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The Allen-Bradley 20P41AD167RA0NNN is a high-power PowerFlex DC Drive designed for industrial DC motor control applications. It is rated for a 480 VAC, three-phase input, 167 A output current, and a 100 HP / approximately 75 kW motor rating.
The drive uses a six-pulse input configuration and supports four-quadrant regenerative operation, making it suitable for machinery that requires controlled acceleration, deceleration, reversing, and regenerative braking.
The product is built in a Frame B configuration and uses an IP20, NEMA/UL Type Open enclosure with conformal coating. This configuration is supplied without a standard HIM operator interface and without a communication module.
The 20P41AD167RA0NNN is particularly relevant to large industrial machines that continue to use DC motors. It can also be used in modernization projects where an existing DC motor and mechanical transmission are retained while the drive-control system is upgraded.
The combination of relatively high output current, four-quadrant operation, feedback capability, flexible I/O, and DC motor compatibility makes this model suitable for demanding continuous-production machinery.
| Item | Description |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Product Series | PowerFlex DC |
| Product Type | Digital Regenerative DC Drive |
| Catalog Number | 20P41AD167RA0NNN |
| Voltage Class | 460/480 VAC |
| Rated Input | 480 VAC, 3 Phase |
| Input Configuration | 6 Pulse |
| Output Current | 167 A |
| Motor Rating | 100 HP |
| Motor Power | Approximately 75 kW |
| Motor Operation | Four-Quadrant Regenerative |
| Frame Size | Frame B |
| Enclosure | IP20, NEMA/UL Type Open |
| Conformal Coating | Yes |
| HIM | Blank Plate / No HIM |
| Communication Module | None Standard |
| Field Supply | Single-Phase Regulated |
| Feedback | DC Tachometer and Encoder Capability |
The model belongs to the PowerFlex DC series. Within this product family, the 20P41 configuration represents the regenerative version of the drive family.
The 20P41AD167RA0NNN is therefore not simply a general-purpose motor controller. It is specifically intended for applications in which DC motor control and regenerative operation are important.
| Parameter | Specification |
|---|---|
| Model / Catalog Number | 20P41AD167RA0NNN |
| Brand | Allen-Bradley |
| Series | PowerFlex DC |
| Product Type | Regenerative Digital DC Drive |
| Input Voltage | 480 VAC |
| Input Voltage Class | 460/480 VAC |
| Input Phase | 3 Phase |
| Input Type | 6 Pulse |
| Rated Output Current | 167 A |
| Motor Rating | 100 HP |
| Motor Rating | Approximately 75 kW |
| Operation | Four-Quadrant Regenerative |
| Field Supply | Single-Phase Regulated |
| Frame Size | B |
| Enclosure Rating | IP20 |
| Enclosure Type | NEMA/UL Type Open |
| Conformal Coating | Yes |
| HIM | No HIM / Blank Plate |
| Communication Module | None Standard |
| Feedback | DC Tachometer / Encoder |
| Digital I/O Capability | Up to 12 digital inputs and outputs |
| Analog Inputs | Up to 3 |
| Analog Outputs | Up to 4 |
| Approx. Dimensions H × W × D | 311 × 388 × 350 mm |
| Approx. Weight | 25.5 kg |
| Mounting | Surface / Panel Mount |
| Intended Motor | Industrial DC Motor |
| Typical Motor Class | 100 HP / 75 kW |
The 167 A output rating is the central electrical characteristic of this model. In the 460/480 V regenerative PowerFlex DC range, the 167 A model corresponds to the 100 HP / 75 kW class and uses Frame B construction.
The physical size is approximately 311 × 388 × 350 mm, with an approximate weight of 25.5 kg. These values should be considered installation-planning values; final cabinet construction should use the mechanical information applicable to the exact installation configuration.
The 20P41AD167RA0NNN is designed for a 480 VAC three-phase industrial power supply.
The three-phase input arrangement is suitable for industrial power distribution systems and is consistent with the requirements of high-power DC motor applications.
The drive uses a 6-pulse input configuration. This is a conventional configuration for industrial DC drive systems and provides the rectified DC power required for armature control.
The rated output current is:
167 A
This rating is important when matching the drive to a DC motor.
The drive should be selected according to the actual motor armature current and operating duty rather than relying solely on the motor horsepower.
For a 100 HP-class DC motor, the 167 A drive provides the appropriate current class within the PowerFlex DC range.
The nominal motor rating is:
100 HP / approximately 75 kW
This places the 20P41AD167RA0NNN in the higher-power industrial DC drive category.
It is intended for substantial production machinery rather than small auxiliary motor applications.
Four-quadrant operation is one of the most important characteristics of the 20P41AD167RA0NNN.
A four-quadrant drive can control both motor speed and torque in both rotational directions.
In practical operation, the four operating conditions can be described as:
| Quadrant | Motor Condition | Typical Function |
|---|---|---|
| Quadrant I | Forward Motoring | Accelerating or running forward |
| Quadrant II | Forward Regeneration | Controlled braking while moving forward |
| Quadrant III | Reverse Motoring | Accelerating or running in reverse |
| Quadrant IV | Reverse Regeneration | Controlled braking while moving in reverse |
This capability is especially useful for machines that repeatedly accelerate and decelerate.
Examples include:
During deceleration, a motor can act as a generator.
This is particularly important when the driven machine contains a large amount of rotating or moving mass.
Instead of treating braking as a simple stop command, the drive can actively control the transition from motoring to regenerative operation.
This provides better control of the machine during deceleration and is particularly useful where braking occurs frequently.
Applications with repeated braking cycles can therefore benefit substantially from regenerative drive architecture.
The 20P41AD167RA0NNN uses an:
IP20, NEMA/UL Type Open enclosure
This enclosure classification means the drive is generally intended to be installed inside a suitable electrical cabinet or protected control enclosure.
It should not be treated as a standalone outdoor or washdown enclosure.
The drive also uses conformal coating.
Conformal coating provides additional protection to electronic circuitry against certain environmental influences. It can be useful in industrial environments where humidity, dust, and atmospheric contamination may place additional stress on electronic components.
However, conformal coating does not eliminate the need for proper cabinet design.
| Physical Parameter | Specification |
|---|---|
| Model | 20P41AD167RA0NNN |
| Frame | B |
| Height | Approximately 311 mm |
| Width | Approximately 388 mm |
| Depth | Approximately 350 mm |
| Overall Dimensions | Approx. 311 × 388 × 350 mm |
| Approx. Weight | 25.5 kg |
| Installation Type | Panel / Surface Mount |
| Enclosure | IP20 |
| Cabinet Installation | Recommended |
The approximately 25.5 kg weight should be taken into account when designing the mounting plate.
The cabinet should also provide enough space for incoming power wiring, motor wiring, field connections, feedback cables, control wiring, grounding conductors, ventilation, and maintenance access.
The actual clearance requirements should always be checked against the mechanical installation information for the exact drive configuration.
The PowerFlex DC platform provides built-in support for motor feedback.
The 20P41AD167RA0NNN can be used with:
Feedback becomes especially important when the machine requires accurate speed regulation.
For example, in a winding machine, simply commanding a motor to operate at a particular speed may not be enough. Actual motor speed may need to be measured continuously and compared with the commanded value.
The drive can then adjust its control output to maintain the required operating condition.
This type of closed-loop control is useful for:
The drive provides substantial I/O flexibility.
| I/O Category | Capability |
|---|---|
| Digital Inputs/Outputs | Up to 12 |
| Analog Inputs | Up to 3 |
| Analog Outputs | Up to 4 |
| Speed Feedback | DC Tachometer / Encoder |
| Standard Communication Module | None in this configuration |
Digital I/O can be used for machine commands and interlocking functions.
Typical signals can include:
Analog signals can be used for speed references, process signals, current references, or other machine-control functions depending on the application design.
The 20P41AD167RA0NNN PowerFlex DC Drive is designed to bring digital drive control to high-power DC motor applications.
DC motors remain installed in many industrial machines because they were historically selected for their excellent speed control, torque characteristics, and ability to handle demanding production processes.
Replacing the drive does not always require replacing the motor.
This is one of the major reasons a PowerFlex DC drive can be useful in a modernization project.
An existing motor, gearbox, coupling, roll system, winding mechanism, or production machine can potentially remain in service while the electrical drive system is upgraded.
Large DC motors have historically been used in metal-processing equipment.
Typical applications include:
These machines often involve large mechanical inertia and frequent acceleration and deceleration.
Four-quadrant operation can therefore be particularly useful.
Wire-drawing machinery requires controlled motor speed and stable torque.
The drive can be used where the production line requires:
The 100 HP class also makes the model suitable for relatively large wire-processing systems.
Cable production equipment can contain several motorized sections that must operate at controlled speeds.
DC motor control can be useful where the existing machine architecture already uses DC motors.
The drive can also support controlled braking and speed regulation where process conditions require it.
Winding is one of the most relevant applications for regenerative DC drives.
During normal winding, the motor provides torque to the reel.
During controlled deceleration or certain tension-control conditions, the motor can move into a regenerative state.
The four-quadrant capability allows the drive to handle these transitions as part of the motor-control system.
Unwinding systems frequently require the motor to provide controlled braking torque.
The drive can therefore be used in applications where the motor must alternate between motoring and regenerative operation.
This is common in:
Large printing machines may contain several motorized sections.
Older production equipment can contain DC motors that remain mechanically serviceable even though the original drive technology has become outdated.
A DC drive replacement can provide a way to modernize the control portion of the machine while maintaining the existing motor architecture.
Extruders often require stable motor speed and torque.
The 20P41AD167RA0NNN can be considered for larger DC-motor-driven extrusion systems where the existing motor is suitable for continued operation.
The drive’s feedback capability can also be useful where speed stability is important to production quality.
The drive can also be considered for heavy material-handling equipment.
Examples include:
Where a high-inertia load must be accelerated and then decelerated under controlled conditions, regenerative operation can be particularly useful.
High-inertia applications are among the situations in which the characteristics of this drive become especially relevant.
A large rotating machine can store significant kinetic energy.
During acceleration, the drive supplies energy to the motor.
During deceleration, the motor can return energy through the regenerative system.
The drive therefore has to manage both directions of energy flow.
Four-quadrant operation provides the control architecture required for these operating conditions.
The 167 A output rating provides substantial current capability for large DC motors.
This makes the model suitable for 100 HP-class industrial machinery.
The 100 HP rating places the drive in a class suitable for major production equipment.
It is considerably larger than the smaller PowerFlex DC models used for low- and medium-power applications.
Four-quadrant operation provides controlled motoring and regenerative braking in both directions.
This is particularly useful for reversing and high-inertia machinery.
Regenerative operation is valuable when braking occurs frequently.
It provides a controlled electrical method of handling motor regeneration rather than treating every deceleration event as a purely mechanical braking problem.
One of the biggest practical benefits is compatibility with existing DC motor installations.
If the motor is still mechanically and electrically suitable, the drive can potentially be upgraded without replacing the entire motor system.
DC tachometer and encoder feedback capabilities provide flexibility for applications requiring closed-loop speed control.
The available digital and analog I/O makes it easier to connect the drive with external machine-control systems.
Conformal coating provides an additional level of protection for electronic assemblies in industrial environments.
The drive is well suited to retrofit projects where the machine itself remains valuable but the existing drive technology needs to be modernized.
A DC motor retrofit can sometimes be much simpler than converting the entire machine to an AC motor system.
A complete AC conversion could require:
With a DC drive modernization, some of these changes may not be necessary.
If the existing motor is in good condition, retaining it can reduce the amount of mechanical work required.
A practical retrofit project should normally begin with an inspection of the existing machine.
Important information includes:
This information provides a much better basis for selecting a replacement drive than horsepower alone.
| Motor Parameter | Importance |
|---|---|
| Armature Voltage | Determines compatibility with drive output |
| Armature Current | Critical for selecting drive current rating |
| Motor HP | Establishes the basic power class |
| Motor kW | Useful for international specifications |
| Field Voltage | Must match field-control requirements |
| Field Current | Important for field-supply sizing |
| Base Speed | Important for speed-control setup |
| Maximum Speed | Must remain within motor mechanical limits |
| Feedback Type | Determines feedback interface |
| Load Inertia | Affects acceleration and braking |
| Duty Cycle | Affects thermal loading |
| Regenerative Operation | Determines braking/control requirements |
The 100 HP rating of the 20P41AD167RA0NNN should therefore be regarded as an important reference rather than the only selection criterion.
The following models are closely related regenerative PowerFlex DC models in the same 460/480 V three-phase family.
| Model | Input | Output Current | Motor Rating | Power | Frame | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 20P41AD129RA0NNN | 480 VAC, 3 Ph | 129 A | 75 HP | 56 kW | A | Approx. 359 × 267 × 287 mm | Approx. 14.5 kg |
| 20P41AD167RA0NNN | 480 VAC, 3 Ph | 167 A | 100 HP | 75 kW | B | Approx. 311 × 388 × 350 mm | Approx. 25.5 kg |
| 20P41AD207RA0NNN | 480 VAC, 3 Ph | 207 A | 125 HP | 93 kW | B | Approx. 311 × 388 × 350 mm | Approx. 25.5 kg |
| 20P41AD250RA0NNN | 480 VAC, 3 Ph | 250 A | 150 HP | 112 kW | B | Approx. 311 × 388 × 350 mm | Approx. 25.5 kg |
| 20P41AD330RA0NNN | 480 VAC, 3 Ph | 330 A | 200 HP | 149 kW | B | Approx. 311 × 388 × 350 mm | Approx. 25.5 kg |
The 20P41AD129RA0NNN is the lower-current option in this group and is suitable for the 75 HP class.
The 20P41AD167RA0NNN is the 100 HP / 167 A model discussed in detail in this document.
The 20P41AD207RA0NNN, 20P41AD250RA0NNN, and 20P41AD330RA0NNN provide progressively higher current and motor capacity for larger machines.
The listed dimensions and weights for the Frame B models are useful for preliminary planning. Final cabinet design should use the mechanical drawing for the exact catalog number and installation configuration.
| Model | Current | HP | kW | Frame | Typical Position |
|---|---|---|---|---|---|
| 20P41AD129RA0NNN | 129 A | 75 HP | 56 kW | A | Medium-large DC motor |
| 20P41AD167RA0NNN | 167 A | 100 HP | 75 kW | B | 100 HP class |
| 20P41AD207RA0NNN | 207 A | 125 HP | 93 kW | B | 125 HP class |
| 20P41AD250RA0NNN | 250 A | 150 HP | 112 kW | B | 150 HP class |
| 20P41AD330RA0NNN | 330 A | 200 HP | 149 kW | B | 200 HP class |
This progression makes it relatively straightforward to identify the appropriate current class when the motor rating increases.
However, the final choice should always be checked against the motor’s actual armature current and application duty.
The following are five widely used related models from the broader Allen-Bradley PowerFlex range.
They belong to different PowerFlex product families and are not direct replacements for the 20P41AD167RA0NNN. They are included as same-brand alternatives for comparison, particularly when evaluating DC-drive modernization versus a new AC-drive architecture.
| Model | Product Series | Drive Type | Voltage Class | Approx. Current Class | Typical Motor Class | Dimensions | Weight |
|---|---|---|---|---|---|---|---|
| 25B-D017N114 | PowerFlex 525 | AC Variable Frequency Drive | 480 VAC Class | 17 A Class | 10 HP Class | Frame-dependent | Frame-dependent |
| 25B-D030N114 | PowerFlex 525 | AC Variable Frequency Drive | 480 VAC Class | 30 A Class | 15 HP Class | Frame-dependent | Frame-dependent |
| 20G11ND077AA0NNNNN | PowerFlex 755 | AC Drive | 480 VAC Class | 77 A Class | 50 HP Class | Frame-dependent | Frame-dependent |
| 20G11ND156AA0NNNNN | PowerFlex 755 | AC Drive | 480 VAC Class | 156 A Class | 100 HP Class | Frame-dependent | Frame-dependent |
| 22F-D060N103 | PowerFlex 4M | Compact AC Drive | 480 VAC Class | 6 A Class | 3 HP Class | Frame-dependent | Frame-dependent |
The dimensions and weights of these AC-drive models vary according to frame size and configuration, so they should not be treated as interchangeable physical replacements for the Frame B 20P41AD167RA0NNN.
For an actual retrofit, the physical enclosure dimensions, heat dissipation, mounting holes, cable-entry arrangement, and accessory configuration should be checked separately.
The 20P41AD167RA0NNN is fundamentally different from the PowerFlex 525, PowerFlex 755, and PowerFlex 4M products listed above.
The main distinction is the motor technology.
| Characteristic | 20P41AD167RA0NNN | Typical PowerFlex AC Drive |
|---|---|---|
| Motor Type | DC Motor | AC Motor |
| Main Control Architecture | DC Drive | Variable Frequency Drive |
| Four-Quadrant DC Regeneration | Yes | Configuration-dependent |
| Existing DC Motor Retrofit | Excellent fit | Requires motor-system conversion |
| 100 HP DC Application | Yes | Not applicable as a direct DC replacement |
| DC Tachometer Feedback | Supported | Not normally used in the same way |
| Encoder Feedback | Supported | Common on advanced AC systems |
| Typical Retrofit Strategy | Replace DC drive | Replace motor and drive when converting |
Therefore, a PowerFlex 525 or PowerFlex 755 should not be selected as a direct drop-in replacement simply because its horsepower rating is similar.
The 20P41AD167RA0NNN is specifically intended for DC motor control.
The 20P41AD167RA0NNN can be considered for machinery such as:
For continuous production equipment, downtime is often a major concern.
A machine that has been mechanically optimized over many years may not need to be completely redesigned simply because its original drive needs modernization.
A DC drive replacement can provide an opportunity to retain:
while upgrading the electrical drive system.
High-inertia applications place greater demands on acceleration and deceleration control.
A drive must not only accelerate the motor but also manage the energy associated with the rotating load.
The regenerative capability of the 20P41AD167RA0NNN is therefore useful for machinery in which deceleration is a regular part of the production process.
This is particularly relevant to large reels, drums, rolls, winding systems, and other rotating equipment.
Some industrial machines repeatedly change direction.
Examples include:
In these applications, the motor may alternate between forward motoring, forward braking, reverse motoring, and reverse braking.
Four-quadrant operation provides the control structure needed for these operating states.
Because the drive is an IP20 / NEMA/UL Type Open product, appropriate cabinet installation is important.
The cabinet should provide:
Power cables and feedback cables should be routed appropriately to reduce the possibility of electrical interference.
Feedback wiring deserves particular attention because tachometer and encoder signals can be sensitive to noise generated by high-power electrical equipment.
The digital architecture of the PowerFlex DC series provides a more modern control environment than many older generations of DC drive equipment.
For maintenance personnel, this can simplify work associated with:
In a production environment, having a standardized drive platform can also make spare-parts management and maintenance training easier when multiple machines use related drive families.
Before purchasing or installing a 20P41AD167RA0NNN, the following information should be confirmed.
| Selection Item | Check |
|---|---|
| Motor Type | DC motor |
| Motor Power | Approximately 100 HP / 75 kW |
| Armature Current | Confirm against 167 A drive rating |
| Armature Voltage | Confirm motor compatibility |
| Input Voltage | 480 VAC class |
| Input Phase | 3 Phase |
| Field Voltage | Confirm field requirements |
| Field Current | Confirm field requirements |
| Feedback | Tachometer or encoder |
| Regeneration | Required / Not Required |
| Maximum Speed | Confirm motor limit |
| Base Speed | Confirm motor data |
| Load Inertia | Determine acceleration/deceleration requirements |
| Ambient Temperature | Confirm cabinet/environment |
| Cabinet Space | Confirm approximately 311 × 388 × 350 mm envelope |
| Drive Weight | Approximately 25.5 kg |
| Communication | External communication requirement must be evaluated |
| HIM | This configuration has no standard HIM |
This checklist is particularly important when replacing an older drive.
| Category | Specification |
|---|---|
| Model | 20P41AD167RA0NNN |
| Brand | Allen-Bradley |
| Series | PowerFlex DC |
| Drive Category | Regenerative DC Drive |
| Input Voltage | 480 VAC |
| Input | 3 Phase |
| Input Type | 6 Pulse |
| Output Current | 167 A |
| Motor Rating | 100 HP |
| Motor Power | 75 kW |
| Operation | Four-Quadrant |
| Frame | B |
| Enclosure | IP20 |
| Enclosure Type | NEMA/UL Type Open |
| Conformal Coating | Yes |
| Field Supply | Single-Phase Regulated |
| Feedback | DC Tachometer / Encoder |
| Digital I/O | Up to 12 |
| Analog Inputs | Up to 3 |
| Analog Outputs | Up to 4 |
| HIM | Blank Plate / No HIM |
| Communication Module | None Standard |
| Dimensions | Approx. 311 × 388 × 350 mm |
| Weight | Approx. 25.5 kg |
| Mounting | Surface / Panel Mount |
| Main Application | Industrial DC Motor Control |
| Main Retrofit Application | Existing DC Motor Modernization |
| Advantage | Practical Benefit |
|---|---|
| 167 A Output | Suitable for large DC motor applications |
| 100 HP Rating | Supports substantial industrial machinery |
| 75 kW Class | Suitable for high-power process equipment |
| Four-Quadrant Operation | Controlled motoring and braking in both directions |
| Regenerative Capability | Suitable for frequent deceleration |
| 480 VAC Three-Phase Input | Fits common industrial power systems |
| DC Motor Compatibility | Allows existing DC motors to be retained |
| Tachometer Support | Enables closed-loop speed control |
| Encoder Support | Provides additional feedback flexibility |
| Flexible I/O | Supports machine-level control interfaces |
| Conformal Coating | Additional electronic protection |
| Frame B Construction | Suitable for higher-power applications |
| IP20 Construction | Suitable for protected control cabinets |
| Retrofit Capability | Useful for modernization of older machinery |
The Allen-Bradley 20P41AD167RA0NNN PowerFlex DC Drive is a 480 VAC, three-phase, 167 A regenerative DC drive designed for 100 HP / approximately 75 kW industrial DC motor applications.
Its four-quadrant operating capability allows the motor to operate under both motoring and regenerative conditions in both directions. This makes the drive particularly suitable for machinery involving high inertia, repeated acceleration and deceleration, reversing, winding, unwinding, and controlled braking.
The drive uses Frame B construction and an IP20, NEMA/UL Type Open enclosure with conformal coating. Its approximate dimensions are 311 × 388 × 350 mm, and its approximate weight is 25.5 kg.
The integrated feedback capability supports DC tachometer and encoder applications, while the available digital and analog I/O provides flexibility when integrating the drive into a larger machine-control system.
For existing DC motor installations, the 20P41AD167RA0NNN can be particularly useful as part of a modernization strategy. Instead of replacing the entire machine, the electrical drive section can be upgraded while the existing motor and mechanical equipment remain in service, provided that the motor and machine are suitable for continued operation.
The 20P41AD167RA0NNN is a high-power Allen-Bradley PowerFlex DC regenerative drive in the 100 HP / 75 kW class.
Its main specifications are:
480 VAC, 3-phase input
167 A output current
100 HP / approximately 75 kW motor rating
Four-quadrant regenerative operation
6-pulse input
Frame B
IP20 / NEMA/UL Type Open
Conformal-coated construction
DC tachometer and encoder feedback capability
Up to 12 digital I/O
Up to 3 analog inputs
Up to 4 analog outputs
Approximately 311 × 388 × 350 mm
Approximately 25.5 kg
The model is particularly appropriate for large DC motor applications where controlled speed, torque, braking, reversing, and regeneration are required.
Its strongest practical application is in industrial machinery that already uses a substantial DC motor and needs a modern, digitally controlled drive without necessarily replacing the entire mechanical system.
The most closely related models include 20P41AD129RA0NNN, 20P41AD207RA0NNN, 20P41AD250RA0NNN, and 20P41AD330RA0NNN, which provide different current and horsepower levels within the same regenerative DC drive family.
For applications considering a transition from DC to AC motor technology, models from the PowerFlex 525, PowerFlex 755, and other PowerFlex AC families can also be evaluated, but they represent a different drive architecture and should not be treated as direct replacements without considering the motor, mechanical system, feedback, braking, and control requirements.