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The Allen-Bradley MPL-B580J-M-X231 is a high-performance low-inertia brushless AC rotary servo motor belonging to the MP-Series MPL servo motor family.
It is designed for industrial motion-control applications that require accurate positioning, controlled acceleration and deceleration, high dynamic response, and reliable closed-loop operation.
This particular model is a 400 V AC class servo motor with a 165 mm frame size, a 3800 RPM maximum speed, and approximately 34.0 N·m continuous torque capability.
The motor uses a multi-turn absolute encoder with 1024 SinCos Hiperface feedback, providing position information for precise servo control.
The shaft is a keyed shaft configuration, making it suitable for conventional industrial mechanical transmission systems.
The motor is also configured with rotatable right-angle DIN connectors, providing additional flexibility when installing the motor in machinery where cable space is limited.
The MPL-B580J-M-X231 is configured without a holding brake and incorporates a special current-boost configuration. This makes it a specialized motor configuration within the B580J family rather than simply a standard catalog motor with a generic configuration.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Family | MP-Series |
| Product Series | MPL Low-Inertia Brushless Servo Motors |
| Model | MPL-B580J-M-X231 |
| Product Type | Rotary AC Servo Motor |
| Motor Technology | Brushless Permanent-Magnet Servo Motor |
| Application Category | Industrial Motion Control |
| Voltage Class | 400 V AC |
| Motor Frame | 165 mm |
| Maximum Speed | 3800 RPM |
| Continuous Torque Class | 34.0 N·m |
| Feedback | Multi-turn Absolute Encoder |
| Feedback Type | 1024 SinCos Hiperface |
| Shaft | Keyed Shaft |
| Brake | No Brake |
| Connector | Rotatable DIN Connector |
| Connector Style | Right Angle |
| Special Configuration | Current Boost Enabled |
| Parameter | MPL-B580J-M-X231 |
|---|---|
| Motor Type | Low-Inertia Brushless AC Servo Motor |
| Voltage | 400 V AC class |
| Maximum Speed | 3800 RPM |
| Continuous Torque | Approx. 34.0 N·m |
| Frame Size | 165 mm |
| Feedback | Multi-turn Absolute Encoder |
| Feedback Signal | 1024 SinCos Hiperface |
| Shaft Type | Keyed |
| Brake | No Brake |
| Connector | Right-Angle DIN |
| Connector Rotation | Rotatable |
| Mounting Standard | IEC Metric |
| Current Boost | Enabled |
| Motor Construction | Permanent-Magnet Synchronous Servo Motor |
| Dimension Reference | 165 mm frame class |
| Magnet Stack | B580J configuration; approximately 203.2 mm class |
| Weight | Approx. 25–26 kg class; verify exact nameplate/mechanical drawing for the X231 configuration |
| Overall Dimensions | Configuration-dependent; use the applicable mechanical drawing for final installation dimensions |
The most important performance characteristics are the 165 mm frame, 3800 RPM maximum speed, and 34.0 N·m torque class.
The 3800 RPM maximum speed differentiates the B580J configuration from many 3000 RPM-class MPL motors.
| Mechanical Parameter | Specification |
|---|---|
| Frame Size | 165 mm |
| Magnet Stack | Approximately 203.2 mm class |
| Shaft | Keyed shaft |
| Brake | No brake |
| Mounting | IEC metric mounting |
| Connector | Right-angle DIN connector |
| Connector Adjustment | Rotatable |
| Mounting Arrangement | Flange-mounted servo motor |
| Rotor Type | Low-inertia rotor |
| Weight | Approx. 25–26 kg class |
| Frame Dimension | 165 mm |
| Stack Dimension | Approximately 203.2 mm class |
| Overall Length | Configuration-dependent |
| Overall Width | Configuration-dependent |
| Overall Height | Configuration-dependent |
The 165 mm frame places this motor in a relatively large industrial servo-motor class.
The approximately 203.2 mm magnet-stack configuration gives the B580J family a substantial active motor length and supports its higher torque capability.
Because the X231 configuration is a special motor configuration, the exact overall housing dimensions and final shipping weight should be checked against the motor’s nameplate and mechanical drawing before final machine design.
The MPL-B580J-M-X231 is intended to operate as part of a closed-loop servo system.
Unlike a conventional constant-speed motor, the servo motor receives controlled electrical power from the servo drive while its feedback system continuously reports motor position and motion information.
The controller and drive can then regulate the motor according to the required motion profile.
The motor’s 3800 RPM maximum speed makes it suitable for applications where faster rotational movement is required.
The 34.0 N·m continuous torque class provides substantial torque capability for industrial positioning and motion applications.
The special current boost configuration is particularly important because it indicates that the motor has been configured for a higher-current operating characteristic within its intended motion-control system.
The exact allowable continuous and peak operating conditions should always be matched with the corresponding servo drive and application duty cycle.
One of the most important characteristics of the MPL-B580J-M-X231 is its feedback system.
The motor uses a multi-turn absolute encoder with 1024 SinCos Hiperface feedback.
This allows the servo system to obtain detailed position information from the motor.
A multi-turn encoder is particularly useful for mechanisms where the motor rotates through multiple revolutions during normal operation.
Typical examples include:
The feedback system also helps the servo drive maintain accurate control during acceleration, deceleration, and steady-state operation.
The MPL-B580J-M-X231 was designed for applications where a conventional motor does not provide enough positioning accuracy or dynamic response.
The motor combines permanent-magnet servo technology with a low-inertia rotor.
The low-inertia construction allows the motor to change speed rapidly. When a machine needs to accelerate, stop, reverse, or move between multiple positions, the motor can respond quickly to changes in the command.
This characteristic is especially useful in automated machinery.
For example, a packaging machine may need to move a product a fixed distance, stop, perform an operation, and then immediately move to another position.
A servo motor such as the MPL-B580J-M-X231 can perform these repeated movements under closed-loop control.
The maximum speed of approximately 3800 RPM is one of the main advantages of the B580J configuration.
This provides more speed headroom than many 3000 RPM-class servo motors.
It can be beneficial for machines that require:
The motor provides approximately 34.0 N·m continuous torque capability.
This gives it a strong position in applications that require both speed and torque.
The motor can therefore be considered for machine axes that require more than a small or medium servo motor can comfortably provide.
Low rotor inertia is a major advantage for dynamic motion.
When rotor inertia is reduced, less torque is required simply to accelerate the motor’s own rotating mass.
More of the available motor torque can therefore be used to accelerate the machine load.
This is particularly useful for repeated motion cycles.
The multi-turn absolute encoder provides position information over multiple motor revolutions.
This is especially useful for long-travel mechanical axes and rotary mechanisms.
It also provides the servo system with a high-quality feedback signal for closed-loop control.
The keyed shaft provides a familiar and robust mechanical connection.
It can be used with suitable:
This makes the motor relatively straightforward to integrate into conventional industrial machinery.
The right-angle DIN connector is designed with installation flexibility in mind.
The connector can be rotated, allowing the cable exit direction to be adjusted according to the machine layout.
This is particularly useful when the motor is installed inside a compact machine frame.
It can help reduce cable interference with:
The X231 configuration includes a special current-boost characteristic.
This makes the model different from an ordinary standard B580J motor configuration.
The current-boost feature should be considered when selecting the matching servo drive because the electrical configuration, drive capacity, and application duty cycle must be compatible.
Packaging equipment is one of the most suitable areas for low-inertia servo motors.
The MPL-B580J-M-X231 can be considered for:
The fast 3800 RPM capability can be useful when short machine cycles are required.
The motor can also be used for controlled material movement.
Typical applications include:
The absolute multi-turn feedback can provide useful position information for controlled movement.
Printing machines often require synchronization between multiple rotating components.
The motor may be used for:
High-speed operation and accurate feedback are particularly useful in these applications.
Converting machinery includes equipment for cutting, slitting, feeding, winding, and processing continuous material.
Servo motors are often used because the machine needs accurate synchronization between several mechanical sections.
The MPL-B580J-M-X231 can be considered for:
Automated assembly equipment frequently requires repeatable positioning.
Typical applications include:
The motor can also be used for suitable machine-tool motion axes.
Potential applications include:
The final suitability depends on the machine’s required speed, torque, acceleration, inertia, and duty cycle.
The MPL-B580J-M-X231 is not normally used as an independent component.
A complete servo system generally includes:
| System Component | Function |
|---|---|
| Motion Controller | Generates the required motion commands |
| Servo Drive | Controls motor current, speed, and torque |
| Servo Motor | Converts electrical energy into mechanical motion |
| Absolute Encoder | Provides motor position feedback |
| Power Cable | Transfers controlled motor power |
| Feedback Cable | Transfers encoder information |
| Coupling | Connects motor shaft to machine |
| Gearbox | Changes torque/speed when required |
| Machine Load | Performs the actual mechanical work |
The performance of the complete system depends on how these components are matched.
A high-performance motor cannot compensate for an incorrectly sized drive, unsuitable gearbox, excessive mechanical inertia, poor coupling alignment, or an inappropriate motion profile.
When considering the MPL-B580J-M-X231, several parameters should be evaluated together.
The continuous machine load should remain within the motor’s continuous operating capability.
Acceleration, deceleration, cutting, indexing, and sudden load changes can require considerably more torque than steady-state operation.
The actual operating speed should be evaluated throughout the entire motion profile.
The inertia reflected back to the motor has a major effect on dynamic response and servo tuning.
High acceleration requires high torque.
Repeated high-load operation can create considerably more thermal stress than intermittent operation.
The machine environment affects motor cooling and allowable continuous loading.
Gear ratios, pulleys, belts, couplings, and lead screws all influence the motor’s effective load.
Because this model has no standard brake, vertical axes and gravity-loaded mechanisms require special attention.
| Dimension / Physical Parameter | Value |
|---|---|
| Frame Size | 165 mm |
| Frame Size in Inches | 6.50 in class |
| Magnet Stack | Approximately 203.2 mm class |
| Magnet Stack in Inches | 8.0 in class |
| Weight | Approx. 25–26 kg class |
| Shaft | Keyed |
| Connector | Right-angle DIN |
| Connector Position | Rotatable |
| Overall Length | Configuration-dependent |
| Overall Width | Configuration-dependent |
| Overall Height | Configuration-dependent |
For machine-layout work, the 165 mm frame and approximately 203.2 mm stack length provide a useful first reference.
However, the complete motor envelope includes the flange, shaft extension, connector arrangement, and rear housing.
Therefore, the final installation drawing should be used when determining exact clearances.
The motor should be installed in an environment appropriate for industrial servo equipment.
Important factors include:
The mounting surface should be sufficiently rigid to prevent excessive vibration.
The shaft should be correctly aligned with the driven mechanism.
Poor alignment can increase bearing loading and may produce vibration, noise, or premature mechanical wear.
Servo motor cables should be routed carefully.
The power cable and feedback cable should not be subjected to unnecessary mechanical stress.
Avoid:
The right-angle connector can help simplify cable routing in tight machine spaces.
A properly installed servo motor generally requires less routine maintenance than many mechanically complex systems, but regular inspection is still important.
Recommended inspection points include:
If the motor begins operating at an unusually high temperature, the cause should be investigated.
Possible causes can include excessive mechanical load, incorrect servo tuning, poor ventilation, mechanical binding, excessive acceleration, or an unsuitable duty cycle.
The following five models are particularly relevant when comparing the MPL-B580J-M-X231 with other motors in the same MPL family.
| Model | Speed Class | Feedback | Shaft | Brake | Frame / Stack | Weight / Dimension Reference |
|---|---|---|---|---|---|---|
| MPL-B580J-M-X231 | 3800 RPM max | Multi-turn absolute, 1024 SinCos Hiperface | Keyed | No | 165 mm / approx. 203.2 mm | Approx. 25–26 kg class |
| MPL-B580J-MJ72AA | 3800 RPM class | Multi-turn absolute | Keyed | No | 165 mm / approx. 203.2 mm | Configuration-dependent |
| MPL-B580J-MJ74AA | 3800 RPM class | Multi-turn absolute | Keyed | 24 V DC brake configuration | 165 mm / approx. 203.2 mm | Configuration-dependent |
| MPL-B580J-MK72AA | 3800 RPM class | Multi-turn absolute | Keyless | No | 165 mm / approx. 203.2 mm | Configuration-dependent |
| MPL-B580J-MK74AA | 3800 RPM class | Multi-turn absolute | Keyless | 24 V DC brake configuration | 165 mm / approx. 203.2 mm | Configuration-dependent |
These models are useful because they maintain the same general B580J motor platform while changing important mechanical or braking characteristics.
The MJ72AA is the closest standard comparison to the X231 configuration.
The MJ74AA becomes more attractive when a holding brake is required.
The MK72AA is useful when a keyless shaft is preferred.
The MK74AA combines the keyless shaft with a brake configuration.
| Model | Main Difference | Speed | Feedback | Shaft | Brake |
|---|---|---|---|---|---|
| MPL-B580J-M-X231 | Special current-boost configuration | 3800 RPM max | Multi-turn absolute | Keyed | No |
| MPL-B580J-MJ72AA | Standard configuration | 3800 RPM class | Multi-turn absolute | Keyed | No |
| MPL-B580J-MJ74AA | Brake version | 3800 RPM class | Multi-turn absolute | Keyed | Yes |
| MPL-B580J-MK72AA | Keyless shaft | 3800 RPM class | Multi-turn absolute | Keyless | No |
| MPL-B580J-MK74AA | Keyless + brake | 3800 RPM class | Multi-turn absolute | Keyless | Yes |
This comparison shows why the X231 model is not simply interchangeable with every B580J motor.
The motor’s special current-boost configuration and exact electrical characteristics should be matched with the intended drive and machine requirements.
For a broader product-selection list, the following models are useful related choices from the same brand.
| Model | Product Category | Main Parameter | Feedback | Shaft / Brake | Dimension Reference | Weight |
|---|---|---|---|---|---|---|
| MPL-B580J-M-X231 | MPL Servo Motor | 400 V AC class, 3800 RPM, 34.0 N·m class | Multi-turn absolute, 1024 SinCos Hiperface | Keyed / No brake | 165 mm / approx. 203.2 mm stack | Approx. 25–26 kg |
| MPL-B580J-MJ72AA | MPL Servo Motor | 3800 RPM class | Multi-turn absolute | Keyed / No brake | 165 mm / approx. 203.2 mm stack | Configuration-dependent |
| MPL-B580J-MJ74AA | MPL Servo Motor | 3800 RPM class | Multi-turn absolute | Keyed / Brake | 165 mm / approx. 203.2 mm stack | Configuration-dependent |
| MPL-B580J-SJ74AA | MPL Servo Motor | 3800 RPM class | Single-turn configuration | Keyed / Brake | 165 mm / approx. 203.2 mm stack | Configuration-dependent |
| MPL-B560F-SJ74AA | MPL Servo Motor | 3000 RPM class | Single-turn configuration | Keyed / Brake | 165 mm / approx. 152.4 mm stack | Configuration-dependent |
These models cover several common servo-motor configurations, including high-speed B580J motors, multi-turn feedback versions, brake versions, and shorter-stack B560F motors.
The B580J and B580F families are closely related, but their speed characteristics are different.
| Feature | B580F | B580J |
|---|---|---|
| Frame | 165 mm | 165 mm |
| Magnet Stack | Approx. 203.2 mm class | Approx. 203.2 mm class |
| Typical Speed Class | 3000 RPM | 3800 RPM |
| Torque Class | High | High |
| Dynamic Response | Very good | Very good |
| High-Speed Application | Good | Excellent |
| Typical Use | General industrial motion | Higher-speed industrial motion |
The B580J configuration is particularly interesting when machine speed is a major requirement.
If the machine normally operates around 3000 RPM or below, the B580F family may already provide sufficient performance.
If the machine requires more rotational speed, the B580J family deserves closer consideration.
The MPL-B580J-M-X231 is especially suitable for applications where speed and dynamic response must work together.
A high-speed servo motor is not useful simply because it can rotate quickly.
The machine must also be able to accelerate and decelerate safely, maintain accurate feedback, and manage the resulting mechanical energy.
The low-inertia rotor helps in this area.
For example, when a machine changes from 1000 RPM to 3000 RPM, the motor must accelerate its rotating components as well as the reflected load.
A lower-inertia motor can make this transition easier for the servo system.
The X231 configuration can be considered for applications where the special current-boost characteristic is useful.
Potential examples include:
The actual suitability depends on the complete servo-drive combination and machine duty cycle.
The MPL-B580J-M-X231 is configured without a holding brake.
This can be advantageous in applications where mechanical holding is unnecessary.
Examples include many horizontal-axis applications.
However, this configuration requires additional consideration for vertical axes.
If the machine carries a load that can fall under gravity, the motor should not be relied upon as the sole mechanical holding device.
A suitable mechanical holding or braking arrangement may be required.
The motor’s keyed shaft provides a conventional connection point for the machine’s transmission.
When selecting the coupling, the following should be checked:
A properly selected coupling helps protect the motor bearings and maintain accurate motion.
Incorrect coupling alignment can create vibration and increase bearing stress.
Servo motors can experience significantly different thermal loading depending on the motion profile.
A motor operating at moderate torque continuously may produce a different thermal condition from a motor that repeatedly accelerates a heavy load.
Important factors include:
The approximately 34.0 N·m torque figure should therefore not be treated as a universal operating value for every application.
The complete duty cycle should be evaluated before final motor selection.
A low-inertia servo motor can respond very quickly.
This is an advantage, but it also means that the servo system should be tuned correctly.
Incorrect tuning can result in:
The mechanical load, reflected inertia, gearbox ratio, coupling stiffness, and motion profile should all be considered when tuning the system.
| Advantage | Description |
|---|---|
| High-Speed Operation | Up to approximately 3800 RPM |
| High Torque | Approximately 34.0 N·m continuous torque class |
| Low Inertia | Fast acceleration and deceleration |
| Absolute Feedback | Multi-turn position feedback |
| High-Resolution Feedback | 1024 SinCos Hiperface configuration |
| Keyed Shaft | Convenient conventional mechanical connection |
| Flexible Connector | Rotatable right-angle DIN connector |
| Large Frame | 165 mm industrial servo frame |
| Special Current Boost | Designed for a specialized electrical configuration |
| No Brake | Suitable for applications without mechanical holding requirements |
| Application Requirement | Recommended Direction |
|---|---|
| Need approximately 3800 RPM | B580J family |
| Need approximately 3000 RPM | B580F family |
| Need multi-turn absolute feedback | M configuration |
| Need keyed shaft | J configuration |
| Need keyless shaft | K configuration |
| Need no brake | 72 configuration |
| Need brake | 74 configuration |
| Need specialized current boost | MPL-B580J-M-X231 |
| Need shorter motor stack | B560F family |
| Need higher-speed motion | B580J family |
| Parameter | Specification |
|---|---|
| Brand | Allen-Bradley |
| Family | MP-Series |
| Series | MPL Low-Inertia Brushless Servo Motors |
| Model | MPL-B580J-M-X231 |
| Motor Type | Rotary AC Servo Motor |
| Voltage Class | 400 V AC |
| Frame | 165 mm |
| Magnet Stack | Approx. 203.2 mm class |
| Maximum Speed | 3800 RPM |
| Continuous Torque | Approx. 34.0 N·m |
| Feedback | Multi-turn Absolute Encoder |
| Feedback Signal | 1024 SinCos Hiperface |
| Shaft | Keyed |
| Brake | No Brake |
| Connector | Right-Angle DIN |
| Connector | Rotatable |
| Mounting | IEC Metric |
| Current Boost | Enabled |
| Weight | Approx. 25–26 kg class |
| Frame Dimension | 165 mm |
| Stack Dimension | Approx. 203.2 mm |
| Overall Dimensions | Configuration-dependent |
| Typical Applications | Packaging, printing, converting, material handling, indexing, assembly, machine tools |
The Allen-Bradley MPL-B580J-M-X231 is a specialized high-speed member of the MPL low-inertia servo motor family.
Its combination of a 165 mm frame, approximately 203.2 mm magnet-stack class, 3800 RPM maximum speed, approximately 34.0 N·m continuous torque class, multi-turn absolute encoder, 1024 SinCos Hiperface feedback, and keyed shaft gives it a strong position in demanding industrial motion applications.
The low-inertia design is particularly useful where fast acceleration and deceleration are required.
The multi-turn absolute feedback provides accurate position information for closed-loop motion control.
The rotatable right-angle DIN connector also makes the motor easier to integrate into machinery with restricted cable space.
The lack of a holding brake makes the model particularly suitable for applications where mechanical holding is not required.
The most important difference compared with a conventional B580F motor is the higher 3800 RPM speed class. This makes the B580J platform a better candidate for higher-speed motion applications.
The X231 designation also indicates a special configuration, including the current-boost characteristic. Because of this, the motor should be matched carefully with the intended servo drive and operating conditions rather than treated as a completely interchangeable replacement for every B580J motor.
Overall, the MPL-B580J-M-X231 can be regarded as a high-speed, high-torque, low-inertia industrial servo motor for demanding closed-loop motion-control applications, particularly where rapid movement, accurate feedback, and high dynamic performance are important.