• Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive
Allen-Bradley 20G11BC1K4JN2NNNNN — Detailed Product Specifications, Introduction, Applications, Advantages and Recommended Models 1. Product Overview The 20G11BC1K4JN2NNNNN is a high-power Allen-Bradley……
Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20G11BC1K4JN2NNNNN
  • PowerFlex AC Drive
  • USA
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  • 1270kg
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Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive

Global Logistics

We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive

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Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive

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We provide 7*24 hours service to our customers. We will be there whenever you need us.

Allen Bradley 20G11BC1K4JN2NNNNN PowerFlex AC Drive

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All our products are priced very favorably because we have our own warehouse and supply.


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Allen-Bradley 20G11BC1K4JN2NNNNN — Detailed Product Specifications, Introduction, Applications, Advantages and Recommended Models

1. Product Overview

The 20G11BC1K4JN2NNNNN is a high-power Allen-Bradley PowerFlex 755 AC drive designed for large industrial motor-control applications.

It belongs to the PowerFlex 755 family and is intended for demanding installations where the motor requires very high current capacity, stable speed regulation, industrial networking and centralized control.

This is a 400 V AC, three-phase, Frame 9, air-cooled drive with an output-current rating of approximately 1,465 A. Its published ratings are 850 kW Light Duty, 800 kW Normal Duty and 630 kW Heavy Duty. The unit uses a 600 mm deep MCC-style enclosure with an IP20 / NEMA Type 1 class arrangement.

The JN2 configuration is equipped with an enhanced LCD/full-numeric local HIM arrangement, making it different from the JN0 configuration, which is supplied without a local HIM. The JN2 configuration is therefore more convenient when technicians or operators need local access to drive parameters, status information and diagnostic functions.

2. Brand and Series

Item Specification
Model 20G11BC1K4JN2NNNNN
Brand Allen-Bradley
Product family PowerFlex
Series PowerFlex 755
Product type High-Power AC Drive
Configuration Air-Cooled PowerFlex 755 AC Drive
Application class Industrial variable-frequency drive
Voltage class 400 V AC
Input Three-phase AC
Frame Frame 9
Cooling Forced-air / air cooled
Enclosure IP20 / NEMA Type 1 class
Cabinet style 600 mm Deep MCC Style
Product status Active
Local interface Enhanced LCD / Full Numeric HIM
Communication Embedded EtherNet/IP

3. Main Technical Parameters

Parameter Specification
Model 20G11BC1K4JN2NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product type AC variable-frequency drive
Input voltage 400 V AC
Input phase 3 phase
Input frequency 47–63 Hz
Output current 1,465 A
Light Duty rating 850 kW
Normal Duty rating 800 kW
Heavy Duty rating 630 kW
Approximate horsepower 1,400 HP
Frame Frame 9
Cooling Air cooled / forced air
Enclosure IP20 / NEMA/UL Type 1
Cabinet style 600 mm Deep MCC Style
DC bus voltage Approximately 540 V DC
Input arrangement AC input with precharge / DC terminals
EMC filtering Filtered
CM capacitor configuration Jumper installed
Dynamic braking None
Internal braking transistor No
Communication Embedded EtherNet/IP
Local operator interface Enhanced LCD, full numeric HIM
Installation Industrial cabinet / MCC
Depth 600 mm class
Height Configuration dependent; verify final mechanical drawing
Width Configuration dependent; verify final mechanical drawing
Weight (kg) Approximately 1,270 kg
Approximate weight Approximately 2,800 lb
Approximate mass 1.27 metric tons

4. Electrical Rating

The most important specification of the 20G11BC1K4JN2NNNNN is its very high current capability.

The drive is rated at approximately 1,465 A and supports 850 kW Light Duty, 800 kW Normal Duty and 630 kW Heavy Duty operation.

These ratings allow the same basic drive platform to be considered for different types of industrial loads.

For example, a large centrifugal pump or fan may be suitable for the higher Light Duty rating because these applications generally have a variable-torque characteristic.

A conveyor or other demanding mechanical load may instead require evaluation against the Heavy Duty rating because acceleration, starting torque and overload requirements can be more demanding.

5. Power Rating Table

Duty Type Rating
Light Duty 850 kW
Normal Duty 800 kW
Heavy Duty 630 kW
Output current 1,465 A
Approximate horsepower 1,400 HP
Voltage 400 V AC
Phase 3 phase

6. Product Introduction

The 20G11BC1K4JN2NNNNN is designed to control large three-phase AC motors by varying the frequency and voltage supplied to the motor.

Instead of operating the motor only at full speed, the drive allows motor speed to be adjusted according to process requirements.

This makes it possible to control equipment such as large pumps, fans, blowers, conveyors and process machines.

The drive sits between the plant electrical supply and the motor.

A simplified power path is:

Three-Phase AC Supply

Input / Precharge Section

Converter

DC Link

Inverter

Variable-Frequency AC Output

Large Industrial Motor

Process Equipment

7. PowerFlex 755 Series

The PowerFlex 755 series is designed for industrial applications where flexible motor control and integration with automation systems are important.

The platform is suitable for applications that require more than simple speed control.

Depending on the complete configuration, the system can provide functions related to:

  • Motor speed control.
  • Torque control.
  • Acceleration and deceleration.
  • Process control.
  • Networked control.
  • Fault monitoring.
  • Diagnostic information.
  • Local operator interaction.
  • Centralized PLC control.

8. High-Power Industrial Design

The 20G11BC1K4JN2NNNNN should not be viewed as a compact machine-level inverter.

With approximately 1,465 A of output current and a mass of roughly 1.27 tonnes, this is major industrial electrical equipment.

It is normally installed in an engineered electrical room, MCC area or centralized motor-control installation.

Typical installation environments include:

  • Large manufacturing facilities.
  • Water-treatment plants.
  • Wastewater plants.
  • Mining operations.
  • Cement plants.
  • Steel and metal-processing facilities.
  • Large pumping stations.
  • Industrial ventilation systems.
  • Process plants.
  • Large material-handling installations.

9. Local HIM — JN2 Configuration

One of the notable differences between the JN2 and JN0 configurations is the local operator interface.

The JN2 configuration is described with an enhanced LCD and full numeric HIM.

This is useful during commissioning and maintenance.

A technician can use the local interface to access drive information without relying entirely on a remote PLC or HMI.

Typical local activities include:

  • Viewing drive status.
  • Reviewing fault information.
  • Checking parameters.
  • Monitoring motor operation.
  • Adjusting selected settings.
  • Performing commissioning procedures.
  • Diagnosing operating problems.

10. Embedded EtherNet/IP

The drive includes embedded EtherNet/IP communication.

This makes the 20G11BC1K4JN2NNNNN suitable for integration into a plant-wide industrial Ethernet architecture.

A typical arrangement can be represented as:

Plant PLC

Industrial Ethernet

PowerFlex 755

20G11BC1K4JN2NNNNN

Large Motor

Pump / Fan / Conveyor / Process Machine

This type of architecture can reduce the need for large quantities of individual hardwired control signals.

11. Communication Advantages

The embedded network interface can be used for exchanging information such as:

  • Start command.
  • Stop command.
  • Speed reference.
  • Actual speed.
  • Output current.
  • Drive status.
  • Fault status.
  • Alarm information.
  • Operating feedback.
  • Diagnostic information.

12. Input Configuration

The model uses an AC input arrangement with precharge and DC terminals.

For a drive of this size, controlled energization of the DC-link system is particularly important.

The precharge function helps manage the initial charging of the DC-link capacitors when the drive is energized.

This is one reason why high-power drive installations require carefully designed input protection and switching arrangements.

13. EMC Filtering

The 20G11BC1K4JN2NNNNN is configured with filtering and a CM jumper installed.

This is useful in industrial environments where the drive operates close to:

  • PLC systems.
  • Ethernet networks.
  • Sensors.
  • Instrumentation.
  • Measurement equipment.
  • Other variable-frequency drives.

Good grounding and cable-routing practices remain important even when filtering is included.

14. Dynamic Braking

The catalog configuration is specified with no dynamic braking and no internal braking transistor.

This does not mean that the drive cannot control deceleration.

It means that applications requiring dissipation of significant regenerative energy need additional engineering consideration.

For example, a large pump that naturally decelerates over a relatively long period may have very different braking requirements from a large conveyor that must stop quickly.

15. Dimensions

The model is specified as a 600 mm deep MCC-style PowerFlex 755 configuration.

Because large Frame 9 drives can have configuration-dependent mechanical arrangements, the final height and width should be taken from the applicable mechanical drawing rather than estimated.

Mechanical Parameter Specification
Model 20G11BC1K4JN2NNNNN
Frame Frame 9
Cabinet style MCC style
Depth 600 mm
Height Configuration dependent
Width Configuration dependent
Cooling Air cooled
Enclosure IP20 / NEMA Type 1 class
Installation Industrial electrical room / MCC

The 600 mm depth should be considered during the initial cabinet-layout stage.

16. Weight

The listed weight is approximately 2,800 lb, equivalent to approximately 1,270 kg.

Weight Information Value
Model 20G11BC1K4JN2NNNNN
Weight Approximately 1,270 kg
Imperial weight Approximately 2,800 lb
Metric mass Approximately 1.27 tonnes
Equipment class Heavy industrial electrical equipment

This weight is significant enough that transportation and lifting must be included in the project plan.

The installation team should verify the actual shipping configuration and lifting requirements before moving the equipment.

17. Typical Applications

Application Suitability Typical Reason
Large centrifugal pumps Excellent Variable flow control
Water-treatment pumps Excellent Flow and pressure regulation
Wastewater systems Excellent Process flow control
Large fans Excellent Airflow regulation
Large blowers Excellent Process-air control
Cooling-water pumps Excellent Cooling demand control
Industrial ventilation Excellent Variable airflow
Large conveyors Very good Controlled acceleration
Mining equipment Very good High-power motor control
Cement equipment Very good Large process motors
Material handling Very good Speed and torque control
Process machinery Very good Variable-speed operation
High-inertia equipment Good Requires braking analysis

18. Application — Large Pumps

Large pumping systems are among the most suitable applications for this drive.

Potential applications include:

  • Raw-water pumps.
  • High-pressure pumps.
  • Cooling-water pumps.
  • Circulation pumps.
  • Wastewater pumps.
  • Process pumps.
  • Irrigation pumps.

The ability to adjust motor speed can help the process respond to changing flow requirements.

19. Application — Water Treatment

Water-treatment facilities often contain large motors that operate for long periods.

The drive can be considered for:

  • Raw-water transfer.
  • Water distribution.
  • Filtration systems.
  • Process circulation.
  • Aeration blowers.
  • Wastewater pumping.
  • Sludge-processing systems.

20. Application — Large Fans

Large fans can require hundreds of kilowatts of motor power.

Typical applications include:

  • Furnace exhaust.
  • Industrial ventilation.
  • Dust extraction.
  • Mine ventilation.
  • Tunnel ventilation.
  • Process exhaust.
  • Combustion air.

Variable-speed operation allows airflow to be adjusted to process demand rather than relying exclusively on fixed-speed operation.

21. Application — Blowers

Large blowers are common in process industries and wastewater facilities.

The drive can regulate blower speed based on process requirements.

Potential benefits include:

  • Improved airflow control.
  • Reduced mechanical stress.
  • Smoother acceleration.
  • Better process response.
  • Centralized monitoring.

22. Application — Mining

Mining applications can involve extremely large motors.

The PowerFlex 755 platform can be considered for:

  • Conveyors.
  • Dewatering pumps.
  • Ventilation fans.
  • Material-handling systems.
  • Processing equipment.
  • Auxiliary process machinery.

Mining applications require additional consideration of dust, vibration, ambient temperature and maintenance access.

23. Application — Cement Plants

Cement plants contain many high-power rotating machines.

Typical applications include:

  • Large process fans.
  • Exhaust fans.
  • Conveyors.
  • Blowers.
  • Pumps.
  • Dust-collection systems.
  • Material-handling equipment.

The high current capability of the 20G11BC1K4JN2NNNNN makes it suitable for major motor loads within this type of facility.

24. Application — Conveyors

Large conveyors often have substantial mechanical inertia.

A controlled acceleration profile can reduce mechanical shock.

This can be beneficial for:

  • Belts.
  • Gearboxes.
  • Couplings.
  • Shafts.
  • Bearings.
  • Mechanical drive components.

For long or inclined conveyors, the actual starting torque and regenerative behavior should be analyzed carefully.

25. Application — Industrial Ventilation

Industrial ventilation systems often operate under changing process conditions.

The drive can adjust fan speed according to:

  • Temperature.
  • Pressure.
  • Airflow.
  • Production demand.
  • Process requirements.

This makes variable-speed control particularly useful for large industrial ventilation systems.

26. Main Product Advantages

Advantage Description
Very high current capacity 1,465 A
High Normal Duty rating 800 kW
High Light Duty rating 850 kW
Heavy Duty rating 630 kW
Frame 9 construction Designed for large motors
Air cooling Practical for engineered electrical rooms
Embedded EtherNet/IP Networked automation capability
Local LCD/HIM Convenient commissioning and diagnostics
EMC filtering Helps manage electrical noise
AC precharge Appropriate for high-power DC-link systems
600 mm MCC-style depth Suitable for centralized installations
PowerFlex 755 platform Broad industrial application range
High-power capability Suitable for major industrial motors

27. Advantage — High Current Capacity

The approximately 1,465 A output-current rating is the defining feature of this model.

It places the drive in a very high-power category.

This allows the drive to control motors that are far beyond the range of compact variable-frequency drives.

28. Advantage — 850 kW Light Duty

The 850 kW Light Duty rating is particularly useful for variable-torque applications.

Typical examples include:

  • Centrifugal pumps.
  • Large fans.
  • Cooling systems.
  • Certain blowers.

In these applications, the motor load can vary substantially with speed.

29. Advantage — 800 kW Normal Duty

The 800 kW Normal Duty rating provides a large operating range for industrial motor applications.

It is particularly relevant when the motor operates under relatively stable loading conditions.

30. Advantage — 630 kW Heavy Duty

The 630 kW Heavy Duty rating provides a reference for more demanding load profiles.

Heavy Duty selection should be considered when the application requires significant overload capability or starting torque.

The actual motor current and duty cycle should always be checked before final selection.

31. Advantage — Local Operator Interface

The JN2 configuration provides a local enhanced LCD/full-numeric interface.

This can make commissioning more convenient.

A technician can inspect the drive without always needing to connect through a remote control system.

This is particularly useful during:

  • Initial startup.
  • Maintenance.
  • Fault diagnosis.
  • Parameter verification.
  • Motor testing.

32. Advantage — Industrial Ethernet

Embedded EtherNet/IP simplifies integration into an industrial control architecture.

This is particularly useful for facilities that already use Ethernet-based PLC and HMI systems.

33. Advantage — Air-Cooled Construction

Air cooling eliminates the need for a dedicated liquid-cooling circuit.

This can simplify the overall installation.

However, the electrical room must be capable of handling the heat generated by a drive of this size.

34. Advantage — Industrial Enclosure

The IP20 / NEMA Type 1 class arrangement is suitable for a controlled electrical-room environment.

It is not intended to be treated as a weatherproof or washdown enclosure.

Outdoor or harsh environments require additional enclosure and environmental engineering.

35. Advantage — Standardized Platform

A facility using multiple PowerFlex 755 drives can standardize many aspects of:

  • Maintenance.
  • Troubleshooting.
  • Operator training.
  • Parameter management.
  • Spare-parts planning.
  • Network integration.

This can be valuable in large plants with many variable-speed motors.

36. Installation Considerations

Because this drive operates at very high current, installation requires considerably more planning than a small VFD.

Important considerations include:

  • Transformer capacity.
  • Short-circuit current.
  • Protection coordination.
  • Incoming cable sizing.
  • Motor-cable sizing.
  • Grounding.
  • EMC.
  • Ventilation.
  • Cabinet clearance.
  • Mechanical support.
  • Lifting requirements.

37. Electrical Room Requirements

The installation area should provide sufficient space for:

  • Incoming cables.
  • Motor cables.
  • Network cables.
  • Ventilation.
  • Maintenance.
  • Inspection.
  • Isolation.
  • Heat removal.

The 600 mm cabinet depth must be incorporated into the layout from the beginning.

38. Thermal Management

An air-cooled drive of this power level generates substantial heat.

The electrical room should therefore be designed around the actual thermal load.

Poor ventilation can cause:

  • Higher component temperatures.
  • Cooling-fan stress.
  • Thermal trips.
  • Reduced service life.
  • Increased maintenance.
  • Unexpected downtime.

39. Floor Loading and Mechanical Handling

With a weight of approximately 1,270 kg, the drive is a major mechanical load.

Before installation, the project team should check:

  • Floor loading.
  • Raised-floor capacity.
  • Door dimensions.
  • Corridor clearance.
  • Elevator capacity.
  • Forklift capacity.
  • Crane capacity.
  • Lifting points.
  • Final cabinet location.

40. Cable Considerations

The approximately 1,465 A current level makes cable engineering particularly important.

The installation may require multiple parallel conductors depending on the system design.

The following should be evaluated:

  • Conductor size.
  • Number of parallel conductors.
  • Cable temperature.
  • Installation method.
  • Voltage drop.
  • Short-circuit withstand.
  • Terminal arrangement.
  • Grounding conductors.

41. Motor Selection

The drive should be matched to the actual motor nameplate.

Important parameters include:

Motor Parameter Importance
Motor voltage Must match drive voltage class
Motor current Primary drive-sizing parameter
Motor kW General power reference
Motor frequency Required operating frequency
Motor speed Defines operating range
Motor torque Important for load matching
Starting torque Important for demanding loads
Duty cycle Determines thermal requirements
Acceleration time Influences current demand
Deceleration time Determines braking requirements
Motor cable length Influences installation
Motor insulation Important for inverter operation

42. Motor Current vs. Motor Power

Motor kW alone should not be used as the only basis for selecting the drive.

Actual motor current depends on:

  • Motor voltage.
  • Efficiency.
  • Power factor.
  • Motor construction.
  • Operating conditions.
  • Load characteristics.

The motor nameplate current should therefore be compared against the appropriate drive current rating.

43. Braking Requirements

Because this configuration has no internal dynamic-braking transistor, braking requirements should be evaluated during system design.

A large pump may naturally decelerate slowly.

A large conveyor may need much faster deceleration.

A high-inertia machine can also return substantial energy to the drive during deceleration.

The engineering team should determine whether the application requires:

  • Natural deceleration.
  • Controlled deceleration.
  • Dynamic braking.
  • Regenerative operation.
  • Another energy-management solution.

44. Preventive Maintenance

A high-power drive should be included in a structured preventive-maintenance program.

Maintenance Item Recommended Inspection
Cooling fans Check operation and abnormal noise
Air passages Keep clear
Cabinet Check for dust and contamination
Power connections Inspect for overheating
Grounding Verify continuity and condition
Control wiring Inspect connections
Ethernet cables Check condition
Fault history Review periodically
Motor cable Inspect insulation and termination
Parameters Maintain backup
Ambient temperature Monitor
Vibration Investigate abnormal changes

45. Commissioning Procedure

A practical commissioning process can be organized as follows.

Step 1 — Verify the Catalog Number

Confirm:

20G11BC1K4JN2NNNNN

The complete catalog number should match the engineering documentation.

Step 2 — Verify Incoming Power

Confirm:

  • 400 V class supply.
  • Three-phase configuration.
  • Frequency.
  • Grounding.
  • Protection.

Step 3 — Verify Motor Data

Check the motor nameplate for:

  • Voltage.
  • Current.
  • Power.
  • Frequency.
  • Speed.
  • Power factor.
  • Duty.

Step 4 — Enter Motor Parameters

Enter the actual motor nameplate information rather than relying on generic values.

Step 5 — Verify Rotation

Perform a controlled low-speed test.

Step 6 — Check Current

Observe the motor current under no-load and operating conditions.

Step 7 — Test Acceleration

Gradually increase speed and monitor the mechanical system.

Step 8 — Test Deceleration

Confirm that the selected deceleration profile is suitable for the load.

Step 9 — Test Local HIM

Use the JN2 interface to verify:

  • Status.
  • Parameters.
  • Fault history.
  • Operating values.

Step 10 — Test Network Communication

Verify:

  • Start command.
  • Stop command.
  • Speed reference.
  • Status feedback.
  • Fault feedback.
  • Alarm information.

46. Recommended Same-Series Models

The following five models are useful comparisons within the same PowerFlex 755 high-power family.

Model Voltage Output Current LD ND HD Frame Depth Weight
20G11BC910JN2NNNNN 400 V 910 A 560 kW 500 kW 400 kW 9 600 mm Configuration dependent
20G11BC1K2JN2NNNNN 400 V 1,175 A 710 kW class 710 kW 560 kW 9 600 mm class ~1,250 kg class
20G11BC1K4JN0NNNNN 400 V 1,465 A 850 kW 800 kW 630 kW 9 600 mm ~1,270 kg
20G11BC1K4JN4NNNNN 400 V 1,465 A 850 kW class 800 kW 630 kW 9 600 mm ~1,270 kg class
20G11BC1K5JN2NNNNN 400 V ~1,480 A class Higher-power class ~850 kW class ~710 kW class 9 600 mm class Configuration dependent

These models are closely related to the target model and can be useful when selecting a replacement, comparing current capacity or choosing a different operator-interface configuration.

The PowerFlex 755 product family includes multiple configurations of the 910 A, 1,175 A, 1,465 A and higher-current classes.

47. Recommended Model 1 — 20G11BC910JN2NNNNN

The 20G11BC910JN2NNNNN is a lower-current Frame 9 PowerFlex 755 configuration.

Parameter Specification
Model 20G11BC910JN2NNNNN
Series PowerFlex 755
Voltage 400 V AC
Output current 910 A
Light Duty 560 kW
Normal Duty 500 kW
Heavy Duty 400 kW
Frame Frame 9
Cooling Air cooled
Enclosure IP20 / Type 1 class
Cabinet depth 600 mm
Filtering Yes
CM jumper Installed
Dynamic braking None
HIM JN2
Depth 600 mm
Height Configuration dependent
Width Configuration dependent
Weight (kg) Configuration dependent

This is useful when the target motor current is substantially lower than 1,465 A.

48. Recommended Model 2 — 20G11BC1K2JN2NNNNN

The 20G11BC1K2JN2NNNNN provides a lower current level while remaining in the same general high-power family.

Parameter Specification
Model 20G11BC1K2JN2NNNNN
Series PowerFlex 755
Voltage 400 V AC
Output current 1,175 A
Normal Duty 710 kW
Heavy Duty 560 kW
Frame Frame 9
Cooling Air cooled
Enclosure IP20 / Type 1 class
Cabinet style 600 mm MCC style
Filtering Yes
CM jumper Installed
Dynamic braking None
HIM JN2
Depth 600 mm class
Height Configuration dependent
Width Configuration dependent
Weight (kg) Approximately 1,250 kg class

This model is a practical alternative when the 1,465 A capacity of the target model is not necessary.

49. Recommended Model 3 — 20G11BC1K4JN0NNNNN

The 20G11BC1K4JN0NNNNN is electrically very close to the target model.

Parameter Specification
Model 20G11BC1K4JN0NNNNN
Series PowerFlex 755
Voltage 400 V AC
Output current 1,465 A
Light Duty 850 kW
Normal Duty 800 kW
Heavy Duty 630 kW
Frame Frame 9
Cooling Air cooled
Enclosure IP20 / Type 1 class
Cabinet depth 600 mm
Filtering Yes
CM jumper Installed
Dynamic braking None
HIM JN0 / no local HIM
Depth 600 mm
Height Configuration dependent
Width Configuration dependent
Weight (kg) Approximately 1,270 kg

The main practical difference is the local-interface configuration.

50. Recommended Model 4 — 20G11BC1K4JN4NNNNN

The 20G11BC1K4JN4NNNNN is another closely related 1K4 configuration.

Parameter Specification
Model 20G11BC1K4JN4NNNNN
Series PowerFlex 755
Voltage 400 V AC
Output current 1,465 A
Light Duty 850 kW class
Normal Duty 800 kW
Heavy Duty 630 kW
Frame Frame 9
Cooling Air cooled
Enclosure IP20 / Type 1 class
Cabinet depth 600 mm
Input AC with precharge
Filtering Yes
Dynamic braking None
HIM configuration JN4
Depth 600 mm
Height Configuration dependent
Width Configuration dependent
Weight (kg) Approximately 1,270 kg class

This is useful when the application needs the same general 1K4 electrical rating but a different interface configuration.

51. Recommended Model 5 — 20G11BC1K5JN2NNNNN

The 20G11BC1K5JN2NNNNN is a higher-capacity related configuration.

Parameter Specification
Model 20G11BC1K5JN2NNNNN
Series PowerFlex 755
Voltage 400 V AC class
Output current Approximately 1,480 A class
Normal Duty Approximately 850 kW class
Heavy Duty Approximately 710 kW class
Frame Frame 9
Cooling Air cooled
Enclosure IP20 / Type 1 class
Cabinet MCC style
Filtering Yes
Dynamic braking None
HIM JN2
Depth 600 mm class
Height Configuration dependent
Width Configuration dependent
Weight (kg) Configuration dependent

This option is worth considering when the motor operating point requires more capacity than the 1K4 configuration.

52. Five Popular / Recommended Models Under the Same Brand

For a broader selection, the following five models cover several different power ranges.

Model Series Voltage Current / Power Frame Dimensions Weight
20G11BC1K4JN2NNNNN PowerFlex 755 400 V 1,465 A / 800 kW ND 9 600 mm deep ~1,270 kg
20G11BC1K2JN2NNNNN PowerFlex 755 400 V 1,175 A / 710 kW ND 9 600 mm class ~1,250 kg class
20G11BC910JN2NNNNN PowerFlex 755 400 V 910 A / 500 kW ND 9 600 mm Configuration dependent
20G11BC1K5JN2NNNNN PowerFlex 755 400 V ~1,480 A / ~850 kW ND class 9 600 mm class Configuration dependent
25B-D030N114 PowerFlex 525 380–480 V ~30 A / ~15 kW class D Compact ~18 kg class

53. Smaller PowerFlex Alternative

The 25B-D030N114 is substantially smaller than the target drive.

It is intended for machine-level applications rather than 800 kW-class industrial motor systems.

Parameter Specification
Model 25B-D030N114
Series PowerFlex 525
Voltage 380–480 V AC
Input phase Three phase
Output current Approximately 30 A
Normal Duty power Approximately 15 kW
Heavy Duty power Approximately 11 kW
Frame Frame D
Cooling Forced air
Enclosure IP20 class
Communication Embedded EtherNet/IP
Dimensions Compact Frame D configuration
Weight (kg) Approximately 18 kg class

It is therefore not a direct replacement for the 20G11BC1K4JN2NNNNN.

It is included as a same-brand alternative for applications where the motor size is dramatically smaller.

54. Same-Series Comparison

Model Current LD ND HD Frame Cooling Depth Approx. Weight
20G11BC910JN2NNNNN 910 A 560 kW 500 kW 400 kW 9 Air 600 mm Configuration dependent
20G11BC1K2JN2NNNNN 1,175 A 710 kW class 710 kW 560 kW 9 Air 600 mm class ~1,250 kg
20G11BC1K4JN0NNNNN 1,465 A 850 kW 800 kW 630 kW 9 Air 600 mm ~1,270 kg
20G11BC1K4JN2NNNNN 1,465 A 850 kW 800 kW 630 kW 9 Air 600 mm ~1,270 kg
20G11BC1K4JN4NNNNN 1,465 A 850 kW class 800 kW 630 kW 9 Air 600 mm ~1,270 kg

55. Application Selection Guide

Application Recommended Configuration
Large centrifugal pump 1K2 / 1K4
Very large centrifugal pump 1K4
Large cooling-water pump 1K4
Water-treatment blower 1K2 / 1K4
Large process fan 1K4
Mine ventilation fan 1K4
Large conveyor 1K2 / 1K4
Heavy conveyor 1K4 with braking evaluation
Cement-process fan 1K4
Industrial ventilation 1K4
Smaller industrial motor 910 A class or lower
Machine-level motor PowerFlex 525 class

56. Why the 20G11BC1K4JN2NNNNN Is Attractive for Large Plants

For a large industrial facility, selecting a drive is not only about motor power.

The engineering team also has to consider:

  • Network integration.
  • Operator interface.
  • Maintenance.
  • Spare parts.
  • Cooling.
  • Cabinet dimensions.
  • Installation weight.
  • Motor-cable requirements.
  • Braking.
  • Duty cycle.

The 20G11BC1K4JN2NNNNN provides a combination of high current capacity and industrial-control functionality that makes it suitable for centralized motor-control applications.

57. Local Control vs. Remote Control

The JN2 configuration can be advantageous when both local and remote control are required.

During normal plant operation, the drive can be controlled through the automation system.

During maintenance, the local HIM provides another convenient interface for technicians.

This dual approach can simplify commissioning and troubleshooting.

58. Maintenance Advantages of the JN2 Configuration

A local operator interface can make troubleshooting faster.

For example, a technician can inspect drive information directly at the cabinet instead of depending completely on the central control room.

This can be especially useful when:

  • The PLC is offline.
  • Network communication is unavailable.
  • The machine is undergoing commissioning.
  • A technician is working directly at the MCC.
  • A fault needs to be diagnosed locally.

59. Industrial Reliability Considerations

The drive’s reliability depends on more than the electronic hardware itself.

The installation environment is equally important.

A properly engineered installation should control:

  • Temperature.
  • Dust.
  • Humidity.
  • Condensation.
  • Vibration.
  • Electrical noise.
  • Cooling airflow.
  • Grounding.

60. Environmental Considerations

The IP20 / NEMA Type 1 class enclosure means that the drive should be installed in an appropriate controlled environment.

It should not be treated as a standalone outdoor enclosure.

For harsh environments, the overall installation may require:

  • Additional cabinet protection.
  • Environmental filtration.
  • Air conditioning.
  • Controlled ventilation.
  • Corrosion protection.
  • Dust management.

61. Transportation and Installation

A drive weighing approximately 1,270 kg requires serious logistics planning.

The project team should establish the transportation route before delivery.

The following should be checked:

Factory loading

Truck transportation

Plant entrance

Unloading equipment

Forklift or crane

Floor capacity

Final positioning

Cable access

Maintenance clearance

62. Spare-Parts Planning

For a plant with several PowerFlex 755 units, spare-parts planning can reduce downtime.

Potentially important spare categories include:

  • Cooling fans.
  • Control components.
  • Interface components.
  • Network-related components.
  • Power components.
  • Fuses and protection devices.
  • Connection hardware.

The exact spare-parts list should be based on the complete installed configuration.

63. Parameter Backup

The drive parameters should be backed up after commissioning.

A backup can be useful if:

  • The control hardware is replaced.
  • Parameters are accidentally changed.
  • A major maintenance event occurs.
  • The drive needs to be replaced.
  • A troubleshooting procedure requires restoring known-good settings.

64. Troubleshooting Strategy

A systematic troubleshooting process should begin with the fault information.

A useful sequence is:

Drive Fault

Check Fault Code

Check Incoming Power

Check Motor Current

Check Motor

Check Mechanical Load

Check Cooling

Check Parameters

Check Communication

This avoids unnecessarily replacing expensive drive components when the actual problem is external.

65. High-Power Drive Safety

Because this equipment operates at high electrical power, maintenance must be performed using appropriate industrial electrical safety procedures.

Particular attention should be paid to:

  • Isolation.
  • Lockout/tagout.
  • Verification of absence of voltage.
  • Stored electrical energy.
  • DC-link discharge.
  • Grounding.
  • Arc-flash requirements.
  • Qualified personnel.

The large DC-link system should never be treated as if it were a small low-power drive.

66. Overall Product Advantages

The 20G11BC1K4JN2NNNNN combines several characteristics that are valuable for major industrial applications.

Its 1,465 A output capacity allows it to control very large motors.

Its 800 kW Normal Duty rating makes it suitable for major process equipment.

Its 850 kW Light Duty rating is particularly useful for variable-torque loads.

Its 630 kW Heavy Duty rating provides a lower power limit for more demanding load conditions.

Its Frame 9 / 600 mm MCC-style construction is designed for centralized industrial installations.

Its air-cooled design can be integrated into a properly ventilated electrical room.

Its embedded EtherNet/IP capability makes it suitable for networked automation.

Its JN2 local HIM provides convenient access for commissioning and troubleshooting.

67. Final Detailed Specification Table

Category Specification
Model 20G11BC1K4JN2NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product PowerFlex 755 Air-Cooled AC Drive
Product category High-power variable-frequency drive
Lifecycle Active
Voltage 400 V AC
Input phase 3 phase
Input frequency 47–63 Hz
Output current 1,465 A
Light Duty 850 kW
Normal Duty 800 kW
Heavy Duty 630 kW
Approx. horsepower 1,400 HP
Frame Frame 9
Cooling Air cooled / forced air
Enclosure IP20 / NEMA Type 1
Cabinet style 600 mm Deep MCC Style
Input AC input with precharge / DC terminals
Filtering Filtered
CM jumper Installed
Dynamic braking None
Internal braking transistor No
Communication Embedded EtherNet/IP
Local interface Enhanced LCD / Full Numeric HIM
DC bus voltage Approximately 540 V DC
Depth 600 mm
Height Configuration dependent
Width Configuration dependent
Weight (kg) Approximately 1,270 kg
Approximate mass 1.27 metric tons
Main applications Pumps, fans, blowers, conveyors, mining, water treatment, cement, process equipment
Installation environment Controlled industrial electrical room / MCC

68. Final Conclusion

The 20G11BC1K4JN2NNNNN is a high-power Allen-Bradley PowerFlex 755 AC drive intended for large industrial motor-control applications.

Its core electrical specification is centered around a 400 V AC three-phase supply, 1,465 A output current, 850 kW Light Duty, 800 kW Normal Duty and 630 kW Heavy Duty ratings. It uses a Frame 9, air-cooled, 600 mm deep MCC-style configuration.

The model is particularly suitable for large pumps, fans, blowers, conveyors, cooling systems, water-treatment equipment, mining machinery, cement equipment and other major process loads.

One of its practical advantages over the JN0 configuration is the local enhanced LCD/full-numeric HIM, which can be valuable during commissioning, maintenance and troubleshooting.

The embedded EtherNet/IP interface also makes it suitable for modern plant automation, allowing the drive to communicate with PLCs and other industrial control equipment.

The approximate 1,270 kg weight should not be overlooked.

This is a very large piece of electrical equipment, and the project must consider floor loading, transportation, lifting, ventilation, cable installation, maintenance access and electrical protection before installation.

For a lower-power alternative within the same family, the 20G11BC910JN2NNNNN and 20G11BC1K2JN2NNNNN are useful candidates.

For an electrically similar configuration without the same local HIM arrangement, the 20G11BC1K4JN0NNNNN is a close comparison.

For another 1K4 configuration with a different interface arrangement, the 20G11BC1K4JN4NNNNN is also worth considering.

For applications requiring still greater capacity, the 20G11BC1K5JN2NNNNN can be evaluated.

Overall, the 20G11BC1K4JN2NNNNN is best characterized as a large-frame, high-current, air-cooled PowerFlex 755 industrial drive with embedded EtherNet/IP and local LCD/HIM capability, intended for major motor loads where centralized automation, high-power speed control and practical local maintenance access are important.



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