

For preliminary engineering and equipment layout, a practical value is approximately 45 kg class.

Weight Parameter Approximate Value
Model MPL-B680D-SJ72AA
Approximate Weight 45 kg class
Approximate Reference Around 45 kg
Weight in Pounds Approximately 100 lb
Motor Frame 215 mm
Stack Length 203.2 mm

Actual shipping or packaged weight can be different from the bare motor weight.

For machine installation, lifting and mounting provisions should be considered in advance because this is not a lightweight servo motor.


6. Model Number Interpretation

The model number is:

MPL-B680D-SJ72AA

The major sections can be interpreted as follows.

Code General Meaning
MPL MPL low-inertia brushless servo motor family
B 460 V-class configuration
6 Frame size 6 / 215 mm
80 203.2 mm magnet stack
D 2000 rpm speed class
S Single-turn absolute high-resolution feedback
J Keyed shaft
7 SpeedTEC DIN right-angle connector
2 No integral brake
AA Standard configuration suffix

The model number is useful because it identifies the major mechanical, feedback, connector, and brake characteristics of the motor.

For a replacement application, it is important to match the complete catalog number rather than selecting a motor based only on the frame size.


7. Product Introduction

The MPL-B680D-SJ72AA is designed around a brushless permanent-magnet motor structure.

The rotor uses permanent magnets, while the stator windings generate the rotating magnetic field required to produce torque.

The brushless architecture eliminates the conventional brush and commutator arrangement found in older brushed motor technologies.

This makes the motor well suited to continuous industrial operation and repeated acceleration/deceleration cycles.

The motor is intended to operate together with a compatible servo drive and motion controller. The drive supplies controlled current to the motor while the feedback device reports the actual motor position.

This closed-loop arrangement allows the machine to maintain accurate motion even when the mechanical load changes.


8. Single-Turn High-Resolution Encoder

One of the defining characteristics of the MPL-B680D-SJ72AA is its single-turn high-resolution absolute encoder.

Feedback Parameter Specification
Model MPL-B680D-SJ72AA
Feedback Type Absolute single-turn
Encoder Category High-resolution
Signal Sin/Cos
Resolution 1024 cycles/revolution
Feedback Protocol Hiperface
Primary Function Position and velocity feedback
Application Benefit Accurate closed-loop servo control

The encoder provides the servo drive with detailed information about the motor shaft position.

Because the feedback is absolute within one mechanical revolution, the control system can distinguish the motor’s position within that revolution rather than relying only on incremental pulse counting.

This is useful in positioning systems where accurate shaft feedback is required for repeatable machine movement.


9. Single-Turn Versus Multi-Turn Feedback

The single-turn configuration is an important distinction when comparing the MPL-B680D-SJ72AA with multi-turn models.

Characteristic MPL-B680D-SJ72AA
Feedback Single-turn absolute
Position Information Within one motor revolution
Multi-revolution Position Not the defining feedback function
Resolution High-resolution
Typical Advantage Precise shaft position feedback
Alternative Multi-turn MPL configuration

For applications where the motor mechanically rotates many revolutions and the control system needs absolute multi-revolution information, a multi-turn MPL configuration may be more appropriate.

For applications where the control architecture already manages axis referencing or where single-turn feedback is sufficient, the SJ72AA can be an effective choice.


10. Torque Performance

Torque is one of the strongest characteristics of the B680D motor family.

The MPL-B680D-SJ72AA provides approximately:

  • 62.8 N·m continuous stall torque
  • 154.2 N·m peak torque
Torque Parameter Approximate Value
Model MPL-B680D-SJ72AA
Continuous Stall Torque 62.8 N·m
Peak Torque 154.2 N·m
Peak-to-Continuous Ratio Approximately 2.45:1
Rated Power Approximately 9.3 kW
Rated Speed 2000 rpm

The continuous torque rating is important for applications where the motor must maintain substantial torque for extended periods.

Peak torque becomes important when the machine needs rapid acceleration, rapid deceleration, high-force indexing, or temporary high-load operation.

The peak torque rating should not be treated as a continuous operating point. The actual allowable duration depends on the drive, thermal conditions, duty cycle, motor temperature, and machine load.


11. Rated Power

The motor is approximately a 9.3 kW continuous-output class servo motor.

Power Parameter MPL-B680D-SJ72AA
Continuous Rated Power Approximately 9.3 kW
Speed 2000 rpm
Continuous Stall Torque Approximately 62.8 N·m
Peak Torque Approximately 154.2 N·m
Motor Category High-power servo

This power level makes the motor suitable for relatively large automation systems.

It is more appropriate for substantial mechanical loads than small indexing or light-duty servo axes.


12. 2000 rpm Speed Class

The D in the model designation identifies the 2000 rpm class.

Speed Parameter Specification
Model MPL-B680D-SJ72AA
Rated Speed 2000 rpm
Maximum Speed 2000 rpm class
Speed Characteristic Torque-oriented
Frame 215 mm
Stack 203.2 mm

The 2000 rpm configuration provides a useful balance between rotational speed and torque.

For applications that need more rotational speed, the 3000 rpm B680F configuration or the 3500 rpm B680H configuration may be worth considering.

For applications where high torque and moderate servo speed are more important, the B680D is a particularly logical choice.


13. Low-Inertia Rotor

The motor has an approximate rotor inertia of 0.00775 kg·m².

Rotor Parameter Value
Model MPL-B680D-SJ72AA
Rotor Inertia Approximately 0.00775 kg·m²
Design Low-inertia rotor
Main Benefit Faster dynamic response
Typical Use Repeated acceleration/deceleration

Low rotor inertia allows the motor to change speed efficiently.

This is valuable in applications that repeatedly accelerate, decelerate, stop, reverse, or index.

The actual system inertia, however, includes much more than the motor rotor.

The inertia of gears, couplings, rollers, screws, rotary tables, pulleys, and the driven load must all be considered.


14. Keyed Shaft

The MPL-B680D-SJ72AA uses a keyed shaft extension.

Shaft Parameter Specification
Model MPL-B680D-SJ72AA
Shaft Type Keyed
Shaft Interface Industrial keyed shaft
Typical Connection Coupling, pulley, gear, transmission
Shaft Seal No standard shaft seal
Primary Advantage Reliable torque transmission

A keyed shaft is a familiar mechanical interface and is particularly useful for applications where the motor must transmit significant torque.

Correct shaft alignment is essential.

Incorrect coupling alignment can increase bearing loading, vibration, temperature, and mechanical wear.


15. No Integral Brake

The MPL-B680D-SJ72AA is a no-brake configuration.

Brake Parameter Specification
Model MPL-B680D-SJ72AA
Integral Brake No
Holding Brake Not included
Brake Voltage Not applicable
Horizontal Axis Very suitable
Vertical Axis Requires additional load-holding consideration

The absence of a brake is not necessarily a disadvantage.

For horizontal axes, conveyors, rotary systems, and many machine-tool applications, a motor-mounted holding brake may not be required.

For a vertical axis carrying a suspended load, however, the machine designer must determine how the load will be held safely when servo torque is removed.


16. SpeedTEC DIN Connector

The motor uses a SpeedTEC DIN connector in a right-angle configuration.

Connector Parameter Specification
Model MPL-B680D-SJ72AA
Connector SpeedTEC DIN
Arrangement Right-angle
Rotation Approximately 180° rotatable
Connection Type Quick-connect style
Main Benefit Flexible cable routing

The rotatable connector is useful when the motor is installed in different orientations.

It can help reduce cable-routing restrictions and make it easier to position the power and feedback cables within the machine.

Cable clearance should still be checked carefully during mechanical design.


17. Mounting Arrangement

The MPL-B680D-SJ72AA uses an IEC metric flange mounting arrangement.

Mounting Parameter Specification
Model MPL-B680D-SJ72AA
Mounting Type Flange mount
Frame Size 215 mm
Flange Class IEC metric
Mounting Holes Free mounting holes
Mounting Style Type FF class
Bolt Circle Approximately 215 mm

The machine mounting plate should be sufficiently rigid to support the motor and maintain shaft alignment.

A flexible mounting structure can introduce vibration and mechanical resonance, which can affect servo performance.


18. Main Product Advantages

18.1 High Torque Capability

The approximately 62.8 N·m continuous torque makes this motor suitable for heavy-duty servo axes.

The approximately 154.2 N·m peak torque provides substantial dynamic torque during acceleration and short-duration high-load conditions.


18.2 High Power in a Servo Package

With approximately 9.3 kW continuous output, the motor can handle considerably larger mechanical loads than smaller MPL configurations.


18.3 High-Resolution Feedback

The 1024 Sin/Cos cycles-per-revolution feedback provides detailed shaft-position information.

This supports accurate closed-loop control.


18.4 Low-Inertia Construction

The low-inertia rotor helps the motor respond quickly to speed and position commands.

This is especially useful for machines with frequent acceleration and deceleration.


18.5 Keyed Mechanical Interface

The keyed shaft is practical for industrial couplings, gears, pulleys, and other mechanical transmission systems.


18.6 Flexible Connector Arrangement

The right-angle, rotatable DIN connector makes cable routing easier in many machine configurations.


18.7 No-Brake Configuration

For machines that do not require a holding brake, the no-brake configuration keeps the motor arrangement straightforward.


19. Typical Industrial Applications

The MPL-B680D-SJ72AA can be considered for a wide range of industrial motion applications.

Packaging Machinery

Large packaging machines often contain servo-driven indexing, feeding, forming, cutting, or positioning mechanisms.

The B680D motor is particularly suited to the larger axes where substantial torque is required.


Material Handling

Potential applications include:

  • Heavy conveyors.
  • Transfer systems.
  • Roller mechanisms.
  • Positioning units.
  • Large handling axes.
  • Automated storage equipment.

The motor’s high continuous torque is useful when the machine must repeatedly move substantial loads.


Machine Tools

Possible applications include:

  • Large auxiliary axes.
  • Rotary positioning mechanisms.
  • Heavy horizontal axes.
  • Servo-driven mechanical assemblies.
  • Large indexing systems.

The feedback system can support accurate servo positioning when correctly matched with the drive and machine mechanics.


Printing and Converting Equipment

Printing and converting machines often require coordinated servo movement.

Typical applications can include:

  • Roll drives.
  • Web-handling axes.
  • Positioning mechanisms.
  • Cutting systems.
  • Indexing mechanisms.

The 2000 rpm speed class is particularly appropriate where torque is more important than very high shaft speed.


Rotary Tables

Large rotary tables can have significant inertia.

The B680D’s high peak torque can help accelerate and decelerate such mechanisms.

Correct inertia matching and mechanical transmission design remain important.


Linear Servo Axes

The motor can be coupled to:

  • Ball screws.
  • Rack-and-pinion mechanisms.
  • Timing belts.
  • Gearboxes.
  • Roller drives.

This makes it suitable for long-travel positioning systems and large linear machine axes.


20. Applications Where This Motor Is Particularly Attractive

Application Type Suitability
Heavy horizontal axis Excellent
Large conveyor axis Excellent
Heavy rotary positioning Excellent
Large indexing mechanism Excellent
Packaging machine main axis Very suitable
Printing/converting axis Very suitable
Machine-tool auxiliary axis Very suitable
Vertical lifting axis Requires additional holding solution
Small lightweight axis Usually oversized
Extremely high-speed axis Consider higher-speed MPL model

The motor should not be selected simply because it provides a large torque rating.

If the machine requires much less torque, a smaller motor can provide a more compact solution with lower mechanical mass.


21. Five Related MPL Models

The following five models are useful when comparing the MPL-B680D-SJ72AA with other motors from the same family.

Model Frame / Stack Speed Feedback Brake Continuous Torque Peak Torque Power Dimensions Weight
MPL-B680D-SJ74AA 215 / 203.2 mm 2000 rpm Single-turn absolute 24 V DC Approx. 62.8 N·m Approx. 154.2 N·m Approx. 9.3 kW Approx. 215 × 203.2 mm Approx. 45 kg class
MPL-B680D-MJ72AA 215 / 203.2 mm 2000 rpm Multi-turn absolute No Approx. 62.8 N·m Approx. 154.2 N·m Approx. 9.3 kW Approx. 215 × 203.2 mm Approx. 40 kg class
MPL-B680D-MJ74AA 215 / 203.2 mm 2000 rpm Multi-turn absolute 24 V DC Approx. 62.8 N·m Approx. 154.2 N·m Approx. 9.3 kW Approx. 215 × 203.2 mm Approx. 40.4 kg
MPL-B680F-SJ72AA 215 / 203.2 mm 3000 rpm Single-turn absolute No Approx. 60 N·m class Approx. 108 N·m class Approx. 7.5 kW class Approx. 215 × 203.2 mm Approx. 40 kg class
MPL-B680H-MJ72AA 215 / 203.2 mm 3500 rpm Multi-turn absolute No Approx. 60 N·m Approx. 146.9 N·m Approx. 7.5 kW Approx. 215 × 203.2 mm Approx. 40.4 kg

The closest comparison is the MPL-B680D-SJ74AA, because it has the same general B680D frame, stack, speed, and single-turn feedback arrangement but adds an integral 24 V DC brake.

The MPL-B680D-MJ72AA is useful when the application needs multi-turn feedback instead of single-turn feedback.


22. Five Same-Brand Commonly Compared Models

Model Series Speed Feedback Brake Continuous Torque Peak Torque Power Dimensions Weight
MPL-B640F-MJ72AA MP-Series MPL 3000 rpm Multi-turn absolute No Approx. 36.7 N·m Approx. 72.3 N·m Approx. 6.1 kW Approx. 215 × 101.6 mm Approx. 26.8 kg
MPL-B640F-MJ74AA MP-Series MPL 3000 rpm Multi-turn absolute 24 V DC Approx. 36.7 N·m Approx. 72.3 N·m Approx. 6.1 kW Approx. 215 × 101.6 mm Approx. 26.8 kg class
MPL-B660F-MJ72AA MP-Series MPL 3000 rpm Multi-turn absolute No Approx. 48 N·m Approx. 100 N·m class Approx. 6.1 kW Approx. 215 × 152.4 mm Approx. 35 kg class
MPL-B660F-MJ74AA MP-Series MPL 3000 rpm Multi-turn absolute 24 V DC Approx. 48 N·m Approx. 101.1 N·m Approx. 6.15 kW Approx. 215 × 152.4 mm Approx. 35 kg class
MPL-B680D-MJ74AA MP-Series MPL 2000 rpm Multi-turn absolute 24 V DC Approx. 62.8 N·m Approx. 154.2 N·m Approx. 9.3 kW Approx. 215 × 203.2 mm Approx. 40.4 kg

These are useful same-brand comparison models because they cover different combinations of frame stack, speed, torque, feedback, and brake configuration.


23. B640F, B660F, and B680D Comparison

Feature MPL-B640F-MJ72AA MPL-B660F-MJ72AA MPL-B680D-SJ72AA
Frame 215 mm 215 mm 215 mm
Stack 101.6 mm 152.4 mm 203.2 mm
Speed 3000 rpm 3000 rpm 2000 rpm
Feedback Multi-turn Multi-turn Single-turn
Brake No No No
Continuous Torque Approx. 36.7 N·m Approx. 48 N·m Approx. 62.8 N·m
Peak Torque Approx. 72.3 N·m Approx. 100 N·m class Approx. 154.2 N·m
Power Approx. 6.1 kW Approx. 6.1 kW Approx. 9.3 kW
Dimensions 215 × 101.6 mm 215 × 152.4 mm 215 × 203.2 mm
Weight Approx. 26.8 kg Approx. 35 kg class Approx. 45 kg class

The comparison shows the role of the longer B680D stack.

The B640F is substantially shorter and lighter.

The B660F provides an intermediate mechanical package.

The B680D provides the highest torque and power of these three configurations.


24. B680D Single-Turn Versus Multi-Turn

Parameter MPL-B680D-SJ72AA MPL-B680D-MJ72AA
Frame 215 mm 215 mm
Stack 203.2 mm 203.2 mm
Speed 2000 rpm 2000 rpm
Feedback Single-turn absolute Multi-turn absolute
Shaft Keyed Keyed
Brake No No
Continuous Torque Approx. 62.8 N·m Approx. 62.8 N·m
Peak Torque Approx. 154.2 N·m Approx. 154.2 N·m
Power Approx. 9.3 kW Approx. 9.3 kW
Rotor Inertia Approx. 0.00775 kg·m² Approx. 0.00775 kg·m²
Dimensions Approx. 215 × 203.2 mm Approx. 215 × 203.2 mm
Weight Approx. 45 kg class Approx. 40 kg class

The main difference is the feedback configuration rather than the basic motor power class.

When selecting between them, the motion-control architecture should be considered first.


25. B680D No-Brake Versus Brake Configuration

Parameter MPL-B680D-SJ72AA MPL-B680D-SJ74AA
Speed 2000 rpm 2000 rpm
Feedback Single-turn absolute Single-turn absolute
Continuous Torque Approx. 62.8 N·m Approx. 62.8 N·m
Peak Torque Approx. 154.2 N·m Approx. 154.2 N·m
Power Approx. 9.3 kW Approx. 9.3 kW
Shaft Keyed Keyed
Brake No 24 V DC
Dimensions Approx. 215 × 203.2 mm Approx. 215 × 203.2 mm
Weight Approx. 45 kg class Approx. 45 kg class

The SJ72AA is preferable when no integrated holding brake is required.

The SJ74AA becomes more attractive when the machine needs motor-mounted holding capability, particularly for applications where gravity can move the axis when servo torque is removed.


26. Product Advantages in Practical Machine Design

The MPL-B680D-SJ72AA has several characteristics that make it particularly useful in large automation equipment.

The first is its torque capacity.

A continuous torque of approximately 62.8 N·m gives the motor enough capacity for substantial mechanical loads without immediately requiring a gearbox simply to increase motor torque.

The second major advantage is its peak torque capability.

Approximately 154.2 N·m of peak torque provides significant acceleration capability, which can be useful when a heavy mechanical load must be moved quickly.

The third advantage is the low-inertia design.

Even though the motor itself is physically large, its low-inertia rotor helps maintain a responsive servo system.

The fourth advantage is the high-resolution single-turn absolute feedback.

This provides the servo drive with detailed motor position information and supports accurate closed-loop control.

The fifth advantage is the keyed shaft.

For industrial machinery, keyed shaft interfaces remain practical because they work well with a wide range of couplings and mechanical transmission components.


27. Mechanical Design Considerations

Because the MPL-B680D-SJ72AA is a large motor, the machine structure should be designed accordingly.

The mounting plate needs sufficient rigidity.

The motor flange must be supported correctly.

The shaft and driven mechanism should be properly aligned.

The coupling should be suitable for the motor’s torque and speed.

Radial and axial shaft loading should remain within the applicable mechanical limits.

Cable routing should prevent excessive force from being transferred into the motor connector.

The motor should also have enough surrounding space for heat dissipation and maintenance.


28. Inertia Matching

One of the most important parts of servo motor selection is matching the motor inertia to the reflected load inertia.

The motor rotor itself has approximately 0.00775 kg·m² of inertia.

However, the driven load may have significantly greater inertia.

For example, a large rotary table, roller, flywheel, gearbox, or screw-driven axis can produce substantial reflected inertia at the motor shaft.

The transmission ratio must therefore be considered when calculating the effective motor-side load inertia.

Correct inertia matching can improve:

  • Acceleration.
  • Deceleration.
  • Settling time.
  • Positioning accuracy.
  • Servo stability.
  • Mechanical smoothness.
  • Motor thermal performance.

29. Thermal Considerations

The continuous torque rating is based on thermal conditions and the applicable motor operating environment.

Actual machine operation should therefore be evaluated according to the complete duty cycle.

Important factors include:

  • Ambient temperature.
  • Motor mounting orientation.
  • Machine enclosure.
  • Cooling conditions.
  • Continuous load.
  • Acceleration frequency.
  • Deceleration frequency.
  • Peak torque duration.
  • Motor temperature.
  • Surrounding heat sources.

A machine that repeatedly operates near the continuous torque limit may require more careful thermal evaluation than a machine with short intermittent loads.


30. No-Brake Application Considerations

The no-brake design is particularly convenient for horizontal applications.

Examples include:

  • Horizontal conveyors.
  • Horizontal positioning axes.
  • Rotary rollers.
  • Machine-tool axes.
  • Packaging axes.
  • Horizontal transfer units.

For vertical applications, the machine designer should consider whether an external mechanical holding device, counterbalance, or other load-retention mechanism is necessary.

The motor should not be expected to provide mechanical load holding when the servo system is de-energized.


31. Maintenance Considerations

Because this is a brushless servo motor, there are no conventional motor brushes to replace as part of normal operation.

Routine inspection should instead focus on the overall servo system.

Recommended inspection areas include:

  • Motor mounting bolts.
  • Shaft coupling.
  • Mechanical alignment.
  • Bearing condition.
  • Abnormal vibration.
  • Motor temperature.
  • Encoder feedback.
  • Power cable condition.
  • Feedback cable condition.
  • Connector condition.
  • Servo following error.
  • Mechanical backlash.
  • Unusual acoustic noise.

Changes in vibration, temperature, positioning accuracy, or following error can indicate a developing problem in the motor or in the connected mechanical system.


32. Servo Drive Compatibility

The MPL-B680D-SJ72AA should be paired with a compatible servo drive that supports the motor’s electrical characteristics and single-turn high-resolution feedback arrangement.

Commonly associated compatible drive families include Kinetix and other compatible servo drive platforms used with MPL motors.

The exact drive selection should be based on:

Selection Item Requirement
Motor Voltage Compatible with 460 V-class motor
Continuous Current Sufficient for motor continuous torque
Peak Current Sufficient for required acceleration torque
Feedback Supports single-turn high-resolution feedback
Feedback Protocol Compatible with Hiperface feedback
Motor Data Correct motor configuration entered
Cable Correct power and feedback cable
Brake No integral brake
Controller Compatible motion-control platform

A motor with the same frame and torque rating is not automatically electrically interchangeable.


33. Recommended Model Selection Guide

Application Requirement Recommended Direction
Heavy 2000 rpm horizontal axis MPL-B680D-SJ72AA
Heavy axis with single-turn feedback MPL-B680D-SJ72AA
Heavy axis requiring holding brake MPL-B680D-SJ74AA
Heavy axis requiring multi-turn feedback MPL-B680D-MJ72AA
Multi-turn plus holding brake MPL-B680D-MJ74AA
Higher-speed 3000 rpm application MPL-B680F family
Higher-speed 3500 rpm application MPL-B680H family
Lower torque requirement MPL-B660F family
Smaller and lighter motor requirement MPL-B640F family

34. Overall Technical Summary

Parameter MPL-B680D-SJ72AA
Brand Allen-Bradley
Series MP-Series MPL
Family MPL Low-Inertia Brushless Servo Motors
Model MPL-B680D-SJ72AA
Motor Type AC rotary servo motor
Voltage 460 V AC class
Frame Size 6
Frame Dimension 215 mm
Magnet Stack 203.2 mm
Rated Speed 2000 rpm
Maximum Speed 2000 rpm class
Continuous Stall Torque Approximately 62.8 N·m
Peak Torque Approximately 154.2 N·m
Rated Power Approximately 9.3 kW
Rotor Inertia Approximately 0.00775 kg·m²
Feedback Absolute single-turn
Feedback Resolution 1024 Sin/Cos cycles/revolution
Feedback Protocol Hiperface
Shaft Keyed
Brake No
Connector SpeedTEC DIN
Connector Type Right-angle, rotatable
Connector Rotation Approximately 180°
Mounting IEC metric flange
Bolt Circle Approximately 215 mm
Shaft Seal No standard shaft seal
Dimensions Approximately 215 × 203.2 mm
Weight Approximately 45 kg class
Operating Temperature Approximately 40 °C maximum class
Motor Design Low inertia
Main Application Heavy-duty industrial servo motion

35. Final Assessment

The Allen-Bradley MPL-B680D-SJ72AA is a powerful large-frame servo motor intended for applications where torque, positioning accuracy, and dynamic response are more important than having a compact motor package.

Its combination of approximately 62.8 N·m continuous torque, 154.2 N·m peak torque, 9.3 kW rated output, 2000 rpm speed, 215 mm frame size, 203.2 mm magnet stack, and high-resolution single-turn absolute feedback makes it a strong choice for heavy industrial motion systems.

The low-inertia rotor helps the motor respond effectively to acceleration and deceleration commands, while the keyed shaft provides a familiar mechanical connection for industrial transmissions.

The no-brake configuration is especially suitable for horizontal axes where a holding brake is not required.

For machines requiring a brake, the MPL-B680D-SJ74AA is a natural comparison.

For applications requiring multi-turn absolute feedback, the MPL-B680D-MJ72AA or MPL-B680D-MJ74AA should be considered.

For applications requiring higher speed, the B680F and B680H configurations provide alternative directions.

Overall, the MPL-B680D-SJ72AA is best viewed as a high-torque, 2000 rpm, low-inertia, single-turn absolute servo motor for demanding industrial automation equipment, particularly where the machine needs substantial continuous torque without an integrated motor brake.



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