• Allen Bradley 20G11LC1K4JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11LC1K4JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11LC1K4JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11LC1K4JN0NNNNN PowerFlex AC Drive
20G11LC1K4JN0NNNNN — Detailed Product Introduction, Technical Parameters, Applications, Advantages and Related Models The 20G11LC1K4JN0NNNNN is a high-power air-cooled AC drive in the PowerFlex 755 fami……
Allen Bradley 20G11LC1K4JN0NNNNN PowerFlex AC Drive
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20G11LC1K4JN0NNNNN — Detailed Product Introduction, Technical Parameters, Applications, Advantages and Related Models

The 20G11LC1K4JN0NNNNN is a high-power air-cooled AC drive in the PowerFlex 755 family. It is designed for large three-phase motor applications where high current capacity, controlled acceleration and deceleration, adjustable motor speed, and integration with an industrial control system are required.

This particular configuration is a 400 VAC, three-phase, 1465 A, Frame 9 drive. It is rated at approximately 850 kW for light-duty applications, 800 kW for normal-duty applications, and 630 kW for heavy-duty applications.

The J configuration in the catalog number is significant because it indicates that the common-mode capacitor jumper is installed. This distinguishes the model from otherwise similar configurations using the A configuration.

The following information is written as an engineering-oriented product description. Where a physical dimension or weight cannot be safely determined from the catalog number alone, it is explicitly identified rather than filling the table with an estimated value.


1. Product Basic Information

Parameter Specification
Model 20G11LC1K4JN0NNNNN
Brand Allen-Bradley
Product Series PowerFlex 755
Product Family PowerFlex 750 Series
Product Type Air-Cooled AC Packaged Drive
Drive Type Variable Frequency AC Drive
Input Voltage 400 VAC
Input Phase 3 Phase
Rated Output Current 1465 A
Light-Duty Rating 850 kW
Normal-Duty Rating 800 kW
Heavy-Duty Rating 630 kW
Frame Size Frame 9
Cooling Method Air Cooled / Forced Air
Enclosure Type 1 / IP20
Cabinet Style 800 mm Deep MCC Style
Input Configuration AC Input with Precharge
Dynamic Braking None
EMC / Common-Mode Configuration Filtered, CM Jumper Installed
Local HIM Blank / No HIM
Communication Embedded EtherNet/IP
DC Terminals Configuration-dependent / applicable to this drive architecture
Installation Industrial electrical room / MCC-style installation
Cabinet Depth 800 mm
Overall Width Configuration-dependent
Overall Height Configuration-dependent
Overall Depth 800 mm class
Product Weight Configuration-dependent; verify final mechanical documentation for kg
Shipping Weight Configuration-dependent

2. Brand and Product Series

Brand: Allen-Bradley

Series: PowerFlex 755

Product Family: PowerFlex 750 Series

The PowerFlex 755 family is positioned as a high-performance industrial variable-frequency drive platform for large and technically demanding motor applications.

Compared with compact machine drives, this family is intended for equipment where the motor power, current, control requirements and system integration requirements are substantially higher.

The 20G11LC1K4JN0NNNNN is therefore not a small cabinet-mounted inverter. It is a large industrial drive intended for installation in a properly designed electrical cabinet, MCC-style lineup or electrical room.


3. What Is the 20G11LC1K4JN0NNNNN?

The 20G11LC1K4JN0NNNNN is a large-capacity variable frequency drive used to control the speed and torque of three-phase AC motors.

Instead of connecting the motor directly to a fixed-frequency supply and allowing it to run at essentially fixed speed, the drive controls the electrical frequency and voltage supplied to the motor.

This allows the motor speed to be adjusted according to the process.

For example, a large pump does not necessarily need to operate at full speed all the time. A large fan may also require different airflow levels during different stages of production.

With an appropriately sized variable frequency drive, the motor can operate at a controlled speed instead of simply running at full speed.

For industrial equipment, this can provide better process control and smoother motor operation.


4. Main Electrical Rating

The most important specification of this model is its 1465 A output-current rating.

This places it in the high-current range of low-voltage industrial drives.

The principal power ratings are:

Duty Classification Power Rating
Light Duty 850 kW
Normal Duty 800 kW
Heavy Duty 630 kW

These ratings should not be interpreted as three different motor sizes that can automatically be selected without considering the application.

The correct rating depends on the motor nameplate current and the mechanical load.

For example, a centrifugal pump normally has very different loading characteristics from a heavily loaded conveyor.

Therefore, a motor with a particular kW rating may require a different drive duty classification depending on the application.


5. Technical Parameters

Technical Item Detailed Specification
Catalog Number 20G11LC1K4JN0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Family PowerFlex 750 Series
Drive Type AC Variable Frequency Drive
Input Voltage 400 VAC
Input Frequency Industrial AC supply
Input Phase 3 Phase
Output Current 1465 A
Light-Duty Output 850 kW
Normal-Duty Output 800 kW
Heavy-Duty Output 630 kW
Frame 9
Cooling Forced-Air Cooled
Enclosure Type 1 / IP20
Cabinet Style 800 mm Deep MCC Style
Input Arrangement AC Input with Precharge
Dynamic Braking None
Filtering Filtered
CM Jumper Installed
Display Blank / No HIM
Communication Embedded EtherNet/IP
Installation Type Floor-standing / industrial cabinet installation
Cabinet Depth 800 mm
Overall Width Configuration-dependent
Overall Height Configuration-dependent
Overall Depth 800 mm class
Product Weight (kg) Configuration-dependent; exact kg should be confirmed from the final mechanical configuration
Shipping Weight (kg) Configuration-dependent
Typical Motor Type Three-phase AC motor
Typical Applications Pumps, fans, blowers, conveyors, compressors and process machinery

6. Physical Dimensions

The model uses an 800 mm deep MCC-style enclosure.

The 800 mm dimension is particularly important when designing the electrical room or MCC lineup.

However, the overall height and width should not be invented from the catalog number.

For a large Frame 9 packaged drive, the final mechanical arrangement can affect the total dimensions.

Mechanical Parameter Specification
Model 20G11LC1K4JN0NNNNN
Frame 9
Enclosure Type 1 / IP20
Cabinet Style MCC Style
Cabinet Depth 800 mm
Overall Depth 800 mm class
Overall Width Configuration-dependent
Overall Height Configuration-dependent
Mounting Footprint Configuration-dependent
Ventilation Space Required
Front Maintenance Space Required
Product Weight Configuration-dependent
Product Weight (kg) Exact value requires final mechanical configuration
Shipping Weight (kg) Configuration-dependent

For transportation and floor-loading calculations, it is important to use the actual mechanical drawing or equipment configuration rather than an estimated weight.


7. Why the Weight Is Not Given as an Estimated Number

For a product of this size, giving an invented weight can be more misleading than leaving the field marked as configuration-dependent.

A Frame 9 packaged drive can have different physical arrangements depending on installed options, wiring configuration and cabinet construction.

Therefore, the appropriate engineering notation is:

Product Weight (kg): Configuration-dependent — confirm from the final mechanical drawing.

This is especially important for:

  • Crane selection
  • Forklift selection
  • Transportation
  • Floor loading
  • Cabinet foundation design
  • Equipment-room planning
  • Installation manpower planning

8. The Meaning of the J Configuration

One of the important differences between 20G11LC1K4JN0NNNNN and the corresponding A configuration is the filtering/common-mode capacitor arrangement.

For this model:

J = Common-mode capacitor jumper installed

The filtering configuration is therefore different from a corresponding configuration in which the common-mode capacitor jumper is removed.

This detail matters when the drive is installed into a particular motor and power-distribution system.

It should not be changed casually after installation.


9. No Factory-Installed HIM

The model uses a blank display / no HIM configuration.

HIM refers to the Human Interface Module used for local drive interaction.

A no-HIM configuration can make sense when the drive is primarily operated through:

  • PLC control
  • SCADA
  • Remote HMI
  • Industrial Ethernet
  • Central control room
  • Distributed automation system

For a large industrial plant, local operator control may not be necessary because operators may control the drive from a central system.


10. Embedded EtherNet/IP

Embedded EtherNet/IP communication is one of the practical features of the drive.

It allows the drive to participate in an industrial automation network.

Typical information exchanged between the controller and drive can include:

Information Typical Purpose
Start Command Start motor
Stop Command Stop motor
Speed Reference Set desired motor speed
Actual Speed Monitor motor operation
Output Current Monitor motor loading
Drive Status Determine operating condition
Fault Status Identify drive problems
Warning Status Monitor abnormal conditions
Frequency Monitor operating frequency
Control Word Coordinate drive operation
Status Word Return drive condition

This makes the drive appropriate for large automated production systems.


11. Product Applications

Large Pump Systems

One of the most suitable applications is large industrial pumping.

Examples include:

  • Cooling-water pumps
  • Process-water pumps
  • Industrial circulation pumps
  • Water-treatment pumps
  • Large utility pumps
  • Mining dewatering pumps
  • Industrial wastewater pumps

The drive can regulate pump speed according to process demand.

This can be useful when the required flow varies throughout the day or production cycle.


12. Cooling Water Systems

Large industrial facilities often have cooling-water systems containing very large motors.

The drive can be used to control:

  • Cooling-water pumps
  • Circulation pumps
  • Heat-exchanger pumps
  • Cooling tower systems
  • Process cooling systems

The ability to adjust motor speed provides flexibility compared with fixed-speed motor operation.


13. Industrial Fans

Large industrial fans can require several hundred kilowatts of motor power.

Potential applications include:

  • Furnace exhaust
  • Industrial ventilation
  • Combustion air
  • Cooling systems
  • Process ventilation
  • Dust extraction
  • Air-handling systems

Variable speed allows airflow to be adjusted according to production requirements.


14. Large Blowers

The drive can also be applied to large blowers.

Examples include:

  • Process-air blowers
  • Aeration blowers
  • Combustion-air blowers
  • Industrial ventilation blowers
  • Dust-control blowers
  • Air-supply systems

For these applications, the actual blower curve and required operating range should be considered when selecting the drive.


15. Conveyor Systems

The model is also appropriate for consideration in large conveyor systems.

Typical industries include:

  • Mining
  • Cement
  • Aggregates
  • Ports
  • Bulk material handling
  • Heavy manufacturing

A variable frequency drive can provide controlled acceleration rather than immediately applying full operating speed.

This can reduce mechanical shock on:

  • Belts
  • Gearboxes
  • Couplings
  • Shafts
  • Bearings
  • Drive pulleys

16. Mining Equipment

Mining equipment often uses very large motors.

Potential applications include:

  • Long conveyors
  • Dewatering systems
  • Ventilation systems
  • Material handling
  • Processing machinery
  • Large pumps

The high-current capability of the model makes it suitable for consideration in these applications.

Environmental conditions should nevertheless be evaluated separately because a standard Type 1 / IP20 enclosure is intended for a controlled electrical environment rather than direct exposure to severe outdoor conditions.


17. Cement and Aggregate Equipment

Large cement and aggregate plants commonly use high-power motors.

The drive can be considered for:

  • Large fans
  • Conveyors
  • Pumps
  • Blowers
  • Material handling
  • Process equipment
  • Dust-control systems
  • Cooling equipment

Its high current rating makes it particularly relevant to large continuous-process machinery.


18. Compressor Applications

Large industrial compressors can also use variable speed control.

Potential benefits include:

  • Adjustable process output
  • Controlled acceleration
  • Reduced starting shock
  • Centralized monitoring
  • Flexible operating speed

The compressor type must be considered carefully because centrifugal, screw and reciprocating compressors have substantially different load characteristics.


19. Material-Handling Applications

The model can be used in large material-handling equipment where the motor requires substantial current.

Typical equipment includes:

  • Heavy conveyors
  • Bulk-material systems
  • Transfer equipment
  • Industrial transport systems
  • Large production machinery

Variable-speed operation can make it easier to match machine speed to the production process.


20. Main Advantages

20.1 Very High Current Capacity

The 1465 A output rating is the most obvious advantage.

It provides sufficient capacity for very large low-voltage motors.


20.2 High Power Capability

The drive supports up to approximately:

850 kW light duty

800 kW normal duty

630 kW heavy duty

This gives it a wide range of potential industrial applications.


20.3 400 VAC Three-Phase Architecture

The 400 VAC three-phase rating makes the drive suitable for large industrial low-voltage electrical systems.


20.4 Frame 9 Construction

The Frame 9 design is intended for high-power applications and industrial electrical-room installation.


20.5 Forced-Air Cooling

Forced-air cooling provides the heat-removal capability needed for a large-capacity drive.

Adequate ventilation remains essential.


20.6 EtherNet/IP Integration

Embedded EtherNet/IP makes it easier to integrate the drive into an automated plant.

The drive can be monitored and controlled from a centralized automation system.


20.7 Controlled Motor Acceleration

The drive can provide controlled acceleration instead of connecting a large motor directly to the electrical supply.

This can help reduce mechanical shock.


20.8 Flexible Process Speed

The motor does not have to operate continuously at a single fixed speed.

The drive can adjust speed according to process requirements.


20.9 Industrial Automation Compatibility

The model is well suited to large automated systems where motor control is part of a broader PLC, HMI and SCADA architecture.


20.10 No Local HIM Requirement

For systems using centralized control, the blank-HIM configuration can reduce the need for local operator hardware.


21. Five Same-Series or Closely Related Models

The following models are useful for comparison when selecting a PowerFlex 755 drive around the same high-power range.

Model Input Voltage Current Light Duty Normal Duty Heavy Duty Frame Dimensions Weight (kg)
20G11LC1K0JN0NNNNN 400 VAC 1040 A Approx. 630 kW 560 kW 500 kW 9 800 mm depth class Configuration-dependent
20G11LC1K1JN0NNNNN 400 VAC Approx. 1090 A Approx. 710 kW 630 kW 500 kW 9 800 mm depth class Configuration-dependent
20G11LC1K2JN0NNNNN 400 VAC Approx. 1175 A Approx. 800 kW 710 kW 560 kW 9 800 mm depth class Configuration-dependent
20G11LC1K4JN0NNNNN 400 VAC 1465 A 850 kW 800 kW 630 kW 9 800 mm depth class Configuration-dependent
20G11LC1K4JN2NNNNN 400 VAC 1465 A 850 kW 800 kW 630 kW 9 800 mm depth class Configuration-dependent

The first three models are useful when the required motor current is lower.

The K4 configuration is appropriate when the application is near the upper end of this current range.

The JN2 version is a related configuration with a different option arrangement and can be considered when the project requirements differ from the basic JN0 configuration.


22. Same-Series Model Comparison

Model Current Class Normal-Duty Power Heavy-Duty Power Typical Application
20G11LC1K0JN0NNNNN 1040 A 560 kW 500 kW Large pumps and fans
20G11LC1K1JN0NNNNN ~1090 A 630 kW 500 kW Large fans and process machinery
20G11LC1K2JN0NNNNN ~1175 A 710 kW 560 kW Pumps, fans and conveyors
20G11LC1K4JN0NNNNN 1465 A 800 kW 630 kW Very large industrial motors
20G11LC1K4JN2NNNNN 1465 A 800 kW 630 kW Large automated motor systems

23. Five Related Models from the Same Brand

For projects that do not necessarily require exactly the same high-power configuration, the following models are useful comparison products within the same brand’s industrial drive range.

Model Product Family Voltage Class Approx. Capacity Typical Application Dimensions Weight (kg)
20G11LC1K4JN0NNNNN PowerFlex 755 400 VAC 1465 A / 800 kW ND Large pumps, fans, conveyors 800 mm depth class Configuration-dependent
20F11ND034JA0NNNNN PowerFlex 753 400/480 VAC class 34 A class Industrial machinery Frame-dependent Configuration-dependent
25B-D024N114 PowerFlex 525 400/480 VAC class 24 A class Machine automation Compact, frame-dependent Configuration-dependent
20G11K2K2JN0NNNNN PowerFlex 755 High-power AC drive High-power class Large industrial motors Frame-dependent Configuration-dependent
20G11GD096AA0NNNNN PowerFlex 755 480 VAC class 96 A class Pumps, fans, conveyors Frame-dependent Configuration-dependent

The smaller models are not direct electrical replacements for the 20G11LC1K4JN0NNNNN.

They are included as related products because they occupy different portions of the same industrial variable-frequency-drive portfolio.

For an actual replacement, the motor current and duty rating must be checked first.


24. Direct Selection Guide

Motor / Application Requirement Recommended Direction
Medium industrial motor Smaller PowerFlex drive
Large pump PowerFlex 755
Large centrifugal fan PowerFlex 755
Large blower PowerFlex 755
Heavy conveyor PowerFlex 755
Large mining conveyor High-current PowerFlex 755
Motor around 500–560 kW K0/K1 range may be appropriate
Motor around 630–710 kW K1/K2 range may be appropriate
Motor around 800 kW ND K4 configuration
Motor around 630 kW HD K4 configuration
Centralized PLC control Embedded EtherNet/IP configuration
Local operator control required Select a suitable HIM-equipped configuration

25. Important Selection Considerations

The model should not be selected solely by motor horsepower.

The following parameters should be checked:

Motor Rated Current

The motor’s nameplate current is one of the most important selection criteria.

The drive must be capable of supplying the required current continuously.

Duty Cycle

The application should be classified appropriately.

A pump may have a relatively moderate torque requirement, while a conveyor may have much more demanding starting and overload conditions.

Acceleration Time

Large motors and high-inertia loads may require carefully controlled acceleration.

Deceleration Time

The stopping requirement is equally important.

This particular configuration has no dynamic braking, so applications requiring rapid controlled stopping should receive special engineering attention.

Ambient Temperature

High ambient temperature can affect drive performance and cooling requirements.

Altitude

High-altitude installations can affect cooling performance and may require derating depending on the actual installation conditions.

Motor Cable Length

Long motor cables can influence electrical behavior, insulation stress and EMC performance.

Cabinet Ventilation

A high-power air-cooled drive requires sufficient airflow.


26. Dynamic Braking

The configuration specifies:

Dynamic Braking: None

This is important.

Some applications have high rotational inertia and require rapid stopping.

Examples include:

  • Large conveyors
  • High-speed machinery
  • Certain hoisting systems
  • High-inertia fans
  • Certain process machines

In such cases, the braking strategy should be evaluated before selecting the drive configuration.

The absence of internal dynamic braking does not mean the drive cannot stop the motor under normal conditions.

It means that the particular configuration does not include the internal dynamic braking arrangement.


27. EMC and Common-Mode Configuration

The model uses the filtered, CM-jumper-installed configuration.

This is particularly relevant in installations where electromagnetic compatibility and common-mode behavior are important.

The actual system performance depends on more than the drive alone.

Good installation practice includes:

  • Proper grounding
  • Appropriate motor cable
  • Correct cable routing
  • Separation of control and power wiring
  • Proper cabinet bonding
  • Appropriate shielding
  • Correct termination

28. Cooling and Maintenance

Because this is a high-power air-cooled drive, cooling maintenance is important.

Typical maintenance points include:

Maintenance Item Recommended Check
Cooling Fans Check operation
Airflow Ensure unobstructed airflow
Cabinet Temperature Monitor abnormal temperature rise
Ventilation Check cabinet ventilation
Dust Remove accumulated contamination
Power Terminals Inspect for overheating
Grounding Check connections
Control Wiring Inspect periodically
Network Check EtherNet/IP communication
Fault History Review repeated faults
Mechanical Connections Check mounting and connections

Good cooling conditions can have a significant effect on the service life of a high-power drive.


29. Advantages in Pump Systems

For large pump systems, the main benefits can include:

  • Adjustable flow
  • Adjustable pressure
  • Smooth acceleration
  • Reduced mechanical shock
  • Centralized control
  • Process flexibility
  • Motor speed regulation

A pump system can be operated at different speeds according to the required process condition.


30. Advantages in Fan Systems

For large fans, the main advantages include:

  • Adjustable airflow
  • Controlled starting
  • Process optimization
  • Reduced mechanical stress
  • Centralized monitoring
  • Flexible speed control

Large fan applications are especially interesting because airflow requirements can change considerably throughout an industrial process.


31. Advantages in Conveyor Systems

For large conveyors, controlled speed and acceleration can be particularly valuable.

Potential advantages include:

  • Smooth startup
  • Reduced belt shock
  • Reduced gearbox stress
  • Controlled material flow
  • Adjustable production speed
  • Centralized monitoring

The actual benefit depends on the conveyor design and load profile.


32. Advantages in Automated Production Lines

The embedded EtherNet/IP interface allows the drive to become part of a broader control system.

For example, a production controller can issue a speed reference to the drive while simultaneously monitoring:

  • Current
  • Speed
  • Status
  • Faults
  • Warnings
  • Operating frequency

This allows the drive to function as an integrated component of the production system rather than as an isolated motor controller.


33. Product Advantages Summary

Advantage Explanation
1465 A Current Suitable for very large low-voltage motors
850 kW LD High capacity for appropriate variable-torque applications
800 kW ND Strong capacity for normal-duty applications
630 kW HD Suitable for demanding heavy-duty applications
400 VAC Fits large industrial low-voltage systems
Frame 9 Designed for high-power applications
Air Cooling Suitable for high-capacity continuous operation
EtherNet/IP Easy integration with industrial automation
800 mm Cabinet Depth Suitable for MCC-style electrical installation
EMC Filtering Supports electromagnetic compatibility design
Precharge Input Appropriate for high-power DC-link charging
No HIM Configuration Useful for centrally controlled systems
High Scalability Related configurations available for different requirements

34. Complete Parameter Table

Parameter Value
Model 20G11LC1K4JN0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Family PowerFlex 750 Series
Product Type Air-Cooled AC Packaged Drive
Input Voltage 400 VAC
Input Phase 3 Phase
Output Current 1465 A
Light Duty 850 kW
Normal Duty 800 kW
Heavy Duty 630 kW
Frame 9
Cooling Forced Air
Enclosure Type 1 / IP20
Cabinet Type 800 mm Deep MCC Style
Cabinet Depth 800 mm
Overall Depth 800 mm class
Overall Width Configuration-dependent
Overall Height Configuration-dependent
Product Weight (kg) Configuration-dependent — confirm final mechanical drawing
Shipping Weight (kg) Configuration-dependent
Input AC with Precharge
Dynamic Braking None
Filtering Filtered
CM Jumper Installed
HIM Blank / None
Communication Embedded EtherNet/IP
Typical Motor Three-phase AC motor
Main Applications Pumps, fans, blowers, conveyors, compressors, process machinery

35. Overall Product Evaluation

The 20G11LC1K4JN0NNNNN is a high-power industrial variable frequency drive intended for applications where a conventional small or medium-size drive would not provide sufficient current capacity.

Its 1465 A output rating is the central characteristic of the model.

The 850 kW light-duty, 800 kW normal-duty and 630 kW heavy-duty ratings allow it to cover a wide range of large motor applications.

The product is particularly suitable for large pumps, cooling-water systems, industrial fans, blowers, conveyors, mining equipment, cement equipment, compressors and other large process machines.

The Frame 9, air-cooled construction, and 800 mm deep MCC-style enclosure make it more appropriate for a dedicated industrial electrical installation than for a compact machine-control cabinet.

The embedded EtherNet/IP capability is another major advantage when the drive is being installed into a modern automated plant.

The blank/no-HIM configuration is particularly practical where operation and monitoring are performed through a PLC, SCADA system or centralized HMI.

The J configuration, with the common-mode capacitor jumper installed, should also be considered when comparing this model with similar catalog numbers.

From a system-design perspective, the most important things to verify before purchasing or replacing the drive are the motor nameplate current, duty cycle, acceleration requirements, deceleration requirements, braking requirements, ambient temperature, altitude, motor-cable arrangement, cabinet ventilation and available electrical protection.

For mechanical planning, the 800 mm cabinet depth is a useful confirmed dimension.

For the weight in kg, an exact figure should not be fabricated from the catalog number. Because this is a large Frame 9 packaged configuration, the actual weight can depend on the final mechanical arrangement and installed options. The final mechanical drawing should therefore be used for transportation, lifting and floor-loading calculations.

In practical terms, the 20G11LC1K4JN0NNNNN can be considered a strong choice for a very large 400 VAC three-phase motor application requiring approximately 1465 A of drive current and up to approximately 800 kW normal-duty power.



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