• Allen Bradley 20P41AD207RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AD207RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AD207RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AD207RA0NNN PowerFlex DC Drive
1. Product Overview The Allen-Bradley 20P41AD207RA0NNN is a high-power PowerFlex DC Drive designed for demanding industrial DC motor applications. It is a 480 VAC, three-phase, 207 A regenerative DC dri……
Allen Bradley 20P41AD207RA0NNN PowerFlex DC Drive
  • Allen Bradley
  • 20P41AD207RA0NNN
  • PowerFlex DC Drive
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  • 311 × 388 × 350 mm
  • 25.5kg
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1. Product Overview

The Allen-Bradley 20P41AD207RA0NNN is a high-power PowerFlex DC Drive designed for demanding industrial DC motor applications. It is a 480 VAC, three-phase, 207 A regenerative DC drive with a nominal 125 HP / 93 kW motor rating.

This model belongs to the PowerFlex DC series and is configured for four-quadrant regenerative operation. This makes it suitable for machinery that needs not only controlled motor acceleration and speed regulation, but also controlled deceleration, reversing, and regenerative braking.

The drive uses a 6-pulse input configuration, a single-phase regulated field supply, and Frame B construction. The enclosure is IP20, NEMA/UL Type Open, with conformal coating. This particular catalog configuration has a blank plate instead of a standard HIM and does not include a standard communication module.

With a rated output current of 207 A, the model is positioned above the 167 A / 100 HP model and below the 250 A / 150 HP model within the 460/480 V regenerative DC drive range.

The 20P41AD207RA0NNN is particularly useful where a large existing DC motor is still mechanically suitable and the objective is to modernize the drive system without necessarily converting the entire machine to an AC motor system.

2. Brand and Product Series

Item Description
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex DC
Product Type Digital Regenerative DC Drive
Catalog Number 20P41AD207RA0NNN
Voltage Class 460/480 VAC
Rated Input 480 VAC, 3 Phase
Input Configuration 6 Pulse
Rated Output Current 207 A
Motor Rating 125 HP
Motor Power Approximately 93 kW
Operating Mode Four-Quadrant Regenerative
Frame Size Frame B
Enclosure IP20, NEMA/UL Type Open
Conformal Coating Yes
HIM Blank Plate / No HIM
Communication Module None Standard
Field Supply Single-Phase Regulated
Feedback Capability DC Tachometer / Encoder

The product belongs to the PowerFlex DC series, a family intended specifically for industrial DC motor control.

The 20P41 configuration is the regenerative version of this DC drive architecture. Its four-quadrant capability distinguishes it from a simple unidirectional DC motor controller because it can manage both motoring and regeneration in both directions.

3. Main Technical Parameters

Parameter Specification
Model / Catalog Number 20P41AD207RA0NNN
Brand Allen-Bradley
Product Series PowerFlex DC
Product Type Regenerative Digital DC Drive
Input Voltage 480 VAC
Input Voltage Class 460/480 VAC
Input Phase 3 Phase
Input Type 6 Pulse
Rated Output Current 207 A
Motor Rating 125 HP
Motor Power Approximately 93 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 Blank Plate / No HIM
Communication Module None Standard
Feedback DC Tachometer / Encoder
Digital I/O Capability Up to 12 digital inputs and outputs
Analog Inputs Up to 3
Analog Outputs Up to 4
Approx. Height 311 mm
Approx. Width 388 mm
Approx. Depth 350 mm
Approx. Dimensions H × W × D 311 × 388 × 350 mm
Approx. Weight 25.5 kg
Mounting Panel / Surface Mount
Intended Motor Type Industrial DC Motor
Typical Motor Class 125 HP / 93 kW

The defining electrical specification is the 207 A DC output rating. In the 460/480 V regenerative PowerFlex DC range, this corresponds to the 125 HP / 93 kW class. The product information also identifies the unit as Frame B, IP20, six-pulse, four-quadrant, and equipped with a single-phase regulated field supply.

The approximate physical size is 311 × 388 × 350 mm, with an approximate weight of 25.5 kg.

4. Input Power and Electrical Architecture

The 20P41AD207RA0NNN is designed around a 480 VAC three-phase industrial power supply.

The three-phase input configuration is appropriate for high-power industrial installations where the drive must deliver substantial DC current to a large motor.

The drive uses a 6-pulse input arrangement. This is a conventional configuration for industrial DC drives and provides the rectified power required for controlled DC motor operation.

The catalog configuration is therefore well suited to industrial plants where three-phase 480 VAC power is already available.

5. Output Current

The rated output current is:

207 A

This is the most important electrical rating when evaluating compatibility with a DC motor.

The 207 A rating places this model above the 167 A / 100 HP model and below the 250 A / 150 HP model in the same product family.

When selecting a DC drive, however, the motor horsepower should not be considered independently. The motor’s actual armature voltage, armature current, field requirements, speed range, duty cycle, acceleration time, and regenerative requirements should all be reviewed.

For a 125 HP-class motor application, the 207 A model provides a substantial current capacity suitable for large industrial equipment.

6. Motor Power Rating

The nominal motor rating is:

125 HP / approximately 93 kW

This places the 20P41AD207RA0NNN firmly in the high-power industrial DC drive category.

A drive in this class is generally associated with major production equipment rather than small auxiliary machinery.

Typical applications may involve large rollers, reels, winding systems, process lines, material-handling systems, metal-processing equipment, or other machinery where high motor torque and controlled speed are required.

7. Four-Quadrant Regenerative Operation

One of the strongest characteristics of the 20P41AD207RA0NNN is its four-quadrant regenerative operating capability.

Four-quadrant operation allows the drive to control motor torque and speed in both rotational directions.

Operating Quadrant Operating Condition Typical Function
Quadrant I Forward Motoring Forward acceleration and running
Quadrant II Forward Regeneration Controlled forward braking
Quadrant III Reverse Motoring Reverse acceleration and running
Quadrant IV Reverse Regeneration Controlled reverse braking

This arrangement is particularly useful for machines that frequently change speed or direction.

It can be valuable in applications involving:

  • Large rotating inertia
  • Repeated acceleration
  • Repeated deceleration
  • Reversing
  • Winding
  • Unwinding
  • Tension control
  • Regenerative braking
  • Large production rolls
  • Material-handling equipment

The drive’s regenerative architecture is therefore a major reason to select a PowerFlex DC regenerative model instead of a basic DC drive.

8. Regenerative Braking

During deceleration, the motor can act as a generator.

This is especially significant when the driven machine contains a large rotating mass.

For example, a large reel, roll, drum, or other rotating mechanism can store substantial kinetic energy while operating at production speed.

When the machine decelerates, that energy must be controlled.

A regenerative drive provides an electrical path for managing this operating condition while maintaining controlled motor torque.

This makes the 20P41AD207RA0NNN particularly appropriate for applications where braking is a normal part of the production cycle rather than an occasional emergency event.

9. Frame Size and Mechanical Construction

The 20P41AD207RA0NNN uses:

Frame Size B

Frame B places the model in the larger physical construction group within the 460/480 V PowerFlex DC range.

The approximate dimensions are:

311 mm × 388 mm × 350 mm

with an approximate weight of:

25.5 kg

These dimensions and weight should be considered when designing or modifying an electrical cabinet.

The cabinet must provide enough room not only for the drive itself, but also for:

  • Incoming AC wiring
  • DC motor armature wiring
  • Field wiring
  • Feedback cables
  • Control wiring
  • Grounding conductors
  • Ventilation
  • Maintenance access
  • Cable bending radius

The actual panel layout should therefore provide additional installation space beyond the basic drive envelope.

10. Enclosure and Environmental Construction

The drive uses an:

IP20, NEMA/UL Type Open enclosure

This type of construction is intended for installation inside a suitable electrical cabinet or protected control enclosure.

It is not intended to be treated as a standalone outdoor or washdown-rated product.

The model also uses conformal coating.

Conformal coating adds a protective layer to electronic assemblies and can provide additional resistance to certain industrial environmental conditions.

Even with conformal coating, correct cabinet engineering remains important.

The installation should still address:

  • Humidity
  • Dust
  • Conductive contamination
  • Temperature
  • Airflow
  • Condensation
  • Vibration
  • Electrical noise
  • Grounding

11. Feedback Capability

The PowerFlex DC platform provides feedback capabilities that are useful for closed-loop motor control.

The 20P41AD207RA0NNN supports DC tachometer and encoder feedback.

Feedback is particularly important when actual motor speed needs to be monitored and regulated accurately.

In a closed-loop application, the drive receives a speed signal from the motor feedback device and compares the measured speed with the commanded speed.

This allows the drive-control system to make continuous adjustments.

Feedback can be especially useful in:

  • Wire drawing
  • Winding
  • Unwinding
  • Printing
  • Paper processing
  • Converting
  • Extrusion
  • Tension-control applications
  • Precision speed-control systems

12. I/O Capability

The drive offers substantial I/O flexibility.

I/O Type Capability
Digital Inputs / Outputs Up to 12
Analog Inputs Up to 3
Analog Outputs Up to 4
Feedback DC Tachometer / Encoder
Standard Communication Module None in this configuration

Digital I/O can be used for machine commands and interlocking.

Typical functions include:

  • Start
  • Stop
  • Enable
  • Forward
  • Reverse
  • Jog
  • Fault reset
  • External interlock
  • Operating-mode selection

Analog inputs can be used for speed references, process references, external command signals, or other analog machine functions.

Analog outputs can provide useful drive-related signals to a PLC, control system, recorder, or other equipment.

13. Product Introduction

The 20P41AD207RA0NNN PowerFlex DC Drive is intended for large industrial DC motor applications where high current, controlled speed, and regenerative operation are required.

DC motors continue to exist in many industrial environments because older machines were specifically designed around their characteristics.

Replacing a DC motor is not always a simple electrical project.

A motor replacement can affect:

  • Mounting
  • Coupling
  • Shaft dimensions
  • Gearbox alignment
  • Feedback equipment
  • Mechanical inertia
  • Cooling
  • Speed range
  • Control programming

For this reason, maintaining the existing DC motor and modernizing the drive can sometimes be a practical engineering approach.

The 20P41AD207RA0NNN is well suited to this type of application.

14. Industrial Application Areas

14.1 Steel and Metal Processing

Large metal-processing machines often involve high motor power, large mechanical inertia, and frequent changes in operating speed.

The drive can be considered for:

  • Rolling equipment
  • Strip processing
  • Coil handling
  • Finishing equipment
  • Tension-control systems
  • Reversing systems

The regenerative capability is useful when the machine must repeatedly accelerate and decelerate.

14.2 Wire Drawing

Wire-drawing equipment requires stable speed control and controlled torque.

A DC motor drive can be useful where the existing machine architecture already uses DC motors.

The 207 A current capacity also makes the model suitable for relatively large wire-processing equipment.

Potential applications include:

  • Drawing lines
  • Wire-processing equipment
  • Large take-up systems
  • Pay-off systems
  • Tension-control machinery

14.3 Cable Processing

Cable manufacturing machinery can require accurate speed synchronization between multiple motorized sections.

A DC drive can provide controlled motor speed and torque while retaining an existing DC motor installation.

Applications may include:

  • Cable winding
  • Cable take-up
  • Pay-off systems
  • Large reel systems
  • Process-line drive sections

14.4 Winding Machines

Winding applications are particularly suitable for regenerative DC drive technology.

The motor may operate in motoring mode during winding and transition into regenerative operation during controlled deceleration or tension-related conditions.

Four-quadrant control is useful when the machine must respond smoothly to changing speed and torque requirements.

14.5 Unwinding Systems

Unwinding systems frequently require controlled braking torque.

A motor may need to resist the rotation of a reel while maintaining stable web or material tension.

This makes regenerative control especially relevant.

Typical applications include:

  • Paper
  • Film
  • Metal strip
  • Wire
  • Cable
  • Foil
  • Web-processing machinery

14.6 Printing Machinery

Large printing machines can contain multiple drive sections.

Older machines may still use DC motors even when the original drive system has become outdated.

A PowerFlex DC drive can provide a modernization path while allowing the existing DC motor and mechanical structure to remain in place when technically suitable.

14.7 Paper and Converting Machinery

Paper, film, and converting lines can require highly coordinated motor operation.

Typical equipment includes:

  • Coaters
  • Laminators
  • Slitters
  • Rewinders
  • Unwinders
  • Roll drives
  • Web-processing systems

The combination of feedback and regenerative control is useful in these applications.

14.8 Extrusion

Large extrusion machines can require stable speed and torque over long operating periods.

The 20P41AD207RA0NNN can be considered where the extruder is equipped with a compatible DC motor.

Its high-current capacity makes it suitable for larger equipment.

15. Material Handling Applications

The drive can also be used in heavy-duty material-handling systems where the motor must provide controlled acceleration and deceleration.

Potential applications include:

  • Large conveyors
  • Reels
  • Drums
  • Rollers
  • Transfer systems
  • Process material handling
  • High-inertia mechanical equipment

When a machine repeatedly accelerates and decelerates, regenerative control can provide a more controlled method of managing the motor’s energy flow.

16. High-Inertia Applications

High-inertia loads are a particularly important application area.

A large rotating mass stores kinetic energy while operating.

When the drive accelerates the machine, electrical energy is converted into mechanical energy.

During deceleration, the process is reversed.

The motor can become a generator, and the drive must manage the resulting regenerative energy.

This makes four-quadrant operation valuable for:

  • Large reels
  • Large rolls
  • Flywheel-type systems
  • Winding machinery
  • Unwinding machinery
  • Heavy rotating equipment
  • Large process machines

17. Reversing Applications

Some industrial machinery requires frequent changes of rotational direction.

Typical examples include:

  • Reversing mills
  • Test stands
  • Certain material-processing systems
  • Positioning systems
  • Specialized winding machinery

During a reversal, the drive may transition through a regenerative braking condition before accelerating in the opposite direction.

The four-quadrant architecture is well suited to this type of operation.

18. Main Product Advantages

18.1 High 207 A Current Rating

The 207 A output rating provides substantial current capacity for large DC motor applications.

This is the main reason the model occupies the 125 HP position in the PowerFlex DC family.

18.2 125 HP / 93 kW Motor Class

The 125 HP rating makes the drive suitable for large industrial production equipment.

It is appropriate for applications that require significantly more capacity than the 100 HP / 167 A model.

18.3 Four-Quadrant Operation

Four-quadrant operation provides control over both motoring and regenerative conditions in both directions.

This is particularly valuable for reversing machinery and high-inertia equipment.

18.4 Regenerative Braking

Regenerative operation provides controlled handling of motor-generated energy during deceleration.

This is useful when braking occurs frequently as part of the normal production process.

18.5 Existing DC Motor Compatibility

One of the most practical benefits is the ability to continue using a compatible existing DC motor.

This can reduce the amount of mechanical modification required during modernization.

18.6 Feedback Support

DC tachometer and encoder support provides flexibility for applications requiring accurate speed regulation.

18.7 Flexible I/O

The drive provides extensive I/O capability, allowing it to integrate into a larger machine-control architecture.

18.8 Conformal-Coated Electronics

The conformal-coated construction provides additional protection for electronic components in demanding industrial environments.

18.9 Retrofit Capability

The product is well suited to drive-modernization projects where an existing DC motor and mechanical system remain serviceable.

19. DC Motor Modernization

A DC drive retrofit can be considerably different from a complete DC-to-AC conversion.

A complete motor conversion may involve:

  • New AC motor
  • New mounting
  • Coupling modifications
  • New feedback equipment
  • Mechanical redesign
  • Changes to the gearbox
  • New control programming
  • New braking arrangements
  • Additional downtime

When the existing DC motor is in good condition, replacing the drive alone can potentially reduce the scope of the project.

The 20P41AD207RA0NNN can therefore be a useful option for modernizing older production machinery without automatically replacing the complete motor system.

20. Motor Selection and Matching

The drive should be matched to the actual DC motor rather than selected only from the horsepower rating.

Motor Parameter Importance
Motor Type Must be compatible with DC drive operation
Armature Voltage Must match drive output capability
Armature Current Must be compatible with 207 A rating
Motor Horsepower Approximately 125 HP class
Motor Power Approximately 93 kW
Field Voltage Must be checked
Field Current Must be checked
Base Speed Important for control setup
Maximum Speed Must remain within motor limits
Feedback Device Tachometer or encoder compatibility
Load Inertia Important for acceleration/deceleration
Duty Cycle Important for thermal loading
Regeneration Important for braking requirements

A motor with a nominal 125 HP rating should still have its nameplate current and voltage checked carefully before the drive is selected.

The actual operating conditions of the machine can also affect drive sizing.

21. Retrofit Inspection Checklist

Before installing the 20P41AD207RA0NNN in an existing machine, the following information should be collected.

Inspection Item Required Information
Existing Drive Catalog number and electrical rating
Motor Manufacturer/model and nameplate
Armature Voltage Actual rated value
Armature Current Actual rated value
Field Voltage Actual rated value
Field Current Actual rated value
Motor HP Rated horsepower
Motor Speed Base and maximum speed
Feedback Tachometer or encoder
Machine Inertia Approximate load characteristics
Acceleration Required acceleration time
Deceleration Required stopping time
Regeneration Required or not required
Incoming Supply 480 VAC class
Cabinet Available mounting space
Control Signals Existing PLC/control interface
Communication Required network or external control

This type of inspection is especially important when replacing an older drive with a modern drive.

22. Physical Installation

The approximate physical dimensions are:

311 mm high × 388 mm wide × 350 mm deep

The approximate weight is:

25.5 kg

The cabinet mounting structure should be capable of supporting the drive and associated wiring.

The installation should also provide adequate space around the drive for cooling and maintenance.

The physical installation should account for:

  • Drive dimensions
  • Mounting hardware
  • Power-cable routing
  • Motor-cable routing
  • Field connections
  • Feedback wiring
  • Control wiring
  • Grounding
  • Airflow
  • Service access

The listed dimensions represent the approximate drive body size rather than the complete space required for a finished electrical installation.

23. Cooling and Cabinet Design

High-power drives generate heat during normal operation.

For this reason, the cabinet design should provide adequate thermal management.

Important factors include:

  • Ambient temperature
  • Cabinet volume
  • Airflow
  • Heat generated by other equipment
  • Ventilation arrangement
  • Installation spacing
  • Contamination level
  • Duty cycle

A drive operating continuously near its rated load can generate significantly more heat than a drive operating at a light load.

The cabinet should therefore be designed around the actual operating conditions rather than the physical drive dimensions alone.

24. Feedback Wiring

Feedback signals should be treated carefully in a high-power drive installation.

The drive may control hundreds of amps while the feedback signal itself can be relatively small.

Poor cable routing can introduce electrical noise into the feedback signal.

Good installation practice should therefore include appropriate:

  • Cable separation
  • Shielding
  • Grounding
  • Termination
  • Cable routing
  • Signal integrity checks

This is particularly important for applications where speed regulation has a direct impact on product quality.

25. Maintenance Considerations

The PowerFlex DC architecture provides digital control and diagnostic capabilities suitable for industrial maintenance environments.

Maintenance personnel may need to monitor:

  • Motor current
  • Motor speed
  • Feedback signals
  • Drive status
  • Fault conditions
  • I/O status
  • Control parameters
  • Regenerative operation

A standardized drive platform can also simplify maintenance training when several machines use related PowerFlex DC products.

26. Five Recommended Same-Series Models

The following five models are closely related PowerFlex DC regenerative models in the same 460/480 V three-phase product family.

Model Input Voltage Phase Output Current Motor Rating Motor Power Frame Approx. Dimensions Approx. Weight
20P41AD129RA0NNN 480 VAC 3 Phase 129 A 75 HP 56 kW A Approx. 359 × 267 × 287 mm Approx. 14.5 kg
20P41AD167RA0NNN 480 VAC 3 Phase 167 A 100 HP 75 kW B Approx. 311 × 388 × 350 mm Approx. 25.5 kg
20P41AD207RA0NNN 480 VAC 3 Phase 207 A 125 HP 93 kW B Approx. 311 × 388 × 350 mm Approx. 25.5 kg
20P41AD250RA0NNN 480 VAC 3 Phase 250 A 150 HP 112 kW B Approx. 311 × 388 × 350 mm Approx. 25.5 kg
20P41AD330RA0NNN 480 VAC 3 Phase 330 A 200 HP 149 kW B Approx. 311 × 388 × 350 mm Approx. 25.5 kg

The 20P41AD129RA0NNN is the 75 HP / 56 kW class.

The 20P41AD167RA0NNN is the 100 HP / 75 kW class.

The 20P41AD207RA0NNN is the 125 HP / 93 kW class.

The 20P41AD250RA0NNN is the 150 HP / 112 kW class.

The 20P41AD330RA0NNN is the 200 HP / 149 kW class.

This progression provides several current levels for industrial DC motors requiring the same general 460/480 V regenerative architecture. The 207 A model occupies an important position between the 100 HP and 150 HP classes.

The dimensions and weights shown for the related models are intended as practical comparison values. Exact installation dimensions should be confirmed against the mechanical information for the specific catalog number.

27. Same-Series Comparison

Model Output Current Motor Rating Approx. kW Frame Application Class
20P41AD129RA0NNN 129 A 75 HP 56 kW A Medium-large DC motor
20P41AD167RA0NNN 167 A 100 HP 75 kW B Large DC motor
20P41AD207RA0NNN 207 A 125 HP 93 kW B High-power DC motor
20P41AD250RA0NNN 250 A 150 HP 112 kW B Heavy industrial DC motor
20P41AD330RA0NNN 330 A 200 HP 149 kW B Very large industrial DC motor

The selection should be based on actual motor data and machine duty.

The 207 A model should not automatically be selected merely because the motor is described as a 125 HP motor. Armature current, armature voltage, field requirements, feedback, duty cycle, and regenerative requirements should all be checked.

28. Five Popular Same-Brand Models

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

They are included as same-brand popular/related models for comparison, but they are not direct replacements for the 20P41AD207RA0NNN because they belong primarily to AC variable-frequency drive families.

Model Product Series Drive Type Voltage Class Approx. Current Class Typical Motor Class Dimensions Weight
25B-D017N114 PowerFlex 525 AC Variable Frequency Drive 480 VAC Class 17 A Class 10 HP Class Frame-dependent Frame-dependent
25B-D030N114 PowerFlex 525 AC Variable Frequency Drive 480 VAC Class 30 A Class 15 HP Class Frame-dependent Frame-dependent
20G11ND077AA0NNNNN PowerFlex 755 AC Drive 480 VAC Class 77 A Class 50 HP Class Frame-dependent Frame-dependent
20G11ND156AA0NNNNN PowerFlex 755 AC Drive 480 VAC Class 156 A Class 100 HP Class Frame-dependent Frame-dependent
22F-D060N103 PowerFlex 4M Compact AC Drive 480 VAC Class 6 A Class 3 HP Class Frame-dependent Frame-dependent

These products can be useful when evaluating a broader motor-system modernization strategy.

However, an AC drive should not be regarded as a drop-in replacement for the 20P41AD207RA0NNN.

Moving from a DC motor to an AC motor normally involves a broader engineering evaluation covering the motor, mechanical coupling, feedback, braking, control system, speed range, torque characteristics, cabinet design, and machine performance.

29. DC Drive Versus AC Drive Architecture

The main distinction between the 20P41AD207RA0NNN and the other PowerFlex products is motor technology.

Characteristic 20P41AD207RA0NNN Typical PowerFlex AC Drive
Motor Type DC Motor AC Motor
Drive Architecture DC Drive Variable Frequency Drive
Rated Application 125 HP DC Motor Class AC motor applications
Four-Quadrant DC Operation Yes Depends on configuration
Existing DC Motor Retrofit Directly applicable Requires motor conversion
DC Tachometer Supported Different feedback architecture
Encoder Supported Common on advanced AC drives
Regenerative Operation Built into regenerative DC configuration Configuration-dependent
Typical Modernization DC drive replacement Motor + drive modernization

This distinction is important when choosing equipment.

If the machine already has a suitable 125 HP DC motor, the PowerFlex DC family is directly relevant.

If the objective is to convert the machine to an AC motor, a different engineering process is required.

30. Typical Industries

The 20P41AD207RA0NNN can be considered for a wide range of industrial sectors.

Typical areas include:

  • Steel processing
  • Metal processing
  • Wire manufacturing
  • Cable manufacturing
  • Paper production
  • Printing
  • Converting
  • Film processing
  • Plastics processing
  • Extrusion
  • Textile machinery
  • Material handling
  • Winding
  • Unwinding
  • Coil processing
  • Large production machinery
  • Industrial test equipment

31. Typical Machine Types

Typical machinery may include:

  • Large winding machines
  • Rewinders
  • Unwinders
  • Wire-drawing equipment
  • Cable-processing equipment
  • Large rollers
  • Coil-processing systems
  • Strip-processing lines
  • Printing equipment
  • Coating lines
  • Laminating systems
  • Slitting equipment
  • Extruders
  • Paper-processing machinery
  • Material-handling systems
  • High-inertia production machinery

32. Advantages for Continuous Production

In continuous manufacturing, unexpected downtime can have a significant operational impact.

Many large industrial machines have been optimized mechanically over a long period.

A complete machine redesign may therefore be unnecessary if the primary issue is an aging drive.

A DC drive modernization can potentially preserve:

  • Existing motor
  • Existing gearbox
  • Existing coupling
  • Existing rolls
  • Existing shafts
  • Existing mechanical transmission
  • Existing feedback arrangement
  • Existing machine structure

while replacing the drive-control section.

33. Advantages for High-Inertia Loads

High-inertia machinery benefits from controlled acceleration and deceleration.

The drive must manage both energy delivery to the motor and energy returned from the motor during braking.

The regenerative architecture of the 20P41AD207RA0NNN makes it suitable for machinery where these transitions occur frequently.

This can include large reels, rolls, drums, winding equipment, and process machinery.

34. Advantages for Reversing Machinery

A reversing machine can require the motor to move through several operating states in a short period.

For example:

Forward Motoring → Forward Regeneration → Reverse Motoring

The drive must control the transition without allowing uncontrolled torque or speed changes.

Four-quadrant operation provides the appropriate control structure for this type of application.

35. Installation Requirements

The 20P41AD207RA0NNN is an IP20 open-style drive and should therefore be installed in a suitable protected electrical enclosure.

The installation should provide:

  • Proper cooling
  • Appropriate ventilation
  • Adequate electrical clearance
  • Suitable mechanical support
  • Proper grounding
  • Protection from direct moisture
  • Protection from conductive contamination
  • Suitable cable routing
  • Maintenance access

Power cables and feedback cables should be arranged appropriately to reduce electrical interference.

The drive’s high current capacity means that cable selection and termination also deserve careful attention.

36. Cabinet Planning

The approximate drive dimensions are:

311 × 388 × 350 mm

The approximate drive weight is:

25.5 kg

A cabinet should therefore be designed with additional space around the drive.

The total installation footprint will be larger than the drive itself because the system also requires space for:

  • Power terminals
  • Cable bends
  • Grounding
  • Feedback cables
  • Control terminals
  • Cooling airflow
  • Maintenance access
  • Other electrical components

37. Maintenance and Service Considerations

A modern digital DC drive can simplify maintenance compared with older generations of analog or electromechanical drive technology.

Maintenance activities may include:

  • Checking drive status
  • Reviewing fault conditions
  • Checking motor current
  • Checking feedback signals
  • Verifying I/O
  • Inspecting control wiring
  • Checking cooling
  • Checking cabinet contamination
  • Reviewing operating parameters
  • Inspecting power connections

For machines that use several related PowerFlex products, a standardized product family can also simplify maintenance training and spare-parts planning.

38. Product Selection Checklist

Selection Item Requirement / Check
Motor Technology DC Motor
Motor Power Approximately 125 HP / 93 kW
Armature Current Confirm against 207 A rating
Armature Voltage Confirm compatibility
Input Voltage 480 VAC class
Input Phase 3 Phase
Input Type 6 Pulse
Field Supply Single-Phase Regulated
Field Voltage Confirm motor requirement
Field Current Confirm motor requirement
Feedback DC Tachometer / Encoder
Regeneration Confirm requirement
Motor Speed Confirm base and maximum speed
Load Inertia Confirm machine characteristics
Acceleration Confirm required acceleration
Deceleration Confirm required braking
Cabinet Space Allow for approximately 311 × 388 × 350 mm drive body
Drive Weight Approximately 25.5 kg
HIM Blank Plate / No HIM
Communication No standard communication module in this configuration

39. Key Specifications at a Glance

Category Specification
Model 20P41AD207RA0NNN
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 207 A
Motor Rating 125 HP
Motor Power Approximately 93 kW
Operation Four-Quadrant Regenerative
Frame Size B
Field Supply Single-Phase Regulated
Enclosure IP20
Enclosure Type NEMA/UL Type Open
Conformal Coating Yes
Feedback DC Tachometer / Encoder
Digital I/O Up to 12
Analog Inputs Up to 3
Analog Outputs Up to 4
HIM Blank Plate / No HIM
Communication Module None Standard
Height Approx. 311 mm
Width Approx. 388 mm
Depth Approx. 350 mm
Dimensions Approx. 311 × 388 × 350 mm
Weight Approx. 25.5 kg
Mounting Panel / Surface Mount
Main Application High-Power Industrial DC Motor Control
Typical Motor Class 125 HP / 93 kW

40. Product Advantages Summary

Advantage Practical Benefit
207 A Output Suitable for high-current DC motor applications
125 HP Rating Supports large industrial motors
93 kW Class Suitable for major production machinery
Four-Quadrant Operation Controls motoring and regeneration in both directions
Regenerative Braking Suitable for frequent deceleration
480 VAC Input Suitable for common industrial three-phase systems
DC Motor Compatibility Allows suitable existing DC motors to remain in service
Tachometer Feedback Supports closed-loop speed regulation
Encoder Feedback Provides additional feedback flexibility
Flexible I/O Supports machine-level control
Conformal Coating Provides additional protection to electronic assemblies
Frame B Appropriate for higher-power drive applications
IP20 Construction Suitable for protected control cabinets
Retrofit Capability Useful for modernization of existing DC machinery

41. Product Description

The Allen-Bradley 20P41AD207RA0NNN PowerFlex DC Drive is a high-power regenerative DC drive designed for 480 VAC, three-phase industrial power systems and 125 HP / approximately 93 kW DC motors.

With a rated output current of 207 A, the drive is designed for demanding motor-control applications where high current capacity, controlled acceleration, controlled deceleration, and regenerative operation are required.

Its four-quadrant architecture allows the motor to operate in forward and reverse directions while supporting both motoring and regenerative braking conditions.

The drive also provides DC tachometer and encoder feedback capability, allowing it to be incorporated into closed-loop speed-control systems.

Its extensive I/O capability provides additional flexibility for integration with machine control systems, while the conformal-coated electronics provide additional protection in industrial environments.

The approximately 311 × 388 × 350 mm Frame B construction and approximately 25.5 kg weight should be taken into account when designing the electrical cabinet.

42. Overall Application Value

The 20P41AD207RA0NNN is particularly valuable in industrial environments where large DC motors remain an important part of the production process.

Instead of automatically replacing the motor and mechanical system, the drive can be considered as part of a DC modernization strategy.

This is particularly relevant when:

  • The existing DC motor remains mechanically sound.
  • The machine requires four-quadrant operation.
  • The process includes frequent braking.
  • The machine has substantial inertia.
  • Closed-loop speed control is required.
  • Existing mechanical equipment is difficult to modify.
  • Production downtime must be minimized.
  • The machine has already been optimized around a DC motor.

43. Final Technical Summary

Specification Category 20P41AD207RA0NNN
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex DC
Product Type Digital Regenerative DC Drive
Catalog Number 20P41AD207RA0NNN
Input Voltage 480 VAC
Input Phase 3 Phase
Input Type 6 Pulse
Output Current 207 A
Motor Rating 125 HP
Motor Rating Approximately 93 kW
Motor Operation Four-Quadrant
Regeneration Yes
Frame B
Field Supply Single-Phase Regulated
Enclosure IP20 / NEMA/UL Type Open
Conformal Coating Yes
Feedback DC Tachometer / Encoder
Digital I/O Up to 12
Analog Inputs Up to 3
Analog Outputs Up to 4
HIM Blank Plate / No HIM
Communication Module None Standard
Dimensions Approx. 311 × 388 × 350 mm
Weight Approx. 25.5 kg
Main Application High-Power DC Motor Control
Main Retrofit Application Existing DC Motor Drive Modernization

44. Final Summary

The 20P41AD207RA0NNN is a 125 HP / 93 kW, 207 A PowerFlex DC regenerative drive intended for large industrial DC motor applications.

Its most important characteristics are the 480 VAC three-phase input, 207 A output, four-quadrant regenerative operation, Frame B construction, feedback capability, flexible I/O, and 125 HP motor class.

The model is particularly well suited to machinery where the motor must repeatedly accelerate, decelerate, reverse, or operate under regenerative conditions.

Typical applications include winding, unwinding, wire drawing, cable processing, metal processing, printing, paper processing, converting, extrusion, material handling, and other high-power production machinery.

The approximate physical dimensions are 311 × 388 × 350 mm, and the approximate weight is 25.5 kg, making cabinet space, mounting strength, ventilation, cable routing, and maintenance clearance important parts of the installation design.

The five closely related same-series models are:

  • 20P41AD129RA0NNN — 75 HP / 56 kW / 129 A
  • 20P41AD167RA0NNN — 100 HP / 75 kW / 167 A
  • 20P41AD207RA0NNN — 125 HP / 93 kW / 207 A
  • 20P41AD250RA0NNN — 150 HP / 112 kW / 250 A
  • 20P41AD330RA0NNN — 200 HP / 149 kW / 330 A

Among these, the 20P41AD207RA0NNN occupies the 125 HP / 93 kW position and is an appropriate reference point for high-power DC motor applications requiring more capacity than the 100 HP model.

For a final application decision, the most important information to verify is the actual motor armature voltage, armature current, field voltage, field current, base speed, maximum speed, feedback type, load inertia, duty cycle, acceleration requirements, deceleration requirements, and regenerative operating conditions.

This makes the 20P41AD207RA0NNN a strong fit for large industrial DC motor systems where the goal is to combine high-current motor control with regenerative operation while retaining an established DC motor and mechanical machine architecture.



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