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The Allen-Bradley 20P41AD086RA0NNN is a PowerFlex DC digital drive designed for industrial DC motor control applications where stable speed regulation, controlled torque, regenerative braking, and four-quadrant operation are required.
It is rated at 37 kW / 50 HP with an 86 A DC output current rating. The drive is designed for a 460 V AC nominal, three-phase input system, within the 380–480 V AC voltage class.
The 20P41AD086RA0NNN is a regenerative drive, which means it can actively control both motoring and regenerative braking conditions. This makes it particularly useful for machinery with frequent acceleration and deceleration, reversing operation, high inertia, overhauling loads, or continuous regeneration.
The product belongs to the PowerFlex DC family, Series 20P, and uses a Frame A construction. Its standard configuration includes an IP20 / NEMA/UL Type Open enclosure, conformal-coated electronics, a blank plate in place of a HIM, and no communication module in the standard catalog configuration.
| Parameter | Specification |
|---|---|
| Model | 20P41AD086RA0NNN |
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Product Series | PowerFlex DC |
| Series Number | 20P |
| Product Type | Digital DC Drive |
| Drive Configuration | Regenerative |
| Motor Operation | Four-Quadrant Operation |
| Nominal Input Voltage | 460 V AC |
| Input Voltage Class | 380–480 V AC |
| Input Phase | Three Phase |
| Input Frequency | 50/60 Hz |
| Input Type | 6 Pulse |
| Rated Output Power | 37 kW |
| Horsepower Rating | 50 HP |
| DC Output Current | 86 A |
| Field Supply | Single-Phase Regulated |
| Enclosure Rating | IP20 |
| Enclosure Type | NEMA/UL Type Open |
| Conformal Coating | Yes |
| Frame Size | Frame A |
| HIM | No HIM / Blank Plate |
| Communication Module | None in Standard Configuration |
| Feedback Capability | Encoder / DC Tachometer Applications |
| Overload Capability | 150% for 60 seconds / 200% for 3 seconds |
| Approx. Dimensions H × W × D | 267 × 359 × 287 mm |
| Approx. Dimensions H × W × D | 10.5 × 14.1 × 11.3 in |
| Approx. Drive Weight | 11.5 kg |
| Approx. Packaged Weight | 13.5 kg |
| Installation | Vertical Cabinet Mounting |
| Cooling | Air-Cooled Cabinet Installation |
The 86 A rating is the main electrical sizing parameter of this model. For DC motor applications, the actual motor armature current should be checked carefully instead of selecting the drive from horsepower alone.
| Item | Details |
|---|---|
| Model | 20P41AD086RA0NNN |
| Brand | Allen-Bradley |
| Family | PowerFlex |
| Series | PowerFlex DC |
| Series Number | 20P |
| Drive Type | DC Digital Drive |
| Configuration | Regenerative |
| Rated Motor Capacity | 50 HP |
| Rated Power | 37 kW |
| Rated DC Current | 86 A |
| Voltage Class | 460 V AC |
| Input | 3 Phase |
| Application Type | Industrial DC Motor Control |
| Frame | A |
| Enclosure | IP20 / NEMA/UL Type Open |
The catalog number identifies a specific regenerative DC drive configuration rather than a general-purpose AC variable-frequency drive.
This distinction is important because the PowerFlex DC family is designed around the control requirements of DC motors, including armature control and regulated field operation.
The 20P41AD086RA0NNN is intended for industrial machinery that uses a medium-power DC motor and requires more sophisticated control than a basic DC motor starter can provide.
The drive regulates motor operation electronically and can control speed, current, acceleration, deceleration, braking, and field operation according to the configured control strategy.
Its 50 HP / 37 kW rating places it in a useful medium-power range for industrial production equipment.
The 86 A armature current rating gives the drive the capacity required by many 50 HP DC motor installations, while the regenerative architecture allows the motor to transition between motoring and braking conditions without relying solely on mechanical braking.
The design is particularly suitable for machines that operate continuously or cyclically and need repeatable speed control.
The product belongs to the:
PowerFlex DC Series
and uses the:
20P Series
The 20P family is designed for industrial DC motor control and includes both regenerative and non-regenerative configurations across a broad range of power ratings.
For the 380–480 V three-phase regenerative family, the capacity range extends from small DC motor applications to several hundred horsepower.
The 20P41AD086RA0NNN is positioned at:
37 kW / 50 HP / 86 A
within this product family.
The drive is intended for a 460 V AC nominal three-phase supply and belongs to the 380–480 V AC voltage class.
This makes it suitable for industrial electrical systems using three-phase medium-voltage-class low-voltage distribution.
The incoming electrical system should be checked for voltage stability, available short-circuit current, grounding arrangement, protection, disconnect requirements, and other installation-specific requirements before the drive is installed.
The input is:
Three Phase
Three-phase operation provides the electrical power required by the drive’s power-conversion section and is appropriate for industrial 50 HP motor installations.
The 20P41AD086RA0NNN uses a:
6-Pulse Input
This is a common industrial power-conversion configuration for converting three-phase AC input power into controlled DC power.
The rated DC output current is:
86 A
For a DC motor application, armature current is a particularly important selection parameter.
The drive should be selected based on the motor’s actual armature voltage and current requirements, operating duty, acceleration requirements, load inertia, and regenerative requirements.
The rated motor capacity is:
37 kW / 50 HP
This makes the model suitable for medium-power DC motors used in industrial production equipment.
One of the most important characteristics of the 20P41AD086RA0NNN is its four-quadrant regenerative operation.
Four-quadrant operation allows the drive to control the motor in both directions and manage both motoring and regenerative braking conditions.
In practical terms, this means the motor can operate in:
This operating capability is valuable in machines where the motor must repeatedly accelerate, decelerate, reverse, or control an overhauling load.
The regenerative configuration is especially useful for applications with substantial mechanical energy during deceleration.
When a high-inertia machine is decelerated, the motor can temporarily operate as a generator.
The regenerative drive architecture is designed to manage this operating condition as part of the drive’s normal control strategy.
This can be advantageous for:
The 20P41AD086RA0NNN provides a single-phase regulated field supply.
DC motor performance depends not only on armature control but also on the motor field.
Controlled field operation allows the drive to manage the motor field according to the application requirements.
This can be important for:
The PowerFlex DC drive family provides substantial short-term overload capability.
| Overload Condition | Capacity |
|---|---|
| Normal Continuous Rating | 86 A |
| 150% Overload | 129 A for 60 seconds |
| 200% Overload | 172 A for 3 seconds |
The overload values are short-duration ratings and should not be treated as continuous operating currents.
Actual application sizing should consider the motor’s current, acceleration profile, duty cycle, ambient temperature, cabinet temperature, and load characteristics.
The standard enclosure is:
IP20 / NEMA/UL Type Open
This type of construction is intended for installation within a suitable electrical cabinet or protected control enclosure.
The drive should not normally be treated as a standalone outdoor or washdown-rated device.
The cabinet should provide appropriate protection from:
The standard configuration includes conformal coating.
This treatment provides additional protection to electronic assemblies and can be beneficial in industrial environments where humidity, dust, or other contaminants may be present.
Conformal coating does not eliminate the need for a properly designed enclosure.
Correct cabinet design, ventilation, grounding, environmental control, and maintenance remain important.
The 20P41AD086RA0NNN uses Frame A construction.
The approximate physical size is:
267 × 359 × 287 mm
The approximate dimensions are:
The approximate drive weight is:
11.5 kg
The approximate packaged weight is:
13.5 kg
| Physical Parameter | Specification |
|---|---|
| Model | 20P41AD086RA0NNN |
| Frame | Frame A |
| Height | 267 mm |
| Width | 359 mm |
| Depth | 287 mm |
| Height | 10.5 in |
| Width | 14.1 in |
| Depth | 11.3 in |
| Drive Weight | 11.5 kg |
| Packaged Weight | 13.5 kg |
| Mounting Position | Vertical |
| Installation | Control Cabinet |
The dimensions should be used as equipment planning values. The actual cabinet layout also needs additional space for incoming power cables, motor cables, field wiring, control wiring, airflow, service access, and other components.
The 50 HP rating makes this model suitable for medium-power industrial DC motors.
It provides a useful capacity point between the 40 HP and 60 HP models in the same 380–480 V regenerative family.
The 86 A rating provides substantial current capacity for industrial DC motor applications.
This is particularly important when the motor experiences high starting torque or temporary load peaks.
Four-quadrant operation allows the drive to control both motor direction and regenerative braking.
This is a significant advantage for reversible machinery and high-inertia equipment.
The regenerative architecture is useful where mechanical energy must be controlled during deceleration.
It is particularly relevant to applications with frequent stopping, reversing, or overhauling loads.
The integrated regulated field supply provides controlled operation of the DC motor field.
This can support more flexible speed-control strategies than a basic armature-only controller.
The conformal-coated construction provides additional protection for electronic components in demanding industrial environments.
For its 50 HP capacity, the Frame A package provides a relatively compact installation footprint.
This can be helpful when upgrading older equipment where cabinet space is limited.
A major practical advantage of this type of drive is that it can be used in applications where the existing DC motor and mechanical equipment are still suitable.
This can reduce the scope of a modernization project compared with replacing the complete motor and mechanical transmission system.
The drive can be used for winding applications requiring controlled motor speed and regenerative operation.
Winding systems often experience changing mechanical conditions as the roll diameter changes.
Controlled speed and torque are therefore important.
Unwinding equipment can generate regenerative energy because the motor may need to provide controlled tension while the material is being pulled from a roll.
Four-quadrant operation can be useful for these operating conditions.
DC drives have historically been used extensively in paper-processing machinery.
Potential applications include:
Printing equipment can require stable and repeatable motor speed.
The drive can be used for applications such as:
The drive can be applied to industrial metal-processing equipment where DC motors remain in service.
Potential applications include:
Machines with large rotating masses can require considerable braking torque during deceleration.
The regenerative architecture of the 20P41AD086RA0NNN is well suited to this type of operating profile.
Machines that repeatedly change direction can benefit from four-quadrant operation.
Typical examples include certain roll-processing and material-processing machines.
The model is also relevant to modernization projects where an older DC controller needs to be replaced while the existing DC motor and mechanical system remain in service.
| Application | Speed Control | Regenerative Operation | Four-Quadrant Operation | Typical Suitability |
|---|---|---|---|---|
| Winder | Required | Required | Useful | High |
| Unwinder | Required | Very Important | Very Important | High |
| Paper Machine | Required | Application Dependent | Useful | High |
| Printing Machine | Required | Useful | Useful | High |
| Drawing Machine | Required | Important | Important | High |
| Roll Drive | Required | Important | Important | High |
| Metal Processing | Required | Application Dependent | Useful | High |
| High-Inertia Machine | Required | Very Important | Important | High |
| Material Handling | Required | Useful | Useful | Suitable |
| Extrusion Equipment | Required | Application Dependent | Application Dependent | Suitable |
| Existing DC Motor Retrofit | Required | Application Dependent | Application Dependent | High |
The following models are closely related members of the PowerFlex DC Series 20P, using the same 380–480 V three-phase regenerative family.
| Model | Rated Power | HP | DC Current | Input Class | Configuration | Frame |
|---|---|---|---|---|---|---|
| 20P41AD045RA0NNN | 18.5 kW | 25 HP | 45 A | 380–480 V AC | Regenerative | A |
| 20P41AD052RA0NNN | 22 kW | 30 HP | 52 A | 380–480 V AC | Regenerative | A |
| 20P41AD073RA0NNN | 30 kW | 40 HP | 73 A | 380–480 V AC | Regenerative | A |
| 20P41AD100RA0NNN | 45 kW | 60 HP | 100 A | 380–480 V AC | Regenerative | A |
| 20P41AD129RA0NNN | 56 kW | 75 HP | 129 A | 380–480 V AC | Regenerative | A |
These models provide a convenient comparison range around the 50 HP / 86 A reference model.
| Model | Power | Horsepower | DC Current | Relative Capacity |
|---|---|---|---|---|
| 20P41AD045RA0NNN | 18.5 kW | 25 HP | 45 A | Lower |
| 20P41AD052RA0NNN | 22 kW | 30 HP | 52 A | Lower |
| 20P41AD073RA0NNN | 30 kW | 40 HP | 73 A | Lower |
| 20P41AD086RA0NNN | 37 kW | 50 HP | 86 A | Reference |
| 20P41AD100RA0NNN | 45 kW | 60 HP | 100 A | Higher |
| 20P41AD129RA0NNN | 56 kW | 75 HP | 129 A | Higher |
The 73 A model is the lower-capacity neighbor commonly associated with a 40 HP motor.
The 100 A model is the next larger capacity point commonly associated with a 60 HP motor.
The 86 A version therefore occupies the 50 HP / 37 kW position between these two ratings.
Below are five other commonly encountered Allen-Bradley PowerFlex models that can be useful when comparing DC and AC drive requirements.
These are related products rather than direct replacements for the 20P41AD086RA0NNN because the 20P is a DC drive while these models are primarily intended for AC motor control.
| Model | Product Family | Typical Power Class | Voltage Class | Current Class | Enclosure | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 25B-D4P0N104 | PowerFlex 525 | 1.5 kW / 2 HP | 380–480 V AC | 4 A | IP20 | 72 × 172 × 152 mm | 1.6 kg |
| 22F-D2P5N103 | PowerFlex 4M | 0.75 kW / 1 HP | 380–480 V AC | 2.5 A | IP20 | 72 × 174 × 59 mm | 1.6 kg |
| 20F1ANF1P7AA0NNNNN | PowerFlex 753 | Small-frame AC Drive | Low-Voltage AC | 1.7 A class | IP20 class | Frame-dependent | Approx. 6 kg |
| 20G11NC022JA0NNNNN | PowerFlex 755 | 11–15 kW class | 380–400 V AC | 22 A class | Frame-dependent | Frame-dependent | Approx. 12 kg |
| 20G11GD011JA0NNNNN | PowerFlex 755 | 5.5 kW class | 480 V AC | 11 A class | Frame-dependent | Frame-dependent | Approx. 8 kg |
The five models above cover several different PowerFlex product categories, from compact drives through higher-performance industrial AC drives.
The most important difference when comparing the 20P41AD086RA0NNN with other PowerFlex products is the motor technology.
| Feature | 20P41AD086RA0NNN | Typical PowerFlex AC Drive |
|---|---|---|
| Motor Type | DC Motor | AC Motor |
| Product Family | PowerFlex DC | PowerFlex AC |
| Output Type | Controlled DC Armature | Variable-Frequency AC |
| Field Control | Regulated DC Field | Generally Not Applicable |
| Regenerative Capability | Integrated Regenerative Configuration | Depends on Model / Configuration |
| Four-Quadrant DC Operation | Yes | Application Dependent |
| Typical Retrofit | Existing DC Motor | AC Motor System |
| Main Selection Parameter | Armature Current | AC Output Current |
| Frequency Control | Not the Primary Principle | Fundamental Control Method |
| Typical Application | Existing Industrial DC Machinery | Modern AC Motor Machinery |
This distinction should be considered before choosing a replacement model.
A DC motor installation should not automatically be replaced with an AC drive simply because both products are described as motor drives.
The motor type, mechanical arrangement, feedback system, field circuit, load characteristics, and control requirements must all be evaluated.
Physical dimensions can become especially important when replacing an older drive inside an existing cabinet.
| Model | Product Family | Approx. Height | Approx. Width | Approx. Depth | Approx. Weight |
|---|---|---|---|---|---|
| 20P41AD045RA0NNN | PowerFlex DC | Frame-dependent | Frame A | Frame A | Frame-dependent |
| 20P41AD052RA0NNN | PowerFlex DC | Frame-dependent | Frame A | Frame A | Frame-dependent |
| 20P41AD073RA0NNN | PowerFlex DC | Frame-dependent | Frame A | Frame A | Approx. 11.5 kg class |
| 20P41AD086RA0NNN | PowerFlex DC | 267 mm | 359 mm | 287 mm | 11.5 kg |
| 20P41AD100RA0NNN | PowerFlex DC | Frame-dependent | Frame A | Frame A | Frame-dependent |
For the 20P41AD086RA0NNN specifically, the approximately 11.5 kg drive weight should be considered when designing the mounting panel or replacing an older drive.
The 20P41AD086RA0NNN is normally installed inside a control cabinet because of its IP20 / NEMA/UL Type Open construction.
The cabinet should provide enough room for:
The drive should generally be installed vertically.
Adequate clearance around the equipment is important because the drive generates heat during normal operation.
A 37 kW / 50 HP drive can generate a significant amount of heat during continuous operation.
Cabinet thermal design should therefore consider:
If several drives are installed in the same enclosure, their combined heat generation must be considered rather than treating each drive independently.
The PowerFlex DC architecture supports feedback-based control arrangements.
Depending on the application, feedback may include a:
Feedback can improve speed regulation when the motor load changes significantly.
This can be useful for applications such as:
For a 50 HP DC motor, the three most relevant capacity points in the same family can be compared as follows:
| Model | Rated Power | Horsepower | DC Current | Typical Position |
|---|---|---|---|---|
| 20P41AD073RA0NNN | 30 kW | 40 HP | 73 A | Smaller capacity |
| 20P41AD086RA0NNN | 37 kW | 50 HP | 86 A | 50 HP class |
| 20P41AD100RA0NNN | 45 kW | 60 HP | 100 A | Larger capacity |
This comparison is useful when evaluating whether an existing drive is undersized, appropriately sized, or oversized for a particular DC motor.
However, final drive selection should be based on the actual motor nameplate and operating conditions rather than horsepower alone.
Before replacing an existing DC drive with the 20P41AD086RA0NNN, the following motor information should be recorded.
| Motor Parameter | Why It Matters |
|---|---|
| Armature Voltage | Must match the drive’s allowable armature output range |
| Armature Current | Critical for drive current sizing |
| Field Voltage | Must match the regulated field supply requirements |
| Field Current | Important for field supply sizing |
| Motor HP | Provides basic power reference |
| Base Speed | Important for speed regulation |
| Maximum Speed | Important for field weakening operation |
| Feedback Device | Determines speed feedback configuration |
| Duty Cycle | Determines thermal and overload requirements |
| Acceleration Time | Influences peak current demand |
| Deceleration Time | Influences regenerative duty |
| Load Inertia | Important for acceleration and braking |
| Reversal Frequency | Important for four-quadrant operation |
This information is particularly important for retrofit projects.
| Feature | Practical Advantage |
|---|---|
| 37 kW / 50 HP | Suitable for medium-power DC motor systems |
| 86 A Output | Provides substantial armature-current capacity |
| Regenerative Configuration | Handles braking energy within the drive system |
| Four-Quadrant Operation | Supports forward/reverse motoring and regeneration |
| Regulated Field Supply | Provides controlled DC motor field operation |
| 6-Pulse Input | Conventional industrial three-phase power architecture |
| IP20 Construction | Suitable for protected cabinet installation |
| Conformal Coating | Additional protection for electronic assemblies |
| Frame A | Compact construction for this rating |
| Digital Drive Control | Supports controlled speed and current regulation |
| Feedback Capability | Suitable for applications requiring precise speed regulation |
| DC Retrofit Capability | Useful for modernization of existing DC machinery |
The combination of regenerative operation and speed regulation is particularly useful for roll-based applications.
The drive can manage acceleration, deceleration, and controlled braking while maintaining the required motor operating conditions.
Large rotating masses can require considerable torque during acceleration and braking.
The 86 A drive rating combined with regenerative operation provides a suitable platform for these types of applications when the motor and load characteristics are properly matched.
Machines that frequently reverse direction can benefit from four-quadrant control.
This reduces the need to treat reversing and braking as separate external functions.
For an existing DC motor installation, retaining the motor while replacing the drive can sometimes reduce mechanical modifications.
The 20P family is specifically suited to this type of DC control architecture.
| Model | Power | HP | DC Current | Voltage Class | Phase | Regenerative | Frame |
|---|---|---|---|---|---|---|---|
| 20P41AD045RA0NNN | 18.5 kW | 25 HP | 45 A | 380–480 V AC | 3 Phase | Yes | A |
| 20P41AD052RA0NNN | 22 kW | 30 HP | 52 A | 380–480 V AC | 3 Phase | Yes | A |
| 20P41AD073RA0NNN | 30 kW | 40 HP | 73 A | 380–480 V AC | 3 Phase | Yes | A |
| 20P41AD100RA0NNN | 45 kW | 60 HP | 100 A | 380–480 V AC | 3 Phase | Yes | A |
| 20P41AD129RA0NNN | 56 kW | 75 HP | 129 A | 380–480 V AC | 3 Phase | Yes | A |
These models are useful when building a product range around the 20P41AD086RA0NNN.
For an industrial equipment supplier or maintenance department, a practical group of related 20P models can be organized around motor capacity.
| Motor Range | Example Model | Power | Current |
|---|---|---|---|
| 25 HP | 20P41AD045RA0NNN | 18.5 kW | 45 A |
| 30 HP | 20P41AD052RA0NNN | 22 kW | 52 A |
| 40 HP | 20P41AD073RA0NNN | 30 kW | 73 A |
| 50 HP | 20P41AD086RA0NNN | 37 kW | 86 A |
| 60 HP | 20P41AD100RA0NNN | 45 kW | 100 A |
| 75 HP | 20P41AD129RA0NNN | 56 kW | 129 A |
| 100 HP | 20P41AD167RA0NNN | 75 kW | 167 A |
This provides a clear progression of drive capacity for different DC motor sizes.
The drive should be installed by personnel familiar with industrial electrical equipment and DC motor control systems.
Particular attention should be given to:
The electrical installation should be designed around the complete machine rather than the drive alone.
The 20P41AD086RA0NNN can be summarized as a medium-power industrial regenerative DC drive with the following core characteristics:
50 HP
37 kW
86 A DC output
460 V AC nominal input
380–480 V AC class
Three-phase input
6-pulse input
Four-quadrant regenerative operation
Single-phase regulated field supply
IP20 / NEMA/UL Type Open
Conformal-coated electronics
Frame A
Approx. 11.5 kg drive weight
Approx. 267 × 359 × 287 mm physical size
The Allen-Bradley 20P41AD086RA0NNN is a PowerFlex DC Series 20P regenerative digital DC drive designed for industrial applications requiring controlled operation of a 50 HP / 37 kW DC motor.
Its 86 A output-current rating makes it suitable for medium-power DC motor systems, while its four-quadrant regenerative architecture provides the operating capability required by machinery with frequent acceleration, deceleration, reversing, braking, or overhauling loads.
The regulated field supply provides an additional level of control over the DC motor field, while the digital drive architecture supports precise motor control functions.
The IP20 / NEMA/UL Type Open enclosure, conformal coating, and Frame A construction make the product suitable for installation inside industrial control cabinets.
For physical planning, the drive is approximately 267 × 359 × 287 mm and weighs approximately 11.5 kg, with an approximate packaged weight of 13.5 kg.
The closest same-series capacity options include the 20P41AD073RA0NNN, 20P41AD100RA0NNN, and other 20P regenerative models covering a broad range of DC motor ratings.
The five related same-brand models listed above provide alternatives for applications where an AC motor drive is required rather than a DC motor drive.
For an existing 50 HP DC motor system, the most important selection points remain the motor’s armature voltage, armature current, field voltage, field current, base speed, maximum speed, feedback method, load inertia, acceleration/deceleration requirements, and regenerative duty. These parameters determine whether the 20P41AD086RA0NNN is properly matched to the complete machine.