Our advantage
Global Logistics
We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.
Brand new and original
Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.
24-hour service
We provide 7*24 hours service to our customers. We will be there whenever you need us.
Price advantage
All our products are priced very favorably because we have our own warehouse and supply.
| Company Information | |||
| [email protected] | |||
| Mobile | +8615980777398 | ||
| +8615980777398 | |||
| 15980777398 |

The Allen-Bradley 20P21AE067RA0NNN is a PowerFlex Digital DC Drive designed for industrial DC motor control applications where stable speed regulation, controlled acceleration and deceleration, and reliable DC motor operation are required.
This model belongs to the PowerFlex DC Drive family and is configured as a non-regenerative, two-quadrant DC drive for a three-phase AC input system in the 575 VAC class. It provides a 67.5 A DC armature current rating and is associated with a 50 HP motor power rating.
The catalog number identifies a specific factory configuration rather than simply a generic drive size. The complete catalog number includes the electrical rating, enclosure arrangement, coating, operator-interface configuration, and communication configuration.
The 20P21AE067RA0NNN is particularly suited to industrial machinery that uses separately excited DC motors and requires controlled motor speed rather than simple direct-on-line motor operation.
It is also useful in applications where an existing DC motor installation needs a modern digital drive while retaining the original DC motor technology.
| Item | Description |
|---|---|
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex DC Drive |
| Drive type | Digital DC Drive |
| Catalog number | 20P21AE067RA0NNN |
| Drive configuration | Non-regenerative |
| Operating mode | Two-quadrant operation |
| Input system | Three-phase AC |
| AC voltage class | 575 VAC class |
| DC armature current | 67.5 A |
| Motor rating | 50 HP |
| Approximate motor power | 37 kW |
| Frame size | B |
| Enclosure style | IP20 / NEMA/UL Type Open |
| Cooling | Forced-air cooling |
| Communication configuration | No communication module in the specified configuration |
| Operator interface | No HIM / blank plate configuration |
| Conformal coating | Included in the specified catalog configuration |
The PowerFlex DC family is intended for applications where DC motors remain technically or economically appropriate. It provides digital control functionality while retaining the basic electrical characteristics required by traditional DC drive systems.
| Parameter | Specification |
|---|---|
| Model | 20P21AE067RA0NNN |
| Brand | Allen-Bradley |
| Series | PowerFlex DC Drive |
| Drive type | Digital DC Drive |
| Input voltage | 575 VAC class |
| Input phase | Three-phase |
| Input type | 6-pulse |
| Output type | DC armature output |
| DC armature current | 67.5 A |
| Motor power | 50 HP |
| Motor power, approximate metric equivalent | 37 kW |
| Operating mode | Two-quadrant |
| Regenerative function | Non-regenerative |
| Frame | B |
| Enclosure | IP20 / NEMA/UL Type Open |
| Field supply | Single-phase regulated |
| HIM | No HIM / blank plate |
| Communication module | None in specified configuration |
| Conformal coating | Yes |
| Typical motor application | Separately excited DC motor |
| Cooling method | Forced-air |
| Mounting | Panel / cabinet mounting |
| Height | 311 mm |
| Width | 388 mm |
| Depth | 350 mm |
| Approximate drive weight | 25.5 kg |
| Approximate packaged weight | 27.5 kg |
| Application class | Industrial motor control |
| Control category | DC motor speed and torque control |
The 20P21AE067RA0NNN uses the PowerFlex DC Frame B mechanical platform.
The standard Frame B dimensions are approximately 311 mm in the A dimension, 388 mm in the B dimension, and 350 mm in the C dimension.
For practical equipment planning, these dimensions can be treated as approximately 311 mm high × 388 mm wide × 350 mm deep, while the detailed mounting drawing should be used when designing a cabinet or replacement installation.
| Mechanical Parameter | Value |
|---|---|
| Model | 20P21AE067RA0NNN |
| Frame | B |
| Overall dimension A | 311 mm |
| Overall dimension A1 | 275 mm |
| Bottom offset A2 | 16.5 mm |
| Bottom offset A3 | 7 mm |
| Overall dimension B | 388 mm |
| Dimension B1 | 375 mm |
| Overall depth C | 350 mm |
| Approximate width | 388 mm |
| Approximate height | 311 mm |
| Approximate depth | 350 mm |
| Drive weight | 25.5 kg |
| Packaged weight | 27.5 kg |
The dimensions above refer to the Frame B drive mechanical arrangement. Terminal clearances, cable bending space, ventilation clearance, and cabinet service space must be considered separately.
The actual installation footprint can therefore be larger than the basic product dimensions, particularly where large DC armature cables, field wiring, grounding conductors, disconnect devices, or line reactors are installed.
The 20P21AE067RA0NNN is designed for a 575 VAC-class, three-phase input and has a nominal DC armature current rating of 67.5 A.
Its corresponding normal-duty motor rating is 50 HP, equivalent to approximately 37 kW.
This combination makes the drive suitable for medium-power industrial DC motors rather than small machine motors or low-power laboratory applications.
| Electrical Parameter | Specification |
|---|---|
| Model | 20P21AE067RA0NNN |
| AC input | 575 VAC class |
| Number of phases | 3 |
| Input topology | 6-pulse |
| DC armature current | 67.5 A |
| Normal-duty motor rating | 50 HP |
| Normal-duty motor rating | Approximately 37 kW |
| AC line current reference | Approximately 55.1 A |
| Drive architecture | Digital DC drive |
| Regeneration | Not included |
| Quadrant operation | Two-quadrant |
| Field supply | Single-phase regulated |
The 6-pulse input arrangement is a conventional industrial architecture for converting three-phase AC power into the DC bus and armature supply required by a DC motor.
A conventional DC motor requires controlled DC voltage and current in order to achieve controlled speed and torque.
The PowerFlex DC drive performs this function electronically. Instead of simply connecting the motor to a fixed DC source, the drive regulates the electrical quantities delivered to the motor.
This allows the motor speed to be controlled according to the machine’s process requirements.
For example, a conveyor can be commanded to operate at a low speed during loading, accelerate smoothly to production speed, and decelerate in a controlled manner when the production sequence changes.
The same principle can be used in winding machinery, material-handling equipment, printing systems, machine tools, hoists, and other industrial equipment.
The 20P21AE067RA0NNN is a non-regenerative, two-quadrant DC drive.
Two-quadrant operation is particularly useful when the motor needs to operate in forward and controlled braking regions without requiring full regenerative operation back into the AC supply.
This is different from a four-quadrant regenerative DC drive.
A non-regenerative configuration is often selected where the machine normally operates in one direction and braking energy does not need to be returned to the incoming AC electrical system.
For applications involving frequent powered reversal or substantial regenerative braking, a regenerative PowerFlex DC model may be more appropriate.
The “21” portion of the catalog structure identifies the non-regenerative drive family.
The absence of regenerative operation simplifies the system compared with a regenerative configuration.
For applications where the motor generally runs in one direction and stopping is controlled by the drive and mechanical system, a non-regenerative drive can provide a practical solution.
Typical examples include many conveyors, fans, pumps, process machines, and older DC production machines that do not require energy regeneration.
The 20P21AE067RA0NNN is part of the 575 VAC three-phase input group.
This voltage class is particularly relevant in industrial facilities where higher-voltage motor distribution is used.
The higher input voltage allows industrial equipment to transmit a given amount of power with lower current than would be required at a substantially lower voltage.
The selection of a 575 VAC-class DC drive must always be coordinated with the actual plant supply voltage, transformer arrangement, motor nameplate data, field supply requirements, and applicable electrical protection.
One of the main characteristics of the PowerFlex DC series is digital control.
Compared with older analog DC drive systems, digital control provides a more flexible platform for configuring operating parameters and coordinating the drive with an industrial control system.
The drive can be configured for different operating requirements involving speed, current, acceleration, deceleration, field control, and feedback.
This makes the platform suitable not only for new DC motor installations but also for modernization projects in which an existing DC motor is still mechanically suitable.
The specified configuration uses a regulated single-phase field supply arrangement.
The field circuit is important because a separately excited DC motor normally uses a separate field winding.
The field establishes the magnetic field required for normal motor operation.
Correct field configuration is therefore an important part of commissioning a DC motor drive.
Field wiring, field current, motor nameplate information, and field loss protection should be checked carefully when replacing an older DC drive with the 20P21AE067RA0NNN.
The catalog configuration specifies a no-HIM / blank-plate arrangement.
HIM refers to the Human Interface Module normally used for local drive configuration and operator interaction.
With a blank-plate configuration, the drive is intended to be integrated into a larger control system or configured through the appropriate engineering and control interface rather than relying on a permanently installed local keypad.
This can be useful in centralized control architectures where operators interact with the machine through a PLC, HMI, or supervisory control system.
The specified catalog number does not include a communication module.
This does not mean that the drive cannot be incorporated into an automation system.
Instead, it indicates that the particular catalog configuration does not include an additional communication option.
For a replacement project, the communication architecture should therefore be checked separately.
If the existing machine communicates with a PLC or supervisory system, the engineering team should verify how the original drive exchanged commands, references, status information, alarms, and feedback.
The 20P21AE067RA0NNN configuration includes conformal coating.
Conformal coating is useful in industrial environments because electronic control boards can be exposed to humidity, airborne contaminants, dust, and other environmental influences.
The coating provides an additional level of protection to electronic assemblies.
It does not mean that the drive can be installed in any environment without considering temperature, humidity, corrosive chemicals, dust, condensation, ventilation, and enclosure requirements.
Proper cabinet design remains important.
The 20P21AE067RA0NNN is primarily intended for industrial DC motor control.
Its 50 HP / 67.5 A rating makes it appropriate for medium-power industrial machinery where a DC motor remains in service.
Typical application areas include:
DC motors have historically been widely used on industrial conveyors because their speed and torque can be controlled over a broad operating range.
The 20P21AE067RA0NNN can be used where an existing 50 HP-class DC motor is responsible for conveyor movement.
The drive can provide controlled acceleration rather than applying full motor voltage immediately.
This helps reduce mechanical shock on belts, couplings, gearboxes, shafts, and transported products.
Controlled deceleration can also improve the behavior of a conveyor when stopping at a defined position.
Winding machinery places special requirements on motor control because speed and torque often need to change according to the diameter and tension of the material being processed.
DC motor technology has traditionally been used in these applications because of its controllability.
A PowerFlex DC drive can regulate motor operation according to the process control requirements.
Typical applications include:
Older printing machinery often uses DC motors because of the need for precise speed control.
A PowerFlex DC drive can serve as the replacement control platform while the existing DC motor remains in operation.
This can be particularly useful during machine modernization projects where replacing the complete motor and mechanical transmission would be expensive.
The drive can become part of a larger automation system involving PLC control, speed references, feedback devices, and machine interlocks.
Some machine tools and industrial production machines use DC motors because they require controllable speed and torque.
The 20P21AE067RA0NNN can be considered for such applications when the motor rating, voltage, feedback configuration, braking requirements, and mechanical characteristics are compatible.
The drive is especially relevant where the existing machine already has a suitable DC motor and the main objective is to replace an obsolete or difficult-to-maintain drive.
The drive can also be used with DC motor-driven pumps where variable-speed operation is required.
Changing motor speed can change the operating point of the pump.
For industrial process systems, controlled speed operation can be useful when the process requires different flow rates at different times.
The suitability of a DC drive for a pump should be determined from the pump curve, motor data, required speed range, starting torque, load characteristics, and control philosophy.
Fans can benefit from variable-speed operation because the required airflow is often not constant.
A DC drive can adjust motor speed according to process requirements.
For example, a ventilation system may operate at reduced speed during low-load periods and increase speed when additional airflow is required.
The motor’s field and armature characteristics must be considered when establishing the required operating range.
| Advantage | Description |
|---|---|
| Digital control | Provides flexible electronic control of a DC motor |
| 50 HP capacity | Suitable for medium-power industrial DC motor applications |
| 67.5 A armature rating | Supports substantial DC motor current |
| 575 VAC input class | Suitable for higher-voltage industrial power systems |
| Two-quadrant operation | Appropriate for applications that do not require full regeneration |
| Non-regenerative design | Straightforward solution for many conventional DC motor applications |
| Frame B construction | Compact industrial form factor for its power class |
| Conformal coating | Adds protection for electronic assemblies in industrial environments |
| Blank HIM configuration | Convenient for centralized automation architectures |
| Field regulation | Supports separately excited DC motor control |
| Digital configuration | Allows detailed adjustment of drive operating characteristics |
| Legacy-machine suitability | Useful for modernizing existing DC motor machinery |
| Industrial construction | Designed for integration into industrial control cabinets |
| Wide application range | Can be used across many process and material-handling applications |
One of the most practical uses of the PowerFlex DC family is modernization.
Many industrial plants still have machines that were originally designed around DC motors.
Replacing the entire motor, gearbox, mechanical transmission, encoder system, and drive can be a major engineering project.
If the existing motor is mechanically sound, replacing only the drive can be considerably simpler.
The 20P21AE067RA0NNN provides a modern digital drive platform for a 50 HP-class DC motor.
This approach can reduce the amount of mechanical modification required during a retrofit.
It also allows the machine to be incorporated into a more modern automation architecture.
The drive should be installed inside an appropriate industrial electrical enclosure or control cabinet.
The IP20 / NEMA/UL Type Open configuration means that the drive itself should not be treated as a completely sealed standalone outdoor enclosure.
The cabinet should provide suitable protection from dust, water, conductive contamination, excessive humidity, and mechanical damage.
Adequate ventilation is also required.
The heat generated by the drive must be removed from the cabinet so that the internal temperature remains within the permissible operating range.
DC armature current can be substantial even at a 50 HP motor rating.
The 67.5 A rating therefore requires appropriate conductor sizing and suitable termination hardware.
The actual cable size should be determined according to the applicable electrical code, installation method, ambient temperature, conductor material, permissible voltage drop, grouping, and duty cycle.
The armature conductors, field conductors, AC input conductors, grounding system, and control wiring should be physically and electrically arranged according to the installation requirements.
Special attention should be given to grounding and control wiring because industrial DC drives can be sensitive to electrical noise when installation practices are poor.
Routine maintenance should include inspection of:
A DC drive system should not be evaluated independently from the motor.
A drive can be operating correctly while the motor itself has brush wear, commutator problems, field problems, insulation deterioration, or mechanical bearing issues.
For this reason, preventive maintenance should cover the complete motor-drive system.
Depending on the application, DC motor control can use feedback to improve speed regulation.
Feedback devices can provide the drive with information about actual motor speed.
The drive can then compare actual speed with the commanded speed and adjust the motor control accordingly.
This is especially useful for machinery where constant speed is important despite changing mechanical load.
For high-precision applications, the complete feedback chain should be evaluated, including encoder or tachometer characteristics, wiring, shielding, grounding, and signal conditioning.
Before selecting the 20P21AE067RA0NNN as a replacement, several points should be checked.
The first is the motor nameplate.
The motor should be checked for:
The incoming electrical system should also be checked for the required 575 VAC-class, three-phase supply.
The drive’s two-quadrant, non-regenerative configuration should be compared with the actual braking requirements of the machine.
If the application requires frequent regeneration or powered reversal, a regenerative model may need to be considered instead.
The following models are closely related to the 20P21AE067RA0NNN and are useful for comparing power levels within the same 575 VAC non-regenerative family.
| Model | Input | DC Current | Motor Rating | Frame | Type | Typical Position |
|---|---|---|---|---|---|---|
| 20P21AE067RA0NNN | 575 VAC, 3-phase | 67.5 A | 50 HP / 37 kW | B | Non-regenerative, 2Q | Reference model |
| 20P21AE101RA0NNN | 575 VAC, 3-phase | 101.25 A | 75 HP / 56 kW | B | Non-regenerative, 2Q | Higher-power B-frame option |
| 20P21AE135RA0NNN | 575 VAC, 3-phase | 135 A | 100 HP / 75 kW | B | Non-regenerative, 2Q | 100 HP-class option |
| 20P21AE270RA0NNN | 575 VAC, 3-phase | 270 A | 200 HP / 149 kW | B | Non-regenerative, 2Q | Large B-frame option |
| 20P21AE405RA0NNN | 575 VAC, 3-phase | 405 A | 300 HP / 224 kW | B | Non-regenerative, 2Q | High-power B-frame option |
These models share the same general PowerFlex DC architecture but differ substantially in current and motor capacity.
The 20P21AE067RA0NNN is the smaller 575 VAC model in this particular group, making it appropriate when the DC motor is approximately 50 HP.
The 20P21AE101RA0NNN moves the application into the 75 HP range, while the 20P21AE135RA0NNN is suitable for approximately 100 HP.
The 20P21AE270RA0NNN and 20P21AE405RA0NNN are substantially larger and are intended for much higher-power machinery.
| Parameter | 20P21AE067RA0NNN | 20P21AE101RA0NNN | 20P21AE135RA0NNN | 20P21AE270RA0NNN | 20P21AE405RA0NNN |
|---|---|---|---|---|---|
| AC input | 575 VAC | 575 VAC | 575 VAC | 575 VAC | 575 VAC |
| Phase | 3 | 3 | 3 | 3 | 3 |
| DC current | 67.5 A | 101.25 A | 135 A | 270 A | 405 A |
| Motor HP | 50 HP | 75 HP | 100 HP | 200 HP | 300 HP |
| Motor kW | 37 kW | 56 kW | 75 kW | 149 kW | 224 kW |
| Frame | B | B | B | B | B |
| Regeneration | No | No | No | No | No |
| Operating quadrant | Two-quadrant | Two-quadrant | Two-quadrant | Two-quadrant | Two-quadrant |
| Basic enclosure class | IP20 / Open | IP20 / Open | IP20 / Open | IP20 / Open | IP20 / Open |
| Height | 311 mm | 311 mm | 311 mm | 311 mm | 311 mm |
| Width | 388 mm | 388 mm | 388 mm | 388 mm | 388 mm |
| Depth | 350 mm | 350 mm | 350 mm | 350 mm | 350 mm |
| Approx. drive weight | 25.5 kg | 25.5 kg | 25.5 kg | 29.5 kg | 32 kg |
The dimensions remain within the Frame B platform for these models, although terminal arrangements and installation requirements should be checked for the exact catalog number.
The power rating increases primarily through the electrical current capacity.
Where the machine requires regenerative braking or more advanced bidirectional energy handling, related regenerative PowerFlex DC models can be considered.
| Model | Input Class | DC Current | Motor Rating | Configuration | Frame |
|---|---|---|---|---|---|
| 20P41AE067RA0NNN | 575 VAC, 3-phase | 67.5 A | 50 HP / 37 kW | Regenerative | B |
| 20P41AE101RA0NNN | 575 VAC, 3-phase | 101.25 A | 75 HP / 56 kW | Regenerative | B |
| 20P41AE135RA0NNN | 575 VAC, 3-phase | 135 A | 100 HP / 75 kW | Regenerative | B |
| 20P41AE270RA0NNN | 575 VAC, 3-phase | 270 A | 200 HP / 149 kW | Regenerative | B |
| 20P41AE405RA0NNN | 575 VAC, 3-phase | 405 A | 300 HP / 224 kW | Regenerative | B |
The major difference between the 20P21 and 20P41 families is the regeneration architecture.
A regenerative drive becomes particularly relevant when the machine frequently decelerates a high-inertia load, operates with an overhauling load, or requires controlled motoring and braking in multiple operating conditions.
The following are representative Allen-Bradley PowerFlex models from different product families and power classes.
They are useful when comparing a DC drive installation with modern AC variable-frequency-drive alternatives.
| Model | Product Family | Approximate Voltage Class | Drive Type | Typical Application |
|---|---|---|---|---|
| 25B-D017N114 | PowerFlex 525 | 380–480 VAC class | Compact AC drive | Machinery, conveyors, pumps, fans |
| 20F11NC022JA0NNNNN | PowerFlex 753 | 380–480 VAC class | AC variable-frequency drive | Industrial machinery and process control |
| 20F11NC034JA0NNNNN | PowerFlex 753 | 380–480 VAC class | AC variable-frequency drive | Medium-power industrial equipment |
| 20G1ANB140JA0NNNNN | PowerFlex 755 | 380–480 VAC class | High-performance AC drive | Large industrial machinery |
| 20G1ANC350JA0NNNNN | PowerFlex 755 | 380–480 VAC class | High-power AC drive | Heavy industrial applications |
These models are not direct electrical replacements for the 20P21AE067RA0NNN.
The PowerFlex 525, 753, and 755 families are AC variable-frequency drives, while the 20P21AE067RA0NNN is specifically a DC drive.
Therefore, migrating from the 20P21AE067RA0NNN to an AC drive normally requires an engineering review of the motor itself.
If the original DC motor is retained, the PowerFlex DC family is generally the more direct drive technology.
If the machine is being comprehensively modernized, an AC motor and AC drive combination may become an alternative.
| Item | 20P21AE067RA0NNN | Modern AC Drive System |
|---|---|---|
| Motor technology | DC motor | AC induction or permanent-magnet motor |
| Drive type | DC drive | Variable-frequency AC drive |
| Existing DC motor retention | Yes | Usually no |
| Retrofit complexity | Potentially lower when retaining existing motor | Potentially higher |
| Mechanical modification | Can be limited | May require motor replacement |
| Brush maintenance | Required on DC motor | Generally eliminated with brushless AC motor |
| Existing DC motor investment | Preserved | Motor may need replacement |
| Speed control | Digital DC control | Variable-frequency control |
| Regenerative options | Available in regenerative family | Available depending on drive architecture |
| Best fit | Existing DC motor machinery | New or fully modernized machinery |
This comparison illustrates why the 20P21AE067RA0NNN remains relevant in industrial retrofit projects.
A drive replacement does not necessarily mean that the entire motor system has to be redesigned.
For a motor around 50 HP with a 575 VAC-class industrial power supply, the 20P21AE067RA0NNN provides a closely matched PowerFlex DC solution.
The 67.5 A armature rating corresponds to the 50 HP normal-duty rating in this product group.
However, the motor nameplate should always be checked rather than selecting the drive from horsepower alone.
Two motors with the same horsepower can have different armature voltages, armature currents, field requirements, base speeds, and feedback configurations.
The actual motor electrical data therefore determines whether this particular drive is appropriate.
For an existing production machine, one of the strongest advantages of this type of drive is the ability to maintain the existing DC motor architecture.
This can be important in plants where the mechanical system has been operating reliably for many years.
Replacing only the drive can reduce mechanical engineering work.
It can also reduce downtime compared with a complete motor and drive conversion.
Another advantage is that the drive can be integrated into a modern digital control strategy.
This allows an older DC motor system to participate in a more contemporary automation environment.
The 20P21AE067RA0NNN is particularly interesting for retrofit projects because its application is not limited to newly designed machinery.
Many older machines were designed around DC motors because of the speed-control characteristics available at the time.
If those motors are still mechanically sound, replacing the drive may be more practical than replacing the entire powertrain.
A properly engineered retrofit can preserve:
while updating the electronic motor controller.
Reliability depends on the complete installation rather than the drive alone.
The drive should be operated within its specified electrical and environmental conditions.
Cabinet temperature should be controlled.
Airflow should remain unobstructed.
Power terminals should be correctly tightened.
Control cables should be routed properly.
The motor should be inspected regularly.
Grounding should be correctly implemented.
These basic practices have a significant impact on the operating life of a DC drive installation.
The conformal-coated configuration provides additional protection for the electronics, which can be valuable in industrial environments.
Nevertheless, conformal coating should not be interpreted as a substitute for a properly designed enclosure.
Special environments require additional consideration.
These include:
The enclosure and ventilation arrangement should be designed around the actual plant environment.
A DC drive system has a different maintenance profile from a typical modern AC motor system.
The DC motor contains brushes and a commutator.
These components require periodic inspection.
Brush wear should be monitored.
The commutator should be inspected for abnormal wear, arcing, contamination, or surface damage.
The field winding should also be checked.
This is particularly important in high-duty-cycle applications where the motor operates continuously.
The drive itself should also be inspected for dust accumulation, fan operation, terminal condition, and signs of overheating.
A typical installation may include:
AC Supply → Protection → Line Reactor / Input Equipment → PowerFlex DC Drive → DC Motor
The control side can include:
PLC → Drive Command / Reference → PowerFlex DC Drive
and, where applicable:
Motor Feedback → Drive → Speed Regulation
The exact architecture depends on the machine design.
The 20P21AE067RA0NNN can therefore be treated as one component within a complete industrial motor-control system rather than as an isolated device.
The 20P21AE067RA0NNN is particularly suitable for applications with the following characteristics:
| Application Characteristic | Suitability |
|---|---|
| Existing 50 HP DC motor | Very relevant |
| 575 VAC-class three-phase supply | Relevant |
| Need for adjustable DC motor speed | Relevant |
| Conventional forward operation | Relevant |
| Two-quadrant operation | Relevant |
| No requirement for regenerative braking | Relevant |
| Industrial cabinet installation | Relevant |
| Retrofit of an older DC machine | Very relevant |
| Centralized PLC control | Relevant |
| Need for conformal-coated electronics | Relevant |
| Frequent regenerative braking | Consider regenerative alternative |
| New machine using an AC motor | Consider an AC drive instead |
The technical advantages of the 20P21AE067RA0NNN become clearer when viewed from a plant-maintenance perspective.
It is not simply a 50 HP DC power converter.
It is a complete digital motor-control platform intended to regulate the behavior of a DC motor in an industrial production environment.
For a machine that already has a suitable DC motor, this can make the drive a practical replacement or modernization component.
Its Frame B construction also provides a relatively compact mechanical package for the 50 HP class.
The conformal-coated configuration adds another layer of protection for the electronics.
The blank-HIM configuration is also useful where the machine’s main operator interface is located elsewhere.
| Recommended Model | DC Current | Motor Rating | Input | Frame | Regenerative | Approx. Dimensions | Approx. Drive Weight |
|---|---|---|---|---|---|---|---|
| 20P21AE067RA0NNN | 67.5 A | 50 HP / 37 kW | 575 VAC, 3-phase | B | No | 311 × 388 × 350 mm | 25.5 kg |
| 20P21AE101RA0NNN | 101.25 A | 75 HP / 56 kW | 575 VAC, 3-phase | B | No | 311 × 388 × 350 mm | Approx. 25.5 kg |
| 20P21AE135RA0NNN | 135 A | 100 HP / 75 kW | 575 VAC, 3-phase | B | No | 311 × 388 × 350 mm | Approx. 25.5 kg |
| 20P21AE270RA0NNN | 270 A | 200 HP / 149 kW | 575 VAC, 3-phase | B | No | 311 × 388 × 350 mm | Approx. 29.5 kg |
| 20P21AE405RA0NNN | 405 A | 300 HP / 224 kW | 575 VAC, 3-phase | B | No | 311 × 388 × 350 mm | Approx. 32 kg |
The dimensional and weight values for the related models are based on the applicable Frame B mechanical grouping and should be confirmed against the exact catalog number before cabinet fabrication.
| Model | DC Current | Motor Rating | Input | Frame | Drive Type | Approx. Drive Weight |
|---|---|---|---|---|---|---|
| 20P41AE067RA0NNN | 67.5 A | 50 HP / 37 kW | 575 VAC, 3-phase | B | Regenerative | Approx. 25.5 kg |
| 20P41AE101RA0NNN | 101.25 A | 75 HP / 56 kW | 575 VAC, 3-phase | B | Regenerative | Approx. 25.5 kg |
| 20P41AE135RA0NNN | 135 A | 100 HP / 75 kW | 575 VAC, 3-phase | B | Regenerative | Approx. 25.5 kg |
| 20P41AE270RA0NNN | 270 A | 200 HP / 149 kW | 575 VAC, 3-phase | B | Regenerative | Approx. 29.5 kg |
| 20P41AE405RA0NNN | 405 A | 300 HP / 224 kW | 575 VAC, 3-phase | B | Regenerative | Approx. 32 kg |
These models are particularly relevant when braking energy and four-quadrant-type operating requirements need to be considered.
| Model | Series | Drive Technology | Voltage Class | Approximate Power Class | Typical Use |
|---|---|---|---|---|---|
| 25B-D017N114 | PowerFlex 525 | AC variable-frequency drive | 380–480 VAC class | 7.5 kW class | Compact machines, conveyors, pumps |
| 20F11NC022JA0NNNNN | PowerFlex 753 | AC variable-frequency drive | 380–480 VAC class | Medium-power | Industrial machinery |
| 20F11NC034JA0NNNNN | PowerFlex 753 | AC variable-frequency drive | 380–480 VAC class | Medium/high-power | Process and machine applications |
| 20G1ANB140JA0NNNNN | PowerFlex 755 | High-performance AC drive | 380–480 VAC class | High-power | Large industrial equipment |
| 20G1ANC350JA0NNNNN | PowerFlex 755 | High-performance AC drive | 380–480 VAC class | High-power | Heavy industrial machinery |
These products belong to different PowerFlex families, so they should not be treated as direct drop-in replacements.
Their suitability depends heavily on motor technology, voltage, power, control method, feedback, braking, enclosure, and the existing automation system.
The catalog number 20P21AE067RA0NNN contains several pieces of product-selection information.
The 20P prefix identifies the PowerFlex DC drive product family.
The 21 identifies the non-regenerative configuration.
The AE portion identifies the 575 VAC-class three-phase input group.
The 067 corresponds to the 67.5 A rating class.
The remaining characters define additional configuration details, including the enclosure arrangement, coating, HIM arrangement, and communication configuration.
This is why it is important to specify the complete catalog number when ordering or replacing the drive.
Ordering only a partial model number can result in a drive with different options or installation characteristics.
| Category | Detailed Specification |
|---|---|
| Model | 20P21AE067RA0NNN |
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Series | PowerFlex DC Drive |
| Product type | Digital DC Drive |
| Application | Industrial DC motor control |
| Input voltage | 575 VAC class |
| Input phase | Three-phase |
| Input topology | 6-pulse |
| AC line current | Approximately 55.1 A |
| DC armature current | 67.5 A |
| Motor power | 50 HP |
| Motor power | Approximately 37 kW |
| Operating mode | Two-quadrant |
| Regenerative | No |
| Field supply | Single-phase regulated |
| Frame size | B |
| Enclosure | IP20 / NEMA/UL Type Open |
| HIM | No HIM / blank plate |
| Communication module | None in specified configuration |
| Conformal coating | Yes |
| Cooling | Forced-air |
| Height | 311 mm |
| Width | 388 mm |
| Depth | 350 mm |
| Drive weight | 25.5 kg |
| Packaged weight | 27.5 kg |
| Mounting | Industrial cabinet/panel |
| Motor type | DC motor |
| Typical motor application | Separately excited DC motor |
| Primary application | Variable-speed DC motor control |
| Typical industry | Manufacturing and process industries |
The Allen-Bradley 20P21AE067RA0NNN is a 50 HP-class PowerFlex DC drive designed for industrial applications using 575 VAC three-phase power and a 67.5 A DC armature output.
Its main purpose is to provide controlled operation of a DC motor, allowing the motor’s speed and operating behavior to be managed digitally rather than relying on a fixed DC supply.
The model is particularly relevant to industrial modernization projects where an existing DC motor remains mechanically suitable.
Its two-quadrant, non-regenerative architecture makes it appropriate for conventional applications where full regenerative operation is not required.
The Frame B mechanical package measures approximately 311 mm high, 388 mm wide, and 350 mm deep, with an approximate drive weight of 25.5 kg.
The conformal-coated configuration is useful in industrial environments, while the blank-HIM arrangement is appropriate for installations where drive control is handled through a centralized automation system.
For a 50 HP DC motor operating from a 575 VAC-class industrial supply, this model represents a well-defined DC drive configuration within the PowerFlex family.
When selecting it for an actual replacement project, however, the motor nameplate, armature voltage, armature current, field voltage, field current, motor speed, feedback method, braking requirements, cabinet conditions, and existing control architecture should all be checked before final selection.
The Allen-Bradley 20P21AE067RA0NNN is a PowerFlex Digital DC Drive rated for 67.5 A DC armature current and 50 HP motor operation. It is designed for 575 VAC three-phase input power and provides non-regenerative, two-quadrant DC motor control. The drive uses a compact Frame B mechanical platform with approximate dimensions of 311 × 388 × 350 mm and a drive weight of approximately 25.5 kg. The specified configuration includes IP20/NEMA Type Open construction, conformal coating, a blank-plate/no-HIM arrangement, and no standard communication module. It is suitable for industrial conveyors, winding systems, printing machinery, machine tools, material-handling equipment, pumps, fans, process machinery, and DC motor modernization projects.
The Allen-Bradley 20P21AE067RA0NNN belongs to the PowerFlex DC Drive series and is designed for medium-power industrial DC motor applications.
Its principal electrical characteristics are a 575 VAC three-phase input, 67.5 A DC armature rating, and 50 HP / approximately 37 kW motor rating.
The drive uses a non-regenerative, two-quadrant architecture, making it suitable for many conventional DC motor applications where full regenerative braking is not required.
Its Frame B construction provides approximately 311 mm × 388 mm × 350 mm overall mechanical dimensions, with an approximate drive weight of 25.5 kg.
The specified configuration includes conformal coating, IP20/NEMA/UL Type Open construction, no HIM/blank plate, and no communication module.
Its strongest practical application is the modernization or replacement of existing industrial DC motor systems where maintaining the existing motor and mechanical equipment is desirable.
For applications requiring higher current, the same PowerFlex DC family provides models such as the 75 HP, 100 HP, 200 HP, and 300 HP versions.
For applications requiring regenerative operation, the corresponding PowerFlex regenerative DC models can be considered.
Overall, the 20P21AE067RA0NNN is best understood as a 50 HP-class industrial digital DC motor controller intended for 575 VAC three-phase systems, with a strong fit for retrofit, process-control, material-handling, and other industrial machinery applications.