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Note: You requested that the content not include company names, web links, sources, or external references. I have therefore kept the body below focused entirely on the product itself and removed source citations and links. The technical information is presented as a practical product reference, and dimensions/weight are given as published nominal values where available.
The 20P41AB146RA0NNN is a PowerFlex DC regenerative drive designed for industrial DC motor control.
It belongs to the PowerFlex DC product family and is intended for applications requiring controlled DC motor speed, torque, acceleration, deceleration, reversing and regenerative operation.
This particular model is rated at 40 HP / 30 kW with a 146 A DC output rating. It is designed for a 208/240 V AC, three-phase input system, uses a 6-pulse input configuration, and supports four-quadrant regenerative operation.
The standard configuration uses an IP20, NEMA/UL Type Open enclosure, conformal-coated electronics, a blank front plate rather than a mounted HIM, and no communication module as part of the standard catalog configuration.
The unit uses Frame B construction, making it physically larger than the lower-current Frame A models in the same series.
| Item | Specification |
|---|---|
| Model | 20P41AB146RA0NNN |
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex DC |
| Product type | Regenerative DC Drive |
| Drive category | Digital DC motor drive |
| Motor rating | 40 HP |
| Motor rating | 30 kW |
| DC output current | 146 A |
| Nominal input voltage | 230 V AC |
| Input voltage class | 240 (208) VAC |
| Input phase | Three-phase |
| Input configuration | 6-pulse |
| Motor operation | Four-quadrant |
| Regenerative operation | Yes |
| Frame size | B |
| Enclosure | IP20 |
| Enclosure type | NEMA/UL Type Open |
| Conformal coating | Yes |
| HIM | No HIM / blank plate |
| Communication module | None in standard configuration |
| Field supply | Single-phase regulated |
| Cooling | Air cooled |
| Typical application | Industrial DC motor control |
The catalog number 20P41AB146RA0NNN contains configuration information that helps identify the basic drive characteristics.
The important portion for practical selection is the 146 current designation.
This corresponds to the 146 A DC output class.
The product selection table places the model in the 30 kW / 40 HP range for 200–240 V three-phase regenerative drives.
The model therefore sits between the 30 HP and 50 HP classes in terms of the broader product family and represents a significant step up from the 110 A / 30 HP model.
| Parameter | Specification |
|---|---|
| Model | 20P41AB146RA0NNN |
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Series | PowerFlex DC |
| Drive type | Regenerative DC drive |
| Motor rating | 40 HP |
| Motor rating | 30 kW |
| Output current | 146 A |
| Nominal input | 230 V AC |
| Input voltage class | 240 (208) VAC |
| Input phase | 3-phase |
| Input type | 6-pulse |
| Motor operation | Four-quadrant |
| Regenerative braking | Yes |
| Field supply | Single-phase regulated |
| Enclosure | IP20 |
| Enclosure classification | NEMA/UL Type Open |
| Conformal coating | Yes |
| HIM | Blank plate / no HIM |
| Communication module | None standard |
| Frame size | B |
| Cooling | Air cooled |
| Approx. drive weight | 25.5 kg |
| Approx. packaged weight | 27.5 kg |
| Overall frame height | 311 mm |
| Overall frame width | 388 mm |
| Overall frame depth | 350 mm |
| Mounting-related height | 275 mm |
| Mounting-related width | 375 mm |
| Typical installation | Electrical control cabinet |
| Application class | Industrial DC motor control |
The 20P41AB146RA0NNN uses Frame B.
The standard Frame B mechanical envelope is approximately:
| Dimension | Metric | Imperial |
|---|---|---|
| Overall height A | 311 mm | 12.2 in |
| Overall width B | 388 mm | 15.3 in |
| Overall depth C1 | 350 mm | 13.8 in |
| Mounting height A1 | 275 mm | 10.8 in |
| Mounting width B1 | 375 mm | 14.8 in |
| A2 | 16.5 mm | 0.65 in |
| A3 | 7 mm | 0.3 in |
| Optional terminal-related depth C2 | 380 mm | 15.0 in |
For practical cabinet design, it is better to reserve additional space around these dimensions rather than designing the enclosure to the exact outside dimensions.
The installation area needs room for power wiring, control wiring, ventilation, maintenance access and cable bending radius.
The published Frame B drive weight for the 146 A / 230 V class is approximately:
25.5 kg
The approximate shipping or packaged weight is:
27.5 kg
| Weight Item | Weight |
|---|---|
| Drive weight | 25.5 kg |
| Drive + packaging | 27.5 kg |
| Weight difference | Approximately 2.0 kg |
For transportation and handling, the packaged weight should be considered.
For cabinet mechanical loading, the approximately 25.5 kg drive weight is the more useful value.
The 20P41AB146RA0NNN is designed for industrial DC motor applications where basic single-direction motor control is not sufficient.
The drive provides controlled electrical power to a DC motor while managing motor speed and torque.
Its regenerative four-quadrant architecture is especially useful when the machine needs to change between motoring and braking.
A conventional motor-driven load generally operates in one direction and consumes energy.
A more demanding industrial machine can behave differently.
For example, a large roll can continue rotating because of its inertia even after the machine begins to decelerate.
The motor can then be driven mechanically by the load and operate as a generator.
The regenerative drive is designed to control this operating condition.
This makes the 20P41AB146RA0NNN particularly suitable for machinery involving high inertia, frequent reversing, controlled braking, winding, unwinding and tension control.
One of the defining characteristics of this model is four-quadrant operation.
| Quadrant | Motor Speed | Motor Torque | Operating Condition |
|---|---|---|---|
| I | Positive | Positive | Forward motoring |
| II | Positive | Negative | Forward regenerative braking |
| III | Negative | Negative | Reverse motoring |
| IV | Negative | Positive | Reverse regenerative braking |
This allows the drive to control both rotational direction and torque direction.
A machine can therefore accelerate forward, operate forward, decelerate regeneratively, reverse, accelerate in reverse and then regenerate again while slowing down.
This is considerably more capable than a basic single-quadrant DC controller.
Regeneration occurs when the mechanical load drives the motor.
This can happen in several situations.
For example:
During these conditions, mechanical energy is transferred back through the motor.
The regenerative drive provides controlled electrical handling of this operating state.
This is one of the primary reasons to select a regenerative DC drive.
The product is rated for approximately:
40 HP / 30 kW
This makes it appropriate for considerably larger DC motors than the 25 HP and 30 HP models in the same product sequence.
The approximate conversion is:
40 HP × 0.746 ≈ 29.84 kW
which corresponds closely to the nominal 30 kW industrial rating.
However, motor horsepower should not be the only selection criterion.
The actual DC motor nameplate must be checked.
Important parameters include:
The 146 A rating is one of the most important characteristics of this product.
It provides substantially more current capacity than the 110 A model.
| Model | Current | Approx. Motor Rating |
|---|---|---|
| 20P41AB073RA0NNN | 73 A | 20 HP / 15 kW |
| 20P41AB093RA0NNN | 93 A | 25 HP / 18.5 kW |
| 20P41AB110RA0NNN | 110 A | 30 HP / 22 kW |
| 20P41AB146RA0NNN | 146 A | 40 HP / 30 kW |
| 20P41AB180RA0NNN | 180 A | 50 HP / 37 kW |
The 146 A model is therefore a logical choice when the motor falls into the 40 HP class and the motor’s actual armature current is suitable.
The drive operates in the 200–240 V AC three-phase class.
The catalog configuration is identified as 240 (208) VAC, three-phase.
| Input Parameter | Specification |
|---|---|
| Model | 20P41AB146RA0NNN |
| Nominal voltage | 230 V AC |
| Voltage class | 240 (208) VAC |
| Phase | 3-phase |
| Input topology | 6-pulse |
| Application | Industrial DC motor drive |
| Frequency | Industrial AC supply |
| Installation | Industrial electrical system |
The actual incoming power system should be checked against the electrical installation requirements before commissioning.
The model uses a 6-pulse input configuration.
This is a common industrial rectifier arrangement for three-phase power conversion.
The three-phase AC supply is converted into controlled DC power for the motor armature circuit.
The six-pulse architecture provides a practical solution for medium-power industrial DC drives.
The drive provides a single-phase regulated field supply.
This is important for separately excited DC motors where the field circuit needs independent control.
The field circuit should be matched to the motor’s actual:
The field circuit is an important part of the complete DC motor system and should not be overlooked during a retrofit.
The product uses an IP20, NEMA/UL Type Open enclosure.
| Parameter | Specification |
|---|---|
| Model | 20P41AB146RA0NNN |
| IP rating | IP20 |
| Enclosure type | NEMA/UL Type Open |
| Conformal coating | Yes |
| Outdoor installation | Not as a standalone unit |
| Cabinet installation | Required |
| Cooling | Air cooled |
| External environmental protection | Required |
IP20 means the drive is intended for installation inside a suitable electrical enclosure.
It should not be treated as a sealed industrial outdoor drive.
The electronic assemblies are supplied with conformal coating.
This provides additional protection against certain industrial environmental conditions.
However, conformal coating does not turn the product into a sealed drive.
The installation should still protect the equipment against:
A properly designed control cabinet remains important.
The 20P41AB146RA0NNN standard configuration does not include a mounted HIM.
Instead, the front panel uses a blank plate.
This configuration can be suitable when the drive is controlled by a PLC or centralized machine-control system.
The control architecture can be based on:
For a machine retrofit, the existing control architecture should be checked carefully.
The standard catalog configuration does not include a communication module.
This is useful to understand when planning a control-system replacement.
A drive without a standard communication module can still be integrated into a machine using hardwired control signals.
Depending on the overall system design, the machine may use:
Where network communication is required, the appropriate communication option and system architecture need to be evaluated separately.
The strongest advantage is the ability to operate in four quadrants.
This is particularly valuable when the machine needs both forward and reverse operation as well as regenerative braking.
The 146 A output rating allows the drive to handle a larger motor class than the 73 A, 93 A and 110 A models.
This makes it suitable for larger industrial machinery.
The 40 HP / 30 kW rating provides a useful capacity for medium-to-large DC motor applications.
It is especially appropriate when the machine requires more power than a 30 HP drive can provide.
Regenerative operation can be particularly valuable for machinery with high kinetic energy.
Instead of relying entirely on mechanical braking, the drive can control regenerative motor operation.
Four-quadrant control makes the drive suitable for machines that frequently change direction.
This can improve machine response compared with systems relying heavily on mechanical contactors and braking components.
The drive is well suited to loads such as:
These loads can produce significant regenerative energy during deceleration.
The conformal coating provides additional protection for electronic assemblies in industrial environments.
Frame B provides a larger physical platform suitable for higher-current drive ratings.
The larger frame should be considered during cabinet design.
Winding equipment is one of the most suitable applications for a regenerative DC drive.
The motor may need to:
The regenerative capability becomes particularly useful during deceleration.
Unwind machines can require controlled braking torque.
The material is pulled by another section of the production line while the unwind motor controls the roll.
The motor can therefore operate in regeneration for extended periods.
Typical applications include:
Paper-processing machinery can contain large rolls with significant inertia.
The drive may be used for:
The regenerative architecture is useful when large rolls are frequently accelerated and decelerated.
Potential applications include:
The ability to regulate both speed and torque can be important for maintaining material quality.
Printing machines can require coordinated movement between multiple rollers.
Potential drive applications include:
The drive can be useful where controlled acceleration, deceleration and speed regulation are required.
Cable and wire processing frequently requires controlled winding and tension.
Applications can include:
The regenerative capability can help manage the motor’s transition between motoring and braking conditions.
The product can also be considered for various metal-processing applications involving DC motors.
Examples include:
The exact suitability depends on the motor rating and machine duty.
High-inertia machinery is one of the strongest use cases.
Examples include:
When these systems decelerate, the mechanical energy can drive the motor.
A regenerative drive is particularly appropriate for controlling that condition.
The four-quadrant architecture makes the product suitable for reversing applications.
A typical operating cycle can be:
Forward acceleration → forward operation → regenerative braking → zero speed → reverse acceleration → reverse operation → regenerative braking
This type of cycle can occur repeatedly in industrial machinery.
The product can be attractive for modernizing an existing DC machine.
Where the existing DC motor remains mechanically and electrically serviceable, a drive replacement may allow the machine to retain much of its existing mechanical infrastructure.
Potentially reusable components include:
The exact retrofit feasibility depends on the existing motor and control system.
The 40 HP rating alone is not enough to determine whether this drive is suitable for a specific motor.
The following parameters should be checked.
| Motor Parameter | Required Condition |
|---|---|
| Motor type | Compatible DC motor |
| Motor power | Approximately 40 HP / 30 kW |
| Armature current | Compatible with 146 A drive rating |
| Armature voltage | Compatible |
| Field voltage | Compatible |
| Field current | Compatible |
| Base speed | Compatible |
| Maximum speed | Within motor limits |
| Feedback | Compatible |
| Duty cycle | Suitable |
| Cooling | Suitable |
| Load inertia | Evaluated |
| Regeneration | Required where applicable |
| Reversal frequency | Suitable |
The PowerFlex DC drive family is designed with substantial short-term overload capability.
For the relevant drive family, the published technical data identifies a 150% overload capability for 60 seconds and 200% for 3 seconds.
This is useful for applications requiring short periods of elevated torque.
However, overload capability should not be interpreted as permission to continuously operate above the rated current.
Actual operation should remain within the drive, motor, thermal and application requirements.
The Frame B construction has an approximate overall envelope of:
311 mm high × 388 mm wide × 350 mm deep
with an approximate drive weight of:
25.5 kg
The cabinet designer should allow additional clearance around the drive.
| Mechanical Item | Approximate Value |
|---|---|
| Overall height | 311 mm |
| Overall width | 388 mm |
| Overall depth | 350 mm |
| Mounting height | 275 mm |
| Mounting width | 375 mm |
| Drive weight | 25.5 kg |
| Packaged weight | 27.5 kg |
| Frame | B |
| Enclosure | IP20 |
These dimensions should be treated as approximate equipment dimensions for planning purposes.
The final mechanical drawing should be used when manufacturing a mounting panel.
The drive should be installed inside an appropriately designed electrical enclosure.
The cabinet should account for:
A common mistake in retrofit projects is to consider only the drive body dimensions.
The actual installation space is larger because power cables and control cables need room.
The drive is air cooled.
Adequate airflow should therefore be maintained around the unit.
Important considerations include:
A cabinet that is physically large enough can still experience thermal problems if internal airflow is poor.
A complete installation can require suitable:
The protective equipment should be selected based on the complete installation and applicable electrical requirements.
The 146 A DC output rating should not be used by itself to determine every upstream protective-device rating.
Depending on the application, speed feedback can be important.
Possible feedback arrangements include:
Feedback can improve:
For a retrofit, the existing feedback device should be identified before final drive configuration.
Regular maintenance can significantly improve the service life of an industrial DC drive system.
| Maintenance Area | Recommended Check |
|---|---|
| Drive | Inspect general condition |
| Cooling system | Check airflow and fan |
| Air passages | Keep clean |
| Electrical terminals | Inspect connections |
| Cabinet | Inspect dust and moisture |
| Grounding | Verify grounding |
| Motor brushes | Inspect wear |
| Commutator | Inspect condition |
| Motor bearings | Check mechanical condition |
| Feedback | Verify signal stability |
| Wiring | Inspect insulation |
| Motor temperature | Monitor abnormal heating |
| Drive temperature | Monitor abnormal heating |
The drive should be maintained together with the motor.
A new controller cannot compensate for a motor with severely worn brushes, commutator damage, insulation deterioration or mechanical bearing problems.
The following models are particularly useful for comparison because they belong to the same PowerFlex DC regenerative family.
| Model | Motor Rating | Power | DC Output Current | Input | Frame | Enclosure | Weight (kg) |
|---|---|---|---|---|---|---|---|
| 20P41AB093RA0NNN | 25 HP | 18.5 kW | 93 A | 208/240 V AC, 3-phase | A | IP20 | Approx. 12 kg |
| 20P41AB110RA0NNN | 30 HP | 22 kW | 110 A | 208/240 V AC, 3-phase | A | IP20 | Approx. 12 kg |
| 20P41AB146RA0NNN | 40 HP | 30 kW | 146 A | 208/240 V AC, 3-phase | B | IP20 | 25.5 kg |
| 20P41AB180RA0NNN | 50 HP | 37 kW | 180 A | 208/240 V AC, 3-phase | B | IP20 | Approx. 25–30 kg |
| 20P41AB218RA0NNN | 60 HP | 45 kW | 218 A | 208/240 V AC, 3-phase | B | IP20 | Approx. 25–30 kg |
The exact weight of models other than the target model should be verified against the corresponding mechanical documentation before shipping or cabinet-load calculations.
| Parameter | 20P41AB093RA0NNN | 20P41AB110RA0NNN | 20P41AB146RA0NNN | 20P41AB180RA0NNN | 20P41AB218RA0NNN |
|---|---|---|---|---|---|
| Motor HP | 25 HP | 30 HP | 40 HP | 50 HP | 60 HP |
| Power | 18.5 kW | 22 kW | 30 kW | 37 kW | 45 kW |
| DC current | 93 A | 110 A | 146 A | 180 A | 218 A |
| Input | 208/240 V | 208/240 V | 208/240 V | 208/240 V | 208/240 V |
| Phase | 3-phase | 3-phase | 3-phase | 3-phase | 3-phase |
| Input type | 6-pulse | 6-pulse | 6-pulse | 6-pulse | 6-pulse |
| Regenerative | Yes | Yes | Yes | Yes | Yes |
| Four-quadrant | Yes | Yes | Yes | Yes | Yes |
| Frame | A | A | B | B | B |
| Enclosure | IP20 | IP20 | IP20 | IP20 | IP20 |
| Conformal coating | Yes | Yes | Yes | Yes | Yes |
| Approx. weight | ~12 kg | ~12 kg | 25.5 kg | ~25–30 kg | ~25–30 kg |
For customers who want to compare a broader range of the same family, these five models are also useful.
| Model | Motor Rating | Power | Output Current | Frame | Input | Enclosure | Weight (kg) |
|---|---|---|---|---|---|---|---|
| 20P41AB038RA0NNN | 10 HP | 7.5 kW | 38 A | A | 208/240 V, 3-phase | IP20 | Approx. 11.5 |
| 20P41AB055RA0NNN | 15 HP | 11 kW | 55 A | A | 208/240 V, 3-phase | IP20 | Approx. 11.5–12 |
| 20P41AB073RA0NNN | 20 HP | 15 kW | 73 A | A | 208/240 V, 3-phase | IP20 | Approx. 12 |
| 20P41AB265RA0NNN | 75 HP | 56 kW | 265 A | B | 208/240 V, 3-phase | IP20 | Approx. 29.5 |
| 20P41AB360RA0NNN | 100 HP | 75 kW | 360 A | B | 208/240 V, 3-phase | IP20 | Approx. 32 |
This selection gives a useful view of the available capacity range around the 40 HP model.
If the intention is to compare the 20P41AB146RA0NNN with more modern AC drive products rather than only DC drives, the following models are useful reference points.
They are not direct drop-in replacements.
A change from DC motor control to AC motor control normally involves consideration of the motor, feedback system, braking method, control wiring and machine parameters.
| Model | Product Family | Drive Type | Typical Application | Voltage Class | Approx. Current Class | Dimensions / Format | Weight (kg) |
|---|---|---|---|---|---|---|---|
| 25B-D010N104 | PowerFlex 525 | AC drive | General machinery | 480 V class | 10 A class | Compact | Configuration dependent |
| 25B-D017N104 | PowerFlex 525 | AC drive | Conveyors / machinery | 480 V class | 17 A class | Compact | Configuration dependent |
| 22B-D010N104 | PowerFlex 40 | AC drive | General-purpose applications | 480 V class | 10 A class | Compact | Configuration dependent |
| 20F11ND034AA0NNNNN | PowerFlex 753 | AC drive | Industrial machinery | 480 V class | 34 A class | Industrial | Configuration dependent |
| 20G11ND034AA0NNNNN | PowerFlex 755 | AC drive | High-performance machinery | 480 V class | 34 A class | Industrial | Configuration dependent |
Because these products belong to different drive architectures, their dimensions and weights depend on frame, option and enclosure configuration.
The PowerFlex 525 family is a compact AC drive platform.
It is commonly considered for:
Compared with the 20P41AB146RA0NNN, the main difference is the motor technology.
The DC drive is intended for a DC motor.
An AC drive generally requires an AC motor.
Therefore, using an AC drive as an alternative can involve a complete motor-and-drive conversion rather than simply changing the controller.
The PowerFlex 40 family is designed for general-purpose AC motor applications.
It can be appropriate for:
It does not provide the same system architecture as a 146 A regenerative DC drive.
For a machine requiring continuous regenerative four-quadrant DC operation, the two should not be considered equivalent.
The PowerFlex 753 family is intended for more advanced industrial AC motor applications.
It can be considered during a modernization project when an old DC motor and drive are being replaced with an AC motor and AC drive.
A conversion may require:
It therefore represents a modernization direction rather than a direct substitute.
The PowerFlex 755 family is intended for demanding AC motor applications where advanced motor control and system integration are important.
It can be considered for:
Again, the motor technology and complete system architecture should be considered.
| Application | Suitability | Main Benefit |
|---|---|---|
| Winding machines | Excellent | Regeneration and torque control |
| Unwinding machines | Excellent | Controlled braking |
| Paper processing | Excellent | Roll and web control |
| Film processing | Excellent | Speed and tension control |
| Printing | Very good | Speed and torque regulation |
| Cable processing | Excellent | Winding and tension control |
| Wire processing | Excellent | Controlled speed and torque |
| Metal processing | Very good | High-current DC control |
| Reversing machinery | Excellent | Four-quadrant operation |
| High-inertia machinery | Excellent | Regenerative braking |
| Heavy conveyors | Very good | Dynamic acceleration/deceleration |
| Material handling | Very good | Controlled torque |
| Existing DC motor retrofit | Excellent | Existing motor may be retained |
| New AC motor application | Not normally first choice | AC drive may be more suitable |
A winding machine can experience substantial changes in mechanical conditions as the roll diameter increases.
The control system may need to maintain:
The regenerative characteristics of the drive are particularly useful when the roll is being decelerated.
An unwind motor often acts as a controlled brake.
The downstream equipment pulls the material forward, causing the unwind roll to drive the motor.
The motor then enters a regenerative condition.
The drive can control the resulting torque and help maintain stable material tension.
This is one of the most practical applications for a four-quadrant DC drive.
A high-inertia machine can store a large amount of mechanical energy.
If the machine must stop quickly, the energy has to be controlled.
The regenerative drive can provide electrical braking torque rather than depending entirely on mechanical brakes.
This can be particularly valuable in:
Frequent reversing can be demanding for a motor-control system.
The drive may repeatedly transition between:
Forward motoring
and
Forward regenerative braking
followed by:
Reverse motoring
and:
Reverse regenerative braking
A four-quadrant drive is specifically designed to accommodate this type of operating pattern.
If an existing machine already uses a DC motor, replacing the old drive with a modern DC drive can sometimes be less disruptive than converting the entire machine to AC.
Potential benefits include:
The existing motor should nevertheless be inspected before a retrofit.
Before ordering or installing the 20P41AB146RA0NNN, verify the following:
| Selection Item | Requirement |
|---|---|
| Drive model | 20P41AB146RA0NNN |
| Motor technology | DC |
| Motor power | Approximately 40 HP / 30 kW |
| Armature current | Compatible with 146 A |
| Armature voltage | Compatible |
| Field voltage | Compatible |
| Field current | Compatible |
| Motor speed | Compatible |
| Maximum motor speed | Within mechanical limit |
| Feedback | Compatible |
| Machine duty | Compatible |
| Regeneration | Required where applicable |
| Reversal | Compatible |
| Load inertia | Evaluated |
| Cabinet space | Frame B space available |
| Cooling | Adequate |
| Electrical supply | 208/240 V class |
| Control signals | Compatible |
| Communication | Verify system requirement |
| Item | Recommended Planning Value |
|---|---|
| Drive | 20P41AB146RA0NNN |
| Frame | B |
| Height | 311 mm |
| Width | 388 mm |
| Depth | 350 mm |
| Mounting height | 275 mm |
| Mounting width | 375 mm |
| Drive weight | 25.5 kg |
| Packaged weight | 27.5 kg |
| Enclosure | IP20 |
| External cabinet | Required |
| Cooling | Air cooled |
| Ventilation | Required |
| Service clearance | Required |
| Cable space | Required |
The cabinet should not be manufactured based solely on the nominal 311 × 388 × 350 mm envelope.
Additional space is required for installation and maintenance.
| Parameter | 20P41AB146RA0NNN |
|---|---|
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex DC |
| Product type | Regenerative DC drive |
| Motor rating | 40 HP |
| Motor rating | 30 kW |
| Output current | 146 A |
| Input voltage | 230 V AC nominal |
| Input voltage class | 240 (208) VAC |
| Input phase | 3-phase |
| Input type | 6-pulse |
| Motor operation | Four-quadrant |
| Regeneration | Yes |
| Field supply | Single-phase regulated |
| Frame size | B |
| Enclosure | IP20 |
| Enclosure type | NEMA/UL Type Open |
| Conformal coating | Yes |
| HIM | Blank plate / no HIM |
| Communication module | None standard |
| Cooling | Air cooled |
| Height | 311 mm |
| Width | 388 mm |
| Depth | 350 mm |
| Mounting height | 275 mm |
| Mounting width | 375 mm |
| Drive weight | 25.5 kg |
| Packaged weight | 27.5 kg |
| Typical installation | Industrial control cabinet |
| Main application | DC motor control |
| Main advantage | Four-quadrant regenerative operation |
| Approx. Motor Rating | Recommended Model | DC Current |
|---|---|---|
| 5 HP | 20P41AB020RA0NNN | 20 A |
| 7.5 HP | 20P41AB029RA0NNN | 29 A |
| 10 HP | 20P41AB038RA0NNN | 38 A |
| 15 HP | 20P41AB055RA0NNN | 55 A |
| 20 HP | 20P41AB073RA0NNN | 73 A |
| 25 HP | 20P41AB093RA0NNN | 93 A |
| 30 HP | 20P41AB110RA0NNN | 110 A |
| 40 HP | 20P41AB146RA0NNN | 146 A |
| 50 HP | 20P41AB180RA0NNN | 180 A |
| 60 HP | 20P41AB218RA0NNN | 218 A |
| 75 HP | 20P41AB265RA0NNN | 265 A |
| 100 HP | 20P41AB360RA0NNN | 360 A |
This makes the 20P41AB146RA0NNN the natural selection point for a 40 HP / 30 kW DC motor application within this 200–240 V regenerative drive range.
The 20P41AB146RA0NNN is a high-capacity member of the PowerFlex DC regenerative drive family, intended for 40 HP / 30 kW DC motor applications.
Its 146 A output rating provides substantially greater capacity than the 93 A and 110 A models, while the move to Frame B provides the physical construction needed for this higher-current class.
Its most important functional characteristic is the combination of four-quadrant operation and regeneration.
This makes the product particularly valuable in machinery where the motor is not simply accelerating and running in one direction.
In a winding machine, for example, the motor can accelerate the roll, maintain speed, regulate torque, and then transition into regenerative operation during deceleration.
In an unwind system, the motor can act as a controlled brake while the material is pulled by another section of the production line.
In a reversing machine, the drive can move through forward motoring, regenerative braking, reverse motoring and reverse regenerative braking.
For high-inertia machinery, regenerative control can provide an effective method of controlling mechanical energy during deceleration.
The IP20 NEMA/UL Type Open enclosure means that the drive is intended for installation inside an appropriate cabinet.
The cabinet must provide environmental protection, adequate ventilation and sufficient space for electrical wiring and maintenance.
The Frame B dimensions of approximately 311 mm × 388 mm × 350 mm and the 25.5 kg drive weight should be considered during cabinet design and equipment handling.
The product’s conformal-coated electronics provide an additional layer of protection for industrial operation, but they do not eliminate the need for suitable environmental protection.
From a retrofit perspective, the model is particularly interesting when an existing DC motor is still mechanically sound.
A suitable drive replacement can potentially retain the existing motor, gearbox, coupling, rolls and other mechanical components, reducing the scope of a complete machine conversion.
The most important selection rule is to avoid choosing the drive based solely on the 40 HP figure.
The motor’s armature current, armature voltage, field voltage, field current, speed range, feedback arrangement, duty cycle and load inertia must all be evaluated.
For a smaller motor, the 93 A, 110 A or other lower-current models may be more appropriate.
For larger motors, the 180 A, 218 A, 265 A and 360 A models provide higher current capacity.
Overall, the 20P41AB146RA0NNN is best characterized as a 40 HP / 30 kW, 146 A, 200–240 V class, three-phase, six-pulse, four-quadrant regenerative DC drive in Frame B construction.
Its strongest application areas are winding, unwinding, paper processing, film processing, printing, cable and wire processing, high-inertia machinery, reversing equipment, tension-control systems, material handling and existing DC motor modernization.
For an established industrial DC machine that requires substantial current capacity and regenerative four-quadrant operation, this model provides a strong fit within its intended application range.