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The Allen-Bradley 20P41AD4P1RA0NNN is a compact regenerative DC drive belonging to the PowerFlex DC series. It is designed for industrial applications requiring controlled operation of DC motors in the approximately 2 HP class, with a rated DC output current of 4.1 A.
The drive is designed for a 460/480 VAC class, three-phase AC input and provides a controlled DC output for the motor armature. Its regenerative, four-quadrant architecture allows the motor to operate in both motoring and regenerative conditions, making the drive useful for applications that require controlled acceleration, deceleration, reversing, or braking.
The standard configuration uses a 6-pulse input, single-phase regulated field supply, IP20 / NEMA/UL Type Open construction, and conformal coating. The catalog configuration also specifies a blank plate rather than a HIM and no communication module.
For its physical size, the 20P41AD4P1RA0NNN uses Frame A construction. The approximate drive dimensions are 267 mm wide × 359 mm high × 287 mm deep, and the drive weight for the 4.1 A Frame A regenerative configuration is approximately 11 kg.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Series | PowerFlex DC |
| Product Type | Digital DC Drive |
| Catalog Number | 20P41AD4P1RA0NNN |
| Drive Configuration | Regenerative |
| Operating Mode | Four-quadrant |
| Input Voltage Class | 460/480 VAC |
| Input Phase | 3-phase |
| Input Type | 6-pulse |
| Output Current | 4.1 A |
| Motor Rating | 2 HP |
| Motor Power | Approximately 1.5 kW |
| Frame Size | Frame A |
| Field Supply | Single-phase regulated |
| Enclosure | IP20, NEMA/UL Type Open |
| Conformal Coating | Yes |
| HIM | Blank plate / no HIM |
| Communication Module | None in stated configuration |
| Approximate Dimensions | 267 × 359 × 287 mm, W × H × D |
| Approximate Weight | 11 kg |
| Primary Application | Industrial DC motor control |
The product family is PowerFlex DC, while the specific configuration is a 480 VAC-class regenerative DC drive. The product-selection data places the 4.1 A model at 2 HP / approximately 1.5 kW and assigns it to Frame A.
| Parameter | 20P41AD4P1RA0NNN |
|---|---|
| Brand | Allen-Bradley |
| Series | PowerFlex DC |
| Catalog Number | 20P41AD4P1RA0NNN |
| Drive Type | Digital regenerative DC drive |
| Input Voltage | 460 VAC nominal / 480 VAC class |
| Input Frequency | 50/60 Hz |
| Input Phase | 3-phase |
| Input Current | Approximately 3.3 A |
| Input Type | 6-pulse |
| DC Output Voltage | Up to approximately 500 VDC |
| Rated DC Output Current | 4.1 A |
| Normal Duty Motor Rating | 2 HP |
| Approximate Motor Power | 1.5 kW |
| 1-Minute Overload Current | 6.2 A |
| 3-Second Overload Current | 8.2 A |
| Motor Operation | Four-quadrant regenerative |
| Frame Size | Frame A |
| Field Supply | Single-phase regulated |
| Field Input | 460 VAC, 50/60 Hz, up to 10 A |
| Field Output | Up to approximately 360 VDC, 10 A |
| Regulator Power | 115/230 VAC, single-phase |
| Regulator Power Current | Approximately 1.0/0.5 A |
| I/O Supply | 24 VDC standard |
| Enclosure | IP20 |
| Enclosure Type | NEMA/UL Type Open |
| Conformal Coating | Yes |
| HIM | Blank plate / no HIM |
| Communication Module | None in stated configuration |
| Approx. Width | 267 mm |
| Approx. Height | 359 mm |
| Approx. Depth | 287 mm |
| Approx. Dimensions | 267 × 359 × 287 mm |
| Approx. Weight | 11 kg |
| Mounting Orientation | Vertical |
| Typical Application | Industrial DC motor speed and torque control |
The drive nameplate data identifies a 460 VAC, 50/60 Hz three-phase input, approximately 3.3 A input current, 500 VDC / 4.1 A regenerative output, 2 HP rating, 6.2 A one-minute overload, and 8.2 A three-second overload. The field circuit is separately specified as a regulated single-phase supply.
The 20P41AD4P1RA0NNN is intended for applications where a compact industrial DC drive is required to regulate the speed and torque of a DC motor.
Although its 2 HP rating places it toward the smaller end of the PowerFlex DC range, it uses the same general control architecture associated with the larger PowerFlex DC regenerative drives.
This makes the model useful in machines where a small DC motor still requires more sophisticated control than a simple contactor-based starter.
The drive provides controlled motor acceleration and deceleration while also supporting regenerative operation.
This is particularly useful when the motor needs to change direction, decelerate under controlled conditions, or operate with a mechanical load that can drive the motor.
The 20P41AD4P1RA0NNN is therefore not simply a basic DC speed controller.
It is a compact industrial drive designed to become part of a complete machine-control system.
The most important electrical rating of the model is its 4.1 A DC output current.
The current rating determines the size of DC motor that can be operated by the drive.
The 4.1 A configuration corresponds to approximately 2 HP, or approximately 1.5 kW, under the specified normal-duty rating.
For a small industrial DC motor, this provides sufficient capacity for a variety of machine functions including auxiliary drives, small conveyors, feeders, positioning mechanisms, small winding equipment, and other process machinery.
The current rating should always be compared with the motor nameplate armature current rather than selecting the drive only from the horsepower value.
The drive is rated for a 2 HP motor under the specified normal-duty classification.
Two horsepower is approximately 1.5 kW.
This makes the drive suitable for relatively compact industrial machines.
Typical motors in this range can be used for small material-handling mechanisms, feeders, compact processing equipment, small winders, auxiliary machine functions, and other equipment where a DC motor is preferred.
The 2 HP rating should not be interpreted as meaning that every 2 HP motor is automatically compatible.
The actual motor armature voltage, armature current, field requirements, speed range, feedback arrangement, and duty cycle should be checked before installation.
The 20P41AD4P1RA0NNN is designed for a 460 VAC class three-phase input.
The nameplate data identifies the input as 460 VAC, 50/60 Hz, three-phase, with an input current of approximately 3.3 A for the stated configuration.
The three-phase AC input is converted by the drive into controlled DC power for the motor armature.
This makes the product suitable for industrial electrical systems where 460/480 VAC three-phase power is available.
For installation, the actual supply voltage and frequency should be verified against the drive and the applicable electrical requirements.
The drive uses a 6-pulse input configuration.
A six-pulse converter is a common industrial AC-to-DC power-conversion arrangement.
For a DC drive, the incoming three-phase AC power is converted into a controlled DC output that supplies the motor armature.
This architecture has been widely used in industrial DC drive systems and is also used across the larger PowerFlex DC family.
The 6-pulse arrangement provides a straightforward and established power-conversion structure for industrial DC motor control.
One of the most important features of the 20P41AD4P1RA0NNN is its regenerative four-quadrant operating capability.
Four-quadrant operation allows the drive to manage both positive and negative motor speed as well as positive and negative torque conditions.
In practical machine terms, this means the drive can support:
This capability is valuable when the machine requires controlled reversing or frequent acceleration and deceleration.
It also provides a controlled method of handling mechanical energy during regenerative operation.
The product selection information specifically identifies this model as a four-quadrant regenerative drive.
Regenerative braking is particularly useful when a motor is required to slow down under controlled conditions.
When the motor decelerates, the mechanical system can drive the motor.
Under this condition, the motor can act as a generator.
The regenerative drive controls this condition rather than simply disconnecting the motor.
This is useful for machines that have:
For a small 2 HP machine, the amount of regenerative energy is considerably lower than in a large industrial drive, but the operating principle remains important.
The 20P41AD4P1RA0NNN is a Frame A PowerFlex DC drive.
Frame size is an important mechanical classification because it determines the approximate physical dimensions, mounting arrangement, cooling arrangement, and service space.
The Frame A PowerFlex DC drive dimensions are approximately:
The Frame A mechanical envelope is shared across a number of smaller PowerFlex DC drive ratings, allowing different current ratings to use a common physical platform.
The approximate physical dimensions of the 20P41AD4P1RA0NNN are 267 × 359 × 287 mm, corresponding approximately to width × height × depth.
The drive itself weighs approximately 11 kg.
The corresponding packaged weight is approximately 13 kg, which is useful when planning transportation or handling.
For cabinet design, the actual mounting clearances should be considered in addition to the basic product dimensions.
The drive needs adequate space for electrical connections, airflow, inspection, and service access.
The product uses an IP20, NEMA/UL Type Open enclosure.
This means the drive is intended to be installed as part of a suitable electrical cabinet or protected industrial enclosure.
It should not be treated as an outdoor, washdown, or weatherproof product.
The enclosure in which the drive is installed should provide the environmental protection required by the application.
Cabinet design should also consider dust, moisture, vibration, ambient temperature, airflow, and access requirements.
The specified configuration includes conformal coating.
Conformal coating provides additional protection to electronic assemblies against environmental contamination.
This can be useful in industrial environments where airborne dust, humidity, or other contaminants may be present.
However, conformal coating does not eliminate the need for a properly designed electrical enclosure.
The overall installation still needs appropriate environmental protection and thermal management.
The drive incorporates a single-phase regulated field supply.
The nameplate information identifies a field input of up to approximately 460 VAC, 50/60 Hz, single-phase, with an output of approximately 360 VDC, up to 10 A for the field supply circuit.
Field control is important in DC motor applications because the field affects the motor’s operating characteristics.
The armature and field systems therefore need to be considered together when configuring a DC motor drive.
The product nameplate also specifies regulator power from 115/230 VAC, single-phase, with approximately 1.0/0.5 A values associated with the respective voltage levels.
This auxiliary power arrangement supports the drive’s control electronics.
When designing the control cabinet, the regulator supply should be considered separately from the main motor power circuit.
The model provides overload capacity beyond its continuous 4.1 A rating.
The documented nameplate values identify approximately:
| Overload Condition | Current |
|---|---|
| Continuous / Rated Output | 4.1 A |
| 1-Minute Overload | 6.2 A |
| 3-Second Overload | 8.2 A |
This capability is useful for applications where the motor needs additional current for short-duration acceleration or transient load conditions.
The overload rating does not mean that the motor can continuously operate at the overload value.
The overload duration and operating conditions must remain within the drive’s specified limits.
The 20P41AD4P1RA0NNN can be used in a variety of small and medium industrial machine functions where a controlled DC motor is required.
Typical applications include:
A small industrial conveyor can benefit from controlled DC motor operation when precise starting and stopping are required.
The drive can provide controlled acceleration rather than applying full motor torque immediately.
This can reduce mechanical shock to belts, couplings, gears, and transported materials.
If the conveyor requires controlled deceleration or reversing, the regenerative four-quadrant architecture provides additional control capability.
Feeders often require controlled speed.
For example, a machine may need to feed material at a consistent rate into another production stage.
The drive can regulate motor speed while the machine controller provides the operating reference.
A DC motor can also provide useful torque characteristics at low speed, depending on the motor design and drive configuration.
This makes the product suitable for compact industrial feeding equipment.
Small winding systems can also make use of the 20P41AD4P1RA0NNN.
A winding machine may need to maintain a controlled rotational speed while material is wound onto a spool or roll.
During acceleration, the drive provides motor torque.
During controlled deceleration, the drive can manage regenerative conditions.
For machines requiring accurate speed or tension control, feedback can be incorporated into the overall control system.
An unwinding machine can require controlled braking torque.
When material is pulled from a roll, the roll can tend to accelerate.
The motor may therefore need to operate in a braking or regenerative condition.
Four-quadrant DC drive operation is well suited to this type of control philosophy.
For small roll systems, a 2 HP-class drive can provide a compact solution when the motor and load requirements fall within the drive ratings.
Packaging equipment often contains small motors for feeders, rollers, conveyors, and other mechanical sections.
Some machines require smooth acceleration and controlled stopping to prevent product movement or mechanical shock.
A compact regenerative DC drive can provide controlled motor operation while also supporting reversing where required.
Small printing and converting machines may use DC motors for rollers, feeders, tension systems, or auxiliary mechanisms.
The drive’s ability to regulate speed and support feedback-based control can be useful in applications where consistent process speed is important.
For larger machines, larger PowerFlex DC models from the same family may be required.
The 20P41AD4P1RA0NNN can also be considered for machine-tool auxiliary functions where a DC motor is already installed.
The regenerative architecture can be useful where controlled stopping or reversing is required.
When used in older equipment, the drive may provide a practical modernization option while allowing the existing DC motor to remain in service, subject to motor condition and compatibility.
One particularly relevant application is the replacement of an older DC drive.
Many industrial facilities have machines that were designed around DC motors.
Replacing the entire motor and mechanical system with an AC motor can be expensive and mechanically disruptive.
A PowerFlex DC drive can provide an alternative approach when the existing DC motor remains suitable.
The 20P41AD4P1RA0NNN is particularly useful when the existing motor is in the 2 HP range and the machine requires regenerative four-quadrant operation.
The Frame A construction gives the drive a relatively compact physical footprint for an industrial DC drive.
With approximate dimensions of 267 × 359 × 287 mm, it can be incorporated into relatively compact electrical cabinets.
The 2 HP rating makes the model suitable for smaller industrial DC motors.
This allows the same PowerFlex DC architecture to be used across a wide range of motor sizes.
The 4.1 A continuous output rating is appropriate for the corresponding 2 HP motor class.
It also provides short-duration overload capacity for acceleration and transient conditions.
Four-quadrant operation provides a major functional advantage compared with a simple one-direction DC controller.
The drive can support both motoring and regenerative conditions in both directions.
Regenerative operation is useful for machines that need controlled braking and deceleration.
This can be particularly valuable in winding, unwinding, reversing, and cyclic machinery.
The integrated regulated field supply simplifies the overall DC motor-control arrangement.
It provides a controlled field circuit as part of the drive system.
The IP20 / NEMA/UL Type Open construction is appropriate for installation inside a suitable industrial electrical cabinet.
The conformal-coated configuration provides additional protection to electronic assemblies in appropriate industrial environments.
The 20P41AD4P1RA0NNN belongs to a broad PowerFlex DC family that extends from small 4.1 A drives to very high-current industrial drives.
This makes the product family useful for facilities with multiple DC motor sizes.
The following models are from the same PowerFlex DC regenerative 480 VAC-class family.
They are especially useful when comparing different motor sizes while maintaining the same basic drive architecture.
| Model | Output Current | Motor Rating | Motor Power | Frame | Input | Operation | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|---|
| 20P41AD6P0RA0NNN | 6 A | 3 HP | 2.2 kW | A | 460/480 VAC, 3 PH | Four-quadrant regenerative | Approx. 267 × 359 × 287 mm | Approx. 11 kg |
| 20P41AD010RA0NNN | 10 A | 5 HP | 3.7 kW | A | 460/480 VAC, 3 PH | Four-quadrant regenerative | Approx. 267 × 359 × 287 mm | Approx. 11 kg |
| 20P41AD014RA0NNN | 14 A | 7.5 HP | 5.5 kW | A | 460/480 VAC, 3 PH | Four-quadrant regenerative | Approx. 267 × 359 × 287 mm | Approx. 11 kg |
| 20P41AD019RA0NNN | 19 A | 10 HP | 7.5 kW | A | 460/480 VAC, 3 PH | Four-quadrant regenerative | Approx. 267 × 359 × 287 mm | Approx. 11 kg |
| 20P41AD027RA0NNN | 27 A | 15 HP | 11 kW | A | 460/480 VAC, 3 PH | Four-quadrant regenerative | Approx. 267 × 359 × 287 mm | Approx. 11 kg |
These five models are directly related to the 20P41AD4P1RA0NNN and are all part of the same regenerative PowerFlex DC selection. The product-selection tables identify the 4.1, 6, 10, 14, 19, and 27 A models as Frame A units.
| Model | Current | HP | kW | Frame | Approx. Dimensions | Approx. Weight | Typical Selection |
|---|---|---|---|---|---|---|---|
| 20P41AD4P1RA0NNN | 4.1 A | 2 HP | 1.5 kW | A | 267 × 359 × 287 mm | 11 kg | Base 2 HP class |
| 20P41AD6P0RA0NNN | 6 A | 3 HP | 2.2 kW | A | 267 × 359 × 287 mm | 11 kg | 3 HP class |
| 20P41AD010RA0NNN | 10 A | 5 HP | 3.7 kW | A | 267 × 359 × 287 mm | 11 kg | 5 HP class |
| 20P41AD014RA0NNN | 14 A | 7.5 HP | 5.5 kW | A | 267 × 359 × 287 mm | 11 kg | 7.5 HP class |
| 20P41AD019RA0NNN | 19 A | 10 HP | 7.5 kW | A | 267 × 359 × 287 mm | 11 kg | 10 HP class |
| 20P41AD027RA0NNN | 27 A | 15 HP | 11 kW | A | 267 × 359 × 287 mm | 11 kg | 15 HP class |
The important point is that the first several current ratings can use the same Frame A physical platform.
As motor power increases, the electrical rating changes while the basic mechanical frame remains within the Frame A range.
This makes the family convenient for facilities that operate multiple small DC motors.
For applications requiring more than the 2 HP capacity of the 20P41AD4P1RA0NNN, larger models from the same PowerFlex DC regenerative family can be considered.
| Model | Output Current | Motor Rating | Motor Power | Frame | Input | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 20P41AD129RA0NNN | 129 A | 75 HP | 56 kW | A | 460/480 VAC, 3 PH | Approx. 267 × 359 × 287 mm | Approx. 12 kg |
| 20P41AD167RA0NNN | 167 A | 100 HP | 75 kW | B | 460/480 VAC, 3 PH | Approx. 311 × 388 × 350 mm | Approx. 25.5 kg |
| 20P41AD250RA0NNN | 250 A | 150 HP | 112 kW | B | 460/480 VAC, 3 PH | Approx. 311 × 388 × 350 mm | Approx. 29.5 kg |
| 20P41AD330RA0NNN | 330 A | 200 HP | 149 kW | B | 460/480 VAC, 3 PH | Approx. 311 × 388 × 350 mm | Approx. 32 kg |
| 20P41AD412RA0NNN | 412 A | 250 HP | 187 kW | B | 460/480 VAC, 3 PH | Approx. 311 × 388 × 350 mm | Approx. 32 kg |
These models demonstrate how the PowerFlex DC family scales from compact Frame A units into larger Frame B configurations.
The 129 A unit remains within Frame A, while the 167 A and larger models shown here move into Frame B. The current and motor-power progression is part of the standard PowerFlex DC regenerative selection structure.
The following five models are popular products from other PowerFlex families.
They are useful for comparison, but they should not be treated as direct replacements for the 20P41AD4P1RA0NNN because they are generally designed for AC motor control rather than this specific regenerative DC motor application.
| Model | Product Family | Drive Type | Voltage Class | Approx. Current / Power Class | Typical Motor | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 25B-D017N114 | PowerFlex 525 | AC variable-frequency drive | 480 VAC class | Approx. 17 A / 10 HP class | AC motor | Configuration-dependent | Configuration-dependent |
| 25B-D030N114 | PowerFlex 525 | AC variable-frequency drive | 480 VAC class | Approx. 30 A / 15 HP class | AC motor | Configuration-dependent | Configuration-dependent |
| 20G11ND077AA0NNNNN | PowerFlex 755 | AC drive | 480 VAC class | Approx. 77 A / 50 HP class | AC motor | Configuration-dependent | Configuration-dependent |
| 20G11ND156AA0NNNNN | PowerFlex 755 | AC drive | 480 VAC class | Approx. 156 A / 100 HP class | AC motor | Configuration-dependent | Configuration-dependent |
| 22F-D060N103 | PowerFlex 4M | Compact AC drive | 480 VAC class | Approx. 6 A / 3 HP class | AC motor | Configuration-dependent | Configuration-dependent |
These products are related at the brand and industrial-drive level, but they use different motor-control technologies.
When an existing machine has a DC motor, the same-series PowerFlex DC models are generally the more directly related products to evaluate.
The distinction between DC and AC drive families is important.
The 20P41AD4P1RA0NNN is designed around a DC motor system.
The motor has an armature circuit and a field circuit, and the drive manages these electrical systems as part of the motor-control process.
An AC variable-frequency drive operates differently.
It controls an AC motor by controlling the electrical characteristics supplied to the motor.
Therefore, replacing a DC drive with an AC drive generally involves much more than matching horsepower.
The motor, coupling, feedback device, braking arrangement, control wiring, PLC program, mechanical characteristics, and machine operating sequence may all need to be evaluated.
The most important information for selecting the drive is the motor nameplate.
The following motor information should be checked:
| Motor Parameter | Why It Matters |
|---|---|
| Armature Voltage | Must be compatible with the drive output range |
| Armature Current | Must be within the drive current capability |
| Motor HP | Establishes the general power class |
| Motor kW | Provides metric power reference |
| Rated Speed | Determines operating range |
| Field Voltage | Required for field-supply configuration |
| Field Current | Important for field supply capacity |
| Feedback Type | Determines speed-feedback requirements |
| Duty Cycle | Determines thermal and overload requirements |
| Acceleration Time | Affects required current and torque |
| Deceleration Time | Affects regenerative operation |
| Reversing Requirement | Determines four-quadrant operating requirements |
A motor should not be selected solely because its horsepower appears to match the drive.
The actual armature current is particularly important.
The 20P41AD4P1RA0NNN has an approximate physical envelope of 267 × 359 × 287 mm.
The cabinet designer should allow additional space around the drive for ventilation, cable routing, terminal access, inspection, and maintenance.
The drive should be installed in an appropriate vertical orientation.
Airflow around the unit should not be obstructed.
The cabinet should also be designed to keep the drive within the applicable ambient-temperature range.
Although the 20P41AD4P1RA0NNN is a relatively small DC drive, thermal management remains important.
The drive converts electrical energy and therefore produces heat during operation.
The cabinet should provide adequate airflow and heat dissipation.
When multiple drives are installed in the same enclosure, the combined heat load should be considered.
A cabinet that is physically large enough for the drive may still be thermally unsuitable if heat cannot escape effectively.
The control wiring should be kept organized and separated appropriately from high-current power wiring.
This is particularly important when the system uses analog speed references, feedback signals, or other low-level control signals.
Proper grounding, shielding, cable routing, and termination can help reduce electrical interference.
A clean control-wiring arrangement also makes commissioning and future maintenance easier.
Feedback can be particularly useful when the machine requires accurate speed control.
For example, a small winding machine may need the motor to maintain a stable speed despite changing mechanical load.
A feeder may need consistent material movement.
A roller may need synchronized operation with another machine section.
In these situations, feedback can be incorporated into the overall control architecture.
The actual feedback device should be selected according to the motor and machine requirements.
The 20P41AD4P1RA0NNN can be useful for upgrading older industrial machines that already use small DC motors.
A retrofit can sometimes retain:
The drive itself can then be modernized while maintaining the basic mechanical design.
However, the condition of the existing motor should be checked before installing a replacement drive.
Maintenance should include inspection of the drive enclosure, cooling paths, wiring, terminals, motor connections, field circuit, and feedback system.
The cabinet should be kept free from excessive dust and contamination.
Power connections should be checked according to the applicable maintenance procedures.
The motor should also be inspected.
For a DC motor, brushes, commutator condition, bearings, cooling, insulation, and field windings can all influence the overall reliability of the system.
A healthy drive cannot compensate for a severely deteriorated motor.
The 20P41AD4P1RA0NNN can be considered for:
| Machine Type | Typical Drive Function |
|---|---|
| Small Conveyor | Speed control and controlled starting |
| Feeder | Controlled material feed |
| Roller Drive | Constant or adjustable speed |
| Small Winder | Speed and torque regulation |
| Small Unwinder | Controlled braking |
| Packaging Machine | Roller or feeder control |
| Printing Auxiliary | Roller or feed control |
| Machine Tool | Auxiliary DC motor control |
| Material Handling | Speed and reversing control |
| Process Machinery | Continuous speed regulation |
| Retrofit Machine | Replacement of older DC drive |
| Small Reversing Machine | Four-quadrant operation |
A winding machine may experience changing roll diameter.
As the roll grows, the motor speed and torque requirements change.
The drive can regulate motor operation while the machine controller adjusts the speed or torque reference.
During stopping or deceleration, regenerative operation can help manage the energy associated with the rotating roll.
For a small winding system, the 2 HP capacity can provide a compact control solution when the motor requirements fall within the drive rating.
Unwinding equipment can require controlled braking.
The motor may need to resist the tendency of the roll to accelerate as material is pulled away.
The four-quadrant regenerative architecture provides a means of controlling this condition.
This makes the drive suitable for small unwinding applications where controlled torque is required.
Some machines need to operate in both directions.
Examples include certain feeders, rollers, positioning systems, machine tools, and handling mechanisms.
Four-quadrant operation allows the drive to transition between forward and reverse operating conditions while managing the associated motoring and regenerative states.
This provides more flexibility than a basic one-direction DC controller.
The 20P41AD4P1RA0NNN is the smallest 460/480 VAC regenerative model in the standard selection shown for this family.
The progression begins at approximately:
4.1 A → 6 A → 10 A → 14 A → 19 A → 27 A → 35 A → 45 A → 52 A → 73 A → 86 A → 100 A → 129 A → 167 A → 207 A → 250 A → 330 A → 412 A → 495 A → 667 A and beyond.
This provides a very broad range of current and motor-power ratings.
The family therefore covers applications from relatively small industrial DC motors through very large high-power DC motor systems.
| Model | Output Current | HP Class | kW Class | Frame |
|---|---|---|---|---|
| 20P41AD4P1RA0NNN | 4.1 A | 2 HP | 1.5 kW | A |
| 20P41AD6P0RA0NNN | 6 A | 3 HP | 2.2 kW | A |
| 20P41AD010RA0NNN | 10 A | 5 HP | 3.7 kW | A |
| 20P41AD014RA0NNN | 14 A | 7.5 HP | 5.5 kW | A |
| 20P41AD019RA0NNN | 19 A | 10 HP | 7.5 kW | A |
| 20P41AD027RA0NNN | 27 A | 15 HP | 11 kW | A |
| 20P41AD035RA0NNN | 35 A | 20 HP | 15 kW | A |
| 20P41AD045RA0NNN | 45 A | 25 HP | 18.5 kW | A |
| 20P41AD052RA0NNN | 52 A | 30 HP | 22 kW | A |
| 20P41AD073RA0NNN | 73 A | 40 HP | 30 kW | A |
| 20P41AD086RA0NNN | 86 A | 50 HP | 37 kW | A |
| 20P41AD100RA0NNN | 100 A | 60 HP | 45 kW | A |
| 20P41AD129RA0NNN | 129 A | 75 HP | 56 kW | A |
| 20P41AD167RA0NNN | 167 A | 100 HP | 75 kW | B |
| 20P41AD207RA0NNN | 207 A | 125 HP | 93 kW | B |
| 20P41AD250RA0NNN | 250 A | 150 HP | 112 kW | B |
| 20P41AD330RA0NNN | 330 A | 200 HP | 149 kW | B |
| 20P41AD412RA0NNN | 412 A | 250 HP | 187 kW | B |
| 20P41AD495RA0NNN | 495 A | 300 HP | 224 kW | C |
| 20P41AD667RA0NNN | 667 A | 400 HP | 298 kW | C |
The model progression illustrates how the family scales from the small 4.1 A model to much larger industrial regenerative drives.
| Specification | Details |
|---|---|
| Brand | Allen-Bradley |
| Product Series | PowerFlex DC |
| Product Family | PowerFlex Digital DC Drive |
| Model / Catalog Number | 20P41AD4P1RA0NNN |
| Product Category | Regenerative DC Drive |
| Input Voltage | 460 VAC nominal / 480 VAC class |
| Input Frequency | 50/60 Hz |
| Input Phase | 3-phase |
| Input Current | Approx. 3.3 A |
| Input Type | 6-pulse |
| DC Output | Up to approximately 500 VDC |
| Continuous Output Current | 4.1 A |
| 1-Minute Overload | 6.2 A |
| 3-Second Overload | 8.2 A |
| Motor Rating | 2 HP |
| Motor Power | Approx. 1.5 kW |
| Operation | Four-quadrant regenerative |
| Frame | A |
| Field Supply | Single-phase regulated |
| Field Input | 460 VAC, 50/60 Hz |
| Field Output | Up to approximately 360 VDC |
| Regulator Power | 115/230 VAC, 1-phase |
| I/O Supply | 24 VDC standard |
| Enclosure | IP20 |
| Enclosure Type | NEMA/UL Type Open |
| Conformal Coating | Yes |
| HIM | Blank plate / no HIM |
| Communication Module | None in stated configuration |
| Approx. Width | 267 mm |
| Approx. Height | 359 mm |
| Approx. Depth | 287 mm |
| Approx. Dimensions | 267 × 359 × 287 mm |
| Drive Weight | Approx. 11 kg |
| Packaged Weight | Approx. 13 kg |
| Main Application | Industrial DC motor control |
| Typical Motor Class | 2 HP DC motor |
| Braking | Regenerative |
| Control Type | Digital DC motor control |
| Feature | Practical Benefit |
|---|---|
| 4.1 A output | Suitable for small industrial DC motors |
| 2 HP rating | Supports approximately 1.5 kW motor applications |
| Four-quadrant control | Supports forward/reverse motoring and regeneration |
| Regenerative braking | Provides controlled deceleration capability |
| 460/480 VAC input | Fits common industrial three-phase power systems |
| 6-pulse input | Established industrial AC/DC conversion architecture |
| Frame A | Compact mechanical platform |
| IP20 enclosure | Suitable for protected cabinet installation |
| Conformal coating | Additional electronic protection |
| Regulated field supply | Supports controlled DC motor field operation |
| 24 VDC I/O | Convenient integration with industrial control systems |
| Overload capability | Provides short-duration current capacity |
| PowerFlex DC family | Consistent platform across a broad motor-power range |
The Allen-Bradley 20P41AD4P1RA0NNN PowerFlex DC Drive is a compact 480 VAC-class regenerative DC drive designed for industrial DC motor applications.
The unit provides 4.1 A DC output current and is rated for approximately 2 HP / 1.5 kW motor applications.
It uses a three-phase, 460/480 VAC-class input, 6-pulse power conversion, four-quadrant regenerative operation, and a regulated single-phase field supply.
The drive is housed in a Frame A, IP20 / NEMA/UL Type Open enclosure with conformal-coated electronics.
The approximate physical dimensions are 267 × 359 × 287 mm, with a drive weight of approximately 11 kg.
The combination of compact dimensions, regenerative operation, field regulation, overload capability, and PowerFlex DC architecture makes this model suitable for small industrial conveyors, feeders, winding and unwinding systems, rollers, packaging equipment, machine-tool auxiliary drives, material-handling systems, and DC motor retrofit projects.
Before purchasing or replacing a 20P41AD4P1RA0NNN, the following items should be checked:
| Check Item | Required Information |
|---|---|
| Existing Drive | Existing catalog number |
| Motor | DC motor model and nameplate |
| Armature Voltage | Motor rated armature voltage |
| Armature Current | Motor rated armature current |
| Motor Power | HP / kW |
| Field Voltage | Required field voltage |
| Field Current | Required field current |
| Motor Speed | Rated and maximum speed |
| Feedback | Encoder, tachometer, or other feedback |
| Acceleration | Required acceleration time |
| Deceleration | Required deceleration time |
| Reversing | Required or not required |
| Regeneration | Required or not required |
| Supply | Actual AC input voltage |
| Cabinet | Available mounting space |
| Cooling | Cabinet ventilation capability |
| Control | PLC or external control system |
| Wiring | Existing power and control wiring |
| Environment | Temperature, dust, humidity, vibration |
The Allen-Bradley 20P41AD4P1RA0NNN is a compact PowerFlex DC regenerative drive designed for industrial DC motor applications in the 2 HP / 1.5 kW class.
Its principal electrical rating is 4.1 A DC output current, with approximately 500 VDC maximum output capability, a 460 VAC / 480 VAC-class three-phase input, and a 6-pulse input architecture.
The drive supports four-quadrant regenerative operation, allowing controlled forward and reverse motoring as well as regenerative conditions.
Its Frame A mechanical construction provides approximate dimensions of 267 mm × 359 mm × 287 mm, while the drive weight is approximately 11 kg.
The product uses an IP20 / NEMA/UL Type Open enclosure and is configured with conformal coating, a blank HIM plate, and no communication module in the stated catalog configuration.
The regulated field-supply arrangement is another important characteristic because it allows the drive to manage the DC motor field as part of the overall drive system.
For small industrial machines, the model can be used for controlled conveyors, feeders, rollers, winding and unwinding equipment, packaging machinery, material handling, machine-tool auxiliary functions, and DC motor retrofit applications.
The closest products for a direct same-family comparison are the 20P41AD6P0RA0NNN, 20P41AD010RA0NNN, 20P41AD014RA0NNN, 20P41AD019RA0NNN, and 20P41AD027RA0NNN.
These models provide progressively higher current and motor-power ratings while remaining within the smaller Frame A section of the PowerFlex DC family.
For substantially larger DC motors, the same family continues into 129 A, 167 A, 207 A, 250 A, 330 A, 412 A, 495 A, 667 A, and higher current configurations.
The 20P41AD4P1RA0NNN is therefore best understood as a compact, 4.1 A, 2 HP, four-quadrant regenerative DC drive for industrial motor-control applications, especially where controlled speed, controlled braking, reversing, and DC motor field regulation are required.