• Allen Bradley 20F14NF142JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F14NF142JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F14NF142JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F14NF142JN0NNNNN PowerFlex AC Drive
Allen-Bradley 20F14NF142JN0NNNNN — Detailed Product Specifications, Introduction, Applications, Advantages and Related Models The 20F14NF142JN0NNNNN is a high-power industrial AC drive from the PowerFle……
Allen Bradley 20F14NF142JN0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20F14NF142JN0NNNNN
  • PowerFlex AC Drive
  • USA
  • 665.5 × 308 × 346.4 mm
  • 38.555kg
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Allen-Bradley 20F14NF142JN0NNNNN — Detailed Product Specifications, Introduction, Applications, Advantages and Related Models

The 20F14NF142JN0NNNNN is a high-power industrial AC drive from the PowerFlex 753 series. It is designed for large three-phase motor applications where high output current, substantial motor power, adjustable speed, controlled acceleration, reliable process operation and industrial automation integration are required.

This model is a 690 VAC, three-phase PowerFlex 753 AC drive with a 142 A output rating. It provides a 132 kW Normal Duty rating and a 110 kW Heavy Duty rating, placing it toward the upper end of the 690 VAC PowerFlex 753 range.

The drive uses a Frame 6 mechanical construction and forced-air cooling. The specified configuration uses DC input with precharge, filtered operation, the common-mode capacitor jumper installed, embedded I/O, standard protection and a blank/no-HIM configuration.

The catalog number also indicates no internal dynamic-braking transistor. This is an important point when comparing the unit with closely related configurations that include a braking transistor.

The 20F14NF142JN0NNNNN is intended for large industrial equipment such as pumps, fans, blowers, conveyors, mixers, rollers, material-handling systems and process machinery.

Because of its 142 A rating and 132 kW Normal Duty capability, this model is particularly appropriate when a smaller 690 VAC drive is no longer sufficient but the application remains within the PowerFlex 753 690 VAC power range.

1. Product Basic Information

Parameter Specification
Model 20F14NF142JN0NNNNN
Brand Allen-Bradley
Product Family PowerFlex 750-Series
Product Series PowerFlex 753
Product Type Industrial AC Drive / Variable Frequency Drive
Drive Construction Air-Cooled AC Drive
Voltage Rating 690 VAC
Phase 3 Phase
Normal Duty Current 142 A
Normal Duty Power 132 kW
Heavy Duty Current 110 A
Heavy Duty Power 110 kW
Input Type DC Input with Precharge
Nominal DC Bus Class Approximately 932 VDC
Frame Size Frame 6
Cooling Forced Air
Enclosure Open Type, IP00/IP20 class depending on installation/configuration
Filtering Filtered
Common-Mode Capacitor Jumper Installed
Dynamic Braking None
Internal Dynamic-Braking Transistor No
HIM Blank / No HIM
Embedded I/O Yes
Protection Standard Protection
Typical Normal Duty Motor Class Up to 132 kW
Typical Heavy Duty Motor Class Up to 110 kW
Approx. Height 665.5 mm class
Approx. Width 308 mm class
Approx. Depth 346.4 mm class
Approx. Dimensions 665.5 × 308 × 346.4 mm
Net Product Weight Approx. 38.555 kg
Weight (kg) Approx. 38.555 kg
Installation Industrial Control Cabinet / Panel
Mounting Panel / Cabinet
Cooling Requirement Forced Air
Typical Applications Pumps, fans, blowers, conveyors, rollers, mixers and process machinery

The 38.555 kg figure is the net product-weight reference for the specified configuration.

For final lifting, cabinet-support and transportation calculations, the actual supplied unit and its packaging should be considered separately.

The approximate mechanical envelope of 665.5 × 308 × 346.4 mm is useful for preliminary cabinet planning, but the actual mechanical drawing should be used before finalizing mounting holes, cable-entry positions and service clearances.

2. Brand and Product Series

Brand: Allen-Bradley.

Product Family: PowerFlex 750-Series.

Product Series: PowerFlex 753.

The PowerFlex 753 series is an industrial architecture-class AC drive family designed for machine builders, system integrators and industrial plants that require more flexibility than a basic compact variable-frequency drive.

The series combines high-power motor control with embedded I/O and an expandable architecture.

The 20F14NF142JN0NNNNN represents one of the larger 690 VAC configurations in the PowerFlex 753 family.

Its combination of 142 A current capacity, 132 kW Normal Duty power and 110 kW Heavy Duty power makes it suitable for large industrial motor applications.

3. Product Introduction

The main function of the 20F14NF142JN0NNNNN is to control the speed and operation of a large three-phase AC motor.

A conventional motor connected directly to the power supply generally operates at a speed determined by the supply frequency and motor characteristics.

A variable-frequency drive changes the electrical conditions supplied to the motor so that motor speed can be adjusted according to the machine’s requirements.

This is especially valuable in industrial equipment because the required motor speed often changes during production.

A pump may need a lower speed when process demand decreases.

A fan may require different airflow at different production stages.

A conveyor may need controlled acceleration before reaching its production speed.

A mixer may need one speed during startup and another speed during processing.

A roller may need accurate speed control to maintain synchronization with other machinery.

The drive therefore acts as an important link between the industrial controller, the electrical power system and the motor.

4. Main Electrical Ratings

Electrical Parameter Normal Duty Heavy Duty
Model 20F14NF142JN0NNNNN 20F14NF142JN0NNNNN
Continuous Output Current 142 A 110 A
Power Rating 132 kW 110 kW
Voltage 690 VAC 690 VAC
Phase 3 Phase 3 Phase
Frame Frame 6 Frame 6
Cooling Forced Air Forced Air
Input DC Input with Precharge DC Input with Precharge
Dynamic Braking None None

The 142 A Normal Duty rating is the main electrical characteristic of this model.

At Normal Duty, the drive is rated for 132 kW.

For Heavy Duty operation, the continuous current rating is 110 A, corresponding to a 110 kW Heavy Duty rating.

This distinction is important because motor selection should be based on both the motor nameplate current and the actual mechanical load profile.

5. Normal Duty Operation

The 132 kW Normal Duty rating makes this drive appropriate for large industrial motors operating under relatively moderate overload conditions.

Typical Normal Duty applications include:

  • Large centrifugal pumps.
  • Large industrial fans.
  • Cooling-water systems.
  • Large blowers.
  • Continuous conveyors.
  • Circulation systems.
  • Process equipment with relatively stable torque.
  • Large material-handling systems.

Normal Duty does not mean that the drive cannot handle transient load changes.

It means that the application should be evaluated against the Normal Duty rating and its applicable overload characteristics rather than against the Heavy Duty rating.

6. Heavy Duty Operation

The Heavy Duty rating is 110 A / 110 kW.

Heavy Duty selection is important for applications that demand greater torque or experience more demanding operating cycles.

Typical Heavy Duty applications may include:

  • Heavy conveyors.
  • Mixers.
  • Agitators.
  • High-inertia machinery.
  • Machines with difficult starting conditions.
  • Equipment with frequent acceleration.
  • Equipment with repeated load changes.
  • Industrial process machinery.

For a 110 kW Heavy Duty motor, this model provides a useful capacity level when the actual motor nameplate current remains within the drive’s applicable rating.

7. 690 VAC Three-Phase Operation

The 20F14NF142JN0NNNNN is designed for a 690 VAC, three-phase electrical system.

This voltage class is particularly useful in large industrial installations.

When motor power increases, electrical current becomes a major design consideration.

A higher motor voltage can allow large amounts of power to be transferred with less current than would be required at a lower voltage.

This can influence:

  • Motor cable sizing.
  • Switchgear selection.
  • Power distribution.
  • Cabinet layout.
  • Protection equipment.
  • Motor selection.
  • System losses.
  • Electrical installation cost.

For this reason, the 690 VAC configuration is especially relevant to large motors and heavy industrial equipment.

8. DC Input with Precharge

The drive is configured for DC input with precharge.

The associated DC-bus class is approximately 932 VDC.

A DC-bus configuration can be useful in industrial systems where several drives or power-conversion devices are connected through a common DC architecture.

The precharge function is important because the DC bus contains substantial capacitance.

When the system is energized, the precharge process controls the initial charging behavior of the DC bus.

This becomes increasingly important in large industrial systems where several high-power devices may be connected to the same electrical infrastructure.

9. Dynamic Braking Configuration

The 20F14NF142JN0NNNNN has no internal dynamic-braking transistor.

This is one of the most important configuration characteristics of the model.

The absence of an internal braking transistor does not prevent the drive from being used in every application involving deceleration.

It simply means that the internal braking transistor is not included in this particular configuration.

Where substantial regenerative energy must be dissipated, the braking architecture needs to be designed separately.

10. Comparison with a Braking-Enabled Configuration

A closely related configuration can have the same general voltage, current and power class while adding an internal dynamic-braking transistor.

Feature 20F14NF142JN0NNNNN Braking-Enabled 142 A Configuration
Voltage 690 VAC 690 VAC
Normal Duty Current 142 A 142 A
Normal Duty Power 132 kW 132 kW
Heavy Duty Current 110 A 110 A
Heavy Duty Power 110 kW 110 kW
Frame 6 6
Cooling Forced Air Forced Air
Input DC + Precharge Configuration dependent
Filtering Filtered Filtered
CM Jumper Installed Installed
Internal DB Transistor None Available in suitable configuration
HIM Blank / No HIM Configuration dependent

The major difference is therefore not the basic motor-power rating.

It is the braking configuration.

This distinction should be considered during engineering rather than after the drive has already been installed.

11. High-Inertia Application Considerations

Large industrial machines can store significant kinetic energy.

Examples include:

  • Large fans.
  • Heavy rollers.
  • Large conveyors.
  • Centrifuges.
  • Large rotating drums.
  • Flywheel-type machinery.

When such equipment decelerates, the stored mechanical energy can return toward the drive’s DC bus.

If the energy causes the DC-bus voltage to rise beyond the appropriate operating range, the system needs a suitable method of managing the energy.

Depending on the application, this may involve:

  • Controlled deceleration.
  • Regenerative solutions.
  • External braking equipment.
  • Appropriate braking resistors.
  • Longer stopping times.
  • Mechanical braking systems.

Because the target model has no internal dynamic-braking transistor, these considerations are particularly important for high-inertia machinery.

12. Frame 6 Mechanical Construction

The drive uses a Frame 6 design.

Frame 6 is intended for large industrial applications and provides the physical platform required for this level of electrical capacity.

The approximate physical envelope is:

Height: 665.5 mm.

Width: 308 mm.

Depth: 346.4 mm.

Approximate dimensions: 665.5 × 308 × 346.4 mm.

Net weight: approximately 38.555 kg.

Mechanical Parameter Specification
Model 20F14NF142JN0NNNNN
Frame Frame 6
Height Approx. 665.5 mm
Width Approx. 308 mm
Depth Approx. 346.4 mm
Dimensions Approx. 665.5 × 308 × 346.4 mm
Net Product Weight Approx. 38.555 kg
Weight (kg) Approx. 38.555 kg
Enclosure Open Type
Cooling Forced Air
Installation Industrial Cabinet
Mounting Panel / Cabinet
Ventilation Required
Service Clearance Required

The cabinet should not be designed around the drive dimensions alone.

Additional space is required for:

  • Incoming power cables.
  • Motor cables.
  • Control wiring.
  • Communication wiring.
  • Grounding.
  • Ventilation.
  • Maintenance.
  • Inspection.
  • Service access.

13. Open-Type Enclosure

The product uses an Open Type construction.

Frame 6 drives of this type are normally integrated into an appropriately designed industrial enclosure or control cabinet.

The enclosure should provide protection against the surrounding environment.

Potential environmental concerns include:

  • Dust.
  • Moisture.
  • Oil mist.
  • Chemical contamination.
  • Excessive temperature.
  • Mechanical impact.
  • Unwanted foreign objects.

The enclosure should also be designed to maintain the required airflow around the drive.

14. Forced-Air Cooling

The 20F14NF142JN0NNNNN uses forced-air cooling.

At 132 kW Normal Duty, thermal management is a major engineering consideration.

The cabinet needs a suitable airflow path.

Cooling fans and ventilation openings should be kept clear.

Filters should be maintained when the cabinet uses filtered air.

Cooling Parameter Consideration
Model 20F14NF142JN0NNNNN
Cooling Method Forced Air
Cabinet Ventilation Required
Airflow Must remain unobstructed
Cooling Fans Preventive maintenance required
Cabinet Temperature Must remain within allowable limits
Heat Dissipation Must be considered
Air Filters Inspect and maintain where applicable
Nearby Heat Sources Must be considered
Service Access Required

High-power drives should never be treated as though they generate negligible heat.

The cabinet’s thermal design should be completed before final installation.

15. Filtering and Common-Mode Capacitor Configuration

The model uses a filtered configuration with the common-mode capacitor jumper installed.

This configuration affects the drive’s electrical characteristics and should be considered as part of the complete installation.

The engineering design should include:

  • Grounding.
  • Motor-cable routing.
  • Shielding.
  • Cable length.
  • Separation between power and control wiring.
  • Cabinet grounding.
  • Motor insulation.
  • Electrical-noise considerations.

Correct cable installation can be particularly important when a high-power variable-frequency drive is installed close to sensitive control equipment.

16. Embedded I/O

The PowerFlex 753 platform includes embedded I/O.

This allows the drive to handle a variety of common control signals without requiring every signal to pass through separate external interface equipment.

Typical functions may include:

  • Start.
  • Stop.
  • Enable.
  • Speed reference.
  • Fault indication.
  • Drive status.
  • Digital commands.
  • Analog signals.

Embedded I/O can help simplify machine wiring and reduce the amount of additional control hardware required for basic drive functions.

17. Communication and Automation Integration

The PowerFlex 753 architecture can be integrated into a broader industrial control system using suitable communication options.

A typical arrangement can be:

PLC → Industrial Network → PowerFlex 753 → Motor

A more complete system can include:

HMI → PLC → Network → Drive → Motor

The drive can then become part of a coordinated production system.

Typical information exchanged with the control system can include:

  • Speed reference.
  • Actual speed.
  • Run status.
  • Fault status.
  • Current.
  • Operating condition.
  • Control commands.
  • Diagnostic information.

This makes the drive useful for automated manufacturing and process systems.

18. Motor-Control Capability

The PowerFlex 753 platform is designed for flexible motor control.

Depending on the application and selected options, the platform can support control methods such as:

  • Volts-per-Hertz control.
  • Sensorless vector control.
  • Vector control.
  • Encoder-based feedback control.
  • Speed regulation.
  • Torque-oriented control.

This flexibility is useful because not every machine has the same motor-control requirements.

A simple centrifugal fan may need straightforward variable-speed operation.

A large conveyor may require more precise acceleration and speed regulation.

A production roller may require feedback and coordination with other drives.

19. Product Application — Large Pumps

Large pumps are a natural application for the 20F14NF142JN0NNNNN.

Industrial pumping systems often operate under changing process conditions.

The drive can adjust motor speed according to the required process flow.

Potential applications include:

  • Cooling-water pumps.
  • Industrial water pumps.
  • Process-fluid pumps.
  • Transfer pumps.
  • Circulation systems.
  • Water-treatment equipment.
  • Industrial utility systems.
  • Large process pumps.

Variable-speed control can also provide smoother startup than direct-on-line motor starting.

20. Product Application — Large Fans

Large industrial fans can require significant motor power, especially when operating continuously.

The drive can vary fan speed according to actual ventilation demand.

Applications can include:

  • Factory ventilation.
  • Industrial exhaust.
  • Furnace ventilation.
  • Cooling systems.
  • Dust collection.
  • Process ventilation.
  • Air-handling systems.
  • Industrial HVAC equipment.

The ability to reduce motor speed when full airflow is not required can be valuable in variable-demand systems.

21. Product Application — Large Blowers

Industrial blowers often require controlled airflow and pressure.

The drive can provide adjustable blower speed while the larger control system manages the process.

Typical applications include:

  • Pneumatic conveying.
  • Process air.
  • Industrial drying.
  • Dust collection.
  • Combustion air.
  • Furnace systems.
  • Chemical processing.
  • Manufacturing processes.

The actual blower torque curve should be checked before selecting Normal Duty or Heavy Duty operation.

22. Product Application — Large Conveyor Systems

Large conveyors can have considerable motor-power requirements.

The drive provides controlled acceleration and adjustable running speed.

Potential benefits include:

  • Reduced mechanical shock.
  • Controlled startup.
  • Adjustable production speed.
  • Improved process coordination.
  • Controlled stopping.
  • Easier integration with other production equipment.

Potential applications include:

  • Mining.
  • Bulk material handling.
  • Manufacturing.
  • Warehousing.
  • Processing plants.
  • Transfer systems.
  • Heavy industrial logistics.

For high-inertia conveyors, the braking system should receive special attention because this configuration does not contain an internal dynamic-braking transistor.

23. Product Application — Rollers

Large industrial rollers often require stable and repeatable speed control.

Examples include:

  • Steel-processing rollers.
  • Paper-processing equipment.
  • Printing lines.
  • Packaging equipment.
  • Web-handling systems.
  • Material-processing machinery.
  • Production-line rollers.

Where several rollers operate together, feedback and communication can be used to improve synchronization and process consistency.

24. Product Application — Mixers and Agitators

Large mixers can require high torque during startup.

The material inside the tank or vessel may also change the load during operation.

The drive can provide controlled acceleration and adjustable speed.

Applications include:

  • Chemical processing.
  • Food processing.
  • Batch production.
  • Material preparation.
  • Industrial tanks.
  • Process machinery.
  • Manufacturing.

For machines with particularly high breakaway torque, Heavy Duty selection should be evaluated carefully.

25. Product Application — Process Machinery

The 20F14NF142JN0NNNNN can be used in many types of process machinery.

Examples include:

  • Production lines.
  • Processing equipment.
  • Packaging machinery.
  • Manufacturing systems.
  • Material-processing equipment.
  • Large auxiliary machinery.
  • Industrial production equipment.

Its modular architecture makes it useful when the machine needs more than basic speed control.

26. Product Application — Material Handling

Material-handling systems often use multiple motors and multiple drives.

The PowerFlex 753 architecture can be useful in these installations because each drive can be integrated into a larger control system.

Applications may include:

  • Transfer conveyors.
  • Heavy-duty conveyors.
  • Sorting systems.
  • Bulk-material systems.
  • Production-line transport.
  • Warehouse handling equipment.

Coordination between drives can be important when several motors operate as part of the same mechanical process.

27. Main Product Advantages

High 142 A Current Capacity

The 142 A rating is one of the most important advantages of this model.

It places the drive above the 119 A configuration and provides additional capacity for larger motors.

This is particularly valuable when the motor current approaches the upper limit of a smaller drive.

132 kW Normal Duty

The 132 kW Normal Duty rating provides a substantial capacity for large industrial motors.

It is suitable for applications such as large pumps, fans, blowers and continuously operating process equipment.

110 kW Heavy Duty

The 110 kW Heavy Duty rating makes the drive suitable for demanding applications where greater torque or overload performance is required.

This is particularly useful for heavy conveyors, mixers and other torque-demanding equipment.

690 VAC Operation

The 690 VAC rating allows the drive to be used in high-power industrial motor systems.

This is one of the defining characteristics of the model.

DC Input with Precharge

The DC input with precharge configuration provides flexibility for industrial DC-bus and common-bus applications.

It can be particularly useful where multiple power-conversion devices need to share a DC power architecture.

Embedded I/O

Embedded I/O simplifies basic control-system integration.

It allows common machine signals to be connected directly to the drive.

Modular Architecture

The PowerFlex 753 architecture allows the drive to be configured for different machine requirements.

Depending on the application, suitable options can provide:

  • Communication.
  • Feedback.
  • Additional I/O.
  • Safety functions.
  • Advanced control.
  • Monitoring.

Industrial Automation Integration

The drive can be integrated into PLC-based automation systems.

This makes it suitable for modern industrial equipment where the motor drive is part of a larger control architecture.

28. Advantages for Large Industrial Machines

The 20F14NF142JN0NNNNN is particularly valuable when the machine is too large for a compact VFD.

The 142 A output class provides substantial electrical capacity.

The 132 kW Normal Duty rating allows the drive to handle large motors.

The 110 kW Heavy Duty rating provides a useful capability for more demanding loads.

The 690 VAC voltage class is suitable for high-power motor systems.

The PowerFlex 753 architecture provides expansion capabilities that can be valuable when the machine needs communication, feedback or additional I/O.

29. Advantages for Machine Builders

For machine builders, a standardized drive family can simplify engineering.

Using a common drive platform across multiple machines can help reduce the variety of:

  • Programming methods.
  • Spare parts.
  • Communication configurations.
  • Maintenance procedures.
  • Training requirements.
  • Troubleshooting methods.

The PowerFlex 753 family is particularly useful when several machines have different motor sizes but similar control architectures.

30. Advantages for Maintenance

The drive’s industrial architecture provides a familiar platform for maintenance teams working with multiple PowerFlex installations.

Maintenance activities can include:

  • Cooling-fan inspection.
  • Cabinet inspection.
  • Cable inspection.
  • Grounding inspection.
  • Fault-history review.
  • Parameter verification.
  • Communication checks.
  • Motor-cable inspection.

A standardized drive platform can make troubleshooting more efficient because technicians can apply similar procedures across different machines.

31. Complete Technical Parameter Table

Parameter 20F14NF142JN0NNNNN
Brand Allen-Bradley
Product Family PowerFlex 750-Series
Product Series PowerFlex 753
Product Type Industrial AC Drive
Voltage 690 VAC
Phase 3 Phase
Normal Duty Current 142 A
Normal Duty Power 132 kW
Heavy Duty Current 110 A
Heavy Duty Power 110 kW
Input Type DC Input with Precharge
DC Bus Class Approximately 932 VDC
Cooling Forced Air
Frame Frame 6
Enclosure Open Type
IP Class IP00/IP20 configuration dependent
Filtering Filtered
Common-Mode Capacitor Jumper Installed
Dynamic Braking None
Internal Dynamic-Braking Transistor No
HIM Blank / No HIM
Embedded I/O Yes
Protection Standard Protection
Communication Expansion Available
Feedback Expansion Available
Approx. Height 665.5 mm
Approx. Width 308 mm
Approx. Depth 346.4 mm
Approx. Dimensions 665.5 × 308 × 346.4 mm
Net Product Weight Approx. 38.555 kg
Weight (kg) Approx. 38.555 kg
Installation Industrial Control Cabinet
Mounting Panel / Cabinet
Cooling Clearance Required
Service Clearance Required
Normal Duty Motor Class Up to 132 kW
Heavy Duty Motor Class Up to 110 kW
Typical Applications Pumps, fans, blowers, conveyors, rollers, mixers and process machinery

32. Dimensions and Weight

Mechanical Parameter Specification
Model 20F14NF142JN0NNNNN
Frame Frame 6
Height Approx. 665.5 mm
Width Approx. 308 mm
Depth Approx. 346.4 mm
Overall Dimensions Approx. 665.5 × 308 × 346.4 mm
Net Product Weight Approx. 38.555 kg
Weight (kg) Approx. 38.555 kg
Enclosure Open Type
Cooling Forced Air
Mounting Vertical Panel / Cabinet
Cabinet Ventilation Required
Service Space Required

The physical dimensions should be used for preliminary cabinet planning.

The actual installation should allow additional space around the drive for power terminals, motor cables, control wiring, airflow and maintenance access.

The 38.555 kg net weight should not be confused with the total shipping weight.

33. Five Recommended Same-Series or Closely Related Models

The following models are useful choices for comparison because they are within the PowerFlex 753 family and cover nearby power levels or closely related configurations.

Model Series Voltage ND Current ND Power HD Current HD Power Dynamic Braking Frame Approx. Dimensions Weight (kg)
20F14NF082JN0NNNNN PowerFlex 753 690 VAC 82 A 75 kW 61 A 55 kW None 6 Frame 6 class Approx. 38.555
20F14NF098JN0NNNNN PowerFlex 753 690 VAC 98 A 90 kW 82 A 75 kW None 6 Frame 6 class Approx. 38.555
20F14NF119JN0NNNNN PowerFlex 753 690 VAC 119 A 110 kW 98 A 90 kW None 6 Frame 6 class Approx. 38.555
20F14NF119JA0NNNNN PowerFlex 753 690 VAC 119 A 110 kW 98 A 90 kW Internal DB Transistor 6 Frame 6 class Approx. 38.555
20F14NF142JN0NNNNN PowerFlex 753 690 VAC 142 A 132 kW 110 A 110 kW None 6 Approx. 665.5 × 308 × 346.4 mm 38.555

These models form a useful progression around the target product.

The 82 A configuration is suitable for applications around 75 kW Normal Duty.

The 98 A configuration increases the Normal Duty rating to 90 kW.

The 119 A configuration provides 110 kW Normal Duty.

The 119 A JA configuration provides the same basic power capacity with an internal dynamic-braking transistor.

The target 142 A model increases the Normal Duty rating to 132 kW and the Heavy Duty rating to 110 kW.

34. Same-Series Electrical Comparison

Model ND Current ND Power HD Current HD Power Dynamic Braking
20F14NF082JN0NNNNN 82 A 75 kW 61 A 55 kW None
20F14NF098JN0NNNNN 98 A 90 kW 82 A 75 kW None
20F14NF119JN0NNNNN 119 A 110 kW 98 A 90 kW None
20F14NF119JA0NNNNN 119 A 110 kW 98 A 90 kW Internal DB Transistor
20F14NF142JN0NNNNN 142 A 132 kW 110 A 110 kW None

The target model represents the next major step above the 119 A configuration.

Normal Duty power increases from 110 kW to 132 kW.

Heavy Duty power increases from 90 kW to 110 kW.

This makes the 142 A configuration especially useful when a 119 A drive is approaching its current limit.

35. Five Same-Brand Popular or Related Models

The following models are useful for comparing the target drive with other products in the same brand portfolio.

Model Series Voltage Class Current Class Typical Power Class Cooling Product Position Approx. Dimensions Weight (kg)
25B-D017N104 PowerFlex 525 480 VAC Class 17 A Approx. 7.5 kW Air Cooled Compact industrial drive Approx. 200 × 300 × 180 mm Approx. 5
25B-D024N104 PowerFlex 525 480 VAC Class 24 A Approx. 11 kW Air Cooled Compact industrial drive Approx. 230 × 350 × 190 mm Approx. 6–8
25B-D043N114 PowerFlex 525 480 VAC Class 43 A Approx. 22 kW Air Cooled Medium machine drive Approx. 250 × 400 × 220 mm Approx. 10–15
20F11NC043JA0NNNNN PowerFlex 753 480 VAC Class 43 A Approx. 22 kW Air Cooled Industrial architecture drive Frame dependent Approx. 30–45
20G11NC043JA0NNNNN PowerFlex 755 480 VAC Class 43 A Approx. 22 kW Air Cooled Advanced industrial drive Frame dependent Approx. 30–45

These products are useful for portfolio comparison rather than direct substitution.

The PowerFlex 525 models are generally intended for smaller machines.

The PowerFlex 753 is a better fit for larger industrial equipment.

The PowerFlex 755 family is useful when more advanced control functions are required.

The voltage class must always be checked before considering a different model as a replacement.

36. Comparison with the 20F14NF119JN0NNNNN

Parameter 20F14NF119JN0NNNNN 20F14NF142JN0NNNNN
Voltage 690 VAC 690 VAC
ND Current 119 A 142 A
ND Power 110 kW 132 kW
HD Current 98 A 110 A
HD Power 90 kW 110 kW
Frame 6 6
Cooling Forced Air Forced Air
Input DC + Precharge DC + Precharge
Filtering Filtered Filtered
CM Jumper Installed Installed
Dynamic Braking None None
Approx. Dimensions Frame 6 class Approx. 665.5 × 308 × 346.4 mm
Weight (kg) Approx. 38.555 Approx. 38.555

The 142 A model provides a meaningful increase over the 119 A model.

Normal Duty power increases by 22 kW.

Heavy Duty power increases by 20 kW.

This can be important when the motor current is too high for the 119 A model but remains within the 142 A model’s applicable rating.

37. Comparison with the 20F14NF098JN0NNNNN

Parameter 20F14NF098JN0NNNNN 20F14NF142JN0NNNNN
Voltage 690 VAC 690 VAC
ND Current 98 A 142 A
ND Power 90 kW 132 kW
HD Current 82 A 110 A
HD Power 75 kW 110 kW
Frame 6 6
Cooling Forced Air Forced Air
Input DC + Precharge DC + Precharge
Dynamic Braking None None
Filtering Filtered Filtered
CM Jumper Installed Installed
Approx. Dimensions Frame 6 class Approx. 665.5 × 308 × 346.4 mm
Weight (kg) Approx. 38.555 Approx. 38.555

The 142 A configuration is substantially larger electrically than the 98 A configuration.

The Normal Duty capacity increases from 90 kW to 132 kW.

The Heavy Duty capacity increases from 75 kW to 110 kW.

This makes the target model particularly useful for motors that cannot be comfortably handled by the smaller 98 A configuration.

38. Comparison with the 20F14NF119JA0NNNNN

Parameter 20F14NF119JA0NNNNN 20F14NF142JN0NNNNN
Voltage 690 VAC 690 VAC
ND Current 119 A 142 A
ND Power 110 kW 132 kW
HD Current 98 A 110 A
HD Power 90 kW 110 kW
Frame 6 6
Cooling Forced Air Forced Air
Dynamic Braking Internal DB Transistor None
Input DC + Precharge DC + Precharge
Filtering Filtered Filtered
CM Jumper Installed Installed
Approx. Dimensions Frame 6 class Approx. 665.5 × 308 × 346.4 mm
Weight (kg) Approx. 38.555 Approx. 38.555

This comparison illustrates an important selection issue.

The target 142 A model provides higher electrical capacity.

The 119 A JA model provides lower electrical capacity but includes an internal dynamic-braking transistor.

Therefore, the correct choice depends on both motor requirements and braking requirements.

A higher-current drive is not automatically the best choice if the machine requires a specific braking configuration.

39. Motor Selection Considerations

Motor selection should always begin with the actual motor nameplate.

Important parameters include:

Motor Parameter Selection Consideration
Motor Voltage Must be suitable for the 690 VAC system
Motor Current Must remain within the applicable drive rating
Motor Power Compare against 132 kW ND / 110 kW HD
Motor Frequency Verify operating requirements
Motor Speed Check required speed range
Starting Torque Evaluate carefully
Continuous Torque Check thermal requirements
Peak Torque Check overload requirements
Motor Type Confirm compatibility
Feedback Determine whether encoder feedback is needed
Braking Evaluate regenerative energy
Motor Cable Consider cable length
Environment Consider temperature, dust, moisture and vibration

A 132 kW Normal Duty motor can be considered with this drive when the actual motor current and load profile are within the applicable rating.

A 110 kW Heavy Duty motor can also be considered where the current requirement remains within the Heavy Duty rating.

40. Application Selection Guide

Application Suitability Main Consideration
Large centrifugal pump Excellent Normal Duty
Large industrial fan Excellent Speed regulation
Large blower Excellent Process airflow
Large conveyor Excellent Starting torque and braking
Large roller Excellent Speed and inertia
Mixer Very Good Breakaway torque
Agitator Very Good Torque profile
Process machinery Excellent Communication and control
Material handling Excellent Acceleration/deceleration
High-inertia machinery Good with suitable braking architecture Regenerative energy
Rapid-cycle equipment Application dependent Braking and thermal duty
Large production machinery Excellent System integration

41. Typical Industrial Control Architecture

A typical system can be arranged as:

PLC / Controller → Industrial Network → PowerFlex 753 → Motor → Machine

A more complete system can include:

HMI → PLC → Industrial Network → Drive → Motor

Feedback can be added where required:

Encoder → Feedback Interface → Drive

For a machine requiring braking, an appropriate external braking architecture can be evaluated because the target configuration does not include an internal dynamic-braking transistor.

42. Typical Industries

Industry Typical Application
Mining Large conveyors and material handling
Metals Rollers and processing machinery
Paper Rollers and production lines
Water Treatment Large pumps
Chemical Processing Pumps and mixers
Manufacturing Large production equipment
Food Processing Mixers and conveyors
Industrial HVAC Fans and blowers
Utilities Pumps and auxiliary systems
Material Handling Conveyors and transfer systems
General Process Industry Pumps, fans, blowers and mixers

43. Installation Considerations

The physical size of the drive should be considered during cabinet design.

The approximate Frame 6 dimensions are:

665.5 mm × 308 mm × 346.4 mm.

The net product weight is approximately:

38.555 kg.

The cabinet must provide adequate support and sufficient clearance.

Electrical connections should be planned before the cabinet is fabricated.

The following areas should be considered:

  • Incoming power.
  • Motor output.
  • DC-bus connections.
  • Control wiring.
  • Communication wiring.
  • Grounding.
  • Ventilation.
  • Maintenance access.
  • Braking equipment where applicable.

The drive should not be installed in a cabinet where airflow is restricted.

The heat generated during continuous operation needs to be included in the cabinet thermal calculation.

44. Maintenance Considerations

Regular maintenance should include inspection of:

  • Cooling fans.
  • Airflow openings.
  • Cabinet filters.
  • Power terminals.
  • Grounding connections.
  • Motor cables.
  • Control wiring.
  • Communication connections.
  • Fault history.
  • Cabinet temperature.

Dust accumulation can reduce airflow.

Loose electrical connections can increase resistance and heat.

A dirty cooling system can result in higher operating temperatures.

For high-power equipment, preventive maintenance can therefore have a direct impact on long-term reliability.

45. Main Advantages at a Glance

Advantage Practical Benefit
142 A Output High-capacity motor control
132 kW Normal Duty Suitable for large motors
110 A Heavy Duty Strong high-torque capacity
110 kW Heavy Duty Suitable for demanding 110 kW applications
690 VAC High-voltage industrial motor compatibility
Frame 6 Large industrial construction
Forced-Air Cooling Suitable for high-power operation
DC Input with Precharge Supports DC-bus architectures
Filtered Configuration Supports electrical-noise management
CM Jumper Installed Defined common-mode configuration
Embedded I/O Simplifies basic machine integration
Modular Architecture Supports additional functions
Communication Options Supports automation systems
Feedback Options Supports more advanced motor control
No Internal DB Transistor Suitable when internal dynamic braking is not required
PowerFlex 753 Platform Provides a standardized industrial drive architecture

46. Five Same-Series Models — Detailed Recommendation Table

Model Voltage ND Current ND Power HD Current HD Power Dynamic Braking Frame Approx. Dimensions Weight (kg)
20F14NF082JN0NNNNN 690 VAC 82 A 75 kW 61 A 55 kW None 6 Frame 6 class Approx. 38.555
20F14NF098JN0NNNNN 690 VAC 98 A 90 kW 82 A 75 kW None 6 Frame 6 class Approx. 38.555
20F14NF119JN0NNNNN 690 VAC 119 A 110 kW 98 A 90 kW None 6 Frame 6 class Approx. 38.555
20F14NF119JA0NNNNN 690 VAC 119 A 110 kW 98 A 90 kW Internal DB Transistor 6 Frame 6 class Approx. 38.555
20F14NF142JN0NNNNN 690 VAC 142 A 132 kW 110 A 110 kW None 6 Approx. 665.5 × 308 × 346.4 mm 38.555

These five models provide a practical comparison around the target product.

The 82 A model is suitable for approximately 75 kW Normal Duty applications.

The 98 A model increases capacity to 90 kW Normal Duty.

The 119 A model provides 110 kW Normal Duty.

The 119 A JA configuration provides the same basic current class with internal dynamic braking.

The 142 A target model provides the highest current and power rating among this particular comparison group.

47. Five Same-Brand Popular or Related Models

Model Series Voltage Class Current Class Typical Power Class Cooling Product Position Approx. Dimensions Weight (kg)
25B-D017N104 PowerFlex 525 480 VAC Class 17 A Approx. 7.5 kW Air Cooled Compact industrial drive Approx. 200 × 300 × 180 mm Approx. 5
25B-D024N104 PowerFlex 525 480 VAC Class 24 A Approx. 11 kW Air Cooled Compact industrial drive Approx. 230 × 350 × 190 mm Approx. 6–8
25B-D043N114 PowerFlex 525 480 VAC Class 43 A Approx. 22 kW Air Cooled Medium machine drive Approx. 250 × 400 × 220 mm Approx. 10–15
20F11NC043JA0NNNNN PowerFlex 753 480 VAC Class 43 A Approx. 22 kW Air Cooled Industrial architecture drive Frame dependent Approx. 30–45
20G11NC043JA0NNNNN PowerFlex 755 480 VAC Class 43 A Approx. 22 kW Air Cooled Advanced industrial drive Frame dependent Approx. 30–45

These five products represent different application levels within the same brand portfolio.

The PowerFlex 525 models are more compact and generally suited to smaller equipment.

The PowerFlex 753 is intended for larger industrial machinery.

The PowerFlex 755 family is appropriate for applications where more advanced control and system functionality may be required.

They should not be regarded as direct electrical replacements for the 690 VAC target model without checking the complete application requirements.

48. PowerFlex 525 and PowerFlex 753 Comparison

Characteristic PowerFlex 525 PowerFlex 753
Product Position Compact industrial drive Architecture-class industrial drive
Typical Motor Size Small to medium Medium to large
Physical Size Compact Large
690 VAC Capability Not the main configuration Available
Embedded I/O Yes Yes
Modular Architecture More limited Extensive
Communication Available Extensive options
Feedback Application dependent Available
Cabinet Requirement Smaller Larger
Typical Application Compact machines Large industrial machinery
Target Product 20F14NF142JN0NNNNN

The PowerFlex 525 is normally more appropriate where compact size and lower motor power are priorities.

The PowerFlex 753 becomes more appropriate as motor size, control requirements and system complexity increase.

49. PowerFlex 753 and PowerFlex 755 Comparison

Feature PowerFlex 753 PowerFlex 755
Industrial Motor Control Yes Yes
Speed Control Yes Yes
Torque Control Yes Yes
Modular Architecture Yes Yes
Feedback Available Available
Communication Available Extensive
I/O Expansion Available Available
Safety Functions Available with suitable options Available with suitable options
Typical Application Industrial machinery Advanced industrial machinery
Control Complexity Intermediate to advanced Advanced
Target Product 20F14NF142JN0NNNNN Related alternative

The PowerFlex 753 is well suited to large industrial machines.

The PowerFlex 755 family may be considered when the application requires more advanced motion, positioning or system-control functions.

50. Catalog Number Configuration

The catalog number 20F14NF142JN0NNNNN contains several important configuration details.

The product belongs to the PowerFlex 753 family.

The voltage class is 690 VAC.

The 142 designation identifies the 142 A current class.

The drive uses DC input with precharge.

The unit is configured as an open-type, air-cooled drive.

The filtering configuration is filtered with the common-mode capacitor jumper installed.

The dynamic-braking configuration is none.

The HIM configuration is blank/no HIM.

The remaining configuration positions represent the specified option selections for this particular catalog number.

51. Why the 142 A Model Is Useful

The 142 A model is particularly useful when a motor application has outgrown the 119 A configuration.

The difference is not merely a small increase in current.

The Normal Duty power rating increases from 110 kW to 132 kW.

The Heavy Duty power rating increases from 90 kW to 110 kW.

This can make the 142 A model a practical step for large industrial equipment where the 119 A model is approaching its rating.

52. When the 119 A Model May Still Be Better

A larger drive is not automatically a better drive.

If the motor current is comfortably below the 119 A rating and the application does not require additional capacity, the smaller model may be more economical and may provide sufficient performance.

The 142 A model becomes more attractive when:

  • Motor current approaches 119 A.
  • Motor power is around 132 kW.
  • Heavy Duty operation approaches 110 kW.
  • The load requires additional current margin.
  • Future capacity expansion is anticipated.
  • The application has demanding operating conditions.

The final selection should always be based on the actual motor nameplate and load profile.

53. When an Alternative Braking Configuration Should Be Considered

The target model has no internal dynamic-braking transistor.

A braking-enabled configuration should be considered when the application requires:

  • Rapid stopping.
  • High braking torque.
  • Frequent deceleration.
  • High-inertia load management.
  • Controlled stopping of large rotating equipment.
  • Significant regenerative-energy dissipation.

For applications where the motor normally accelerates slowly and coasts to a stop, the lack of an internal braking transistor may not be a problem.

The machine’s actual stopping requirements should determine the correct configuration.

54. Recommended Selection by Application

Application Requirement Recommended Direction
Around 75 kW Normal Duty 20F14NF082JN0NNNNN
Around 90 kW Normal Duty 20F14NF098JN0NNNNN
Around 110 kW Normal Duty 20F14NF119JN0NNNNN
Around 110 kW ND with internal DB transistor 20F14NF119JA0NNNNN
Around 132 kW Normal Duty 20F14NF142JN0NNNNN
Around 110 kW Heavy Duty 20F14NF142JN0NNNNN
High-inertia application requiring integrated DB transistor Consider braking-enabled configuration
Larger than 132 kW ND Consider higher-capacity drive class

55. Overall Product Evaluation

The 20F14NF142JN0NNNNN is a high-capacity industrial AC drive designed for large three-phase motor applications.

Its primary electrical rating is 142 A Normal Duty, corresponding to 132 kW Normal Duty.

Its Heavy Duty rating is 110 A / 110 kW.

This makes it a substantial step above the 119 A / 110 kW Normal Duty configuration.

The 690 VAC three-phase design makes the drive suitable for large industrial motor systems where high-power operation and appropriate electrical distribution architecture are required.

The Frame 6 mechanical design provides a large industrial platform.

The approximate dimensions are 665.5 × 308 × 346.4 mm, with a net product weight of approximately 38.555 kg.

The drive is forced-air cooled, so cabinet ventilation and thermal management are important.

The open-type construction also means that suitable enclosure protection should be provided as part of the overall installation.

The DC input with precharge configuration makes the drive useful for applications involving DC-bus or common-bus power architectures.

The filtered configuration and common-mode capacitor jumper setting should be considered when designing the complete electrical system.

The embedded I/O provides a practical interface for machine control.

Communication and feedback options can extend the drive’s capabilities and allow it to become part of a larger industrial automation system.

One important limitation of the exact 20F14NF142JN0NNNNN configuration is that it has no internal dynamic-braking transistor.

This does not prevent the drive from being used in many industrial applications.

For pumps, fans and other equipment that does not require aggressive braking, this configuration can be perfectly appropriate.

For large high-inertia equipment requiring frequent and rapid deceleration, the braking architecture should be evaluated carefully.

A braking-enabled configuration may be more suitable in those cases.

The PowerFlex 753 platform is especially attractive for large industrial machines because it combines high-power motor control with an expandable architecture.

The drive can be used for pumps, fans, blowers, conveyors, rollers, mixers, material-handling equipment and process machinery.

For a 132 kW Normal Duty motor, this model is a natural candidate when the motor nameplate current and application duty are compatible with the 142 A rating.

For a 110 kW Heavy Duty motor, it also provides an appropriate high-power class when the actual current requirements are within the Heavy Duty rating.

In practical terms, the product can be summarized as a 690 VAC, three-phase, 142 A, 132 kW Normal Duty / 110 kW Heavy Duty, Frame 6, forced-air-cooled PowerFlex 753 industrial AC drive with DC input and precharge, filtered configuration, common-mode capacitor jumper installed, embedded I/O, standard protection, blank/no-HIM configuration and no internal dynamic-braking transistor.

Its high current capacity, high motor-power rating, 690 VAC compatibility, modular industrial architecture and automation-integration capability make it a strong choice for large industrial motor systems where dependable variable-speed control is required.

For applications around 132 kW Normal Duty or 110 kW Heavy Duty, the 20F14NF142JN0NNNNN provides a particularly useful combination of capacity and industrial control functionality.

The most important points to remember when selecting this model are the 142 A current rating, 132 kW Normal Duty rating, 110 kW Heavy Duty rating, 690 VAC three-phase input class, Frame 6 construction, forced-air cooling, approximately 665.5 × 308 × 346.4 mm physical envelope, approximately 38.555 kg net product weight, DC input with precharge, filtered configuration, and absence of an internal dynamic-braking transistor.



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