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The Allen-Bradley MPL-B680F-MJ72AA is a high-power, low-inertia AC rotary servo motor belonging to the MP-Series MPL low-inertia brushless servo motor family. It is designed for motion-control systems that need a combination of substantial continuous torque, high peak torque capability, relatively high operating speed, accurate position feedback, and a mechanically robust motor construction.
The MPL-B680F-MJ72AA is particularly suited to demanding industrial motion applications where the motor must repeatedly accelerate, decelerate, position, and reverse a substantial mechanical load. Its large 215 mm frame and long 203.2 mm motor stack give it considerably more torque capability than the shorter MPL frame variants.
This particular model uses a 3000 rpm-class speed rating, multi-turn absolute feedback, a keyed shaft, and no integral holding brake. That combination makes it a practical choice for machine axes where multi-turn position information is important and where an electrically released holding brake is not required.
The motor is also part of the low-inertia MPL design philosophy. Compared with conventional high-inertia industrial motors, a low-inertia servo motor can provide faster dynamic response when the servo system is properly matched to the driven load and configured with an appropriate servo drive.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Series | MP-Series |
| Motor Family | MPL Low-Inertia Brushless Servo Motors |
| Product Type | AC Rotary Servo Motor |
| Model | MPL-B680F-MJ72AA |
| Motor Technology | Brushless permanent-magnet servo motor |
| Voltage Class | 460 V AC class |
| Frame Size | 6 |
| Frame Dimension | Approximately 215 mm |
| Motor Stack Length | Approximately 203.2 mm |
| Rated Speed | Approximately 3000 rpm class |
| Feedback | Multi-turn absolute feedback |
| Shaft Type | Keyed shaft |
| Brake | No integral holding brake |
| Connector | SpeedTEC DIN right-angle connector class |
| Mounting | IEC metric flange mounting |
| Continuous Torque | Approximately 60 N·m class |
| Peak Torque | Approximately 108.5 N·m class |
| Rated Power | Approximately 7.5 kW class |
| Rotor Inertia | Approximately 0.00775 kg·m² |
| Approximate Weight | Approximately 40.4 kg class |
| Dimensions | Approximately 215 mm frame × 203.2 mm stack; complete envelope is configuration dependent |
The numerical values above should be treated as engineering-class/typical values rather than a substitute for the exact motor and drive configuration data used for final machine design. Actual system performance depends on the servo drive, feedback configuration, ambient conditions, cable arrangement, load profile, duty cycle, and installation method.
The MPL family is designed around the requirements of modern industrial motion control. Instead of treating the motor simply as a rotating power source, the design focuses on dynamic response, feedback accuracy, acceleration capability, and compatibility with servo-control systems.
The MPL-B680F-MJ72AA belongs to the larger-frame end of the MPL family. Its 215 mm frame and approximately 203.2 mm stack length provide a substantial electromagnetic package capable of delivering high continuous torque while maintaining the characteristics expected from a servo motor.
The model designation MPL-B680F-MJ72AA contains useful information about the motor configuration.
| Model Code | Meaning / General Configuration |
|---|---|
| MPL | MPL low-inertia brushless servo motor family |
| B | 460 V class motor family |
| 6 | Large frame size, approximately 215 mm |
| 80 | Approximately 203.2 mm motor stack |
| F | Approximately 3000 rpm speed class |
| M | Multi-turn absolute feedback |
| J | Keyed shaft configuration |
| 7 | SpeedTEC DIN right-angle connector configuration |
| 2 | No integral holding brake |
| AA | Product/configuration suffix |
The most important distinction in this model is the combination of F speed class + M multi-turn feedback + J keyed shaft + 2 no-brake configuration.
That combination is useful for applications where the machine needs absolute multi-turn position information but does not need a motor-mounted holding brake.
| Parameter | MPL-B680F-MJ72AA Specification |
|---|---|
| Model | MPL-B680F-MJ72AA |
| Motor Type | AC rotary brushless servo motor |
| Voltage Class | 460 V AC class |
| Frame Size | 6 |
| Frame Width / Diameter Class | Approximately 215 mm |
| Stack Length | Approximately 203.2 mm |
| Rated Speed | Approximately 3000 rpm |
| Speed Class | 3000 rpm class |
| Continuous Stall Torque | Approximately 60 N·m |
| Peak Stall Torque | Approximately 108.5 N·m |
| Rated Output Power | Approximately 7.5 kW |
| Rotor Inertia | Approximately 0.00775 kg·m² |
| Feedback Type | Multi-turn absolute |
| Feedback Resolution | High-resolution absolute feedback class |
| Feedback Interface | Hiperface-type feedback configuration |
| Shaft | Keyed |
| Holding Brake | No integral brake |
| Connector | SpeedTEC DIN right-angle type |
| Connector Orientation | Right-angle, rotatable configuration |
| Mounting | IEC metric flange |
| Mounting Holes | Metric/free mounting-hole arrangement |
| Bolt Circle | Approximately 215 mm class |
| Shaft Seal | No standard shaft seal |
| Operating Temperature | Approximately 40 °C maximum class, depending on derating/configuration |
| Dimensions | Approximately 215 × 203.2 mm motor frame/stack dimensions |
| Weight | Approximately 40.4 kg |
| Motor Construction | Low-inertia servo construction |
| Application Class | Industrial motion control |
The physical size of the MPL-B680F-MJ72AA is an important consideration during machine design because this is a relatively large servo motor.
| Dimension Item | Approximate Value |
|---|---|
| Frame Size | 6 |
| Frame Dimension | Approximately 215 mm |
| Motor Stack Length | Approximately 203.2 mm |
| Frame/Stack Reference | 215 mm × 203.2 mm |
| Mounting Type | IEC metric flange |
| Bolt Circle | Approximately 215 mm class |
| Shaft | Keyed shaft extension |
| Overall Installed Envelope | Configuration dependent |
| Weight | Approximately 40.4 kg |
The 215 mm frame provides the mechanical mounting reference, while the 203.2 mm stack length identifies the long motor body used for this torque class.
When designing a cabinet or machine frame, the complete motor envelope should be checked rather than relying only on the frame and stack dimensions. Connector clearance, cable bending radius, shaft extension, coupling dimensions, and maintenance access can all increase the actual installation space required.
The MPL-B680F-MJ72AA is approximately 40.4 kg in the corresponding configuration class.
| Parameter | Value |
|---|---|
| Motor Model | MPL-B680F-MJ72AA |
| Approximate Weight | 40.4 kg |
| Weight Class | Approximately 40–45 kg |
| Brake Contribution | No integral brake |
| Installation Consideration | Mechanical lifting/support may be required |
At roughly 40 kg, this is not a small machine motor. Mechanical installation should therefore be planned carefully, especially when the motor is installed vertically, inside a machine enclosure, or at a location where technicians need to remove it for maintenance.
One of the strongest characteristics of the MPL-B680F-MJ72AA is its torque capability.
The motor provides approximately 60 N·m of continuous torque class capability, while its peak torque capability is approximately 108.5 N·m class.
| Torque Parameter | Approximate Value |
|---|---|
| Continuous Stall Torque | 60 N·m class |
| Peak Stall Torque | 108.5 N·m class |
| Continuous-to-Peak Relationship | Approximately 1.8:1 |
| Motor Frame | 215 mm |
| Stack Length | 203.2 mm |
The difference between continuous and peak torque is particularly important in servo applications.
Continuous torque relates to the motor’s ability to produce torque over sustained operation under appropriate thermal conditions. Peak torque is more relevant during short acceleration, deceleration, positioning, or disturbance events.
For example, a machine may operate continuously at a moderate torque level but require a much larger torque for a short period when accelerating a heavy roller, indexing a large mechanism, or rapidly changing direction.
The F configuration places this motor in the approximately 3000 rpm speed class.
The rated output is approximately 7.5 kW class, which makes this motor suitable for applications requiring substantial mechanical power while retaining servo-control characteristics.
| Performance Parameter | Approximate Value |
|---|---|
| Rated Speed | 3000 rpm class |
| Rated Output | 7.5 kW class |
| Continuous Torque | 60 N·m class |
| Peak Torque | 108.5 N·m class |
| Frame Size | 215 mm |
| Motor Stack | 203.2 mm |
| Rotor Inertia | 0.00775 kg·m² class |
The 3000 rpm class is a useful compromise between torque and speed. It is faster than a 2000 rpm torque-oriented version while still providing substantial torque for heavy-duty servo axes.
This makes the MPL-B680F-MJ72AA particularly interesting when a machine requires both significant mechanical power and reasonably high axis speed.
The MPL family is designed around a low-inertia servo motor concept.
Rotor inertia is approximately 0.00775 kg·m² for this model class.
Low rotor inertia can be beneficial when the motor needs to accelerate and decelerate frequently. A servo system can potentially respond more quickly when the motor and load inertia are appropriately matched.
This is particularly useful for machines that repeatedly perform movements such as:
However, low motor inertia does not automatically mean that every application will have ideal dynamic performance. Load inertia, gearbox ratio, coupling stiffness, mechanical backlash, friction, and servo tuning all have a major effect on the final machine response.
The MPL-B680F-MJ72AA uses multi-turn absolute feedback.
This is one of the most important differences between this model and the corresponding single-turn versions.
A multi-turn absolute encoder can maintain positional information across multiple shaft revolutions. This is especially useful on servo axes where the mechanical position can change by many revolutions and where the control system benefits from absolute position information.
Typical applications include:
For these applications, multi-turn feedback can simplify the management of machine position because the encoder provides more than just a single revolution of positional information.
The M in MPL-B680F-MJ72AA indicates the multi-turn configuration.
| Feature | Single-Turn Configuration | MPL-B680F-MJ72AA |
|---|---|---|
| Feedback Type | Absolute | Multi-turn absolute |
| Position Within One Revolution | Yes | Yes |
| Multiple-Revolution Position | Limited to single-turn information | Yes |
| Long-Travel Axis Suitability | Good | Very good |
| Vertical/Linear Axis Use | Application dependent | Strong candidate |
| Machine Position Tracking | Single revolution | Multiple revolutions |
For a machine with a long mechanical travel, multi-turn feedback can be particularly useful because the motor shaft may rotate through many complete revolutions during normal machine operation.
The MPL-B680F-MJ72AA does not include an integral holding brake.
This is represented by the 2 portion of the configuration.
| Item | MPL-B680F-MJ72AA |
|---|---|
| Integral Holding Brake | No |
| Brake Voltage | Not applicable |
| Brake Release Wiring | Not applicable |
| Main Advantage | Simpler motor configuration |
| Typical Use | Horizontal axes and applications where a motor brake is unnecessary |
A no-brake motor can be advantageous for horizontal applications where the mechanical load does not need to be held in place by the motor when servo power is removed.
For a vertical axis, however, the absence of an integral brake needs careful consideration. If gravity can cause the axis to move when the motor is disabled, the machine designer may need a separate mechanical holding solution or a motor configuration equipped with an appropriate brake.
The choice should therefore be based on the actual mechanical safety requirements of the machine rather than simply selecting the motor with the highest available torque.
The MPL-B680F-MJ72AA uses a keyed shaft.
A keyed shaft is particularly useful in applications where a positive mechanical connection between the servo shaft and coupling, pulley, gearbox, or other transmission component is desired.
Typical applications include:
The shaft key must be correctly matched with the coupling or transmission component. Proper shaft alignment is also important because excessive radial or axial loading can shorten bearing life.
The model uses a SpeedTEC DIN right-angle connector configuration.
The right-angle connector arrangement can be beneficial when cabinet or machine space is limited.
Instead of having a straight connector extending directly away from the motor, the cable exits through a right-angle arrangement, which can help keep the cable routing closer to the machine structure.
This is especially useful in compact machine frames, enclosed axes, and applications where the motor is mounted close to guarding or structural members.
The motor uses an IEC metric flange mounting arrangement.
| Mounting Parameter | Approximate Specification |
|---|---|
| Mounting Type | IEC metric flange |
| Frame Size | 6 |
| Frame Dimension | Approximately 215 mm |
| Bolt Circle | Approximately 215 mm class |
| Shaft | Keyed |
| Installation Orientation | Configuration/machine dependent |
| Mounting Structure | Rigid machine frame recommended |
A rigid mounting structure is important because a high-performance servo motor can generate rapid torque changes. Any unwanted mechanical movement between the motor and machine structure can affect positioning accuracy, vibration, and servo tuning.
In practical terms, the MPL-B680F-MJ72AA can be viewed as a large-frame, high-torque servo motor for demanding industrial motion axes.
It is not intended simply to run a load at a constant speed like a conventional induction motor. Its real strength appears when the machine needs controlled acceleration, controlled deceleration, precise positioning, frequent speed changes, and closed-loop feedback.
The combination of approximately 60 N·m continuous torque, approximately 108.5 N·m peak torque, 3000 rpm-class operation, multi-turn absolute feedback, and low-inertia construction gives this motor a broad range of potential applications.
The absence of an integral brake also makes the configuration particularly suitable for horizontal machine axes where a holding brake is not required.
The approximately 60 N·m continuous torque class gives the motor enough capacity for substantial industrial loads.
This is useful for applications where the axis must maintain significant torque for extended periods rather than only requiring short acceleration bursts.
With approximately 108.5 N·m peak torque class capability, the motor has considerable short-duration torque reserve.
This can help during:
The 3000 rpm speed class provides more speed capability than the 2000 rpm versions of the same general frame and stack configuration.
This can be beneficial when the machine requires both high torque and relatively high mechanical speed.
The multi-turn absolute encoder configuration is one of the model’s most useful features.
It is especially attractive for long-travel axes and mechanisms in which the motor may rotate through many revolutions during normal operation.
The low-inertia design helps the servo system achieve responsive acceleration and deceleration when correctly matched to the load.
This is particularly useful for machines with frequent positioning movements.
The keyed shaft provides a familiar mechanical interface for industrial couplings, gearboxes, pulleys, and other transmission components.
The large frame provides the physical motor size needed to achieve substantial torque output.
For demanding axes, this can be an advantage because the motor has considerably more torque capability than smaller MPL frame sizes.
The right-angle connector arrangement can make cable routing easier in compact industrial machinery.
Although the lack of a brake is a limitation for some applications, it is an advantage when a brake is not required.
The configuration avoids unnecessary brake hardware and is well suited to horizontal axes where the mechanical system does not need motor-mounted holding capability.
The motor can be considered for heavy-duty packaging axes where substantial torque is needed for indexing, feeding, conveying, or positioning.
Examples include:
Automated assembly equipment can require high acceleration, repeatable positioning, and accurate feedback.
The MPL-B680F-MJ72AA can be considered for larger assembly axes where a smaller servo motor would not provide enough continuous torque.
Material-handling machinery is another suitable application category.
Potential uses include:
For vertical applications, the absence of an integral brake must be evaluated carefully.
The motor can be considered for certain machine-tool axes where the required torque, speed, and feedback characteristics match the application.
The keyed shaft and high-resolution feedback are useful characteristics for mechanical transmission systems.
Printing, coating, slitting, and converting machinery often requires accurate speed and position control.
The 3000 rpm speed class gives the motor useful operating flexibility for rotating mechanisms and feed axes.
Rotary indexing equipment can benefit from high peak torque because the motor may need to accelerate a large mechanism quickly and then stop it accurately.
The peak torque capability is particularly relevant to such duty cycles.
The multi-turn absolute feedback makes the motor an interesting choice for long-travel axes.
Potential mechanisms include:
| Application | Suitability | Reason |
|---|---|---|
| Heavy horizontal axis | Excellent candidate | High continuous torque |
| Large rotary indexing | Excellent candidate | Strong peak torque |
| Long-travel axis | Excellent candidate | Multi-turn feedback |
| Packaging machinery | Very suitable | Speed + torque + feedback |
| Material handling | Very suitable | High torque capability |
| Machine tools | Suitable | Servo feedback and keyed shaft |
| Printing/converting | Suitable | 3000 rpm class |
| Vertical axis | Requires careful evaluation | No integral brake |
| Very low-power axis | Over-sized | Large frame and high torque |
| Small compact mechanism | Usually unsuitable | Physical size is substantial |
The following models are useful comparison choices because they are from the same MPL family and share many of the same mechanical or electrical characteristics.
| Model | Speed Class | Feedback | Shaft | Brake | Continuous Torque | Peak Torque | Power | Rotor Inertia | Dimensions | Weight |
|---|---|---|---|---|---|---|---|---|---|---|
| MPL-B680D-SJ72AA | 2000 rpm | Single-turn absolute | Keyed | No | ~62.8 N·m | ~154.2 N·m | ~9.3 kW | ~0.00775 kg·m² | ~215 × 203.2 mm | ~40–45 kg |
| MPL-B680D-MJ74AA | 2000 rpm | Multi-turn absolute | Keyed | 24 V DC | ~62.8 N·m | ~154.2 N·m | ~9.3 kW | ~0.00775 kg·m² | ~215 × 203.2 mm | ~40.4 kg |
| MPL-B680D-MJ72AA | 2000 rpm | Multi-turn absolute | Keyed | No | ~62.8 N·m | ~154.2 N·m | ~9.3 kW | ~0.00775 kg·m² | ~215 × 203.2 mm | ~40.4 kg |
| MPL-B680F-SJ74AA | 3000 rpm | Single-turn absolute | Keyed | 24 V DC | ~60 N·m | ~108 N·m | ~7.5 kW | ~0.00775 kg·m² | ~215 × 203.2 mm | ~40 kg class |
| MPL-B680H-SJ74AA | 3500 rpm | Single-turn absolute | Keyed | 24 V DC | ~60 N·m | ~147 N·m | ~7.5 kW class | ~0.00775 kg·m² class | ~215 × 203.2 mm | ~40 kg class |
Among these, MPL-B680D-MJ72AA is the closest conceptual comparison because it retains the multi-turn feedback and no-brake configuration while moving to the lower 2000 rpm speed class.
The MPL-B680D-MJ74AA is useful when the application needs both multi-turn feedback and an integral 24 V DC holding brake.
The MPL-B680F-SJ74AA is useful for comparing the same basic 3000 rpm motor class with a single-turn encoder and brake.
The following models are useful same-brand comparison choices when evaluating servo motor size, torque, feedback, speed, and brake requirements.
| Model | Frame / Stack | Speed | Feedback | Brake | Continuous Torque | Peak Torque | Power | Dimensions | Weight |
|---|---|---|---|---|---|---|---|---|---|
| MPL-B640F-MJ72AA | 215 / 101.6 mm | 3000 rpm | Multi-turn absolute | No | ~36.7 N·m | ~72.3 N·m | ~6.1 kW | ~215 × 101.6 mm | ~26.8 kg |
| MPL-B640F-MJ74AA | 215 / 101.6 mm | 3000 rpm | Multi-turn absolute | 24 V DC | ~36.7 N·m | ~72.3 N·m | ~6.1 kW | ~215 × 101.6 mm | ~26.8 kg |
| MPL-B660F-MJ72AA | 215 / 152.4 mm | 3000 rpm | Multi-turn absolute | No | ~48 N·m | ~101.1 N·m | ~6.15 kW | ~215 × 152.4 mm | ~35 kg class |
| MPL-B660F-MJ74AA | 215 / 152.4 mm | 3000 rpm | Multi-turn absolute | 24 V DC | ~48 N·m | ~101.1 N·m | ~6.15 kW | ~215 × 152.4 mm | ~35 kg class |
| MPL-B680D-MJ74AA | 215 / 203.2 mm | 2000 rpm | Multi-turn absolute | 24 V DC | ~62.8 N·m | ~154.2 N·m | ~9.3 kW | ~215 × 203.2 mm | ~40.4 kg |
These models provide a useful progression through different motor stack lengths.
The MPL-B640F is the shorter-stack option and is appropriate when approximately 36.7 N·m of continuous torque is sufficient.
The MPL-B660F sits between the B640F and B680F in physical motor length and torque capability.
The MPL-B680 family provides the largest motor stack in this comparison and therefore offers the highest torque capability among these particular configurations.
One of the easiest ways to understand the MPL family is to compare the motor stack length.
| Model Family | Frame | Stack | Continuous Torque Class | Typical Purpose |
|---|---|---|---|---|
| MPL-B640F | 215 mm | 101.6 mm | ~36.7 N·m | Medium-high torque |
| MPL-B660F | 215 mm | 152.4 mm | ~48 N·m | Higher torque |
| MPL-B680F | 215 mm | 203.2 mm | ~60 N·m | High torque |
The longer stack generally means a larger electromagnetic package and greater torque capability.
Therefore, if the B640F is close to the required torque limit, moving to the B660F can provide additional margin. If the application requires still more torque, the B680F is the larger option.
These two models are particularly useful to compare because the general configuration is similar while the speed class differs.
| Parameter | MPL-B680F-MJ72AA | MPL-B680D-MJ72AA |
|---|---|---|
| Frame | 215 mm | 215 mm |
| Stack | 203.2 mm | 203.2 mm |
| Speed Class | ~3000 rpm | ~2000 rpm |
| Feedback | Multi-turn absolute | Multi-turn absolute |
| Shaft | Keyed | Keyed |
| Brake | No | No |
| Continuous Torque | ~60 N·m | ~62.8 N·m |
| Peak Torque | ~108.5 N·m | ~154.2 N·m |
| Power | ~7.5 kW | ~9.3 kW |
| Rotor Inertia | ~0.00775 kg·m² | ~0.00775 kg·m² |
| Dimensions | ~215 × 203.2 mm | ~215 × 203.2 mm |
| Weight | ~40.4 kg | ~40.4 kg |
The B680F is the more speed-oriented choice, while the B680D emphasizes torque and power at a lower speed class.
If the machine needs more rapid rotational movement, the B680F can be attractive. If the application is heavily torque-oriented, the B680D can offer a stronger torque profile.
These two motors are also closely related.
| Parameter | MPL-B680F-MJ72AA | MPL-B680F-SJ74AA |
|---|---|---|
| Speed | ~3000 rpm | ~3000 rpm |
| Feedback | Multi-turn absolute | Single-turn absolute |
| Shaft | Keyed | Keyed |
| Brake | No | 24 V DC |
| Continuous Torque | ~60 N·m | ~60 N·m class |
| Peak Torque | ~108.5 N·m | ~108 N·m class |
| Power | ~7.5 kW | ~7.5 kW class |
| Frame | 215 mm | 215 mm |
| Stack | 203.2 mm | 203.2 mm |
| Weight | ~40.4 kg | ~40 kg class |
| Dimensions | ~215 × 203.2 mm | ~215 × 203.2 mm |
The key decision is therefore not primarily torque or motor size.
It is feedback type versus brake requirement.
Choose the multi-turn configuration when multi-revolution absolute position information is important.
Choose the brake configuration when the machine requires an integral motor holding brake.
The motor is particularly attractive when the application has the following characteristics:
A machine matching these characteristics can take advantage of most of the strengths built into the MPL-B680F-MJ72AA configuration.
Despite its strong specifications, the MPL-B680F-MJ72AA is not automatically the best choice for every machine.
A smaller MPL-B640F may be more appropriate when approximately 36.7 N·m continuous torque is enough. Using a B680F in such an application could result in an unnecessarily large and heavy motor.
A B660F can be a useful middle ground when the B640F does not provide sufficient torque but the B680F is more motor than necessary.
A B680D may be more appropriate when the machine prioritizes torque over rotational speed.
A brake-equipped MPL configuration should be considered when the machine needs the motor itself to provide holding capability after servo power is removed.
Because the MPL-B680F-MJ72AA weighs approximately 40.4 kg, installation should be treated as a mechanical engineering task rather than simply an electrical installation.
The mounting surface should be rigid enough to withstand repeated servo torque changes.
The shaft coupling should be correctly aligned. Excessive angular or parallel misalignment can introduce unwanted bearing loads and vibration.
Cable routing should also be planned before installation. The right-angle connector is helpful, but adequate clearance must still be provided for the connector and cable bend radius.
The motor should not be installed in a location where excessive heat from nearby equipment causes the motor to operate outside its intended thermal conditions.
The motor should be paired with a compatible servo drive capable of supporting its voltage class, continuous current requirements, peak current requirements, feedback interface, and motor configuration.
Motor selection should therefore not be based only on horsepower or torque.
A proper motor/drive combination should consider:
| Selection Factor | Importance |
|---|---|
| Motor voltage class | Very high |
| Continuous current | Very high |
| Peak current | Very high |
| Continuous torque | Very high |
| Peak torque | Very high |
| Rated speed | High |
| Feedback compatibility | Very high |
| Brake requirement | High |
| Load inertia | Very high |
| Mechanical transmission | High |
| Duty cycle | Very high |
| Ambient temperature | High |
| Cable configuration | High |
The drive must have enough continuous and peak current capacity to operate the motor correctly under the actual load profile.
The motor’s low rotor inertia should not be considered separately from the machine load.
For a high-performance servo axis, the relationship between motor inertia and reflected load inertia has a major influence on tuning.
A system with a very large load relative to motor inertia can still be difficult to tune, even when the motor itself has excellent dynamic characteristics.
Mechanical transmission ratios can significantly change the inertia reflected back to the motor.
Therefore, when selecting the MPL-B680F-MJ72AA, engineers should evaluate:
Servo motors generally require less routine mechanical maintenance than many traditional motor systems, but the machine environment still matters.
Important inspection points include:
Because the MPL-B680F-MJ72AA does not include an integral holding brake, there is no motor-mounted brake mechanism to maintain or replace in this particular configuration.
| Application Requirement | Recommended Direction |
|---|---|
| Approximately 36.7 N·m continuous torque | MPL-B640F family |
| Approximately 48 N·m continuous torque | MPL-B660F family |
| Approximately 60 N·m continuous torque | MPL-B680F family |
| Higher torque / lower speed priority | MPL-B680D family |
| 3000 rpm-class operation | MPL-B680F family |
| Multi-turn absolute feedback | MPL-B680F-MJ72AA or equivalent M-feedback model |
| Integral holding brake required | Brake-equipped MPL configuration |
| Horizontal heavy axis | MPL-B680F-MJ72AA can be a strong candidate |
| Vertical axis | Brake-equipped configuration should be evaluated |
| Smaller physical installation | Shorter-stack MPL model |
| Long travel with multiple motor revolutions | Multi-turn configuration |
| Parameter | MPL-B680F-MJ72AA |
|---|---|
| Brand | Allen-Bradley |
| Series | MP-Series |
| Family | MPL Low-Inertia Brushless Servo Motors |
| Model | MPL-B680F-MJ72AA |
| Motor Type | AC rotary brushless servo motor |
| Voltage Class | 460 V AC class |
| Frame | 6 |
| Frame Size | Approximately 215 mm |
| Stack Length | Approximately 203.2 mm |
| Rated Speed | Approximately 3000 rpm |
| Continuous Torque | Approximately 60 N·m |
| Peak Torque | Approximately 108.5 N·m |
| Rated Power | Approximately 7.5 kW |
| Feedback | Multi-turn absolute |
| Shaft | Keyed |
| Brake | None |
| Connector | SpeedTEC DIN right-angle |
| Mounting | IEC metric flange |
| Rotor Inertia | Approximately 0.00775 kg·m² |
| Dimensions | Approximately 215 × 203.2 mm |
| Weight | Approximately 40.4 kg |
| Primary Strength | High-torque, 3000 rpm-class servo operation |
| Feedback Strength | Multi-turn absolute positioning |
| Best-Suited Axes | Heavy horizontal and long-travel servo axes |
| Main Limitation | No integral holding brake |
The Allen-Bradley MPL-B680F-MJ72AA is a substantial industrial servo motor intended for applications where a smaller servo motor may not provide enough torque or mechanical power.
Its combination of a 215 mm frame, approximately 203.2 mm stack, 3000 rpm-class operation, approximately 60 N·m continuous torque, approximately 108.5 N·m peak torque, low rotor inertia, multi-turn absolute feedback, and keyed shaft gives it a strong position within the larger MPL servo motor range.
Its multi-turn feedback is particularly useful for long-travel and multi-revolution axes, while the 3000 rpm speed class makes it more speed-oriented than the comparable 2000 rpm B680D models.
The most important limitation is that this particular MJ72AA configuration does not include an integral holding brake. That is not necessarily a disadvantage; for many horizontal servo axes it is exactly the configuration required. However, for vertical or gravity-loaded mechanisms, the machine designer should carefully evaluate whether a brake or another independent mechanical holding mechanism is required.
Overall, the MPL-B680F-MJ72AA is best viewed as a large-frame, high-torque, 3000 rpm-class, multi-turn absolute servo motor for demanding industrial motion applications, particularly where strong dynamic performance and multi-revolution position feedback are more important than having a motor-mounted holding brake.