Our advantage
Global Logistics
We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.
Brand new and original
Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.
24-hour service
We provide 7*24 hours service to our customers. We will be there whenever you need us.
Price advantage
All our products are priced very favorably because we have our own warehouse and supply.
| Company Information | |||
| [email protected] | |||
| Mobile | +8615980777398 | ||
| +8615980777398 | |||
| 15980777398 |

The Allen Bradley MPL-A4560F-SJ74AA Servo Motor is an industrial AC servo motor designed for integration into high-performance motion control systems. As part of the Allen Bradley MPL servo motor family, the MPL-A4560F-SJ74AA can be used as a motor element within a closed-loop automation architecture that combines a motion controller, servo drive, feedback system, and mechanical load.
Servo motors such as the MPL-A4560F-SJ74AA are commonly used where controlled acceleration, repeatable positioning, coordinated movement, and stable machine operation are required. Rather than operating simply as a conventional fixed-speed motor, a servo motor works together with a compatible drive and feedback arrangement to continuously regulate motion according to commands from the automation controller.
The supplied physical information for this model identifies a 130 mm frame size and a weight of 11.82 kg. These characteristics are important when designing machine structures, selecting mounting hardware, planning cabinet and machine layouts, and handling the motor during installation or replacement.
The exact electrical and mechanical configuration of an MPL servo motor should always be verified from the motor nameplate, system documentation, and applicable configuration information. Parameters such as rated power, torque, speed, voltage, current, feedback arrangement, shaft configuration, brake option, connector configuration, and other application-specific characteristics should not be inferred solely from the model number.
| Parameter | Specification |
|---|---|
| Manufacturer | Allen Bradley |
| Product Family | MPL Servo Motor |
| Model | MPL-A4560F-SJ74AA |
| Product Type | AC Servo Motor |
| Application | Industrial Motion Control |
| Frame Size | 130 mm |
| Weight | 11.82 kg |
| Control Architecture | Closed-Loop Servo System |
| Typical System | Motion Controller + Servo Drive + Servo Motor + Feedback |
| Installation | Machine-Mounted |
| Typical Applications | Positioning, Packaging, Assembly, Material Handling, Robotics, Factory Automation |
| Electrical Characteristics | Verify exact motor configuration |
| Feedback Configuration | Verify exact motor configuration |
| Shaft Configuration | Verify exact motor configuration |
| Brake Configuration | Verify exact motor configuration |
| Connector Configuration | Verify exact motor configuration |
The MPL-A4560F-SJ74AA is an Allen Bradley MPL-series servo motor intended for use as part of a coordinated industrial motion system.
The motor converts electrical energy supplied by a compatible servo drive into controlled mechanical rotation. The drive regulates the motor based on commands from a motion controller and feedback information from the motor or associated feedback device.
A typical servo system can be represented as:
Motion Controller → Servo Drive → MPL-A4560F-SJ74AA → Mechanical Load
with feedback returning from the motor to the drive and control system:
MPL-A4560F-SJ74AA → Feedback → Servo Drive / Motion Controller
This closed-loop structure allows the automation system to monitor actual motor behavior and make adjustments to achieve the commanded motion.
The 130 mm frame size identifies the physical motor class supplied for this model, while the 11.82 kg weight is particularly relevant to mechanical installation and machine design.
The operating principle of the MPL-A4560F-SJ74AA is based on coordinated electrical control and mechanical feedback.
A motion controller generates a movement command according to the machine sequence. This command is transferred to the servo drive, which controls the electrical energy delivered to the motor.
The motor generates torque and begins rotating. Feedback information allows the control system to compare commanded motion with actual motor behavior.
A simplified control sequence is:
This continuous feedback process distinguishes a servo system from a basic open-loop motor application.
The MPL-A4560F-SJ74AA can contribute several important functions to an industrial motion-control system.
Servo motors are designed for controlled movement and can be integrated into applications where machine positioning must be repeatable.
The servo drive can regulate acceleration and deceleration profiles to help achieve smooth machine movement.
Feedback allows the control system to monitor actual motor behavior and compensate for differences between commanded and actual motion.
Multiple servo axes can be coordinated through an appropriate motion controller and drive architecture.
The motor can be used in applications requiring controlled response to changing mechanical loads, subject to the motor and drive’s verified operating limits.
Servo technology is widely used where production equipment requires consistent positioning from cycle to cycle.
The Allen Bradley MPL-A4560F-SJ74AA can function as the mechanical motion-producing element of an integrated automation system.
A complete motion-control architecture may include:
The controller determines what the machine should do, while the servo drive manages the electrical operation of the motor.
The MPL-A4560F-SJ74AA then converts the controlled electrical input into mechanical movement.
This separation of responsibilities allows engineers to build coordinated systems in which several motors operate together according to a programmed sequence.
The MPL-A4560F-SJ74AA can be considered for industrial applications where controlled rotary motion is required.
Typical application areas include:
Servo motors are frequently used in packaging machines for controlled indexing, feeding, sealing, cutting, and product positioning.
Automated conveyors, transfer mechanisms, positioning systems, and handling equipment can use servo motors where controlled movement is required.
Assembly machines often require coordinated motion between multiple mechanical axes. Servo motors provide the controllable movement required by these systems.
Automated production machinery can use servo systems for repeatable positioning and synchronized mechanical operations.
Servo motors can be integrated into machine-tool axes where controlled movement and positioning are required.
Servo technology is commonly used in automated mechanisms requiring coordinated rotary movement.
Printing, labeling, cutting, winding, and web-handling equipment can require carefully coordinated motor movement.
The motor can form part of a larger Allen Bradley motion-control architecture used for automated production equipment.
Actual application suitability should always be determined by matching the motor’s verified electrical, mechanical, thermal, feedback, and load characteristics with the machine requirements.
Mechanical integration is particularly important for a servo motor because the motor must accurately transfer torque and movement to the machine mechanism.
Before installing the MPL-A4560F-SJ74AA, engineers should verify:
The supplied motor weight is 11.82 kg, which should be considered when designing mounting structures and handling equipment.
The mounting surface should provide adequate rigidity. Excessive structural movement can introduce vibration and positioning errors even when the servo control system itself is functioning correctly.
The MPL-A4560F-SJ74AA should be paired with a compatible Allen Bradley servo drive or another drive specifically approved for the motor configuration.
Drive selection should take into account:
The exact drive and motor combination should be confirmed using the applicable Allen Bradley system documentation rather than selecting a drive solely from the motor model number.
Incorrect motor-drive matching can result in poor motion performance, drive faults, overheating, or inability to operate the motor correctly.
Proper installation helps ensure reliable servo performance.
Before installation, confirm the complete motor identification:
MPL-A4560F-SJ74AA
Also record the motor nameplate information and any available revision or configuration details.
Check the motor for:
Do not install a motor with visible mechanical or electrical damage.
The mounting surface should be rigid and correctly aligned with the connected machine mechanism.
Because the motor weighs 11.82 kg, suitable mechanical support should be provided during installation.
Poor shaft alignment can produce excessive vibration, bearing loading, coupling stress, and premature mechanical wear.
Motor and feedback connections should be made according to the verified system wiring arrangement.
Do not assume connector pin assignments based solely on the model number.
Appropriate protective grounding and cable-shielding practices should be followed according to the complete servo-system installation requirements.
Motor and feedback cables should be routed in a way that minimizes mechanical stress and unnecessary exposure to high-power electrical interference.
Commissioning should be performed systematically rather than immediately operating the motor at full machine speed.
Check mounting bolts, coupling connections, alignment, and mechanical clearances.
Verify motor power, feedback, grounding, and associated control connections.
Enter or select the correct motor identification and applicable parameters in the servo-drive configuration.
Confirm that the drive recognizes the feedback system correctly.
Operate the motor at a controlled low speed and observe:
If the application uses positioning control, perform a controlled positioning test before moving to normal production conditions.
Increase speed, acceleration, and load progressively while monitoring motor and drive behavior.
Important commissioning information can include:
Servo problems should be diagnosed as a complete motor-drive-control system rather than assuming that the motor itself is defective.
Possible causes include:
Check the controller status and servo drive diagnostics before replacing the motor.
A drive fault may be associated with:
The exact fault code should be recorded before troubleshooting further.
Possible causes include:
Mechanical inspection should be performed before changing control parameters.
Potential causes include:
Positioning problems should be investigated from both the control and mechanical sides.
Possible contributors include:
The actual operating conditions should be compared with the verified motor and system requirements.
Regular preventive maintenance can help reduce unexpected servo-system downtime.
Check that motor mounting hardware remains secure.
Look for signs of wear, looseness, misalignment, or abnormal mechanical movement.
Inspect cables for:
Changes in normal vibration or sound can provide an early indication of mechanical problems.
Servo-drive diagnostic information can help identify recurring overload, feedback, temperature, or configuration problems.
Protect the motor and associated connectors from unnecessary contamination, moisture, excessive heat, and mechanical damage.
A typical Allen Bradley motion-control system can be represented as:
Controller → Industrial Network → Servo Drive → MPL-A4560F-SJ74AA → Mechanical Load
Feedback provides the closed-loop path:
Motor → Feedback → Servo Drive → Controller
Each component performs a different function.
| System Component | Primary Role |
|---|---|
| Motion Controller | Generates motion commands |
| Servo Drive | Controls electrical power supplied to the motor |
| MPL-A4560F-SJ74AA | Converts electrical energy into controlled mechanical movement |
| Feedback System | Provides actual motor position/speed information |
| Mechanical Transmission | Transfers motor motion to the machine |
| Machine Load | Performs the required industrial operation |
| Safety System | Provides required machine safety functions |
The actual system architecture depends on the machine design and selected Allen Bradley automation platform.
The supplied physical information for the Allen Bradley MPL-A4560F-SJ74AA identifies a 130 mm frame size and a weight of 11.82 kg.
| Physical Parameter | Value |
|---|---|
| Frame Size | 130 mm |
| Weight | 11.82 kg |
These specifications should be considered during:
Frame size should not be interpreted as a complete dimensional drawing. Engineers should use the applicable mechanical drawing when precise mounting-hole locations, shaft dimensions, connector positions, or overall envelope dimensions are required.
Replacing an MPL servo motor requires more than matching the general product family.
Before replacing the MPL-A4560F-SJ74AA, technicians should verify:
A motor with a similar physical appearance should not automatically be treated as an equivalent replacement.
The complete model designation should be matched against the original equipment documentation.
For reliable operation of the MPL-A4560F-SJ74AA, several engineering practices are recommended.
Confirm that the selected servo drive is appropriate for the exact motor configuration.
Servo performance depends heavily on the connected load, transmission, inertia, friction, and mechanical stiffness.
Feedback is fundamental to closed-loop operation. Damaged or incorrectly connected feedback wiring can cause serious servo faults.
Excessive backlash can reduce positioning accuracy even when the servo motor and control system are operating correctly.
Initial low-speed testing makes it easier to identify wiring, direction, mechanical, and configuration problems before full production operation.
Maintaining accurate commissioning records makes future troubleshooting and replacement considerably easier.
Never rely only on a similar model number or physical appearance when replacing a servo motor.
The Allen Bradley MPL-A4560F-SJ74AA provides several characteristics relevant to industrial motion-control applications:
Its value in an automation system comes from the combination of the motor, servo drive, feedback system, controller, and mechanical machine design.
The Allen Bradley MPL-A4560F-SJ74AA is an industrial AC servo motor belonging to the Allen Bradley MPL servo motor family. It is designed to operate as part of a closed-loop motion-control system.
The supplied frame size is 130 mm.
The supplied weight is 11.82 kg.
The motor is typically integrated into a closed-loop servo architecture consisting of a motion controller, compatible servo drive, feedback system, motor, and mechanical load.
A servo motor normally requires a compatible servo drive between the controller and motor. The exact controller, network, and drive architecture depends on the application.
The complete model number, frame size, drive compatibility, feedback configuration, shaft arrangement, brake configuration, connector arrangement, mechanical mounting, and application requirements should be checked.
Feedback provides information about actual motor movement. The servo control system can use this information to regulate operation and respond to differences between commanded and actual motion.
Potential causes include drive faults, missing enable signals, incorrect configuration, feedback problems, wiring faults, safety-system interruption, or mechanical blockage.
The supplied specification identifies 11.82 kg as the motor weight. It should not automatically be interpreted as a shipping weight unless logistics documentation specifies otherwise.
No. Exact electrical and performance parameters such as rated torque, peak torque, rated speed, power, voltage, current, and other configuration-dependent characteristics should be verified against the applicable motor documentation and nameplate.
The Allen Bradley MPL-A4560F-SJ74AA Servo Motor is an industrial AC servo motor intended for integration into closed-loop motion-control systems. With a supplied 130 mm frame size and 11.82 kg weight, the motor can be incorporated into automated machinery requiring controlled rotary movement, positioning, coordinated operation, and repeatable production processes.
The motor should be considered as one part of a complete motion-control architecture. The servo drive, motion controller, feedback system, mechanical transmission, machine load, and safety system all contribute to overall performance.
During installation, particular attention should be given to mechanical alignment, mounting rigidity, cable routing, feedback connections, drive configuration, and load characteristics. During commissioning, controlled low-speed testing and systematic verification can help identify configuration or mechanical problems before normal production operation.
For replacement applications, the complete MPL-A4560F-SJ74AA model designation should be verified rather than relying only on physical appearance or general MPL-series compatibility. Exact electrical ratings, feedback characteristics, shaft configuration, brake options, connector details, and other configuration-dependent parameters should be confirmed from the applicable equipment documentation.
When correctly matched with its servo drive and motion-control system, the Allen Bradley MPL-A4560F-SJ74AA can serve as a reliable motor component for industrial positioning, automation, material handling, packaging, assembly, and other controlled-motion applications.