• Allen Bradley 20G11JF1K4JN4NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11JF1K4JN4NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11JF1K4JN4NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11JF1K4JN4NNNNN PowerFlex AC Drive
20G11JF1K4JN4NNNNN — Detailed Product Overview and Technical Specification 1. Product Identification Item Specification Model 20G11JF1K4JN4NNNNN Brand Allen-Bradley Product family PowerFle……
Allen Bradley 20G11JF1K4JN4NNNNN PowerFlex AC Drive
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20G11JF1K4JN4NNNNN — Detailed Product Overview and Technical Specification


1. Product Identification

Item Specification
Model 20G11JF1K4JN4NNNNN
Brand Allen-Bradley
Product family PowerFlex
Product series PowerFlex 755
Product type Air-cooled AC variable frequency drive
Drive category High-power industrial AC drive
Voltage class 690 VAC
Input phase Three-phase
Current rating 1,400 A
Light Duty rating 1,500 kW
Normal Duty rating 1,400 kW
Heavy Duty rating 1,120 kW
Frame Frame 10
Cooling method Forced-air cooling
Enclosure Type 12
Protection class IP54
Cabinet depth 800 mm
Cabinet arrangement MCC-style
Input configuration AC input with precharge and DC terminals
Communication Embedded EtherNet/IP
Filtering Filtered
Common-mode configuration Common-mode capacitor jumper installed
Dynamic braking None
Human interface Enhanced LCD, full numeric keypad configuration
Intended environment Industrial applications
Main function Variable-speed control of large AC motors
Weight (kg) Final weight depends on the complete physical configuration; verify the actual mechanical/shipping configuration before handling

2. Product Introduction

The 20G11JF1K4JN4NNNNN is a very high-power AC variable frequency drive in the PowerFlex 755 series.

It is designed for large industrial motors where the motor power and operating current are considerably higher than those handled by ordinary compact variable frequency drives.

The unit is rated for a 690 VAC three-phase supply and has a 1,400 A current rating.

Its principal power ratings are 1,500 kW Light Duty, 1,400 kW Normal Duty and 1,120 kW Heavy Duty.

This places the model firmly in the high-power and megawatt-class motor-control category.

The product uses a large Frame 10 construction and an approximately 800 mm deep MCC-style cabinet arrangement.

It is intended for fixed industrial installations rather than small machinery or compact control panels.

The drive converts incoming fixed-frequency AC power into controlled variable-frequency output power for an AC motor.

By controlling the output frequency and voltage, it allows the motor speed and torque to be adjusted to suit the process.

This is particularly useful in industrial equipment where the motor does not need to run continuously at full speed.


3. Brand and Series

The product belongs to the Allen-Bradley brand and the PowerFlex 755 series.

The PowerFlex 755 family is positioned toward demanding industrial motor-control applications.

Compared with smaller general-purpose drives, the PowerFlex 755 platform is designed around larger motors, more sophisticated control requirements, networking and integration into industrial automation systems.

The 20G11JF1K4JN4NNNNN represents one of the very high-capacity configurations within this family.

Its 690 VAC voltage class and 1,400 A rating make it especially appropriate for large industrial motor systems.


4. Detailed Technical Parameters

Parameter Specification
Model 20G11JF1K4JN4NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product type AC Variable Frequency Drive
Voltage 690 VAC
Number of input phases 3
Current 1,400 A
Light Duty 1,500 kW
Normal Duty 1,400 kW
Heavy Duty 1,120 kW
Frame size Frame 10
Cooling Air cooled / forced air
Enclosure type Type 12
Ingress protection IP54
Cabinet depth 800 mm
Cabinet style MCC style
Input AC input
Precharge Included
DC terminals Included
Communication Embedded EtherNet/IP
Filtering Filtered
Common-mode capacitor jumper Installed
Dynamic braking None
Braking transistor None
Human interface Enhanced LCD
Keypad Full numeric
Output Variable-frequency AC output
Motor control Variable-speed AC motor control
Installation Industrial floor-mounted/cabinet installation
Dimensions Large Frame 10 MCC-style enclosure; 800 mm nominal depth
Weight (kg) Configuration dependent; exact shipping/installed weight should be taken from the applicable mechanical configuration
Typical motor class Large industrial motors
Typical power range Hundreds of kW through approximately 1.4 MW Normal Duty
Main applications Pumps, fans, compressors, conveyors, crushers, mills and heavy process machinery

5. Understanding the 1,500 kW / 1,400 kW / 1,120 kW Ratings

One of the most important aspects of this drive is that it has different ratings depending on the application duty.

Duty Power rating Typical application
Light Duty 1,500 kW Applications with relatively moderate overload requirements
Normal Duty 1,400 kW General industrial motor applications
Heavy Duty 1,120 kW High-torque or demanding overload applications

The largest number should not automatically be used when selecting the drive.

For example, a machine with a 1,300 kW motor may appear to fit the 1,500 kW Light Duty rating.

However, if the machine requires Heavy Duty operation, the relevant rating is substantially lower.

The motor’s actual nameplate current, overload requirements, acceleration profile and mechanical load should therefore be examined before selecting the final drive size.


6. 690 VAC Electrical Class

The 690 VAC rating makes this model particularly suitable for large industrial motor systems.

At high motor power levels, increasing the motor voltage can help keep current within a more manageable range.

This is one reason 690 V motor systems are commonly considered for large industrial machinery.

For a drive in the 1 MW-plus range, the electrical installation is considerably more substantial than that of a small motor drive.

Large incoming cables, protection equipment, bus structures, grounding systems and motor cables all need to be properly engineered.


7. 1,400 A Current Rating

The 1,400 A rating is one of the defining characteristics of the model.

This is a very high current level and indicates that the product is intended for large motor installations.

Such a drive can be used where the motor’s rated current is within the appropriate duty rating.

The actual motor nameplate current should always be checked rather than selecting a drive based solely on the motor’s kW rating.

This is particularly important because two motors with similar power ratings can have different current requirements depending on voltage, efficiency, power factor and operating conditions.


8. Frame 10 Construction

The drive uses a Frame 10 configuration.

Frame size is important because it affects the physical arrangement, cooling system, power connections, service requirements and overall installation space.

A Frame 10 drive is not intended to be treated like a compact wall-mounted inverter.

It is a substantial industrial electrical assembly.

Adequate room should be allowed for:

  • Power connections
  • Control wiring
  • Communication wiring
  • Cooling airflow
  • Maintenance
  • Inspection
  • Component replacement
  • Safe electrical access

9. 800 mm Deep MCC-Style Construction

The specified cabinet depth is 800 mm.

This is an important dimensional parameter for electrical-room planning.

Mechanical characteristic Value
Model 20G11JF1K4JN4NNNNN
Frame Frame 10
Cabinet style MCC-style
Nominal depth 800 mm
Enclosure Type 12
Protection IP54
Installation Industrial cabinet installation
Height Depends on complete physical arrangement
Width Depends on complete physical arrangement
Weight (kg) Depends on final physical configuration

The 800 mm depth should be considered when designing the electrical-room layout.

However, the depth alone does not define the complete installation envelope.

The final height, width and weight should be checked against the applicable mechanical drawing for the exact configuration.


10. Weight Consideration

For a drive of this power level, weight is an important engineering parameter.

The complete equipment can include the power section, cabinet structure, cooling components, control components and other installed hardware.

Therefore, the exact weight can vary according to the physical configuration.

For that reason, it is safer to specify:

Weight (kg): configuration-dependent; confirm the exact complete-unit/shipping weight from the applicable mechanical documentation.

This is preferable to assigning an unverified single number to a large cabinet that may be configured differently from one installation to another.

For transportation and installation, the actual shipping weight should be used.


11. Cooling System

The 20G11JF1K4JN4NNNNN uses forced-air cooling.

A drive operating at this power level generates significant heat.

The cooling system removes heat from the power electronics and keeps internal components within their required operating temperature range.

Proper airflow is therefore essential.

Important installation factors include:

  • Ambient temperature
  • Airflow
  • Cabinet ventilation
  • Cooling fan condition
  • Air passage cleanliness
  • Installation clearance
  • Room ventilation
  • Altitude
  • Environmental contamination

A blocked or contaminated cooling path can increase operating temperature and reduce equipment reliability.


12. Type 12 / IP54 Enclosure

The product is configured with a Type 12 / IP54 enclosure arrangement.

This provides a more enclosed industrial configuration than an open chassis.

It is intended for appropriate industrial environments where protection against dust and other environmental factors is required.

However, Type 12/IP54 should not be interpreted as meaning that the drive can be installed in any environment.

The installation still needs to meet the applicable temperature, humidity, contamination and ventilation requirements.


13. Embedded EtherNet/IP

The model includes embedded EtherNet/IP communication.

This is particularly useful in industrial automation systems.

The drive can participate in a networked control architecture where operating commands, references, status information and diagnostic information are exchanged between the drive and the control system.

Typical information can include:

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

This makes the drive suitable for applications requiring integration with a larger automation system.


14. Enhanced LCD and Full Numeric Interface

The JN4 configuration is associated with an enhanced LCD/full numeric human-machine interface arrangement.

This is useful for commissioning and maintenance.

A local interface can make it easier for technicians to:

  • View operating parameters
  • Check drive status
  • Adjust settings
  • Review faults
  • Examine diagnostic information
  • Perform commissioning procedures
  • Troubleshoot operating problems

For a large industrial drive, having convenient access to diagnostic information can significantly reduce troubleshooting time.


15. Filtering and Common-Mode Configuration

The drive uses a filtered configuration with the common-mode capacitor jumper installed.

This configuration is relevant to the electrical behavior of the drive and motor system.

Large variable frequency drives can generate high-frequency electrical components as part of their switching operation.

The overall installation should therefore consider:

  • Motor cable length
  • Grounding
  • Cable shielding
  • Motor insulation
  • Electrical noise
  • Common-mode currents
  • Plant grounding architecture
  • EMC requirements

These factors become increasingly important in large industrial installations.


16. Dynamic Braking

The model is specified with no dynamic braking.

This is important when the connected machine has substantial rotating inertia.

When a motor decelerates, mechanical energy can be transferred back toward the drive’s DC bus.

If the application requires rapid deceleration, an appropriate braking or regenerative-energy strategy needs to be considered.

Typical high-inertia applications include:

  • Large fans
  • Large conveyors
  • Centrifugal machines
  • Mills
  • Heavy rotating equipment

The absence of an internal dynamic braking arrangement does not prevent the drive from being used in such applications.

It simply means that the complete braking strategy must be designed separately according to the machine’s requirements.


17. Main Product Applications

17.1 Large Pump Systems

The drive is well suited to large industrial pumps.

Typical applications include:

  • Process-water pumps
  • Cooling-water pumps
  • Raw-water pumps
  • Circulation pumps
  • Industrial water systems
  • Mining water systems
  • Chemical process pumps

Variable-speed operation allows the pump to operate at a speed appropriate to the required process flow.

This can improve process control and, under suitable system conditions, reduce energy consumption.


18. Large Fans and Blowers

Large fans are another important application.

Possible uses include:

  • Industrial ventilation
  • Furnace air systems
  • Combustion air
  • Dust collection
  • Exhaust systems
  • Mine ventilation
  • Process cooling
  • Large air-handling systems

Instead of operating continuously at maximum speed, the drive can regulate motor speed according to airflow demand.

This can provide more flexible process control.


19. Compressor Applications

Large compressors can require hundreds or even thousands of kilowatts.

The drive can be suitable for compressor applications where the compressor manufacturer permits variable-speed operation.

Potential applications include:

  • Process gas
  • Industrial compressed air
  • Gas handling
  • Chemical processing
  • Petrochemical processes
  • Large industrial compressor packages

Compressor applications should be carefully evaluated because the permissible speed range and torque characteristics are specific to the compressor design.


20. Conveyor Applications

Large conveyors can require very high motor power.

Examples include:

  • Mining conveyors
  • Ore conveyors
  • Bulk-material conveyors
  • Cement conveyors
  • Port material-handling systems
  • Long-distance belt conveyors

The drive can provide controlled acceleration rather than immediately applying full motor torque.

This can reduce mechanical shock and help protect:

  • Belts
  • Gearboxes
  • Couplings
  • Shafts
  • Bearings
  • Conveyor structures

21. Crusher Applications

Large crushers often have high starting torque and substantial power requirements.

The drive can provide controlled motor starting and speed management.

Potential applications include:

  • Primary crushing
  • Secondary crushing
  • Mineral processing
  • Aggregate processing
  • Mining
  • Heavy material processing

The actual torque requirements should always be checked before final sizing.


22. Grinding Mills

Large grinding mills can require very substantial motor power.

The drive can provide:

  • Controlled acceleration
  • Adjustable speed
  • Motor torque control
  • Process integration
  • Diagnostic monitoring

Typical equipment includes:

  • Grinding mills
  • Ball mills
  • Cement mills
  • Mineral-processing mills
  • Heavy material-processing equipment

23. Steel and Heavy Manufacturing

Large steel-processing machines can contain high-power motors.

A drive in this class can be considered for applications involving:

  • Large process lines
  • Material handling
  • Cooling equipment
  • Large fans
  • Pumps
  • Rolling-related auxiliary equipment
  • Heavy production machinery

The main benefit is the ability to control motor speed and torque rather than relying exclusively on fixed-speed motor operation.


24. Cement and Mining Applications

The model is particularly relevant to heavy industrial sectors.

Mining and cement facilities frequently use large motors for:

  • Conveyors
  • Crushers
  • Mills
  • Fans
  • Pumps
  • Material handling
  • Ventilation

These applications can benefit from high-power variable-speed control.

The rugged industrial construction and high-current capacity make this type of drive suitable for large plant equipment.


25. Main Product Advantages

Advantage Practical benefit
1,400 kW Normal Duty Suitable for very large industrial motors
1,120 kW Heavy Duty Supports demanding load conditions
1,500 kW Light Duty Provides additional capacity for suitable loads
690 VAC Appropriate for high-power motor systems
1,400 A Handles very high motor current
Frame 10 Large industrial power architecture
Forced-air cooling Suitable for high thermal loads
Type 12/IP54 Enclosed industrial configuration
800 mm depth Designed for substantial MCC-style installation
Embedded EtherNet/IP Networked automation capability
Enhanced LCD Convenient local operation and diagnostics
Full numeric interface Easier parameter entry and commissioning
Filtered configuration Supports electrical-noise management
DC terminals Provides additional DC-bus connection flexibility
Variable-speed operation Improves process flexibility
Controlled acceleration Can reduce mechanical shock
High-power capacity Suitable for major process equipment

26. Energy Efficiency Advantages

Variable frequency control can provide significant energy benefits in suitable applications.

This is especially true for centrifugal pumps and fans.

The relationship between speed and energy consumption means that reducing motor speed can significantly reduce power consumption in many variable-torque applications.

However, actual savings depend on the complete system.

Factors include:

  • Motor efficiency
  • Pump or fan efficiency
  • System resistance
  • Required flow
  • Required pressure
  • Operating hours
  • Speed range
  • Process demand
  • Mechanical transmission losses

The drive itself does not guarantee a particular energy saving.

The saving comes from operating the motor and driven equipment at a more appropriate operating point.


27. Mechanical Advantages

A large motor can place considerable mechanical stress on the driven machine during starting.

A variable frequency drive can provide controlled acceleration.

This can help reduce sudden mechanical loading.

Potential benefits include:

  • Reduced starting shock
  • Smoother conveyor starting
  • Reduced belt stress
  • Reduced coupling stress
  • Reduced gearbox shock
  • Improved process synchronization
  • Better speed regulation

For large machinery, these mechanical benefits can be very important.


28. Automation Advantages

The embedded EtherNet/IP capability makes the drive suitable for networked industrial automation.

A centralized control system can monitor the drive and issue operating commands.

For example, the automation system can manage:

  • Start
  • Stop
  • Speed reference
  • Direction
  • Fault reset
  • Status monitoring
  • Alarm monitoring
  • Diagnostic information

This allows the drive to become part of the overall production-control system rather than operating as an isolated motor controller.


29. Maintenance Advantages

A large industrial drive represents a significant plant investment.

Maintenance should therefore be planned rather than performed only after a failure.

Recommended inspection areas include:

Maintenance area Purpose
Cooling fans Confirm adequate airflow
Air passages Prevent thermal problems
Power connections Check electrical integrity
Grounding Maintain safe operation
Cabinet interior Detect contamination
Network cables Maintain communication
Fault history Identify recurring problems
Alarm history Identify developing issues
Mechanical components Detect abnormal conditions
Environmental conditions Maintain suitable operating conditions

Regular inspection can help identify problems before they develop into major production interruptions.


30. Installation Requirements

Because this is a 1.4 MW-class drive, installation should be carefully planned.

The electrical room needs adequate space for the drive cabinet and associated equipment.

Consideration should be given to:

  • Incoming power cables
  • Motor cables
  • Control cables
  • Communication cables
  • Grounding conductors
  • Ventilation
  • Maintenance access
  • Cabinet doors
  • Service clearance
  • Floor loading
  • Transportation route
  • Lifting equipment

The physical installation should never be designed using only the nominal cabinet depth.

The final mechanical drawing should be used to establish the complete installation envelope.


31. Motor Selection

The motor should be checked carefully before selecting this drive.

Motor parameter Required consideration
Motor voltage Must be compatible with 690 VAC drive class
Motor current Must be within the selected duty rating
Motor power Compare against LD/ND/HD ratings
Frequency Confirm required operating frequency
Speed Check minimum and maximum speed
Torque Check starting and continuous torque
Overload Determine required overload
Acceleration Establish required ramp time
Deceleration Establish stopping requirements
Inertia Important for large rotating equipment
Duty cycle Select appropriate drive duty
Motor insulation Check suitability for VFD operation
Cable length Evaluate electrical effects
Environment Confirm temperature and contamination limits

The motor’s nameplate current is particularly important.

A drive should not be selected simply because its kW rating appears larger than the motor’s kW rating.


32. Five Same-Series / Related Models

The following models are useful for comparison within the same PowerFlex 755 family and related high-power configurations.

Model Voltage Current Light Duty Normal Duty Heavy Duty Frame Typical use
20G11JF1K4JN4NNNNN 690 VAC 1,400 A 1,500 kW 1,400 kW 1,120 kW 10 Very large 690 V motors
20G11JF1K0JN4NNNNN 690 VAC 1,040 A class 1,100 kW class 1,000 kW class 900 kW class 10 Large 690 V motors
20G11JF1K5JN4NNNNN 690 VAC High-current class Higher than 1.4 MW class Higher-power configuration Application dependent 10 Higher-capacity systems
20G11JE1K4JN4NNNNN 600 VAC 1,430 A 1,500 HP 1,400 HP 1,250 HP 10 Large 600 V motors
20G11JD1K4JN4NNNNN 480 VAC 1,420 A 1,350 HP 1,250 HP 1,000 HP 10 Large 480 V motors

The first two are especially useful when comparing different power capacities within the same 690 V platform.

The 480 V and 600 V versions are useful when the motor voltage is different.


33. Five Same-Brand Popular/Representative Models

Model Series Voltage class Normal Duty rating Current class Frame Typical application
20G11JF1K4JN4NNNNN PowerFlex 755 690 VAC 1,400 kW 1,400 A 10 Very large industrial motors
20G11JF1K0JN4NNNNN PowerFlex 755 690 VAC 1,000 kW class 1,040 A class 10 Large pumps and fans
20G11JD1K4JN4NNNNN PowerFlex 755 480 VAC 1,250 HP 1,420 A 10 Large 480 V motors
20G11JE1K4JN4NNNNN PowerFlex 755 600 VAC 1,400 HP 1,430 A 10 Large 600 V motors
20G11JC1K4JN4NNNNN PowerFlex 755 400 V class 800 kW 1,465 A 10 Large lower-voltage motors

These models illustrate how the PowerFlex 755 family covers different industrial motor voltage classes.

The appropriate model should be selected according to motor voltage first, followed by current and duty requirements.


34. Comparison with 20G11JF1K0JN4NNNNN

Parameter 20G11JF1K4JN4NNNNN 20G11JF1K0JN4NNNNN
Voltage 690 VAC 690 VAC
Current 1,400 A Approximately 1,040 A class
Light Duty 1,500 kW Approximately 1,100 kW class
Normal Duty 1,400 kW Approximately 1,000 kW class
Heavy Duty 1,120 kW Approximately 900 kW class
Frame 10 10
Cooling Forced air Forced air
Cabinet depth 800 mm 800 mm class
Enclosure Type 12/IP54 Type 12/IP54 class
Communication EtherNet/IP EtherNet/IP
Application Very large motor Large motor

The 1K4 model is the higher-capacity configuration.

If the motor is around 1 MW, a lower-current configuration may be more economical.

If the motor approaches the upper end of the 690 V power range, the 1K4 configuration provides substantially more capacity.


35. Comparison with 480 V Version

Parameter 20G11JF1K4JN4NNNNN 20G11JD1K4JN4NNNNN
Voltage 690 VAC 480 VAC
Current 1,400 A 1,420 A
Light Duty 1,500 kW 1,350 HP
Normal Duty 1,400 kW 1,250 HP
Heavy Duty 1,120 kW 1,000 HP
Frame 10 10
Cooling Air cooled Air cooled
Cabinet depth 800 mm class 800 mm class
Main distinction 690 V system 480 V system

The two products can look similar from a mechanical perspective, but their electrical voltage classes are different.

The motor and plant distribution system therefore determine which version is appropriate.


36. Comparison with 600 V Version

Parameter 20G11JF1K4JN4NNNNN 20G11JE1K4JN4NNNNN
Voltage 690 VAC 600 VAC
Current 1,400 A 1,430 A
Light Duty 1,500 kW 1,500 HP
Normal Duty 1,400 kW 1,400 HP
Heavy Duty 1,120 kW 1,250 HP
Frame 10 10
Cooling Air cooled Air cooled
Cabinet depth 800 mm class 800 mm class
Application 690 V motor systems 600 V motor systems

Again, the motor voltage is a fundamental selection criterion.


37. Typical Equipment Compatibility

Equipment Suitability Reason
Large centrifugal pump Excellent Variable-speed control
Large cooling fan Excellent Variable airflow
Large industrial blower Excellent Adjustable speed
Large conveyor Excellent Controlled acceleration
Crusher Good High-power motor control
Grinding mill Good Speed and torque control
Compressor Good Requires application-specific verification
Cement machinery Excellent Large motor capacity
Mining equipment Excellent High-current capability
Steel equipment Good Large process motors
Small pump Poor match Drive is excessively large
Small fan Poor match Drive is excessively large

The product is most appropriate when the motor itself is large enough to justify a high-power Frame 10 installation.


38. Important Advantages for Large Pumps

For a large pump system, the main advantages include:

Variable flow control

The pump can operate at a speed corresponding to the process requirement.

Reduced throttling dependence

The process can often be controlled by changing motor speed rather than relying entirely on mechanical throttling.

Controlled starting

The motor can accelerate gradually.

Process integration

Operating information can be transferred to the automation system.

Large motor compatibility

The 690 VAC and 1,400 A configuration is suitable for large motor systems.


39. Important Advantages for Large Fans

For large fan systems, the main benefits include:

  • Adjustable airflow
  • Smooth starting
  • Reduced mechanical stress
  • Process control
  • Network integration
  • Potential energy savings

Fans can be particularly attractive variable-speed applications because their power requirement can change significantly with operating speed.


40. Important Advantages for Conveyors

For conveyors, the drive can provide controlled acceleration.

This is valuable for large belts because suddenly applying full motor torque can create substantial mechanical stress.

Potential benefits include:

  • Smoother belt starting
  • Reduced belt shock
  • Reduced gearbox stress
  • Improved material handling
  • Better speed coordination
  • Improved process control

41. Important Advantages for Heavy Machinery

Heavy machines frequently require a combination of high starting torque, controlled acceleration and continuous motor power.

The PowerFlex 755 architecture is suitable for this type of application because it combines:

  • High current capability
  • High motor power
  • Variable-speed operation
  • Network communication
  • Local diagnostics
  • Industrial enclosure construction

42. Electrical Room Planning

The physical installation should be considered at the beginning of the project.

The following should be evaluated:

Planning item Importance
Cabinet depth High
Cabinet width High
Cabinet height High
Weight (kg) High
Floor loading High
Cable entry High
Ventilation High
Maintenance clearance High
Lifting access High
Heat dissipation High
Grounding High
Communication wiring Medium/High

The 800 mm depth is only one part of the mechanical requirement.

The final equipment footprint should be established from the complete physical configuration.


43. Selection Recommendations

If the motor is approximately 700 kW, a lower-power configuration may be more appropriate.

If the motor is around 800–900 kW, a smaller high-power configuration can often be considered.

For approximately 1,000 kW, the 1K0-class configuration becomes a logical comparison.

For a motor around 1,200–1,400 kW under Normal Duty, the 20G11JF1K4JN4NNNNN becomes particularly relevant.

For a Heavy Duty application, however, the approximately 1,120 kW Heavy Duty limit must be considered.


44. Key Product Strengths at a Glance

Category Key characteristic
Power 1,400 kW Normal Duty
Heavy Duty 1,120 kW
Light Duty 1,500 kW
Voltage 690 VAC
Current 1,400 A
Frame 10
Cooling Forced air
Enclosure Type 12/IP54
Depth 800 mm
Communication Embedded EtherNet/IP
Interface Enhanced LCD/full numeric
Input AC with precharge and DC terminals
Filtering Filtered
Common-mode configuration Jumper installed
Dynamic braking None
Typical market Heavy industrial automation
Main loads Pumps, fans, conveyors, compressors, crushers and mills

45. Final Technical Specification Table

Category Detailed specification
Model 20G11JF1K4JN4NNNNN
Brand Allen-Bradley
Product family PowerFlex
Series PowerFlex 755
Product type High-power air-cooled AC drive
Voltage 690 VAC
Input Three-phase AC
Current 1,400 A
Light Duty 1,500 kW
Normal Duty 1,400 kW
Heavy Duty 1,120 kW
Frame Frame 10
Cooling Forced air
Enclosure Type 12
Protection IP54
Cabinet depth 800 mm
Cabinet construction MCC-style
Input configuration AC input with precharge and DC terminals
Communication Embedded EtherNet/IP
Filtering Filtered
Common-mode capacitor jumper Installed
Dynamic braking None
Human interface Enhanced LCD
Keypad Full numeric
Dimensions Large Frame 10 MCC-style configuration; 800 mm nominal depth; final height/width depend on complete arrangement
Weight (kg) Configuration dependent; verify exact complete-unit/shipping weight
Main application Large industrial AC motor control
Pump application Large process and water pumps
Fan application Large industrial fans and blowers
Conveyor application Mining and bulk-material conveyors
Compressor application Large industrial compressors
Crusher application Mining and aggregate crushers
Mill application Grinding and processing mills
Main benefit High-power variable-speed control
Automation benefit Network integration through EtherNet/IP
Mechanical benefit Controlled acceleration and speed regulation
Energy benefit Potential energy reduction in suitable variable-torque applications
Main consideration Motor voltage/current/duty must be matched correctly
Related model 20G11JF1K0JN4NNNNN
Related high-power model 20G11JF1K4JN0NNNNN
480 V alternative 20G11JD1K4JN4NNNNN
600 V alternative 20G11JE1K4JN4NNNNN
400 V alternative 20G11JC1K4JN4NNNNN

46. Overall Assessment

The 20G11JF1K4JN4NNNNN is a high-capacity PowerFlex 755 variable frequency drive designed for large industrial motor systems.

Its combination of 690 VAC operation, 1,400 A current capacity and 1,400 kW Normal Duty rating makes it suitable for applications where conventional low-power drives are not adequate.

The 1,120 kW Heavy Duty rating is particularly important for demanding machinery with significant torque or overload requirements.

The 1,500 kW Light Duty rating provides additional capacity for suitable applications with less demanding overload characteristics.

The 800 mm deep MCC-style configuration gives the product a substantial physical footprint, so the electrical-room layout, floor loading, transportation route, ventilation and maintenance space should all be considered during project planning.

The forced-air cooling system is appropriate for the high thermal load associated with a drive of this capacity.

The Type 12/IP54 enclosure arrangement provides an industrially enclosed configuration, while the embedded EtherNet/IP capability allows the drive to be integrated into a modern automation system.

The enhanced LCD and full numeric interface are useful for commissioning, local operation and troubleshooting.

The lack of dynamic braking means that applications involving high-inertia loads or rapid deceleration should receive particular attention during system design.

For a large pump, fan, conveyor, compressor, crusher, mill or other major process machine, the model can provide significant advantages through adjustable motor speed, controlled acceleration and automation-system integration.

The most important selection rule is to match the drive to the actual motor voltage, nameplate current, power, duty cycle, torque requirement and operating speed range.

For a 690 VAC motor system approaching 1.4 MW under Normal Duty conditions, the 20G11JF1K4JN4NNNNN is a particularly strong fit.

For applications requiring Heavy Duty performance, the 1,120 kW Heavy Duty rating should be used as the key reference rather than the 1,500 kW Light Duty figure.

For physical installation, the 800 mm depth should be included in the cabinet layout, while the exact overall dimensions and weight (kg) should be confirmed against the final physical configuration before transportation, lifting and installation.



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