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

The 20BC600N0ANNNNC0 is a high-power PowerFlex 700 adjustable-frequency AC drive designed for large three-phase industrial motors.
It is a 400 VAC, three-phase, 600 A drive with a 350 kW Normal-Duty rating and a 300 kW Heavy-Duty rating. The drive belongs to the PowerFlex 700 series and uses vector control with 24 V I/O. Its standard configuration is IP00 / Open Type, with no HIM, no internal brake IGBT, no drive-mounted brake resistor, no CE-compliant filter, no communication module and no feedback option.
The model is intended for large industrial equipment where conventional motor starters are insufficient and where controlled speed, acceleration, deceleration and motor torque are required.
Its 600 A output rating places it in the high-power end of the PowerFlex 700 range. The same family also contains lower-current 365 A, 415 A, 481 A and 535 A versions, as well as higher-current 730 A and 875 A versions.
| Item | Specification |
|---|---|
| Model | 20BC600N0ANNNNC0 |
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex 700 |
| Product type | Adjustable Frequency AC Drive |
| Product category | High-power industrial VFD |
| Input voltage | 400 VAC class |
| Input phase | 3-phase |
| Continuous output current | 600 A |
| 1-minute output current | 660 A |
| 3-second output current | 900 A |
| Normal-Duty power | 350 kW |
| Heavy-Duty power | 300 kW |
| Frame | Frame 8 |
| Enclosure | IP00 / Open Type |
| Control | Vector Control |
| I/O | 24 V |
| HIM | No HIM / blank plate |
| Brake IGBT | No |
| Drive-mounted brake resistor | No |
| CE-compliant filter | No |
| Communication module | No |
| Feedback | No |
| Installation | Open / cabinet-integrated |
| Cooling | Forced-air |
| Typical application | Large industrial AC motors |
The model is specifically identified as a PowerFlex 700, 400 VAC, three-phase, 600 A, 350 kW Normal-Duty / 300 kW Heavy-Duty drive.
| Parameter | 20BC600N0ANNNNC0 |
|---|---|
| Model | 20BC600N0ANNNNC0 |
| Brand | Allen-Bradley |
| Series | PowerFlex 700 |
| Product type | Variable Frequency AC Drive |
| Input voltage | 400 VAC class |
| Input phase | 3-phase |
| Input frequency | 50/60 Hz class |
| Continuous output current | 600 A |
| 1-minute output current | 660 A |
| 3-second output current | 900 A |
| Normal-Duty rating | 350 kW |
| Heavy-Duty rating | 300 kW |
| Frame size | Frame 8 |
| Enclosure | IP00 / Open Type |
| Control method | Vector Control |
| Control I/O | 24 V |
| HIM | None / blank plate |
| Brake IGBT | None |
| Drive-mounted brake resistor | None |
| CE-compliant filter | None |
| Communication module | None |
| Feedback | None |
| Mounting configuration | Open / cabinet-integrated |
| Cooling | Forced-air |
| Motor type | Three-phase AC motor |
| Duty category | Normal Duty / Heavy Duty |
| Approx. width | 757.8 mm |
| Approx. height | 2283.7 mm |
| Approx. depth | 381.7 mm |
| Approx. dimensions | 757.8 × 2283.7 × 381.7 mm |
| Approx. weight | 384 kg |
| Approx. packaged weight | 431 kg |
| Weight | 384 kg |
| Installation environment | Industrial electrical cabinet |
| Application level | High-power industrial |
The electrical ratings of this model are particularly clear: 600 A continuous, 660 A for one minute and 900 A for three seconds, with 350 kW Normal Duty and 300 kW Heavy Duty. The 600 A model is Frame 8 in the PowerFlex 700 400 VAC range.
The 20BC600N0ANNNNC0 is a very large industrial drive.
For the Frame 8 open configuration, an approximate equipment envelope is 757.8 mm wide × 2283.7 mm high × 381.7 mm deep, with an approximate drive weight of 384 kg.
| Mechanical Parameter | Value |
|---|---|
| Model | 20BC600N0ANNNNC0 |
| Width | 757.8 mm |
| Height | 2283.7 mm |
| Depth | 381.7 mm |
| Approx. dimensions | 757.8 × 2283.7 × 381.7 mm |
| Approx. drive weight | 384 kg |
| Approx. packaged weight | 431 kg |
| Frame | Frame 8 |
| Enclosure | IP00 / Open Type |
| Mounting | Cabinet integration |
| Cooling | Forced-air |
Because this is an IP00 / Open Type product, the final installation needs an appropriate cabinet or enclosure.
The enclosure dimensions should not be based solely on the drive body.
Additional space may be required for power cables, cable bending radius, ventilation, maintenance access, grounding, incoming protection equipment and other cabinet components.
The 384 kg equipment weight is also important when planning transportation, lifting and installation.
The 20BC600N0ANNNNC0 is essentially a high-power electronic motor controller.
It receives three-phase industrial AC power and produces a controlled electrical output for a three-phase AC motor.
The drive can vary motor speed by changing the output frequency and voltage.
Instead of allowing the motor to run continuously at a fixed speed, the drive can adjust motor operation according to the machine’s actual requirements.
This makes it particularly useful for large equipment where the mechanical load changes during operation.
For example, a conveyor may need a slow speed during loading and a higher speed during transportation.
A pump may need to provide different flow rates throughout the production cycle.
A large fan may require maximum airflow only during certain operating conditions.
A crusher or mill may experience substantial load variations.
The drive allows these processes to be controlled electrically rather than relying solely on mechanical methods.
The PowerFlex 700 platform is designed for industrial applications requiring more advanced motor control than a simple starter can provide.
The 20BC600N0ANNNNC0 represents a high-current version of this platform.
Its 600 A output rating makes it suitable for large motors and large rotating machines.
The drive’s vector-control architecture provides control over motor speed and torque.
This makes it appropriate for applications where the motor needs to respond to changes in mechanical load.
The open construction also allows the drive to be incorporated into a larger engineered electrical system.
For large industrial installations, this can be useful because the drive can be installed alongside disconnects, reactors, protection devices, PLC equipment, control components and other power equipment.
The 600 A rating is the most important electrical characteristic of this model.
The drive is rated for:
| Current Rating | Value |
|---|---|
| Continuous output | 600 A |
| 1-minute output | 660 A |
| 3-second output | 900 A |
This provides useful short-term current capability during demanding operating conditions.
The 600 A class is significantly larger than the 481 A and 535 A models in the same family.
The next major step above it is the 730 A model, which moves into Frame 9.
The PowerFlex 700 selection data places the 600 A model at 350 kW Normal Duty and 300 kW Heavy Duty for the 400 VAC configuration.
One of the most important points when selecting this drive is the difference between Normal Duty and Heavy Duty.
| Duty Type | Rating |
|---|---|
| Normal Duty | 350 kW |
| Heavy Duty | 300 kW |
| Continuous current | 600 A |
| 1-minute current | 660 A |
| 3-second current | 900 A |
A Normal-Duty application generally has a less demanding overload profile.
A Heavy-Duty application may have more demanding starting torque, acceleration or repeated overload requirements.
For this reason, a 300 kW motor used in a very demanding application may be a more appropriate match than simply looking at the 350 kW Normal-Duty rating.
The motor nameplate current and actual load profile should always be considered.
The 20BC600N0ANNNNC0 uses vector control.
This provides considerably more sophisticated motor control than simple scalar V/f control.
Vector control can regulate motor flux and torque more effectively and can provide better response when the mechanical load changes.
This is valuable in applications such as:
The benefit is especially noticeable in applications where motor torque needs to remain controlled during acceleration or changing load conditions.
The model uses 24 V I/O.
This is important for control-system integration.
The drive can be incorporated into industrial control architectures where 24 V signals are used for commands, status and interlocking.
When replacing an existing drive, the I/O voltage should be checked carefully.
Two drives with the same 400 VAC input and 600 A output can still require different control wiring if their I/O configurations are different.
The model is supplied with no standard HIM, meaning it uses a blank-plate configuration.
HIM refers to the local Human Interface Module.
The absence of a standard HIM is not necessarily a problem in an automated system.
In many industrial installations, the drive is operated from a PLC, HMI or supervisory control system.
However, for commissioning and maintenance, technicians may prefer a local interface.
Therefore, the absence of a standard HIM should be considered when designing the final system.
The standard 20BC600N0ANNNNC0 configuration does not include an internal brake IGBT.
This is important for high-inertia applications.
When a motor decelerates, energy can flow back toward the drive DC bus.
If the machine needs rapid deceleration, that energy must be handled correctly.
Potentially demanding applications include:
The lack of an internal brake IGBT does not mean the drive cannot be used in applications requiring braking.
It means that the braking method needs to be designed separately.
The catalog configuration also does not include a drive-mounted brake resistor.
This is consistent with the open high-power configuration.
Where regenerative energy must be dissipated, the complete system may require an appropriate external braking arrangement or another energy-management method.
The required solution depends on:
The IP00 / Open Type configuration is one of the most important physical characteristics of the product.
It means the drive should be installed as part of a properly engineered enclosure or electrical cabinet.
The drive is not intended to be treated as a sealed, weatherproof standalone unit.
The final installation needs appropriate protection from:
The cabinet also needs appropriate ventilation.
A 600 A industrial drive can generate considerable heat.
The power electronics, switching devices, bus components and associated equipment produce heat during normal operation.
Forced-air cooling is therefore an important part of the installation.
The cabinet designer should consider:
| Cooling Factor | Requirement |
|---|---|
| Air inlet | Adequate clean airflow |
| Air outlet | Sufficient exhaust capacity |
| Ambient temperature | Must remain within allowable limits |
| Cabinet temperature | Must be controlled |
| Fan condition | Regular inspection |
| Air filters | Must remain clean |
| Ventilation path | Must remain unobstructed |
| Heat dissipation | Must match drive losses |
Poor ventilation can reduce drive life and increase the probability of thermal faults.
Large conveyors are among the most suitable applications for this drive.
A conveyor carrying heavy material can require substantial torque during startup.
A variable-frequency drive allows acceleration to be controlled instead of applying full motor speed immediately.
This can reduce mechanical stress on:
The ability to adjust conveyor speed also allows better coordination with upstream and downstream production equipment.
Large mining equipment frequently requires high-power motor control.
Potential applications include:
The 600 A output class provides substantial capacity for large mining motors.
The actual application must still be checked for overload requirements, environmental conditions and braking requirements.
Cement plants contain many large motors.
The drive can be considered for:
The ability to control speed can be useful for coordinating different stages of the production process.
Large pumps can benefit from variable-speed control.
Instead of keeping a pump motor at full speed continuously, the drive can adjust speed according to process demand.
Typical applications include:
For variable-flow applications, controlling pump speed can be more efficient than continuously operating the motor at full speed and using mechanical throttling.
Large industrial fans can consume significant amounts of power.
The drive allows fan speed to be adjusted according to airflow requirements.
Potential applications include:
The main benefit is that the fan does not necessarily have to operate at maximum speed at all times.
Crushers can create high torque demands during starting and operation.
The 600 A current class provides substantial electrical capacity for appropriately sized crushing equipment.
Vector control can help manage torque and speed during changing mechanical conditions.
For crusher applications, the following should be checked carefully:
Large mills can have significant mechanical inertia.
The drive can provide controlled acceleration and variable-speed operation.
This can be useful in:
The exact motor and load characteristics should be evaluated before selecting the drive.
Large mixers and agitators can experience rapidly changing mechanical loads.
During startup, the motor may need substantially more torque than during steady-state operation.
Vector control can help manage these changes.
Variable speed can also be used to select different mixing conditions for different stages of the production process.
Large extruders generally require controlled motor speed and torque.
The drive can regulate motor speed according to production requirements.
Typical applications include:
The motor’s torque requirement and minimum/maximum speed should be checked carefully.
Large compressors can also require controlled acceleration and variable-speed operation.
The drive can be considered where the compressor system permits variable-speed operation.
The compressor manufacturer’s requirements should be considered before selecting a drive.
Important factors include:
| Advantage | Detailed Explanation |
|---|---|
| 600 A output | Provides very high motor-control capacity |
| 350 kW Normal Duty | Supports large normal-duty motors |
| 300 kW Heavy Duty | Suitable for more demanding load profiles |
| Vector Control | Provides advanced torque and speed control |
| 400 VAC input | Suitable for 400 V-class three-phase systems |
| 24 V I/O | Convenient for industrial automation integration |
| IP00/Open Type | Allows integration into engineered electrical cabinets |
| High overload capability | 660 A for 1 minute and 900 A for 3 seconds |
| Large-frame architecture | Suitable for large industrial machines |
| Variable speed | Allows process speed adjustment |
| Controlled acceleration | Helps reduce mechanical starting shock |
| Controlled deceleration | Provides smoother stopping |
| Wide application range | Pumps, fans, conveyors, mills, crushers and process machinery |
The main advantage of the 20BC600N0ANNNNC0 is that it can act as a high-power motor-control layer inside a larger automation system.
A typical system might include:
| Equipment | Function |
|---|---|
| PLC | Controls the production process |
| HMI | Provides operator control |
| 20BC600N0ANNNNC0 | Controls motor speed and torque |
| Motor | Provides mechanical power |
| Sensors | Monitor process conditions |
| Electrical protection | Protects the power circuit |
| Cabinet | Provides environmental protection |
| Cooling system | Removes heat |
This architecture allows the motor to respond to process commands rather than simply operating at a fixed speed.
A variable-frequency drive can provide significant energy-saving potential in appropriate applications.
The strongest examples are usually centrifugal pumps and fans.
A motor that does not need to operate at full speed can be slowed down to match actual process demand.
This can reduce the mechanical power required by the machine.
However, energy savings should not be assumed automatically.
Actual savings depend on:
The 384 kg drive weight means that mechanical installation needs to be planned carefully.
Important considerations include:
The drive’s approximate dimensions are 757.8 × 2283.7 × 381.7 mm.
The final cabinet will normally be larger than the drive itself.
The 600 A rating means that the power circuit needs substantial electrical infrastructure.
The installation designer should consider:
The actual protective-device and conductor selections should be based on the complete installation design.
The following models are close relatives within the PowerFlex 700 400 VAC range.
| Model | Series | Input Voltage | Continuous Current | 1-Minute Current | 3-Second Current | Normal-Duty Power | Heavy-Duty Power | Frame | Approx. Weight |
|---|---|---|---|---|---|---|---|---|---|
| 20BC365N0ANNNNC0 | PowerFlex 700 | 400 VAC | 365 A | 402 A | 548 A | 200 kW | 180 kW | 8 | ~384 kg |
| 20BC415N0ANNNNC0 | PowerFlex 700 | 400 VAC | 415 A | 457 A | 623 A | 240 kW | 200 kW | 8 | ~384 kg |
| 20BC481N0ANNNNC0 | PowerFlex 700 | 400 VAC | 481 A | 530 A | 722 A | 280 kW | 240 kW | 8 | ~384 kg |
| 20BC535N0ANNNNC0 | PowerFlex 700 | 400 VAC | 535 A | 589 A | 803 A | 300 kW | 280 kW | 8 | ~384 kg |
| 20BC600N0ANNNNC0 | PowerFlex 700 | 400 VAC | 600 A | 660 A | 900 A | 350 kW | 300 kW | 8 | ~384 kg |
The current and power progression across these models is straightforward: 365 A → 415 A → 481 A → 535 A → 600 A.
The 600 A model is therefore a logical choice when the motor load is beyond the practical range of the 535 A version but does not require the larger 730 A Frame 9 drive.
The current and power ratings for this group are consistent with the PowerFlex 700 400 VAC selection range.
| Model | Series | Input Voltage | Continuous Current | 1-Minute Current | 3-Second Current | Normal-Duty Power | Heavy-Duty Power | Frame |
|---|---|---|---|---|---|---|---|---|
| 20BC535N0ANNNNC0 | PowerFlex 700 | 400 VAC | 535 A | 589 A | 803 A | 300 kW | 280 kW | 8 |
| 20BC600N0ANNNNC0 | PowerFlex 700 | 400 VAC | 600 A | 660 A | 900 A | 350 kW | 300 kW | 8 |
| 20BC730N0ANNNNC0 | PowerFlex 700 | 400 VAC | 730 A | 803 A | 1095 A | 400 kW | 350 kW | 9 |
| 20BC875N0ANNNNC0 | PowerFlex 700 | 400 VAC | 875 A | 963 A | 1313 A | 500 kW | 400 kW | 10 |
| 20BD600N0ANNNNC0 | PowerFlex 700 | 480 VAC | 600 A | 660 A | 900 A | 500 HP | 450 HP | 8 |
The 20BC730N0ANNNNC0 is the next logical higher-current 400 VAC model.
The 730 A version increases the Normal-Duty rating to approximately 400 kW and Heavy-Duty rating to approximately 350 kW.
The 20BC875N0ANNNNC0 moves further into the high-power range, with approximately 500 kW Normal Duty and 400 kW Heavy Duty.
The 20BD600 model is different in voltage class, using the 480 VAC configuration, so it should only be considered where the electrical supply is compatible.
For broader comparison, the following models are useful choices within the same industrial drive portfolio.
| Model | Product Series | Voltage | Current | Power Class | Frame | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 20BC600N0ANNNNC0 | PowerFlex 700 | 400 VAC | 600 A | 350 kW ND / 300 kW HD | 8 | ~757.8 × 2283.7 × 381.7 mm | ~384 kg |
| 20BC535N0ANNNNC0 | PowerFlex 700 | 400 VAC | 535 A | 300 kW ND / 280 kW HD | 8 | ~757.8 × 2283.7 × 381.7 mm | ~384 kg |
| 20BC481N0ANNNNC0 | PowerFlex 700 | 400 VAC | 481 A | 280 kW ND / 240 kW HD | 8 | Frame 8 class | ~384 kg |
| 20BD600N0ANNNNC0 | PowerFlex 700 | 480 VAC | 600 A | 500 HP ND / 450 HP HD | 8 | Frame 8 class | ~384 kg |
| 20BD535N0ANNNNC0 | PowerFlex 700 | 480 VAC | 535 A | 450 HP ND / 400 HP HD | 8 | Frame 8 class | ~384 kg |
The 20BC models are the natural choices for 400 VAC systems, while the 20BD models are intended for the corresponding 480 VAC class.
These two models are especially close and are often useful when determining the appropriate drive size.
| Parameter | 20BC535N0ANNNNC0 | 20BC600N0ANNNNC0 |
|---|---|---|
| Input voltage | 400 VAC | 400 VAC |
| Continuous current | 535 A | 600 A |
| 1-minute current | 589 A | 660 A |
| 3-second current | 803 A | 900 A |
| Normal-Duty power | 300 kW | 350 kW |
| Heavy-Duty power | 280 kW | 300 kW |
| Frame | 8 | 8 |
| Enclosure | IP00 | IP00 |
| Control | Vector | Vector |
| I/O | 24 V | 24 V |
| HIM | None | None |
| Brake IGBT | None | None |
| Communication module | None | None |
| Feedback | None | None |
| Approx. weight | ~384 kg | ~384 kg |
The 600 A model provides additional current and power capacity.
If the motor current approaches the upper range of a 535 A drive, the 600 A model can provide useful additional margin.
However, selecting a larger drive simply because it has a larger current rating is not automatically the correct engineering decision.
| Parameter | 20BC600N0ANNNNC0 | 20BC730N0ANNNNC0 |
|---|---|---|
| Input voltage | 400 VAC | 400 VAC |
| Continuous current | 600 A | 730 A |
| 1-minute current | 660 A | 803 A |
| 3-second current | 900 A | 1095 A |
| Normal-Duty power | 350 kW | 400 kW |
| Heavy-Duty power | 300 kW | 350 kW |
| Frame | 8 | 9 |
| Enclosure | IP00 | IP00 |
| Control | Vector | Vector |
| I/O | 24 V | 24 V |
| Typical application | Large industrial motors | Larger industrial motors |
| Relative physical size | Large | Larger |
| Relative current capacity | High | Very high |
The 730 A version is the logical choice when the 600 A class does not provide enough capacity.
However, moving from Frame 8 to Frame 9 changes the mechanical requirements.
Cabinet dimensions, cable routing and installation arrangements must therefore be reviewed.
| Application | Recommended Drive Characteristic | Suitability of 20BC600N0ANNNNC0 |
|---|---|---|
| Large conveyor | High torque + controlled acceleration | Excellent |
| Large pump | Variable speed + high power | Excellent |
| Large fan | Variable speed + high power | Excellent |
| Crusher | High current + torque control | Excellent with proper duty sizing |
| Mill | High power + controlled acceleration | Excellent |
| Mixer | Variable speed + torque control | Excellent |
| Extruder | Stable speed + torque control | Very suitable |
| Compressor | High power + controlled acceleration | Suitable after application review |
| Material handling | High power + variable speed | Suitable |
| Hoist | High torque + braking | Requires braking-system review |
The first major strength is capacity.
A 600 A drive is capable of controlling very large industrial motors.
The second strength is vector control.
This makes the drive appropriate for applications where torque and speed response matter.
The third strength is 400 VAC compatibility.
This matches common three-phase industrial power systems in many regions.
The fourth strength is the PowerFlex 700 high-power platform.
The 600 A model sits within a broader family, making it easier to select a lower- or higher-capacity related model when the motor requirement changes.
The fifth strength is 24 V I/O.
This provides a practical interface for many industrial control systems.
The model also has several characteristics that need to be understood before selection.
The drive is not a sealed standalone outdoor unit.
A suitable enclosure is required.
High-inertia applications may require a separate braking strategy.
Local operation and commissioning may require an appropriate external interface or system-level HMI.
If a particular industrial network is required, the communication architecture needs to be considered separately.
Applications requiring encoder feedback should be reviewed carefully against the required drive configuration.
The approximate dimensions are 757.8 × 2283.7 × 381.7 mm.
The approximate drive weight is 384 kg.
These characteristics do not make the drive unsuitable.
They simply mean that it should be selected as part of a complete industrial system rather than as a simple standalone component.
For a new installation, the selection process should begin with the motor nameplate.
| Step | Parameter to Confirm |
|---|---|
| 1 | Motor voltage |
| 2 | Motor full-load current |
| 3 | Motor power |
| 4 | Normal-Duty or Heavy-Duty requirement |
| 5 | Starting torque |
| 6 | Acceleration time |
| 7 | Maximum speed |
| 8 | Minimum speed |
| 9 | Deceleration time |
| 10 | Braking requirement |
| 11 | Feedback requirement |
| 12 | Communication requirement |
| 13 | I/O voltage |
| 14 | Cabinet/enclosure requirement |
| 15 | Cooling requirement |
| 16 | Physical dimensions |
| 17 | Equipment weight |
| 18 | Cable size and routing |
The most important electrical point is not simply the motor’s horsepower.
The motor full-load current and actual duty cycle should be used to determine whether a 535 A, 600 A or 730 A drive is appropriate.
The 20BC600N0ANNNNC0 is a high-power PowerFlex 700 Frame 8 AC drive designed for demanding industrial motor-control applications.
Its core specification can be summarized as:
400 VAC / 3-phase / 600 A / 660 A for 1 minute / 900 A for 3 seconds / 350 kW Normal Duty / 300 kW Heavy Duty / Frame 8 / IP00 Open Type / Vector Control / 24 V I/O.
The product is particularly suitable for large conveyors, pumps, fans, blowers, crushers, mills, mixers, extruders, compressors and other heavy industrial machines.
Its 600 A current rating gives it considerably more capacity than the 535 A model, while remaining within the same general Frame 8 product range.
For applications requiring even more capacity, the 20BC730N0ANNNNC0 provides a 730 A option and moves to Frame 9.
For lower motor requirements, the 20BC535N0ANNNNC0, 20BC481N0ANNNNC0, 20BC415N0ANNNNC0 and 20BC365N0ANNNNC0 provide progressively lower current ratings.
The open construction is particularly appropriate for engineered cabinet systems, but it also means that the final enclosure, environmental protection and cooling system become part of the overall installation design.
The approximate 384 kg drive weight and 757.8 × 2283.7 × 381.7 mm physical envelope should be taken seriously when planning cabinet construction, transportation, lifting and maintenance access.
In practical terms, the 20BC600N0ANNNNC0 is a strong choice for a large industrial motor when the application requires a 400 VAC, 600 A-class drive with 350 kW Normal-Duty capability, 300 kW Heavy-Duty capability, vector control and 24 V I/O.
The most important selection rule is to compare the complete drive configuration with the motor and machine requirements, rather than choosing solely by horsepower or current.