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The 20G11BE760JN0NNNNN is a high-power air-cooled AC drive from the PowerFlex 755 series. It is designed for large industrial motor applications where high output current, adjustable motor speed, controlled acceleration and deceleration, and integration with an industrial automation network are required.
The model is a 600 VAC, three-phase, 760 A packaged drive with a Frame 9 construction. It is configured in a Type 1 / IP20, 600 mm deep MCC-style enclosure arrangement and uses an air-cooled architecture.
The model is particularly suitable for large motors and heavy industrial machinery. Its published power ratings are approximately 900 HP for Light Duty, 800 HP for Normal Duty, and 700 HP for Heavy Duty.
A major characteristic of this configuration is its integrated EtherNet/IP capability. This allows the drive to be incorporated into a plant-wide automation system rather than operating only as an independent motor controller.
The 20G11BE760JN0NNNNN is also important from a replacement perspective. It is the direct replacement configuration for the earlier 20G11BE760AN0NNNNN configuration, making it a particularly relevant model when upgrading or replacing an existing high-power installation.
| Item | Description |
|---|---|
| Model | 20G11BE760JN0NNNNN |
| Brand | Allen-Bradley |
| Product Series | PowerFlex 755 |
| Product Family | PowerFlex 755 AC Packaged Drive |
| Product Type | High-Power AC Variable Frequency Drive |
| Drive Category | Industrial AC Drive |
| Voltage Class | 600 VAC |
| Input | Three-phase AC |
| Output Current | 760 A |
| Frame Size | Frame 9 |
| Cooling | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Cabinet Style | 600 mm Deep MCC Style |
| Communication | Embedded EtherNet/IP |
| Application | Large industrial motor control |
The product therefore belongs to the PowerFlex 755 AC Drive family, which is positioned for demanding industrial motor-control applications rather than small, simple motor installations.
| Parameter | 20G11BE760JN0NNNNN |
|---|---|
| Model | 20G11BE760JN0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Product Type | AC Packaged Drive |
| Drive Type | Variable Frequency AC Drive |
| Input Voltage Class | 600 VAC |
| Input Phase | 3 Phase |
| Input Type | AC Input with Precharge |
| DC Terminals | Provided |
| Output Current | 760 A |
| Light Duty Rating | 900 HP |
| Normal Duty Rating | 800 HP |
| Heavy Duty Rating | 700 HP |
| Frame | Frame 9 |
| Cooling Method | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Installation Style | 600 mm Deep MCC Style |
| Communication | Embedded EtherNet/IP |
| EMC Filter | Filtered |
| Common Mode Jumper | Installed |
| Dynamic Braking | None |
| HIM | Blank / No HIM |
| Motor Control Application | Large AC motors |
| Typical Installation | Industrial electrical room / MCC / control cabinet |
| Approximate Cabinet Depth | 600 mm |
| Overall Dimensions | Configuration-specific; exact H × W × D should be taken from the applicable mechanical drawing |
| Weight (kg) | Configuration-specific; exact installed/shipping weight should be confirmed from the applicable mechanical drawing |
| Duty Selection | Light Duty / Normal Duty / Heavy Duty |
| Typical Power Range | Up to approximately 900 HP LD |
| Primary Application | High-power variable-speed motor control |
The 760 A output-current rating is the key electrical characteristic of this model.
At this current level, the drive is intended for very large motors and large industrial machines. The drive is capable of handling applications where a conventional small or medium-size VFD would not provide sufficient current capacity.
The published ratings can be summarized as follows:
| Duty Rating | Approximate Motor Power |
|---|---|
| Light Duty | 900 HP |
| Normal Duty | 800 HP |
| Heavy Duty | 700 HP |
The distinction between these three ratings is important.
Light Duty is normally associated with applications that have comparatively moderate overload requirements.
Normal Duty provides a lower horsepower rating than Light Duty because the application has a more demanding operating profile.
Heavy Duty provides a further reduced horsepower rating because the drive is expected to withstand more demanding torque and overload conditions.
For this reason, selecting a drive only from the motor horsepower is not recommended. Motor full-load current, overload characteristics, acceleration requirements, operating cycle, ambient temperature, and mechanical load should also be considered.
The 20G11BE760JN0NNNNN is essentially a high-capacity electronic motor controller.
An AC motor connected directly to a fixed-frequency power source generally operates at a speed determined by the electrical frequency and motor characteristics.
A variable-frequency drive changes the electrical conditions supplied to the motor, allowing the motor speed to be adjusted according to the requirements of the machine.
This is particularly useful in industrial production systems.
Instead of running a large motor continuously at full speed, the control system can command a suitable operating speed. The drive can also manage acceleration and deceleration so that the mechanical system does not experience an abrupt change in torque.
For a large motor, this is especially valuable because the mechanical forces involved can be considerable.
The 20G11BE760JN0NNNNN therefore combines high-current motor control with industrial automation connectivity in a single high-power drive platform.
The 760 A output capability is the defining feature of this particular model.
It places the drive in the high-power category and allows it to control large motors used in heavy industrial equipment.
Applications requiring several hundred amperes of motor current can benefit from this type of drive architecture.
The model is designed for a 600 VAC three-phase industrial power environment.
This makes it suitable for industrial facilities using higher-voltage motor systems.
The 600 V class is commonly encountered in large industrial motor installations, particularly where substantial motor power is required.
The approximate 900 HP Light Duty rating makes this a very large industrial drive.
The 800 HP Normal Duty rating and 700 HP Heavy Duty rating provide additional selection flexibility depending on the actual load profile.
This makes the drive suitable for large machinery where motor power requirements are considerably higher than those normally handled by compact VFDs.
The embedded EtherNet/IP capability allows the drive to communicate with an industrial automation system.
This can be used for functions such as:
This is particularly useful in automated manufacturing and process plants.
The drive uses an air-cooled architecture.
Large industrial drives generate significant heat during operation, so proper airflow and cabinet ventilation are important.
The air-cooled arrangement can be integrated into a suitably designed industrial electrical room, MCC, or control cabinet.
The specified configuration uses a Type 1 / IP20 style enclosure arrangement.
This type of enclosure is intended for controlled industrial environments rather than direct exposure to outdoor weather, water spray, or uncontrolled contamination.
The surrounding cabinet or electrical room therefore needs to provide the appropriate environmental protection.
Large conveyors are one of the most suitable application areas for a high-current AC drive.
Long conveyors can require very large motors, particularly in mining, bulk material handling, ports, steel production, cement plants, and heavy manufacturing.
The drive can provide controlled acceleration, adjustable running speed, and controlled stopping.
This can reduce mechanical shock to gearboxes, couplings, belts, rollers, shafts, and other components.
Mining operations often involve very large motor-driven equipment.
Potential applications include:
The high-current capacity of the 20G11BE760JN0NNNNN makes it relevant to this class of equipment.
Large pumps are another major application.
A fixed-speed pump may continue operating at high speed even when the process does not require maximum flow.
A variable-speed drive allows pump speed to be adjusted according to process demand.
This can improve flow control and reduce unnecessary operation at maximum speed.
Typical applications include industrial water circulation, cooling systems, process-water systems, wastewater handling, and large-scale fluid-transfer systems.
Industrial fans and blowers often operate under changing airflow requirements.
A variable-speed drive can adjust motor speed according to actual demand.
Applications can include:
Large compressors may require substantial motor power and carefully controlled acceleration.
A high-power AC drive can be considered for compressor applications where the compressor manufacturer and mechanical system are designed for variable-speed operation.
The actual suitability depends on compressor type, motor characteristics, required torque, operating range, and process requirements.
Large mills and processing machines can require high motor torque and substantial electrical power.
The PowerFlex 755 platform can be considered for applications where variable motor speed and industrial automation integration are required.
Examples include large mixers, mills, material-processing machines, and heavy production equipment.
The most obvious advantage is the 760 A output capability.
This provides enough current capacity for large industrial motors and allows the drive to be used in applications far beyond the range of compact variable-frequency drives.
The drive is designed for high-power industrial applications.
Its Frame 9 construction, high-current output, air cooling, and MCC-style packaging are all consistent with large industrial motor-control systems.
The three published duty levels provide useful flexibility.
| Duty | Rating |
|---|---|
| Light Duty | 900 HP |
| Normal Duty | 800 HP |
| Heavy Duty | 700 HP |
This allows engineers to select the applicable motor power according to the actual load characteristics instead of treating all applications as having the same operating requirements.
Embedded EtherNet/IP makes the drive well suited to automated production systems.
The drive can become part of the larger control network rather than operating as an isolated piece of electrical equipment.
Large motors can create significant mechanical and electrical stress during starting.
A properly configured AC drive can provide controlled acceleration.
This can help reduce sudden torque changes and improve the starting behavior of the complete machine.
Variable-speed operation provides greater flexibility than a simple fixed-speed motor arrangement.
The motor can operate at the speed required by the process, assuming the motor and driven equipment are suitable for variable-speed operation.
The PowerFlex 755 platform is suitable for applications where drive control needs to be coordinated with PLCs, HMIs, sensors, process controls, alarms, and other automation equipment.
Mechanical characteristics are particularly important for this model because it is a large Frame 9 packaged drive.
| Mechanical Parameter | Specification |
|---|---|
| Model | 20G11BE760JN0NNNNN |
| Frame | Frame 9 |
| Enclosure | Type 1 / IP20 |
| Cabinet Style | 600 mm Deep MCC Style |
| Cooling | Air Cooled |
| Depth | Approximately 600 mm |
| Overall Height | Configuration-specific |
| Overall Width | Configuration-specific |
| Overall Dimensions | Exact H × W × D should be confirmed from the mechanical drawing |
| Weight (kg) | Configuration-specific; exact value should be confirmed from the applicable mechanical/installation drawing |
| Mounting | Industrial MCC / cabinet installation |
| Installation Environment | Controlled industrial environment |
For a drive of this size, it is important not to use an estimated weight for cabinet structural calculations or lifting plans.
The exact mechanical dimensions and weight can vary with the complete factory configuration and associated packaging. Therefore, the final engineering drawing should be used when designing the enclosure, transportation system, mounting structure, and lifting arrangements.
The integrated EtherNet/IP capability is one of the practical advantages of the PowerFlex 755 platform.
In an automated plant, the drive can receive commands from the control system and return operating information.
Typical information exchanged with the control system can include:
| Control Function | Typical Purpose |
|---|---|
| Start Command | Start motor operation |
| Stop Command | Stop motor operation |
| Speed Reference | Set motor operating speed |
| Direction | Control motor rotation direction where permitted |
| Drive Status | Monitor operating condition |
| Fault Status | Identify drive faults |
| Alarm Information | Identify abnormal conditions |
| Output Frequency | Monitor motor operating frequency |
| Output Current | Monitor motor current |
| Drive Health | Support maintenance and diagnostics |
The exact control architecture depends on the application and software configuration.
The following five models are particularly relevant because they belong to the same PowerFlex 755 high-power family and are close to the 760 A configuration.
| Model | Series | Voltage | Current | Light Duty | Normal Duty | Heavy Duty | Enclosure / Style | Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|---|---|
| 20G11BE595JN0NNNNN | PowerFlex 755 | 600 VAC | 595 A | 700 HP | 600 HP | 500 HP | Type 1 / IP20, 600 mm MCC style | 600 mm depth; exact H×W configuration-dependent | Configuration-specific |
| 20G11BE630JN0NNNNN | PowerFlex 755 | 600 VAC | 630 A | 800 HP | 700 HP | 600 HP | Type 1 / IP20, 600 mm MCC style | 600 mm depth; exact H×W configuration-dependent | Configuration-specific |
| 20G11BE760JN0NNNNN | PowerFlex 755 | 600 VAC | 760 A | 900 HP | 800 HP | 700 HP | Type 1 / IP20, 600 mm MCC style | 600 mm depth; exact H×W configuration-dependent | Configuration-specific |
| 20G11BE825JN0NNNNN | PowerFlex 755 | 600 VAC | 825 A | High-power 600 V configuration | High-power 600 V configuration | High-power 600 V configuration | Type 1 / IP20, 600 mm MCC style | 600 mm depth; exact H×W configuration-dependent | Configuration-specific |
| 20G11BE900JN0NNNNN | PowerFlex 755 | 600 VAC | 900 A | High-power 600 V configuration | High-power 600 V configuration | High-power 600 V configuration | Type 1 / IP20, 600 mm MCC style | 600 mm depth; exact H×W configuration-dependent | Configuration-specific |
The 595 A and 630 A versions are useful when the motor’s actual full-load current is below 760 A.
The 825 A and 900 A versions provide additional current capacity when the application exceeds the 760 A requirement.
For a direct replacement of an existing 20G11BE760AN0NNNNN installation, the 20G11BE760JN0NNNNN is the most relevant choice because it maintains the same 760 A high-power class while representing the newer replacement configuration.
The PowerFlex 755 family also contains several configuration variations using the same current class.
For example, the 760 A family includes configurations with different suffix selections.
| Model | Current | Voltage Class | General Relationship |
|---|---|---|---|
| 20G11BE760JN0NNNNN | 760 A | 600 VAC | Main 760 A configuration |
| 20G11BE760JN2NNNNN | 760 A | 600 VAC | Alternative factory configuration |
| 20G11BE760JN4NNNNN | 760 A | 600 VAC | Alternative factory configuration |
| 20G11BE760AN0NNNNN | 760 A | 600 VAC | Earlier configuration |
| 20G11BE760AN2NNNNN | 760 A | 600 VAC | Earlier alternative configuration |
The differences in the suffix should not be ignored.
They can represent changes in factory options, protection arrangements, braking provisions, filtering, control interface configuration, or other construction details.
Therefore, when replacing an existing drive, the complete catalog number should be compared rather than selecting a model solely because the current rating is 760 A.
For broader product comparison, the following models represent useful high-power or related industrial-drive choices within the same brand portfolio.
| Model | Product Family | Voltage Class | Current / Power Class | Typical Application | Cooling | Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|
| 20G11BE760JN0NNNNN | PowerFlex 755 | 600 VAC | 760 A / 900 HP LD | Large conveyors, pumps, fans, process machinery | Air Cooled | 600 mm depth; exact H×W configuration-dependent | Configuration-specific |
| 20G11BE630JN0NNNNN | PowerFlex 755 | 600 VAC | 630 A / 800 HP LD | Large pumps, fans and material handling | Air Cooled | 600 mm depth; exact H×W configuration-dependent | Configuration-specific |
| 20G11BE825JN0NNNNN | PowerFlex 755 | 600 VAC | 825 A | High-power industrial machinery | Air Cooled | 600 mm depth; exact configuration-dependent | Configuration-specific |
| 20G11BE900JN0NNNNN | PowerFlex 755 | 600 VAC | 900 A | Very large motor systems | Air Cooled | 600 mm depth; exact configuration-dependent | Configuration-specific |
| 20G11BE980JN0NNNNN | PowerFlex 755 | 600 VAC | 980 A | Extremely high-power industrial equipment | Air Cooled | 600 mm depth; exact configuration-dependent | Configuration-specific |
The five models above are particularly useful when the objective is to stay within the same high-power PowerFlex 755 platform while adjusting the current capacity.
| Motor Requirement | Suggested Model Direction | Reason |
|---|---|---|
| Around 500 A | 595 A class | Provides a closer current match |
| Around 550–600 A | 595 A / 630 A class | Depends on motor nameplate and duty |
| Around 630 A | 630 A class | Closely matched current capacity |
| Around 700–760 A | 760 A class | Provides additional current margin |
| Around 760 A | 20G11BE760JN0NNNNN | Direct 760 A class |
| Around 800 A | 825 A class | Provides higher current capacity |
| Around 900 A | 900 A class | Suitable for very high-current applications |
| Above 900 A | 980 A or larger configuration | Requires detailed motor and system evaluation |
The best selection should always be based on the motor’s nameplate current and actual duty rather than simply selecting the drive with the closest horsepower number.
| Application | Suitability | Main Reason |
|---|---|---|
| Large Conveyor | Excellent | High current and controlled acceleration |
| Mining Conveyor | Excellent | Large motor and heavy industrial environment |
| Large Pump | Excellent | Variable-speed process control |
| Large Fan | Excellent | Adjustable airflow control |
| Large Blower | Excellent | Variable operating speed |
| Compressor | Good | Depends on compressor and motor characteristics |
| Crusher | Good | Requires careful torque and duty evaluation |
| Mill | Good | High-power motor control |
| Mixer | Good | Useful where adjustable speed is required |
| Process Machinery | Excellent | High-power automation integration |
| Small Conveyor | Poor fit | Drive is unnecessarily large |
| Small Pump | Poor fit | Lower-current drive would normally be more appropriate |
A large conveyor system can benefit significantly from variable-speed operation.
During startup, the drive can gradually increase motor speed instead of applying the full operating condition immediately.
This can reduce mechanical shock to the drive train.
The ability to control speed can also allow the conveyor to match upstream and downstream equipment.
For example, if material is being fed from one process into another, conveyor speed can be coordinated with the production rate.
In a large material-handling system, these control capabilities can be much more useful than simply switching the motor on and off.
For pumping systems, variable-speed control can provide better process flexibility.
When the process demand decreases, the motor does not necessarily need to operate continuously at maximum speed.
Reducing motor speed can reduce flow and pressure according to the requirements of the system.
The actual energy benefit depends on the pump type, system curve, operating point, control strategy, and mechanical design.
The drive should therefore be regarded primarily as a process-control device, with energy reduction being a possible secondary benefit when the application is properly designed.
Large fans and blowers are often good candidates for variable-frequency control.
The required airflow can vary substantially throughout the day or production cycle.
Instead of maintaining a constant maximum motor speed, the drive can adjust operating speed according to the process.
This can provide better control over airflow and may also reduce unnecessary motor operation.
For heavy industrial machines, the drive provides several practical advantages:
| Advantage | Practical Value |
|---|---|
| High current capacity | Suitable for very large motors |
| Adjustable speed | Better process control |
| Controlled acceleration | Reduced mechanical shock |
| Controlled deceleration | Smoother stopping |
| Ethernet/IP | Automation-system integration |
| High horsepower capability | Suitable for large machinery |
| Air cooling | Suitable for industrial electrical environments |
| MCC-style construction | Convenient for centralized electrical installations |
| Multiple duty ratings | Flexible motor/application selection |
| High-power platform | Suitable for large production systems |
The 20G11BE760JN0NNNNN should be installed as high-power electrical equipment.
The electrical system should be designed around the drive’s input requirements, motor characteristics, protective equipment, grounding arrangement, cable system, short-circuit requirements, and thermal characteristics.
The cabinet must also provide suitable airflow.
Because this is an air-cooled high-power drive, inadequate ventilation can increase internal temperature and reduce operating reliability.
The 600 mm depth is particularly important during cabinet design.
Clearance around the equipment, cable routing space, airflow paths, service access, and maintenance space should all be considered.
A high-power drive should normally be included in a planned maintenance program.
Important maintenance areas include:
| Maintenance Item | Purpose |
|---|---|
| Cooling fans | Maintain adequate airflow |
| Air passages | Prevent overheating |
| Electrical terminals | Check for abnormal heating or loose connections |
| Grounding | Maintain electrical safety |
| Cabinet cleanliness | Reduce contamination and heat accumulation |
| Network connections | Maintain reliable control communication |
| Fault history | Identify recurring problems |
| Motor cables | Check insulation and connection condition |
| Drive environment | Maintain acceptable temperature and humidity |
| Control wiring | Maintain stable command and feedback signals |
Regular inspection can help identify problems before they develop into major drive or motor failures.
One of the most important points about this model is its relationship with the earlier 20G11BE760AN0NNNNN.
The earlier configuration has been discontinued, while 20G11BE760JN0NNNNN serves as the direct replacement configuration.
This makes the J-version particularly important for existing installations.
When upgrading from the older A-version, engineers should nevertheless compare:
A direct replacement classification does not mean that every installation can be upgraded without engineering review.
| Parameter | Earlier Configuration | Current Replacement Configuration |
|---|---|---|
| Model | 20G11BE760AN0NNNNN | 20G11BE760JN0NNNNN |
| Series | PowerFlex 755 | PowerFlex 755 |
| Voltage | 600 VAC | 600 VAC |
| Output Current | 760 A | 760 A |
| Light Duty | 900 HP | 900 HP |
| Normal Duty | 800 HP | 800 HP |
| Heavy Duty | 700 HP | 700 HP |
| Cooling | Air Cooled | Air Cooled |
| Frame | Frame 9 | Frame 9 |
| Enclosure | Type 1 / IP20 | Type 1 / IP20 |
| MCC Depth | 600 mm | 600 mm |
| Communication | Embedded EtherNet/IP | Embedded EtherNet/IP |
| EMC Filter | Filtered | Filtered |
| Dynamic Braking | None | None |
| HIM | Blank / No HIM | Blank / No HIM |
| CM Jumper | Configuration-dependent | Installed |
| Status | Earlier/discontinued configuration | Replacement/active configuration |
The J-version is therefore especially relevant when maintaining an existing installation that originally used the A-version.
If the motor nameplate current is close to 760 A and the motor is operating on a 600 VAC three-phase system, the 20G11BE760JN0NNNNN is a logical high-power configuration to evaluate.
If the application requires substantially higher overload or torque, the Heavy Duty rating must be considered carefully.
If the motor current is significantly below 760 A, a smaller 595 A or 630 A model may be more appropriate.
If the motor current is above the 760 A capacity, an 825 A, 900 A, 980 A, or larger configuration may need to be evaluated.
The objective should not be to select the largest available drive.
Instead, the drive should be matched to the motor current, duty cycle, process requirements, environmental conditions, and required control functions.
| Category | Specification |
|---|---|
| Model | 20G11BE760JN0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Product Family | PowerFlex 755 AC Packaged Drive |
| Product Type | High-Power Variable Frequency AC Drive |
| Voltage Class | 600 VAC |
| Input Phase | Three Phase |
| Input Type | AC Input with Precharge |
| Output Current | 760 A |
| Light Duty Rating | 900 HP |
| Normal Duty Rating | 800 HP |
| Heavy Duty Rating | 700 HP |
| Frame Size | Frame 9 |
| Cooling | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Cabinet Style | 600 mm Deep MCC Style |
| Communication | Embedded EtherNet/IP |
| DC Terminals | Yes |
| EMC Filter | Yes |
| Common Mode Jumper | Installed |
| Dynamic Braking | None |
| HIM | Blank / No HIM |
| Depth | Approximately 600 mm |
| Height | Configuration-specific |
| Width | Configuration-specific |
| Overall Dimensions | Confirm from configuration-specific mechanical drawing |
| Weight (kg) | Configuration-specific; confirm from installation/mechanical documentation |
| Main Function | Variable-speed control of large AC motors |
| Typical Applications | Conveyors, pumps, fans, blowers, compressors, mills, mining equipment, process machinery |
| Installation | Industrial electrical room / MCC / suitable cabinet |
| Replacement Role | Direct replacement for earlier 760 A configuration |
The 20G11BE760JN0NNNNN is a high-capacity industrial AC drive intended for large motor applications.
Its combination of 600 VAC operation, 760 A output current, 900 HP Light Duty capability, 800 HP Normal Duty capability, 700 HP Heavy Duty capability, Frame 9 construction, air cooling, 600 mm MCC-style packaging, and embedded EtherNet/IP makes it a strong choice for large industrial automation systems.
The model is particularly suitable when a plant requires variable-speed control of large motors while maintaining integration with a modern industrial control architecture.
The strongest advantage of this drive is its ability to combine very high motor current capacity with industrial communication and control functionality.
For conveyors, pumps, fans, blowers, compressors, mills, material-handling equipment, mining machinery, and other large rotating machines, the drive can provide controlled acceleration, adjustable operating speed, controlled stopping, and centralized automation-system integration.
The 760 A rating should be treated as the primary electrical selection parameter. Horsepower ratings are useful, but the actual motor nameplate current and application duty are more important when determining whether the drive is correctly sized.
For an existing installation using the older 20G11BE760AN0NNNNN configuration, the 20G11BE760JN0NNNNN is especially significant because it is the corresponding direct replacement configuration.
For a new installation, the selection should still be based on the complete motor and system requirements rather than simply copying the old catalog number.
From a mechanical perspective, the model is a substantial Frame 9 industrial drive with a 600 mm MCC-style depth. Because the complete dimensions and weight can depend on the detailed factory configuration, the exact overall H × W × D and weight in kg should be taken from the applicable mechanical drawing before final cabinet design, transportation planning, lifting, or structural calculations.
Overall, the 20G11BE760JN0NNNNN can be considered a high-power, industrial-grade variable-frequency drive for applications where motor current, process control, network integration, and reliable large-machine operation are all important.