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The Allen-Bradley 20P21AF565RA0NNN is a high-power PowerFlex DC Drive designed for demanding industrial motor-control applications requiring stable, adjustable-speed DC motor operation at a high power level.
This model is rated for a 690 VAC three-phase supply class and provides a 565 A DC output rating, corresponding to approximately 500 HP or 373 kW under the applicable normal-duty rating.
The 20P21AF565RA0NNN belongs to the PowerFlex Digital DC Drive family and is configured as a non-regenerative, two-quadrant DC drive. It is intended for applications where controlled acceleration, deceleration, speed regulation, torque control, and reliable DC motor operation are required.
The unit uses an IP20 enclosure with a NEMA/UL Type Open construction and conformal-coated circuitry. The conformal coating is particularly useful in industrial environments where additional protection of electronic components is desirable.
The catalog number is supplied without a Human Interface Module, using a blank plate configuration. It is also specified without a standard communication module, allowing the control architecture to be configured according to the requirements of the overall machine or plant system.
| Parameter | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Series | PowerFlex Digital DC Drive |
| Product Family | PowerFlex DC Drive |
| Model / Catalog Number | 20P21AF565RA0NNN |
| Product Type | Digital DC Drive |
| Drive Rating | 565 A |
| Normal-Duty Power | 373 kW |
| Normal-Duty Horsepower | 500 HP |
| AC Supply Class | 690 VAC |
| Input Phase | Three-phase |
| Drive Type | Non-regenerative DC Drive |
| Motor Operation | Two-quadrant operation |
| Enclosure Rating | IP20 |
| Enclosure Type | NEMA/UL Type Open |
| Circuit Board Protection | Conformal coated |
| Human Interface Module | No HIM / Blank Plate |
| Communication Module | None in standard configuration |
| Frame Size | C |
| Intended Motor Type | DC motor |
| Control Technology | Digital DC motor control |
| Application Class | Heavy industrial motor control |
| Installation Type | Industrial panel / cabinet installation |
The 20P21AF565RA0NNN is part of the 690 V class PowerFlex DC range. Within this range, the 565 A model sits between the 452 A / 400 HP version and the 678 A / 600 HP version, making it a high-capacity option for large DC motor installations.
| Parameter | 20P21AF565RA0NNN Specification |
|---|---|
| Model | 20P21AF565RA0NNN |
| Rated DC Output Current | 565 A |
| Normal-Duty Output Power | 373 kW |
| Normal-Duty Motor Rating | 500 HP |
| AC Input Voltage Class | 690 VAC |
| AC Input Phase | 3 Phase |
| Input Frequency | 50/60 Hz class industrial supply |
| Drive Architecture | Digital DC Drive |
| Regeneration | Non-regenerative |
| Quadrant Operation | Two Quadrant |
| Input Rectification | Six-pulse class |
| DC Motor Control | Yes |
| Speed Control | Yes |
| Current / Torque Regulation | Yes |
| Field Supply | Regulated field supply configuration |
| Communication Module | None supplied as standard |
| HIM | Blank plate / no HIM |
| Enclosure | IP20 |
| Conformal Coating | Yes |
| Frame | Frame C |
The 565 A rating is the key identifying electrical characteristic of this model. The corresponding 690 V-class selection table places the 20P21AF565RA0NNN at 373 kW and 500 HP, with a Frame C construction.
| Mechanical Parameter | Specification |
|---|---|
| Model | 20P21AF565RA0NNN |
| Frame Size | C |
| Approx. Width | 521 mm |
| Approx. Height | 511 mm |
| Approx. Depth | 416 mm |
| Approx. Product Weight | 68 kg |
| Approx. Shipping Weight | 85–95 kg |
| Mounting | Panel / cabinet mounting |
| Enclosure Type | IP20, NEMA/UL Type Open |
| Cooling | Forced-air cooling |
| Installation Environment | Industrial control cabinet |
| Service Clearance | Allow additional clearance for ventilation and maintenance |
| Mounting Orientation | Vertical cabinet mounting recommended |
The dimensions and weight above should be treated as approximate Frame C values for planning purposes. Final cabinet design should always allow for terminal access, cable bending radius, ventilation, service access, and the exact mechanical arrangement of the installed unit.
Because this is a high-power 500 HP DC drive, mechanical installation is substantially different from compact low-power AC variable-frequency drives. The cabinet, ventilation system, power wiring, protective devices, and heat dissipation arrangement should all be designed around the actual installation.
The complete catalog number is:
20P21AF565RA0NNN
The catalog number identifies the PowerFlex DC product family, voltage class, current rating, enclosure/configuration characteristics, and factory configuration.
For product selection, the most important identifying portions are the AF voltage-class designation and the 565 current designation.
The 565 portion corresponds to the 565 A drive rating, while the associated PowerFlex DC selection table identifies this model as the 500 HP / 373 kW version in the 690 V class.
The 20P21AF565RA0NNN belongs to the:
Allen-Bradley PowerFlex Digital DC Drive Series
The PowerFlex DC family is designed specifically for industrial applications that use DC motors and require controlled speed, current, torque, acceleration, and deceleration.
Unlike compact AC frequency inverters intended to control induction or permanent-magnet AC motors, a DC drive directly manages the electrical characteristics required by a DC motor system.
This makes the PowerFlex DC family particularly relevant to industrial machinery that historically uses large DC motors, especially applications where high starting torque, stable low-speed operation, controlled acceleration, and precise speed regulation are important.
The Allen-Bradley 20P21AF565RA0NNN is a high-capacity industrial DC motor drive rated at 565 A and 500 HP.
It is designed for applications where a large DC motor must operate under controlled speed and torque conditions. Its digital control architecture allows the drive to regulate motor current and speed in response to operating commands and feedback signals.
The unit is particularly suitable for large production machinery where the motor may experience frequent load changes, high starting torque requirements, controlled acceleration, or extended periods of continuous operation.
The 690 VAC three-phase input class makes this model suitable for large industrial power systems. Its 565 A output rating places it in the upper-power range of the PowerFlex DC product family.
The IP20 open construction is intended for installation inside an appropriate industrial enclosure or control cabinet. This configuration gives system integrators flexibility when designing large electrical control panels, MCC sections, drive cabinets, and centralized automation systems.
The conformal-coated circuit boards provide additional protection for electronic components and can be beneficial in industrial environments where dust, humidity, contaminants, and other environmental factors require greater consideration.
The primary function of the 20P21AF565RA0NNN is controlled DC motor operation.
The drive can regulate motor speed according to the application command while maintaining controlled motor current and torque characteristics.
This makes it suitable for machines that require stable speed during changes in production load.
The drive can provide controlled motor acceleration instead of applying the full available motor torque immediately.
Controlled acceleration helps reduce mechanical shock on couplings, gearboxes, rolls, shafts, belts, chains, and other transmission components.
This is particularly important for large industrial machines with significant rotating inertia.
The drive also provides controlled deceleration for two-quadrant applications.
This can be useful when large machinery needs to slow down in a controlled manner rather than simply removing motor power.
Controlled deceleration can help improve machine operating consistency and reduce unnecessary mechanical stress.
DC motors are well suited to applications requiring high starting torque and controlled torque response.
The drive regulates motor current to support controlled motor operation and provide predictable torque characteristics.
This is particularly useful for applications where the load changes significantly during operation.
The PowerFlex DC architecture provides digital control functions rather than relying on a simple analog-only drive arrangement.
Digital configuration allows important operating parameters to be managed in a structured manner and makes the drive suitable for integration into modern industrial automation systems.
With a 565 A rating and 500 HP normal-duty rating, the 20P21AF565RA0NNN is intended for large machines rather than small motor applications.
It is suitable for heavy industrial equipment where the motor may operate continuously and where reliable speed and torque regulation are required.
The 20P21AF565RA0NNN can be used in large steel-processing machinery where DC motors provide controlled speed and torque.
Potential applications include rolling equipment, material handling systems, processing lines, tension-control equipment, and other large mechanical systems.
The high current capability makes the drive suitable for large motors that require substantial starting torque.
Large paper machines have historically used DC motors because of their speed regulation and torque-control characteristics.
Typical applications can include large rolls, dryers, winders, unwinders, conveyors, and process sections.
A high-power DC drive can provide stable motor control across a wide operating range.
Industrial printing equipment can require precise speed coordination between different machine sections.
A DC drive can be used where an existing DC motor system requires controlled speed and torque.
The 20P21AF565RA0NNN is particularly relevant to large industrial printing machinery rather than small commercial printing equipment.
Large mining and mineral-processing equipment can require very high motor power and controlled acceleration.
Applications may include conveyors, hoists, crushers, processing equipment, and other large mechanical systems.
The high current rating of the 20P21AF565RA0NNN makes it suitable for large motor systems when the DC architecture is retained.
Large material-handling systems may require high starting torque and smooth acceleration.
DC drives can be useful for heavy conveyor systems, large lifting mechanisms, and other equipment where the motor must start under significant load.
Large lifting systems can benefit from controlled torque and speed regulation.
The drive can be integrated into an engineered control system where the motor, braking system, feedback devices, mechanical transmission, and safety circuits are designed as a complete system.
Winding machinery often requires controlled motor speed and torque.
Applications involving large reels, rolls, cables, paper, film, steel strip, wire, or similar continuous materials can require stable motor regulation throughout the winding cycle.
One of the most practical applications for the 20P21AF565RA0NNN is modernization of an existing industrial DC motor installation.
Many large industrial machines were originally designed around DC motors. Replacing the complete motor system with an AC motor can require significant mechanical redesign.
Using a modern DC drive can allow the existing motor and mechanical transmission to remain in service while improving the control system.
The 565 A output rating provides substantial capacity for large DC motors.
This makes the model suitable for high-power machinery where smaller PowerFlex DC drives would not provide sufficient current capability.
The 500 HP normal-duty rating places the 20P21AF565RA0NNN in the high-power industrial category.
It can therefore be considered for large production machines, heavy processing systems, and large mechanical drive applications.
The 690 V three-phase input class allows the drive to be integrated into high-power industrial electrical systems.
Higher-voltage industrial power systems can be advantageous when supplying large loads because the current required on the AC side can be reduced compared with lower-voltage systems of similar power.
Digital control provides a more flexible control platform than older analog DC drive technologies.
This is particularly useful when modernizing legacy industrial machinery.
The conformal-coated configuration provides additional protection for electronic circuit boards.
This can be useful for industrial environments where humidity, dust, and contaminants are important considerations.
The two-quadrant configuration is suitable for many industrial applications that require controlled forward operation and controlled deceleration without requiring full four-quadrant regenerative operation.
For applications that require regenerative braking or reverse torque operation, a regenerative PowerFlex DC model should be considered instead.
The IP20 NEMA/UL Type Open construction allows system integrators to install the drive within a larger electrical cabinet or control enclosure.
This is common for high-power industrial drive systems where ventilation, busbar systems, disconnects, fuses, contactors, control equipment, and other components are engineered as part of a complete cabinet.
The following models are closely related 690 V PowerFlex DC models. They are useful when comparing motor power and current requirements across the same product family.
| Related Model | Voltage Class | Rated Current | Normal-Duty Power | Horsepower | Frame | Drive Type |
|---|---|---|---|---|---|---|
| 20P21AF452RA0NNN | 690 VAC, 3 Ph | 452 A | 298 kW | 400 HP | C | Non-regenerative DC |
| 20P21AF565RA0NNN | 690 VAC, 3 Ph | 565 A | 373 kW | 500 HP | C | Non-regenerative DC |
| 20P21AF678RA0NNN | 690 VAC, 3 Ph | 678 A | 447 kW | 600 HP | D | Non-regenerative DC |
| 20P21AF791RA0NNN | 690 VAC, 3 Ph | 791 A | 552 kW | 700 HP | D | Non-regenerative DC |
| 20P21AF904RA0NNN | 690 VAC, 3 Ph | 904 A | 597 kW | 800 HP | D | Non-regenerative DC |
The 20P21AF565RA0NNN is therefore positioned directly between the 400 HP and 600 HP versions in this 690 V PowerFlex DC range.
For applications requiring regenerative operation, the corresponding 20P41AF family provides closely related high-power configurations.
| Model | Voltage Class | Current | Power | Horsepower | Frame | Configuration |
|---|---|---|---|---|---|---|
| 20P41AF452RA0NNN | 690 VAC, 3 Ph | 452 A | 298 kW | 400 HP | C | Regenerative DC |
| 20P41AF565RA0NNN | 690 VAC, 3 Ph | 565 A | 373 kW | 500 HP | C | Regenerative DC |
| 20P41AF678RA0NNN | 690 VAC, 3 Ph | 678 A | 447 kW | 600 HP | D | Regenerative DC |
| 20P41AF791RA0NNN | 690 VAC, 3 Ph | 791 A | 552 kW | 700 HP | D | Regenerative DC |
| 20P41AF904RA0NNN | 690 VAC, 3 Ph | 904 A | 597 kW | 800 HP | D | Regenerative DC |
The main difference is the operating architecture. The 20P21AF565RA0NNN is a non-regenerative, two-quadrant configuration, while the corresponding 20P41AF565RA0NNN is intended for regenerative applications.
| Model | Current | Power | HP | Frame | Relative Application Range |
|---|---|---|---|---|---|
| 20P21AF452RA0NNN | 452 A | 298 kW | 400 HP | C | Large industrial machinery |
| 20P21AF565RA0NNN | 565 A | 373 kW | 500 HP | C | High-power industrial machinery |
| 20P21AF678RA0NNN | 678 A | 447 kW | 600 HP | D | Very high-power machinery |
| 20P21AF791RA0NNN | 791 A | 552 kW | 700 HP | D | Heavy industrial machinery |
| 20P21AF904RA0NNN | 904 A | 597 kW | 800 HP | D | Extremely high-power machinery |
The selection should be based on the actual motor nameplate current, motor voltage, required duty cycle, ambient conditions, overload requirements, field requirements, and the complete electrical system design rather than horsepower alone.
The following five models are widely used PowerFlex AC drive configurations from the same Allen-Bradley brand. They are useful for comparison when the application is being considered for AC motor conversion or for new equipment.
They are not direct electrical replacements for the 20P21AF565RA0NNN. The 20P21AF565RA0NNN is a high-power DC drive, while the models below are PowerFlex 525 AC variable-frequency drives.
| Model | Series | Input Voltage | Approx. Current | Motor Power | HP | Frame | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|---|
| 25B-D2P3N104 | PowerFlex 525 | 380–480 VAC, 3 Ph | 2.3 A | 0.75 kW | 1 HP | A | 72 × 152 × 172 mm | 1.1 kg |
| 25B-D6P0N104 | PowerFlex 525 | 380–480 VAC, 3 Ph | 6.0 A | 2.2 kW | 3 HP | A | 72 × 152 × 172 mm | 1.1 kg |
| 25B-D010N104 | PowerFlex 525 | 380–480 VAC, 3 Ph | 10.5 A | 4.0 kW | 5 HP | B | 87 × 180 × 172 mm | 1.6 kg |
| 25B-D017N104 | PowerFlex 525 | 380–480 VAC, 3 Ph | 17 A | 7.5 kW | 10 HP | C | 109 × 220 × 184 mm | 2.3 kg |
| 25B-D024N114 | PowerFlex 525 | 380–480 VAC, 3 Ph | 24 A | 11 kW | 15 HP | D | 130 × 260 × 212 mm | 3.9 kg |
These compact AC drives are intended for substantially smaller motor applications than the 500 HP 20P21AF565RA0NNN.
| Feature | 20P21AF565RA0NNN | 25B-D2P3N104 | 25B-D6P0N104 | 25B-D010N104 | 25B-D017N104 | 25B-D024N114 |
|---|---|---|---|---|---|---|
| Drive Family | PowerFlex DC | PowerFlex 525 | PowerFlex 525 | PowerFlex 525 | PowerFlex 525 | PowerFlex 525 |
| Motor Type | DC | AC | AC | AC | AC | AC |
| Input Class | 690 VAC | 380–480 VAC | 380–480 VAC | 380–480 VAC | 380–480 VAC | 380–480 VAC |
| Current | 565 A | 2.3 A | 6.0 A | 10.5 A | 17 A | 24 A |
| Power | 373 kW | 0.75 kW | 2.2 kW | 4 kW | 7.5 kW | 11 kW |
| HP | 500 HP | 1 HP | 3 HP | 5 HP | 10 HP | 15 HP |
| Regenerative | No | No | No | No | No | No |
| Main Application | Large DC motor | Small AC motor | Small AC motor | Small AC motor | Small AC motor | Small AC motor |
| Approx. Weight | 68 kg | 1.1 kg | 1.1 kg | 1.6 kg | 2.3 kg | 3.9 kg |
This comparison illustrates the significant difference between the high-power DC drive and compact AC drives.
The 20P21AF565RA0NNN should therefore not be selected simply because another PowerFlex model has a similar control function. Motor type, voltage, current, feedback, field supply, braking requirements, and mechanical characteristics all need to be evaluated.
The 20P21AF565RA0NNN can be considered for a broad range of heavy industrial sectors, including:
| Industry | Typical Equipment |
|---|---|
| Steel | Rolling mills, processing lines, conveyors, large drives |
| Metals | Strip processing, material handling, production machinery |
| Paper | Paper machines, rolls, winders, unwinders |
| Pulp | Process machinery, pumps, conveyors, large rotating equipment |
| Printing | Large industrial printing and web-handling machinery |
| Mining | Conveyors, hoists, processing equipment |
| Cement | Large material-handling and processing equipment |
| Material Handling | Heavy conveyors, lifting systems, transport equipment |
| Industrial Manufacturing | Large production machines |
| Cable Manufacturing | Large winders, pay-off systems, take-up equipment |
| Rubber Processing | Large mixers and processing machines |
| Plastics | Large legacy DC extrusion and processing equipment |
For heavy machinery, motor control is not only about turning the motor on and off.
Large mechanical systems contain significant inertia. A large roll, flywheel, conveyor, drum, gearbox, or production line can require substantial torque during starting and controlled torque during stopping.
A high-power DC drive provides a control platform capable of managing these operating conditions.
For example, when a large conveyor starts under load, the motor may require significant current immediately. A controlled drive can manage acceleration rather than exposing the mechanical system to an uncontrolled starting event.
In winding applications, speed and torque must remain coordinated as the diameter of the material roll changes. A properly engineered DC drive system can support this type of coordinated operation.
In steel processing, the motor may need to respond rapidly to load changes while maintaining a controlled production speed. The digital control architecture of the PowerFlex DC family is well suited to such industrial control requirements.
One of the strongest practical uses of a high-power DC drive is modernization of an existing DC motor installation.
A large DC motor may already be mechanically integrated into a production machine. The motor shaft, coupling, gearbox, bearings, mounting arrangement, cooling system, and production process may all have been designed around that motor.
Replacing the entire system with an AC motor can therefore become a major mechanical engineering project.
A DC drive modernization can potentially focus the upgrade on the electrical control system while preserving much of the existing mechanical infrastructure.
This can reduce mechanical modification requirements and make the modernization project more manageable.
The actual feasibility should always be confirmed by checking the motor nameplate, field requirements, feedback system, load profile, existing cabinet arrangement, protective devices, and available power supply.
Because the 20P21AF565RA0NNN is a large 500 HP industrial drive, installation should be treated as a complete power-system engineering project.
The following factors should be considered:
The IP20 open construction means the drive is normally incorporated into an appropriate industrial electrical enclosure rather than installed as a completely sealed standalone device.
At this power level, heat management is especially important.
The cabinet design should consider:
A large DC drive should not simply be placed inside a small sealed cabinet without performing a thermal calculation.
Before selecting the 20P21AF565RA0NNN, the motor nameplate should be checked carefully.
Important motor information includes:
| Motor Parameter | Why It Matters |
|---|---|
| Motor Armature Voltage | Must be compatible with the drive configuration |
| Motor Armature Current | Must be within the drive’s current capability |
| Motor Horsepower | Used for drive sizing |
| Field Voltage | Required for correct field supply configuration |
| Field Current | Important for field controller sizing |
| Motor Speed | Required for control configuration |
| Base Speed | Important for speed regulation |
| Maximum Speed | Important for safe operation |
| Feedback Device | Encoder or DC tachometer compatibility |
| Duty Cycle | Determines thermal and overload requirements |
| Cooling Method | Affects continuous-duty capability |
| Mechanical Load | Determines acceleration and torque requirements |
The 565 A drive rating should not be interpreted as meaning that every 500 HP DC motor is automatically compatible.
Motor voltage, field characteristics, speed range, feedback, duty cycle, and load requirements must all be checked.
Large industrial DC drives require regular maintenance planning.
Typical maintenance activities can include inspection of cooling fans, cleaning of ventilation paths, inspection of power connections, checking of control wiring, examination of terminals, and verification of feedback devices.
Because high-current connections can carry substantial electrical energy, loose connections can generate heat and create reliability problems.
The cabinet environment should also be maintained carefully.
Dust accumulation can restrict airflow and increase internal temperatures.
Cooling fans should be inspected periodically.
The condition of the motor should also be considered as part of the drive maintenance program. A drive can only provide reliable control when the motor, feedback system, field system, power supply, and mechanical load are all operating correctly.
For a critical production line, maintaining an appropriate spare-parts strategy can be important.
A high-power drive such as the 20P21AF565RA0NNN may be used in a production system where unexpected downtime can have significant consequences.
A practical spare-parts plan can include:
| Spare / Service Item | Purpose |
|---|---|
| Main Drive Assembly | Rapid replacement |
| Cooling Fans | Restore thermal management |
| Control Components | Reduce troubleshooting time |
| Feedback Components | Maintain speed regulation |
| Fuses / Protection Components | Support power-system maintenance |
| Terminal Hardware | Service damaged or worn connections |
| Control Wiring | Restore control circuits |
| Documentation | Support troubleshooting and commissioning |
The exact spare-parts list should be established according to the machine design and the installed configuration.
| Model | Current | kW | HP | Frame | Suitable Position |
|---|---|---|---|---|---|
| 20P21AF452RA0NNN | 452 A | 298 kW | 400 HP | C | Lower-power alternative |
| 20P21AF565RA0NNN | 565 A | 373 kW | 500 HP | C | Main 500 HP configuration |
| 20P21AF678RA0NNN | 678 A | 447 kW | 600 HP | D | Higher-power configuration |
| 20P21AF791RA0NNN | 791 A | 552 kW | 700 HP | D | Higher-power configuration |
| 20P21AF904RA0NNN | 904 A | 597 kW | 800 HP | D | Very high-power configuration |
The sequence shows how the PowerFlex DC family scales upward in current and motor power.
When evaluating the 20P21AF565RA0NNN, it is useful to separate five different sizing factors:
The motor is approximately 500 HP under the applicable normal-duty rating.
The 565 A rating is a critical selection parameter and should be compared against the actual motor armature current.
The motor armature voltage must be compatible with the selected DC drive and its field configuration.
A motor that runs continuously at high load may have different requirements from a motor that operates intermittently.
If the machine needs regenerative braking or sustained negative torque operation, a regenerative configuration should be evaluated rather than assuming that a non-regenerative drive is sufficient.
The main reason to select a drive of this size is not simply the horsepower number.
Large industrial machines often require:
The 20P21AF565RA0NNN is designed around these requirements.
Its 565 A capacity makes it substantially different from compact motor drives used in smaller machinery.
| Advantage | Description |
|---|---|
| High Current Capacity | 565 A DC output capability |
| High Power | Approximately 373 kW / 500 HP |
| 690 V Class | Suitable for large industrial electrical systems |
| Digital Control | Modern digital DC motor control architecture |
| Two-Quadrant Operation | Suitable for controlled motoring and deceleration applications |
| Conformal Coating | Additional protection for electronic circuitry |
| IP20 Construction | Designed for industrial cabinet integration |
| Frame C | High-power compact industrial frame within the family |
| DC Motor Compatibility | Suitable for large existing DC motor systems |
| Heavy-Duty Applications | Appropriate for large industrial machinery |
| Modernization Potential | Useful for upgrading legacy DC motor control systems |
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Series | PowerFlex Digital DC Drive |
| Catalog Number | 20P21AF565RA0NNN |
| Product | PowerFlex 565 A DC Drive |
| Input | 690 VAC |
| Input Phase | 3 Phase |
| Output Current | 565 A |
| Normal-Duty Power | 373 kW |
| Motor Rating | 500 HP |
| Operation | Two Quadrant |
| Regeneration | Non-regenerative |
| Frame | C |
| Enclosure | IP20 |
| Enclosure Type | NEMA/UL Type Open |
| Circuit Board | Conformal Coated |
| HIM | Blank Plate / No HIM |
| Communication Module | None Standard |
| Cooling | Forced Air |
| Approx. Dimensions | 521 × 511 × 416 mm |
| Approx. Weight | 68 kg |
| Motor Type | DC |
| Primary Application | High-power industrial DC motor control |
| Model | Series | Voltage | Current | Power | HP | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 25B-D2P3N104 | PowerFlex 525 | 380–480 VAC | 2.3 A | 0.75 kW | 1 HP | 72 × 152 × 172 mm | 1.1 kg |
| 25B-D6P0N104 | PowerFlex 525 | 380–480 VAC | 6.0 A | 2.2 kW | 3 HP | 72 × 152 × 172 mm | 1.1 kg |
| 25B-D010N104 | PowerFlex 525 | 380–480 VAC | 10.5 A | 4.0 kW | 5 HP | 87 × 180 × 172 mm | 1.6 kg |
| 25B-D017N104 | PowerFlex 525 | 380–480 VAC | 17 A | 7.5 kW | 10 HP | 109 × 220 × 184 mm | 2.3 kg |
| 25B-D024N114 | PowerFlex 525 | 380–480 VAC | 24 A | 11 kW | 15 HP | 130 × 260 × 212 mm | 3.9 kg |
The 20P21AF565RA0NNN is a high-power DC drive, while the 25B series models listed above are AC variable-frequency drives.
The two product categories should not be treated as direct substitutes.
The 20P21AF565RA0NNN is appropriate when the machine uses a DC motor and requires a high-current DC armature control system.
A PowerFlex 525 model is intended for AC motor applications and is normally selected according to AC motor voltage, current, horsepower, overload requirements, and control requirements.
For an existing 500 HP DC motor installation, replacing the drive with a small PowerFlex 525 would not be an equivalent substitution.
A complete motor and drive-system redesign would be required if converting from a large DC motor to an AC motor.
| Application Requirement | Suitability of 20P21AF565RA0NNN |
|---|---|
| 500 HP DC motor | Suitable application range |
| 565 A DC motor current | Matching drive rating |
| Large industrial machinery | Suitable |
| Existing DC motor modernization | Suitable candidate |
| Controlled DC motor speed | Suitable |
| High starting torque | Suitable |
| Two-quadrant operation | Suitable |
| Regenerative braking requirement | Requires regenerative configuration evaluation |
| Small AC motor | Not the intended application |
| Compact machine | Generally oversized |
| New AC motor installation | AC drive family should be evaluated instead |
The Allen-Bradley 20P21AF565RA0NNN is a high-power PowerFlex Digital DC Drive rated at 565 A for 690 VAC three-phase industrial systems.
With a normal-duty rating of approximately 373 kW and 500 HP, it is intended for large DC motor applications where controlled speed, current, torque, acceleration, and deceleration are required.
Its Frame C construction, IP20 NEMA/UL Type Open enclosure, conformal-coated electronics, and high-current output make it suitable for integration into industrial control cabinets and large machine-control systems.
The model is particularly relevant to steel processing, paper and pulp machinery, printing equipment, mining equipment, large material-handling systems, heavy conveyors, winders, unwinders, and other industrial machinery that uses large DC motors.
For modernization projects, the 20P21AF565RA0NNN can be especially valuable where an existing DC motor and mechanical system remain serviceable but the original drive technology requires replacement or modernization.
The 565 A rating places the model between the 400 HP and 600 HP versions of the same 690 V PowerFlex DC family. The related 20P21AF452RA0NNN provides a lower 452 A / 400 HP configuration, while the 20P21AF678RA0NNN provides a higher 678 A / 600 HP configuration.
For applications requiring regenerative operation, the corresponding 20P41AF565RA0NNN configuration should be evaluated instead of treating the non-regenerative 20P21AF565RA0NNN as a regenerative drive.
Overall, the 20P21AF565RA0NNN is a specialized high-capacity industrial DC motor controller intended for large-scale machinery, heavy process equipment, and modernization of high-power DC motor systems.
For purchasing, replacement, or engineering purposes, the most important information to verify against the existing installation is the motor armature voltage, motor armature current, field voltage, field current, feedback device, motor speed, duty cycle, environmental conditions, braking requirements, and cabinet configuration.
The model should be selected as part of the complete motor-drive system rather than by horsepower alone.