• Allen Bradley 20P21AD495RA0NNN PowerFlex AC Drive
  • Allen Bradley 20P21AD495RA0NNN PowerFlex AC Drive
  • Allen Bradley 20P21AD495RA0NNN PowerFlex AC Drive
  • Allen Bradley 20P21AD495RA0NNN PowerFlex AC Drive
  • Allen Bradley 20P21AD495RA0NNN PowerFlex AC Drive
20P21AD495RA0NNN PowerFlex DC Drive Detailed Product Parameters, Introduction, Applications, Advantages, Series Information and Related Model Recommendations The following is organized as a product-refe……
Allen Bradley 20P21AD495RA0NNN PowerFlex AC Drive
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20P21AD495RA0NNN PowerFlex DC Drive

Detailed Product Parameters, Introduction, Applications, Advantages, Series Information and Related Model Recommendations

The following is organized as a product-reference style description. I will keep the presentation focused on the requested model and omit web links, citations, source lists and company names from the visible content.


1. Product Overview

The 20P21AD495RA0NNN is a high-power industrial DC drive belonging to the PowerFlex DC series.

It is designed for controlling large DC motors in demanding industrial applications. The model is configured for a 480 VAC, three-phase input, with a 495 A rated current and a 300 HP / approximately 224 kW motor power class.

This configuration is a two-quadrant, non-regenerative DC drive. It is intended for applications where controlled motor speed, torque and acceleration are required, but where the motor does not need to continuously return braking energy to the AC power system.

The drive uses an open-type IP20 / NEMA/UL Type Open construction and is intended to be installed inside a suitable electrical cabinet.

The standard configuration includes a blank-plate interface rather than a built-in HIM, no standard communication module, and conformal coating. The drive is air cooled and uses a regulated field converter.


2. Brand and Series Information

Item Specification
Brand Allen-Bradley
Product family PowerFlex
Product series PowerFlex DC
Product category Industrial DC Drive
Product type Digital DC Motor Drive
Model 20P21AD495RA0NNN
Rated current 495 A
Motor power 300 HP
Approximate motor power 224 kW
Input voltage 480 VAC
Input phase 3-phase
Operating configuration Two-quadrant
Regeneration Non-regenerative
Enclosure IP20, NEMA/UL Type Open
Frame Frame C
Cooling Air cooled
Field control Regulated field converter
HIM Blank plate / no HIM
Communication module None in standard configuration
Conformal coating Yes
Feedback capability DC tachometer and encoder capable
Installation Electrical cabinet / panel
Main purpose Large DC motor control

The PowerFlex DC series is intended specifically for DC motor applications and is available across a broad range of voltage, current and horsepower ratings.

The 20P21AD495RA0NNN is therefore positioned toward the high-power end of the standard drive range.


3. Detailed Technical Parameters

Parameter 20P21AD495RA0NNN
Model 20P21AD495RA0NNN
Brand Allen-Bradley
Series PowerFlex DC
Product type Digital DC Drive
Drive type DC motor drive
Input voltage 480 VAC
Input voltage class 380–480 VAC
Input phase 3-phase
Input frequency 50/60 Hz class
Converter configuration 6-pulse
Rated output current 495 A
Motor horsepower rating 300 HP
Approximate metric motor power 224 kW
Motor operation Two-quadrant
Regenerative operation No
Field converter Regulated
Field supply Single-phase
Enclosure IP20
Enclosure type NEMA/UL Type Open
Frame size Frame C
Cooling Air cooled
HIM Blank plate / no HIM
Communication module None in standard configuration
Conformal coating Yes
Feedback DC tachometer / encoder capable
Installation Cabinet or panel
Typical motor Large industrial DC motor
Typical application power 300 HP class
Approximate motor rating 224 kW
Approximate depth Approximately 584 mm
Approximate unit weight Approximately 44–45 kg
Mounting Cabinet mounted
Protection Enclosure-dependent
Typical use Heavy industrial machinery

Important mechanical note: The dimensional and weight figures above are intended for preliminary equipment planning. Because mechanical configuration, documentation revision and packaging conventions can affect published dimensions and weight, the final cabinet design should use the applicable mechanical drawing for the exact unit.


4. Key Specifications at a Glance

Specification Value
Model 20P21AD495RA0NNN
Input voltage 480 VAC
Input 3-phase
Output current 495 A
Motor rating 300 HP
Motor rating Approximately 224 kW
Converter 6-pulse
Operating mode Two-quadrant
Regenerative No
Field converter Regulated
Enclosure IP20
Frame C
Cooling Air cooled
Conformal coating Yes
HIM Blank plate
Communication module None standard
Approx. depth 584 mm
Approx. weight 44–45 kg

5. Product Introduction

The 20P21AD495RA0NNN is designed for high-power DC motor control where the machine requires substantial armature current and stable speed regulation.

With a rated output current of 495 A, this model is considerably larger than medium-capacity DC drives.

Its 300 HP rating places it in a class suitable for large industrial production machinery.

DC motors have historically been used extensively in applications where high starting torque, broad speed control and accurate speed regulation are important.

Even though many newer machines use AC motors and modern AC drives, a large number of existing industrial machines continue to use DC motors because their mechanical systems, motors and production processes are still effective.

For these applications, a modern digital DC drive can provide an effective way to update the electrical control system without necessarily replacing the entire mechanical system.


6. 495 A High-Current Capacity

The most important characteristic of this model is its 495 A current rating.

This gives the drive considerable capacity for large DC motors.

High-current capability is especially important when the motor must produce substantial torque.

For a DC motor, armature current is closely related to motor torque.

Consequently, applications involving heavy starting loads, high mechanical resistance or substantial torque requirements can benefit from a properly sized high-current drive.

The 495 A rating also gives the model a clear position above 330 A and 412 A configurations in the same product family.


7. 300 HP / 224 kW Power Class

The drive is designed for a 300 HP motor class, equivalent to approximately 224 kW.

This is a substantial industrial power level.

A motor of this size may be found in large:

  • Paper-processing machines
  • Steel-processing equipment
  • Material-handling systems
  • Winding systems
  • Large conveyors
  • Printing machinery
  • Converting machinery
  • Industrial production lines
  • Heavy machine tools
  • Process machinery

The actual motor suitability should always be determined using the motor’s nameplate current and voltage rather than horsepower alone.


8. 480 VAC Three-Phase Input

The 20P21AD495RA0NNN is configured for a 480 VAC three-phase industrial supply.

The incoming AC power is converted into controlled DC power for the motor.

At this power level, the electrical distribution system should be designed carefully.

The following items should be evaluated:

Electrical Consideration Requirement
Supply voltage Confirm 480 VAC class
Phase Three-phase
Frequency Confirm plant frequency
Transformer capacity Verify sufficient capacity
Short-circuit level Verify system compatibility
Input protection Select suitable protective equipment
Disconnect Provide appropriate isolation
Power cables Size according to application
Grounding Verify grounding method
Harmonics Evaluate system impact
Cabinet cooling Provide adequate heat removal
Motor armature Verify voltage/current compatibility
Field circuit Verify field voltage/current

Because the drive operates at approximately 300 HP, power-system engineering is significantly more important than it would be for a small motor drive.


9. Six-Pulse DC Conversion

The drive uses a conventional six-pulse conversion arrangement.

This architecture is widely used in industrial DC drive systems.

The three-phase AC supply is converted through the power-conversion section to provide controlled DC output to the motor armature.

The six-pulse architecture offers a well-established approach for high-power DC motor control.

However, the electrical engineer should still consider the effects of the drive on the plant’s power system.

For larger installations, it can be appropriate to evaluate:

  • Harmonic current
  • Transformer impedance
  • Line reactors
  • Power factor
  • Supply voltage distortion
  • Protection coordination
  • Short-circuit current
  • Other large nonlinear loads

10. Two-Quadrant Operation

The 20P21AD495RA0NNN is a two-quadrant drive.

This means it is intended for applications that do not require full four-quadrant regenerative operation.

The drive can control the motor in its intended forward operating region, including controlled acceleration and deceleration.

However, it is not the first choice for an application where the mechanical load continuously drives the motor during braking.

Typical suitable applications include:

  • Conventional conveyors
  • Process machines
  • Paper machines
  • General production equipment
  • Some winding systems
  • Large material-handling equipment
  • Machinery where braking energy is handled separately

11. Non-Regenerative Operation

The drive is non-regenerative.

This distinction is important when selecting a DC drive.

During deceleration, some machines can cause the motor to act as a generator.

If a machine has significant inertia or an overhauling load, energy can flow back toward the drive.

A non-regenerative configuration is not intended to provide continuous regenerative energy transfer back to the AC supply.

Therefore, applications involving:

  • Frequent braking
  • Rapid reversing
  • High-inertia loads
  • Overhauling loads
  • Large downhill conveyors
  • Certain unwinders
  • High-performance tension systems

should be analyzed carefully.

A regenerative configuration may be more appropriate for those situations.


12. Regulated Field Converter

The model includes a regulated field converter.

Field control is a fundamental part of DC motor operation.

The motor field establishes magnetic flux, while armature current contributes strongly to torque.

By controlling the field, the drive can support a broader range of motor operating conditions.

This is particularly important in applications that require operation beyond the motor’s base speed.

Field weakening can allow a DC motor to operate at higher speeds while reducing magnetic flux.

The actual motor field voltage and current must be checked before commissioning.


13. Speed Control

One of the major reasons to use a high-performance DC drive is its ability to provide controlled motor speed.

The drive can regulate motor speed through armature control and, where applicable, feedback.

This is useful for machines where product quality or mechanical performance depends on stable speed.

Typical examples include:

  • Paper lines
  • Web-processing systems
  • Winding machines
  • Printing equipment
  • Large conveyors
  • Material-processing equipment
  • Industrial machine tools

14. DC Tachometer and Encoder Capability

The PowerFlex DC platform provides support for DC tachometer and encoder feedback.

Feedback can improve speed regulation considerably.

Without feedback, motor speed can vary as load changes.

With feedback, the control system can compare actual motor speed with the desired reference and adjust the motor command accordingly.

This is particularly valuable when:

  • Load changes rapidly
  • Constant speed is required
  • Multiple motors must be synchronized
  • Material tension is important
  • Machine speed must remain stable
  • Precise acceleration/deceleration is required

15. IP20 / NEMA Type Open Construction

The drive has an IP20, NEMA/UL Type Open enclosure arrangement.

This means the drive is intended to be installed in an appropriate electrical cabinet.

It should not be treated as a standalone weatherproof industrial enclosure.

The cabinet should protect the drive from:

  • Water
  • Oil contamination
  • Conductive dust
  • Excessive humidity
  • Chemical contamination
  • Mechanical impact
  • Foreign objects

The cabinet must also provide suitable airflow.


16. Conformal Coating

The 20P21AD495RA0NNN is configured with conformal coating.

Conformal coating provides additional protection to electronic components against certain environmental conditions.

This can be useful in industrial environments where humidity, dust or contamination may be present.

It should not be interpreted as meaning that the drive can be installed without an appropriate cabinet.

Environmental protection still depends heavily on cabinet design and maintenance.


17. Air-Cooled Construction

The drive is air cooled.

At a 300 HP power level, heat management becomes a significant part of the installation design.

The cabinet must provide adequate airflow and sufficient heat dissipation.

Important considerations include:

  • Ambient temperature
  • Cabinet temperature
  • Drive heat losses
  • Fan capacity
  • Airflow direction
  • Filter condition
  • Cabinet ventilation
  • Clearance around the drive
  • Other heat-generating components
  • Maintenance requirements

A cabinet that physically accommodates the drive may still be unsuitable if it cannot remove the generated heat.


18. Product Applications

18.1 Paper Manufacturing

Paper machinery is one of the classic applications for high-power DC motor control.

Large paper machines can contain multiple motors requiring stable speed and torque.

The drive can be used in applications such as:

  • Roll drives
  • Winder systems
  • Unwinder systems
  • Process drives
  • Coating equipment
  • Web-handling machinery

Stable speed regulation is important because variations can affect material tension and product quality.


18.2 Winding Machinery

Winding equipment can require accurate speed and torque control.

As the material roll diameter changes, the mechanical conditions change as well.

A DC drive can be integrated into a control system to manage:

  • Speed
  • Torque
  • Tension
  • Acceleration
  • Deceleration
  • Feedback
  • Diameter compensation

For demanding winding applications, the complete mechanical and electrical system must be evaluated to determine whether a non-regenerative drive is sufficient.


18.3 Conveyors

Large conveyors can require high starting torque.

This is especially true when the conveyor is carrying heavy materials.

Controlled acceleration can help reduce mechanical stress on:

  • Belts
  • Couplings
  • Gearboxes
  • Bearings
  • Shafts
  • Mechanical brakes

For downhill conveyors or systems where the load can drive the motor, regenerative requirements must be analyzed.


18.4 Metal Processing

Large metal-processing systems can use high-power motors for rollers, feeders and material-handling systems.

The 495 A capacity provides a substantial current rating for these applications.

Potential uses include:

  • Roller drives
  • Material handling
  • Processing lines
  • Large winding systems
  • Production machinery

18.5 Printing Machinery

Large printing systems can require consistent motor speed.

A controlled DC motor drive can support stable machine operation and can be integrated with feedback systems.

This can be important when multiple machine sections must operate at coordinated speeds.


18.6 Converting Machinery

Converting equipment often handles continuous webs of material.

Examples include:

  • Film
  • Paper
  • Foil
  • Flexible packaging
  • Industrial sheet material

Speed and tension control are important in these applications.

A DC drive can provide the motor-control foundation for such systems when the machine architecture is based around DC motors.


18.7 Heavy Material Handling

High-power material-handling machinery can benefit from the high current capacity of the drive.

The drive can provide controlled motor acceleration and speed regulation.

This can reduce sudden mechanical loading and improve overall machine operation.


19. Main Product Advantages

Advantage Description
495 A output Very high armature-current capability
300 HP rating Suitable for large industrial DC motors
224 kW class Supports substantial mechanical loads
480 VAC input Suitable for common industrial three-phase systems
Six-pulse converter Established DC power-conversion architecture
Two-quadrant operation Suitable for non-regenerative machinery
Regulated field Provides controlled motor-field operation
Encoder/tachometer capability Supports closed-loop speed regulation
Conformal coating Additional protection for electronics
IP20 construction Suitable for cabinet integration
Air cooling Practical for large industrial installations
Retrofit suitability Useful for modernizing existing DC machinery
High-power capacity Suitable for heavy-duty production equipment

20. Advantages of the 495 A Version

The 495 A model is particularly useful when a 330 A or 412 A configuration is not sufficient for the motor’s required armature current.

Its larger current capacity makes it suitable for high-torque machines.

The model also provides additional capacity for large motors in applications where the motor’s rated current approaches the upper range of smaller drive configurations.

The important point is that the drive should be matched to the motor’s actual armature current rather than selected only by the horsepower label.


21. Retrofit Advantages

The product can be particularly useful in industrial retrofit projects.

A production machine may have a DC motor that is mechanically reliable but controlled by an obsolete drive.

Replacing the drive can potentially allow the existing:

  • DC motor
  • Gearbox
  • Coupling
  • Shafting
  • Mechanical transmission
  • Production equipment

to remain in service.

This can be significantly less disruptive than redesigning the complete machine.

For large production systems, minimizing downtime can be a major consideration.


22. Motor Compatibility

Before using the 20P21AD495RA0NNN, the motor nameplate should be checked.

Motor Parameter Required Check
Armature voltage Must match drive application
Armature current Must be compatible with 495 A drive rating
Motor power Approximately 300 HP class
Field voltage Verify compatibility
Field current Verify compatibility
Base speed Check required operating speed
Maximum speed Check field-weakening requirement
Feedback Check tachometer or encoder
Feedback voltage Confirm interface requirements
Motor cooling Check duty and cooling
Motor insulation Confirm suitability
Duty cycle Continuous / intermittent
Starting torque Verify application requirement
Load inertia Verify acceleration/deceleration requirements
Braking Determine regenerative requirements

The drive should not be selected solely on the basis of horsepower.


23. Mechanical Dimensions and Weight

The 20P21AD495RA0NNN is a Frame C product.

Its physical size is larger than the Frame B models in the same series.

For preliminary planning, the following mechanical information can be used:

Mechanical Parameter Approximate Value
Model 20P21AD495RA0NNN
Frame C
Enclosure IP20
Mounting Cabinet / panel
Approximate depth 584 mm
Height Final drawing should be used
Width Final drawing should be used
Mounting holes Final mechanical drawing should be used
Ventilation clearance Application dependent
Cable clearance Application dependent
Unit weight Approximately 44–45 kg
Shipping weight Higher than unit weight
Cooling Air cooled
Installation orientation Cabinet installation

For actual cabinet fabrication, the final dimensional drawing should always take precedence over approximate catalog dimensions.


24. Weight Considerations

The approximate drive weight is 44–45 kg.

This is the bare equipment weight used for preliminary mechanical planning.

The completed cabinet will be substantially heavier after adding:

  • Circuit protection
  • Disconnect equipment
  • Fuses
  • Reactors
  • Contactors
  • Terminal blocks
  • Control wiring
  • PLC equipment
  • Communication equipment
  • Cooling equipment
  • Cabinet structure

The cabinet mounting structure should therefore be designed according to the total installed equipment weight.


25. Five Same-Series or Closely Related Models

The following five models are useful for comparing different power levels within the same PowerFlex DC family.

Model Output Current Motor Power Approx. kW Input Operation Regenerative Frame Dimensions Weight (kg)
20P21AD207RA0NNN 207 A 125 HP 93 kW 380–480 VAC, 3-phase 2-quadrant No B Frame B; final drawing required To Be Confirmed
20P21AD250RA0NNN 250 A 150 HP 112 kW 380–480 VAC, 3-phase 2-quadrant No B Frame B; final drawing required To Be Confirmed
20P21AD330RA0NNN 330 A 200 HP 149 kW 380–480 VAC, 3-phase 2-quadrant No B Frame B; final drawing required To Be Confirmed
20P21AD412RA0NNN 412 A 250 HP 187 kW 380–480 VAC, 3-phase 2-quadrant No B Frame B; final drawing required Approx. 32.6
20P21AD495RA0NNN 495 A 300 HP 224 kW 380–480 VAC, 3-phase 2-quadrant No C Approx. 584 mm depth; final drawing required Approx. 44–45

These models provide a useful progression from medium-high power to very high power.

For a 300 HP motor, the 20P21AD495RA0NNN is the closest match in this group.


26. Five Regenerative / Related Models

For machinery that requires four-quadrant operation or regenerative braking, the corresponding regenerative configurations within the same family are worth considering.

Model Current Class Motor Power Class Input Operation Regeneration Frame Dimensions Weight (kg)
20P41AD207RA0NNN 207 A 125 HP 380–480 VAC 4-quadrant Yes B Final drawing required To Be Confirmed
20P41AD250RA0NNN 250 A 150 HP 380–480 VAC 4-quadrant Yes B Final drawing required To Be Confirmed
20P41AD330RA0NNN 330 A 200 HP 380–480 VAC 4-quadrant Yes B Final drawing required To Be Confirmed
20P41AD412RA0NNN 412 A 250 HP 380–480 VAC 4-quadrant Yes B Final drawing required To Be Confirmed
20P41AD495RA0NNN 495 A 300 HP 380–480 VAC 4-quadrant Yes C Final drawing required Approx. 44–45

These regenerative configurations should not be treated as interchangeable with the target model without checking the complete electrical and control design.

The key difference is the ability to manage regenerative energy.


27. Power Comparison Within the Series

Parameter 20P21AD250RA0NNN 20P21AD330RA0NNN 20P21AD412RA0NNN 20P21AD495RA0NNN
Output current 250 A 330 A 412 A 495 A
Motor power 150 HP 200 HP 250 HP 300 HP
Approx. kW 112 kW 149 kW 187 kW 224 kW
Input voltage 380–480 VAC 380–480 VAC 380–480 VAC 380–480 VAC
Input 3-phase 3-phase 3-phase 3-phase
Converter 6-pulse 6-pulse 6-pulse 6-pulse
Operation 2-quadrant 2-quadrant 2-quadrant 2-quadrant
Regeneration No No No No
Field Regulated Regulated Regulated Regulated
Enclosure IP20 IP20 IP20 IP20
Frame B B B C
Cooling Air cooled Air cooled Air cooled Air cooled
Approx. weight To be confirmed To be confirmed Approx. 32.6 kg Approx. 44–45 kg

28. Application Suitability

Application Suitability Comments
Large conveyor ★★★★★ Excellent high-power DC application
Paper machinery ★★★★★ Very suitable
Large winder ★★★★★ Strong speed/torque-control potential
Metal processing ★★★★★ Suitable for high-power machinery
Heavy material handling ★★★★★ High current is advantageous
Printing machinery ★★★★☆ Suitable for large DC systems
Converting equipment ★★★★☆ Suitable when motor system is DC based
Machine tools ★★★★☆ Suitable for large motor applications
General process machinery ★★★★★ Strong application fit
Small machinery ★☆☆☆☆ Significantly oversized
Regenerative hoist ★★☆☆☆ Regenerative system may be preferred
Overhauling load ★★☆☆☆ Requires detailed evaluation
300 HP DC motor ★★★★★ Excellent rating match

29. Five Popular Models From the Same Brand

The following are examples of widely used products from the same industrial automation portfolio.

They are not direct replacements for the 20P21AD495RA0NNN.

Model Product Family Product Type Typical Capacity Input Main Application Dimensions Weight (kg)
25B-D017N114 PowerFlex 525 AC Drive Approx. 7.5 HP class 3-phase AC General machinery Compact; model dependent To Be Confirmed
25B-D024N114 PowerFlex 525 AC Drive Approx. 10 HP class 3-phase AC Industrial motor control Compact; model dependent To Be Confirmed
20G11ND022JA0NNNNN PowerFlex 755 AC Drive Approx. 22 HP class 3-phase AC High-performance machinery Frame dependent To Be Confirmed
1769-L33ER CompactLogix PLC Compact controller 24 VDC system Machine automation Compact module To Be Confirmed
1756-L83E ControlLogix PLC High-performance controller Chassis system Large automation systems Chassis mounted To Be Confirmed

These models cover different areas of industrial automation.

The first three are primarily associated with motor-control applications, while the latter two are programmable automation controllers.

For an existing 300 HP DC motor, these products should not be considered direct substitutions for the target DC drive.


30. Why the PowerFlex DC Series Is Suitable for DC Motor Retrofits

One of the strongest reasons to select the PowerFlex DC family is the large installed base of industrial DC motors.

Many machines were originally designed around DC motors because of their:

  • High starting torque
  • Broad speed-control range
  • Good low-speed performance
  • Stable torque characteristics
  • Convenient speed regulation
  • Mature industrial technology

When the original drive becomes obsolete, replacing the complete machine can be unnecessary.

A modern DC drive can provide a practical modernization path.

The existing motor can potentially remain in service after its electrical and mechanical condition has been checked.


31. Speed and Torque Control

The relationship between armature current and motor torque makes current control particularly important in DC motor applications.

A properly configured drive can manage the motor’s armature current while maintaining the desired speed.

This is especially useful when the mechanical load changes during production.

For example, a conveyor may have different loads at different times.

A winding machine may have changing roll diameter.

A paper machine may experience variations in material tension.

A controlled drive can respond to these changing conditions much more effectively than a simple uncontrolled power system.


32. Field Weakening Applications

A DC motor’s field can be reduced to allow operation above base speed.

This is commonly referred to as field weakening.

The regulated field converter makes field management an important part of the drive system.

Field weakening should only be used within the limits of the motor and machine.

Before commissioning, the following should be confirmed:

  • Maximum motor speed
  • Field current range
  • Armature voltage
  • Mechanical overspeed limit
  • Bearing speed limit
  • Coupling speed limit
  • Gearbox speed limit
  • Load characteristics

The motor’s maximum allowable speed should never be exceeded simply because the drive can command a higher speed.


33. Cabinet Design Considerations

Because this is an open-type drive, the cabinet is part of the overall installation.

The cabinet should provide:

  1. Mechanical support.
  2. Electrical protection.
  3. Adequate cooling.
  4. Suitable cable routing.
  5. Separation between power and signal wiring.
  6. Access for maintenance.
  7. Protection against environmental contamination.
  8. Proper grounding.
  9. Adequate clearance.
  10. Appropriate service access.

The cabinet should also be designed so that the drive’s cooling airflow is not obstructed.


34. Recommended Installation Checklist

Check Requirement
Drive model Verify 20P21AD495RA0NNN
Motor rating Verify approximately 300 HP
Armature current Verify motor nameplate
Armature voltage Verify motor nameplate
Field voltage Verify motor field
Field current Verify motor field
Input voltage Verify 480 VAC system
Input phase Verify three-phase
Feedback Identify tachometer or encoder
Braking Determine whether regeneration is required
Cabinet IP20-compatible installation
Cooling Confirm adequate airflow
Ambient temperature Verify operating range
Grounding Verify system grounding
Protection Verify fuses/breakers and coordination
Cable size Calculate based on actual installation
Mechanical space Confirm Frame C dimensions
Weight Allow approximately 44–45 kg for drive
Commissioning Verify motor parameters before operation

35. Main Benefits in Heavy Industry

The 20P21AD495RA0NNN is best viewed as a high-power industrial motor-control component rather than a general-purpose drive.

Its major strengths are concentrated in applications that require:

  • High current
  • High motor power
  • Stable speed control
  • Controlled torque
  • Field regulation
  • Closed-loop feedback
  • Industrial cabinet integration
  • DC motor retrofit capability

The combination of 495 A and 300 HP makes it particularly suitable for heavy-duty machinery.


36. Advantages and Limitations

Category Assessment
High-current operation Excellent
300 HP DC motors Excellent
Heavy industrial equipment Excellent
Speed regulation Excellent
Torque control Excellent
Feedback applications Excellent
Retrofit applications Excellent
Cabinet integration Very good
Environmental protection Requires suitable cabinet
Regenerative braking Not the intended configuration
Small motors Not economical
Outdoor standalone installation Not suitable without appropriate enclosure
High-inertia regenerative machinery Requires additional evaluation

37. Five Recommended Same-Series Models

Model Current HP kW Voltage Quadrant Frame Approx. Dimensions Weight (kg)
20P21AD207RA0NNN 207 A 125 HP 93 kW 380–480 VAC 2 B Frame B; drawing required To Be Confirmed
20P21AD250RA0NNN 250 A 150 HP 112 kW 380–480 VAC 2 B Frame B; drawing required To Be Confirmed
20P21AD330RA0NNN 330 A 200 HP 149 kW 380–480 VAC 2 B Frame B; drawing required To Be Confirmed
20P21AD412RA0NNN 412 A 250 HP 187 kW 380–480 VAC 2 B Frame B; drawing required Approx. 32.6
20P21AD495RA0NNN 495 A 300 HP 224 kW 380–480 VAC 2 C Approx. 584 mm depth Approx. 44–45

38. Five Recommended Same-Brand Models

Model Family Type Main Rating / Position Input Application Dimensions Weight (kg)
25B-D017N114 PowerFlex 525 AC Drive Approx. 7.5 HP class 3-phase AC General machinery Compact To Be Confirmed
25B-D024N114 PowerFlex 525 AC Drive Approx. 10 HP class 3-phase AC General motor control Compact To Be Confirmed
20G11ND022JA0NNNNN PowerFlex 755 AC Drive Approx. 22 HP class 3-phase AC High-performance machinery Frame dependent To Be Confirmed
1769-L33ER CompactLogix PLC Compact automation controller 24 VDC system Machine automation Compact To Be Confirmed
1756-L83E ControlLogix PLC High-performance automation controller Chassis based Large control systems Chassis mounted To Be Confirmed

39. Overall Product Assessment

Item 20P21AD495RA0NNN
Product class High-power DC drive
Series PowerFlex DC
Current class 495 A
Motor class 300 HP
Power class 224 kW
Input 480 VAC, 3-phase
Control architecture Digital DC motor control
Operation Two-quadrant
Regeneration Non-regenerative
Field Regulated
Feedback Tachometer / encoder capable
Enclosure IP20
Frame C
Cooling Air cooled
Conformal coating Yes
Installation Cabinet
Approx. depth 584 mm
Approx. weight 44–45 kg
Best application Large industrial DC motors
Particularly suitable industries Paper, metal, printing, converting, material handling and heavy manufacturing

40. Final Summary

The 20P21AD495RA0NNN is a high-power member of the PowerFlex DC series and is designed for large industrial DC motor applications.

Its main electrical characteristics are 480 VAC three-phase input, 495 A rated current, 300 HP motor capacity and approximately 224 kW power.

The drive uses a six-pulse conversion architecture, regulated field control and a two-quadrant, non-regenerative operating configuration.

Its Frame C, IP20 open-type construction and air-cooled design make it suitable for installation inside a properly engineered industrial electrical cabinet.

The model is particularly well suited to large production machinery where an existing DC motor needs reliable digital control.

Typical applications include paper machinery, winding equipment, conveyors, metal-processing machinery, printing systems, converting equipment, heavy material handling and other high-power industrial machines.

Its principal advantage is the combination of high current capacity and large motor-power capability. The 495 A rating provides sufficient capacity for a substantial range of large DC motors, while the regulated field and feedback capabilities support more demanding speed-control applications.

The model is especially valuable in retrofit situations where the existing DC motor and mechanical transmission remain usable.

For applications requiring frequent regenerative braking, rapid reversing or operation with an overhauling load, the non-regenerative configuration should be reviewed carefully and a regenerative solution may be more appropriate.

From a mechanical perspective, the model is larger than the lower-current Frame B products, with an approximate depth in the 584 mm range and an approximate unit weight of 44–45 kg. These values should be regarded as preliminary planning figures; final cabinet fabrication should use the exact mechanical dimensions for the particular unit.

In short, the 20P21AD495RA0NNN can be characterized as a 300 HP / 224 kW-class, 495 A, 480 VAC, three-phase, two-quadrant industrial DC drive for large and demanding DC motor applications.

Its strongest application areas are machines where high torque, controlled speed, regulated field operation and reliable high-current DC motor control are more important than regenerative energy recovery.



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