Allen Bradley 20F11ND8P0JA0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20F11ND8P0JA0NNNNN
  • PowerFlex AC Drive
  • USA
  • 12.7 × 21.6 × 11.4 cm
  • 6.35kg
  • Xiamen, China
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Allen-Bradley 20F11ND8P0JA0NNNNN PowerFlex 753 AC Drive — Product Introduction, Specifications, Applications, Advantages and Related Models

The 20F11ND8P0JA0NNNNN is an AC variable frequency drive from the Allen-Bradley PowerFlex 753 series. It is designed for industrial motor speed control and is particularly suitable for general-purpose machine applications where reliable three-phase AC motor control, integrated I/O, dynamic braking capability and flexible control are required.

This model is a 480 VAC, three-phase, 8 A, Frame 2 PowerFlex 753 AC drive, with a normal-duty rating of approximately 5 HP / 3.7 kW. It uses forced-air cooling, has an open IP20/IP00 enclosure construction, includes embedded I/O, has an integrated dynamic-braking transistor, and is supplied without a Human Interface Module (HIM).

The model’s configuration can be summarized as follows: PowerFlex 753 + 480 VAC three-phase + 8 A + Frame 2 + filtered + CM jumper installed + dynamic-braking transistor + no HIM.


1. Product Overview

The 20F11ND8P0JA0NNNNN belongs to the PowerFlex 753 family of industrial AC drives. The series is positioned for applications that require more functionality and flexibility than a basic compact inverter, particularly where the drive needs to integrate into a larger automation system.

The drive is intended to regulate the speed, torque and operating characteristics of three-phase AC motors. By changing the output frequency and voltage supplied to the motor, it can provide controlled acceleration, deceleration and running speed instead of relying solely on direct-on-line motor starting.

The model has an 8 A output-current rating and a 5 HP normal-duty rating. Its 480 VAC three-phase input configuration makes it particularly suitable for industrial electrical systems commonly using 480 V three-phase power.

The unit uses forced-air cooling, which helps remove heat generated by the power electronics during continuous operation. This type of cooling is particularly useful in industrial control cabinets where the drive may operate for extended periods.

The drive also includes an internal dynamic-braking transistor. This is an important feature for applications where the motor and driven load need to decelerate more quickly or where regenerated energy needs to be handled through an external braking resistor arrangement.


2. Brand and Product Series

Item Information
Brand Allen-Bradley
Product family PowerFlex
Product series PowerFlex 753
Product type AC Variable Frequency Drive / AC Drive
Catalog number 20F11ND8P0JA0NNNNN
Drive category Industrial AC drive
Cooling Forced air / air cooled
Frame Frame 2
Application type Three-phase AC motor control
Product configuration Packaged drive with embedded I/O
Enclosure concept IP20/IP00, NEMA/UL Open Type

The key point is that PowerFlex 753 is the actual product series, while 20F11ND8P0JA0NNNNN is the specific catalog configuration.


3. Detailed Model Number Interpretation

The catalog number contains a number of configuration elements that identify the electrical and functional characteristics of the drive.

Catalog Number Element Meaning
20 PowerFlex 750-series drive family designation
F PowerFlex 753 configuration
11 480 VAC class
ND Normal-duty configuration
8 8 A output current
P0 Specific power/drive configuration
J Filtering / configuration option within the catalog structure
A0 Configuration option
NNNNN Additional option positions with no additional selected options

The complete catalog number should therefore be treated as a specific factory configuration, rather than simply a generic PowerFlex 753 drive.

For replacement purposes, it is important to compare the complete catalog number rather than matching only the first few characters. Small changes in the catalog number can indicate differences in voltage, current rating, braking configuration, filtering, operator interface or other options.


4. Main Technical Parameters

The following table summarizes the principal parameters of the 20F11ND8P0JA0NNNNN.

Parameter Specification
Model 20F11ND8P0JA0NNNNN
Brand Allen-Bradley
Series PowerFlex 753
Product type AC variable frequency drive
Input voltage 480 VAC
Input phase 3-phase
Output phase 3-phase
Output current 8 A
Normal-duty motor rating 5 HP
Normal-duty power Approximately 3.7 kW
Heavy-duty motor rating Approximately 3 HP in the applicable frame/rating configuration
DC bus voltage Approximately 650 VDC
Input frequency 47–63 Hz
Cooling method Forced-air cooling
Enclosure IP20/IP00, NEMA/UL Open Type
Frame size Frame 2
EMC/filtering Filtered
CM configuration CM jumper installed
Dynamic braking Internal DB transistor
HIM No HIM / blank interface
Embedded I/O Yes
Motor control application Three-phase AC motor
Installation Industrial control cabinet / electrical enclosure
Approx. physical dimensions 12.7 × 21.6 × 11.4 cm
Approx. dimensions in inches 5.0 × 8.5 × 4.5 in
Approx. product weight 6.35 kg
Approx. weight in pounds 14 lb
Operating temperature Approximately 0 to 50 °C under standard conditions
Maximum standard altitude Approximately 1,000 m without applicable derating
Displacement power factor Approximately 0.98
Motor control function Variable-speed / variable-frequency control
Braking function Dynamic braking transistor
Installation environment Industrial, dry indoor control-panel environment
Human-machine interface Not included in this configuration

Note: Dimensions and weight can vary depending on whether the figure refers to the drive itself, packaging, or a particular enclosure/accessory configuration. For cabinet design, the actual mechanical drawing for the exact configuration should be used.


5. Electrical Characteristics

The most important electrical characteristic of this model is its 480 VAC three-phase input.

This makes the drive suitable for industrial power systems where a 480 V three-phase supply is available. The output is also three-phase and is intended to drive a compatible AC motor.

The 8 A output-current rating is especially important when selecting a replacement or matching the drive to an existing motor. Motor horsepower alone should not be used as the only selection criterion. Motor full-load current, overload requirements, operating duty, acceleration requirements and application load characteristics should also be considered.

For normal-duty operation, this model is rated around 5 HP / 3.7 kW. Depending on the specific duty classification and application conditions, the permissible motor rating can be lower under heavier-duty operating requirements.

The drive’s approximately 650 VDC DC-bus level is consistent with its 480 VAC class and allows the power stage to generate the controlled three-phase output required by the motor.


6. Enclosure and Cooling

The model uses an IP20/IP00, NEMA/UL Open Type construction.

This means it is not intended to be treated as a completely enclosed, weatherproof drive. It is normally installed inside a suitable industrial electrical cabinet or control enclosure.

The enclosure design provides a practical solution for industrial control panels, where the drive can be integrated together with circuit protection, contactors, PLC equipment, terminal blocks and other automation components.

The drive is air cooled using forced air. Adequate cabinet ventilation and thermal management are therefore important.

When multiple drives are installed inside the same cabinet, the cabinet designer should consider the combined heat dissipation. Poor ventilation can increase internal temperature and shorten component life or cause thermal protection to activate.


7. Embedded I/O

One of the useful characteristics of this configuration is its embedded I/O.

Integrated I/O reduces the need to add separate I/O hardware for basic drive control functions. Depending on the complete control architecture, the drive can be integrated into a machine control system for functions such as:

  • Start and stop commands
  • Speed reference
  • Run status
  • Fault indication
  • Motor control signals
  • Digital control signals
  • Analog control functions

This can simplify machine wiring and reduce the amount of additional hardware required around the drive.

For machine builders, integrated I/O can also make the overall control cabinet more compact.


8. Dynamic Braking

The 20F11ND8P0JA0NNNNN includes a dynamic-braking transistor.

Dynamic braking is useful when the motor needs to decelerate faster than would be possible through normal ramp-down alone.

When a motor decelerates, it can return electrical energy toward the drive’s DC bus. A braking system can direct this energy to a suitable braking resistor so that the motor can be brought down to speed more quickly.

This feature can be particularly useful for:

  • Conveyor systems
  • Material-handling machines
  • Hoists and certain lifting applications
  • Centrifugal equipment requiring controlled stopping
  • Machine tools
  • High-inertia rotating equipment
  • Applications requiring frequent acceleration and deceleration

The braking transistor itself is not the same thing as a complete braking resistor assembly. Proper resistor selection and installation must be based on the actual regenerative energy, braking duty cycle and drive requirements.


9. Filtering and CM Jumper

The model is configured with filtering and a CM jumper installed.

Filtering is useful for managing high-frequency electrical noise associated with variable-frequency drives. This can help improve electromagnetic compatibility when the drive is installed correctly within a properly designed industrial control system.

The common-mode configuration also needs to be considered when the drive is installed in an environment with particular grounding, EMC or leakage-current requirements.

Correct grounding, cable routing, motor cable shielding and cabinet construction remain important even when the drive itself has filtering provisions.


10. Human Interface Module Configuration

This particular model is supplied as Blank / No HIM.

That means the catalog configuration does not include a conventional local Human Interface Module on the front of the drive.

This can be advantageous in applications where:

  • The drive is controlled from a PLC.
  • The machine has a separate HMI.
  • The drive is integrated into a centralized automation network.
  • Local keypad operation is not required.
  • The user wants to minimize unnecessary front-panel components.

If local parameter adjustment or operator control is required, a compatible interface solution can be selected separately according to the system requirements.


11. Product Introduction

The PowerFlex 753 platform is designed around the needs of industrial motor-control applications where flexibility, integration and maintainability are important.

Compared with a simple standalone inverter, a drive in this class can serve as a more integrated component of a machine automation architecture.

The 20F11ND8P0JA0NNNNN is particularly well suited to applications where a 480 V three-phase supply is available and where a motor around the 5 HP normal-duty range needs variable-speed operation.

The combination of embedded I/O, forced-air cooling, dynamic braking, filtering and flexible control makes it suitable for machinery with changing speed requirements and more sophisticated control requirements.


12. Main Product Advantages

12.1 Industrial Three-Phase Motor Control

The drive provides controlled variable-frequency operation for three-phase AC motors.

Instead of running the motor continuously at its fixed line frequency, the drive can adjust motor speed according to the application’s requirements.

This is useful for production machines where speed needs to change according to process conditions.


12.2 480 VAC Three-Phase Compatibility

The 480 VAC three-phase configuration makes the model suitable for many industrial electrical systems.

For an existing machine using a 480 V three-phase supply, this configuration can be convenient because it avoids the need for a separate voltage-conversion stage.


12.3 Integrated I/O

Embedded I/O is one of the practical advantages of this configuration.

It can reduce the amount of additional control hardware required for basic drive functions and can simplify panel wiring.

For machine builders, this can mean a cleaner control architecture and potentially a smaller panel.


12.4 Dynamic Braking Capability

The integrated braking transistor provides additional flexibility for applications requiring controlled deceleration.

This can be particularly useful for loads with relatively high inertia or applications where stopping time is important.


12.5 Flexible Industrial Application

The PowerFlex 753 platform is appropriate for many types of industrial equipment.

Typical applications include:

  • Conveyors
  • Pumps
  • Fans
  • Material-handling equipment
  • Machine tools
  • Processing machinery
  • Packaging equipment
  • Production-line equipment
  • Industrial mixers
  • General machinery

12.6 Forced-Air Cooling

Forced-air cooling provides active heat removal from the drive’s power electronics.

For continuous-duty industrial equipment, this is important because drive losses become heat during operation.

A properly designed enclosure with sufficient airflow can help maintain suitable operating conditions.


12.7 Open-Type Installation

The open-type design allows the drive to be incorporated into a larger control cabinet.

This is particularly useful for machine builders who prefer to design the complete electrical system around the drive instead of using a standalone enclosed drive.


13. Product Applications

Conveyor Systems

The drive can be used for belt conveyors, roller conveyors and other material-transfer systems.

Variable-speed operation allows the conveyor speed to be adjusted to production requirements.

The dynamic braking capability can also be useful where controlled stopping is important.


Pumps

For pump systems, variable-frequency control can provide adjustable operating speed.

Instead of operating the motor at a constant speed and controlling flow entirely through mechanical throttling, a variable-speed drive can adjust motor speed to match process demand.

This can potentially reduce unnecessary energy consumption in suitable applications.


Fans and Blowers

Fans and blowers are common variable-speed-drive applications.

The drive can adjust motor speed according to airflow requirements, making it useful for industrial ventilation and process-air systems.


Packaging Machinery

Packaging equipment often requires controlled acceleration, deceleration and different operating speeds.

The PowerFlex 753 platform can be used where the motor needs to operate at different speeds during different stages of the machine cycle.


Material Handling

Material-handling equipment can benefit from variable-speed operation and controlled acceleration.

The dynamic-braking transistor can also be useful for applications where rapid or controlled stopping is required.


Machine Tools

The drive can be used for certain machine-tool applications where the motor needs controlled speed adjustment.

The appropriate control mode, motor type and feedback configuration should be selected according to the machine’s precision and torque requirements.


General Industrial Machinery

The model is suitable for many general-purpose industrial machines requiring approximately 5 HP normal-duty motor capacity at 480 VAC.

The final suitability should always be checked against motor current, overload requirements, duty cycle and environmental conditions.


14. Installation and Selection Considerations

When replacing an existing drive with the 20F11ND8P0JA0NNNNN, matching the voltage and horsepower is not sufficient.

The following items should also be checked:

Selection Item Requirement
Supply voltage 480 VAC three-phase
Motor voltage Must match drive/application requirements
Motor full-load current Must remain within the drive’s rated output-current capability
Motor horsepower Approximately 5 HP normal duty
Duty cycle Normal duty or applicable heavy-duty requirement
Acceleration time Check against application inertia
Deceleration time Check whether dynamic braking is required
Braking resistor Select according to regenerative energy and braking cycle
Cooling Adequate cabinet ventilation required
Enclosure Suitable industrial electrical enclosure required
Ambient temperature Must remain within applicable drive limits
Altitude Derating may be required above standard altitude
Motor cable Must be appropriate for VFD operation
Grounding Proper grounding required
EMC Cable routing and shielding should be considered
Communication Confirm required control/network architecture
HIM This model is supplied without HIM

15. Five Related Models in the Same PowerFlex 753 Family

The following models are useful candidates to compare when selecting a related PowerFlex 753 configuration. They are not necessarily direct drop-in replacements for the 20F11ND8P0JA0NNNNN because output current, voltage class, frame size and options can differ.

Model Series Approx. Electrical Rating Input Frame / Type Cooling Approx. Dimensions Approx. Weight (kg) Typical Use
20F11ND8P0JA0NNNNN PowerFlex 753 8 A / 5 HP ND 480 VAC, 3-phase Frame 2 Forced air 12.7 × 21.6 × 11.4 cm 6.35 General machinery, conveyors, pumps
20F11ND010JA0NNNNN PowerFlex 753 Approx. 10 A class 480 VAC, 3-phase Frame-dependent Forced air Approx. frame-dependent Approx. 6–9 Higher-current general machinery
20F11ND014JA0NNNNN PowerFlex 753 Approx. 14 A class 480 VAC, 3-phase Frame-dependent Forced air Approx. frame-dependent Approx. 6–10 Larger motor applications
20F11ND052JA0NNNNN PowerFlex 753 Approx. 52 A class 480 VAC, 3-phase Larger frame Forced air Frame-dependent Approx. 15+ Higher-power industrial machinery
20F11ND077JA0NNNNN PowerFlex 753 Approx. 77 A class 480 VAC, 3-phase Larger frame Forced air Frame-dependent Approx. 20+ Large conveyors and process equipment

Important: The last four entries should be treated as configuration-selection references rather than confirmed direct equivalents. Their exact dimensions and weight depend on the particular frame and option configuration. For procurement or replacement work, the complete catalog number should be checked before ordering.


16. Five Popular Allen-Bradley Models for Comparison

The following models belong to the same broad AC-drive product ecosystem and are useful alternatives to consider when the application does not necessarily require the full PowerFlex 753 configuration.

Model Series Approx. Rating Input Output / Current Class Typical Dimensions Approx. Weight (kg) Typical Application
25B-D017N114 PowerFlex 525 Approx. 7.5 HP class 480 VAC, 3-phase Approx. 17 A class Approx. 22 × 18 × 17 cm Approx. 3–4 Compact machinery and conveyors
25B-D010N114 PowerFlex 525 Approx. 5 HP class 480 VAC, 3-phase Approx. 10 A class Approx. 22 × 18 × 17 cm Approx. 3–4 General-purpose machines
22B-D6P0N104 PowerFlex 40 Approx. 2 HP class 480 VAC class Approx. 6 A class Approx. 20 × 13 × 16 cm Approx. 2 Small machinery and fans
20G11ND077JA0NNNNN PowerFlex 755 Approx. 77 A class 480 VAC, 3-phase Approx. 77 A class Frame-dependent Approx. 20+ Advanced/high-power industrial applications
20F11ND077JA0NNNNN PowerFlex 753 Approx. 77 A class 480 VAC, 3-phase Approx. 77 A class Frame-dependent Approx. 20+ Larger machinery and process equipment

The PowerFlex 525 models are generally more compact and are attractive where cabinet space and machine simplicity are priorities.

The PowerFlex 753 models are more appropriate when integrated industrial control functions, expanded configuration flexibility and a larger drive platform are required.

The PowerFlex 755 family is generally positioned toward more advanced drive applications and higher levels of control functionality.


17. 20F11ND8P0JA0NNNNN vs. Related Models

Comparison 20F11ND8P0JA0NNNNN PowerFlex 525 Class PowerFlex 755 Class
Product family PowerFlex 753 PowerFlex 525 PowerFlex 755
Main positioning Industrial general-purpose drive Compact machine drive Advanced industrial drive
480 V capability Yes Yes, depending on model Yes, depending on model
Embedded I/O Yes Yes Yes / expanded options
Dynamic braking DB transistor Model-dependent Advanced braking options
Physical size Medium Smaller Larger
Control flexibility High Moderate Very high
Cabinet space Moderate Lower Higher
Application complexity Medium to high Low to medium Medium to very high
Typical machine size Medium Small to medium Medium to large
Suitable for centralized automation Yes Yes Yes
Suitable for frequent speed changes Yes Yes Yes
Typical advantage Balance of capability and size Compact and economical Advanced control and scalability

18. Advantages of Choosing the PowerFlex 753 Platform

The biggest advantage of the PowerFlex 753 platform is the balance between drive capability, I/O integration, flexibility and industrial applicability.

It is not simply a basic frequency converter. It is designed as part of a broader machine-control architecture.

For a machine builder, this means the drive can become part of the overall control system rather than operating as an isolated motor controller.

The embedded I/O can simplify basic machine-control wiring, while the available control and communication architecture can support more sophisticated industrial automation.

The dynamic-braking capability adds another level of application flexibility, especially when the driven load has high inertia or requires controlled stopping.


19. Advantages of the Specific 20F11ND8P0JA0NNNNN Configuration

The specific configuration has several characteristics that make it attractive for general industrial machinery.

First, the 480 VAC three-phase input makes it appropriate for common industrial power distribution systems.

Second, the 8 A output places the drive in a useful mid-small motor range, making it appropriate for many conveyors, pumps, fans and machine mechanisms.

Third, the 5 HP normal-duty rating provides a practical capacity for general-purpose industrial machinery.

Fourth, the embedded I/O can simplify the control system.

Fifth, the internal dynamic-braking transistor provides a useful option for controlled deceleration.

Sixth, the filtered configuration and CM jumper can help support appropriate EMC implementation.

Finally, the No-HIM configuration can be advantageous when the machine already has a PLC or external HMI and local drive keypad operation is unnecessary.


20. Recommended Application Matching

Application Suitability Reason
Conveyor Excellent Variable speed and controlled acceleration
Small industrial pump Excellent Adjustable motor speed
Fan Excellent Variable airflow control
Packaging machine Good Speed control and controlled acceleration/deceleration
Material handling Excellent Speed control and braking capability
Mixer Good Adjustable motor speed
Machine tool Good Depends on required precision and feedback
Hoist Application-dependent Braking and safety requirements must be evaluated carefully
High-inertia machine Good Dynamic braking can be beneficial
Very high-power motor Not suitable 8 A rating is limiting
Outdoor installation Not directly suitable Open-type enclosure requires appropriate cabinet protection
Small compact machine Possibly oversized A smaller drive family may be more economical

21. Important Points About Dimensions and Weight

For the 20F11ND8P0JA0NNNNN, a commonly listed physical size is approximately:

12.7 cm × 21.6 cm × 11.4 cm

and the approximate unit weight is:

6.35 kg

These figures should be considered equipment-level reference values rather than cabinet-shipping dimensions.

The physical installation area should also include space for wiring, airflow, terminal access and maintenance.

The cabinet designer should not install the drive tightly against other heat-producing equipment. Adequate clearance and airflow are particularly important because the drive uses forced-air cooling.


22. Selection Recommendations

If the objective is to replace an existing drive with the same functionality, the first choice should be the 20F11ND8P0JA0NNNNN itself, provided the existing motor, input supply, control system and options match.

If the motor requires a higher current rating, a larger PowerFlex 753 model should be selected instead of simply using the same model.

If cabinet space is the primary concern and the application is relatively straightforward, a PowerFlex 525-class drive may be worth evaluating.

If the application requires more advanced control functionality, larger motor capacity or a more sophisticated drive architecture, a PowerFlex 755-class model may be more appropriate.


23. Quick Technical Summary

Category 20F11ND8P0JA0NNNNN
Model 20F11ND8P0JA0NNNNN
Brand Allen-Bradley
Series PowerFlex 753
Product AC Drive
Voltage 480 VAC
Phase 3-phase input / 3-phase output
Current 8 A
Motor rating 5 HP normal duty
Power Approx. 3.7 kW
Frame Frame 2
Cooling Forced air
Enclosure IP20/IP00, Open Type
I/O Embedded I/O
Filter Filtered
CM jumper Installed
Dynamic braking Internal DB transistor
HIM None
Dimensions Approx. 12.7 × 21.6 × 11.4 cm
Weight Approx. 6.35 kg
Main function Variable-speed control of three-phase AC motors
Main applications Conveyor, pump, fan, material handling, packaging and general machinery

24. Final Product Assessment

The 20F11ND8P0JA0NNNNN is a practical PowerFlex 753 480 VAC three-phase AC drive for industrial machinery in the approximately 5 HP normal-duty range.

Its combination of 8 A output capacity, embedded I/O, forced-air cooling, filtered configuration, CM jumper and internal dynamic-braking transistor makes it more capable than a basic entry-level variable-frequency drive.

For a machine using a 480 V three-phase motor, the model is especially attractive when the application requires controlled motor speed, controlled acceleration and deceleration, integration with an industrial control system and reasonable flexibility for future machine expansion.

The No HIM configuration is also useful for systems in which the drive is controlled through a PLC, network or external HMI rather than through a local keypad.

For replacement work, however, the complete catalog number should always be matched against the existing electrical specifications. The most important items to verify are input voltage, motor current, motor horsepower, duty classification, frame size, braking requirements, I/O requirements, enclosure requirements and communication/control architecture.

Overall, the model can be regarded as a medium-capacity industrial variable-frequency drive with a strong balance between motor-control capability, integrated control functions and application flexibility.



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