• Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive
1. Product Overview The Allen-Bradley 20P41AD412RA0NNN is a high-power regenerative DC drive belonging to the PowerFlex DC series. It is designed for large industrial DC motor applications where high ar……
Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive
  • Allen Bradley
  • 20P41AD412RA0NNN
  • PowerFlex DC Drive
  • USA
  • 311 × 388 × 350 mm
  • 32kg
  • Xiamen, China
  • New & In Stock
  • T/T, PayPal, Western Union
  • 1 Year
  • 1-3 Working Days
  • DHL, UPS, TNT, FedEx and EMS.
  • 24-Hour Service
  • COO
  • 5

Our advantage

Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive

Global Logistics

We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive

Brand new and original

Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive

24-hour service

We provide 7*24 hours service to our customers. We will be there whenever you need us.

Allen Bradley 20P41AD412RA0NNN PowerFlex DC Drive

Price advantage

All our products are priced very favorably because we have our own warehouse and supply.


Company Information
E-mail [email protected]
Mobile +8615980777398
Whatsapp +8615980777398
WeChat 15980777398

1. Product Overview

The Allen-Bradley 20P41AD412RA0NNN is a high-power regenerative DC drive belonging to the PowerFlex DC series. It is designed for large industrial DC motor applications where high armature current, controlled speed, regenerative braking, reversing operation, and reliable integration with an existing machine-control system are required.

The drive is rated for 480 VAC, three-phase input, with a 412 A output-current rating and a 250 HP motor rating, equivalent to approximately 187 kW. It uses a 6-pulse input configuration and supports four-quadrant regenerative operation.

The 20P41AD412RA0NNN uses a Frame B mechanical configuration and an IP20, NEMA/UL Type Open enclosure with conformal coating. The specified catalog configuration includes a blank plate in place of a HIM and does not include a communication module as standard.

This model is positioned in the higher-current section of the 460/480 V regenerative PowerFlex DC family. Within the same voltage class, the range progresses through ratings such as 250 A, 330 A, 412 A, 495 A, 667 A and larger configurations. The 412 A model therefore represents a substantial high-power DC motor-control solution for machinery above the 200 HP class.

2. Brand and Product Series

Item Specification
Brand Allen-Bradley
Product Series PowerFlex DC
Product Type Regenerative DC Drive
Model / Catalog Number 20P41AD412RA0NNN
Drive Category High-Power DC Motor Drive
Input Voltage Class 460/480 VAC
Nominal Input 480 VAC
Input Phase 3 Phase
Input Type 6 Pulse
Output Current 412 A
Motor Power Rating 250 HP
Motor Power Rating Approximately 187 kW
Motor Operation Four-Quadrant / Regenerative
Frame Size Frame B
Field Supply Single-Phase Regulated
Enclosure IP20, NEMA/UL Type Open
Conformal Coating Yes
HIM No HIM / Blank Plate
Communication Module None as standard
Typical Installation Industrial control cabinet

The brand is Allen-Bradley, and the product belongs to the PowerFlex DC series.

The PowerFlex DC family is designed specifically for DC motor control and includes both regenerative and non-regenerative drive configurations across a broad range of voltage, current, and motor-power ratings. The 20P41AD412RA0NNN is a regenerative 460/480 V three-phase model.

3. Main Technical Parameters

Parameter Specification
Model / Catalog Number 20P41AD412RA0NNN
Brand Allen-Bradley
Series PowerFlex DC
Product Type Regenerative DC Drive
Input Voltage 480 VAC
Input Phase 3 Phase
Input Type 6 Pulse
Output Current 412 A
Motor Rating 250 HP
Motor Rating Approximately 187 kW
Motor Operation Four-Quadrant / Regenerative
Field Supply Single-Phase Regulated
Frame Size Frame B
Enclosure Rating IP20
Enclosure Type NEMA/UL Type Open
Conformal Coating Yes
HIM Configuration Blank Plate / No HIM
Communication Module None as standard
Feedback DC Tachometer / Encoder Capable
Digital I/O Up to 12 digital inputs/outputs
Analog Inputs Up to 3
Analog Outputs Up to 4
Approximate Dimensions H × W × D 311 × 388 × 350 mm
Approximate Weight 32 kg
Installation Industrial control cabinet
Main Application High-power DC motor control
Regeneration Yes
Motor Type Compatible DC motor systems

The basic product configuration identifies the 20P41AD412RA0NNN as a 480 VAC, three-phase, 412 A, 250 HP PowerFlex DC drive with six-pulse input, Frame B construction, regulated single-phase field supply, and four-quadrant regenerative operation.

The commonly specified physical dimensions are approximately 311 × 388 × 350 mm, and the approximate product weight is 32 kg.

4. 412 A Output Current

The defining electrical characteristic of the 20P41AD412RA0NNN is its 412 A output-current rating.

This places the drive firmly in the high-current range of the PowerFlex DC product family.

A 412 A drive is intended for large DC motor installations where current requirements exceed the capacity of smaller models such as the 207 A, 250 A, and 330 A versions.

The current rating is particularly important in applications where the motor must provide high torque during acceleration or sustain a substantial load for long periods.

When selecting the drive, however, the motor’s actual armature current should always be checked rather than selecting the drive based only on horsepower.

5. 250 HP Motor Rating

The 20P41AD412RA0NNN is rated for a 250 HP motor, corresponding to approximately 187 kW.

A 250 HP DC motor is typically associated with large industrial machinery.

Applications at this power level may include heavy material processing, large winding and unwinding systems, metal-processing equipment, large conveyors, paper machinery, finishing lines, high-inertia machinery, and other production equipment.

The 250 HP rating should be considered together with:

  • Motor armature voltage
  • Motor armature current
  • Motor field voltage
  • Motor field current
  • Motor base speed
  • Maximum motor speed
  • Feedback device
  • Continuous torque
  • Peak torque
  • Acceleration requirements
  • Deceleration requirements
  • Regenerative requirements
  • Duty cycle

6. 480 VAC Three-Phase Input

The 20P41AD412RA0NNN uses a 480 VAC, three-phase input with a 6-pulse input architecture.

This makes it suitable for industrial electrical systems based around conventional three-phase 460/480 V distribution.

The input section converts the incoming AC supply into the electrical power required by the DC motor control section.

Before installation, the electrical supply should be checked for:

  • Nominal voltage
  • Frequency
  • Phase configuration
  • Available short-circuit current
  • Upstream protection
  • Disconnect arrangement
  • Grounding
  • Cable sizing
  • Line impedance
  • Cabinet arrangement

For an existing installation, these checks are particularly important when replacing an older DC drive.

7. Six-Pulse Input Architecture

The 6-pulse designation describes the basic input rectification arrangement used by the drive.

Six-pulse configurations have been widely used in industrial DC drive systems because of their established electrical architecture and suitability for high-power applications.

The input architecture should be considered together with the overall plant power system.

In a retrofit, the engineer should review the existing line reactor, transformer arrangement, protective equipment, disconnect, fusing, grounding, and other upstream equipment rather than treating the drive as an isolated component.

8. Four-Quadrant Regenerative Operation

One of the most important characteristics of the 20P41AD412RA0NNN is its four-quadrant regenerative operating capability.

A four-quadrant drive is capable of controlling motor operation in both rotational directions while handling both motoring and regenerative conditions.

In practical terms, the motor can:

  • Accelerate forward
  • Run forward
  • Decelerate while regenerating
  • Reverse
  • Accelerate in reverse
  • Run in reverse
  • Decelerate while regenerating in reverse

This operating behavior is valuable for machinery where the motor must frequently change speed or direction.

9. Regenerative Braking

Regenerative braking is particularly useful in machines with significant stored mechanical energy.

A large rotating roll, drum, reel, flywheel, shaft, or other high-inertia component can continue rotating after the drive command changes.

Instead of relying solely on mechanical braking, the motor can transition into a generating condition.

The regenerative drive manages this electrical energy as part of the controlled deceleration process.

This makes regenerative operation particularly relevant to:

  • Winding machinery
  • Unwinding machinery
  • Reversing machinery
  • Large conveyors
  • High-inertia rotating equipment
  • Metal-processing equipment
  • Paper-processing equipment
  • Continuous production machinery

10. High-Inertia Load Applications

The 20P41AD412RA0NNN is particularly relevant to high-inertia applications because the motor may need to accelerate and decelerate substantial rotating masses.

Typical examples include:

  • Large processing rolls
  • Reels
  • Drums
  • Flywheels
  • Large conveyors
  • Heavy rotating shafts
  • Large winding systems
  • Large unwind stands
  • Rolling equipment

The higher current rating is useful during acceleration and high-load operation, while the regenerative architecture is relevant when the mechanical system returns energy to the motor during deceleration.

11. Frame B Mechanical Construction

The 20P41AD412RA0NNN uses Frame B construction.

Frame size is important when planning the electrical cabinet.

It affects:

  • Mounting arrangement
  • Cabinet width
  • Cabinet depth
  • Cable routing
  • Terminal accessibility
  • Cooling airflow
  • Maintenance access
  • Service space

The approximate dimensions of the drive are:

311 mm high × 388 mm wide × 350 mm deep

The approximate product weight is:

32 kg.

These figures describe the drive itself and should not be treated as the complete cabinet dimensions.

Additional room should be provided for power cables, control wiring, feedback wiring, ventilation, grounding, inspection, and service work.

12. IP20 NEMA/UL Type Open Enclosure

The model uses an IP20, NEMA/UL Type Open enclosure configuration.

This means the drive is intended for installation inside a suitable electrical cabinet or enclosure.

It is not a completely sealed outdoor device.

The enclosure surrounding the drive should provide suitable protection against:

  • Dust
  • Moisture
  • Water
  • Conductive contamination
  • Corrosive substances
  • Excessive temperature
  • Mechanical impact

The cabinet should also be designed to maintain appropriate airflow and temperature around the drive.

13. Conformal-Coated Construction

The 20P41AD412RA0NNN includes conformal coating as part of the specified configuration.

Conformal coating adds a protective layer to electronic assemblies.

This can be useful in industrial environments where electronic equipment may encounter contamination or humidity levels beyond those normally found in clean indoor environments.

It should not, however, be considered a substitute for proper cabinet engineering.

The installation should still control:

  • Temperature
  • Humidity
  • Condensation
  • Dust
  • Chemical contamination
  • Airflow
  • Ventilation

14. Regulated Field Supply

The drive provides a single-phase regulated field supply.

The field circuit is an essential part of a separately excited DC motor system.

The motor field influences the operating characteristics of the DC motor, so the field voltage and field current must be checked carefully before commissioning.

For a retrofit, the following motor information should be recorded:

Field Parameter Recommended Check
Field Voltage Verify against motor nameplate
Field Current Verify against motor nameplate
Field Resistance Check motor documentation
Field Weakening Confirm operating requirements
Field Loss Protection Confirm required protection
Field Wiring Verify polarity and connections
Field Cooling Confirm motor thermal requirements

15. Feedback Capability

The PowerFlex DC platform provides flexible feedback capability, including DC tachometer and encoder feedback as standard control functionality.

Feedback is particularly important when a machine requires accurate speed regulation.

For example, a motor may need to maintain a stable speed even when the mechanical load changes.

The feedback system can provide information about actual motor speed, allowing the drive-control system to regulate the motor more effectively.

Feedback is especially useful in:

  • Winding
  • Unwinding
  • Tension control
  • Continuous production
  • Speed synchronization
  • High-inertia systems
  • Precision processing
  • Reversing applications

16. I/O Capability

The PowerFlex DC platform provides a relatively flexible I/O architecture.

The technical data identifies support for up to:

  • 12 digital inputs and outputs
  • 3 analog inputs
  • 4 analog outputs.

This allows the drive to interface with a wider machine-control system without requiring every function to be handled through an external controller.

Possible control signals include:

  • Start
  • Stop
  • Forward
  • Reverse
  • Enable
  • Jog
  • Speed reference
  • Current reference
  • External fault
  • Drive status
  • Speed feedback
  • Process signals

17. Control Terminal Arrangement

The PowerFlex DC design incorporates pull-apart control terminal blocks, which can simplify wiring and service work.

This can be particularly useful in retrofit projects.

When an existing drive is being replaced, control wiring often represents a substantial part of the installation work.

A removable or service-friendly terminal arrangement can make it easier to inspect wiring, isolate control circuits, and perform maintenance.

The actual control-terminal assignment should always be checked against the specific drive documentation and application requirements.

18. Product Introduction

The Allen-Bradley 20P41AD412RA0NNN is a high-power DC motor drive designed for industrial machinery requiring a combination of high current capacity and regenerative control.

With 412 A output capability and a 250 HP motor rating, it is intended for large DC motor systems rather than small or general-purpose applications.

Its four-quadrant operation allows the drive to manage both motoring and regenerative states, while the regulated field supply supports compatible separately excited DC motors.

The combination of feedback capability and flexible I/O also makes it suitable for machines where the drive must interact closely with an existing automation and process-control system.

19. DC Motor Retrofit Applications

One of the most practical applications for the 20P41AD412RA0NNN is modernization of existing DC motor systems.

Many large industrial machines use mechanical systems that can remain operational for decades.

A machine may still have a useful:

  • DC motor
  • Gearbox
  • Coupling
  • Shaft
  • Roll
  • Drum
  • Bearing system
  • Machine frame
  • Mechanical transmission

The drive electronics may become outdated before the mechanical system reaches the end of its useful service life.

In this situation, replacing the drive can provide a way to modernize the control system while retaining the existing machine.

20. Material Handling Applications

Large material-handling equipment can require substantial motor torque during acceleration.

The 412 A current capacity makes the 20P41AD412RA0NNN relevant to large DC motor material-handling applications.

Potential applications include:

  • Large conveyors
  • Transfer equipment
  • Heavy-duty transport systems
  • Large lifting-related machinery
  • Processing conveyors
  • Material feeding systems

Controlled acceleration can help reduce mechanical stress, while regenerative deceleration can be useful when a substantial rotating or moving mass needs to be slowed down.

21. Winding Applications

Winding equipment can impose demanding requirements on a motor drive.

As the diameter of a wound roll changes, the relationship between motor speed, torque, and line speed also changes.

The drive may need to operate continuously while maintaining stable speed and controlled torque.

The feedback capabilities of the PowerFlex DC architecture are useful in such systems because the control system can use actual motor-speed information to regulate operation.

22. Unwinding Applications

Unwinding systems can be even more demanding because the motor may need to provide controlled resistance to the material.

The motor can alternate between motoring and regenerative operation depending on the direction of energy flow.

This makes four-quadrant operation particularly relevant.

Typical applications include:

  • Unwind stands
  • Web handling
  • Coating lines
  • Printing lines
  • Paper processing
  • Film processing
  • Metal strip processing

23. Tension Control Applications

Tension control requires a motor to respond predictably to changes in material speed and mechanical conditions.

The motor may need to drive the material under one operating condition and resist it under another.

The combination of regenerative operation and speed feedback can therefore be useful in tension-control systems.

The actual tension-control strategy depends on the complete machine architecture and may involve load cells, dancer systems, encoders, tachometers, or external process controllers.

24. Metal Processing Applications

Large DC motors have traditionally been used in many metal-processing applications.

Potential equipment includes:

  • Rolling machines
  • Drawing equipment
  • Finishing lines
  • Coating lines
  • Strip-processing systems
  • Tension-control equipment
  • Material-processing machinery

These applications may require substantial torque, high current, controlled acceleration, and frequent deceleration.

The 20P41AD412RA0NNN is positioned for the high-power end of this type of DC motor application.

25. Paper and Converting Machinery

Paper and converting machinery can contain large rotating rolls and continuously moving material.

Typical equipment may include:

  • Paper-processing lines
  • Coating machinery
  • Winders
  • Unwinders
  • Finishing systems
  • Converting machines
  • Large roll drives

The motor drive may need to maintain speed while mechanical conditions change.

Regenerative operation can also be useful when large rolls must be accelerated and decelerated repeatedly.

26. Printing Applications

Large printing systems can use multiple controlled motor sections.

Each section may need to maintain a defined speed relationship with adjacent sections.

For existing DC motor printing equipment, the 20P41AD412RA0NNN can be considered when the motor and application requirements match its electrical rating.

Feedback is particularly useful when synchronization and stable speed are important.

27. Continuous Production Lines

Continuous production equipment differs from intermittent machinery because the drive may operate for long periods without stopping.

Typical requirements can include:

  • Stable speed
  • Controlled acceleration
  • Controlled deceleration
  • Predictable torque
  • Reliable feedback
  • Process synchronization
  • High availability

The 20P41AD412RA0NNN provides a combination of high current capacity, regenerative operation, feedback capability, and I/O flexibility that can be integrated into such applications.

28. Reversing Machinery

Reversing machinery can require repeated changes between forward and reverse operation.

A typical sequence can be:

  1. Forward acceleration.
  2. Forward operation.
  3. Controlled deceleration.
  4. Regenerative braking.
  5. Zero-speed transition.
  6. Reverse acceleration.
  7. Reverse operation.
  8. Reverse regenerative braking.

This type of application places greater demands on the drive than simple one-direction operation.

The four-quadrant architecture is particularly relevant to this operating pattern.

29. High-Power Conveyor Applications

Large conveyors can have considerable mechanical inertia.

During startup, the motor must accelerate the belt, pulleys, gearbox, and transported material.

During shutdown, the same system can return significant mechanical energy.

A regenerative DC drive can therefore provide controlled operation during both acceleration and deceleration.

For long conveyors or conveyors with substantial loads, motor torque, acceleration time, braking requirements, and thermal loading should all be evaluated before final drive selection.

30. Main Product Advantages

30.1 412 A High-Current Capacity

The 412 A output rating provides the capacity required by large DC motor applications.

This places the model above the 250 A and 330 A models in the same voltage class.

30.2 250 HP Motor Class

The 250 HP / approximately 187 kW rating makes the drive suitable for large industrial machines.

It is particularly relevant where substantial mechanical power is required.

30.3 Four-Quadrant Operation

Four-quadrant operation supports motoring and regeneration in both rotational directions.

This makes the drive suitable for reversing, winding, unwinding, and high-inertia applications.

30.4 Regenerative Braking

Regenerative operation is useful when mechanical energy needs to be controlled during deceleration.

It can be particularly relevant to machines with repeated braking cycles.

30.5 Regulated Field Supply

The integrated regulated field supply supports compatible DC motor field-control requirements.

30.6 Feedback Capability

DC tachometer and encoder feedback capabilities provide flexibility for applications requiring controlled motor speed.

30.7 Flexible I/O

The platform can support up to 12 digital inputs/outputs, 3 analog inputs, and 4 analog outputs, providing flexibility for machine integration.

30.8 Conformal Coating

The conformal-coated configuration provides additional protection to electronic assemblies in appropriately designed industrial cabinets.

30.9 Industrial Cabinet Integration

The Frame B construction and IP20 open enclosure are suited to cabinet-based industrial installations.

30.10 DC Motor Modernization

The drive can be used in modernization projects where an existing DC motor and mechanical system remain suitable for continued operation.

31. Five Recommended Same-Series Models

The following models belong to the same PowerFlex DC regenerative family and are useful for comparing different current and motor-power levels.

Model / Catalog Number Input Output Current Motor Rating Frame Operation Approx. Dimensions Approx. Weight
20P41AD250RA0NNN 480 VAC, 3 PH 250 A 150 HP / 112 kW B Four-quadrant regenerative Approx. 311 × 388 × 350 mm Approx. 29.5 kg
20P41AD330RA0NNN 480 VAC, 3 PH 330 A 200 HP / 149 kW B Four-quadrant regenerative Approx. 311 × 388 × 350 mm Approx. 32 kg
20P41AD495RA0NNN 480 VAC, 3 PH 495 A 300 HP / 224 kW C Four-quadrant regenerative Configuration-dependent Configuration-dependent
20P41AD667RA0NNN 480 VAC, 3 PH 667 A 400 HP / 298 kW C Four-quadrant regenerative Configuration-dependent Configuration-dependent
20P41AD830RA0NNN 480 VAC, 3 PH 830 A 500 HP / 373 kW D Four-quadrant regenerative Configuration-dependent Configuration-dependent

The 460/480 V regenerative range includes 250 A / 150 HP, 330 A / 200 HP, 412 A / 250 HP, 495 A / 300 HP, 667 A / 400 HP, 830 A / 500 HP and progressively larger ratings.

For the larger models, the exact physical dimensions and weight should be taken from the applicable mechanical configuration because frame, enclosure, and installation arrangements can affect the final physical requirements.

32. Same-Series Model Comparison

Model Output Current Motor Rating Frame Relative Power Class Dimensions Weight
20P41AD250RA0NNN 250 A 150 HP / 112 kW B Lower Approx. 311 × 388 × 350 mm Approx. 29.5 kg
20P41AD330RA0NNN 330 A 200 HP / 149 kW B Lower Approx. 311 × 388 × 350 mm Approx. 32 kg
20P41AD412RA0NNN 412 A 250 HP / 187 kW B Main model Approx. 311 × 388 × 350 mm Approx. 32 kg
20P41AD495RA0NNN 495 A 300 HP / 224 kW C Higher Configuration-dependent Configuration-dependent
20P41AD667RA0NNN 667 A 400 HP / 298 kW C Higher Configuration-dependent Configuration-dependent
20P41AD830RA0NNN 830 A 500 HP / 373 kW D Higher Configuration-dependent Configuration-dependent

The 20P41AD412RA0NNN therefore occupies the 250 HP / 412 A position between the 200 HP / 330 A and 300 HP / 495 A classes.

33. Five Popular Same-Brand Related Models

The following are popular related products from the broader Allen-Bradley PowerFlex family.

They are included for comparison, but they are not direct drop-in replacements for the 20P41AD412RA0NNN.

The 20P41AD412RA0NNN is a DC drive, while these products are associated with AC motor applications.

Model / Catalog Number Product Family Voltage Class Current Class Motor Power Class Motor Type Dimensions Weight
25B-D017N114 PowerFlex 525 480 VAC class 17 A class 10 HP class AC Motor Configuration-dependent Configuration-dependent
25B-D030N114 PowerFlex 525 480 VAC class 30 A class 15 HP class AC Motor Configuration-dependent Configuration-dependent
20G11ND077AA0NNNNN PowerFlex 755 480 VAC class 77 A class 50 HP class AC Motor Configuration-dependent Configuration-dependent
20G11ND156AA0NNNNN PowerFlex 755 480 VAC class 156 A class 100 HP class AC Motor Configuration-dependent Configuration-dependent
22F-D060N103 PowerFlex 4M 480 VAC class 6 A class 3 HP class AC Motor Configuration-dependent Configuration-dependent

The dimensions and weights of these related AC-drive products depend on their exact frame, enclosure, options, and configuration. For that reason, it is safer to use configuration-dependent rather than inserting a generic physical value into a cabinet-design specification.

34. Why the Same-Brand AC Models Are Not Direct Replacements

The 20P41AD412RA0NNN is designed for a DC motor system.

The related PowerFlex AC models are designed for AC motor systems.

Therefore, matching the horsepower number alone does not make an AC drive a direct replacement for a DC drive.

A DC-to-AC conversion may require changes to:

  • Motor
  • Motor mounting
  • Coupling
  • Gearbox
  • Encoder
  • Feedback system
  • Motor cables
  • Braking system
  • PLC logic
  • Control wiring
  • Cabinet layout
  • Machine parameters
  • Commissioning procedures

If the existing 250 HP DC motor is still mechanically and electrically suitable, maintaining the DC architecture may avoid many of these changes.

35. Motor Selection and Matching

The 20P41AD412RA0NNN should be matched to the actual motor and machine rather than selected from horsepower alone.

Motor / System Parameter Recommended Check
Motor Power 250 HP / approximately 187 kW class
Armature Voltage Confirm motor nameplate
Armature Current Confirm against 412 A drive capacity
Field Voltage Confirm motor field requirement
Field Current Confirm motor field current
Base Speed Confirm normal operating speed
Maximum Speed Confirm permissible maximum speed
Feedback Check tachometer or encoder
Continuous Torque Verify application requirement
Peak Torque Verify acceleration requirement
Load Inertia Calculate or estimate
Regeneration Confirm regenerative operating requirement
Duty Cycle Confirm continuous or intermittent operation
Ambient Conditions Check installation environment
Cooling Check motor and cabinet cooling
Mechanical Coupling Verify shaft and coupling condition

36. Cabinet Installation

Because the drive uses an IP20 NEMA/UL Type Open enclosure, it should be installed inside a suitable electrical cabinet.

The cabinet should provide sufficient room for:

  • Drive mounting
  • Incoming power
  • Motor armature cables
  • Field cables
  • Feedback cables
  • Control wiring
  • Grounding
  • Protective devices
  • Disconnect equipment
  • Cooling
  • Maintenance access

The approximate drive body dimensions are:

311 × 388 × 350 mm

The approximate weight is:

32 kg.

Cabinet designers should provide additional clearance around the unit rather than designing the enclosure to exactly match the drive dimensions.

37. Cooling and Thermal Management

A 412 A high-power drive requires appropriate thermal management.

The cabinet design should consider heat produced by:

  • The drive
  • Incoming protection devices
  • Reactors
  • Contactors
  • Power supplies
  • Other control equipment

The thermal design should be based on the actual operating conditions rather than simply the cabinet’s external dimensions.

Important factors include:

  • Ambient temperature
  • Internal cabinet temperature
  • Airflow
  • Cooling fans
  • Filters
  • Ventilation
  • Heat dissipation
  • Equipment spacing
  • Continuous operating load

A high-current drive operating continuously at substantial load can place significant thermal demands on a control cabinet.

38. Feedback Wiring

Feedback wiring should be inspected carefully during retrofit projects.

The existing machine may use a tachometer or encoder.

Before removing the old drive, it is useful to document:

  • Feedback device type
  • Signal type
  • Voltage
  • Polarity
  • Number of conductors
  • Shielding
  • Grounding
  • Connector arrangement
  • Scaling
  • Motor maximum speed

The drive’s feedback configuration must be matched to the actual motor feedback device.

39. Maintenance Considerations

Maintenance should cover both the drive and the DC motor.

For the drive cabinet, inspection can include:

  • Dust accumulation
  • Fan condition
  • Ventilation
  • Terminal connections
  • Cable condition
  • Grounding
  • Feedback wiring
  • Signs of overheating
  • Signs of contamination

For the DC motor, maintenance can include:

  • Brushes
  • Commutator
  • Bearings
  • Armature
  • Field winding
  • Cooling
  • Mechanical coupling
  • Vibration

A drive replacement does not eliminate the need for normal DC motor maintenance.

40. Retrofit Inspection Checklist

Before installing a 20P41AD412RA0NNN in place of an existing DC drive, the following information should be recorded.

Inspection Area Items to Verify
Existing Drive Catalog number and configuration
AC Supply Voltage, phase and frequency
Motor Model, voltage, current and power
Armature Voltage and current
Field Voltage and current
Feedback Tachometer or encoder
Mechanical Load Torque and inertia
Acceleration Required acceleration time
Deceleration Required deceleration time
Regeneration Required or not required
Cabinet Width, height and depth
Cooling Existing airflow and thermal capacity
Wiring Power, control and feedback
Control System PLC and external commands
Communication Required communication architecture
Safety Interlocks and emergency-stop system

41. Typical Machine Types

The 20P41AD412RA0NNN can be considered for large DC motor applications such as:

  • Metal-processing machinery
  • Rolling equipment
  • Drawing machinery
  • Finishing equipment
  • Paper machinery
  • Printing equipment
  • Coating lines
  • Winding systems
  • Unwinding systems
  • Large conveyors
  • Material-handling machinery
  • High-inertia machinery
  • Reversing machinery
  • Continuous production equipment
  • Large rotating machinery
  • DC motor retrofit systems

42. Applications in Large Winding Systems

Large winding machines can require considerable motor power.

As the roll diameter changes, the machine must continuously manage the relationship between motor speed, torque, and line speed.

A high-power DC drive can be useful when the existing machine already uses a large DC motor.

The 412 A rating provides the current capacity required by larger motor systems, while regenerative operation allows the motor to handle conditions in which the mechanical load drives the motor.

43. Applications in Unwinding and Web Processing

Unwinding machinery can require the motor to act as both a drive and a controlled resisting element.

During some operating conditions, the motor supplies torque.

During other conditions, mechanical energy can be returned through the motor.

This makes regenerative operation relevant to web-handling systems.

Typical industries include:

  • Paper
  • Film
  • Printing
  • Packaging
  • Metal strip processing
  • Coating
  • Converting

44. Applications in Large Processing Equipment

Large processing machines may have long operating cycles and significant mechanical inertia.

The drive may be required to:

  • Start a large load
  • Maintain constant speed
  • Respond to load changes
  • Decelerate the load
  • Reverse direction
  • Repeat the operating cycle

The 20P41AD412RA0NNN is designed around the type of high-current DC motor control architecture needed for these demanding applications.

45. Product Advantages at a Glance

Feature Practical Application Value
412 A Output Supports high-current DC motor applications
250 HP Rating Suitable for large industrial motors
Approx. 187 kW High mechanical power class
Four-Quadrant Operation Supports forward/reverse motoring and regeneration
Regenerative Capability Useful for frequent controlled deceleration
6-Pulse Input Established industrial input architecture
Regulated Field Supply Supports compatible DC motor field circuits
Frame B Defined high-power mechanical configuration
IP20 Suitable for cabinet-based installation
Conformal Coating Added protection for electronic assemblies
Tachometer / Encoder Feedback Supports speed-regulated systems
Flexible I/O Facilitates machine integration
DC Retrofit Capability Useful for modernization of existing DC machinery

46. Product Selection Position Within the PowerFlex DC Range

The 20P41AD412RA0NNN sits between the 330 A / 200 HP and 495 A / 300 HP classes.

Output Current Motor Rating Model Frame
250 A 150 HP / 112 kW 20P41AD250RA0NNN B
330 A 200 HP / 149 kW 20P41AD330RA0NNN B
412 A 250 HP / 187 kW 20P41AD412RA0NNN B
495 A 300 HP / 224 kW 20P41AD495RA0NNN C
667 A 400 HP / 298 kW 20P41AD667RA0NNN C
830 A 500 HP / 373 kW 20P41AD830RA0NNN D

This progression makes the 412 A model useful when the motor’s requirements are beyond the 330 A / 200 HP class but within the 412 A / 250 HP class.

47. Product Description for Industrial Equipment Catalogs

The Allen-Bradley 20P41AD412RA0NNN PowerFlex DC Drive is a high-power regenerative DC motor drive designed for large industrial applications requiring high current capacity, controlled speed, four-quadrant operation, and regenerative braking.

The drive is rated for 480 VAC three-phase input, 412 A output current, and 250 HP / approximately 187 kW motor power. It uses a 6-pulse input architecture, single-phase regulated field supply, and four-quadrant regenerative operation.

The unit uses Frame B construction and an IP20 NEMA/UL Type Open enclosure with conformal coating. The specified configuration includes a blank plate rather than a HIM and does not include a communication module.

The approximate physical dimensions are 311 × 388 × 350 mm, with an approximate product weight of 32 kg.

The drive is intended for cabinet-based industrial installation and can be used in applications such as large material-handling systems, winding and unwinding equipment, metal-processing machinery, paper and converting lines, high-inertia machinery, reversing equipment, continuous production systems, and DC motor modernization projects.

Its high 412 A current rating makes it suitable for large DC motor systems where smaller PowerFlex DC models do not provide sufficient current capacity.

48. Overall Application Value

The 20P41AD412RA0NNN is particularly relevant when a large DC motor remains an important part of an existing industrial machine.

For retrofit projects, the drive can provide a modern electronic control platform while allowing the existing mechanical equipment to remain in service when the motor, machine, and application are compatible.

For applications with frequent acceleration and deceleration, the four-quadrant regenerative architecture provides a controlled method of managing changes in motor operating state.

For winding, unwinding, reversing, high-inertia, and continuous-processing machinery, the combination of high current, feedback capability, field regulation, and regenerative operation can be integrated into a larger machine-control architecture.

49. Key Specifications at a Glance

Specification 20P41AD412RA0NNN
Brand Allen-Bradley
Product Series PowerFlex DC
Product Type Regenerative DC Drive
Input Voltage 480 VAC
Input Phase 3 Phase
Input Type 6 Pulse
Output Current 412 A
Motor Rating 250 HP
Motor Rating Approximately 187 kW
Motor Operation Four-Quadrant / Regenerative
Field Supply Single-Phase Regulated
Frame Size Frame B
Enclosure IP20
Enclosure Type NEMA/UL Type Open
Conformal Coating Yes
HIM Blank Plate / No HIM
Communication Module None as standard
Feedback DC Tachometer / Encoder Capable
Digital I/O Up to 12 digital inputs/outputs
Analog Inputs Up to 3
Analog Outputs Up to 4
Approx. Dimensions H × W × D 311 × 388 × 350 mm
Approx. Weight 32 kg
Typical Installation Industrial control cabinet
Main Application High-power DC motor control
Regenerative Operation Yes

50. Product Advantages Summary

The 20P41AD412RA0NNN combines several characteristics that are particularly relevant to large DC motor installations.

Its 412 A output rating places it in a high-current industrial category, while the 250 HP / 187 kW motor rating makes it appropriate for large machinery.

The four-quadrant regenerative architecture is important for applications where the motor must accelerate, decelerate, reverse, or operate as a generator during part of the production cycle.

The regulated field supply supports compatible DC motor field-control requirements, while the tachometer and encoder feedback capabilities provide options for speed-regulated applications.

The drive’s I/O flexibility also allows it to be integrated with external control equipment and machine automation systems.

The Frame B, IP20 construction and conformal-coated configuration are appropriate for installation in a properly engineered industrial control cabinet.

51. Final Technical Summary

The Allen-Bradley 20P41AD412RA0NNN is a PowerFlex DC series regenerative DC drive rated for 480 VAC, three-phase input, 412 A output current, and 250 HP / approximately 187 kW motor power.

Its primary technical characteristics include:

  • 480 VAC three-phase input
  • 6-pulse input
  • 412 A output current
  • 250 HP motor rating
  • Approximately 187 kW motor class
  • Four-quadrant regenerative operation
  • Single-phase regulated field supply
  • Frame B construction
  • IP20 NEMA/UL Type Open enclosure
  • Conformal coating
  • DC tachometer and encoder feedback capability
  • Up to 12 digital inputs/outputs
  • Up to 3 analog inputs
  • Up to 4 analog outputs
  • Blank-plate / no-HIM configuration
  • No communication module as standard
  • Approximate dimensions of 311 × 388 × 350 mm
  • Approximate weight of 32 kg

The drive is particularly applicable to large DC motor systems, winding and unwinding machinery, metal processing, paper and converting equipment, large conveyors, material handling, high-inertia machinery, reversing equipment, continuous production lines, and DC motor modernization projects.

Within the 460/480 V regenerative PowerFlex DC range, the 20P41AD412RA0NNN represents the 412 A / 250 HP class, positioned above the 330 A / 200 HP model and below the 495 A / 300 HP model.

For final engineering selection, the motor’s actual armature voltage, armature current, field voltage, field current, speed range, feedback device, mechanical inertia, acceleration and deceleration requirements, duty cycle, cabinet dimensions, thermal conditions, incoming power, and control architecture should all be checked together.



Related Products

Get the latest price? We will reply as soon as possible (within 12 hours)

No:77501