• Allen Bradley MPL-B560F-S-X269 Low-Inertia Brushless Servo Motors Product
  • Allen Bradley MPL-B560F-S-X269 Low-Inertia Brushless Servo Motors Product
  • Allen Bradley MPL-B560F-S-X269 Low-Inertia Brushless Servo Motors Product
  • Allen Bradley MPL-B560F-S-X269 Low-Inertia Brushless Servo Motors Product
Allen-Bradley MPL-B560F-S-X269 Servo Motor – Detailed Product Description 1. Product Overview The Allen-Bradley MPL-B560F-S-X269 is an industrial AC rotary servo motor belonging to the MP-Series MPL fam……
Allen Bradley MPL-B560F-S-X269 Low-Inertia Brushless Servo Motors Product
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Allen-Bradley MPL-B560F-S-X269 Servo Motor – Detailed Product Description

1. Product Overview

The Allen-Bradley MPL-B560F-S-X269 is an industrial AC rotary servo motor belonging to the MP-Series MPL family of low-inertia brushless servo motors.

It is designed for machine-motion applications where accurate positioning, controlled speed, repeatable movement, fast acceleration and deceleration, and dependable closed-loop operation are required.

The MPL-B560F-S-X269 is part of the 480 V AC servo-motor class and uses the large B560F motor configuration. This places it in a substantially sized servo-motor category intended for demanding industrial motion applications rather than simple constant-speed motor duties.

The motor is particularly suitable for automated machinery in which the motor has to respond continuously to commands from a servo drive and maintain a controlled relationship between commanded motion and actual shaft movement.

Typical applications include packaging machinery, material handling, automated assembly equipment, indexing systems, machine tools, printing and converting equipment, and other production machinery requiring controlled rotary motion.

The B560F configuration is associated with a 165 mm frame class and a 152.4 mm magnet-stack configuration. The motor is commonly used in 3000 rpm-class motion applications and provides a substantial torque capability for its size.

The exact suffix X269 represents a specific configuration within the B560F family. Because the X269 designation is a configuration-specific code rather than a simple descriptive suffix such as the SJ74AA or SK74AA configurations, individual feedback, shaft, connector, and brake details should be matched to the motor’s nameplate and machine configuration before final engineering selection.


2. Basic Product Information

Parameter Specification
Brand Allen-Bradley
Product Model MPL-B560F-S-X269
Product Family MP-Series
Product Series MPL Low-Inertia Brushless Servo Motors
Product Type AC Rotary Servo Motor
Electrical Class 480 V AC servo motor class
Motor Construction Brushless permanent-magnet servo motor
Frame Classification B560F / 165 mm class
Magnet Stack 152.4 mm class
Rated Speed 3000 rpm class
Continuous Stall Torque Approx. 26.8 N·m class
Feedback Configuration-dependent
Shaft Configuration Configuration-dependent
Brake Configuration-dependent
Connector Configuration-dependent
Mounting IEC metric configuration
Motor Design Low inertia
Approx. Weight Approx. 40.8 kg class
Frame Dimension 165 mm class
Magnet Stack Length 152.4 mm
Overall Dimensions Configuration-dependent; complete dimensions should be taken from the mechanical drawing

3. Brand and Product Series

Brand

The MPL-B560F-S-X269 belongs to the Allen-Bradley industrial automation product range.

The brand’s servo motor portfolio is intended for integrated industrial motion systems where motors, servo drives, feedback devices, controllers, and mechanical equipment work together as a coordinated system.

For the MPL-B560F-S-X269, the brand and series are important because this motor is not simply selected according to horsepower or speed.

The feedback configuration, motor-drive compatibility, shaft arrangement, brake option, connector arrangement, and mechanical dimensions all need to match the overall motion system.


Product Family

The motor belongs to the MP-Series family.

The MP-Series includes industrial motion products designed for automated machinery and coordinated machine movement.

The family covers different motor sizes, feedback configurations, shaft arrangements, voltage classes, and mechanical options.


Product Series

The specific series is the MPL low-inertia brushless servo motor series.

The MPL series is designed around several important servo-motor characteristics:

  • Low rotor inertia
  • High dynamic response
  • Accurate feedback
  • Controlled speed
  • Precise positioning
  • Industrial mechanical construction
  • Compact servo-motor packaging
  • Compatibility with closed-loop motion systems

The low-inertia characteristic is particularly useful for applications where the motor must frequently accelerate, decelerate, stop, or reverse.


4. Detailed Technical Parameters

4.1 Electrical and Performance Parameters

Parameter MPL-B560F-S-X269
Model MPL-B560F-S-X269
Motor Type Brushless permanent-magnet AC servo motor
Voltage Class 480 V AC class
Rated Voltage Class 400 / 480 V industrial servo class
Rated Speed 3000 rpm class
Continuous Stall Torque Approx. 26.8 N·m class
Motor Technology Permanent-magnet synchronous servo technology
Control Method Closed-loop servo control
Feedback Configuration-dependent
Encoder Type Configuration-dependent
Brake Configuration-dependent
Shaft Configuration-dependent
Motor Inertia Low-inertia design
Frame Size 165 mm class
Magnet Stack 152.4 mm class
Approx. Weight Approx. 40.8 kg class

The electrical configuration makes this motor appropriate for higher-voltage industrial motion systems.

The 3000 rpm class is useful for machinery requiring a combination of speed and torque rather than extremely high-speed spindle operation.

The approximately 26.8 N·m continuous stall torque class provides a substantial continuous torque capability for demanding machine axes.

Actual operating torque is affected by motor speed, temperature, duty cycle, servo-drive configuration, mechanical load, and acceleration requirements.


5. Mechanical Parameters

Mechanical Parameter Specification
Model MPL-B560F-S-X269
Frame Size 165 mm class
Frame Classification B560F
Magnet Stack Length 152.4 mm class
Shaft Configuration Configuration-dependent
Shaft Seal Configuration-dependent
Mounting Standard IEC metric
Mounting Arrangement Metric flange configuration
Connector Arrangement Configuration-dependent
Brake Configuration-dependent
Motor Construction Low-inertia brushless servo
Approx. Weight 40.8 kg class
Frame Reference Dimension 165 mm
Stack Reference Dimension 152.4 mm
Overall Length Configuration-dependent
Overall Width Configuration-dependent
Overall Height Configuration-dependent

The 165 mm frame size is an important mechanical reference when designing the motor mounting structure.

The 152.4 mm stack length is also useful when comparing the B560F motor with other MPL configurations.

However, these two values should not be treated as the complete motor envelope.

The actual installed dimensions can also include the flange, shaft extension, connector area, brake housing, and cable clearance.

For machine design, the mechanical drawing for the exact X269 configuration should be used for final hole spacing, shaft dimensions, flange dimensions, and clearance requirements.


6. Dimensions and Weight

Dimensions are especially important for servo-motor selection because the motor must fit not only into the machine frame but also into the available service and cable-routing space.

The MPL-B560F-S-X269 belongs to the 165 mm frame class and uses a 152.4 mm magnet-stack configuration.

Its approximate weight is in the 40.8 kg class.

Dimension / Weight Value
Model MPL-B560F-S-X269
Frame Size 165 mm
Frame Size in Inches 6.50 in
Magnet Stack Length 152.4 mm
Magnet Stack in Inches 6.0 in
Approx. Weight 40.8 kg
Mounting IEC metric
Complete Length Configuration-dependent
Complete Width Configuration-dependent
Complete Height Configuration-dependent
Shaft Extension Configuration-dependent
Connector Clearance Configuration-dependent

A motor weighing approximately 40.8 kg should be properly supported during installation.

The machine frame, mounting plate, lifting equipment, and maintenance access should all be designed with the motor’s mass in mind.


7. Model Number Interpretation

The MPL-B560F-S-X269 model designation can be viewed as a combination of family, frame, stack, and configuration identifiers.

Model Section General Meaning
MPL MPL low-inertia brushless servo motor family
B Motor configuration
5 Frame-size group
60 Magnet-stack designation
F B560F motor configuration
S Configuration identifier
X269 Specific special/configuration code

The X269 portion should not be interpreted in the same simple way as suffixes such as SJ74AA or SK74AA.

In practical selection work, X-coded configurations should be identified using the complete motor nameplate or configuration documentation.

This is particularly important because the exact feedback, shaft, brake, and connector characteristics can affect servo-drive selection and mechanical installation.


8. Low-Inertia Servo Motor Design

One of the main strengths of the MPL-B560F-S-X269 is its low-inertia servo construction.

In a servo system, motor inertia affects how quickly the motor can respond to a command.

A high-inertia rotor generally requires more torque to accelerate and decelerate.

A lower-inertia rotor can respond more quickly when the servo drive changes the commanded speed or position.

This characteristic is useful in machines that repeatedly perform movements such as:

  • Start
  • Accelerate
  • Move
  • Decelerate
  • Stop
  • Reverse
  • Reposition

For high-cycle machinery, this can be an important factor in achieving the required machine cycle time.


9. Servo Feedback

The exact feedback configuration of the MPL-B560F-S-X269 should be verified from the motor’s complete configuration information.

This is an important distinction because the MPL family includes several different feedback configurations.

Depending on the exact configuration, MPL motors can be used with different feedback arrangements for position and speed control.

For a servo application, the feedback device is critical.

The servo drive uses feedback information to determine the actual position and speed of the motor.

The control system can then compare actual motion against the commanded motion and continuously correct the motor output.

This closed-loop approach is what makes the motor appropriate for precision motion applications.


10. Why Feedback Matters

Feedback is important for applications requiring:

  • Accurate positioning
  • Repeatability
  • Speed regulation
  • Electronic gearing
  • Coordinated axes
  • Registration control
  • Rotary indexing
  • Controlled acceleration
  • Controlled deceleration

Without accurate feedback, the control system cannot achieve the same level of closed-loop motion control.

Therefore, when replacing or selecting an MPL-B560F-S-X269, the feedback configuration should be matched carefully with the existing servo drive.


11. Mechanical Integration

The MPL-B560F-S-X269 is intended for integration into industrial machinery.

The motor mounting flange must be aligned correctly with the machine.

The mounting structure should be sufficiently rigid to prevent excessive vibration.

The mechanical coupling must also be selected according to the actual motor shaft configuration.

Because the X269 configuration is configuration-specific, the shaft arrangement should be verified before selecting a coupling.

Important coupling considerations include:

  • Shaft diameter
  • Shaft length
  • Coupling type
  • Torque rating
  • Maximum rotational speed
  • Radial load
  • Axial load
  • Misalignment tolerance
  • Required positioning accuracy

12. Product Introduction

The MPL-B560F-S-X269 is intended for industrial motion applications where controlled mechanical movement is a core part of the machine.

Instead of simply rotating continuously at a fixed speed, the motor works together with a servo drive and controller to produce controlled movement.

For example, a machine may command the motor to rotate 90 degrees, stop, reverse 45 degrees, accelerate to a specific speed, or synchronize its movement with another machine axis.

The servo system continuously monitors motor feedback and adjusts the motor’s electrical output to follow the command.

This makes the MPL-B560F-S-X269 suitable for machines where motion accuracy and repeatability are more important than simple continuous rotation.


13. Main Product Advantages

13.1 Low-Inertia Performance

The low-inertia construction allows fast response to changing motion commands.

This is especially useful for high-cycle automated machinery.


13.2 High Torque Capability

The B560F configuration provides approximately 26.8 N·m continuous stall torque class capability.

This makes it appropriate for relatively demanding machine axes.


13.3 3000 rpm-Class Operation

The 3000 rpm class provides a useful balance between rotational speed and available torque.

It is suitable for many industrial positioning and indexing applications.


13.4 Closed-Loop Servo Control

The motor is designed to operate with feedback and a servo drive.

This provides much better control over speed and position than a basic open-loop motor.


13.5 Industrial Construction

The motor is intended for industrial machine environments and repeated operating cycles.

This makes it suitable for production machinery where reliable motion is required over extended operating periods.


13.6 Flexible Application Range

The motor can be used across many different industries because servo motion is needed in a wide range of automated machines.


14. Main Applications

Packaging Machinery

Packaging machinery frequently requires precise and repeatable motion.

The motor can be considered for:

  • Film feeding
  • Product positioning
  • Rotary indexing
  • Cutting
  • Sealing
  • Label positioning
  • Conveyor synchronization
  • Carton handling

The low-inertia design is especially useful where the machine repeatedly starts and stops.


Material Handling

The motor can be used in automated material-handling equipment.

Potential applications include:

  • Transfer systems
  • Positioning conveyors
  • Rotary transfer mechanisms
  • Automated feeders
  • Lift mechanisms
  • Indexing tables

Automated Assembly

Assembly machinery often needs highly repeatable positioning.

Possible applications include:

  • Component insertion
  • Pick-and-place mechanisms
  • Rotary indexing
  • Automated transfer
  • Component positioning
  • Assembly stations

Machine Tools

Servo motors are widely used in controlled machine axes.

The MPL-B560F-S-X269 can be considered for:

  • Feed mechanisms
  • Rotary axes
  • Indexing
  • Tool positioning
  • Automated machine movement

The final selection should be based on the actual torque, speed, inertia, and accuracy requirements.


Printing and Converting

Printing and converting machinery frequently requires synchronized movement between multiple axes.

Potential applications include:

  • Web feeding
  • Roller synchronization
  • Registration
  • Cutting
  • Material positioning
  • Indexing

Electronics Manufacturing

Precision motion is important in electronics manufacturing equipment.

Potential applications include:

  • Inspection stages
  • Component positioning
  • Automated feeders
  • Transfer mechanisms
  • Precision indexing

General Factory Automation

The motor can also be used in general-purpose automated machinery.

Examples include:

  • Production equipment
  • Automated transfer machines
  • Positioning systems
  • Inspection machinery
  • Rotary mechanisms
  • Material-processing equipment

15. Typical Motion-Control System

The motor normally operates as one part of a complete motion-control system.

Component Function
MPL-B560F-S-X269 Provides rotary mechanical movement
Servo Drive Controls motor voltage and current
Motion Controller Generates motion commands
Feedback Device Reports actual motor position and speed
Coupling Connects motor to machine mechanism
Gearbox Changes speed and torque when required
Machine Controller Coordinates machine operation
Safety System Provides machine safety functions

The motor and servo drive should be selected together.

The drive must support the motor’s voltage, current, feedback, brake, and communication requirements.


16. Electrical Selection Considerations

Before installing an MPL-B560F-S-X269, the following electrical characteristics should be confirmed:

  • Servo-drive compatibility
  • Motor voltage
  • Motor current
  • Feedback type
  • Feedback interface
  • Brake requirements
  • Motor cable
  • Feedback cable
  • Grounding
  • Shielding
  • Control architecture

The exact X269 configuration should be matched to the existing servo system rather than assuming that all B560F motors have identical feedback and connection characteristics.


17. Mechanical Selection Considerations

Mechanical compatibility is equally important.

The following should be checked:

  • Frame size
  • Flange dimensions
  • Shaft diameter
  • Shaft length
  • Coupling type
  • Motor orientation
  • Radial loading
  • Axial loading
  • Cable clearance
  • Maintenance access
  • Motor weight

The 165 mm frame and 152.4 mm stack dimensions provide useful initial selection information, but they should not be treated as the complete dimensional envelope.


18. Thermal Performance Considerations

Servo motors can generate significant heat when operated under high load.

The actual thermal condition depends on:

  • Continuous torque
  • Peak torque
  • Speed
  • Acceleration
  • Deceleration
  • Duty cycle
  • Ambient temperature
  • Installation position
  • Cooling
  • Mechanical load

The motor should be installed where heat can dissipate adequately.

The machine should also avoid unnecessary heat accumulation around the motor housing.


19. High-Cycle Machine Applications

The MPL-B560F-S-X269 is particularly suitable for applications where the motor performs repeated motion cycles.

A typical high-cycle motion sequence may be:

  1. Accelerate rapidly.
  2. Move at controlled speed.
  3. Decelerate.
  4. Stop at the required position.
  5. Reverse direction.
  6. Repeat the cycle.

The low-inertia characteristics of the MPL series are valuable in these situations because they allow the servo system to respond quickly to changing commands.


20. Packaging Application Example

Consider an automated packaging machine.

The machine may need to feed material, position a package, stop at a precise location, perform a cutting or sealing operation, and then repeat.

A servo motor is useful because the controller can command precise movement rather than simply turning the motor on and off.

The MPL-B560F-S-X269 can therefore be considered for:

  • Feed rollers
  • Indexing mechanisms
  • Cutting axes
  • Positioning axes
  • Product-transfer mechanisms

The actual motor sizing should be based on the load inertia, acceleration profile, required cycle time, and mechanical transmission.


21. Material-Handling Application Example

Material-handling machines often require coordinated movement.

For example, a transfer axis may need to move a load rapidly, decelerate smoothly, stop accurately, and then return to its original position.

The servo motor provides the required controlled movement while the feedback system allows the controller to monitor the actual shaft position.

This is useful for:

  • Transfer tables
  • Conveyor positioning
  • Automated storage equipment
  • Lift mechanisms
  • Rotary transfer systems

22. Machine-Tool Application Example

In machine-tool applications, positioning accuracy and repeatability are important.

A servo motor can be used to control an axis that moves a tool or workpiece.

The MPL-B560F-S-X269 can be considered for machine axes requiring:

  • Controlled acceleration
  • Controlled deceleration
  • Repeatable positioning
  • Variable speed
  • Coordinated movement

The exact selection depends on the machine’s cutting forces, mechanical transmission, axis inertia, speed range, and required accuracy.


23. Five Recommended Same-Series or Related Models

The following models are useful comparison choices within the MPL family.

Model Product Series General Configuration Speed Class Frame / Stack Brake Approx. Weight
MPL-B560F-S-X269 MPL Special X269 configuration 3000 rpm class 165 mm / 152.4 mm Configuration-dependent Approx. 40.8 kg class
MPL-B560F-SJ72AA MPL Single-turn servo configuration 3000 rpm 165 mm / 152.4 mm No brake configuration Approx. 40.8 kg class
MPL-B560F-SJ74AA MPL Single-turn servo configuration 3000 rpm 165 mm / 152.4 mm 24 V DC Approx. 40.8 kg class
MPL-B560F-SK74AA MPL Single-turn, keyless shaft configuration 3000 rpm 165 mm / 152.4 mm 24 V DC Approx. 40.8 kg class
MPL-B560F-MK74AA MPL Multi-turn servo configuration 3000 rpm class 165 mm / 152.4 mm class 24 V DC Configuration-dependent

These models are particularly useful when the machine designer needs to compare different feedback, shaft, and brake configurations.

The B560F frame and stack configuration make these models closely related from a mechanical and performance standpoint.


24. Comparison of Related Models

Parameter MPL-B560F-S-X269 MPL-B560F-SJ72AA MPL-B560F-SJ74AA MPL-B560F-SK74AA MPL-B560F-MK74AA
Series MPL MPL MPL MPL MPL
Frame 165 mm class 165 mm 165 mm 165 mm 165 mm class
Stack 152.4 mm class 152.4 mm 152.4 mm 152.4 mm 152.4 mm class
Speed 3000 rpm class 3000 rpm 3000 rpm 3000 rpm 3000 rpm class
Feedback Configuration-dependent Single-turn Single-turn Single-turn Multi-turn
Shaft Configuration-dependent Keyed Keyed Keyless Configuration-dependent
Brake Configuration-dependent No brake 24 V DC 24 V DC 24 V DC
Torque Class 26.8 N·m class 26.8 N·m class 26.8 N·m class 26.8 N·m class Configuration-dependent
Approx. Weight 40.8 kg class 40.8 kg class 40.8 kg class 40.8 kg class Configuration-dependent

25. Why Choose the MPL-B560F-S-X269?

The MPL-B560F-S-X269 is worth considering when the machine requires a larger-frame servo motor with substantial torque capability and fast dynamic response.

Its main advantages can be summarized as follows:

  • 480 V AC industrial servo class
  • 165 mm frame configuration
  • 152.4 mm magnet-stack class
  • 3000 rpm-class operation
  • Approximately 26.8 N·m continuous stall torque class
  • Low-inertia rotor design
  • Closed-loop servo operation
  • Industrial machine construction
  • Broad application range
  • Compatibility with high-performance motion architectures

The exact X269 configuration should, however, be verified before replacing another B560F model because the suffix can represent a specific mechanical or electrical configuration.


26. Five Popular Models from the Same Brand

The following models are useful products to consider when building a broader industrial automation and motion-control system.

Model Product Type Main Function Typical Application Key Parameter Dimensions Weight
MPL-B560F-S-X269 Servo Motor High-performance rotary motion Packaging and machine axes 3000 rpm class / 26.8 N·m class 165 mm / 152.4 mm class Approx. 40.8 kg
MPL-B560F-SJ74AA Servo Motor Precision rotary motion Positioning and indexing 3000 rpm / single-turn feedback 165 mm / 152.4 mm Approx. 40.8 kg
MPL-B560F-SK74AA Servo Motor Keyless-shaft servo motion Automated machinery 3000 rpm / 24 V brake 165 mm / 152.4 mm Approx. 40.8 kg
2198-H025-ERS Servo Drive Servo motor control Motion-control systems High-performance servo-drive class Drive-specific Configuration-dependent
1756-L81E Programmable Controller Machine control Industrial automation Programmable controller Controller-specific Configuration-dependent

The first three products are direct servo-motor products and are therefore the closest alternatives to the MPL-B560F-S-X269.

The servo drive and programmable controller are control-system products rather than direct motor replacements.

They are included because a complete servo application normally requires both motion control and motor control hardware.


27. Servo Motor Selection Guide

When choosing between the MPL-B560F-S-X269 and another servo motor, the following factors should be evaluated.

Selection Factor MPL-B560F-S-X269
Voltage Class 480 V AC
Frame 165 mm class
Magnet Stack 152.4 mm class
Speed 3000 rpm class
Continuous Stall Torque Approx. 26.8 N·m class
Feedback Configuration-dependent
Shaft Configuration-dependent
Brake Configuration-dependent
Mounting IEC metric
Motor Construction Low-inertia brushless
Approx. Weight 40.8 kg class
Primary Application Industrial closed-loop motion

The most important point is that motor selection should be based on the complete motion profile.

Simply matching motor speed is not enough.

The engineer should also calculate:

  • Load torque
  • Acceleration torque
  • Deceleration torque
  • RMS torque
  • Peak torque
  • Load inertia
  • Motor inertia
  • Gear ratio
  • Cycle time
  • Duty cycle
  • Maximum speed
  • Required positioning accuracy

28. Maintenance Recommendations

Regular inspection helps maintain reliable servo operation.

Important inspection points include:

  • Motor mounting bolts
  • Mechanical coupling
  • Shaft condition
  • Cable condition
  • Connector condition
  • Motor temperature
  • Abnormal vibration
  • Abnormal noise
  • Positioning accuracy
  • Feedback condition
  • Brake operation where applicable

The motor should also be protected from excessive contamination, moisture, vibration, and mechanical impact.

Maintenance intervals should be adjusted according to the machine’s actual operating environment.


29. Common Problems to Avoid

Incorrect Motor Sizing

A motor should not be selected only by rated speed.

The machine load and acceleration requirements must be considered.


Excessive Inertia Mismatch

Large differences between motor inertia and load inertia can make servo tuning more difficult.

The mechanical transmission should therefore be considered when evaluating the complete system.


Incorrect Feedback Matching

The motor feedback configuration must be compatible with the servo drive.

This is particularly important with special configuration codes such as X269.


Incorrect Shaft Coupling

The coupling must match the actual shaft configuration.

Do not assume that every B560F motor uses the same shaft arrangement.


Poor Alignment

Motor-to-machine misalignment can increase mechanical loading and vibration.


Insufficient Thermal Clearance

The motor needs adequate space for heat dissipation.


30. Installation Considerations

During installation, the following points should be checked carefully.

Mechanical Mounting

The mounting flange should be properly aligned with the machine.

The mounting surface should be rigid enough to withstand motor torque and machine vibration.

Shaft Connection

The shaft and coupling must match the exact X269 configuration.

Cable Routing

Motor and feedback cables should be routed with appropriate clearance and bending radius.

Electrical Grounding

Proper grounding and shielding practices should be followed according to the overall servo-system design.

Servo Drive Compatibility

The servo drive must support the motor’s electrical and feedback characteristics.

Maintenance Access

Adequate access should be provided around the motor for inspection and replacement.


31. Overall Advantages

The MPL-B560F-S-X269 combines several characteristics that make it suitable for demanding industrial motion applications.

1. Low-Inertia Motion

The motor can respond rapidly to changing speed and position commands.

2. High Torque Class

The B560F configuration provides substantial continuous torque capability.

3. 3000 rpm-Class Speed

The motor is suitable for a wide range of automated machine axes.

4. Closed-Loop Control

Feedback-based control allows precise speed and position regulation.

5. Industrial Mechanical Design

The motor is intended for integration into industrial machine structures.

6. Wide Application Range

The motor can be used in packaging, assembly, material handling, printing, converting, machine tools, and other automated equipment.

7. Flexible Configuration Family

The B560F family offers different feedback, shaft, and brake configurations, making it easier to select a related motor for a specific machine requirement.


32. Quick Technical Reference

Parameter Specification
Model MPL-B560F-S-X269
Brand Allen-Bradley
Family MP-Series
Series MPL Low-Inertia Brushless Servo Motors
Motor Type AC Rotary Servo Motor
Voltage Class 480 V AC
Frame 165 mm class
Magnet Stack 152.4 mm class
Rated Speed 3000 rpm class
Continuous Stall Torque Approx. 26.8 N·m class
Feedback Configuration-dependent
Encoder Configuration-dependent
Shaft Configuration-dependent
Brake Configuration-dependent
Connector Configuration-dependent
Mounting IEC metric
Motor Design Low inertia
Approx. Weight 40.8 kg
Primary Application Industrial closed-loop motion

33. Final Product Assessment

The MPL-B560F-S-X269 is a large-frame industrial servo motor designed for demanding motion-control applications.

Its B560F configuration, 165 mm frame class, 152.4 mm magnet-stack class, 3000 rpm operating class, and approximately 26.8 N·m continuous stall torque class make it suitable for machine axes requiring substantial servo performance.

Its low-inertia design is particularly valuable in machines that repeatedly accelerate and decelerate.

This makes it a strong candidate for high-cycle automation, indexing, positioning, packaging, assembly, material handling, printing, converting, and machine-tool applications.

Another important characteristic is the availability of multiple related B560F configurations.

The same general motor family includes models with different feedback systems, shaft arrangements, and brake configurations.

This provides useful flexibility when designing or upgrading a machine.

The X269 suffix should be treated as a specific configuration rather than assuming that it has exactly the same shaft, feedback, brake, or connector arrangement as the SJ74AA or SK74AA models.

For this reason, the most important engineering step before replacement is to match the complete nameplate configuration with the existing servo drive and mechanical system.

In summary, the MPL-B560F-S-X269 can be characterized as a substantial, low-inertia, 480 V-class industrial servo motor intended for precision closed-loop motion.

Final Selection Item MPL-B560F-S-X269
Model MPL-B560F-S-X269
Brand Allen-Bradley
Product Family MP-Series
Product Series MPL Low-Inertia Brushless Servo Motors
Motor Type AC Rotary Servo Motor
Voltage Class 480 V AC
Frame Size 165 mm class
Magnet Stack 152.4 mm class
Speed 3000 rpm class
Continuous Stall Torque Approx. 26.8 N·m class
Feedback Configuration-dependent
Shaft Configuration-dependent
Brake Configuration-dependent
Mounting IEC metric
Motor Design Low inertia
Approx. Weight 40.8 kg
Main Advantage Fast, controlled, closed-loop industrial motion
Typical Applications Packaging, assembly, material handling, indexing, machine tools, printing and converting

The combination of low inertia, substantial torque capability, 3000 rpm-class speed, and industrial servo construction makes the MPL-B560F-S-X269 a useful choice for demanding automated machinery where accurate and repeatable motion is required.



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