• Allen Bradley 20F1ANF023JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF023JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF023JA0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF023JA0NNNNN PowerFlex AC Drive
Allen-Bradley 20F1ANF023JA0NNNNN — Detailed Product Specifications, Introduction, Applications, Advantages and Related Models 1. Product Overview The 20F1ANF023JA0NNNNN is a PowerFlex 753 air-cooled AC ……
Allen Bradley 20F1ANF023JA0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20F1ANF023JA0NNNNN
  • PowerFlex AC Drive
  • USA
  • 665.5 × 308 × 346.4 mm
  • 38.6kg
  • Xiamen, China
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Allen Bradley 20F1ANF023JA0NNNNN PowerFlex AC Drive

Global Logistics

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

Allen Bradley 20F1ANF023JA0NNNNN PowerFlex AC Drive

Brand new and original

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 20F1ANF023JA0NNNNN PowerFlex AC Drive

24-hour service

We provide 7*24 hours service to our customers. We will be there whenever you need us.

Allen Bradley 20F1ANF023JA0NNNNN PowerFlex AC Drive

Price advantage

All our products are priced very favorably because we have our own warehouse and supply.


Company Information
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Allen-Bradley 20F1ANF023JA0NNNNN — Detailed Product Specifications, Introduction, Applications, Advantages and Related Models

1. Product Overview

The 20F1ANF023JA0NNNNN is a PowerFlex 753 air-cooled AC drive designed for three-phase industrial motor control.

It is a 690 VAC, 23 A, Frame 6 variable-frequency drive with an 18.5 kW Normal Duty rating and a 15 kW Heavy Duty rating.

This particular configuration includes an internal dynamic-braking transistor, embedded I/O, forced-air cooling, an open-type enclosure, AC input with precharge, no DC terminals, and a blank configuration without a HIM.

One of the notable characteristics of this model is the CM jumper installed configuration. This distinguishes it from several closely related PowerFlex 753 catalog numbers that have different filtering or common-mode configurations.

The drive is intended for industrial equipment where adjustable motor speed, controlled acceleration and deceleration, process control, and reliable three-phase motor operation are required.


2. Brand and Product Series

Item Specification
Brand Allen-Bradley
Product Family PowerFlex
Series PowerFlex 753
Product Type Air-Cooled AC Variable Frequency Drive
Model 20F1ANF023JA0NNNNN
Voltage Class 690 VAC
Input 3 Phase
Output 3 Phase
Rated Output Current 23 A
Normal Duty Rating 18.5 kW
Heavy Duty Rating 15 kW
Frame Frame 6
Cooling Forced Air
Enclosure IP20/IP00, NEMA/UL Open Type
Dynamic Braking Internal DB Transistor
Filtering Filtered
CM Jumper Installed
Input Configuration AC Input with Precharge
DC Terminals None
Embedded I/O Yes
HIM Blank / No HIM
Integrated Motion No
Control Characteristic PID
Safety Function Compatibility Yes
Operating Temperature Approximately -20 to 60 °C
Storage Temperature Approximately -40 to 70 °C
Approx. Height 665.5 mm
Approx. Width 308 mm
Approx. Depth 346.4 mm
Approx. Weight 48 kg

The PowerFlex 753 series is positioned as a flexible industrial AC-drive platform for general-purpose and more advanced motor-control applications.

The 690 VAC configuration is particularly suitable for higher-voltage industrial motor systems where the motor and electrical distribution are designed around this voltage class.


3. Main Technical Parameters

Parameter Specification
Model 20F1ANF023JA0NNNNN
Product Family PowerFlex 753
Drive Type AC Variable Frequency Drive
Input Voltage 690 VAC
Input Phase 3 Phase
Output Phase 3 Phase
Output Current 23 A
Normal Duty Power 18.5 kW
Heavy Duty Power 15 kW
Frame Size 6
Cooling Method Forced Air
Enclosure IP20/IP00 Open Type
NEMA/UL Configuration Open Type
Input Type AC Input with Precharge
DC Terminals No
Dynamic Braking Internal DB Transistor
Filtering Filtered
CM Jumper Installed
Embedded I/O Yes
HIM Blank / No HIM
Integrated Motion No
Control Characteristic PID
Safety Function Compatibility Yes
EMC Version Yes
Height 665.5 mm
Width 308 mm
Depth 346.4 mm
Dimensions 665.5 × 308 × 346.4 mm
Weight 48 kg
Operating Temperature -20 to 60 °C
Storage Temperature -40 to 70 °C
Mounting Type Panel / Cabinet
Typical Motor Application 690 VAC Three-Phase Motor

The dimensions and weight are important when designing an electrical cabinet because this is a relatively substantial Frame 6 drive.

The approximately 48 kg weight should be considered when selecting the mounting structure, panel thickness and supporting hardware.


4. Product Introduction

The 20F1ANF023JA0NNNNN is designed to regulate the speed and operating characteristics of three-phase AC motors.

Instead of supplying a motor with fixed-frequency power at all times, a variable-frequency drive can vary the electrical frequency and voltage supplied to the motor.

This allows the motor speed to be adjusted according to the requirements of the machine.

For example, a pump may not need to operate at full speed all the time. A fan may need different airflow levels during different stages of production. A conveyor may require a slow acceleration profile to prevent material from shifting.

In these situations, a variable-frequency drive provides a much more flexible solution than simply switching the motor on and off.

The 20F1ANF023JA0NNNNN is particularly suited to installations where a 690 VAC three-phase motor is used and where the machine requires a medium-power drive with additional braking capability.


5. 690 VAC Three-Phase Design

The 690 VAC rating is one of the most important characteristics of this product.

This drive is designed for three-phase systems and is intended to operate with motors and electrical equipment compatible with the applicable 690 VAC voltage class.

Higher-voltage motor systems are commonly found in industrial installations where larger motors and longer operating cycles are involved.

A higher motor voltage can allow the motor to operate at lower current for a given power level compared with a lower-voltage motor of similar power.

This can influence:

  • Motor cable sizing
  • Electrical distribution design
  • Protection equipment
  • Switchgear selection
  • Cabinet wiring
  • Motor connection arrangements

The motor nameplate and the actual electrical system should always be checked before selecting the drive.


6. 23 A Output Rating

The model has a 23 A output-current rating.

Current is one of the most important factors when selecting a variable-frequency drive.

Although motor power is often used as a quick reference, the actual motor nameplate current should be used when determining whether the drive is correctly sized.

Motor current can vary because of:

  • Motor efficiency
  • Power factor
  • Motor construction
  • Motor voltage
  • Motor load
  • Operating conditions

For this reason, an 18.5 kW motor should not automatically be assumed to be compatible with every 18.5 kW-rated drive.

The motor’s rated current must be checked against the applicable drive rating.


7. Normal Duty Rating — 18.5 kW

The Normal Duty rating of this model is:

18.5 kW

The continuous output current is:

23 A

This makes the model well suited to many variable-torque applications.

Typical examples include:

  • Centrifugal pumps
  • Fans
  • Blowers
  • Ventilation equipment
  • Cooling systems
  • Circulation systems
  • Certain process machines

The Normal Duty rating should be used when the application’s load profile falls within the drive’s specified Normal Duty operating conditions.


8. Heavy Duty Rating — 15 kW

The Heavy Duty rating is:

15 kW

This rating is important for applications with higher torque requirements or more demanding operating cycles.

Typical examples include:

  • Conveyors
  • Mixers
  • Material-handling equipment
  • Certain process machinery
  • Machines with frequent acceleration
  • Machines with frequent deceleration
  • Constant-torque loads

The Heavy Duty rating should be evaluated together with the motor nameplate current and actual machine load profile.


9. Normal Duty and Heavy Duty Comparison

Characteristic Normal Duty Heavy Duty
Rated Power 18.5 kW 15 kW
Output Current 23 A 20 A class
Typical Load Variable Torque Constant Torque
Typical Equipment Pumps, Fans, Blowers Conveyors, Mixers
Overload Requirement Moderate Higher
Main Selection Factor Motor Current Motor Current and Torque
Braking Requirement Application Dependent Often More Important

The difference between Normal Duty and Heavy Duty is important because the same motor power can behave very differently depending on the mechanical load.

A pump with a variable-torque load is not electrically equivalent to a conveyor with high starting torque simply because both motors may have similar nominal kW ratings.


10. Internal Dynamic-Braking Transistor

The 20F1ANF023JA0NNNNN includes an:

Internal Dynamic-Braking Transistor

This is a major advantage when the application requires controlled deceleration.

When a motor decelerates, the motor can temporarily return energy to the drive.

This regenerative energy can increase the DC-bus voltage.

If the machine needs rapid or repeated deceleration, this energy must be handled appropriately.

The internal dynamic-braking transistor provides the switching element required for a suitable braking-resistor arrangement.

The braking resistor itself and its thermal requirements must still be selected according to the actual application.


11. Why Dynamic Braking Is Important

Dynamic braking can be especially useful for equipment with:

  • High inertia
  • Rapid stopping
  • Frequent start/stop cycles
  • Large rotating components
  • Heavy conveyor loads
  • Rollers
  • Material-handling systems
  • Certain mixers
  • High-speed fans
  • Machines requiring controlled deceleration

Without an appropriate braking arrangement, a high-inertia load may cause the DC-bus voltage to rise during deceleration.

The internal braking transistor gives the system designer an additional option for handling this energy.


12. Filtered Configuration and CM Jumper Installed

This model is specified as:

Filtered, CM Jumper Installed

The common-mode configuration is important when considering grounding, EMC behavior and motor-cable characteristics.

The CM jumper configuration should not be treated as a cosmetic catalog-number difference.

It can influence how the drive interacts with:

  • Grounding systems
  • Motor cables
  • Cable shields
  • Motor insulation
  • Common-mode currents
  • EMC requirements
  • Installation topology

Therefore, the exact catalog number should be maintained when replacing an existing drive unless the alternative configuration has been properly evaluated.


13. Difference Between 20F1ANF023JA0NNNNN and 20F1ANF023AA0NNNNN

These two models are very closely related.

Parameter 20F1ANF023JA0NNNNN 20F1ANF023AA0NNNNN
Voltage 690 VAC 690 VAC
Current 23 A 23 A
Normal Duty 18.5 kW 18.5 kW
Heavy Duty 15 kW 15 kW
Frame 6 6
Cooling Forced Air Forced Air
Dynamic Braking DB Transistor DB Transistor
Filtering Filtered Filtered
CM Jumper Installed Removed
HIM No HIM No HIM
AC Input With Precharge With Precharge
DC Terminals None None
Approx. Dimensions 665.5 × 308 × 346.4 mm 665.5 × 308 × 346.4 mm class
Approx. Weight 48 kg Configuration dependent

The JA version is therefore an important configuration when the required system arrangement calls for the CM jumper to be installed.


14. Frame 6 Construction

The drive uses a Frame 6 mechanical configuration.

Frame size affects more than the physical enclosure.

It is also associated with:

  • Power capacity
  • Current capacity
  • Cooling requirements
  • Mechanical mounting
  • Cable routing
  • Cabinet dimensions
  • Maintenance access

The Frame 6 construction provides sufficient physical capacity for the 23 A, 690 VAC configuration.


15. Dimensions and Weight

Mechanical Parameter Specification
Model 20F1ANF023JA0NNNNN
Frame 6
Height 665.5 mm
Width 308 mm
Depth 346.4 mm
Overall Dimensions 665.5 × 308 × 346.4 mm
Approx. Weight 48 kg
Enclosure Open Type
IP Rating IP20
Cooling Forced Air
Installation Panel / Cabinet

The physical dimensions are significant for cabinet design.

A cabinet should provide sufficient clearance for cooling airflow, electrical wiring and maintenance access.

The approximate 48 kg mass also means that the mounting structure should be designed appropriately.


16. Open-Type Enclosure

The product uses an open-type enclosure.

This means the drive is normally intended to be mounted within a suitable electrical cabinet or enclosure that provides the necessary environmental protection.

The external enclosure should protect the drive from conditions such as:

  • Water
  • Excessive humidity
  • Conductive dust
  • Metal particles
  • Oil contamination
  • Mechanical impact
  • Excessive ambient heat
  • Industrial contamination

The cabinet must also provide adequate airflow.


17. Forced-Air Cooling

The drive uses forced-air cooling.

Power semiconductor devices generate heat during operation.

The cooling system removes this heat from the drive’s internal components and transfers it into the surrounding environment.

Correct airflow is therefore essential.

Poor ventilation can lead to:

  • Increased internal temperature
  • Thermal derating
  • Drive trips
  • Reduced component life
  • Fan problems
  • Excessive thermal stress

The cabinet should be designed so that hot exhaust air does not simply circulate back into the drive’s cooling inlet.


18. Operating Temperature

The specified operating temperature range is approximately:

-20 °C to 60 °C

The storage temperature range is approximately:

-40 °C to 70 °C

These figures are useful for preliminary environmental planning.

However, actual drive loading, altitude, cabinet temperature and other environmental conditions can influence allowable operating conditions.

Industrial installations should therefore consider the complete thermal environment rather than relying only on the nominal ambient-temperature range.


19. Embedded I/O

The PowerFlex 753 platform incorporates embedded I/O.

This can simplify basic machine integration because common control signals can be handled directly through the drive.

Potential functions include:

  • Start
  • Stop
  • Enable
  • Run feedback
  • Fault indication
  • Speed reference
  • Analog signals
  • Digital signals
  • Interlocks
  • Process feedback

Embedded I/O can reduce the need for additional external interface equipment in straightforward control systems.


20. Blank / No HIM Configuration

The catalog number specifies:

Blank (No HIM)

This means the drive is supplied without a local Human Interface Module in this configuration.

This is often practical when the drive is intended to operate as part of an automated control system.

The machine may instead be operated through:

  • PLC control
  • HMI control
  • Digital signals
  • Analog references
  • Network communication
  • Supervisory control systems

A separate interface can be used when local operator access is required.


21. PID Control Capability

The product information identifies the control characteristic as:

PID

PID control can be useful in process applications where the drive needs to maintain a process variable around a desired setpoint.

Typical examples include:

  • Pressure control
  • Flow control
  • Temperature-related systems
  • Fan pressure systems
  • Pumping systems
  • Process regulation

The ability to incorporate process control into the drive can reduce the amount of external control hardware required in certain applications.


22. Applications

The 20F1ANF023JA0NNNNN can be used in a wide range of industrial motor-control systems.

Typical applications include:

  • Industrial pumps
  • Fans
  • Blowers
  • Conveyors
  • Rollers
  • Mixers
  • Material-handling equipment
  • Process machinery
  • Production machinery
  • Cooling systems
  • Ventilation equipment
  • Fluid-transfer equipment
  • General industrial motor systems

Its internal dynamic-braking capability makes it particularly attractive for equipment where controlled stopping is important.


23. Pump Applications

The drive can be used for 690 VAC industrial pumping applications.

A variable-frequency drive allows pump speed to be adjusted according to process demand.

This can be useful for:

  • Water circulation
  • Process fluid transfer
  • Cooling systems
  • Industrial pumping
  • Pressure-control systems
  • Fluid distribution

For centrifugal pumps, Normal Duty operation is generally the more relevant selection category.

The 18.5 kW Normal Duty capacity gives this model a useful range for medium-sized industrial pump motors.


24. Fan and Blower Applications

Fans and blowers are another common application for variable-frequency drives.

Rather than operating the motor continuously at maximum speed, the drive can adjust speed according to the airflow requirement.

Potential applications include:

  • Factory ventilation
  • Exhaust systems
  • Cooling equipment
  • Process ventilation
  • Air circulation
  • Industrial blowers

These applications often benefit from variable-speed operation because the machine does not always need full motor speed.


25. Conveyor Applications

Conveyors can benefit from variable-speed control and controlled acceleration.

A conveyor may need to:

  • Start smoothly
  • Stop smoothly
  • Change speed
  • Maintain production-line synchronization
  • Prevent material movement
  • Control product spacing
  • Handle varying loads

The dynamic-braking transistor is particularly useful where controlled deceleration is required.

For demanding conveyor applications, Heavy Duty sizing should be checked carefully.


26. Mixer Applications

Mixers can experience significant torque requirements.

The load may also change depending on the material being mixed.

Applications can include:

  • Industrial mixing
  • Process blending
  • Agitation
  • Batch processing
  • Material preparation

For high-torque mixers, the Heavy Duty rating should be evaluated carefully.

The motor’s nameplate current is more important than simply matching the nominal motor kW.


27. Material Handling Applications

Material-handling equipment often needs precise acceleration and deceleration.

The drive can help control:

  • Conveyor speed
  • Transfer speed
  • Roller speed
  • Feed rates
  • Product movement
  • Production-line synchronization

Dynamic braking can be valuable where a heavy load must be stopped quickly and repeatedly.


28. Advantages of the Product

Advantage Description
690 VAC Operation Designed for high-voltage industrial motor systems
23 A Capacity Suitable for medium-power motor applications
18.5 kW Normal Duty Good capacity for variable-torque applications
15 kW Heavy Duty Supports demanding constant-torque applications
Internal DB Transistor Useful for dynamic braking
CM Jumper Installed Provides a defined common-mode configuration
Filtered Design Supports EMC-oriented installation requirements
Embedded I/O Simplifies basic machine integration
PID Capability Useful for process-control applications
Forced-Air Cooling Suitable for industrial cabinet installation
Frame 6 Provides substantial power-handling capability
No HIM Useful for remote-control architectures
Open-Type Construction Flexible for cabinet installations

29. Main Advantage — Dynamic Braking

The internal dynamic-braking transistor is one of the most valuable features of this particular configuration.

A machine with significant inertia can continue rotating after the drive commands a reduction in speed.

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

The braking system provides a controlled method of dealing with this energy.

This is especially useful for:

  • Conveyors
  • Rollers
  • Material-handling machines
  • High-inertia fans
  • Certain mixers
  • Machinery with frequent stopping

30. Main Advantage — 18.5 kW Normal Duty

The 18.5 kW Normal Duty rating gives this model enough capacity for a wide range of medium-power industrial machines.

It occupies a useful position between the 15 kW and 22 kW class models in the same 690 VAC family.

For machine builders, this provides a practical option when a 20 A model is too small but a 30 A model would be unnecessarily large.


31. Main Advantage — 15 kW Heavy Duty

The 15 kW Heavy Duty rating makes this model useful for more demanding mechanical loads.

This can be important for:

  • Conveyors
  • Mixers
  • Feeders
  • Material handling
  • Constant-torque machinery

The actual motor current and load profile should always be checked before selecting the drive.


32. Main Advantage — 690 VAC

The 690 VAC class makes the product suitable for industrial electrical systems built around higher motor voltages.

This can be particularly useful in larger industrial facilities where higher-voltage motor systems are preferred for certain equipment.

The motor, protective devices, disconnects, cabling and overall distribution system must all be compatible with the selected voltage class.


33. Main Advantage — PowerFlex 753 Platform

The PowerFlex 753 family provides a consistent platform across a range of motor sizes.

This can be valuable for companies operating multiple machines.

Maintenance technicians can work with a familiar drive family while different machine sizes use different current ratings.

This can simplify:

  • Training
  • Spare-parts management
  • Troubleshooting
  • Commissioning
  • Parameter management
  • Machine standardization

34. Cabinet Design

The approximate physical dimensions are:

665.5 mm × 308 mm × 346.4 mm

The approximate weight is:

48 kg

Cabinet design should include additional space beyond these basic dimensions.

Clearance is needed for:

  • Power cables
  • Motor cables
  • Control cables
  • Grounding
  • Airflow
  • Maintenance
  • Fan service
  • Braking components
  • Cable bending radius

The drive should not be installed in a confined location where heat cannot be removed effectively.


35. Electrical Installation Considerations

Important installation considerations include:

  • Correct three-phase input
  • Correct motor voltage
  • Proper grounding
  • Correct motor cable selection
  • Appropriate protective devices
  • Correct braking-resistor installation
  • Control wiring separation
  • EMC considerations
  • Common-mode configuration
  • Cabinet bonding
  • Cooling airflow

Power wiring and low-level control wiring should be routed appropriately to reduce electrical interference.


36. Motor Selection

The correct motor should be selected according to its nameplate data.

Motor Parameter Importance
Rated Voltage Must be compatible with the drive system
Rated Current Primary drive-sizing parameter
Rated Power Important capacity reference
Frequency Determines operating characteristics
Rated Speed Important for speed control
Power Factor Affects motor current
Motor Type Influences control configuration
Duty Class Important for thermal loading
Starting Requirement Important for Heavy Duty applications
Inertia Important for braking calculations

The motor current should be compared against the appropriate Normal Duty or Heavy Duty rating.


37. Dynamic-Braking System Design

Although the drive includes an internal braking transistor, the complete braking system still needs to be designed correctly.

The braking resistor should be selected according to the actual machine.

Important factors include:

  • Motor power
  • Motor speed
  • Load inertia
  • Deceleration time
  • Number of braking cycles
  • Braking frequency
  • Resistor power
  • Resistor thermal capacity
  • Ambient temperature
  • Installation location

A machine requiring extremely frequent braking may need a substantially different braking arrangement from a machine that only decelerates occasionally.


38. Five Recommended Same-Series or Related Models

The following five models are useful comparison choices within the same PowerFlex 753 family.

Model Voltage Current Normal Duty Heavy Duty Frame Dynamic Braking Approx. Dimensions Approx. Weight
20F1ANF020JN0NNNNN 690 VAC 20 A 15 kW 11 kW 6 No internal DB transistor 665.5 × 308 × 346.4 mm class 38.6 kg class
20F1ANF023JN0NNNNN 690 VAC 23 A 18.5 kW 15 kW 6 No internal DB transistor Frame 6 class Configuration dependent
20F1ANF030JN0NNNNN 690 VAC 30 A 22 kW 18.5 kW 6 No internal DB transistor Frame 6 class Configuration dependent
20F1ANF034JN0NNNNN 690 VAC 34 A 30 kW 22 kW 6 No internal DB transistor Frame 6 class Configuration dependent
20F1ANF023AA0NNNNN 690 VAC 23 A 18.5 kW 15 kW 6 Internal DB transistor Frame 6 class Configuration dependent

The closest electrical alternative is the 20F1ANF023JN0NNNNN, while the AA configuration is particularly relevant when the common-mode/filtering arrangement needs to be different.


39. 20F1ANF020JN0NNNNN

This is the lower-current model immediately below the 23 A configuration.

Parameter Specification
Model 20F1ANF020JN0NNNNN
Voltage 690 VAC
Current 20 A
Normal Duty 15 kW
Heavy Duty 11 kW
Frame 6
Cooling Forced Air
Dynamic Braking No Internal DB Transistor
Approx. Height 665.5 mm class
Approx. Width 308 mm class
Approx. Depth 346.4 mm class
Approx. Weight 38.6 kg class

This model is worth considering when the motor current is below the 23 A requirement and the application does not need the internal braking transistor.


40. 20F1ANF023JN0NNNNN

This model has the same 23 A and 18.5 kW Normal Duty rating as the subject model.

Parameter Specification
Model 20F1ANF023JN0NNNNN
Voltage 690 VAC
Current 23 A
Normal Duty 18.5 kW
Heavy Duty 15 kW
Frame 6
Cooling Forced Air
Dynamic Braking No Internal DB Transistor
CM Configuration Different from JA version
Approx. Dimensions 665.5 × 308 × 346.4 mm class
Approx. Weight Configuration dependent

This is a useful comparison when dynamic braking is not required.


41. 20F1ANF030JN0NNNNN

The 30 A model increases the available motor capacity.

Parameter Specification
Model 20F1ANF030JN0NNNNN
Voltage 690 VAC
Current 30 A
Normal Duty 22 kW
Heavy Duty 18.5 kW
Frame 6
Cooling Forced Air
Dynamic Braking No Internal DB Transistor
Approx. Dimensions Frame 6 class
Approx. Weight Configuration dependent

This model is appropriate when the motor current exceeds the practical capacity of the 23 A model.


42. 20F1ANF034JN0NNNNN

This model provides another step upward in capacity.

Parameter Specification
Model 20F1ANF034JN0NNNNN
Voltage 690 VAC
Current 34 A
Normal Duty 30 kW
Heavy Duty 22 kW
Frame 6
Cooling Forced Air
Dynamic Braking No Internal DB Transistor
Approx. Dimensions Frame 6 class
Approx. Weight Configuration dependent

It can be considered for larger 690 VAC industrial motors and machinery.


43. 20F1ANF023AA0NNNNN

This model is especially interesting because it is very close to the subject model.

Parameter Specification
Model 20F1ANF023AA0NNNNN
Voltage 690 VAC
Current 23 A
Normal Duty 18.5 kW
Heavy Duty 15 kW
Frame 6
Cooling Forced Air
Dynamic Braking Internal DB Transistor
Filtering Filtered
CM Jumper Removed
HIM No HIM
Approx. Height 665.5 mm
Approx. Width 308 mm
Approx. Depth 346.4 mm
Approx. Weight Approximately 48 kg class

The major difference is the common-mode jumper configuration.

Therefore, it should not automatically be treated as an interchangeable substitute simply because the power and current ratings are the same.


44. Five Representative Same-Brand Models

The following five models represent useful choices from the same brand and different PowerFlex product ranges.

They are presented as representative models rather than as a strict sales ranking.

Model Series Voltage Class Current / Capacity Normal Duty Heavy Duty Typical Application
20F1ANF023JN0NNNNN PowerFlex 753 690 VAC 23 A 18.5 kW 15 kW Industrial motor control
20F1ANF030JN0NNNNN PowerFlex 753 690 VAC 30 A 22 kW 18.5 kW Larger industrial machinery
20F1ANF050JN0NNNNN PowerFlex 753 690 VAC 50 A 45 kW 37 kW Large motor systems
25B-D017N114 PowerFlex 525 480 VAC class 17 A class Approx. 7.5 kW class Application dependent Compact machine control
25B-D024N114 PowerFlex 525 480 VAC class 24 A class Approx. 11 kW class Application dependent Medium machine control

The PowerFlex 525 models are from a different series and voltage class, so they should not be considered direct electrical replacements for the 690 VAC PowerFlex 753.

They are included as same-brand alternatives for applications where a different drive class is appropriate.


45. Same-Series Power Progression

Model Output Current Normal Duty Heavy Duty Frame
20F1ANF012JN0NNNNN 12 A 7.5 kW 5.5 kW 6
20F1ANF015JN0NNNNN 15 A 11 kW 7.5 kW 6
20F1ANF020JN0NNNNN 20 A 15 kW 11 kW 6
20F1ANF023JA0NNNNN 23 A 18.5 kW 15 kW 6
20F1ANF030JN0NNNNN 30 A 22 kW 18.5 kW 6
20F1ANF034JN0NNNNN 34 A 30 kW 22 kW 6
20F1ANF046JN0NNNNN 46 A 37 kW 30 kW 6
20F1ANF050JN0NNNNN 50 A 45 kW 37 kW 6
20F1ANF061JN0NNNNN 61 A 55 kW 45 kW 6
20F1ANF082JN0NNNNN 82 A 75 kW 55 kW 6

This progression demonstrates the position of the 23 A model within the broader 690 VAC PowerFlex 753 range.


46. Application Suitability

Application Suitability Duty Consideration Dynamic Braking
Centrifugal Pump Excellent Normal Duty Usually Low
Industrial Fan Excellent Normal Duty Usually Low
Blower Excellent Normal Duty Low to Moderate
Ventilation Excellent Normal Duty Usually Low
Conveyor Excellent Heavy Duty Evaluation Often Useful
Mixer Very Good Heavy Duty Evaluation Application Dependent
Material Handling Very Good Heavy Duty Evaluation Often Useful
Process Machinery Very Good Load Dependent Load Dependent
Production Machinery Very Good Load Dependent Cycle Dependent
High-Inertia Machine Excellent Heavy Duty Evaluation Important
Rapid-Deceleration Equipment Excellent Load Dependent Very Important

47. Installation and Cabinet Planning

The physical dimensions of the drive are:

665.5 mm H × 308 mm W × 346.4 mm D

with an approximate weight of:

48 kg

These dimensions should be used as the starting point for cabinet planning.

The final cabinet should be larger than the drive itself because additional room is needed for:

  • Cable entry
  • Cable bending
  • Grounding
  • Air circulation
  • Maintenance
  • Terminal access
  • Braking equipment
  • Other control equipment

A tightly packed cabinet can create unnecessary thermal problems.


48. Thermal Management

Thermal management is particularly important for a Frame 6 air-cooled drive.

The designer should consider:

  • Ambient temperature
  • Cabinet temperature
  • Drive loading
  • Cooling-air path
  • Fan operation
  • Dust accumulation
  • Heat generated by other components
  • Cabinet ventilation
  • Airflow direction

If multiple drives are installed in one enclosure, the combined heat load can become significant.

The cabinet may therefore require dedicated ventilation or other thermal-management provisions.


49. Maintenance Recommendations

Maintenance Item Recommended Attention
Cooling Fan Check operation and unusual noise
Heat Sink Keep clean
Cabinet Airflow Inspect regularly
Cabinet Filters Clean or replace when required
Power Connections Inspect for looseness
Grounding Check regularly
Motor Cable Inspect insulation and terminals
Braking Circuit Inspect resistor and wiring
Control Terminals Inspect connections
Fault History Check repeated faults
Parameters Maintain a configuration backup
Cabinet Temperature Monitor under operating load

Applications with frequent dynamic braking deserve additional attention to the braking components.


50. Product Advantages for Machine Builders

The model is well suited to machine builders because the PowerFlex 753 platform offers a consistent approach to motor control.

A machine design can use neighboring drive ratings without completely changing the overall control philosophy.

For example, different machines can use:

15 kW → 18.5 kW → 22 kW → 30 kW

drive ratings while remaining within the same general drive family.

This can simplify engineering and maintenance.


51. Product Advantages for System Integrators

For system integrators, the combination of:

  • Embedded I/O
  • PID capability
  • Flexible control
  • Dynamic braking
  • 690 VAC operation
  • Multiple drive ratings

provides a useful platform for industrial automation.

The drive can act as the motor-control layer between the electrical supply, motor and higher-level automation system.


52. Product Advantages for Maintenance

A standardized drive family can reduce the learning curve for maintenance personnel.

Once technicians are familiar with the PowerFlex 753 architecture, they can apply similar troubleshooting methods across multiple current ratings.

This can simplify:

  • Parameter backup
  • Drive replacement
  • Fault diagnosis
  • Commissioning
  • Spare-parts management
  • Preventive maintenance

The availability of closely related models also makes it easier to select a suitable replacement when the application changes.


53. Recommended Selection by Application

Requirement Recommended Model
Around 7.5 kW Normal Duty 20F1ANF012JN0NNNNN
Around 11 kW Normal Duty 20F1ANF015JN0NNNNN
Around 15 kW Normal Duty 20F1ANF020JN0NNNNN
Around 15 kW Heavy Duty 20F1ANF023JA0NNNNN
Around 18.5 kW Normal Duty 20F1ANF023JA0NNNNN
Around 18.5 kW Normal Duty without internal DB 20F1ANF023JN0NNNNN
Around 22 kW Normal Duty 20F1ANF030JN0NNNNN
Around 30 kW Normal Duty 20F1ANF034JN0NNNNN
Around 37 kW Normal Duty 20F1ANF046JN0NNNNN
Around 45 kW Normal Duty 20F1ANF050JN0NNNNN

The actual motor nameplate current and application duty should take priority over nominal kW matching.


54. Detailed Parameter Summary

Category Specification
Model 20F1ANF023JA0NNNNN
Brand Allen-Bradley
Series PowerFlex 753
Product Type Air-Cooled AC Drive
Voltage 690 VAC
Input 3 Phase
Output 3 Phase
Output Current 23 A
Normal Duty 18.5 kW
Heavy Duty 15 kW
Frame 6
Cooling Forced Air
Enclosure IP20/IP00 Open Type
Filtering Filtered
CM Jumper Installed
Dynamic Braking Internal DB Transistor
Input Configuration AC Input with Precharge
DC Terminals None
Embedded I/O Yes
PID Yes
HIM Blank / No HIM
Integrated Motion No
Safety Function Compatibility Yes
EMC Version Yes
Operating Temperature -20 to 60 °C
Storage Temperature -40 to 70 °C
Height 665.5 mm
Width 308 mm
Depth 346.4 mm
Dimensions 665.5 × 308 × 346.4 mm
Weight 48 kg
Mounting Cabinet / Panel
Main Applications Pumps, Fans, Blowers, Conveyors, Mixers, Material Handling
Main Configuration Feature CM Jumper Installed + Internal DB Transistor

55. Overall Product Evaluation

The 20F1ANF023JA0NNNNN is a strong medium-power industrial AC drive within the PowerFlex 753 family.

Its main electrical characteristics are straightforward:

690 VAC

3 Phase

23 A

18.5 kW Normal Duty

15 kW Heavy Duty

Frame 6

These ratings place it in a useful position for medium-sized industrial motor applications.

The configuration becomes especially attractive when the machine requires an internal dynamic-braking transistor.

This provides a practical foundation for applications that need controlled deceleration or that contain substantial rotating inertia.

The filtered configuration with the CM jumper installed is another important characteristic of this exact catalog number.

It means that the model should be distinguished from closely related configurations rather than selected purely by comparing voltage, current and kW ratings.

The physical construction is also important.

With approximate dimensions of 665.5 × 308 × 346.4 mm and an approximate weight of 48 kg, the drive requires appropriate cabinet space and mechanical support.

Its forced-air cooling system also means that ventilation and thermal management should be incorporated into the cabinet design from the beginning.

From an application perspective, the model is suitable for a broad range of equipment, including pumps, fans, blowers, conveyors, mixers, material-handling machinery and other industrial motor-driven systems.

For variable-torque equipment, the 18.5 kW Normal Duty rating is particularly useful.

For more demanding constant-torque applications, the 15 kW Heavy Duty rating should be used as the appropriate reference.

The internal dynamic-braking transistor gives the model an additional advantage over otherwise similar configurations when rapid or repeated deceleration is part of the machine’s operating cycle.

Overall, the 20F1ANF023JA0NNNNN can be regarded as a versatile 690 VAC industrial drive for medium-power motor applications, particularly where a combination of variable-speed control, embedded I/O, PID capability, forced-air cooling and dynamic-braking capability is required.



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