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The Allen-Bradley 20P41AB265RA0NNN is a high-power PowerFlex DC Drive designed for demanding industrial DC motor applications requiring controlled speed, torque, acceleration, deceleration, and regenerative operation. It is a 230 V AC class, three-phase input DC drive with a 265 A DC output rating and a 75 HP normal-duty rating.
The 20P41AB265RA0NNN belongs to the regenerative section of the PowerFlex DC drive family. Its four-quadrant operating capability makes it particularly suitable for machinery where the motor must not only accelerate and run under load, but also actively control deceleration, reverse direction, or return regenerated energy through the drive system.
This type of drive is commonly associated with large industrial machines that have significant inertia, frequent speed changes, reversing requirements, or loads capable of driving the motor during deceleration. Typical examples include material-processing machinery, web-handling equipment, metal-processing lines, printing equipment, converting machinery, hoisting-related systems, and other large DC motor installations.
The 20P41AB265RA0NNN is configured as an open-style/IP20 drive, with conformal coating, no installed HIM display, and no communication module in the standard catalog configuration. The product is intended to be installed as part of a properly designed control cabinet or industrial electrical enclosure rather than operated as a standalone enclosed field device.
| Parameter | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex DC Drive |
| Series | PowerFlex Digital DC Drive |
| Product Type | Regenerative DC Drive |
| Model / Catalog Number | 20P41AB265RA0NNN |
| Motor Operation | Four-quadrant regenerative operation |
| Nominal AC Input Voltage | 230 V AC class |
| AC Input Range | 200…240 V AC |
| AC Input Phase | Three-phase |
| Normal-Duty Power | 56 kW |
| Normal-Duty Horsepower | 75 HP |
| DC Output Current | 265 A |
| AC Line Current | Approximately 217 A |
| Frame Size | Frame B |
| Enclosure Style | IP20 / NEMA/UL Type Open |
| HIM | No HIM, blank plate configuration |
| Communication Module | None in standard configuration |
| Field Supply | Regulated field supply configuration |
| Input Configuration | Six-pulse input |
| Motor Operation | Regenerative / four-quadrant |
| Conformal Coating | Yes |
| Installation | Panel / cabinet installation |
| Approximate Dimensions | Approximately 330 × 450 × 270 mm* |
| Approximate Weight | Approximately 19 kg* |
| Approximate Shipping Weight | Approximately 23–26 kg* |
| Intended Motor Type | DC motor |
| Typical Application Class | Heavy industrial variable-speed DC motor control |
*Dimensions and weight are practical approximate values for planning purposes. Actual mechanical dimensions and shipping weight should be checked against the mechanical drawing and the exact hardware revision before cabinet fabrication or transportation planning.
The electrical rating of the 20P41AB265RA0NNN is particularly important when selecting upstream protection, line reactors, contactors, conductors, cabinet cooling, and the connected DC motor. The 265 A figure represents the drive’s DC output rating, while the AC line current is approximately 217 A under the applicable rated conditions.
| Electrical Parameter | 20P41AB265RA0NNN Specification |
|---|---|
| Model / Catalog Number | 20P41AB265RA0NNN |
| AC Input Voltage Class | 200…240 V AC |
| Nominal Input Voltage | 230 V AC |
| Input Phase | 3 Phase |
| Input Frequency | 50/60 Hz class industrial supply |
| DC Output Current | 265 A |
| Approx. AC Line Current | 217 A |
| Rated Motor Power | 75 HP |
| Rated Motor Power | 56 kW |
| Drive Type | Regenerative |
| Motor Control | Four-quadrant |
| Input Rectification | Six-pulse |
| Field Supply | Single-phase regulated field supply configuration |
| Overload Capability | 150% for 60 seconds |
| Short-Time Overload | 200% for 3 seconds |
| Communication | None in standard catalog configuration |
| Operator Interface | Blank plate / no HIM |
| Drive Enclosure | IP20 / NEMA/UL Type Open |
| Conformal Coating | Included |
| Recommended Installation | Electrical control cabinet |
| Cooling | Forced-air / cabinet thermal-management arrangement |
| Motor Feedback | Application-dependent feedback configuration |
| Application Type | Industrial DC motor speed and torque control |
The drive family is designed around substantial short-time overload capability. The published technical information specifies a 150% overload capability for 60 seconds and 200% for 3 seconds, which is useful for applications involving temporary acceleration loads, process disturbances, starting torque demand, and short-duration mechanical overloads.
The regenerative architecture is one of the most important characteristics of this catalog number. Unlike a simple non-regenerative DC drive, the regenerative configuration is intended for applications where controlled energy flow can occur in both motoring and regenerative operating conditions.
| Mechanical Parameter | Specification |
|---|---|
| Model / Catalog Number | 20P41AB265RA0NNN |
| Frame Size | B |
| Enclosure | IP20 / NEMA/UL Type Open |
| Approx. Width | 330 mm |
| Approx. Height | 450 mm |
| Approx. Depth | 270 mm |
| Approx. Net Weight | 19 kg |
| Approx. Shipping Weight | 23–26 kg |
| Installation Method | Panel / cabinet mounted |
| Mounting Environment | Industrial electrical cabinet |
| Cooling Arrangement | Forced-air cooling |
| Service Access | Front-access electrical service arrangement |
| Cabinet Requirement | Recommended |
| Environmental Protection | Open-style drive; final enclosure must provide application-appropriate protection |
| Conformal Coating | Yes |
| Operator Panel | Blank plate configuration |
| Communication Option | None supplied as standard |
Because the unit is an IP20/open-style industrial drive, it should not be treated like a fully enclosed outdoor variable-speed drive. Cabinet design, ventilation, clearance, ambient temperature, dust control, cable routing, grounding, and maintenance access are all important parts of a complete installation.
For a 75 HP DC drive, thermal management deserves particular attention. The cabinet should be designed around the heat generated by the drive, associated contactors, reactors, fuses, field components, and other electrical equipment installed in the same enclosure.
The Allen-Bradley 20P41AB265RA0NNN is intended for industrial applications where a conventional AC variable-frequency drive is not the preferred solution and a controlled DC motor system remains important to the process.
The drive provides controlled DC motor operation from a three-phase AC supply. Its regenerative configuration gives the system the ability to manage both motoring and regenerative conditions, which is especially useful when the mechanical load can return energy to the motor during deceleration.
The 75 HP rating places this model in the larger industrial range of the PowerFlex DC family. With a 265 A DC output capability, it is suitable for substantial DC motor installations where high continuous current capacity is required.
The Frame B construction also provides a practical platform for larger industrial control cabinets while maintaining a standardized family architecture. This is useful for facilities that operate multiple PowerFlex DC drives and want a consistent approach to installation, service, spare parts, and maintenance.
The catalog configuration represented by 20P41AB265RA0NNN does not include a HIM operator interface or a communication module. This configuration can be advantageous when the drive is intended to be integrated into a larger machine control system rather than operated locally through a dedicated keypad.
Regenerative operation is one of the defining characteristics of the 20P41AB265RA0NNN.
In a basic motoring condition, electrical energy is converted into mechanical energy by the DC motor. During deceleration or an overhauling condition, however, the motor can act as a generator and return electrical energy toward the drive.
A regenerative DC drive is designed to manage this bidirectional energy flow.
This is especially valuable in machines where deceleration happens frequently. Instead of treating every deceleration event simply as a braking problem, the regenerative drive provides active electrical control of the energy generated by the motor.
Four-quadrant operation also makes the drive suitable for systems requiring controlled forward and reverse torque. This is important for machinery where direction changes are part of normal production rather than an occasional maintenance function.
Typical four-quadrant applications include reversing machinery, tension-control equipment, hoisting-related mechanisms, winders, unwinders, rolling equipment, and process machines with rapid acceleration and deceleration cycles.
The 265 A DC rating gives the drive the current capability required by larger DC motors.
For heavy industrial machinery, current capacity is one of the most important selection criteria. A drive that is undersized for the motor or process load may experience excessive current demand, nuisance trips, thermal stress, or inadequate acceleration performance.
The 20P41AB265RA0NNN provides a substantial current rating while remaining part of a standardized PowerFlex DC product family.
The 75 HP rating makes this model suitable for substantial production machinery.
A 75 HP DC motor can provide considerable torque and mechanical power, making the drive appropriate for applications where a small industrial drive would not have sufficient capacity.
The combination of 56 kW and 265 A provides a convenient reference point when comparing the drive with an existing DC motor installation.
The regenerative architecture is one of the strongest technical features of this model.
Four-quadrant operation allows the motor system to operate with controlled positive and negative torque in both rotational directions.
This is valuable for machines that frequently reverse, decelerate under load, or experience an overhauling load.
The PowerFlex DC family provides significant short-duration overload capability, with ratings of 150% for 60 seconds and 200% for 3 seconds.
This gives the drive additional capability for temporary process demands such as acceleration, short-term torque increases, or sudden load changes.
The IP20/open-style construction is intended for integration into an industrial electrical enclosure.
This arrangement allows engineers to design the complete power and control system around the drive, including disconnects, protection devices, reactors, contactors, field components, control terminals, PLC systems, and other automation hardware.
The catalog configuration includes conformal coating.
For industrial applications, conformal coating can provide additional protection to electronic assemblies against certain environmental influences. It does not eliminate the need for correct cabinet design, temperature management, contamination control, and proper installation.
One practical advantage of a PowerFlex DC drive is its suitability for modernization projects where an existing DC motor and mechanical system remain serviceable.
Many industrial facilities have large DC motors that are mechanically robust and still suitable for production. Replacing the entire motor and machine simply because the original drive is obsolete can be significantly more complicated than modernizing the drive system.
The 20P41AB265RA0NNN can therefore be considered for retrofit projects where the existing motor, field system, feedback device, mechanical load, and electrical infrastructure are compatible with the new drive.
DC motors have historically been widely used in metal-processing equipment because of their controllable torque and speed characteristics.
The 20P41AB265RA0NNN can be considered for large DC motor applications associated with rolling, processing, tension control, material movement, and other heavy industrial machinery.
Paper machinery frequently involves continuous material movement and carefully controlled web speed.
The regenerative characteristics of this drive can be useful in sections where the motor must accelerate, decelerate, reverse, or maintain controlled torque against a changing mechanical load.
Winders and unwinders are particularly demanding applications because the mechanical relationship between speed, torque, roll diameter, and material tension changes continuously.
A regenerative four-quadrant drive is well suited to applications where controlled torque and bidirectional energy flow are important.
Large printing and converting systems can contain multiple drive sections with synchronized speed requirements.
The drive can be applied to suitable DC motor sections where precise speed control, acceleration, deceleration, and reversing are required.
Large conveyors, positioning equipment, lifting systems, and other material-handling machines may benefit from the controlled torque and regenerative characteristics of a DC drive.
The exact suitability depends on the mechanical load profile, motor characteristics, braking requirements, and control architecture.
Certain large textile machines continue to use DC motor technology, particularly in legacy installations.
The 20P41AB265RA0NNN can provide a practical modernization option when maintaining the existing DC motor and mechanical system is more appropriate than redesigning the entire machine.
Industrial test equipment may require frequent acceleration and deceleration cycles.
Regenerative operation can be useful in test systems because the motor may alternate repeatedly between motoring and generating conditions.
Machines that require repeated forward/reverse operation can take advantage of four-quadrant operation.
The regenerative architecture provides controlled torque in both directions, making it appropriate for certain reversing applications.
| Application Requirement | Suitability of 20P41AB265RA0NNN |
|---|---|
| Model / Catalog Number | 20P41AB265RA0NNN |
| Large DC motor | Excellent fit when motor rating is compatible |
| 75 HP class motor | Direct rating class |
| High DC current requirement | 265 A capacity |
| Frequent acceleration | Suitable |
| Frequent deceleration | Suitable |
| Regenerative braking | Suitable |
| Forward/reverse operation | Suitable |
| Four-quadrant control | Suitable |
| Heavy industrial machinery | Suitable |
| Existing DC motor retrofit | Potentially suitable |
| Winder/unwinder | Suitable when system requirements match |
| Paper machinery | Suitable |
| Metal-processing machinery | Suitable |
| Printing/converting equipment | Suitable |
| High-speed AC motor replacement | Not a direct application; motor compatibility must be checked |
| Outdoor standalone installation | Not intended without appropriate enclosure |
| Direct connection to an AC motor | Not applicable |
The following models belong to the same PowerFlex DC regenerative drive family and are useful for comparison when selecting a drive around the 75 HP range.
| Model | Rated HP | Rated kW | DC Current | AC Line Current | Input | Frame |
|---|---|---|---|---|---|---|
| 20P41AB146RA0NNN | 40 HP | 30 kW | 146 A | Approx. 119 A | 200…240 V AC, 3 PH | B |
| 20P41AB180RA0NNN | 50 HP | 37 kW | 180 A | Approx. 147 A | 200…240 V AC, 3 PH | B |
| 20P41AB218RA0NNN | 60 HP | 45 kW | 218 A | Approx. 178 A | 200…240 V AC, 3 PH | B |
| 20P41AB265RA0NNN | 75 HP | 56 kW | 265 A | Approx. 217 A | 200…240 V AC, 3 PH | B |
| 20P41AB360RA0NNN | 100 HP | 75 kW | 360 A | Approx. 294 A | 200…240 V AC, 3 PH | B |
These models form a particularly useful group because they cover the 40 HP through 100 HP range while maintaining the same general regenerative PowerFlex DC architecture.
The 20P41AB218RA0NNN is the closest lower-power model, rated at 60 HP and 218 A, while the 20P41AB360RA0NNN moves up to 100 HP and 360 A.
| Model | HP | kW | DC Amps | Approx. AC Amps | Frame | Typical Position |
|---|---|---|---|---|---|---|
| 20P41AB146RA0NNN | 40 | 30 | 146 | 119 | B | Lower-power option |
| 20P41AB180RA0NNN | 50 | 37 | 180 | 147 | B | Medium-power option |
| 20P41AB218RA0NNN | 60 | 45 | 218 | 178 | B | Direct lower step |
| 20P41AB265RA0NNN | 75 | 56 | 265 | 217 | B | Target model |
| 20P41AB360RA0NNN | 100 | 75 | 360 | 294 | B | Higher-power option |
The models above are not interchangeable simply on the basis of horsepower. Actual drive selection should consider the motor’s armature current, field requirements, rated voltage, feedback system, acceleration requirements, load inertia, regenerative duty, ambient conditions, and the complete machine control design.
For projects requiring a broader range of PowerFlex DC regenerative capacity, the following models are also relevant.
| Model | Rated HP | Rated kW | DC Current | Frame |
|---|---|---|---|---|
| 20P41AB434RA0NNN | 125 HP | 93 kW | 434 A | B |
| 20P41AB521RA0NNN | 150 HP | 112 kW | 521 A | C |
| 20P41AB700RA0NNN | 200 HP | 149 kW | 700 A | C |
| 20P41AB875RA0NNN | 250 HP | 186 kW | 875 A | D |
| 20P41AB1K0RA0NNN | 300 HP | 224 kW | 1050 A | D |
These larger models demonstrate how the same regenerative DC drive family extends well beyond the 75 HP class. The 265 A model therefore sits in the middle of a broad high-power DC drive range rather than being an isolated product.
For applications that do not require regenerative four-quadrant operation, the related 20P21 family can also be considered.
| Model | Drive Type | Rated HP | DC Current Class | Input Class | Frame |
|---|---|---|---|---|---|
| 20P21AB146RA0NNN | Non-regenerative DC | 40 HP | 146 A | 230 V AC class | B |
| 20P21AB180RA0NNN | Non-regenerative DC | 50 HP | 180 A | 230 V AC class | B |
| 20P21AB218RA0NNN | Non-regenerative DC | 60 HP | 218 A | 230 V AC class | B |
| 20P21AB265RA0NNN | Non-regenerative DC | 75 HP | 265 A | 230 V AC class | B |
| 20P21AB360RA0NNN | Non-regenerative DC | 100 HP | 360 A | 230 V AC class | B |
The important difference is the operating architecture. A non-regenerative drive should not be treated as a direct functional substitute for the regenerative 20P41AB265RA0NNN when the machine requires four-quadrant operation.
| Feature | 20P41AB265RA0NNN | Comparable 20P21 Family |
|---|---|---|
| Model | 20P41AB265RA0NNN | 20P21AB265RA0NNN |
| Drive Type | Regenerative | Non-regenerative |
| Four-Quadrant Operation | Yes | No |
| Controlled Regeneration | Yes | Different braking approach required |
| Forward/Reverse Torque | Supported | Application dependent |
| Overhauling Loads | Particularly suitable | Requires additional consideration |
| Frequent Deceleration | Strong application fit | Requires separate braking strategy |
| Energy Return | Regenerative architecture | Not equivalent |
| 75 HP Class | Yes | Yes |
| DC Current | 265 A | 265 A class |
| Typical Use | Demanding reversing/regenerative applications | Conventional DC speed control |
The following models are from other popular Allen-Bradley PowerFlex families. They are useful as reference products, but they are not direct replacements for the 20P41AB265RA0NNN because they are primarily AC variable-frequency drives rather than high-power regenerative DC drives.
| Model | Product Family | Input Voltage | Output Current | Rated Power | Frame | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 25B-D2P3N104 | PowerFlex 525 | 380…480 V AC | 2.3 A | 0.75 kW / 1 HP | A | Approx. 72 × 152 × 172 mm | Approx. 1.1 kg |
| 25B-D6P0N104 | PowerFlex 525 | 380…480 V AC | 6.0 A | 2.2 kW / 3 HP | A | Approx. 72 × 152 × 172 mm | Approx. 1.1 kg |
| 25B-D010N104 | PowerFlex 525 | 380…480 V AC | 10.5 A | 4 kW / 5 HP | B | Approx. 87 × 180 × 172 mm | Approx. 1.6 kg |
| 25B-D017N104 | PowerFlex 525 | 380…480 V AC | 17 A | 7.5 kW / 10 HP | C | Approx. 109 × 220 × 184 mm | Approx. 2.3 kg |
| 25B-D024N114 | PowerFlex 525 | 380…480 V AC | 24 A | 11 kW / 15 HP | D | Approx. 130 × 260 × 212 mm | Approx. 3.9 kg |
These smaller PowerFlex 525 models are widely used for general AC motor control, compact machine automation, conveyors, pumps, fans, packaging equipment, and other applications where an AC induction or permanent-magnet motor is appropriate.
They should be regarded as separate product-family choices rather than drop-in substitutes for the 20P41AB265RA0NNN.
When selecting the 20P41AB265RA0NNN, horsepower alone should not be the only selection criterion.
The first important parameter is the DC armature current of the motor. A 75 HP motor does not automatically mean that every 75 HP-rated drive is appropriate. Motor voltage, armature current, field current, feedback, base speed, maximum speed, overload profile, and load characteristics must all be considered.
The second major consideration is the regenerative requirement. If the machine must frequently decelerate an inertial load, reverse direction, or operate with an overhauling load, the regenerative architecture becomes an important part of the selection.
The third consideration is the field supply. The motor field system must be compatible with the drive configuration and the motor’s field requirements.
The fourth consideration is the cabinet. Since the drive is an IP20/open-style product, the final installation must provide suitable electrical protection and environmental protection.
The fifth consideration is thermal management. A 75 HP DC drive can generate significant heat under continuous operation, especially when operating at high current or in a warm electrical room.
| Motor Parameter | Recommended Selection Check |
|---|---|
| Drive Model | 20P41AB265RA0NNN |
| Motor Type | DC motor |
| Motor Power | Approximately 75 HP class |
| Armature Voltage | Must be compatible with drive configuration |
| Armature Current | Must not exceed appropriate drive rating |
| Field Voltage | Must match field supply requirements |
| Field Current | Must be compatible with field circuit |
| Motor Speed | Must be within drive and motor operating limits |
| Feedback Device | Must be compatible with control system |
| Load Inertia | Must be evaluated |
| Acceleration Time | Must be evaluated |
| Deceleration Time | Must be evaluated |
| Regenerative Energy | Must be evaluated |
| Ambient Temperature | Must be evaluated |
| Cabinet Cooling | Required |
| Grounding | Required |
| Cable Sizing | Based on applicable electrical requirements |
The drive should be selected based on the motor’s actual nameplate information and the mechanical load profile rather than horsepower alone.
The 20P41AB265RA0NNN is an industrial open-style drive, so cabinet engineering is an important part of the complete installation.
The cabinet should provide adequate physical clearance around the drive, appropriate airflow, electrical separation, suitable grounding, proper cable routing, and protection against dust, moisture, conductive contamination, and other environmental conditions that could adversely affect the electronics.
For a 75 HP regenerative DC system, the cabinet may also contain input protection, contactors, line reactors, field components, braking or disconnect equipment where applicable, PLC or controller hardware, terminal blocks, feedback equipment, and auxiliary power supplies.
Thermal calculations should be completed before final cabinet dimensions are selected.
The PowerFlex DC architecture is useful in plants where standardized maintenance procedures are important.
A facility that operates multiple drives from the same product family can simplify spare-parts planning, technician training, troubleshooting procedures, and preventive-maintenance routines.
For the 20P41AB265RA0NNN, maintenance planning should include inspection of cooling airflow, cabinet cleanliness, power connections, control wiring, feedback devices, motor brushes and commutator condition where applicable, field circuits, and signs of thermal stress.
The drive should also be checked for abnormal operating conditions such as repeated overcurrent events, excessive temperature, unexpected regeneration, unstable speed feedback, or repeated fault conditions.
One of the strongest practical applications for a high-power DC drive such as the 20P41AB265RA0NNN is modernization of an existing machine.
Many older industrial machines were designed around DC motors because DC motor technology provided excellent speed and torque control for the production requirements of the time.
In a retrofit project, the motor may still be mechanically sound even though the original drive has become difficult to maintain or replace.
Replacing the drive while retaining the existing motor can reduce the scope of a modernization project.
However, the existing motor should be inspected carefully. The armature, commutator, brushes, bearings, field winding, feedback device, cooling system, cables, and mechanical coupling should all be evaluated before selecting the replacement drive.
| Retrofit Application | Reason the 20P41AB265RA0NNN May Be Considered |
|---|---|
| Model | 20P41AB265RA0NNN |
| Paper machine | Existing DC motor and controlled web movement |
| Steel processing line | High torque and controlled speed |
| Winder | Regenerative and torque-control requirements |
| Unwinder | Controlled regenerative load |
| Printing machine | Speed synchronization and reversing |
| Textile equipment | Existing DC motor infrastructure |
| Test stand | Repeated acceleration/deceleration |
| Large conveyor | High motor power |
| Material handling | Controlled speed and torque |
| Reversing mill | Four-quadrant operation |
| Converting equipment | Regenerative and tension-control applications |
| Benefit | Description |
|---|---|
| Model | 20P41AB265RA0NNN |
| 75 HP Capacity | Designed for substantial industrial DC motor loads |
| 265 A DC Output | High current capability |
| 230 V AC Class | Suitable for 200…240 V AC three-phase supply systems |
| Regenerative Operation | Supports controlled energy return |
| Four-Quadrant Operation | Suitable for controlled forward/reverse torque |
| 150% Overload | 60-second short-duration overload capability |
| 200% Overload | 3-second high overload capability |
| Conformal Coating | Additional electronic protection |
| IP20/Open Style | Designed for cabinet integration |
| Frame B | Standardized mechanical platform |
| No HIM Configuration | Useful for integrated machine-control architectures |
| No Standard Communication Module | Allows application-specific control architecture |
| DC Motor Retrofit Potential | Useful for modernization of existing systems |
| Model | HP | kW | DC Current | Frame |
|---|---|---|---|---|
| 20P41AB7P0RA0NNN | 1.5 HP | 1.2 kW | 7 A | A |
| 20P41AB020RA0NNN | 5 HP | 3.7 kW | 20 A | A |
| 20P41AB038RA0NNN | 10 HP | 7.5 kW | 38 A | A |
| 20P41AB073RA0NNN | 20 HP | 15 kW | 73 A | A |
| 20P41AB110RA0NNN | 30 HP | 22 kW | 110 A | A |
| 20P41AB146RA0NNN | 40 HP | 30 kW | 146 A | B |
| 20P41AB180RA0NNN | 50 HP | 37 kW | 180 A | B |
| 20P41AB218RA0NNN | 60 HP | 45 kW | 218 A | B |
| 20P41AB265RA0NNN | 75 HP | 56 kW | 265 A | B |
| 20P41AB360RA0NNN | 100 HP | 75 kW | 360 A | B |
| 20P41AB434RA0NNN | 125 HP | 93 kW | 434 A | B |
| 20P41AB521RA0NNN | 150 HP | 112 kW | 521 A | C |
| 20P41AB700RA0NNN | 200 HP | 149 kW | 700 A | C |
| 20P41AB875RA0NNN | 250 HP | 186 kW | 875 A | D |
| 20P41AB1K0RA0NNN | 300 HP | 224 kW | 1050 A | D |
This range illustrates the scalability of the PowerFlex regenerative DC family. The 20P41AB265RA0NNN occupies the 75 HP / 265 A position in the 230 V AC three-phase regenerative selection.
| Identification Item | Information |
|---|---|
| Catalog Number | 20P41AB265RA0NNN |
| Brand | Allen-Bradley |
| Series | PowerFlex Digital DC Drive |
| Drive Category | DC Drive |
| Operating Category | Regenerative |
| Motor Operation | Four Quadrant |
| Nominal Voltage | 230 V AC |
| AC Input | 200…240 V AC, three-phase |
| Output Rating | 265 A DC |
| Power Rating | 75 HP / 56 kW |
| Frame | B |
| Enclosure | IP20 / NEMA/UL Type Open |
| HIM | Blank plate |
| Communications | None in standard configuration |
| Conformal Coating | Yes |
| Typical Installation | Industrial cabinet |
The Allen-Bradley 20P41AB265RA0NNN is best understood as a high-power industrial regenerative DC drive rather than simply a conventional speed controller.
Its 265 A DC output capability provides substantial motor current capacity, while its 75 HP rating places it firmly into heavy industrial machinery applications.
Its regenerative four-quadrant design is particularly important for machines where the motor must repeatedly accelerate and decelerate, operate in forward and reverse directions, or handle mechanical loads that can drive the motor.
The IP20/open construction makes the product suitable for engineered control cabinets where protection, cooling, power distribution, and control components can be designed as part of a complete industrial system.
The conformal-coated configuration adds another layer of robustness for appropriate industrial environments, while the blank-plate/no-HIM configuration is well suited to systems where local operator control is handled elsewhere in the machine architecture.
For existing DC motor installations, the product can also be considered as part of a drive modernization strategy, provided that the motor’s electrical and mechanical characteristics are compatible.
| Item | Final Specification |
|---|---|
| Model / Catalog Number | 20P41AB265RA0NNN |
| Brand | Allen-Bradley |
| Series | PowerFlex Digital DC Drive |
| Product Type | Regenerative DC Drive |
| Nominal AC Voltage | 230 V AC |
| AC Input | 200…240 V AC |
| Input | Three-phase |
| Rated Motor Power | 75 HP |
| Rated Motor Power | 56 kW |
| DC Output Current | 265 A |
| AC Line Current | Approx. 217 A |
| Motor Operation | Four-quadrant regenerative |
| Frame | B |
| Enclosure | IP20 / NEMA/UL Type Open |
| Conformal Coating | Yes |
| HIM | No HIM / blank plate |
| Communication Module | None in standard configuration |
| Overload | 150% for 60 seconds |
| High Overload | 200% for 3 seconds |
| Approx. Dimensions | 330 × 450 × 270 mm* |
| Approx. Net Weight | 19 kg* |
| Approx. Shipping Weight | 23–26 kg* |
| Primary Application | High-power industrial DC motor control |
| Typical Industries | Steel, paper, printing, converting, textile, material handling, process machinery |
| Main Technical Feature | Four-quadrant regenerative DC motor control |
*Mechanical dimensions and weight are approximate planning values and should be verified against the exact mechanical drawing and hardware configuration before final engineering.
The Allen-Bradley 20P41AB265RA0NNN is a 75 HP PowerFlex regenerative DC drive designed for demanding industrial motor-control applications. Rated for 265 A DC output and 200…240 V AC three-phase input, the drive provides four-quadrant regenerative operation for applications requiring controlled acceleration, deceleration, reversing, and energy regeneration.
With an IP20/NEMA Type Open construction, Frame B design, conformal coating, blank-plate configuration, and no standard communication module, the 20P41AB265RA0NNN is intended for integration into engineered industrial control cabinets.
Its 56 kW / 75 HP capacity makes it suitable for large DC motor systems used in paper machinery, metal processing, printing and converting equipment, winders and unwinders, material handling systems, textile machinery, test equipment, and other industrial processes where controlled DC motor operation remains important.
The combination of high current capacity, regenerative four-quadrant operation, short-time overload capability, and cabinet-oriented industrial construction makes the 20P41AB265RA0NNN a substantial solution for high-power DC motor control and modernization projects.