• Allen Bradley 20P41AB7P0RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AB7P0RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AB7P0RA0NNN PowerFlex DC Drive
  • Allen Bradley 20P41AB7P0RA0NNN PowerFlex DC Drive
Allen-Bradley 20P41AB7P0RA0NNN PowerFlex DC Drive – 230V AC, 1.5 HP, 7 A 1. Product Overview The Allen-Bradley 20P41AB7P0RA0NNN is a compact PowerFlex DC Drive designed for precise control of small indu……
Allen Bradley 20P41AB7P0RA0NNN PowerFlex DC Drive
  • Allen Bradley
  • 20P41AB7P0RA0NNN
  • PowerFlex DC Drive
  • USA
  • 267 × 359 × 287 mm
  • 11kg
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Allen-Bradley 20P41AB7P0RA0NNN PowerFlex DC Drive – 230V AC, 1.5 HP, 7 A

1. Product Overview

The Allen-Bradley 20P41AB7P0RA0NNN is a compact PowerFlex DC Drive designed for precise control of small industrial DC motors requiring regenerative, four-quadrant operation.

This model is rated for a 230V AC nominal input, three-phase AC supply, and 7 A DC output current, with a normal-duty motor rating of approximately 1.2 kW / 1.5 HP. It uses the Frame A mechanical configuration and is designed as an IP20, NEMA/UL Type Open drive with conformal coating.

The 20P41AB7P0RA0NNN belongs to the regenerative version of the PowerFlex DC Drive family. Its four-quadrant operating capability makes it suitable for applications that require controlled motoring as well as regenerative braking or reversing operation.

The drive is supplied with a blank plate rather than a local HIM, includes a user manual, and does not include a communication module in this catalog configuration. The standard field supply is single-phase regulated, and the input configuration is six-pulse.

Because of its relatively small 7 A output rating and compact Frame A construction, this model is intended for much smaller motor systems than the high-current 20P41AB521RA0NNN or 20P41AB700RA0NNN models. It is therefore particularly useful for auxiliary machinery, compact process equipment, small conveyors, tension-control systems, and other industrial machines that continue to use DC motor technology.


2. Brand and Product Series

Item Specification
Brand Allen-Bradley
Product Family PowerFlex DC Drive
Series PowerFlex Digital DC Drive
Product Type Regenerative DC Drive
Catalog Number 20P41AB7P0RA0NNN
Motor Operation Four-Quadrant / Regenerative
Nominal Input Voltage 230V AC
Input Voltage Class 200…240V AC
Input Phase Three-Phase
Input Type 6-Pulse
DC Output Current 7 A
Motor Rating 1.5 HP
Motor Rating Approx. 1.2 kW
Frame Size Frame A
Field Supply Single-Phase Regulated
Enclosure IP20 / NEMA/UL Type Open
Conformal Coating Yes
HIM Blank Plate / No HIM
Communication Module Not Included
Documentation User Manual

The PowerFlex DC Drive series is designed for industrial DC motor control applications where controlled speed, torque response, reversing, and regenerative operation are important.

The 20P41AB7P0RA0NNN is one of the smaller models in the 230V regenerative range. The same series extends from low-current 1.5 HP models through much larger high-power units, allowing the same general drive family to be used across a broad range of industrial machinery.


3. Main Technical Parameters

Parameter 20P41AB7P0RA0NNN Specification
Model / Catalog Number 20P41AB7P0RA0NNN
Drive Family PowerFlex DC Drive
Drive Type Regenerative DC Drive
Nominal AC Input 230V AC
AC Input Class 200…240V AC
Input Phase 3-Phase
Input Type 6-Pulse
DC Output Current 7 A
Normal-Duty Power 1.2 kW
Normal-Duty Horsepower 1.5 HP
Motor Operation Four-Quadrant
Regenerative Operation Yes
Frame Size Frame A
Field Supply Single-Phase Regulated
Enclosure IP20
NEMA/UL Type Type Open
Conformal Coating Yes
HIM No HIM / Blank Plate
Communication Module No
Approx. Dimensions 267 × 359 × 287 mm
Approx. Drive Weight 11 kg
Approx. Packaged Weight 13 kg
Mounting Vertical Cabinet / Panel Mounting
Cooling Air-Cooled
Overload Capability 150% for 60 sec; 200% for 3 sec

The Frame A dimensional envelope is approximately 267 mm high × 359 mm wide × 287 mm deep, according to the published technical data for the Frame A construction. The same documentation gives approximately 11 kg for the applicable 230V Frame A drive group and approximately 13 kg including packaging.

These dimensions are useful for preliminary cabinet planning. Final panel fabrication should always allow additional space for cable routing, terminal access, ventilation, mounting hardware, and maintenance clearance.


4. Electrical Specifications

Electrical Parameter Specification
Catalog Number 20P41AB7P0RA0NNN
Input Voltage 230V AC nominal
Input Voltage Class 200…240V AC
Input Phase 3-Phase
Input Type 6-Pulse
DC Armature Output 7 A
Normal-Duty Motor Power 1.2 kW
Normal-Duty Motor Rating 1.5 HP
Motor Type DC Motor
Operating Mode Four-Quadrant
Regeneration Yes
Field Supply Single-Phase Regulated
Overload 150% for 60 seconds
Short-Term Overload 200% for 3 seconds
Enclosure IP20
Frame A

The 7 A output rating is the defining electrical characteristic of this model. It places the drive at the low-current end of the 230V regenerative PowerFlex DC Drive range.

For a small DC motor system, this rating provides a compact solution without requiring the larger physical construction associated with higher-current models.

The actual motor selection should nevertheless be based on the motor nameplate, armature voltage, armature current, field requirements, speed range, duty cycle, and application load profile.


5. Four-Quadrant Operation

The 20P41AB7P0RA0NNN is a regenerative DC drive designed for four-quadrant motor operation.

Four-quadrant operation allows the motor control system to manage both forward and reverse motoring conditions as well as regenerative conditions associated with controlled braking.

This is useful in machinery where the motor needs to accelerate and decelerate repeatedly, change direction, or control a load that can drive the motor during part of the operating cycle.

For example, a small winding mechanism may require the motor to drive the material in one direction during one portion of the process and then operate under regenerative conditions when the mechanical load changes.

Likewise, a small conveyor or positioning mechanism may require controlled braking rather than simply allowing the motor to coast to a stop.

The regenerative architecture is therefore one of the main characteristics separating this model from a basic non-regenerative DC drive.


6. Product Introduction

The Allen-Bradley 20P41AB7P0RA0NNN is a compact industrial DC motor drive intended for applications where a relatively small DC motor requires controlled speed and regenerative operation.

Its 230V AC input class and 7 A DC output make it suitable for smaller industrial machinery while maintaining the same general PowerFlex DC Drive architecture used across larger models.

The Frame A construction provides a relatively compact physical package compared with the larger B, C, and D frame drives used at higher power ratings.

The model uses an IP20 / NEMA/UL Type Open enclosure configuration. This means that it is intended to be installed as part of a suitable electrical enclosure rather than exposed directly to dust, water, oil, or other environmental contaminants. The technical documentation also specifies that airflow through the drive should not be obstructed and that proper mounting orientation and clearance should be maintained.

The conformal-coated configuration adds protection to the electronic assemblies, making the drive more appropriate for industrial control environments than an unprotected electronic assembly would be. However, the overall installation still requires an appropriately designed cabinet.


7. Main Product Advantages

7.1 Compact DC Motor Control

One of the main advantages of the 20P41AB7P0RA0NNN is its relatively compact Frame A configuration.

For machines using smaller DC motors, there is no need to select a physically larger high-current drive simply because regenerative operation is required.

The Frame A format provides a practical solution for smaller industrial panels while retaining the functions associated with the PowerFlex DC Drive family.


7.2 Regenerative Capability

The regenerative architecture allows the drive to handle applications involving controlled braking and four-quadrant operation.

This is particularly useful for machines where the motor needs to alternate between motoring and regenerative states rather than simply accelerating and coasting.


7.3 1.5 HP Motor Capacity

The 1.5 HP / approximately 1.2 kW rating makes this model suitable for smaller DC motor applications.

It can be used where a controlled DC motor is required for process machinery, auxiliary equipment, compact material-handling systems, and other industrial applications.


7.4 High Short-Term Overload Capability

The PowerFlex DC Drive family is designed with substantial short-duration overload capability.

The technical data specifies approximately 150% overload for 60 seconds and 200% for 3 seconds.

This can be useful for machines that experience short-duration load peaks during acceleration, starting, or process transitions.


7.5 Conformal-Coated Electronics

The conformal-coated configuration provides an additional protective layer over the electronic assemblies.

This can be beneficial in industrial environments where humidity, dust, or other contaminants may be present.

The drive should nevertheless remain inside a suitable enclosure, because conformal coating does not make an IP20 drive suitable for direct environmental exposure.


7.6 Easy Integration into Control Cabinets

The drive is designed for cabinet installation and can be integrated into a larger automation system.

A typical installation can include a PLC, operator interface, external control signals, motor feedback, field circuitry, power protection, and other control components.

This allows the drive to serve as the dedicated motor-control section of a broader machine-control architecture.


8. Typical Applications

8.1 Small Conveyors

Small conveyors using DC motors can benefit from controlled starting, stopping, and speed regulation.

The regenerative functionality can also be useful where frequent braking or reversing occurs.

Typical examples include compact production conveyors, inspection conveyors, indexing conveyors, and material-transfer mechanisms.


8.2 Winding Equipment

Small winding and unwinding systems can require controlled motor speed and torque.

A regenerative DC drive can provide a suitable control solution where the motor needs to operate in both motoring and regenerative conditions.


8.3 Tension-Control Systems

Certain web-handling and material-processing machines require stable motor speed and controlled braking.

The four-quadrant characteristics of the drive can be useful when the mechanical load can drive the motor during part of the process.


8.4 Printing Equipment

Small printing machines and auxiliary printing mechanisms can use DC motors where speed regulation and controlled stopping are important.

The drive can be integrated with an external machine controller to receive speed or operating commands.


8.5 Packaging Machinery

Packaging machines often have frequent start-stop cycles.

A small DC motor may be used for rollers, feeders, tension systems, or auxiliary mechanisms.

The 20P41AB7P0RA0NNN is suitable for applicable DC motor systems where the motor’s current and voltage ratings match the drive.


8.6 Small Material-Handling Machinery

Small lifting, feeding, indexing, or material-transfer mechanisms can require controlled motor acceleration and deceleration.

A regenerative drive is particularly useful where braking behavior needs to be actively managed.


8.7 Laboratory and Test Equipment

Small industrial test stands can require controlled acceleration, reversing, and braking.

A four-quadrant DC drive can provide the electrical control required for these operating cycles.


8.8 Existing DC Motor Retrofits

The model can also be useful when modernizing an existing machine that already contains a small DC motor.

Keeping the existing motor and mechanical system may reduce the amount of mechanical modification required compared with converting the entire machine to a new motor technology.


9. Application Summary

Application Main Requirement 20P41AB7P0RA0NNN Application
Small Conveyor Speed and braking control Suitable
Winder Speed and torque control Suitable
Unwinder Regenerative operation Suitable
Packaging Machine Frequent start/stop Suitable
Printing Equipment Controlled motor speed Suitable
Web Handling Tension and braking Suitable
Material Feeder Controlled acceleration Suitable
Indexing System Controlled speed/reversal Suitable
Test Stand Four-quadrant operation Suitable
DC Motor Retrofit Replacement DC drive Suitable

Actual application suitability depends on the motor’s voltage/current rating, field requirements, feedback configuration, duty cycle, and mechanical load.


10. Mechanical Specifications

Mechanical Parameter 20P41AB7P0RA0NNN
Catalog Number 20P41AB7P0RA0NNN
Frame Size Frame A
Approx. Height 267 mm
Approx. Width 359 mm
Approx. Depth 287 mm
Approx. Drive Weight 11 kg
Approx. Packaged Weight 13 kg
Enclosure IP20
NEMA/UL Type Type Open
Mounting Vertical
Installation Electrical Cabinet
Cooling Air-Cooled
Environmental Protection Requires Suitable Enclosure
Recommended Orientation Vertical
Airflow Must Remain Unobstructed

The published Frame A dimensions are approximately 267 × 359 × 287 mm. The technical data gives the Frame A 230V drive group a drive weight of approximately 11 kg, with approximately 13 kg including packaging.

For cabinet fabrication, it is advisable to treat these as equipment dimensions rather than the complete cabinet space requirement. Additional clearance is required for wiring, ventilation, maintenance, and neighboring components.


11. Installation Requirements

The 20P41AB7P0RA0NNN should be mounted in a clean, dry industrial control environment.

Because the enclosure is IP20 / NEMA/UL Type Open, the surrounding cabinet needs to provide the environmental protection required by the actual installation.

The drive should be mounted vertically, and airflow through the unit should not be obstructed. The technical data specifies minimum clearance requirements around the drive to prevent restricted airflow from causing thermal problems.

When designing the cabinet, it is good practice to separate high-power wiring from low-level control and feedback wiring.

The incoming AC supply, motor armature wiring, field connections, feedback wiring, and control signals should be arranged according to the machine’s electrical design and applicable installation standards.


12. Thermal Management

Although this is a relatively small drive, thermal management remains important.

Electronic drives produce heat during normal operation. If several drives or other heat-generating components are installed inside the same cabinet, the total cabinet heat load should be calculated.

Ventilation openings, fans, filters, and airflow paths should be selected according to the actual cabinet environment.

Restricted airflow can raise internal temperature and reduce equipment reliability.

For installations in hot industrial environments, the ambient temperature and available cooling capacity should be evaluated before final panel design.


13. Motor Compatibility

The 20P41AB7P0RA0NNN should be selected according to the actual DC motor requirements.

Important motor parameters include:

Motor Parameter Selection Consideration
Motor Type DC Motor
Armature Current Must be compatible with 7 A drive rating
Armature Voltage Must be compatible with drive output
Field Voltage Must match field-supply requirements
Field Current Must remain within applicable limits
Rated Speed Verify against application requirements
Maximum Speed Verify motor mechanical limits
Duty Cycle Check continuous and intermittent requirements
Feedback Verify tachometer/encoder requirements
Load Torque Confirm drive capability
Acceleration Check required starting torque
Deceleration Check regenerative requirements

The 7 A drive rating should not be treated as a substitute for checking the complete motor nameplate.

The motor’s armature current, voltage, field characteristics, speed, and application duty should all be confirmed before installation.


14. Control System Integration

The 20P41AB7P0RA0NNN can be incorporated into a machine automation system with external control equipment.

A typical system may include:

Component Typical Function
PLC Machine sequencing and supervisory control
HMI Operator control and status display
DC Drive Motor speed and torque regulation
DC Motor Mechanical power
Tachometer / Encoder Speed feedback
Field Circuit Motor field control
Main Disconnect Electrical isolation
Protective Devices Power protection
Terminal Blocks Power and control connections
Safety Circuit Machine safety functions
Cabinet Cooling Thermal management

The exact architecture will vary depending on the machine.


15. Five Related Models from the Same Series

The following models are closely related to the 20P41AB7P0RA0NNN and belong to the same 230V regenerative PowerFlex DC Drive range.

Model Input DC Output Normal-Duty Power HP Frame
20P41AB9P0RA0NNN 200…240V AC, 3-Phase 9 A 1.5 kW 2 HP A
20P41AB012RA0NNN 200…240V AC, 3-Phase 12 A 2.2 kW 3 HP A
20P41AB020RA0NNN 200…240V AC, 3-Phase 20 A 3.7 kW 5 HP A
20P41AB029RA0NNN 200…240V AC, 3-Phase 29 A 5.5 kW 7.5 HP A
20P41AB038RA0NNN 200…240V AC, 3-Phase 38 A 7.5 kW 10 HP A

These models form a logical progression from the 1.5 HP version toward higher-current applications. The published product selection data places the 7 A through 110 A regenerative models in Frame A.


16. Five More Related PowerFlex DC Models

Model Input Class DC Output Motor Rating Frame Drive Type
20P41AB055RA0NNN 200…240V AC 55 A 15 HP / 11 kW A Regenerative DC
20P41AB073RA0NNN 200…240V AC 73 A 20 HP / 15 kW A Regenerative DC
20P41AB093RA0NNN 200…240V AC 93 A 25 HP / 18.5 kW A Regenerative DC
20P41AB110RA0NNN 200…240V AC 110 A 30 HP / 22 kW A Regenerative DC
20P41AB146RA0NNN 200…240V AC 146 A 40 HP / 30 kW B Regenerative DC

This group is useful when comparing the 20P41AB7P0RA0NNN with larger machines.

The catalog progression makes it possible to select a drive according to motor current and power rather than selecting a completely different drive family for every machine size.


17. Five Popular Allen-Bradley Models from Other Drive Families

The following are commonly encountered Allen-Bradley PowerFlex models from AC variable-frequency drive families. They are useful for comparison, although they are not direct replacements for the 20P41AB7P0RA0NNN because they are designed for AC motor applications.

Model Series Input Voltage Output Current Motor Rating Frame Approx. Dimensions Approx. Weight
25B-D2P3N104 PowerFlex 525 380…480V AC 2.3 A 0.75 kW / 1 HP A Approx. 72 × 152 × 172 mm Approx. 1.1 kg
25B-D6P0N104 PowerFlex 525 380…480V AC 6.0 A 2.2 kW / 3 HP A Approx. 72 × 152 × 172 mm Approx. 1.1 kg
25B-D010N104 PowerFlex 525 380…480V AC 10.5 A 4 kW / 5 HP B Approx. 87 × 180 × 172 mm Approx. 1.6 kg
25B-D017N104 PowerFlex 525 380…480V AC 17 A 7.5 kW / 10 HP C Approx. 109 × 220 × 184 mm Approx. 2.3 kg
25B-D024N114 PowerFlex 525 380…480V AC 24 A 11 kW / 15 HP D Approx. 130 × 260 × 212 mm Approx. 3.9 kg

These models belong to an AC variable-frequency drive family rather than the PowerFlex DC Drive family.

For a new machine, an AC drive may be considered when the machine is being designed around an AC motor. For an existing machine with a DC motor, however, replacing the DC drive with an AC drive generally involves much more than simply changing the controller.


18. DC Drive and AC Drive Comparison

Feature 20P41AB7P0RA0NNN Typical AC Variable-Frequency Drive
Motor Technology DC Motor AC Motor
Input 230V AC Model dependent
Output Controlled DC Variable-frequency AC
Output Current 7 A DC Model dependent
Motor Rating 1.5 HP Model dependent
Regenerative Operation Yes Depends on system configuration
Four-Quadrant Operation Yes Depends on drive/system
Existing DC Motor Directly applicable Requires conversion
Small Motor Applications Yes Yes
Cabinet Installation Yes Depends on model
Retrofit Suitability Existing DC systems New or converted AC systems
Speed Control DC motor control Variable-frequency motor control

The choice between a DC drive and an AC drive should be based on the motor technology, machine design, required control characteristics, and modernization objectives.


19. Retrofit Applications

The 20P41AB7P0RA0NNN can be useful for small DC motor retrofit projects.

Many industrial machines have been in service for years and may still contain DC motors because the original mechanical design was based on DC motor technology.

Replacing only the drive can sometimes allow the existing motor, gearbox, mechanical transmission, and production process to remain in place.

A retrofit project may involve:

  • Existing DC motor
  • Existing gearbox
  • Existing mechanical transmission
  • Existing tachometer or encoder
  • Existing PLC
  • Existing operator station
  • Existing machine wiring
  • Replacement DC drive
  • Updated protection
  • Updated control wiring
  • Cabinet modifications

Before selecting the drive, the original motor nameplate and existing drive parameters should be reviewed.


20. Cabinet Installation

The 20P41AB7P0RA0NNN is designed for integration into a suitable electrical cabinet.

The nominal drive dimensions are approximately 267 × 359 × 287 mm, but the actual cabinet should be larger because additional space is required around the drive.

The cabinet designer should allow space for:

  • AC input wiring
  • DC motor wiring
  • Field wiring
  • Control wiring
  • Feedback wiring
  • Terminal blocks
  • Protective devices
  • Disconnect equipment
  • Ventilation
  • Maintenance access

The drive should be installed vertically and airflow should remain unobstructed.


21. Maintenance

Routine maintenance should include inspection of the cabinet environment, ventilation, wiring, terminals, and motor system.

Cooling airflow should be checked periodically because dust accumulation or blocked filters can restrict ventilation.

Electrical terminals should be inspected according to the applicable maintenance schedule.

For an existing DC motor system, the motor itself should also be inspected.

Important motor maintenance areas include:

  • Brushes
  • Commutator
  • Bearings
  • Field circuit
  • Armature circuit
  • Insulation
  • Mechanical alignment
  • Cooling

A reliable drive cannot compensate for a mechanically damaged or electrically deteriorated DC motor.


22. Troubleshooting Structure

When troubleshooting a system containing the 20P41AB7P0RA0NNN, it is useful to separate the system into several functional areas.

Area Items to Check
AC Input Voltage, phase, protective devices
Armature Output DC voltage and current
Motor Brushes, commutator, bearings
Field Field voltage and current
Feedback Encoder/tachometer signal
Control Enable, start/stop, speed reference
Mechanical Load Gearbox, bearings, load resistance
Cabinet Temperature and airflow
Wiring Loose terminals or damaged cables
Regeneration Braking and reversing behavior

This approach helps determine whether an abnormal condition originates from the drive, motor, feedback system, control circuit, power supply, or mechanical load.


23. Selection Guidelines

Selection Factor Recommended Check
Motor Type DC motor
Motor Power Approximately 1.5 HP
Armature Current Compatible with 7 A rating
Input Voltage 200…240V AC class
Input Phase 3-Phase
Field Supply Single-phase regulated
Operating Mode Four-quadrant
Regenerative Requirement Confirm application needs
Feedback Verify tachometer/encoder
Cabinet IP20 drive requires enclosure
Cooling Provide adequate airflow
Environment Clean, dry cabinet environment
Duty Cycle Verify acceleration/deceleration profile
Motor Speed Verify rated and maximum speed
Mechanical Load Confirm torque requirements

24. Model Selection Within the Same Family

The 20P41AB7P0RA0NNN sits at the beginning of the 230V regenerative PowerFlex DC Drive range.

A simplified selection sequence is:

DC Current Motor Rating Model
7 A 1.5 HP / 1.2 kW 20P41AB7P0RA0NNN
9 A 2 HP / 1.5 kW 20P41AB9P0RA0NNN
12 A 3 HP / 2.2 kW 20P41AB012RA0NNN
20 A 5 HP / 3.7 kW 20P41AB020RA0NNN
29 A 7.5 HP / 5.5 kW 20P41AB029RA0NNN
38 A 10 HP / 7.5 kW 20P41AB038RA0NNN
55 A 15 HP / 11 kW 20P41AB055RA0NNN
73 A 20 HP / 15 kW 20P41AB073RA0NNN
93 A 25 HP / 18.5 kW 20P41AB093RA0NNN
110 A 30 HP / 22 kW 20P41AB110RA0NNN

The first group of these models uses the Frame A configuration, providing a consistent mechanical platform across a range of smaller motor ratings.


25. Detailed Product Specification Summary

Specification 20P41AB7P0RA0NNN
Brand Allen-Bradley
Series PowerFlex DC Drive
Product Type Regenerative Digital DC Drive
Catalog Number 20P41AB7P0RA0NNN
Input Voltage 230V AC
Input Voltage Class 200…240V AC
Input Phase 3-Phase
Input Type 6-Pulse
DC Output Current 7 A
Normal-Duty Power 1.2 kW
Normal-Duty Horsepower 1.5 HP
Motor Operation Four-Quadrant
Regenerative Operation Yes
Field Supply Single-Phase Regulated
Frame A
Enclosure IP20
NEMA/UL Type Open
Conformal Coating Yes
HIM Blank Plate / No HIM
Communication Module Not Included
Approx. Height 267 mm
Approx. Width 359 mm
Approx. Depth 287 mm
Approx. Drive Weight 11 kg
Approx. Packaged Weight 13 kg
Mounting Vertical
Cooling Air-Cooled
Overload Rating 150% for 60 sec
Short-Term Overload 200% for 3 sec
Typical Application Small Industrial DC Motor Control
Main Feature Four-Quadrant Regenerative Operation

The dimensions and weight in this table are approximate technical-data values for the Frame A construction and should be treated as preliminary mechanical-planning information rather than a substitute for the final mechanical drawing.


26. Professional Product Description

The Allen-Bradley 20P41AB7P0RA0NNN is a compact PowerFlex regenerative DC drive designed for industrial applications requiring controlled operation of small DC motors.

Rated for 230V AC, three-phase input and 7 A DC output, the drive provides a normal-duty capacity of approximately 1.5 HP / 1.2 kW. Its Frame A construction makes it suitable for smaller control cabinets while retaining the four-quadrant regenerative functionality required by applications involving controlled acceleration, deceleration, reversing, and regenerative braking.

The drive is configured with an IP20 / NEMA/UL Type Open enclosure, conformal coating, a blank HIM plate, user documentation, and no communication module in the standard configuration. Its single-phase regulated field supply and six-pulse input configuration are part of the standard product configuration.

The 20P41AB7P0RA0NNN can be applied to small conveyors, winding and unwinding systems, packaging machinery, printing equipment, tension-control systems, material feeders, indexing mechanisms, test equipment, and other industrial machines that use compatible DC motors.

Its regenerative operation is especially useful where the machine requires active braking or frequent changes between motoring and regenerative conditions.

The compact Frame A design also makes the model practical for retrofit applications where an existing small DC motor needs a dedicated modern digital drive while the mechanical system is retained.

With approximately 267 × 359 × 287 mm of drive envelope and approximately 11 kg drive weight, it is considerably more compact than the higher-current Frame B, Frame C, and Frame D PowerFlex DC models.

For final application selection, the motor armature current, armature voltage, field requirements, feedback device, speed range, load profile, acceleration and deceleration requirements, cabinet environment, and available AC supply should all be verified.

The 20P41AB7P0RA0NNN is therefore best viewed as a small-frame, low-current, four-quadrant regenerative DC motor controller within the PowerFlex DC Drive family, providing a practical solution for compact industrial DC motor applications where controlled speed and regenerative operation are required.



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