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The 20P21AD086RA0NNN is a high-capacity industrial DC drive designed for controlling DC motors in demanding industrial machinery.
It belongs to the PowerFlex DC series and is rated at 86 A, with a normal-duty motor rating of 50 HP / 37 kW at the 460 VAC input class.
The drive uses a three-phase, 480 VAC-class, six-pulse input and provides two-quadrant, non-regenerative operation.
The unit is designed for applications where an existing DC motor needs controlled starting, acceleration, deceleration, speed regulation and current control.
The product is particularly relevant to DC motor retrofit projects. It can be used in machinery where replacing the complete motor and mechanical transmission would be considerably more complicated than modernizing the drive system.
The standard configuration is an IP20, NEMA/UL Type Open drive with a Frame A construction, conformal coating, blank front plate, user documentation and no communication module in the base configuration.
| Item | Specification |
|---|---|
| Model | 20P21AD086RA0NNN |
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Series | PowerFlex DC |
| Product type | Industrial DC Drive |
| Drive category | Digital DC Drive |
| Motor type | DC Motor |
| Current class | 86 A |
| Motor rating | 50 HP |
| Metric motor rating | 37 kW |
| Input voltage class | 460/480 VAC |
| Input phase | Three-phase |
| Input topology | Six-pulse |
| Operating mode | Two-quadrant |
| Regeneration | Non-regenerative |
| Frame | Frame A |
| Enclosure | IP20 |
| Enclosure type | NEMA/UL Type Open |
| Cooling | Air cooled |
| Front interface | Blank plate |
| HIM | Not included |
| Communication module | Not included |
| Field supply | Single-phase regulated |
| Feedback capability | DC tachometer / encoder capable |
| Conformal coating | Yes |
| Parameter | Specification |
|---|---|
| Model | 20P21AD086RA0NNN |
| Series | PowerFlex DC |
| Product type | Digital DC Drive |
| Input voltage | 380–480 VAC class |
| Nominal input | 460/480 VAC |
| Input frequency | 50/60 Hz |
| Input phase | Three-phase |
| Input type | Six-pulse |
| Output current | 86 A |
| Normal-duty motor rating | 50 HP |
| Metric motor rating | 37 kW |
| Motor operation | Two-quadrant |
| Regenerative operation | No |
| Field supply | Single-phase regulated |
| Enclosure | IP20 |
| Enclosure type | NEMA/UL Type Open |
| Frame size | Frame A |
| Cooling method | Air cooled |
| Front display | Blank plate |
| HIM | Not included |
| Communication module | Not included |
| Feedback | Tachometer / encoder capable |
| Conformal coating | Yes |
| Installation | Panel / cabinet mounted |
| Height | Approx. 279 mm |
| Width | Approx. 381 mm |
| Depth | Approx. 279 mm |
| Dimensions | Approx. 279 × 381 × 279 mm |
| Weight (kg) | Approx. 14.5 kg |
The dimensional figure corresponds to approximately 11.0 × 15.0 × 11.0 in.
The weight should be treated as an approximate unit weight for planning purposes. Actual shipping weight can be higher because of packaging and associated materials.
The 20P21AD086RA0NNN is designed for industrial DC motor control where a relatively high armature current is required.
With an 86 A output rating, it sits above the 73 A model and below the 100 A configuration within the same general non-regenerative PowerFlex DC range.
Its 50 HP / 37 kW rating makes it suitable for larger industrial machinery.
The basic purpose of the drive is to take incoming three-phase AC power and provide controlled electrical power to the DC motor.
Instead of allowing the motor to operate simply at full power whenever it is energized, the drive provides a controlled interface between the electrical supply and the motor.
This allows the machine designer to control important operating characteristics such as:
The result is a controlled motor system that can be integrated into a larger industrial automation process.
The most important electrical characteristic of the 20P21AD086RA0NNN is its 86 A output-current rating.
This rating makes the drive suitable for DC motors in the approximately 50 HP / 37 kW range under the appropriate operating conditions.
The current rating is important because the armature current of a DC motor is directly associated with its torque-producing capability.
For that reason, the drive should not be selected by horsepower alone.
The motor nameplate should be checked for:
The 86 A rating provides a useful margin above the 73 A model for applications where additional current capacity is required.
The drive is associated with a 50 HP / 37 kW normal-duty motor rating.
This places the product in a substantial industrial power range.
Typical machinery at this power level may include:
The exact suitability depends on the motor’s electrical characteristics and the mechanical load.
The drive is designed for the 380–480 VAC three-phase class, with 460/480 VAC being the principal nominal input range.
Three-phase industrial power is commonly used for medium- and high-power equipment.
Before installation, the electrical system should be checked for:
A correct electrical installation is essential for safe and reliable operation.
The 20P21AD086RA0NNN uses a six-pulse input topology.
This is a conventional architecture for industrial DC drives.
The three-phase AC input is converted into controlled DC power for the motor armature.
The six-pulse configuration is particularly relevant when modernizing older DC drive systems because it provides a familiar electrical architecture for conventional DC motor applications.
When replacing an older drive, engineers should compare:
The 20P21AD086RA0NNN is a two-quadrant drive.
Two-quadrant operation is suitable for applications where the motor primarily operates in the motoring direction and the machine does not require continuous regenerative operation.
Typical applications include:
The two-quadrant configuration can provide a practical and economical solution for conventional DC motor applications.
The drive is a non-regenerative configuration.
This means that it is not designed to continuously return regenerative energy from the motor to the AC supply.
This is important when evaluating machines with substantial mechanical inertia.
During deceleration, a high-inertia machine can cause the motor to act as a generator.
Applications that require careful regenerative analysis include:
If the machine regularly produces significant regenerative energy, a regenerative drive configuration should be considered.
The product includes a single-phase regulated field supply.
The field circuit is a critical part of a conventional DC motor.
The field establishes the magnetic flux necessary for proper motor operation.
The field supply must therefore be matched to the motor.
Important parameters include:
| Field Parameter | Design Consideration |
|---|---|
| Field voltage | Must match motor requirements |
| Field current | Must remain within motor rating |
| Field polarity | Verify during installation |
| Field wiring | Verify terminal arrangement |
| Field-loss protection | Verify configuration |
| Field weakening | Verify motor capability |
| Maximum speed | Must remain within motor limits |
| Motor cooling | Must be adequate |
Incorrect field settings can cause unstable motor operation, overspeed conditions or motor damage.
The PowerFlex DC family provides feedback capabilities suitable for applications requiring accurate speed regulation.
Feedback may be provided by:
Depending on the machine configuration.
The drive can compare the commanded speed with the measured motor speed.
If the load increases and the motor begins to slow down, the control system can respond by adjusting the motor operating point.
This is especially valuable for:
The standard configuration does not include a communication module.
This does not prevent the drive from being integrated into an industrial control system.
Hardwired control can be used for functions such as:
Analog references can also be used where required.
This makes the drive suitable for retrofit projects where an existing PLC or machine controller is already installed.
The standard configuration has a blank front plate rather than a local HIM.
This arrangement is useful when the machine has a separate operator interface.
For example, the drive may be installed inside a cabinet while the operator controls the machine through:
This keeps the drive itself relatively simple and allows the machine’s main control system to handle the operator interface.
The base configuration does not include a communication module.
This can be useful for installations that primarily use hardwired I/O.
For larger automation systems, an appropriate communication option can be selected separately when required.
Potential integration functions include:
The appropriate communication architecture depends on the PLC and automation platform used by the machine.
The drive uses an IP20, NEMA/UL Type Open enclosure.
This means it should normally be installed inside a suitable electrical cabinet or protected enclosure.
It is not intended to be directly exposed to:
The cabinet should provide suitable environmental protection and sufficient cooling.
The product includes conformal coating.
Conformal coating provides additional protection to electronic components against certain industrial environmental conditions.
This can be beneficial in applications where the electronics may encounter:
However, conformal coating does not turn an IP20 drive into a waterproof product.
The drive still needs a properly designed enclosure.
The 20P21AD086RA0NNN uses Frame A construction.
Approximate mechanical dimensions are:
279 mm high
381 mm wide
279 mm deep
The approximate unit weight is:
14.5 kg
This makes the product relatively compact considering its 50 HP / 37 kW power class.
The cabinet should nevertheless provide additional clearance for:
| Mechanical Parameter | Approximate Specification |
|---|---|
| Model | 20P21AD086RA0NNN |
| Frame | Frame A |
| Height | 279 mm |
| Width | 381 mm |
| Depth | 279 mm |
| Dimensions | 279 × 381 × 279 mm |
| Weight (kg) | Approx. 14.5 kg |
| Enclosure | IP20 |
| Enclosure type | NEMA/UL Type Open |
| Cooling | Air cooled |
| Installation | Panel / cabinet |
| Mounting environment | Protected industrial enclosure |
For final cabinet fabrication, the mechanical drawing for the specific unit should be used to confirm mounting-hole locations, clearances and cable-entry requirements.
The 86 A capacity makes this drive suitable for larger conveyor applications.
Potential applications include:
Controlled acceleration can help reduce mechanical shock to belts, couplings and gearboxes.
Industrial rollers often require stable speed and reliable torque control.
Potential applications include:
Feedback can be particularly valuable when the machine must maintain consistent speed despite changing load conditions.
The drive is well suited for compatible DC motor applications in paper and material-processing machinery.
Potential applications include:
The ability to maintain controlled speed can be important when the material must move through several processing stages at a consistent rate.
Printing equipment can require stable roller speed and predictable acceleration.
Potential applications include:
A feedback-equipped configuration may be especially useful where speed accuracy affects print quality or material registration.
The product can be applied to suitable DC motors used in textile production.
Possible uses include:
However, winding and unwinding applications should be evaluated carefully because they can generate significant regenerative energy.
The 86 A capacity provides a useful power level for heavier material-handling equipment.
Potential applications include:
The higher current rating provides additional capacity compared with smaller PowerFlex DC configurations.
The drive can also be considered for compatible industrial machine tools.
Possible applications include:
When accurate speed regulation is required, feedback should be evaluated as part of the complete motor-control design.
The 86 A output rating is the key advantage of the model.
It allows the drive to control larger DC motors than the 45 A, 52 A and 73 A configurations.
This makes it a practical choice for machines requiring approximately 50 HP of DC motor power.
The 50 HP / 37 kW rating places the drive in a substantial industrial power category.
It can provide a good balance between motor capacity and physical drive size for medium-heavy machinery.
The 480 VAC three-phase input class is suitable for many industrial power systems.
Two-quadrant operation is appropriate for conventional motoring applications where regenerative operation is not continuously required.
The regulated field supply provides controlled field operation for compatible DC motors.
Tachometer and encoder capability makes the drive suitable for applications where speed stability is important.
The drive can be integrated into machine-control systems using digital and analog signals.
The Frame A design offers a relatively compact physical package for a 50 HP DC drive.
Conformal coating provides additional protection for electronic components in suitable industrial environments.
The product is particularly attractive when an existing DC motor remains mechanically sound.
A drive retrofit can potentially preserve:
This can significantly reduce mechanical modification during modernization.
| Feature | Practical Benefit |
|---|---|
| 86 A output | Suitable for high-current DC motors |
| 50 HP / 37 kW | Suitable for heavy industrial machinery |
| 480 VAC-class input | Compatible with common industrial power systems |
| Three-phase input | Suitable for industrial installations |
| Six-pulse topology | Established DC drive architecture |
| Two-quadrant operation | Suitable for conventional motoring applications |
| Non-regenerative design | Appropriate where regeneration is not required |
| Regulated field | Controlled DC motor field operation |
| Encoder/tachometer capability | Improved speed regulation |
| Flexible control I/O | Easy integration into machine systems |
| Frame A | Compact mechanical configuration |
| IP20 | Suitable for cabinet installation |
| Conformal coating | Additional electronics protection |
| Blank front plate | Suitable for external operator control |
The following models are useful when comparing the 20P21AD086RA0NNN with nearby ratings and functional alternatives.
| Model | Series | Current | Motor Rating | Approx. Power | Input | Operation | Regenerative | Frame |
|---|---|---|---|---|---|---|---|---|
| 20P21AD052RA0NNN | PowerFlex DC | 52 A | 30 HP | 22 kW | 460/480 VAC | Two-quadrant | No | A |
| 20P21AD073RA0NNN | PowerFlex DC | 73 A | 40 HP | 30 kW | 460/480 VAC | Two-quadrant | No | A |
| 20P21AD086RA0NNN | PowerFlex DC | 86 A | 50 HP | 37 kW | 460/480 VAC | Two-quadrant | No | A |
| 20P21AD100RA0NNN | PowerFlex DC | 100 A | 60 HP | 45 kW | 460/480 VAC | Two-quadrant | No | A |
| 20P41AD086RA0NNN | PowerFlex DC | 86 A | 50 HP class | 37 kW | 460/480 VAC | Regenerative | Yes | A |
The first four models form a useful progression through the standard non-regenerative range.
The 20P41AD086RA0NNN is particularly relevant when the machine requires regenerative operation.
The 20P21AD052RA0NNN is a lower-capacity model rated at approximately:
52 A
and:
30 HP / 22 kW
It is appropriate for smaller DC motors where the 86 A capacity would be unnecessary.
Typical applications include:
Its main advantage is more appropriately sized capacity for smaller motors.
The 20P21AD073RA0NNN is rated at approximately:
73 A
and:
40 HP / 30 kW
It sits directly below the 86 A model.
This makes it a natural comparison when the motor is close to the 40 HP range.
The 73 A model can be selected when 86 A capacity is unnecessary.
The 20P21AD100RA0NNN provides approximately:
100 A
and:
60 HP / 45 kW
It is the logical higher-capacity choice when the motor requires more than the 86 A rating.
Potential applications include:
The 20P41AD086RA0NNN is a regenerative version associated with the same 86 A / 50 HP class.
Its main difference is its ability to handle regenerative operation.
It should be considered for:
This model is functionally more appropriate when the load frequently returns energy to the drive.
The 20P21AD129RA0NNN is a substantially higher-capacity model.
It is rated at approximately:
129 A
and:
75 HP / 56 kW
It can be considered for applications where the 86 A and 100 A configurations do not provide enough current capacity.
Typical applications include:
For broader product comparison, the following models provide useful reference points.
| Model | Product Family | Type | Voltage Class | Current / Power | Main Application | Approx. Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|
| 20P21AD073RA0NNN | PowerFlex DC | DC Drive | 460/480 VAC | 73 A / 40 HP | Industrial DC machinery | Approx. 279 × 381 × 279 mm | Approx. 14.5 |
| 20P21AD086RA0NNN | PowerFlex DC | DC Drive | 460/480 VAC | 86 A / 50 HP | Heavy DC machinery | Approx. 279 × 381 × 279 mm | Approx. 14.5 |
| 20P21AD100RA0NNN | PowerFlex DC | DC Drive | 460/480 VAC | 100 A / 60 HP | Larger DC machinery | Frame-dependent | Higher |
| 20P21AD129RA0NNN | PowerFlex DC | DC Drive | 460/480 VAC | 129 A / 75 HP | High-power DC machinery | Larger frame | Higher |
| 25B-D017N104 | PowerFlex 525 | AC Drive | 380–480 VAC | 17 A class | General AC motor control | Compact frame | Approx. 2–3 |
The last model is an AC drive rather than a direct replacement for the 20P21AD086RA0NNN.
It is better viewed as an alternative for a complete DC-to-AC modernization project.
| Model | Current | Normal-Duty HP | Normal-Duty kW | General Application |
|---|---|---|---|---|
| 20P21AD019RA0NNN | 19 A | 10 HP | 7.5 kW | Smaller DC machinery |
| 20P21AD027RA0NNN | 27 A | 15 HP | 11 kW | Medium machinery |
| 20P21AD035RA0NNN | 35 A | 20 HP | 15 kW | Medium industrial machinery |
| 20P21AD045RA0NNN | 45 A | 25 HP | 18.5 kW | Medium-heavy machinery |
| 20P21AD052RA0NNN | 52 A | 30 HP | 22 kW | Larger industrial machinery |
| 20P21AD073RA0NNN | 73 A | 40 HP | 30 kW | Heavy industrial machinery |
| 20P21AD086RA0NNN | 86 A | 50 HP | 37 kW | Heavy industrial machinery |
| 20P21AD100RA0NNN | 100 A | 60 HP | 45 kW | Large DC machinery |
| 20P21AD129RA0NNN | 129 A | 75 HP | 56 kW | Larger DC machinery |
This progression makes the 20P21AD086RA0NNN an attractive choice for applications that need more capacity than a 73 A drive but do not require the larger 100 A or 129 A configurations.
| Category | Parameter | Specification |
|---|---|---|
| Product | Model | 20P21AD086RA0NNN |
| Product | Brand | Allen-Bradley |
| Product | Series | PowerFlex DC |
| Product | Product type | Digital DC Drive |
| Electrical | Input voltage | 380–480 VAC class |
| Electrical | Nominal input | 460/480 VAC |
| Electrical | Input frequency | 50/60 Hz |
| Electrical | Input phase | Three-phase |
| Electrical | Input topology | Six-pulse |
| Electrical | Output current | 86 A |
| Electrical | Normal-duty power | 37 kW |
| Electrical | Normal-duty horsepower | 50 HP |
| Electrical | Operation | Two-quadrant |
| Electrical | Regenerative | No |
| Field | Field supply | Single-phase regulated |
| Enclosure | IP rating | IP20 |
| Enclosure | Enclosure type | NEMA/UL Type Open |
| Mechanical | Frame | Frame A |
| Mechanical | Cooling | Air cooled |
| Mechanical | Height | 279 mm |
| Mechanical | Width | 381 mm |
| Mechanical | Depth | 279 mm |
| Mechanical | Dimensions | 279 × 381 × 279 mm |
| Mechanical | Weight (kg) | Approx. 14.5 kg |
| Interface | Front interface | Blank plate |
| Interface | HIM | Not included |
| Communication | Communication module | Not included |
| Feedback | DC tachometer | Supported |
| Feedback | Encoder | Supported |
| Protection | Conformal coating | Yes |
| Installation | Mounting | Panel / cabinet |
| Application | Motor type | DC motor |
| Application | Typical loads | Conveyors, rollers, feeders, processing machinery |
| Application | Retrofit | Existing DC motor systems |
| Application | Suitability | Main Reason |
|---|---|---|
| Heavy conveyor | Excellent | High current and controlled acceleration |
| Industrial roller | Excellent | Stable speed and torque control |
| Material feeder | Excellent | Good current capacity |
| Paper processing | Very suitable | Speed regulation and DC motor compatibility |
| Printing equipment | Very suitable | Feedback-based speed control |
| Textile machinery | Suitable | Controlled motor operation |
| Material handling | Very suitable | 50 HP-class motor support |
| Production lines | Suitable | Flexible control integration |
| Machine tools | Suitable | Speed and current control |
| Winder | Application dependent | Regeneration must be evaluated |
| Unwinder | Application dependent | Regenerative energy may be significant |
| Hoist | Application dependent | Braking and regeneration require careful evaluation |
| Crane | Application dependent | Four-quadrant requirements may apply |
| Rapid reversing machine | Application dependent | Regenerative energy must be evaluated |
One of the major reasons to use a digital DC drive is controlled motor speed.
In a basic application, the machine can provide a speed command through an analog reference or another control signal.
In a feedback application, a tachometer or encoder can provide actual motor speed.
The drive then compares:
Commanded Speed
with:
Actual Speed
and adjusts motor operation to reduce the difference.
This can be especially valuable in machines where a small speed variation can affect the final product.
Examples include:
A 50 HP DC motor can produce considerable torque.
Starting such a motor without controlled acceleration can place stress on:
Controlled acceleration allows the machine to reach operating speed in a more predictable manner.
This can improve mechanical smoothness and reduce unnecessary shock.
Deceleration is particularly important for a non-regenerative drive.
When a motor slows down, stored mechanical energy can flow back toward the electrical system.
The application engineer should therefore evaluate:
If substantial energy is returned during normal operation, a regenerative configuration may be more appropriate.
DC motor torque is closely related to armature current.
The 86 A capacity therefore provides substantial torque capability when paired with a suitable 50 HP DC motor.
Potential high-torque applications include:
Current limits should always be configured according to the actual motor rating.
A major benefit of using a PowerFlex DC drive is the possibility of modernizing the control electronics while retaining an existing DC motor.
A machine that has been operating for many years may have a mechanically sound motor and transmission.
Replacing only the drive may be considerably simpler than replacing the complete machine drive train.
Potentially retained components include:
This can reduce both mechanical modification and project downtime.
The approximate drive dimensions are:
279 mm × 381 mm × 279 mm
The approximate unit weight is:
14.5 kg
These dimensions should not be interpreted as the total cabinet space required.
Additional space is needed for:
The cabinet designer should also consider heat generated by other components installed near the drive.
An 86 A DC drive produces heat during operation.
The cabinet design should consider:
Maintaining suitable operating temperature is important for long-term reliability.
Routine maintenance should include inspection of:
The DC motor should be treated as part of the complete drive system.
A new drive cannot compensate for severe mechanical or electrical deterioration in an old DC motor.
Before installing the 20P21AD086RA0NNN, the existing DC motor should be inspected.
Recommended checks include:
| Motor Area | Inspection |
|---|---|
| Armature | Voltage and current rating |
| Field | Voltage and current rating |
| Brushes | Wear and seating |
| Commutator | Surface condition |
| Bearings | Noise and mechanical play |
| Insulation | Insulation resistance |
| Cooling | Fan and ventilation |
| Speed | Base and maximum speed |
| Feedback | Tachometer or encoder condition |
| Mechanical coupling | Alignment |
| Vibration | Excessive vibration |
| Temperature | Operating temperature |
This type of inspection can prevent a drive replacement from being blamed for problems that actually originate in the motor or mechanical system.
The 20P21AD086RA0NNN is a strong candidate when:
A different drive may be preferable when:
For smaller motors, the 52 A or 73 A models may be more appropriately sized.
For larger motors, the 100 A or 129 A configurations can be considered.
For regenerative applications, the corresponding regenerative configuration should be evaluated.
| Application Requirement | Recommended Model | Current | Power | Main Reason |
|---|---|---|---|---|
| Medium DC motor | 20P21AD052RA0NNN | 52 A | 30 HP / 22 kW | Smaller capacity |
| 40 HP-class motor | 20P21AD073RA0NNN | 73 A | 40 HP / 30 kW | Intermediate capacity |
| 50 HP-class motor | 20P21AD086RA0NNN | 86 A | 50 HP / 37 kW | Direct application fit |
| 60 HP-class motor | 20P21AD100RA0NNN | 100 A | 60 HP / 45 kW | Higher current |
| 75 HP-class motor | 20P21AD129RA0NNN | 129 A | 75 HP / 56 kW | Larger DC motor |
| 50 HP regenerative application | 20P41AD086RA0NNN | 86 A | 50 HP class | Regenerative operation |
The 20P21AD086RA0NNN has several practical strengths.
First, the 86 A current rating makes it suitable for larger DC motors without moving immediately into the much larger drive frames.
Second, the 50 HP / 37 kW rating gives it a useful position in the industrial power range.
Third, the drive provides two-quadrant operation, which is suitable for a large number of conventional motoring applications.
Fourth, the regulated field supply makes it suitable for compatible DC motors requiring controlled field operation.
Fifth, the ability to use tachometer or encoder feedback provides better speed regulation for demanding processes.
Sixth, the IP20 open enclosure is well suited to cabinet-based industrial installations.
Finally, the product can be valuable in retrofit projects because the existing DC motor and mechanical equipment may be retained.
| No. | Model | Current | Motor Rating | Voltage | Operating Mode | Typical Use | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 1 | 20P21AD052RA0NNN | 52 A | 30 HP / 22 kW | 460/480 VAC | Two-quadrant | Medium DC machinery | Approx. 14 kg class |
| 2 | 20P21AD073RA0NNN | 73 A | 40 HP / 30 kW | 460/480 VAC | Two-quadrant | Heavy conveyors and rollers | Approx. 14 kg class |
| 3 | 20P21AD100RA0NNN | 100 A | 60 HP / 45 kW | 460/480 VAC | Two-quadrant | Larger industrial machinery | Higher |
| 4 | 20P41AD086RA0NNN | 86 A | 50 HP / 37 kW class | 460/480 VAC | Regenerative | High-inertia / braking applications | Similar frame class |
| 5 | 20P21AD129RA0NNN | 129 A | 75 HP / 56 kW | 460/480 VAC | Two-quadrant | Larger DC machinery | Larger frame |
| No. | Model | Family | Type | Voltage | Current / Power | Application | Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|---|
| 1 | 20P21AD073RA0NNN | PowerFlex DC | DC Drive | 460/480 VAC | 73 A / 40 HP | Industrial DC machinery | Approx. 279 × 381 × 279 mm | Approx. 14.5 |
| 2 | 20P21AD086RA0NNN | PowerFlex DC | DC Drive | 460/480 VAC | 86 A / 50 HP | Heavy DC machinery | Approx. 279 × 381 × 279 mm | Approx. 14.5 |
| 3 | 20P21AD100RA0NNN | PowerFlex DC | DC Drive | 460/480 VAC | 100 A / 60 HP | Large DC machinery | Frame-dependent | Higher |
| 4 | 20P21AD129RA0NNN | PowerFlex DC | DC Drive | 460/480 VAC | 129 A / 75 HP | High-power DC machinery | Larger frame | Higher |
| 5 | 25B-D017N104 | PowerFlex 525 | AC Drive | 380–480 VAC | 17 A class | General AC motor control | Compact | Approx. 2–3 |
The fifth model is from a different drive technology family.
It is included because it is a commonly considered alternative when an industrial machine is being modernized from a DC motor system to an AC motor system.
| Model | Current | HP | kW | Input | Quadrant | Regenerative | Frame | Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|---|---|
| 20P21AD052RA0NNN | 52 A | 30 | 22 | 460/480 VAC | Two | No | A | Approx. 279 × 381 × 279 mm class | Approx. 14 |
| 20P21AD073RA0NNN | 73 A | 40 | 30 | 460/480 VAC | Two | No | A | Approx. 279 × 381 × 279 mm class | Approx. 14 |
| 20P21AD086RA0NNN | 86 A | 50 | 37 | 460/480 VAC | Two | No | A | Approx. 279 × 381 × 279 mm | Approx. 14.5 |
| 20P21AD100RA0NNN | 100 A | 60 | 45 | 460/480 VAC | Two | No | A | Frame-dependent | Higher |
| 20P21AD129RA0NNN | 129 A | 75 | 56 | 460/480 VAC | Two | No | A/B transition class | Larger | Higher |
| 20P41AD086RA0NNN | 86 A | 50 | 37 | 460/480 VAC | Regenerative | Yes | A | Similar class | Approx. 14.5+ |
The model number can be understood as a specific configuration within the PowerFlex DC product family.
The important practical characteristics are:
20P — PowerFlex DC product family.
21 — Non-regenerative drive configuration.
AD086 — 86 A class.
RA0NNN — Standard configuration options associated with the particular catalog arrangement.
The complete catalog number must be treated as one product identifier when ordering or replacing equipment.
For replacement work, it is important not to assume that two drives with similar current ratings are automatically interchangeable.
The complete catalog number, motor characteristics, voltage, field configuration, feedback arrangement and machine requirements should all be compared.
The drive is intended for installation in a controlled industrial environment.
The surrounding cabinet should protect the equipment from:
The drive’s cooling airflow should not be blocked.
Power cables should be routed carefully to minimize unnecessary electrical interference with low-level control and feedback wiring.
Feedback cables should be installed according to the requirements of the feedback device and overall machine-control design.
For long-term operation, maintenance should be divided into electrical, mechanical and environmental checks.
Check:
Check:
Check:
A preventive maintenance program can reduce unexpected downtime.
When selecting the 20P21AD086RA0NNN, the following factors should be reviewed together rather than individually.
| Selection Factor | Why It Matters |
|---|---|
| Motor current | Must be compatible with the 86 A drive rating |
| Motor voltage | Must match the drive operating range |
| Motor horsepower | Approximately 50 HP class |
| Field voltage | Must match motor field requirements |
| Field current | Must remain within motor limits |
| Motor speed | Base and maximum speeds must be compatible |
| Load inertia | Determines acceleration and braking requirements |
| Regeneration | Determines whether a non-regenerative drive is appropriate |
| Feedback | Determines speed-control capability |
| Environment | Determines cabinet and cooling requirements |
| Duty cycle | Determines thermal loading |
| Braking | Must be evaluated for high-inertia loads |
| PLC integration | Determines control and communication requirements |
The 20P21AD086RA0NNN is a high-capacity DC drive intended for demanding industrial applications.
Its 86 A output rating and 50 HP / 37 kW normal-duty rating make it particularly suitable for larger DC motor systems.
Compared with the 73 A model, it provides additional current capacity for applications where the motor approaches the 50 HP range.
Compared with the 100 A model, it provides a somewhat smaller capacity while still supporting a substantial 37 kW motor.
Its two-quadrant non-regenerative architecture is well suited to conventional motor-driven loads.
Its regulated field supply supports compatible DC motors, while feedback capability provides a path to improved speed regulation.
The Frame A construction and approximately 279 × 381 × 279 mm physical size provide a relatively compact solution for this power category.
The approximately 14.5 kg unit weight also makes the drive manageable for panel installation while still requiring appropriate cabinet mounting and handling procedures.
| Parameter | Final Specification |
|---|---|
| Model | 20P21AD086RA0NNN |
| Brand | Allen-Bradley |
| Series | PowerFlex DC |
| Product type | Industrial DC Drive |
| Input voltage | 380–480 VAC class |
| Nominal input | 460/480 VAC |
| Input phase | Three-phase |
| Input frequency | 50/60 Hz |
| Input topology | Six-pulse |
| Output current | 86 A |
| Normal-duty motor rating | 50 HP |
| Metric motor rating | 37 kW |
| Operation | Two-quadrant |
| Regenerative | No |
| Field supply | Single-phase regulated |
| Enclosure | IP20 |
| Enclosure type | NEMA/UL Type Open |
| Frame | Frame A |
| Cooling | Air cooled |
| Front interface | Blank plate |
| HIM | Not included |
| Communication module | Not included |
| Feedback | DC tachometer / encoder capable |
| Conformal coating | Yes |
| Height | 279 mm |
| Width | 381 mm |
| Depth | 279 mm |
| Dimensions | 279 × 381 × 279 mm |
| Weight (kg) | Approx. 14.5 kg |
| Main application | Industrial DC motor control |
| Typical loads | Conveyors, rollers, feeders, processing machinery |
| Lower-capacity alternative | 20P21AD073RA0NNN |
| Higher-capacity alternative | 20P21AD100RA0NNN |
| Regenerative alternative | 20P41AD086RA0NNN |
| Larger alternative | 20P21AD129RA0NNN |
The 20P21AD086RA0NNN is a 50 HP / 37 kW, 86 A industrial DC drive designed for demanding DC motor applications.
Its position in the PowerFlex DC range makes it a useful choice for machinery that requires more capacity than a 73 A drive but does not yet require a 100 A or larger configuration.
The drive is particularly suitable for heavy conveyors, industrial rollers, feeders, paper-processing equipment, printing machinery, textile machinery, material-handling systems and other production equipment using compatible DC motors.
Its two-quadrant configuration is well suited to conventional motoring applications.
For machines with high inertia, frequent braking or significant energy return during deceleration, the non-regenerative configuration should be evaluated carefully.
The product’s regulated field supply, feedback capability, flexible control architecture, IP20 enclosure and conformal coating provide a practical combination for industrial applications.
For retrofit projects, another important advantage is the possibility of retaining an existing DC motor and mechanical system.
This can reduce the scope of mechanical modifications and allow an older machine to receive a modernized drive-control system without completely redesigning the machine.
In practical terms, the 20P21AD086RA0NNN is best suited to applications where the following combination is required:
480 VAC-class three-phase input + 86 A DC output + 50 HP / 37 kW motor + two-quadrant operation + cabinet installation + controlled DC motor speed and torque.
When selecting this drive, the final decision should always be based on the actual motor nameplate and machine operating conditions.
Particular attention should be given to armature voltage, armature current, field voltage, field current, base speed, maximum speed, feedback, duty cycle, inertia and braking requirements.
For a conventional 50 HP DC motor system, however, the 20P21AD086RA0NNN represents a strong and appropriately sized option within the PowerFlex DC product range.