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The 20P21AD667RA0NNN is a high-power DC drive designed for demanding industrial motor-control applications. It belongs to the PowerFlex DC series and is intended for large DC motors requiring controlled speed, torque, acceleration and deceleration.
This model is rated at 667 A and approximately 400 HP / 298 kW under the applicable 380–480 VAC three-phase drive class. It uses a non-regenerative, two-quadrant configuration, with an IP20 / NEMA/UL Type Open enclosure, Frame C construction, conformal coating, and a blank-plate/no-HIM configuration.
Because this is a large industrial drive, it is fundamentally different from the small-frame 2 HP to 10 HP models. It is intended for large production machinery, heavy material handling, processing lines, large conveyors, winding systems and other applications where a high-current DC motor remains an important part of the machine.
| Parameter | Specification |
|---|---|
| Model | 20P21AD667RA0NNN |
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex DC |
| Product category | Industrial DC Drive |
| Drive type | Digital DC Drive |
| Rated input voltage | 480 VAC |
| Input voltage class | 380–480 VAC |
| Input phase | 3-phase |
| Input configuration | 6-pulse |
| Output current | 667 A |
| Motor rating | 400 HP |
| Approximate motor power | 298 kW |
| Operating configuration | Two-quadrant |
| Regenerative operation | No |
| Field supply | Single-phase regulated |
| Frame size | C |
| Enclosure | IP20 |
| Enclosure classification | NEMA/UL Type Open |
| Cooling | Air cooled |
| Conformal coating | Yes |
| HIM | Blank plate / No HIM |
| Communication module | None standard |
| Approximate product weight | 78.3 kg |
| Shipping weight | Approximately 96 kg |
| Product construction | Cabinet / panel installation |
| Primary purpose | High-power DC motor control |
The 20P21AD667RA0NNN belongs to the PowerFlex DC series.
The PowerFlex DC family is designed for industrial applications using DC motors. It covers a very broad range of power levels, from relatively small motors to extremely high-current industrial DC motor applications.
The target model sits toward the high-power end of the series.
For the 380–480 VAC three-phase class, the series includes ratings ranging from approximately 1.5 kW / 2 HP / 4.1 A through much higher-current configurations.
The 667 A model represents the 400 HP / 298 kW class and uses Frame C mechanical construction.
| Electrical Parameter | Specification |
|---|---|
| Model | 20P21AD667RA0NNN |
| AC input voltage | 380–480 VAC |
| Nominal input voltage | 480 VAC |
| Input phase | 3-phase |
| Input frequency | 50/60 Hz class |
| Converter configuration | 6-pulse |
| Output current | 667 A |
| Normal-duty motor rating | 400 HP |
| Approximate metric rating | 298 kW |
| Motor operation | Two-quadrant |
| Regenerative | No |
| Field converter | Single-phase regulated |
| Armature converter | Controlled DC converter |
| Cooling | Air cooled |
| Frame | C |
| Enclosure | IP20 |
| Installation | Cabinet/panel |
| Conformal coating | Yes |
The 667 A output rating is the most important characteristic of this model.
It allows the drive to control a substantially larger DC motor than the smaller models in the same family.
The 400 HP rating corresponds to approximately 298 kW, placing this drive in a heavy industrial power range.
| Mechanical Parameter | Specification |
|---|---|
| Model | 20P21AD667RA0NNN |
| Frame size | Frame C |
| Enclosure | IP20 |
| Enclosure type | NEMA/UL Type Open |
| Cooling method | Air cooled |
| Installation method | Cabinet / control panel |
| Product weight | Approximately 78.3 kg |
| Shipping weight | Approximately 96 kg |
| Overall dimensions | Frame C; approximately 27.99 in / 711 mm class in one principal dimension |
| Height | Approximately 711 mm class; confirm exact mechanical drawing |
| Width | Frame C; exact cabinet dimension should be confirmed |
| Depth | Frame C; exact cabinet dimension should be confirmed |
| Mounting clearance | Application dependent |
| Ventilation clearance | Required |
| Service access | Required |
| Heat dissipation | Significant due to 667 A power rating |
For an actual cabinet design, the exact mechanical drawing should be used for the final height, width, depth and mounting-hole dimensions.
The approximately 78.3 kg product weight should also be distinguished from the shipping weight, which can be higher because packaging and shipping materials are included.
The 20P21AD667RA0NNN is a high-current digital DC motor drive intended to provide controlled operation of large industrial DC motors.
At 667 A, this drive is designed for applications where the motor requires substantial armature current.
Large DC motors are still found in many industrial machines because they can provide excellent torque characteristics and a broad controllable speed range.
Instead of replacing an entire machine simply because its original DC drive is obsolete, a modern DC drive can provide a practical modernization path while allowing the existing motor and mechanical equipment to remain in service.
The 20P21AD667RA0NNN is particularly appropriate for this type of modernization.
The drive’s 400 HP rating places it firmly in the heavy industrial category.
A 400 HP motor is approximately equivalent to 298 kW.
This is no longer a small machine-drive application.
It can be associated with:
The final motor suitability must always be established using the actual motor nameplate current, voltage, field requirements, duty cycle and application load.
The 667 A current rating is what distinguishes this model from the smaller PowerFlex DC configurations.
Current is particularly important for DC motors because armature current has a direct relationship with motor torque.
A high-current drive can therefore support the torque requirements of large mechanical loads.
The drive must be correctly matched to:
The 20P21AD667RA0NNN is a two-quadrant drive.
This is an important feature when selecting the drive.
Two-quadrant operation is appropriate for many conventional DC motor applications where the motor operates in one primary direction and regenerative operation is not continuously required.
Typical applications include machinery where the motor:
For applications requiring continuous regeneration or four-quadrant operation, a regenerative version should be evaluated instead.
This particular catalog number is a non-regenerative configuration.
That means the drive is not designed as a regenerative four-quadrant drive that continuously returns braking energy to the AC supply.
This makes the model more appropriate for conventional loads.
Examples include:
For applications with frequent regenerative braking, rapid reversing or overhauling loads, a regenerative PowerFlex DC configuration would generally be a better technical comparison.
The drive includes a single-phase regulated field supply.
A DC motor normally contains two fundamental electrical systems:
The armature circuit has a major influence on motor torque and operating behavior.
The field circuit establishes the magnetic field required for motor operation.
The regulated field converter allows the drive system to manage the motor field in a controlled manner.
This is especially important for large DC motors where field behavior has a major impact on the overall machine.
The PowerFlex DC architecture supports advanced speed regulation.
This is particularly useful in large industrial machines where motor speed must remain stable despite changes in mechanical load.
For example, a large production roller may experience changing material tension.
Without effective speed regulation, those load changes can cause unwanted speed variation.
A properly configured DC drive can compensate for such changes and maintain much more consistent operation.
The PowerFlex DC family supports feedback arrangements such as:
Feedback is particularly valuable in high-performance applications.
A feedback device measures the actual motor speed.
The drive compares actual speed against the desired speed and adjusts the motor control accordingly.
This can provide significantly better speed regulation than an open-loop arrangement.
Large DC motors have historically been used extensively in steel-processing machinery.
Applications can include:
The high-current capability of the 20P21AD667RA0NNN makes it relevant to this class of machinery.
Large conveyors can require substantial starting torque.
This is particularly true when the conveyor is heavily loaded.
A DC motor and high-current DC drive can provide controlled acceleration and torque.
The drive can help prevent sudden mechanical loading on:
Winding systems require carefully controlled motor speed and torque.
The load characteristics can change significantly as the material roll diameter changes.
A high-power DC drive can be used with appropriate feedback and tension-control architecture to provide stable motor operation.
Potential applications include:
Large printing and paper-processing systems can use multiple motor sections.
Consistent speed is extremely important.
A variation in motor speed can affect:
A properly configured DC drive can provide precise speed control for these systems.
Heavy industrial machinery can require high motor torque and large electrical power.
The 400 HP rating allows this drive to be considered for certain heavy-duty material-handling applications.
The exact suitability depends on the motor and mechanical system.
Large process machines often require controlled motor speed rather than simple direct-on-line operation.
A DC drive can provide:
| Advantage | Practical Benefit |
|---|---|
| 667 A output | Supports high-current DC motors |
| 400 HP rating | Suitable for large industrial machines |
| 298 kW class | Appropriate for heavy-duty motor systems |
| 480 VAC three-phase input | Suitable for common industrial power systems |
| Six-pulse architecture | Established DC drive technology |
| Two-quadrant operation | Suitable for conventional non-regenerative loads |
| Regulated field supply | Controlled motor field operation |
| Advanced regulation | Improved speed and torque control |
| Feedback capability | Suitable for precision applications |
| Frame C | Designed for high-power drive construction |
| Conformal coating | Additional electronic protection |
| IP20 enclosure | Suitable for controlled cabinet environments |
| No HIM configuration | Useful for centrally controlled systems |
| Retrofit potential | Allows existing DC machines to be modernized |
The strongest characteristic of the model is its 667 A output capability.
This allows it to operate large DC motors that would be far beyond the capacity of small-frame drives.
For heavy machinery, current capacity is closely connected to torque capability.
A properly sized drive can provide the electrical power required to accelerate a large motor and handle changes in mechanical load.
Many industrial machines have long service lives.
The mechanical structure may remain reliable even after the original drive electronics have become obsolete.
Replacing the drive rather than rebuilding the entire machine can potentially reduce:
The 20P21AD667RA0NNN can therefore be considered for DC drive modernization projects where the existing motor remains suitable.
Large motors should generally not be accelerated abruptly.
A controlled acceleration profile can reduce mechanical stress.
This can help protect:
It can also reduce sudden production-line disturbances.
The drive can provide controlled deceleration within the limits of its non-regenerative configuration and the braking arrangement used by the machine.
The braking system must be designed according to the load.
If a machine has a large amount of stored mechanical energy, the engineering team should determine whether a regenerative drive is required.
Large production systems often require accurate speed control.
Feedback capability allows the drive to determine actual motor speed rather than relying solely on commanded values.
This can be especially valuable for:
The conformal-coated configuration provides additional protection for electronic components.
This can be useful in industrial environments where humidity or airborne contamination may be present.
However, conformal coating should not be interpreted as permission to install the drive in an uncontrolled environment.
The IP20 enclosure still requires an appropriate cabinet or electrical enclosure.
The drive should be installed in a suitable industrial electrical cabinet.
The cabinet should provide:
Because the drive operates at 667 A, thermal management is particularly important.
The cabinet designer must account for heat generated by the drive and associated equipment.
| Installation Item | Requirement |
|---|---|
| Supply | 380–480 VAC, 3-phase class |
| Grounding | Proper industrial grounding |
| Cabinet | Required for IP20/open construction |
| Ventilation | Required |
| Cooling | Air cooling |
| Motor cable | Correctly sized for current |
| Field wiring | Correct field voltage/current |
| Feedback | Shielded/appropriate wiring where applicable |
| Control wiring | Separate from high-power conductors |
| Maintenance clearance | Required |
| Heat dissipation | Must be considered |
| Upstream protection | Must be properly engineered |
| Motor compatibility | Must be verified before commissioning |
A 400 HP motor should not be selected solely based on horsepower.
The following values should be compared with the drive:
| Motor Parameter | Required Verification |
|---|---|
| Motor model | Confirm exact motor |
| Motor horsepower | Approximately 400 HP class |
| Motor power | Approximately 298 kW |
| Armature voltage | Must be compatible |
| Armature current | Must be compatible with 667 A drive rating |
| Field voltage | Must match field supply |
| Field current | Must be within field capability |
| Base speed | Verify |
| Maximum speed | Verify |
| Feedback type | Verify |
| Feedback voltage | Verify |
| Duty cycle | Verify |
| Starting torque | Verify |
| Continuous torque | Verify |
| Load inertia | Verify |
| Braking requirements | Verify |
| Ambient temperature | Verify |
| Cooling system | Verify |
The following five models are particularly useful when comparing products within the same PowerFlex DC family.
| Model | Output Current | Motor Rating | Approx. Power | Input | Quadrant | Regenerative | Frame | Enclosure | Weight (kg) |
|---|---|---|---|---|---|---|---|---|---|
| 20P21AD495RA0NNN | 495 A | 300 HP | 224 kW | 380–480 VAC, 3-phase | 2 | No | C | IP20 | Approx. 78.3* |
| 20P21AD667RA0NNN | 667 A | 400 HP | 298 kW | 380–480 VAC, 3-phase | 2 | No | C | IP20 | Approx. 78.3 |
| 20P21AD830RA0NNN | 830 A | 500 HP | 373 kW | 380–480 VAC, 3-phase | 2 | No | D | IP20 | To be confirmed |
| 20P21AD996RA0NNN | 996 A | 600 HP | 447 kW | 380–480 VAC, 3-phase | 2 | No | D | IP20 | To be confirmed |
| 20P21AD1K1RA0NNN | 1162 A | 700 HP | 552 kW | 380–480 VAC, 3-phase | 2 | No | D | IP20 | To be confirmed |
* Weight values for other models should be confirmed against their exact mechanical configuration. The 78.3 kg value shown for the target model corresponds to approximately 172.63 lb product weight.
| Parameter | 20P21AD495RA0NNN | 20P21AD667RA0NNN | 20P21AD830RA0NNN | 20P21AD996RA0NNN | 20P21AD1K1RA0NNN |
|---|---|---|---|---|---|
| Current | 495 A | 667 A | 830 A | 996 A | 1162 A |
| HP | 300 HP | 400 HP | 500 HP | 600 HP | 700 HP |
| Approx. kW | 224 | 298 | 373 | 447 | 552 |
| Input | 480 VAC | 480 VAC | 480 VAC | 480 VAC | 480 VAC |
| Phase | 3 | 3 | 3 | 3 | 3 |
| Configuration | Non-regenerative | Non-regenerative | Non-regenerative | Non-regenerative | Non-regenerative |
| Quadrant | 2 | 2 | 2 | 2 | 2 |
| Frame | C | C | D | D | D |
| Enclosure | IP20 | IP20 | IP20 | IP20 | IP20 |
| Cooling | Air | Air | Air | Air | Air |
| Product weight | Approx. 78 kg class | Approx. 78.3 kg | To confirm | To confirm | To confirm |
For applications where the machine needs regenerative braking, the following PowerFlex DC configurations are important comparison points.
| Model | Output Current | Motor Rating | Approx. Power | Input | Quadrant | Regeneration | Frame | Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|---|---|
| 20P41AD495RA0NNN | 495 A | 300 HP | 224 kW | 380–480 VAC | 4 | Yes | C | Frame C | To be confirmed |
| 20P41AD667RA0NNN | 667 A | 400 HP | 298 kW | 380–480 VAC | 4 | Yes | C | Frame C | To be confirmed |
| 20P41AD830RA0NNN | 830 A | 500 HP | 373 kW | 380–480 VAC | 4 | Yes | D | Frame D | To be confirmed |
| 20P41AD996RA0NNN | 996 A | 600 HP | 447 kW | 380–480 VAC | 4 | Yes | D | Frame D | To be confirmed |
| 20P41AD1K1RA0NNN | 1162 A | 700 HP | 552 kW | 380–480 VAC | 4 | Yes | D | Frame D | To be confirmed |
The most direct regenerative comparison is 20P41AD667RA0NNN.
It retains the same general 667 A / 400 HP class but provides regenerative four-quadrant capability.
The following are useful models from the same brand’s broader industrial automation portfolio.
They are not direct electrical replacements for the 20P21AD667RA0NNN. They belong to different product categories and are included because they are commonly used in industrial automation systems.
| Model | Product Family | Product Type | Typical Application | Input / Supply | Approx. Power Class | Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|
| 25B-D017N114 | PowerFlex 525 | AC Drive | General-purpose motor control | 3-phase AC | Approx. 7.5 HP class | Compact frame; model dependent | To be confirmed |
| 25B-D024N114 | PowerFlex 525 | AC Drive | Machinery and process control | 3-phase AC | Approx. 10 HP class | Compact frame; model dependent | To be confirmed |
| 20G11ND022JA0NNNNN | PowerFlex 755 | AC Drive | High-performance industrial motors | 3-phase AC | Approx. 22 HP class | Frame dependent | To be confirmed |
| 1769-L33ER | CompactLogix | PLC | Machine automation | 24 VDC system | Controller | Compact module | To be confirmed |
| 1756-L83E | ControlLogix | PLC | Large automation systems | Chassis based | Controller | Chassis mounted | To be confirmed |
For a large existing DC motor, these products should not be substituted directly without a complete system-engineering assessment.
The first three are primarily relevant when the motor system is being converted from DC to AC.
When an old DC system is being modernized, there are usually two broad approaches.
The first approach is to retain the existing DC motor and replace the old DC drive.
The second approach is to replace both the DC drive and DC motor with an AC motor and AC drive.
The first approach can be attractive when the existing motor is in good condition and the machine has already been engineered around the DC motor.
The second approach can be attractive when long-term modernization, motor availability, efficiency and simplified maintenance are higher priorities.
The 20P21AD667RA0NNN is primarily relevant to the first approach.
Large DC motors can provide high torque and very good speed-control characteristics.
They can also be mechanically integrated into machines that have been operating for decades.
A DC drive modernization project can therefore preserve the existing mechanical system.
This can be especially valuable for:
A properly engineered replacement can extend the useful life of the machine without requiring a complete mechanical redesign.
Because the 20P21AD667RA0NNN is a 667 A drive, cabinet design becomes much more important than it would be for a small drive.
The designer should consider:
Large power electronics produce significant heat.
Adequate ventilation or cabinet cooling is required.
Motor and supply conductors must be appropriately sized for the electrical system.
High-current applications may require carefully engineered busbar arrangements.
Adequate electrical and mechanical clearance is required.
Maintenance personnel need sufficient access to the drive and associated components.
The upstream protection system must be coordinated with the drive and motor.
| Application | Main Advantage |
|---|---|
| Steel rolling | High torque and controlled speed |
| Paper production | Stable speed and process control |
| Large conveyors | Controlled acceleration and torque |
| Winding systems | Speed and tension-control potential |
| Printing equipment | Stable process speed |
| Heavy machinery | High-current motor control |
| Process lines | Consistent speed regulation |
| Retrofit projects | Existing DC motor can potentially remain |
| Material handling | High torque and controlled starting |
| Industrial production lines | Integration with broader control architecture |
A technically accurate product description should also consider the limitations.
The 20P21AD667RA0NNN is not an ideal choice for every motor application.
Its principal limitations include:
This model is particularly suitable when:
A different model should be considered when:
For a 2 HP motor, a small Frame A drive is more appropriate.
The 20P21AD495RA0NNN may be a closer match.
The 20P21AD830RA0NNN is a more appropriate comparison.
The 20P21AD996RA0NNN is the logical higher-current comparison.
A 20P41 regenerative configuration should be considered.
An AC motor and PowerFlex AC drive may be a better long-term solution depending on the machine.
| Motor Requirement | Recommended Comparison |
|---|---|
| Around 300 HP | 20P21AD495RA0NNN |
| Around 400 HP | 20P21AD667RA0NNN |
| Around 500 HP | 20P21AD830RA0NNN |
| Around 600 HP | 20P21AD996RA0NNN |
| Around 700 HP | 20P21AD1K1RA0NNN |
| 400 HP regenerative | 20P41AD667RA0NNN |
| 500 HP regenerative | 20P41AD830RA0NNN |
| 600 HP regenerative | 20P41AD996RA0NNN |
| 700 HP regenerative | 20P41AD1K1RA0NNN |
| Category | 20P21AD667RA0NNN |
|---|---|
| Product family | PowerFlex DC |
| Product type | Digital DC Drive |
| Input | 380–480 VAC |
| Nominal input | 480 VAC |
| Input phase | 3-phase |
| Output current | 667 A |
| Motor rating | 400 HP |
| Motor power | Approximately 298 kW |
| Converter | 6-pulse |
| Operation | Two-quadrant |
| Regenerative | No |
| Field supply | Single-phase regulated |
| Frame | C |
| Enclosure | IP20 / NEMA/UL Type Open |
| Cooling | Air cooled |
| Conformal coating | Yes |
| HIM | Blank plate / No HIM |
| Communication module | None standard |
| Weight | Approximately 78.3 kg |
| Mechanical dimension | Frame C; approximately 711 mm / 27.99 in class in one principal dimension |
| Installation | Cabinet / panel |
| Suitable motor class | Large industrial DC motors |
The 20P21AD667RA0NNN is a high-capacity industrial DC drive designed for applications that require substantial DC motor current.
Its 667 A output and 400 HP / 298 kW rating make it appropriate for large industrial machinery rather than general-purpose small motor applications.
Its 480 VAC three-phase input, six-pulse converter, regulated field supply, two-quadrant operation, and non-regenerative configuration provide a practical architecture for conventional large DC motor systems.
The Frame C construction is designed for this higher power level, while the IP20 / NEMA/UL Type Open enclosure means that the unit should be installed inside a properly designed electrical cabinet.
The conformal coating provides additional protection for the electronics, while the blank-plate configuration allows the drive to be integrated into systems where a local HIM is not required.
The 20P21AD667RA0NNN is a 400 HP / approximately 298 kW, 667 A PowerFlex DC drive for large industrial DC motors.
Its main electrical characteristics are 380–480 VAC three-phase input, 667 A output current, six-pulse conversion, two-quadrant operation, and non-regenerative operation.
The drive includes a single-phase regulated field supply and supports advanced motor regulation and feedback arrangements suitable for demanding industrial applications.
Mechanically, it uses Frame C construction and an IP20 / NEMA/UL Type Open enclosure.
The approximate product weight is 78.3 kg, while the shipping weight can be substantially higher because it includes packaging and shipping materials.
Its principal applications include steel-processing equipment, large conveyors, paper machinery, printing equipment, winding systems, heavy material-handling equipment, process machinery and other large industrial production systems.
Its greatest practical advantage is its ability to provide modern digital control for a large existing DC motor, making it particularly relevant to industrial modernization projects where replacing the entire mechanical drive system would be expensive or unnecessary.
For a similar but smaller application, 20P21AD495RA0NNN is a useful 300 HP comparison.
For a larger application, 20P21AD830RA0NNN, 20P21AD996RA0NNN and 20P21AD1K1RA0NNN provide progressively higher current capacities.
If regenerative operation is required, 20P41AD667RA0NNN is the closest corresponding 667 A / 400 HP regenerative configuration.
In practical terms, the 20P21AD667RA0NNN can be summarized as a high-current, 400 HP, 480 VAC-class, two-quadrant, non-regenerative industrial DC drive designed for large DC motor applications where controlled speed, torque and reliable process operation are required.