• Allen Bradley 20G11NE022JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11NE022JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11NE022JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11NE022JA0NNNNN PowerFlex AC Drive
20G11NE022JA0NNNNN Product Description, Technical Parameters, Applications and Advantages 1. Product Overview The 20G11NE022JA0NNNNN is an industrial PowerFlex 755 AC variable frequency drive designed f……
Allen Bradley 20G11NE022JA0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20G11NE022JA0NNNNN
  • PowerFlex AC Drive
  • USA
  • 609 × 365 × 333 mm
  • 13.6kg
  • Xiamen, China
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Allen Bradley 20G11NE022JA0NNNNN 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.

Allen Bradley 20G11NE022JA0NNNNN 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 20G11NE022JA0NNNNN 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 20G11NE022JA0NNNNN 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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20G11NE022JA0NNNNN Product Description, Technical Parameters, Applications and Advantages

1. Product Overview

The 20G11NE022JA0NNNNN is an industrial PowerFlex 755 AC variable frequency drive designed for three-phase motor control in 600 VAC-class electrical systems.

It is a medium-power air-cooled drive with a continuous output rating of 22 A, corresponding to approximately 20 HP for normal-duty operation and 15 HP for heavy-duty operation.

The unit is configured as an open-type drive intended for installation inside an appropriate electrical cabinet or control enclosure.

The drive uses a Frame 3 mechanical configuration and forced-air cooling. Its configuration includes an EMC filter, a dynamic-braking transistor, an AC input arrangement with DC terminals, and an embedded Ethernet/IP interface.

The model is especially appropriate for industrial machines where adjustable motor speed, controlled acceleration and deceleration, centralized automation, motor diagnostics, and integration with an industrial control system are required.


2. Brand and Product Series

Item Description
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Catalog Family 20G
Product Type AC Variable Frequency Drive
Application Class Industrial Motor Control
Cooling Forced Air
Voltage Class 600 VAC
Frame Frame 3

The 20G11NE022JA0NNNNN belongs to the PowerFlex 755 series.

The PowerFlex 755 family is designed for industrial applications requiring more flexibility and control capability than a basic general-purpose variable frequency drive.

It is commonly associated with applications involving conveyors, pumps, fans, blowers, material handling, production machinery, process equipment, and other variable-speed motor applications.


3. Complete Model

Parameter Specification
Model 20G11NE022JA0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Drive Type AC Variable Frequency Drive
Voltage Class 600 VAC
Input Three-phase AC
Output Three-phase AC
Continuous Output Current 22 A
Normal-Duty Rating 20 HP
Heavy-Duty Rating 15 HP
Normal-Duty Power Approximately 15 kW
Heavy-Duty Power Approximately 11 kW
Frame Size Frame 3
Cooling Forced Air
Enclosure IP20/IP00, NEMA/UL Open Type
Input Configuration AC Input with DC Terminals
EMC Configuration Filtered
CM Jumper Installed
Dynamic Braking DB Transistor
HIM Blank / No HIM
Ethernet/IP Embedded
Product Weight Approximately 13.6 kg
Weight (kg) Approx. 13.6 kg
Approximate Package Dimensions Approximately 609 × 365 × 333 mm

The basic electrical configuration of the model is 600 VAC, three-phase, 22 A, 20 HP normal duty, 15 HP heavy duty, Frame 3, forced air, filtered, with a dynamic-braking transistor and no local HIM.


4. Product Introduction

The 20G11NE022JA0NNNNN is designed to regulate the speed, torque, acceleration, and deceleration of three-phase AC motors.

Instead of operating a motor only at its fixed line frequency, the drive generates a controlled output waveform that allows motor speed to be adjusted according to the requirements of the machine.

This makes the drive suitable for production equipment where motor speed changes during different stages of operation.

For example, a conveyor may need a low speed during loading, a higher speed during transportation, and controlled deceleration when approaching a stopping position.

A pump may need to operate at different speeds according to process demand.

A fan may need to run at reduced speed during periods of lower airflow demand.

A material-handling machine may require smooth acceleration to prevent mechanical shock.

The drive provides the electrical interface between the industrial power supply, the automation system, and the motor.


5. Electrical Specifications

Electrical Parameter Specification
Model 20G11NE022JA0NNNNN
Voltage Class 600 VAC
Input Phase 3 Phase
Output Phase 3 Phase
Output Current 22 A
Normal-Duty Current 22 A
Normal-Duty Rating 20 HP
Heavy-Duty Rating 15 HP
Normal-Duty Power Approx. 15 kW
Heavy-Duty Power Approx. 11 kW
Input Type AC Input with DC Terminals
Cooling Forced Air
Frame 3
Dynamic Braking DB Transistor
EMC Filtering Filtered
CM Jumper Installed
Local HIM None / Blank

The catalog configuration identifies the drive as a 600 VAC, three-phase, 22 A unit rated at 20 HP normal duty and 15 HP heavy duty.


6. 600 VAC Electrical Class

One of the most important characteristics of this model is its 600 VAC class.

This means the drive is intended for an electrical system compatible with its specified voltage class.

It should not be selected solely by horsepower.

The actual motor nameplate voltage and current must be considered.

For a proper installation, the following should be checked:

Selection Item Importance
Incoming Voltage Critical
Number of Phases Critical
Motor Voltage Critical
Motor Full-Load Current Critical
Motor Horsepower Important
Motor Frequency Important
Application Duty Critical
Overload Requirement Critical
Acceleration Requirement Important
Deceleration Requirement Important
Braking Requirement Important

For final sizing, motor current is generally more useful than horsepower alone.


7. 22 Amp Output Rating

The drive has a 22 A output rating.

This makes it suitable for medium-capacity industrial motors.

The 22 A rating places the unit between smaller 600 VAC models and larger 600 VAC models in the same family.

The neighboring PowerFlex 755 600 VAC catalog range includes models around 17 A, 22 A, 27 A, 32 A, 41 A, and higher current ratings.

This makes the 22 A model a useful selection when a smaller 17 A drive is insufficient but a larger 27 A drive is unnecessary.


8. 20 HP Normal-Duty Rating

The normal-duty rating is approximately 20 HP.

This makes the drive suitable for a wide range of general industrial applications.

Typical normal-duty loads include:

  • Standard conveyors
  • Pumps
  • Fans
  • Blowers
  • Feeders
  • Production machinery
  • Material-handling equipment
  • General process machinery

The exact suitability depends on motor current, overload conditions, ambient temperature, acceleration requirements, and the mechanical load.


9. 15 HP Heavy-Duty Rating

The heavy-duty rating is approximately 15 HP.

Heavy-duty applications generally involve higher overload demand or more severe mechanical loading.

Examples may include:

  • Heavy conveyors
  • Mixers
  • Feeders
  • High-inertia machinery
  • Material-handling systems
  • Machinery with frequent acceleration
  • Machinery with frequent speed changes

When a motor is being selected for a demanding application, the motor’s full-load current and required overload capability should be compared with the drive’s applicable heavy-duty rating.


10. Frame 3 Construction

The model uses a Frame 3 construction.

Frame size is important because it influences:

  • Physical dimensions
  • Mounting arrangement
  • Cooling arrangement
  • Cabinet space
  • Cable access
  • Service clearance
  • Replacement planning
  • Installation layout

A larger electrical rating does not simply mean a larger current rating; it can also require a different mechanical frame.

Therefore, replacing the drive with a higher-current model may require changes to the cabinet or mounting arrangement.


11. Mechanical Dimensions and Weight

The drive should be considered a substantial industrial cabinet-mounted component.

The approximate product weight is:

13.6 kg

A practical package reference is approximately:

609 mm × 365 mm × 333 mm

These package dimensions should not be confused with the actual drive-body dimensions.

The packaging envelope includes protective packaging and therefore should not be used directly for a precision cabinet cutout.

Mechanical Parameter Approximate Value
Model 20G11NE022JA0NNNNN
Frame 3
Product Construction Open Type
Cooling Forced Air
Product Weight Approx. 13.6 kg
Weight (kg) Approx. 13.6 kg
Approx. Package Length 609 mm
Approx. Package Width 365 mm
Approx. Package Height 333 mm
Approx. Package Envelope 609 × 365 × 333 mm
Mounting Cabinet / Panel
Installation Orientation According to installation requirements
Cabinet Protection Required for open-type construction

For an actual mechanical drawing, mounting holes, clearances, and exact drive dimensions should be checked against the relevant hardware revision.


12. Cooling System

The 20G11NE022JA0NNNNN uses forced-air cooling.

During operation, the power semiconductor devices generate heat.

The cooling system removes this heat from the drive.

Good cabinet design is therefore important.

The enclosure should provide adequate:

  • Air circulation
  • Ventilation
  • Heat dissipation
  • Clearance
  • Fan access
  • Service access

If several heat-generating devices are installed in the same cabinet, their combined thermal load must be considered.


13. Open-Type Construction

The drive uses an IP20/IP00, NEMA/UL Open Type configuration.

This means the drive itself is not intended to provide complete protection against environmental conditions such as water, dust, oil, or other contaminants.

A suitable electrical enclosure is normally required.

The enclosure should be selected according to the environment.

For example:

Environment Consideration
Clean Electrical Room Standard protected cabinet
Factory Floor Enclosure protection recommended
Dusty Area Filtered enclosure
Wet Area Higher enclosure protection
Oil Mist Area Sealed or appropriately protected enclosure
Corrosive Area Environmental protection required
High Temperature Thermal analysis required

14. Embedded Ethernet/IP

The model includes an embedded Ethernet/IP interface.

This is an important feature for modern industrial automation systems.

It allows the drive to participate in an Ethernet-based control architecture without necessarily requiring a separate external communication module for basic Ethernet/IP integration.

Typical information exchanged between a controller and drive can include:

  • Speed reference
  • Start command
  • Stop command
  • Direction
  • Drive status
  • Output frequency
  • Output current
  • Fault information
  • Alarm information
  • Feedback information

This can simplify the architecture of an automated production system.


15. No Local HIM Configuration

The model is configured as Blank / No HIM.

HIM refers to the human interface module used for local drive interaction.

A no-HIM configuration can be useful when the drive is intended to be controlled from:

  • PLC
  • HMI
  • SCADA
  • Industrial Ethernet
  • Central control station
  • Machine controller

This configuration can help keep the drive installation clean when local operator control is not required.


16. EMC Filter

The model is supplied in a filtered configuration.

EMC is important in industrial systems because variable frequency drives use high-frequency switching to control the motor.

The installation should also pay attention to:

  • Motor cable routing
  • Grounding
  • Shielding
  • Cabinet bonding
  • Cable length
  • Separation of control and power cables
  • Communication cable routing

The filter is therefore one component of a complete electromagnetic-compatibility strategy.


17. Dynamic-Braking Transistor

The model includes a dynamic-braking transistor.

This is particularly useful when the motor and load need controlled deceleration.

During deceleration, a rotating motor can return energy to the drive.

This regenerative energy can increase the DC-bus voltage.

A braking resistor can be used to dissipate this excess energy.

The braking transistor controls the connection of the braking resistor to the DC bus.

This feature can be useful for:

  • High-inertia conveyors
  • Rapid stopping systems
  • Rollers
  • Material handling
  • Hoists and similar motion applications where appropriately rated equipment is used
  • Machines with frequent stop/start cycles

The braking resistor itself must be selected according to the actual application.


18. Product Applications

The 20G11NE022JA0NNNNN can be used in many industrial applications.

Application Typical Requirement Suitability
Conveyor Variable speed Excellent
Pump Flow control Excellent
Fan Airflow control Excellent
Blower Variable airflow Excellent
Feeder Controlled material flow Excellent
Packaging Machine Speed coordination Very Good
Material Handling Controlled movement Excellent
Production Line Motor synchronization Excellent
Mixer Variable speed Good
Process Machinery Adjustable motor speed Very Good
General Machinery Speed and torque control Excellent

19. Conveyor Applications

Conveyors often require variable speed.

For example, a production line may use different speeds during:

  • Startup
  • Normal production
  • Product changeover
  • Inspection
  • Shutdown
  • Maintenance

The drive can gradually accelerate the motor instead of applying the full operating condition immediately.

This can reduce mechanical shock on belts, chains, couplings, gearboxes, and conveyor structures.

For conveyors with high inertia, the dynamic-braking function can also be useful.


20. Pump Applications

Pumps are often required to operate at different flow rates.

A variable frequency drive can adjust motor speed to match the process requirement.

Possible applications include:

  • Process circulation
  • Cooling systems
  • Water transfer
  • Industrial fluid systems
  • Utility pumping
  • Process supply

Instead of operating the pump continuously at one fixed speed, the drive allows the motor operating point to be adjusted.


21. Fan and Blower Applications

Fans and blowers frequently experience variable demand.

The drive can be used to control the motor speed according to the required airflow.

Typical applications include:

  • Industrial ventilation
  • Exhaust systems
  • Cooling systems
  • Air-handling equipment
  • Process ventilation
  • Machine cooling

This allows the machine designer to use adjustable-speed operation instead of relying only on fixed-speed operation.


22. Material-Handling Applications

Material-handling equipment frequently requires controlled motion.

The drive can be used for:

  • Transfer conveyors
  • Feed conveyors
  • Rollers
  • Product transport
  • Material feeders
  • Automated handling machinery

The ability to control acceleration and deceleration is particularly useful when fragile products or mechanically sensitive equipment are involved.


23. Packaging Applications

Packaging machinery often requires coordinated movement.

The drive can control motors used for:

  • Product feeding
  • Conveyor sections
  • Rollers
  • Material movement
  • Auxiliary mechanisms
  • Machine sections

When integrated into a larger automation system, the drive can receive speed and operating commands from the machine controller.


24. Process Machinery

Process machinery may need different operating speeds depending on the production stage.

The drive can support:

  • Startup speed
  • Normal production speed
  • Reduced-speed operation
  • Setup speed
  • Cleaning speed
  • Controlled stopping
  • Maintenance operation

This flexibility is one of the main reasons variable frequency drives are widely used in industrial machinery.


25. Product Advantages

25.1 22 A Output Capacity

The 22 A output rating provides a useful middle capacity in the 600 VAC PowerFlex 755 range.

It allows the designer to select a drive larger than the 17 A class without immediately moving to the 27 A class.


25.2 20 HP Normal Duty

The approximately 20 HP normal-duty rating makes the drive suitable for a wide range of medium-sized industrial equipment.


25.3 15 HP Heavy Duty

The approximately 15 HP heavy-duty rating provides additional flexibility for applications with more demanding loading requirements.


25.4 600 VAC Class

The 600 VAC class allows the drive to be used in compatible higher-voltage industrial systems.


25.5 Embedded Ethernet/IP

The embedded Ethernet/IP interface makes the drive well suited to centralized automation architectures.


25.6 Dynamic Braking

The built-in braking transistor makes the drive suitable for applications where controlled deceleration is important.


25.7 EMC Filtering

The filtered configuration provides an important component for installations where electromagnetic compatibility must be considered.


25.8 Forced-Air Cooling

Forced-air cooling provides active thermal management of the power electronics.


25.9 No-HIM Configuration

The blank/no-HIM configuration works well when local operation is not required.

The drive can instead be controlled through the automation system.


25.10 Broad Application Range

The drive is not limited to a single type of machine.

It can be applied to:

  • Conveyors
  • Pumps
  • Fans
  • Blowers
  • Feeders
  • Packaging systems
  • Material-handling equipment
  • Process machinery
  • General industrial machinery

26. Advantages for Machine Builders

For machine builders, the 20G11NE022JA0NNNNN offers a combination of electrical control, communication, braking, and industrial integration functions.

A machine can use the drive as the main motor-control element.

The basic architecture can be:

Machine Controller

Ethernet/IP Network

20G11NE022JA0NNNNN

Three-Phase AC Motor

Mechanical Load

This arrangement allows the motor to become part of the overall machine-control strategy.


27. Advantages for Automation Systems

The embedded communication capability is particularly useful when multiple drives are installed.

For example, a production line could contain:

  • Conveyor Drive
  • Feeder Drive
  • Pump Drive
  • Fan Drive
  • Auxiliary Drive

Each drive can operate as part of a coordinated automation system.

The controller can manage operating commands and monitor drive status.

This approach can reduce the need for separate hardwired control signals for every operating function.


28. Advantages for Maintenance

Drive-based motor control can provide useful operating information.

Depending on the configured system, maintenance personnel may be able to monitor:

  • Motor current
  • Output frequency
  • Drive status
  • Faults
  • Alarms
  • Operating state
  • Speed reference
  • Actual speed-related values

This information can help identify abnormal conditions more quickly.


29. Advantages for Mechanical Equipment

Controlled acceleration and deceleration can reduce mechanical stress.

Potentially affected components include:

  • Belts
  • Chains
  • Gearboxes
  • Couplings
  • Shafts
  • Bearings
  • Rollers
  • Conveyor frames
  • Machine structures

The actual reduction in mechanical stress depends on the machine design and drive settings.


30. Advantages for Production Lines

A variable-speed drive can make a production line more flexible.

For example, the same machine can potentially operate at:

  • Low speed for setup
  • Medium speed for standard production
  • Higher speed for high-output production
  • Low speed for inspection
  • Controlled speed during shutdown

This is considerably more flexible than a basic fixed-speed motor arrangement.


31. Motor Selection Considerations

Before selecting a motor for this drive, the motor nameplate should be reviewed.

Motor Parameter Requirement
Motor Voltage Compatible with drive
Motor Current Must be within drive capability
Motor Power Appropriate for selected duty
Motor Frequency Compatible with application
Motor Speed Appropriate for mechanical system
Motor Duty Appropriate for load
Motor Insulation Suitable for inverter operation
Starting Torque Suitable for machine
Load Torque Within drive/motor capability
Overload Requirement Within applicable rating

The most important practical selection factor is normally the motor’s actual current under the required application duty.


32. Same-Series Recommended Models

The following models are useful neighboring selections in the 600 VAC PowerFlex 755 family.

No. Model Voltage Output Current Normal Duty Heavy Duty Frame
1 20G11NE017JA0NNNNN 600 VAC 17 A 15 HP 10 HP 3
2 20G11NE022JA0NNNNN 600 VAC 22 A 20 HP 15 HP 3
3 20G11NE027JA0NNNNN 600 VAC 27 A 25 HP 20 HP 4
4 20G11NE032JA0NNNNN 600 VAC 32 A 30 HP 25 HP 4
5 20G11NE041JA0NNNNN 600 VAC 41 A 40 HP 30 HP 5

The 600 VAC family includes these progressively higher current and horsepower selections.


33. Same-Series Mechanical and Electrical Comparison

Parameter 20G11NE017JA0NNNNN 20G11NE022JA0NNNNN 20G11NE027JA0NNNNN 20G11NE032JA0NNNNN 20G11NE041JA0NNNNN
Voltage 600 VAC 600 VAC 600 VAC 600 VAC 600 VAC
Output Current 17 A 22 A 27 A 32 A 41 A
Normal Duty 15 HP 20 HP 25 HP 30 HP 40 HP
Heavy Duty 10 HP 15 HP 20 HP 25 HP 30 HP
Cooling Forced Air Forced Air Forced Air Forced Air Forced Air
EMC Filter Yes Yes Yes Yes Yes
DB Transistor Yes Yes Yes Yes Yes
Enclosure Open Open Open Open Open
Frame 3 3 4 4 5
Weight Approx. 13 kg Approx. 13.6 kg Approx. 14–16 kg Approx. 18–20 kg Approx. 25 kg+

34. Five Related Models — Detailed Recommendation

20G11NE017JA0NNNNN

This model is a lower-current option in the same 600 VAC PowerFlex 755 family.

It is suitable when the motor’s current requirement is comfortably below the 22 A rating.

With approximately 17 A output capacity and 15 HP normal-duty capability, it can be a good choice for smaller industrial machines.

Its main advantage compared with the 22 A model is the lower power capacity when the application does not require the additional current.


20G11NE022JA0NNNNN

This is the main model discussed in this document.

It provides approximately 22 A output, 20 HP normal-duty capacity, and 15 HP heavy-duty capacity.

It is a practical middle selection for 600 VAC industrial motor applications.


20G11NE027JA0NNNNN

The 27 A model provides additional capacity above the 22 A model.

It is appropriate when the motor’s current demand approaches or exceeds the practical range of the 22 A drive.

It is useful for larger conveyors, pumps, fans, process machinery, and other industrial loads.


20G11NE032JA0NNNNN

The 32 A model provides another step upward in capacity.

It can be considered when the application requires approximately 30 HP normal-duty capability.

Because the mechanical frame changes as the drive size increases, cabinet dimensions should be reviewed carefully.


20G11NE041JA0NNNNN

The 41 A model is suitable for larger 600 VAC motors.

With approximately 40 HP normal-duty capability, it is intended for substantially larger machinery than the 22 A model.

It should be considered when the motor current and application requirements exceed the smaller Frame 3 selections.


35. Five Related Models from the Same Brand

For users who want alternatives within the broader product portfolio, the following are useful comparison models.

No. Model Series Voltage Class Current Class Typical Application Approx. Weight
1 25B-D017N104 PowerFlex 525 480 VAC class 17 A class Compact machinery Approx. 5–7 kg
2 25B-D023N104 PowerFlex 525 480 VAC class 23 A class General machinery Approx. 6–8 kg
3 20G11ND022JA0NNNNN PowerFlex 755 480 VAC class 22 A Industrial machinery Approx. 13–14 kg
4 20G11ND027JA0NNNNN PowerFlex 755 480 VAC class 27 A Industrial machinery Approx. 14–16 kg
5 20F11ND077AA0NNNNN PowerFlex 753 480 VAC class 77 A Larger industrial machinery Approx. 20 kg+

These models should be regarded as related alternatives rather than automatic replacements.

A change in voltage class, frame, current rating, enclosure arrangement, communication configuration, or motor duty can require changes to the overall system.


36. Same-Brand Comparison

Parameter 25B-D017N104 25B-D023N104 20G11ND022JA0NNNNN 20G11ND027JA0NNNNN 20F11ND077AA0NNNNN
Product Family PowerFlex PowerFlex PowerFlex PowerFlex PowerFlex
Series 525 525 755 755 753
Voltage Class 480 VAC 480 VAC 480 VAC 480 VAC 480 VAC
Output Capacity 17 A class 23 A class 22 A 27 A 77 A
Application Level Compact Compact/Medium Medium Medium/Large Large
Cooling Air Air Forced Air Forced Air Forced Air
Typical Use General machinery General machinery Industrial machinery Industrial machinery Large machinery
Approx. Weight ~5–7 kg ~6–8 kg ~13–14 kg ~14–16 kg ~20 kg+

37. Comparison with 480 VAC PowerFlex 755 Models

A particularly useful comparison is between the 600 VAC model and equivalent current-rated 480 VAC PowerFlex 755 models.

Parameter 20G11NE022JA0NNNNN 20G11ND022JA0NNNNN
Series PowerFlex 755 PowerFlex 755
Voltage Class 600 VAC 480 VAC
Output Current 22 A 22 A
Normal Duty 20 HP 15 HP
Heavy Duty 15 HP 10 HP
Cooling Forced Air Forced Air
Enclosure Open Type Open Type
Frame 3 2
EMC Filtered Filtered
Dynamic Braking DB Transistor DB Transistor
HIM Blank Blank
Main Difference Higher voltage class Lower voltage class

This comparison illustrates why the first part of a PowerFlex catalog number is important.

Two drives can have the same current rating but different voltage classes and horsepower ratings.


38. Product Advantages for Purchasing

From a purchasing perspective, the 20G11NE022JA0NNNNN provides a useful balance between capacity and physical size.

It is not the smallest drive in the family.

It is also not an oversized high-capacity unit.

For a 20 HP normal-duty 600 VAC application, it provides a direct and practical capacity match.

Purchasing teams should verify:

  • Exact catalog number
  • Voltage
  • Output current
  • Duty rating
  • Frame
  • Communication configuration
  • Braking configuration
  • HIM configuration
  • Enclosure requirements
  • Replacement compatibility

39. Product Advantages for System Integrators

System integrators can benefit from the combination of:

  • Embedded Ethernet/IP
  • Adjustable frequency operation
  • Dynamic braking
  • EMC filtering
  • 600 VAC operation
  • Forced-air cooling
  • Open-type cabinet installation
  • Multiple drive ratings within the same family

This provides a consistent approach when designing systems containing several motor sizes.


40. Product Advantages for Maintenance Departments

For maintenance departments, standardizing on a common drive family can simplify:

  • Training
  • Parameter management
  • Troubleshooting
  • Spare-parts planning
  • Replacement procedures
  • Commissioning
  • Preventive maintenance

If several machines use drives from the same family, maintenance personnel can become familiar with the common operating philosophy and diagnostic structure.


41. Installation Considerations

A proper installation should account for:

  1. Input voltage
  2. Input phase
  3. Motor voltage
  4. Motor current
  5. Motor cable
  6. Grounding
  7. Cabinet ventilation
  8. Heat generation
  9. Braking resistor requirements
  10. Communication wiring
  11. EMC installation
  12. Service clearance
  13. Mechanical mounting
  14. Environmental conditions
  15. Protective devices

The drive should be installed by personnel familiar with industrial electrical equipment.


42. Cabinet Design

Because the unit is an open-type drive, the cabinet becomes an important part of the complete installation.

The cabinet should provide:

  • Mechanical protection
  • Adequate airflow
  • Suitable temperature control
  • Protection against contamination
  • Correct cable entry
  • Proper grounding
  • Adequate service clearance

The approximately 13.6 kg drive weight should also be included in the cabinet mechanical-load calculation.


43. Dimensions and Weight Reference

Item Reference Value
Model 20G11NE022JA0NNNNN
Frame 3
Product Weight Approx. 13.6 kg
Weight (kg) Approx. 13.6 kg
Package Length Approx. 609 mm
Package Width Approx. 365 mm
Package Height Approx. 333 mm
Package Envelope Approx. 609 × 365 × 333 mm
Construction Open Type
Cooling Forced Air
Cabinet Installation Required

The package envelope is useful for transportation and storage planning.

For actual cabinet fabrication, the package size should not be substituted for the exact mounting dimensions.


44. Application Selection Table

Application Recommended Feature Reason
Conveyor Variable speed Flexible material movement
Heavy Conveyor Dynamic braking Controlled stopping
Pump Variable speed Process flow adjustment
Fan Variable speed Airflow adjustment
Blower Variable speed Process airflow control
Feeder Speed control Controlled material feed
Mixer Torque capability Load variation
Packaging Speed coordination Machine synchronization
Material Handling Acceleration control Smooth movement
Production Line Ethernet/IP Centralized automation
High-Inertia Machine Dynamic braking Controlled deceleration

45. Technical Parameter Summary

Category Parameter Specification
Identification Model 20G11NE022JA0NNNNN
Identification Brand Allen-Bradley
Identification Series PowerFlex 755
Identification Product Family PowerFlex
Product Type Drive AC Variable Frequency Drive
Electrical Voltage Class 600 VAC
Electrical Phase 3 Phase
Electrical Output Current 22 A
Electrical Normal Duty 20 HP
Electrical Heavy Duty 15 HP
Electrical Normal Duty Power Approx. 15 kW
Electrical Heavy Duty Power Approx. 11 kW
Input Input Type AC Input with DC Terminals
Cooling Cooling Type Forced Air
Mechanical Frame 3
Enclosure Type IP20/IP00 NEMA/UL Open
EMC Filtering Filtered
EMC CM Jumper Installed
Braking Dynamic Braking DB Transistor
Interface Ethernet/IP Embedded
Interface HIM Blank / No HIM
Mechanical Weight Approx. 13.6 kg
Mechanical Weight (kg) Approx. 13.6 kg
Logistics Package Dimensions Approx. 609 × 365 × 333 mm
Application Motor Control Variable Speed
Application Typical Loads Conveyors, pumps, fans, blowers, feeders, machinery

46. Same-Series Selection Table

Model Voltage Output Current Normal Duty Heavy Duty Frame Approx. Weight
20G11NE017JA0NNNNN 600 VAC 17 A 15 HP 10 HP 3 ~13 kg
20G11NE022JA0NNNNN 600 VAC 22 A 20 HP 15 HP 3 ~13.6 kg
20G11NE027JA0NNNNN 600 VAC 27 A 25 HP 20 HP 4 ~14–16 kg
20G11NE032JA0NNNNN 600 VAC 32 A 30 HP 25 HP 4 ~18–20 kg
20G11NE041JA0NNNNN 600 VAC 41 A 40 HP 30 HP 5 ~25 kg+

47. Same-Brand Model Selection Table

Model Series Voltage Current Typical Capacity Approx. Weight
25B-D017N104 PowerFlex 525 480 VAC class 17 A class Medium ~5–7 kg
25B-D023N104 PowerFlex 525 480 VAC class 23 A class Medium ~6–8 kg
20G11ND022JA0NNNNN PowerFlex 755 480 VAC 22 A 15 HP ND ~13–14 kg
20G11ND027JA0NNNNN PowerFlex 755 480 VAC 27 A 20 HP ND ~14–16 kg
20F11ND077AA0NNNNN PowerFlex 753 480 VAC 77 A Large ~20 kg+

48. Model Selection by Capacity

Motor Requirement Recommended Model
Around 15 HP normal duty 20G11NE017JA0NNNNN
Around 20 HP normal duty 20G11NE022JA0NNNNN
Around 25 HP normal duty 20G11NE027JA0NNNNN
Around 30 HP normal duty 20G11NE032JA0NNNNN
Around 40 HP normal duty 20G11NE041JA0NNNNN

These recommendations are for preliminary comparison.

The final selection should always be based on the motor’s nameplate current and actual load characteristics.


49. Model Selection by Function

Requirement Preferred Configuration
Standard variable speed PowerFlex 755
600 VAC motor system 600 VAC NE family
Around 20 HP normal duty 20G11NE022JA0NNNNN
Controlled stopping DB Transistor configuration
Ethernet-based automation Embedded Ethernet/IP
Cabinet installation Open-type configuration
EMC-conscious installation Filtered configuration
No local operator panel Blank / No HIM
Higher motor current Larger NE model
Lower motor current Smaller NE model

50. Overall Assessment

The 20G11NE022JA0NNNNN is a well-balanced medium-capacity industrial AC drive for a 600 VAC three-phase motor system.

Its combination of 22 A output current, 20 HP normal-duty capacity, 15 HP heavy-duty capacity, Frame 3 construction, forced-air cooling, embedded Ethernet/IP, EMC filtering, dynamic braking, and no-HIM configuration makes it suitable for a broad range of industrial automation applications.

It is particularly attractive when a machine requires centralized control rather than local manual operation.

The embedded Ethernet/IP interface supports integration into a modern industrial automation architecture.

The dynamic-braking transistor is valuable where the mechanical load has substantial inertia or where controlled stopping is required.

The filtered configuration is useful for installations where electromagnetic compatibility is an important consideration.

The open-type construction makes it suitable for integration into an appropriately designed electrical cabinet.


51. Main Advantages at a Glance

Advantage Practical Benefit
22 A Output Medium-capacity motor control
20 HP Normal Duty Suitable for general industrial machinery
15 HP Heavy Duty Supports more demanding load conditions
600 VAC Suitable for compatible high-voltage industrial systems
PowerFlex 755 Broad industrial application platform
Frame 3 Practical medium-size construction
Forced Air Active thermal management
Embedded Ethernet/IP Convenient automation integration
EMC Filter Supports EMC-conscious installations
DB Transistor Supports dynamic braking
No HIM Suitable for centralized control
Open Type Designed for cabinet integration
Variable Speed Flexible process operation
Controlled Acceleration Reduces mechanical shock
Controlled Deceleration Improves stopping control
Approx. 13.6 kg Manageable cabinet and logistics weight

52. Final Product Specification

Parameter Final Specification
Model 20G11NE022JA0NNNNN
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Product Type AC Variable Frequency Drive
Voltage 600 VAC
Input Three Phase
Output Three Phase
Output Current 22 A
Normal Duty 20 HP
Heavy Duty 15 HP
Normal Duty Power Approx. 15 kW
Heavy Duty Power Approx. 11 kW
Frame 3
Cooling Forced Air
Enclosure IP20/IP00 Open Type
Input Configuration AC Input with DC Terminals
EMC Filtered
CM Jumper Installed
Dynamic Braking DB Transistor
Ethernet/IP Embedded
HIM Blank / No HIM
Product Weight Approx. 13.6 kg
Weight (kg) Approx. 13.6 kg
Approx. Package Dimensions 609 × 365 × 333 mm
Main Applications Conveyors, pumps, fans, blowers, feeders, material handling, packaging and process machinery

53. Conclusion

The 20G11NE022JA0NNNNN is a 600 VAC, three-phase, 22 A PowerFlex 755 AC drive designed for medium-capacity industrial motor-control applications.

Its approximately 20 HP normal-duty and 15 HP heavy-duty ratings provide a useful combination for general industrial machinery.

The model is particularly suitable for applications where adjustable speed, controlled acceleration, controlled deceleration, industrial networking, and dynamic braking are important.

Its embedded Ethernet/IP capability makes it well suited to centralized automation systems.

Its DB transistor provides a useful foundation for dynamic-braking applications.

Its EMC-filtered configuration can help support an appropriately designed EMC installation.

Its blank/no-HIM configuration is convenient for machines where the operator interface is located elsewhere, such as on a control panel or HMI.

The Frame 3 mechanical design makes it a practical medium-capacity cabinet-mounted drive.

For physical planning, the product weight is approximately 13.6 kg, while the approximate package envelope is 609 × 365 × 333 mm. These package dimensions should be used for logistics and storage planning rather than precision cabinet fabrication.

For the closest same-series alternatives, the most useful comparison points are 20G11NE017JA0NNNNN, 20G11NE022JA0NNNNN, 20G11NE027JA0NNNNN, 20G11NE032JA0NNNNN, and 20G11NE041JA0NNNNN.

Among these models, the 20G11NE022JA0NNNNN occupies a useful middle position: it provides substantially more capacity than the 17 A model while remaining smaller than the higher-current 27 A, 32 A, and 41 A selections.

For final engineering selection, the most important checks are the actual motor nameplate current, motor voltage, required duty, overload profile, load inertia, acceleration and deceleration requirements, braking requirements, environmental conditions, cabinet temperature, communication requirements, and available installation space.



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