• Allen Bradley 20G11NE032AA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11NE032AA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11NE032AA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11NE032AA0NNNNN PowerFlex AC Drive
Allen-Bradley 20G11NE032AA0NNNNN Product Details and Technical Specification 1. Product Overview 20G11NE032AA0NNNNN is a PowerFlex 755 series AC variable frequency drive (VFD) designed for industrial th……
Allen Bradley 20G11NE032AA0NNNNN PowerFlex AC Drive
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  • 20G11NE032AA0NNNNN
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Allen-Bradley 20G11NE032AA0NNNNN Product Details and Technical Specification

1. Product Overview

20G11NE032AA0NNNNN is a PowerFlex 755 series AC variable frequency drive (VFD) designed for industrial three-phase motor control.

It belongs to the 600 VAC class and has an output current rating of approximately 32 A. In the normal-duty range, it is generally associated with a motor capacity of approximately 30 HP, while the heavy-duty rating is lower and is intended for applications with greater overload or torque requirements.

The drive is designed for applications where motor speed, acceleration, deceleration, torque, and operating status need to be controlled accurately.

Compared with a simple fixed-speed motor starter, this type of drive provides much greater flexibility. Motor speed can be adjusted according to the process requirement, and the motor can be accelerated and decelerated in a controlled manner.

The model is particularly suitable for industrial machinery, conveyors, pumps, fans, blowers, material-handling equipment, production lines, feeders, process equipment, and other applications requiring adjustable-speed motor control.


2. Brand and Product Series

Item Description
Model 20G11NE032AA0NNNNN
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Catalog Family 20G
Product Type AC Variable Frequency Drive
Main Function Three-phase AC motor speed and torque control
Voltage Class 600 VAC
Cooling Method Forced Air
Frame Frame 4 class
Installation Electrical cabinet / panel installation
Typical Application Industrial motor control

The 20G11NE032AA0NNNNN belongs to the PowerFlex 755 family and is positioned above the 22 A class in the same 600 VAC product range.

For applications where a 22 A drive is close to its operating limit, a 32 A model provides additional current capacity and can offer more selection flexibility.


3. Complete Model Identification

The complete catalog number is:

20G11NE032AA0NNNNN

The model number contains multiple configuration characters that define the electrical and functional arrangement of the drive.

For practical purchasing and replacement work, the complete catalog number should be retained rather than selecting a replacement based only on the first several characters.

Different suffix configurations can change functions such as:

  • Input arrangement
  • Enclosure configuration
  • Operator interface
  • Communication arrangement
  • EMC configuration
  • Braking capability
  • Control options

Therefore, the complete catalog number is important when replacing an existing drive.


4. Main Technical Parameters

Parameter Specification
Model 20G11NE032AA0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product Type AC Variable Frequency Drive
Voltage Class 600 VAC
Input Three-phase AC
Output Three-phase AC
Output Current 32 A
Normal-Duty Rating Approximately 30 HP
Heavy-Duty Rating Approximately 25 HP
Normal-Duty Power Approximately 22 kW
Heavy-Duty Power Approximately 18.5 kW
Frequency Control Variable Frequency
Cooling Forced Air
Frame Frame 4 class
Installation Cabinet / Panel
Construction Open-type industrial drive
Dynamic Braking Configuration dependent; verify complete suffix
EMC Configuration dependent
Communication PowerFlex 755 platform communication capability
Local HIM Configuration dependent
Approx. Product Weight Approximately 18–20 kg
Weight (kg) Approximately 18–20 kg
Approx. Mechanical Envelope Approximately 600 × 300 × 300 mm class
Typical Applications Conveyor, pump, fan, blower, feeder, machinery
Motor Type Three-phase AC motor

The 32 A current rating is the most important electrical characteristic when matching this drive to a motor.

For final engineering selection, motor nameplate current should be checked rather than selecting solely by horsepower.


5. 600 VAC Voltage Class

The 20G11NE032AA0NNNNN is intended for a 600 VAC-class industrial power system.

This makes it appropriate for industrial electrical systems where the available line voltage is compatible with the drive’s rated input range.

The voltage class is an important selection parameter.

A 480 VAC drive and a 600 VAC drive should not be treated as interchangeable simply because they have the same current rating.

When selecting this type of equipment, the following should be checked together:

Selection Parameter Importance
Incoming voltage Critical
Number of phases Critical
Motor voltage Critical
Motor current Critical
Motor horsepower Important
Motor frequency Important
Load type Critical
Duty cycle Critical
Overload requirement Critical
Acceleration time Important
Deceleration time Important
Braking requirement Important

6. 32 A Output Current

The drive has an approximately 32 A output current rating.

This places it in the medium-power range of the PowerFlex 755 600 VAC family.

The 32 A capacity makes the model useful for applications where a smaller drive may not provide enough current margin.

For example, if an application is close to the current limit of a 22 A model, moving to a 32 A model can provide a more appropriate selection, provided that the motor and duty requirements are compatible.

The actual motor full-load current should always be compared with the drive’s applicable current rating.


7. 30 HP Normal-Duty Rating

The model is generally associated with approximately 30 HP normal-duty operation.

Normal-duty applications typically have relatively predictable loading conditions and do not continuously demand severe overload performance.

Typical examples include:

  • Centrifugal pumps
  • Fans
  • Blowers
  • Conveyors
  • Standard material-handling equipment
  • General production machinery
  • Process equipment
  • Feeders

The actual application must still be evaluated based on current, torque, acceleration, inertia, and duty cycle.


8. Heavy-Duty Capability

For applications involving greater torque demand, repeated acceleration, or heavier loading, the heavy-duty rating becomes important.

The approximate heavy-duty capacity is around 25 HP, subject to the applicable drive rating and operating conditions.

Heavy-duty applications may include:

  • High-inertia conveyors
  • Heavily loaded feeders
  • Mixers
  • Material-handling machinery
  • Machinery with frequent starts and stops
  • Machinery requiring higher acceleration torque
  • Equipment with demanding deceleration requirements

The motor should be selected based on actual load characteristics rather than simply matching horsepower.


9. Power Conversion

The approximate power equivalents are:

Rating Approximate Power
Normal Duty 30 HP ≈ 22 kW
Heavy Duty 25 HP ≈ 18.5 kW
Output Current 32 A

The horsepower-to-kilowatt conversion is a mathematical equivalence.

The actual drive selection should be based primarily on electrical current and application duty.


10. Frame 4 Construction

The 32 A model is associated with a Frame 4 mechanical configuration.

Frame size affects:

  • Drive dimensions
  • Mounting arrangement
  • Cabinet layout
  • Cooling requirements
  • Cable access
  • Service clearance
  • Weight
  • Replacement compatibility

A Frame 4 drive should therefore not automatically be considered a drop-in replacement for a smaller Frame 3 drive.

Even when two drives have similar electrical functions, differences in physical frame size can require modifications to the electrical cabinet.


11. Dimensions and Weight

For planning purposes, the drive should be treated as a medium-size cabinet-mounted power electronic unit.

The approximate product weight is in the range of:

18–20 kg

The mechanical envelope is approximately in the 600 × 300 × 300 mm class, depending on the exact hardware configuration and installation arrangement.

Mechanical Parameter Approximate Value
Model 20G11NE032AA0NNNNN
Frame Frame 4
Product Type Open-type AC drive
Cooling Forced Air
Weight Approx. 18–20 kg
Weight (kg) Approx. 18–20 kg
Approx. Length ~600 mm class
Approx. Width ~300 mm class
Approx. Height ~300 mm class
Approx. Overall Envelope ~600 × 300 × 300 mm class
Mounting Cabinet / panel
Installation Vertical orientation normally preferred

Important: The above dimensions are suitable for preliminary space planning only. Exact mounting-hole locations and cabinet cutout dimensions should be taken from the applicable mechanical drawing for the specific hardware version before fabrication.


12. Forced-Air Cooling

The drive uses forced-air cooling to remove heat produced by its power electronics.

The cooling system is important because the power semiconductor section can generate significant heat during normal operation.

Cabinet design should therefore consider:

  • Ambient temperature
  • Internal cabinet temperature
  • Airflow
  • Ventilation
  • Fan operation
  • Clearance around the drive
  • Heat generated by other equipment
  • Cabinet orientation

Poor ventilation can increase the internal operating temperature and potentially reduce equipment reliability.


13. Open-Type Installation

The drive is intended for installation within an appropriate electrical enclosure rather than being used as a completely exposed field device.

The enclosure provides protection from:

  • Dust
  • Moisture
  • Mechanical impact
  • Oil contamination
  • Conductive particles
  • Accidental contact

The enclosure also provides a controlled environment for cooling and cable routing.


14. Variable Frequency Operation

The primary function of the drive is variable-frequency motor control.

A conventional fixed-speed motor connected directly to the power supply normally operates at a speed determined mainly by the motor design and supply frequency.

A VFD changes the electrical frequency supplied to the motor.

As a result, motor speed can be adjusted.

For example:

Low Frequency → Low Motor Speed

Medium Frequency → Medium Motor Speed

High Frequency → Higher Motor Speed

The actual motor speed is also influenced by motor characteristics and load conditions.


15. Controlled Acceleration

One of the major benefits of the drive is controlled acceleration.

Instead of applying a sudden full-speed command, the drive can gradually increase motor speed.

This can reduce mechanical shock on:

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

This feature is especially valuable in machinery with high mechanical inertia.


16. Controlled Deceleration

The drive can also provide controlled deceleration.

This is useful when a machine needs to slow down smoothly instead of stopping abruptly.

Typical applications include:

  • Conveyors
  • Rollers
  • Material-handling machines
  • Process equipment
  • Production lines
  • High-inertia machinery

Where the application produces significant regenerative energy during deceleration, an appropriate braking arrangement may be required.


17. Dynamic Braking

Dynamic braking is particularly useful for machinery that needs controlled stopping.

When a motor decelerates, energy can be returned to the drive’s DC bus.

If this energy becomes excessive, the DC-bus voltage can rise.

A braking system can dissipate the excess energy through an appropriately selected braking resistor.

This can be useful in:

  • High-inertia conveyors
  • Roll systems
  • Material handling
  • Rapid stopping applications
  • Machinery with frequent deceleration

The braking resistor must be properly selected for the actual machine.


18. Industrial Communication

The PowerFlex 755 platform is designed for integration with industrial automation systems.

Depending on the exact configuration, the drive can exchange operating and diagnostic information with the control system.

Typical information may include:

  • Start command
  • Stop command
  • Speed reference
  • Direction command
  • Output frequency
  • Motor current
  • Drive status
  • Fault status
  • Alarm information
  • Operating condition

This makes the drive suitable for centralized machine control.


19. Product Applications

The 20G11NE032AA0NNNNN can be applied to a broad range of industrial equipment.

Application Typical Function
Conveyor Variable-speed transportation
Pump Flow control
Fan Airflow control
Blower Process airflow
Feeder Controlled material feeding
Packaging Machine Speed coordination
Material Handling Controlled movement
Production Line Motor synchronization
Mixer Variable-speed operation
Process Equipment Adjustable motor operation
Machinery General-purpose motor control
High-Inertia Equipment Controlled acceleration/deceleration

20. Conveyor Applications

Conveyors are one of the most common applications for industrial VFDs.

A conveyor may need different operating speeds during:

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

Using a variable-speed drive allows the machine designer to select the operating speed according to production requirements.

The drive can also provide controlled acceleration, reducing sudden mechanical loading on the conveyor.


21. Pump Applications

The drive can be used to control pump motor speed.

This can be useful for:

  • Water circulation
  • Process fluids
  • Cooling systems
  • Industrial pumping
  • Fluid transfer
  • Process supply

Instead of running a pump continuously at full speed, the motor can be operated at a speed appropriate to the process.

For centrifugal pump applications, variable-speed operation can be especially useful when process demand changes.


22. Fan and Blower Applications

Fans and blowers often operate under changing process conditions.

The drive can adjust motor speed according to required airflow.

Typical applications include:

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

This can provide much greater operating flexibility than fixed-speed operation.


23. Material-Handling Applications

Material-handling systems often require smooth motor operation.

The drive can be used on:

  • Conveyors
  • Rollers
  • Feed systems
  • Transfer mechanisms
  • Material feeders
  • Automated handling equipment

Controlled acceleration and deceleration can help protect both the mechanical equipment and the transported product.


24. Packaging Applications

Packaging machinery frequently uses multiple motors operating at coordinated speeds.

A VFD can be used for:

  • Feed conveyors
  • Rollers
  • Product transportation
  • Auxiliary mechanisms
  • Material feeding
  • Machine sections

The drive can become part of the larger machine-control architecture.


25. Process Machinery

Industrial process machinery often requires different operating speeds at different stages.

For example:

Process Stage Possible Motor Requirement
Startup Low-speed controlled acceleration
Normal Operation Stable operating speed
Production Change Adjustable speed
Inspection Reduced speed
Cleaning Controlled low speed
Shutdown Controlled deceleration
Maintenance Low-speed operation

The flexibility of variable-speed operation makes the drive suitable for many types of process machinery.


26. Major Product Advantages

26.1 32 A Output Capacity

The 32 A output capacity provides a useful step above smaller models.

It can be selected when a 22 A model does not provide sufficient current capacity.


26.2 30 HP Normal-Duty Capability

The approximately 30 HP normal-duty rating makes the drive suitable for medium-sized industrial machinery.


26.3 600 VAC Class

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


26.4 PowerFlex 755 Platform

The PowerFlex 755 platform is intended for applications requiring a broader range of industrial motor-control functionality.

It is appropriate for applications where simple fixed-speed control is not sufficient.


26.5 Variable Speed

The drive allows motor speed to be adjusted according to process requirements.


26.6 Controlled Acceleration

Controlled acceleration can reduce mechanical shock during startup.


26.7 Controlled Deceleration

Controlled deceleration can provide smoother stopping and better machine behavior.


26.8 Dynamic Braking Capability

Where configured and properly applied, dynamic braking can improve stopping performance on high-inertia loads.


26.9 Industrial Automation Integration

The drive is suitable for integration into centralized industrial automation architectures.


26.10 Broad Application Range

The drive can be used on many types of industrial equipment rather than being limited to one particular machine type.


27. Advantages for Machine Builders

For machine builders, the drive provides a practical combination of motor control and automation functionality.

A typical system can be arranged as:

Industrial Controller

Industrial Network

20G11NE032AA0NNNNN

Three-Phase AC Motor

Mechanical Load

This structure allows motor operation to become part of the overall machine sequence.


28. Advantages for System Integrators

System integrators can benefit from using several drives from the same family.

For example, a production line may use:

  • One drive for a conveyor
  • One drive for a feeder
  • One drive for a pump
  • One drive for a fan
  • One drive for an auxiliary machine

Using drives from a common family can make system configuration and maintenance more consistent.


29. Advantages for Maintenance

A standardized drive platform can simplify maintenance activities.

Maintenance personnel can become familiar with:

  • Drive parameters
  • Fault handling
  • Operating status
  • Communication structure
  • Motor-control settings
  • Troubleshooting procedures
  • Replacement procedures

This can reduce the learning curve when multiple machines use related drive models.


30. Advantages for Mechanical Equipment

Controlled motor operation can help reduce sudden mechanical loading.

Potentially affected components include:

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

The actual improvement depends on the machine’s mechanical design and drive settings.


31. Motor Selection Requirements

The drive should be matched to the actual motor.

Motor Parameter Required Consideration
Motor Voltage Must match drive system
Motor Current Must remain within drive capability
Motor Power Appropriate for duty
Motor Frequency Compatible with drive
Motor Speed Suitable for machine
Motor Duty Suitable for application
Starting Torque Adequate
Load Torque Within system capability
Overload Within applicable drive rating
Insulation Suitable for inverter operation

The motor nameplate current is especially important.

A motor should not be selected simply because its horsepower appears to match the drive.


32. Five Same-Series or Closely Related Models

The following models are useful for comparison around the 32 A 600 VAC PowerFlex 755 range.

No. Model Voltage Output Current Normal Duty Heavy Duty Approx. Weight
1 20G11NE022AA0NNNNN 600 VAC 22 A 20 HP 15 HP ~13–14 kg
2 20G11NE032AA0NNNNN 600 VAC 32 A 30 HP 25 HP ~18–20 kg
3 20G11NE041AA0NNNNN 600 VAC 41 A 40 HP 30 HP ~25 kg+
4 20G11NE027AA0NNNNN 600 VAC 27 A 25 HP 20 HP ~14–16 kg
5 20G11NE017AA0NNNNN 600 VAC 17 A 15 HP 10 HP ~13 kg

These are primarily capacity-based comparison models.

The final suffix should always be checked before treating any catalog number as an exact replacement because configuration characters can affect the equipment arrangement.


33. Same-Series Comparison

Parameter 20G11NE017AA0NNNNN 20G11NE022AA0NNNNN 20G11NE027AA0NNNNN 20G11NE032AA0NNNNN 20G11NE041AA0NNNNN
Voltage Class 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
Frame 3 class 3 class 4 class 4 class 5 class
Weight ~13 kg ~13–14 kg ~14–16 kg ~18–20 kg ~25 kg+

34. Five Popular Related Models Under the Same Brand

For a broader comparison, the following models represent commonly encountered products within the same general drive portfolio.

No. Model Product Series Voltage Class Current Class Typical Application Approx. Weight
1 25B-D017N104 PowerFlex 525 480 VAC class 17 A class Compact machinery ~5–7 kg
2 25B-D023N104 PowerFlex 525 480 VAC class 23 A class General machinery ~6–8 kg
3 20G11ND022AA0NNNNN PowerFlex 755 480 VAC class 22 A Industrial machinery ~13–14 kg
4 20G11ND027AA0NNNNN PowerFlex 755 480 VAC class 27 A Industrial machinery ~14–16 kg
5 20F11ND077AA0NNNNN PowerFlex 753 480 VAC class 77 A Larger machinery ~20 kg+

These are useful comparison choices when evaluating different drive capacities or product families.

They should not be considered direct electrical replacements without checking voltage, current, motor rating, control method, communication requirements, physical dimensions, and configuration.


35. Broader Product Comparison

Parameter 25B-D017N104 25B-D023N104 20G11ND022AA0NNNNN 20G11ND027AA0NNNNN 20F11ND077AA0NNNNN
Product Family PowerFlex PowerFlex PowerFlex PowerFlex PowerFlex
Series 525 525 755 755 753
Voltage 480 VAC class 480 VAC class 480 VAC class 480 VAC class 480 VAC class
Current 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 Machinery Machinery Industrial Industrial Large industrial machinery
Approx. Weight ~5–7 kg ~6–8 kg ~13–14 kg ~14–16 kg ~20 kg+

36. 20G11NE032AA0NNNNN vs. 20G11NE022AA0NNNNN

These two models are especially useful to compare because they are close in the same product family.

Parameter 20G11NE022AA0NNNNN 20G11NE032AA0NNNNN
Voltage Class 600 VAC 600 VAC
Output Current 22 A 32 A
Normal Duty 20 HP 30 HP
Heavy Duty 15 HP 25 HP
Frame Frame 3 class Frame 4 class
Cooling Forced Air Forced Air
Application Medium industrial Medium-to-larger industrial
Approx. Weight ~13–14 kg ~18–20 kg
Cabinet Space Smaller Larger
Current Margin Lower Higher

The 32 A model is therefore appropriate when the 22 A class is not sufficient for the motor or load.

However, selecting the larger model only to obtain additional capacity can increase cabinet size, weight, cost, and thermal requirements.

The best selection is the smallest suitable model that meets the actual electrical and mechanical requirements.


37. 20G11NE032AA0NNNNN vs. 20G11NE041AA0NNNNN

Parameter 20G11NE032AA0NNNNN 20G11NE041AA0NNNNN
Voltage 600 VAC 600 VAC
Current 32 A 41 A
Normal Duty 30 HP 40 HP
Heavy Duty 25 HP 30 HP
Frame 4 class 5 class
Physical Size Medium Larger
Weight ~18–20 kg ~25 kg+
Application Medium machinery Larger machinery

The 32 A model provides a useful middle point before moving to the larger 41 A model.


38. Application Selection Guide

Machine Type Suitability of 20G11NE032AA0NNNNN
Standard Conveyor Excellent
Heavy Conveyor Very Good
Pump Excellent
Fan Excellent
Blower Excellent
Feeder Very Good
Packaging Machine Very Good
Material Handling Excellent
Mixer Good
Process Equipment Very Good
High-Inertia Machine Very Good with appropriate braking
Large Hoisting Application Requires detailed engineering
High-Overload Machine Verify heavy-duty current rating

39. Product Benefits in Practical Use

Adjustable Motor Speed

The drive allows the motor to operate at different speeds instead of being limited to one fixed operating speed.

Smooth Starting

The motor can accelerate progressively, reducing sudden mechanical stress.

Controlled Stopping

The motor can decelerate according to a defined stopping profile.

Better Process Control

Motor speed can be adjusted to meet changing production requirements.

Industrial Automation Integration

The drive can be incorporated into a larger control architecture.

Reduced Mechanical Shock

Controlled acceleration and deceleration can reduce sudden loading.

Flexible Machine Operation

Different operating speeds can be assigned to different stages of a production cycle.

Diagnostic Capability

The drive platform provides operating and fault information that can assist maintenance.


40. Recommended Installation Environment

The drive is best suited to a properly designed industrial electrical cabinet.

The installation environment should be evaluated for:

  • Ambient temperature
  • Humidity
  • Dust
  • Oil
  • Chemical contamination
  • Vibration
  • Electrical noise
  • Altitude
  • Cooling
  • Cabinet ventilation

The more severe the environment, the more attention should be given to cabinet protection and thermal management.


41. Cabinet Space Planning

For preliminary planning, the drive should be allocated a mechanical envelope in the approximate 600 × 300 × 300 mm class.

However, cabinet design should not use the approximate package envelope as the final mounting dimension.

The actual cabinet design should include:

  • Drive body dimensions
  • Mounting holes
  • Cable bending radius
  • Terminal access
  • Cooling clearance
  • Maintenance clearance
  • Adjacent equipment spacing
  • Fan access
  • Heat dissipation space

42. Weight Planning

The approximate drive weight is:

18–20 kg

This should be considered when designing:

  • Control cabinets
  • Mounting panels
  • Equipment frames
  • Shipping containers
  • Maintenance lifting arrangements
  • Cabinet transportation
Item Approximate Value
Model 20G11NE032AA0NNNNN
Product Weight 18–20 kg
Weight (kg) 18–20 kg
Mechanical Class Frame 4
Installation Cabinet / Panel
Cooling Forced Air

43. Electrical Selection Checklist

Before purchasing or installing the model, check the following:

Check Status to Verify
Supply voltage 600 VAC system compatible
Supply phase Three phase
Motor voltage Compatible
Motor current ≤ applicable drive rating
Motor HP Appropriate for duty
Duty type Normal or heavy duty
Overload Appropriate
Acceleration Appropriate
Deceleration Appropriate
Braking Required / not required
Motor cable Suitable
Grounding Correct
Cabinet Appropriate
Cooling Adequate
Communication Required protocol available
Mechanical dimensions Verified
Weight Cabinet structure suitable

44. Product Parameter Summary

Category Parameter Specification
Identification Model 20G11NE032AA0NNNNN
Identification Brand Allen-Bradley
Identification Series PowerFlex 755
Identification Product Family PowerFlex
Product Type AC Drive Variable Frequency Drive
Electrical Voltage 600 VAC
Electrical Phase 3 Phase
Electrical Output Current 32 A
Electrical Normal Duty 30 HP
Electrical Heavy Duty 25 HP
Electrical Normal Duty Power Approx. 22 kW
Electrical Heavy Duty Power Approx. 18.5 kW
Mechanical Frame Frame 4 class
Cooling Type Forced Air
Enclosure Construction Open Type
Installation Method Cabinet / Panel
Communication Industrial Network Configuration dependent
Braking Dynamic Braking Configuration dependent
EMC Filtering Configuration dependent
Weight Product Weight Approx. 18–20 kg
Weight Weight (kg) Approx. 18–20 kg
Dimensions Approx. Envelope ~600 × 300 × 300 mm class
Application Motor Control Variable Speed
Application Loads Conveyors, pumps, fans, blowers, feeders, machinery

45. Recommended Same-Series Models

Model Voltage Current Normal Duty Heavy Duty Frame Class Weight
20G11NE017AA0NNNNN 600 VAC 17 A 15 HP 10 HP 3 ~13 kg
20G11NE022AA0NNNNN 600 VAC 22 A 20 HP 15 HP 3 ~13–14 kg
20G11NE027AA0NNNNN 600 VAC 27 A 25 HP 20 HP 4 ~14–16 kg
20G11NE032AA0NNNNN 600 VAC 32 A 30 HP 25 HP 4 ~18–20 kg
20G11NE041AA0NNNNN 600 VAC 41 A 40 HP 30 HP 5 ~25 kg+

46. Recommended Same-Brand Models

Model Series Voltage Class Current Typical Capacity 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
20G11ND022AA0NNNNN PowerFlex 755 480 VAC class 22 A 15 HP ND class ~13–14 kg
20G11ND027AA0NNNNN PowerFlex 755 480 VAC class 27 A 20 HP ND class ~14–16 kg
20F11ND077AA0NNNNN PowerFlex 753 480 VAC class 77 A Large industrial ~20 kg+

47. Best Choice According to Motor Size

Approximate Motor Requirement Suggested Model
15 HP normal duty 20G11NE017AA0NNNNN
20 HP normal duty 20G11NE022AA0NNNNN
25 HP normal duty 20G11NE027AA0NNNNN
30 HP normal duty 20G11NE032AA0NNNNN
40 HP normal duty 20G11NE041AA0NNNNN

This table is intended for preliminary model selection.

The final choice should be made using motor full-load current, overload requirements, and actual machine load characteristics.


48. Main Advantages Summary

Advantage Description
32 A Output Suitable for medium-power industrial motors
30 HP Normal Duty Suitable for general industrial applications
25 HP Heavy Duty Provides greater application flexibility
600 VAC Class Suitable for compatible higher-voltage systems
PowerFlex 755 Industrial-oriented variable-speed platform
Frame 4 Medium mechanical construction
Forced Air Active cooling for power electronics
Variable Speed Adjustable motor operating speed
Controlled Acceleration Helps reduce mechanical shock
Controlled Deceleration Helps provide smoother stopping
Dynamic Braking Capability Useful for high-inertia applications when properly configured
Industrial Communication Suitable for centralized automation
Approx. 18–20 kg Important for cabinet and transportation planning
600 × 300 × 300 mm class Useful preliminary cabinet-space reference

49. Overall Product Assessment

The 20G11NE032AA0NNNNN is a medium-capacity industrial variable frequency drive designed for three-phase AC motor control in a 600 VAC-class system.

Its approximately 32 A output capacity and 30 HP normal-duty rating place it in a useful position for medium-sized industrial machinery.

Compared with a smaller 22 A model, it provides additional current capacity and a larger motor-power range.

Compared with a 41 A model, it offers a more compact and lower-capacity option for applications that do not require the additional current.

This makes the 32 A model a practical middle selection for equipment such as conveyors, pumps, fans, blowers, feeders, production machinery, and material-handling systems.

Its variable-speed capability allows the motor to operate according to process demand.

Controlled acceleration can reduce mechanical shock during startup.

Controlled deceleration can improve stopping performance.

For high-inertia applications, an appropriate dynamic-braking arrangement can provide additional control during deceleration.

The PowerFlex 755 platform is also suitable for integration into industrial automation systems where motor commands, status information, diagnostics, and process control need to be coordinated.


50. Final Technical Specification Table

Parameter 20G11NE032AA0NNNNN
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Product Type AC Variable Frequency Drive
Voltage Class 600 VAC
Input Three Phase AC
Output Three Phase AC
Output Current 32 A
Normal-Duty Rating 30 HP
Heavy-Duty Rating 25 HP
Normal-Duty Power Approx. 22 kW
Heavy-Duty Power Approx. 18.5 kW
Frame Frame 4 class
Cooling Forced Air
Construction Open Type
Installation Electrical Cabinet / Panel
Motor Control Variable Frequency / Variable Speed
Acceleration Adjustable
Deceleration Adjustable
Braking Configuration dependent
Communication Configuration dependent
Approx. Product Weight 18–20 kg
Weight (kg) 18–20 kg
Approx. Mechanical Envelope 600 × 300 × 300 mm class
Typical Applications Conveyors, pumps, fans, blowers, feeders, packaging, material handling and process machinery
Primary Advantage Medium-power 600 VAC industrial motor control with broad application flexibility

51. Conclusion

The 20G11NE032AA0NNNNN is a suitable choice when an industrial application requires a 600 VAC-class, three-phase variable frequency drive with approximately 32 A output capability.

Its approximately 30 HP normal-duty capacity makes it suitable for a wide range of medium-sized industrial machines, while its approximately 25 HP heavy-duty capability provides additional flexibility for more demanding applications.

The drive is particularly well suited to conveyors, pumps, fans, blowers, feeders, material-handling equipment, packaging machinery, and process equipment.

The biggest practical advantages are its higher current capacity compared with smaller models, adjustable motor speed, controlled acceleration and deceleration, industrial automation compatibility, and suitability for cabinet-mounted industrial applications.

For physical planning, the product should be treated as a Frame 4-class drive weighing approximately 18–20 kg, with a preliminary mechanical envelope in the 600 × 300 × 300 mm class. These values are intended for planning purposes; exact mounting dimensions should be confirmed before cabinet fabrication.

For model selection, the closest capacity alternatives are 20G11NE017AA0NNNNN, 20G11NE022AA0NNNNN, 20G11NE027AA0NNNNN, 20G11NE032AA0NNNNN, and 20G11NE041AA0NNNNN.

Among these, 20G11NE032AA0NNNNN is particularly suitable when a 22 A model is too small but a 41 A model would provide unnecessary additional capacity.

The final selection should always be based on the actual motor nameplate current, voltage, duty class, overload requirement, load torque, acceleration/deceleration requirements, braking requirements, ambient temperature, cabinet cooling, and available installation space.



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