• Allen Bradley 20G11BF710JN4NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11BF710JN4NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11BF710JN4NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11BF710JN4NNNNN PowerFlex AC Drive
20G11BF710JN4NNNNN — Detailed Product Overview, Technical Parameters, Applications, Advantages and Related Models Note: You asked for English content, no web links, no source section, and no company-na……
Allen Bradley 20G11BF710JN4NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20G11BF710JN4NNNNN
  • PowerFlex AC Drive
  • USA
  • 2453 × 1200 × 800 mm
  • 1270kg
  • Xiamen, China
  • New & In Stock
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Allen Bradley 20G11BF710JN4NNNNN PowerFlex AC Drive

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

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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 20G11BF710JN4NNNNN PowerFlex AC Drive

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Allen Bradley 20G11BF710JN4NNNNN PowerFlex AC Drive

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20G11BF710JN4NNNNN — Detailed Product Overview, Technical Parameters, Applications, Advantages and Related Models

Note: You asked for English content, no web links, no source section, and no company-name information other than the requested brand. I have kept the presentation in that format. Some mechanical figures below are given as approximate engineering reference values and should be checked against the exact equipment drawing/nameplate before final installation or replacement.


1. Product Overview

The 20G11BF710JN4NNNNN is a high-power PowerFlex 755 AC drive designed for large industrial three-phase motor applications.

It is a 690 VAC, 710 A, Frame 9, air-cooled AC packaged drive intended for demanding variable-speed motor-control applications.

The model is particularly suited to large mechanical equipment where motor power is high and where controlled acceleration, controlled deceleration, variable-speed operation and integration with an industrial automation system are required.

Typical applications include large conveyors, mining equipment, pumps, fans, blowers, compressors, material-handling systems, cement equipment, aggregate processing equipment, water-treatment systems and large process machinery.

The JN4 configuration is important because it distinguishes this model from other 710 A versions with different catalog-number suffixes. In this configuration, the drive has filtered operation, CM jumper installed, no dynamic braking, and a door-mounted HIM configuration.


2. Brand and Product Series

Category Specification
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Product Group PowerFlex 750-Series
Product Type AC Packaged Drive
Model 20G11BF710JN4NNNNN
Construction Air Cooled
Frame Size Frame 9
Voltage Class 690 VAC
Current Rating 710 A
Enclosure Type 1
Protection Rating IP20
Cabinet Style 600 mm Deep MCC Style
Input AC Input with Precharge
DC Connection DC Terminals
Filtering Filtered
CM Configuration CM Jumper Installed
Dynamic Braking None
HIM Door-Mounted HIM
HIM Protection IP54 / NEMA 12 class

3. Product Identification

Item Specification
Catalog Number 20G11BF710JN4NNNNN
Series PowerFlex 755
Application Variable-Speed AC Motor Control
Input Voltage 690 VAC
Input Phase 3 Phase
Rated Current 710 A
Frame 9
Cooling Air Cooled / Forced Air
Input Type AC Input with Precharge
DC Terminals Yes
Filtering Filtered
CM Jumper Installed
Dynamic Braking None
Local Operator Interface Door-Mounted HIM
HIM Enclosure Rating IP54 / NEMA 12
Main Enclosure Type 1
Main Enclosure Rating IP20
Cabinet Depth Class 600 mm
Product Application Large Industrial Motor Control

The basic electrical identification of this model is therefore:

690 VAC / 3 Phase / 710 A / Frame 9 / Air Cooled / PowerFlex 755.


4. Main Technical Parameters

Parameter Specification
Model 20G11BF710JN4NNNNN
Product Series PowerFlex 755
Rated Voltage 690 VAC
Input Phase 3 Phase
Rated Current 710 A
Light-Duty Rating 800 kW
Normal-Duty Rating 710 kW
Heavy-Duty Rating 590 kW
Frame Size Frame 9
Cooling Forced Air / Air Cooled
Input Configuration AC Input with Precharge
DC Terminals Yes
Filtering Filtered
CM Jumper Installed
Dynamic Braking None
HIM Door Mounted
HIM Rating IP54 / NEMA 12
Main Enclosure Type 1
Main IP Rating IP20
Cabinet Depth 600 mm class
Motor Type Three-Phase AC Motor
Typical Application Large Industrial Machinery
Approx. Overall Height* ~2453 mm
Approx. Overall Width* ~1200 mm
Approx. Overall Depth* ~800 mm
Approx. Weight* ~1270 kg

*The dimensional and weight figures are engineering reference values for the large Frame 9 packaged configuration. The exact final dimensions and shipping/installed weight can vary with the complete enclosure and accessories and should be checked against the applicable mechanical drawing before installation.


5. Power Rating

The 20G11BF710JN4NNNNN is a high-power drive with different applicable power levels depending on duty classification.

Duty Classification Approximate Power Rating
Light Duty 800 kW
Normal Duty 710 kW
Heavy Duty 590 kW

The 710 kW normal-duty rating is particularly important because it places this model in the very high-power industrial drive category.

The 590 kW heavy-duty rating is more appropriate when the connected machine requires greater overload capability or operates under a more demanding torque profile.

The actual selection should be based primarily on motor current and duty requirements rather than simply matching the motor’s nominal kW value.


6. Voltage and Current

The drive is designed for a 690 VAC three-phase system.

Its rated current is 710 A.

This current level is intended for large industrial motors and large mechanical loads.

A drive at this current level is generally installed as part of a centralized electrical system rather than being mounted like a small wall-mounted VFD.

The 690 VAC class is commonly associated with high-power industrial motor systems because it provides a practical voltage level for large motors and plant distribution systems.


7. Frame and Mechanical Construction

The product uses a Frame 9 configuration.

Frame size is important because it affects the physical dimensions, cooling arrangement, installation requirements and power capacity.

The Frame 9 configuration is substantially larger than the frames used for small and medium-power drives.

The approximate reference dimensions are:

2453 mm high × 1200 mm wide × 800 mm deep.

The approximate equipment weight is:

1270 kg.

Because of this substantial size and weight, transportation and installation should be planned before the equipment arrives at the plant.


8. Dimensions and Weight

Mechanical Parameter Approximate Value
Height 2453 mm
Width 1200 mm
Depth 800 mm
Cabinet Depth Class 600 mm MCC style
Frame Frame 9
Cooling Air Cooled
Enclosure Type 1
IP Rating IP20
Approximate Weight 1270 kg
Installation Type Industrial Electrical Room / MCC Area

There is an important distinction between the 600 mm MCC-style classification and the overall physical depth of the complete packaged equipment.

The final cabinet arrangement, doors, control sections and associated equipment can affect the actual overall envelope.

For that reason, the final project drawing should be used for foundation, transportation and installation planning.


9. Door-Mounted HIM Configuration

One of the notable differences between the JN4 configuration and simpler configurations is the operator interface.

The 20G11BF710JN4NNNNN uses a door-mounted HIM.

This provides a convenient local interface for operating and monitoring the drive.

The operator interface can be useful for:

  • Viewing drive status.
  • Checking faults.
  • Reviewing warnings.
  • Adjusting operating parameters.
  • Monitoring motor operation.
  • Performing commissioning tasks.
  • Troubleshooting the drive.

The door-mounted arrangement is particularly useful in large electrical cabinets because maintenance personnel can access operating information without needing to open the main enclosure.


10. HIM Protection

The door-mounted HIM configuration is associated with an IP54 / NEMA 12 class interface arrangement.

This is useful for industrial environments where the operator interface requires greater environmental protection than the internal electronics.

The main drive enclosure itself remains a separate consideration.

The cabinet is identified as Type 1 / IP20, while the door-mounted operator interface provides its own higher protection level.


11. Filtered Configuration

The model includes a filtered configuration.

Filtering is an important consideration in variable-frequency drive installations because fast switching of power electronics can produce electromagnetic disturbances.

A properly engineered installation should consider:

  • Grounding.
  • Bonding.
  • Motor cable construction.
  • Cable routing.
  • Shielding.
  • Cabinet layout.
  • Motor-frame grounding.
  • Control-cable separation.

The filter should therefore be considered as one component of the complete EMC design rather than as an isolated solution.


12. CM Jumper Installed

The model is configured with the CM jumper installed.

The common-mode configuration can affect the relationship between the drive’s internal electrical reference and the grounding system.

This is particularly important in high-power installations.

The CM configuration should not be changed casually during replacement or commissioning.

When replacing an existing drive, the configuration of the replacement should be compared with the original system design.


13. Dynamic Braking

The specified configuration has:

Dynamic Braking: None.

This means the catalog configuration does not include a dynamic braking option.

If the machine requires rapid deceleration or the mechanical system produces substantial regenerative energy, the braking requirement should be evaluated separately.

Applications that may require special consideration include:

  • High-inertia conveyors.
  • Large rotating equipment.
  • Rapid stopping machinery.
  • Certain hoisting applications.
  • Equipment with frequent acceleration/deceleration cycles.

The absence of dynamic braking does not mean the drive cannot decelerate the motor.

It means that the specified configuration does not include a dedicated dynamic-braking arrangement.


14. Product Introduction

The PowerFlex 755 family is designed for demanding industrial motor-control applications.

The 20G11BF710JN4NNNNN represents a large-capacity configuration intended for motors that require very high current and power.

Its main purpose is to convert fixed-frequency industrial electrical power into controlled variable-frequency output for a large AC motor.

This allows the motor to operate according to the requirements of the machine rather than simply running continuously at the utility frequency.

The result is a flexible motor-control system suitable for large industrial processes.


15. Basic Operating Principle

The general power flow can be represented as:

690 VAC Three-Phase Supply

AC Input / Precharge

DC Bus

Power Switching Section

Variable-Frequency AC Output

Large Three-Phase Motor

Mechanical Load

The controller determines the required operating condition.

The drive then controls the motor’s electrical output to achieve the desired speed and torque.

This approach is especially useful when the mechanical process changes continuously.


16. Typical Applications

The 20G11BF710JN4NNNNN is suited to large industrial equipment.

Typical applications include:

  • Large belt conveyors.
  • Mining conveyors.
  • Ore-handling equipment.
  • Cement equipment.
  • Aggregate-processing machinery.
  • Large pumps.
  • Large fans.
  • Large blowers.
  • Compressors.
  • Material-handling equipment.
  • Industrial process machinery.
  • Large water-treatment equipment.
  • Industrial ventilation systems.

17. Conveyor Applications

Large conveyors can have significant inertia.

Starting a large loaded conveyor can place considerable stress on:

  • Motor shafts.
  • Gearboxes.
  • Couplings.
  • Conveyor belts.
  • Bearings.
  • Mechanical supports.

Variable-speed control allows the motor to accelerate in a controlled manner.

This can reduce sudden mechanical loading.

The drive can also provide adjustable conveyor speed.

For example:

Low Material Flow → Lower Conveyor Speed

High Material Flow → Higher Conveyor Speed

This makes the drive useful not only for motor control but also for production-rate management.


18. Mining Applications

Mining operations frequently use large electric motors.

Possible applications include:

  • Long-distance conveyors.
  • Ore conveyors.
  • Transfer conveyors.
  • Large ventilation fans.
  • Process pumps.
  • Material-handling equipment.
  • Processing machinery.

Mining equipment can experience heavy loads and large inertia.

The high current capacity of the drive makes it suitable for applications where a smaller drive would not provide sufficient electrical capacity.

Environmental conditions must still be considered carefully.

Dust, vibration, temperature and ventilation can have a significant effect on equipment reliability.


19. Cement Industry Applications

Large cement plants contain many high-power motors.

The drive can be considered for:

  • Large process fans.
  • Material conveyors.
  • Cooling equipment.
  • Pumps.
  • Blowers.
  • Material-handling equipment.

Controlled motor speed can help synchronize equipment with the production process.

For example, conveyor speed can be coordinated with upstream and downstream material flow.

Large fans can also be adjusted according to process requirements.


20. Aggregate Processing Applications

Aggregate plants often require high-power motors for moving and processing bulk materials.

Potential applications include:

  • Feed conveyors.
  • Transfer conveyors.
  • Process fans.
  • Large pumps.
  • Material-handling machinery.

The ability to control acceleration is especially useful where the equipment contains substantial mechanical inertia.


21. Pump Applications

Large pumps can consume substantial electrical power.

A variable-frequency drive allows the motor speed to be adjusted according to process requirements.

Potential applications include:

  • Raw-water pumping.
  • Industrial water pumping.
  • Cooling-water systems.
  • Wastewater pumping.
  • Process-water circulation.
  • Large pumping stations.

For a properly designed variable-torque pump system, reducing motor speed can significantly reduce the required mechanical power.

The actual energy benefit depends on the pump curve and system operating conditions.


22. Fan Applications

Large industrial fans can also benefit from variable-speed control.

Typical applications include:

  • Furnace fans.
  • Combustion-air fans.
  • Process ventilation.
  • Exhaust systems.
  • Dust-collection systems.
  • Cooling systems.

Instead of operating continuously at full speed, the fan can be adjusted according to the required airflow.

This can improve process control and may reduce unnecessary energy consumption.


23. Blower Applications

Large blowers are common in:

  • Wastewater treatment.
  • Industrial aeration.
  • Pneumatic systems.
  • Process-air systems.
  • Combustion systems.

The drive can adjust blower speed according to the required air volume.

This is particularly useful when demand varies throughout the production cycle.


24. Compressor Applications

Large compressors may require high motor current and controlled acceleration.

The drive can be considered for suitable compressor applications where variable-speed operation is supported by the compressor design.

Potential applications include:

  • Industrial compressed air.
  • Process gas.
  • Manufacturing facilities.
  • Large utility systems.
  • Process machinery.

Compressor selection should pay particular attention to starting torque, acceleration time, operating speed and overload requirements.


25. Water and Wastewater Applications

The drive can be considered for large pumps and blowers in water-related systems.

Typical equipment includes:

  • Raw-water pumps.
  • Transfer pumps.
  • Wastewater pumps.
  • Aeration blowers.
  • Cooling pumps.
  • Process pumps.

Variable-speed control can help match equipment output with changing process demand.


26. Material-Handling Applications

Large material-handling systems often use high-power motors.

The drive can be used for:

  • Belt conveyors.
  • Bulk-material conveyors.
  • Transfer systems.
  • Processing lines.
  • Large industrial handling equipment.

Controlled acceleration and deceleration can help reduce mechanical stress on the equipment.


27. Main Product Advantages

27.1 710 A High-Current Capacity

The 710 A current rating is the central feature of this model.

It allows the drive to handle very large motors and high-power industrial machinery.

This makes it appropriate for applications that are beyond the capacity of smaller variable-frequency drives.


27.2 690 VAC Industrial Voltage

The 690 VAC rating makes the drive suitable for high-power industrial motor systems.

This voltage class is commonly associated with large motors and centralized industrial electrical distribution.


27.3 High Normal-Duty Capacity

The approximately 710 kW normal-duty rating provides considerable capacity for continuous industrial operation.

This is particularly useful for:

  • Large fans.
  • Large pumps.
  • Conveyors.
  • Blowers.
  • Process machinery.

27.4 High Heavy-Duty Capacity

The approximately 590 kW heavy-duty rating gives the drive substantial capability for demanding loads.

This is important where the motor experiences:

  • Higher starting torque.
  • Heavy acceleration.
  • High inertia.
  • Repeated load changes.
  • Temporary overload conditions.

27.5 Door-Mounted Operator Interface

The JN4 configuration provides a convenient local operator interface.

This is particularly useful during commissioning and maintenance.

Technicians can access drive information without having to work directly inside the main electrical cabinet.


27.6 Filtered Electrical Configuration

The filtered configuration provides an additional level of electromagnetic compatibility consideration.

This is useful for complex industrial plants containing large numbers of motors, drives, controllers and communication systems.


27.7 Air-Cooled Architecture

The air-cooled arrangement avoids the need for a dedicated liquid-cooling system.

For an appropriately designed electrical room, this can provide a practical cooling solution for a high-power drive.


27.8 Industrial Automation Integration

The PowerFlex 755 architecture is designed for integration into industrial automation systems.

This allows the drive to participate in a larger control strategy.


28. Advantages in Production Automation

A typical automated arrangement can be:

Sensor

PLC / Controller

Drive

Motor

Machine

The process controller can adjust the motor speed according to:

  • Flow.
  • Pressure.
  • Material rate.
  • Temperature.
  • Level.
  • Production demand.
  • Machine synchronization.

This allows the drive to become an active part of the production process.


29. Advantages in Energy Management

Variable-speed operation can provide opportunities for energy savings.

This is particularly significant in variable-torque applications such as:

  • Pumps.
  • Fans.
  • Blowers.

If a process requires less output, reducing motor speed can reduce the power required by the machine.

The actual energy-saving result depends on the mechanical system.

A drive should therefore be evaluated based on real operating data rather than assuming a fixed percentage of energy savings.


30. Advantages in Mechanical Protection

Controlled acceleration can help reduce mechanical shock.

This can be beneficial for:

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

Controlled deceleration can also help improve machine behavior.

However, the absence of dynamic braking means that applications requiring rapid controlled stopping should be evaluated carefully.


31. Advantages in Process Control

The drive provides a way to adjust motor speed according to process conditions.

This can be useful when production requirements change.

For example:

Process Condition Possible Motor Response
Low Material Flow Reduce speed
High Material Flow Increase speed
Low Pump Demand Reduce speed
High Pump Demand Increase speed
Low Air Demand Reduce fan speed
High Air Demand Increase fan speed

This type of control can provide better process flexibility than fixed-speed motor operation.


32. Maintenance Advantages

The operator interface can make commissioning and troubleshooting more convenient.

Maintenance personnel can use the local interface to check:

  • Drive status.
  • Faults.
  • Warnings.
  • Operating values.
  • Motor speed.
  • Current.
  • Command reference.
  • Parameter settings.

This can reduce the time needed to identify common operating problems.


33. Installation Considerations

Because the product weighs approximately 1270 kg, installation requires proper planning.

Important mechanical considerations include:

  • Floor loading.
  • Transportation route.
  • Lifting equipment.
  • Cabinet clearance.
  • Maintenance access.
  • Ventilation.
  • Cable entry.
  • Door clearance.

The equipment should be transported and positioned using equipment rated for the actual package weight.


34. Cooling Requirements

The drive is air cooled.

Large air-cooled drives require substantial airflow.

The installation should provide:

  • Adequate ventilation.
  • Sufficient air circulation.
  • Appropriate ambient temperature.
  • Heat removal.
  • Clean airflow.
  • Regular fan inspection.

Dust accumulation should be minimized.

Blocked airflow can increase internal temperature and accelerate component aging.


35. Electrical Installation Considerations

Electrical Parameter Consideration
Supply 690 VAC three phase
Current 710 A
Input AC input with precharge
DC Connection DC terminals
Grounding Proper industrial grounding required
EMC Proper grounding and cable routing
Motor Cable Correctly sized VFD-rated cable
Protection Correct upstream protection
Isolation Suitable disconnecting arrangement
Short-Circuit Rating Must match installation requirements
Motor Must be compatible with drive output

At 710 A, power-cable selection and electrical protection become major engineering considerations.


36. Environmental Considerations

The drive is intended for an appropriate industrial electrical environment.

The installation should consider:

  • Ambient temperature.
  • Humidity.
  • Dust.
  • Vibration.
  • Air quality.
  • Corrosive atmosphere.
  • Altitude.
  • Cooling conditions.

If the environment is harsh, additional enclosure or environmental protection may be necessary.


37. Preventive Maintenance

Maintenance Item Recommended Inspection
Cooling Fans Check operation
Airflow Check for blockage
Cabinet Inspect for dust
Power Terminals Check condition
Cable Connections Check for looseness
Grounding Check grounding
Motor Cable Inspect insulation
HIM Check display and operation
Drive Parameters Verify configuration
Fault History Review recurring faults
Ventilation Check room conditions
Environment Check temperature and contamination

Preventive maintenance is especially important because a high-power drive may control a machine that is critical to plant production.


38. Five Recommended Models from the Same Series or Closely Related Range

The following models are useful comparison choices within the same PowerFlex 755 high-power range.

Model Voltage Current LD Rating ND Rating HD Rating Frame Cooling Approx. Dimensions Approx. Weight
20G11BF590JN4NNNNN 690 VAC 590 A 630 kW 560 kW 450 kW 9 Air ~2453 × 1200 × 800 mm ~1270 kg
20G11BF650JN4NNNNN 690 VAC 650 A 710 kW 630 kW 500 kW 9 Air ~2453 × 1200 × 800 mm ~1270 kg
20G11BF710JN4NNNNN 690 VAC 710 A 800 kW 710 kW 590 kW 9 Air ~2453 × 1200 × 800 mm ~1270 kg
20G11BF765JN4NNNNN 690 VAC 765 A Higher-power class Higher-power class Higher-power class 9 Air ~2453 × 1200 × 800 mm class ~1270 kg class
20G11BF1K4JN4NNNNN 690 VAC 1400 A 1500 kW 1400 kW 1120 kW 10 Forced Air Large MCC Package Large-package weight

The 590 A and 650 A versions are useful when the motor requirement is lower.

The 765 A version provides additional current margin.

The 1400 A configuration represents a much larger high-power class and would only be appropriate for substantially larger motors.


39. Five Related 710 A Configurations

When the application requires approximately the same 710 A current capacity but different catalog configurations, these models are useful for comparison.

Model Voltage Current Frame Cooling Filtering CM Configuration Braking HIM Configuration
20G11BF710AN0NNNNN 690 VAC 710 A 9 Air Filtered Configuration-specific None Basic/Blank
20G11BF710AN2NNNNN 690 VAC 710 A 9 Air Filtered Alternate configuration None Alternate
20G11BF710JN0NNNNN 690 VAC 710 A 9 Air Filtered CM Jumper Installed None Alternate
20G11BF710JN2NNNNN 690 VAC 710 A 9 Air Filtered CM Jumper Installed None Alternate
20G11BF710JN4NNNNN 690 VAC 710 A 9 Air Filtered CM Jumper Installed None Door Mounted HIM

The JN4 version is especially useful where a local door-mounted operator interface is desired.


40. Five Same-Brand High-Power Models

Model Product Series Voltage Current ND Rating HD Rating Frame Cooling Approx. Weight
20G11BF590JN4NNNNN PowerFlex 755 690 VAC 590 A 560 kW 450 kW 9 Air ~1270 kg
20G11BF650JN4NNNNN PowerFlex 755 690 VAC 650 A 630 kW 500 kW 9 Air ~1270 kg
20G11BF710JN4NNNNN PowerFlex 755 690 VAC 710 A 710 kW 590 kW 9 Air ~1270 kg
20G11BF765JN4NNNNN PowerFlex 755 690 VAC 765 A Higher-power class Higher-power class 9 Air ~1270 kg class
20G11BF1K4JN4NNNNN PowerFlex 755 690 VAC 1400 A 1400 kW 1120 kW 10 Forced Air Large-package weight

These models provide a useful range for comparing high-power industrial motor-control requirements.


41. Current Capacity Comparison

Parameter 590 A 650 A 710 A 765 A 1400 A
Voltage 690 VAC 690 VAC 690 VAC 690 VAC 690 VAC
Current 590 A 650 A 710 A 765 A 1400 A
Light Duty 630 kW 710 kW 800 kW Higher 1500 kW
Normal Duty 560 kW 630 kW 710 kW Higher 1400 kW
Heavy Duty 450 kW 500 kW 590 kW Higher 1120 kW
Frame 9 9 9 9 10
Cooling Air Air Air Air Forced Air
Main Enclosure IP20 / Type 1 IP20 / Type 1 IP20 / Type 1 IP20 / Type 1 IP20 / Type 1
Cabinet Depth Class 600 mm 600 mm 600 mm 600 mm 600 mm class
Approx. Height ~2453 mm ~2453 mm ~2453 mm ~2453 mm Large MCC
Approx. Width ~1200 mm ~1200 mm ~1200 mm ~1200 mm Large MCC
Approx. Depth ~800 mm ~800 mm ~800 mm ~800 mm Large MCC
Approx. Weight ~1270 kg ~1270 kg ~1270 kg ~1270 kg class Large-package weight

42. Application Selection Table

Application Suitable Comparison Model Main Consideration
Large Water Pump 20G11BF590JN4NNNNN Lower high-power current requirement
Large Industrial Fan 20G11BF650JN4NNNNN Variable-torque operation
Large Conveyor 20G11BF710JN4NNNNN High current and high motor power
Mining Conveyor 20G11BF710JN4NNNNN Large motor and high inertia
Heavy Conveyor 20G11BF765JN4NNNNN Additional current capacity
Large Compressor 20G11BF765JN4NNNNN Higher motor capacity
Very Large Process Equipment 20G11BF1K4JN4NNNNN Extremely high current
Large Pumping Station 20G11BF650JN4NNNNN Variable-speed pumping
Large Ventilation Fan 20G11BF710JN4NNNNN High-power variable-speed control

43. Why Choose the 20G11BF710JN4NNNNN?

The model occupies an important position in the 690 VAC high-power drive range.

The 590 A version is suitable when the motor current is lower.

The 650 A version provides additional capacity.

The 710 A version provides a further increase in current capacity while maintaining the same general Frame 9 architecture.

The 765 A version can be considered when additional current margin is required.

The much larger 1400 A model belongs to a significantly higher power class and would normally be selected only for very large motors.

Therefore, when the actual motor requirement is close to the 710 A range and a local door-mounted operator interface is desirable, the 20G11BF710JN4NNNNN is a logical configuration to evaluate.


44. Important Configuration Difference: JN4

The JN4 portion of the model number should not be ignored.

Compared with other 710 A catalog numbers, the JN4 configuration identifies a particular combination of:

  • Filtered operation.
  • CM jumper installed.
  • No dynamic braking.
  • Door-mounted operator interface.
  • Higher-protection local HIM configuration.

This is important for replacement applications.

A drive with the same voltage and current rating is not necessarily a direct replacement if its HIM, common-mode configuration, filtering or other options are different.


45. Selection Factors Before Purchase or Replacement

Selection Factor What Should Be Checked
Motor Voltage Confirm 690 VAC motor compatibility
Motor Current Confirm actual full-load current
Motor Power Check motor kW
Duty Determine LD / ND / HD requirement
Overload Confirm required overload
Starting Torque Evaluate machine starting requirements
Load Inertia Determine mechanical inertia
Speed Range Confirm required minimum and maximum speed
Acceleration Determine required acceleration time
Deceleration Determine stopping requirement
Braking Confirm whether braking equipment is required
Motor Cable Check cable type and length
EMC Check grounding and filtering requirements
Environment Check temperature and contamination
Cooling Verify electrical-room ventilation
Physical Space Verify cabinet dimensions
Floor Loading Verify capacity for approximately 1270 kg
Operator Interface Confirm door-mounted HIM requirement
CM Configuration Confirm CM jumper requirement
Input Configuration Confirm AC input with precharge

46. Overall Advantages

The principal advantages of the 20G11BF710JN4NNNNN can be summarized as follows:

  1. 710 A high-current capability for large AC motors.
  2. 690 VAC operation suitable for high-power industrial electrical systems.
  3. Approximately 710 kW normal-duty capacity for large continuous-duty applications.
  4. Approximately 590 kW heavy-duty capacity for demanding motor loads.
  5. Frame 9 construction suitable for large industrial installations.
  6. Air-cooled architecture for practical industrial cooling.
  7. Filtered configuration for improved EMC system design.
  8. CM jumper installed as part of the specified configuration.
  9. Door-mounted HIM for convenient local operation and maintenance.
  10. IP54 / NEMA 12 class HIM protection for the operator interface.
  11. Industrial automation compatibility for integration with larger control systems.
  12. Controlled acceleration and speed regulation for large mechanical equipment.

47. Complete Technical Summary

Category Specification
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Product Group PowerFlex 750-Series
Model 20G11BF710JN4NNNNN
Product Type 755 AC Packaged Drive
Voltage 690 VAC
Phase 3 Phase
Current 710 A
Light Duty 800 kW
Normal Duty 710 kW
Heavy Duty 590 kW
Frame 9
Cooling Air Cooled / Forced Air
Input AC Input with Precharge
DC Terminals Yes
Filtering Filtered
CM Jumper Installed
Dynamic Braking None
HIM Door Mounted
HIM Protection IP54 / NEMA 12
Main Enclosure Type 1
Main IP Rating IP20
Cabinet Style 600 mm Deep MCC Style
Approx. Height 2453 mm
Approx. Width 1200 mm
Approx. Depth 800 mm
Approx. Weight 1270 kg
Primary Applications Large conveyors, pumps, fans, blowers, compressors, mining, cement, water and process equipment

48. Final Assessment

The 20G11BF710JN4NNNNN is a high-power industrial AC drive designed for large three-phase motor applications.

Its 690 VAC voltage class and 710 A current rating make it suitable for very large motors and heavy industrial machinery.

Its approximately 800 kW light-duty, 710 kW normal-duty and 590 kW heavy-duty ratings provide a broad operating range for large industrial applications.

The Frame 9 air-cooled construction is appropriate for centralized industrial electrical installations.

The filtered configuration and installed CM jumper provide a defined electrical configuration, while the door-mounted HIM makes local operation, monitoring and maintenance more convenient.

The model is particularly well suited to large conveyors, mining machinery, cement and aggregate equipment, large pumps, industrial fans, blowers, compressors, material-handling systems and other high-power process machinery.

From a practical selection standpoint, the most important specifications are:

690 VAC — 3 Phase — 710 A — 800 kW LD — 710 kW ND — 590 kW HD — Frame 9 — Air Cooled — Filtered — CM Jumper Installed — No Dynamic Braking — Door-Mounted HIM — IP20 / Type 1 — 600 mm Deep MCC Style — approximately 2453 × 1200 × 800 mm — approximately 1270 kg.

For replacement work, the complete catalog number 20G11BF710JN4NNNNN should be matched rather than selecting another 710 A drive solely on the basis of voltage and current. The JN4 configuration, HIM arrangement, filtering, CM jumper configuration, braking configuration, enclosure and mechanical arrangement should all be considered.



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