• Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive
Allen-Bradley 20F1ANF119JN0NNNNN — Detailed Product Specifications, Introduction, Applications, Advantages and Model Recommendations 1. Product Overview The Allen-Bradley 20F1ANF119JN0NNNNN is a high-po……
Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20F1ANF119JN0NNNNN
  • PowerFlex AC Drive
  • USA
  • 665.5 × 308 × 346.4 mm
  • 38.6kg
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Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive

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

Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive

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Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive

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

Allen Bradley 20F1ANF119JN0NNNNN PowerFlex AC Drive

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Allen-Bradley 20F1ANF119JN0NNNNN — Detailed Product Specifications, Introduction, Applications, Advantages and Model Recommendations

1. Product Overview

The Allen-Bradley 20F1ANF119JN0NNNNN is a high-power PowerFlex 753 AC variable-frequency drive designed for large three-phase industrial motor applications.

It is a 690 VAC, three-phase, 119 A drive with a 110 kW Normal Duty rating and a 90 kW Heavy Duty rating. The unit uses a Frame 6, forced-air-cooled, open-type construction and is intended for installation in an appropriate electrical cabinet or industrial control enclosure.

This configuration includes embedded I/O, PID capability, a filtered input configuration with the CM jumper installed, and AC input with precharge and no DC terminals.

The model has no internal dynamic-braking transistor and is supplied in a blank/no-HIM configuration. This makes it particularly appropriate for installations where the drive is controlled and monitored through a PLC, HMI, industrial communication network, or centralized automation system rather than by a permanently installed local keypad.

The 119 A version occupies an important position in the 690 VAC PowerFlex 753 range. It provides more capacity than the 98 A configuration while remaining within the same general Frame 6 power class.


2. Brand and Series

Item Specification
Brand Allen-Bradley
Product Family PowerFlex
Series PowerFlex 753
Product Type AC Variable-Frequency Drive
Catalog Number 20F1ANF119JN0NNNNN
Voltage Class 690 VAC
Input 3-Phase AC
Output 3-Phase AC
Output Current 119 A
Normal Duty Rating 110 kW
Heavy Duty Rating 90 kW
Frame Frame 6
Cooling Forced Air
Enclosure Open Type
Embedded I/O Yes
PID Capability Yes
Dynamic Braking None
Internal Dynamic-Braking Transistor No
Filtering Filtered
CM Jumper Installed
HIM Blank / No HIM
Integrated Motion No

The PowerFlex 753 series is designed for general-purpose industrial motor control where adjustable-speed operation, integrated I/O, process control and automation-system integration are important.

The 20F1ANF119JN0NNNNN is intended for relatively large motors and industrial mechanical systems. Its 119 A output-current rating makes it suitable for applications that have moved beyond the capacity of smaller PowerFlex 753 configurations.


3. Main Technical Parameters

Parameter Specification
Model 20F1ANF119JN0NNNNN
Brand Allen-Bradley
Series PowerFlex 753
Product Type AC Variable-Frequency Drive
Input Voltage 690 VAC
Input Phase 3 Phase
Output Phase 3 Phase
Nominal Output Current 119 A
Normal Duty Rating 110 kW
Heavy Duty Rating 90 kW
Input Frequency 50/60 Hz
Input Type AC Input with Precharge
DC Terminals No
Dynamic Braking None
Internal DB Transistor No
Filtering Filtered
CM Jumper Installed
Cooling Forced Air
Enclosure Open Type
Protection Type IP20/IP00, NEMA/UL Open Type
Frame 6
Embedded I/O Yes
PID Function Yes
HIM Blank / No HIM
Integrated Motion No
Approx. Height 665.5 mm
Approx. Width 308.0 mm
Approx. Depth 346.4 mm
Approx. Dimensions 665.5 × 308.0 × 346.4 mm
Approx. Weight 38.6 kg
Cooling Method Forced Air
Installation Cabinet / Panel

The most important electrical figures are 119 A, 110 kW Normal Duty, and 90 kW Heavy Duty at 690 VAC three-phase.

For practical drive selection, the motor nameplate current should always be considered together with the motor power rating.


4. Product Identification

The complete catalog number is:

20F1ANF119JN0NNNNN

This catalog number represents a specific PowerFlex 753 configuration.

The model combines a 690 VAC input class, 119 A current rating, filtered configuration, no internal dynamic-braking transistor, and no local HIM.

This is different from another 119 A configuration that may have an internal dynamic-braking transistor or a different enclosure arrangement.


5. Catalog Number Structure

Catalog Section General Meaning
20F PowerFlex 753 family
1 Drive configuration
A AC input with precharge
N Open-type enclosure
F 690 VAC class
119 119 A current class
J Filtered / CM jumper configuration
N No internal dynamic-braking transistor
0 Blank / no HIM
NNNNN No additional options represented

The 119 portion identifies the 119 A current class.

The J configuration indicates the filtered arrangement with the CM jumper installed.

The following N indicates that this particular configuration does not include an internal dynamic-braking transistor.

The 0 indicates the blank/no-HIM arrangement.

This is useful when comparing similar 119 A PowerFlex 753 configurations because several models can have the same basic voltage, current and power rating while differing in braking, enclosure or interface options.


6. Electrical Rating

The drive is designed for:

690 VAC / Three Phase / 119 A

Its two principal power ratings are:

110 kW Normal Duty

90 kW Heavy Duty

Electrical Parameter Rating
Model 20F1ANF119JN0NNNNN
Input Voltage 690 VAC
Input Phase 3 Phase
Output Phase 3 Phase
Output Current 119 A
Normal Duty 110 kW
Heavy Duty 90 kW
Frequency 50/60 Hz
Input Arrangement AC with Precharge
DC Terminals None

The 690 VAC configuration is intended for large industrial motor systems where high-voltage three-phase motor distribution is used.


7. 110 kW Normal Duty Rating

The 110 kW Normal Duty rating is one of the main characteristics of the model.

This rating makes the drive especially suitable for variable-torque applications.

Typical examples include:

  • Large centrifugal pumps
  • Industrial water pumps
  • Cooling pumps
  • Large fans
  • Large blowers
  • Ventilation equipment
  • Air-handling systems
  • Process circulation systems
  • Industrial utility systems

In variable-torque applications, the motor does not always need to operate at full speed.

The drive can adjust motor speed according to process requirements, allowing the equipment to operate at a more appropriate operating point.


8. 90 kW Heavy Duty Rating

The 90 kW Heavy Duty rating is important for applications where the mechanical load places greater demands on the motor and drive.

Typical examples include:

  • Conveyors
  • Feeders
  • Mixers
  • Material-handling systems
  • Processing machinery
  • Production equipment
  • Constant-torque machinery

A 110 kW Normal Duty rating should therefore not be interpreted as meaning that the drive can automatically be used for a 110 kW constant-torque motor.

For Heavy Duty applications, the 90 kW rating is the more appropriate starting point.


9. Normal Duty vs. Heavy Duty

Duty Type Power Rating Typical Load Type
Normal Duty 110 kW Pumps, fans, blowers
Heavy Duty 90 kW Conveyors, mixers, feeders
Variable Torque Up to 110 kW class Centrifugal equipment
Constant Torque Up to 90 kW class Mechanical production equipment

This distinction is particularly important during engineering and motor selection.

The actual load profile should be evaluated rather than selecting the drive solely from the motor’s kW value.


10. Product Introduction

The 20F1ANF119JN0NNNNN is a high-power adjustable-frequency drive designed to control the speed and torque of three-phase AC motors.

A conventional fixed-speed motor normally operates at approximately its rated operating speed whenever it is energized.

A variable-frequency drive changes the electrical frequency and voltage supplied to the motor, allowing the motor speed to be controlled.

This provides much greater flexibility.

For example, a large pump can run at a lower speed when process demand is low.

A ventilation fan can increase or decrease airflow according to system requirements.

A conveyor can accelerate gradually rather than applying full mechanical torque immediately.

A mixer can operate at different speeds during different stages of production.

This flexibility is the central function of the PowerFlex 753 platform.


11. Frame 6 Mechanical Construction

The drive uses a Frame 6 construction.

Frame size is important when planning a cabinet because it determines the general physical envelope, mounting arrangement and installation requirements.

The approximate dimensions are:

665.5 mm × 308.0 mm × 346.4 mm

The approximate weight is:

38.6 kg

Mechanical Parameter Specification
Model 20F1ANF119JN0NNNNN
Frame 6
Height 665.5 mm
Width 308.0 mm
Depth 346.4 mm
Dimensions 665.5 × 308.0 × 346.4 mm
Approx. Weight 38.6 kg
Construction Open Type
Cooling Forced Air

These dimensions should be treated as the drive’s approximate mechanical envelope.

The actual cabinet should provide additional space for cables, ventilation, control wiring, grounding, service access and heat dissipation.


12. Air-Cooled Design

The drive uses forced-air cooling.

A 110 kW-class variable-frequency drive can generate significant heat during operation.

The cooling system therefore plays an important role in reliable operation.

The installation should provide:

  • Adequate airflow
  • Proper cabinet ventilation
  • Sufficient heat dissipation
  • Clear air intake and exhaust paths
  • Appropriate clearance
  • Regular cooling-fan inspection
  • Clean heat-dissipation surfaces

If the drive is installed in a sealed enclosure, the cabinet designer should calculate the complete internal heat load.


13. Open-Type Enclosure

The 20F1ANF119JN0NNNNN uses an open-type enclosure.

It is therefore normally installed inside a suitable industrial electrical cabinet or control panel.

The external cabinet should provide suitable protection from environmental conditions such as:

  • Dust
  • Moisture
  • Oil mist
  • Conductive particles
  • Corrosive substances
  • Excessive humidity
  • Mechanical contamination

The cabinet also needs to provide sufficient ventilation and heat removal.


14. Dynamic Braking

This particular configuration has:

No internal dynamic-braking transistor

This is an important difference between the 20F1ANF119JN0NNNNN and certain other 119 A configurations.

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

For machines that require rapid deceleration, this regenerated energy may need to be managed by an appropriate braking system.

The target model does not have the internal dynamic-braking transistor represented by the alternative braking configuration.

Therefore, braking requirements should be evaluated during the system-design stage.


15. Applications Where No Internal Dynamic Braking May Be Suitable

The absence of an internal dynamic-braking transistor can be perfectly acceptable for many applications.

Examples include:

  • Large centrifugal pumps
  • Cooling pumps
  • Process circulation pumps
  • Large ventilation fans
  • Blowers
  • Continuous-flow equipment
  • Systems where normal controlled deceleration is acceptable

In these applications, the machine may not require aggressive stopping.

The suitability depends on the actual inertia, stopping time, operating cycle and process requirements.


16. Applications Requiring More Attention to Braking

Braking requirements should be carefully evaluated for:

  • High-inertia fans
  • Heavy conveyors
  • Large rotating machines
  • Mixers
  • Centrifuges
  • Machines with frequent stops
  • Machines requiring rapid deceleration
  • Machines where stopping time is safety-critical

If significant braking capability is required, a different configuration or an appropriate external braking arrangement may need to be considered.


17. Filtering and CM Jumper

The model is configured as:

Filtered, CM Jumper Installed

This configuration is useful for industrial installations where electromagnetic compatibility and common-mode considerations are important.

A variable-frequency drive uses high-speed switching electronics.

The switching process can generate high-frequency electrical noise.

Proper system design should therefore consider:

  • Drive filtering
  • Motor cable selection
  • Shielding
  • Grounding
  • Cabinet bonding
  • Cable routing
  • Separation of power and control cables
  • Correct motor grounding

The filtering configuration helps, but installation practices remain important.


18. Embedded I/O

The PowerFlex 753 platform provides embedded I/O.

This allows the drive to communicate with external machine-control circuits without requiring a separate interface for every basic control function.

Typical functions can include:

  • Start
  • Stop
  • Enable
  • Direction
  • Speed reference
  • Fault reset
  • Status
  • Analog feedback
  • Digital interlocks

This can reduce control wiring and simplify machine integration.


19. PID Control Capability

The drive supports PID-based process control.

This is especially useful when the motor speed needs to respond to a measured process variable.

For example:

Pressure Sensor → PID Control → Drive → Motor → Pump

The pressure sensor provides feedback.

The drive compares the measured pressure with the target value.

The motor speed is then adjusted to help maintain the required pressure.

Similar arrangements can be used for:

  • Flow
  • Pressure
  • Airflow
  • Ventilation
  • Water circulation
  • Process utilities

This makes the drive suitable for more than simple speed adjustment.


20. Blank / No-HIM Configuration

The drive is supplied with a blank/no-HIM configuration.

This is useful in centralized automation systems.

A typical installation could be:

PLC → Drive

or:

HMI → PLC → Drive

or:

Industrial Network → Drive

The operator may never need to access the drive directly.

Instead, drive status, speed commands, alarms and operating parameters can be handled through the main automation system.


21. Major Applications

Application Duty Suitability
Large Centrifugal Pumps Normal Duty Excellent
Industrial Water Pumps Normal Duty Excellent
Cooling Pumps Normal Duty Excellent
Large Fans Normal Duty Excellent
Large Blowers Normal Duty Excellent
Ventilation Systems Normal Duty Excellent
Air Handling Normal Duty Excellent
Process Circulation Normal Duty Excellent
Conveyors Heavy Duty Very Good
Feeders Heavy Duty Very Good
Mixers Heavy Duty Very Good
Material Handling Heavy Duty Very Good
Production Machinery Application Dependent Very Good
Process Machinery Application Dependent Very Good

22. Pump Applications

Large pumps are among the most suitable applications for this drive.

Possible applications include:

  • Industrial water transfer
  • Cooling-water circulation
  • Process-water systems
  • Pressure boosting
  • Utility pumping
  • Industrial circulation
  • Water treatment equipment

The drive can vary pump speed according to process demand.

This is particularly useful when the required flow or pressure changes during normal operation.

A PID control loop can also be used to maintain a target pressure or flow-related variable.


23. Fan Applications

The drive is well suited to large fan systems.

Possible applications include:

  • Factory ventilation
  • Industrial exhaust
  • Process ventilation
  • Cooling systems
  • Air-handling equipment
  • Extraction systems
  • Large industrial air-moving systems

The 110 kW Normal Duty rating provides substantial capacity for large variable-torque fan applications.

However, the rotational inertia of large fans should be considered carefully when determining deceleration time and braking requirements.


24. Blower Applications

Large blowers can require substantial motor power.

The 119 A, 690 VAC configuration provides considerable capacity for these systems.

Typical applications include:

  • Process air
  • Industrial ventilation
  • Exhaust
  • Cooling
  • Air supply
  • Combustion air
  • Industrial process equipment

Variable-speed control allows the blower to respond to changing air requirements.


25. Conveyor Applications

The 90 kW Heavy Duty rating makes the drive suitable for many large conveyor systems.

Potential applications include:

  • Production conveyors
  • Bulk material handling
  • Processing lines
  • Industrial transportation
  • Material transfer

Important engineering factors include:

  • Starting torque
  • Belt load
  • Conveyor length
  • Gearbox ratio
  • Acceleration time
  • Deceleration time
  • Mechanical inertia
  • Motor current
  • Braking requirements

A conveyor requiring frequent rapid stopping may require additional braking consideration.


26. Mixer Applications

Large mixers can have substantial starting torque requirements.

The drive can provide controlled acceleration and adjustable operating speed.

This can help reduce:

  • Mechanical shock
  • Belt stress
  • Gearbox stress
  • Coupling stress
  • Sudden torque changes

The mixer can also operate at different speeds during different process stages.

For high-inertia mixers, braking requirements should be reviewed carefully.


27. Feeder Applications

Large feeders can benefit from stable and adjustable motor speed.

The drive can be integrated into a PLC-controlled production system.

Typical functions include:

  • Start/stop
  • Speed adjustment
  • Acceleration
  • Deceleration
  • Interlocking
  • Fault monitoring
  • Process synchronization

Embedded I/O is useful for integrating these functions into the machine control architecture.


28. Material Handling Applications

The drive can be used in large material-handling systems where motor power is within the 119 A / 90 kW Heavy Duty range.

Possible applications include:

  • Bulk material transfer
  • Conveyors
  • Feeders
  • Industrial handling machinery
  • Production lines
  • Processing systems

The motor nameplate current should always be checked against the drive rating.


29. Product Advantages

Advantage Description
690 VAC Operation Suitable for high-voltage industrial motor systems
119 A Output High motor-current capacity
110 kW Normal Duty Excellent for large variable-torque loads
90 kW Heavy Duty Suitable for demanding constant-torque loads
PowerFlex 753 Platform Flexible industrial drive architecture
Embedded I/O Simplifies machine integration
PID Capability Useful for process-control applications
Filtered Configuration Supports EMC-oriented system design
CM Jumper Installed Defined common-mode configuration
Frame 6 Suitable for high-capacity industrial applications
Forced-Air Cooling Appropriate for high-power operation
No HIM Useful for centralized control
Open Type Flexible cabinet integration

30. Advantage — 119 A Capacity

The 119 A output rating is one of the most important features of this model.

It places the drive above the 98 A configuration in the same 690 VAC family.

This gives engineers additional margin when the motor current is too close to the limit of a smaller drive.

The additional capacity can be useful when the motor has a higher rated current, when the application has demanding load characteristics, or when additional current margin is desired.


31. Advantage — 110 kW Normal Duty

The 110 kW Normal Duty rating makes this model particularly attractive for large variable-torque applications.

Large pumps, fans and blowers can benefit from variable-speed operation because the required operating speed often changes with process demand.

The drive can adjust motor speed rather than simply switching the motor between on and off.


32. Advantage — 90 kW Heavy Duty

The 90 kW Heavy Duty rating gives the model strong capability for demanding mechanical applications.

This makes it suitable for many:

  • Conveyors
  • Feeders
  • Mixers
  • Material-handling systems
  • Process machines

The actual motor current and overload requirements should still be checked before final selection.


33. Advantage — 690 VAC System Compatibility

The 690 VAC class makes the drive suitable for large industrial motor systems.

This voltage class is commonly associated with larger motors and industrial power-distribution arrangements.

The higher voltage allows a large motor to deliver substantial power while keeping operating current at a manageable level compared with an equivalent lower-voltage motor system.


34. Advantage — Embedded I/O

Embedded I/O can simplify machine architecture.

Instead of adding multiple separate interface components, many basic control and feedback functions can be handled through the drive’s built-in I/O capability.

This can help reduce:

  • Wiring
  • Panel space
  • Interface components
  • Installation complexity

It can also simplify commissioning and troubleshooting.


35. Advantage — PID Functionality

PID functionality makes the drive especially useful for process applications.

The drive can automatically adjust motor speed according to process feedback.

This is valuable for:

  • Pressure systems
  • Flow systems
  • Ventilation
  • Air handling
  • Water circulation
  • Process utilities

It allows the drive to participate directly in the process-control loop.


36. Advantage — Remote Operation

The blank/no-HIM configuration fits systems where local manual control is not required.

For a large industrial installation, the operator may work from a central control room.

The drive can therefore remain inside an electrical cabinet while commands and information are exchanged with the control system.


37. Advantage — Filtered Configuration

The filtered configuration is useful in industrial environments where electrical noise management is important.

The drive can be incorporated into a system with appropriate:

  • Grounding
  • Cable shielding
  • Cabinet bonding
  • Motor-cable routing
  • Control-cable separation

This is particularly relevant when the drive is installed close to sensitive control electronics.


38. Five Recommended Same-Series or Closely Related Models

Model Series Voltage Current Normal Duty Heavy Duty Dynamic Braking Frame Approx. Dimensions Approx. Weight
20F1ANF098JN0NNNNN PowerFlex 753 690 VAC 98 A 90 kW 75 kW None 6 665.5 × 308 × 346.4 mm 38.6 kg
20F1ANF119JA0NNNNN PowerFlex 753 690 VAC 119 A 110 kW 90 kW Internal DB Transistor 6 Frame 6 class Approx. 38.6 kg class
20F1ANF142JN0NNNNN PowerFlex 753 690 VAC 142 A 132 kW 110 kW None 6 Frame 6 class Configuration dependent
20F1ANF082JN0NNNNN PowerFlex 753 690 VAC 82 A 75 kW 55 kW None 6 665.5 × 308 × 346.4 mm class 38.6 kg class
20F1ANF171JN0NNNNN PowerFlex 753 690 VAC 171 A 160 kW 132 kW None 7 Frame 7 class Configuration dependent

These five models provide useful alternatives around the target 119 A configuration.

The 98 A version is the closest lower-capacity option.

The 119 A JA configuration is the closest configuration when internal dynamic braking is desired.

The 142 A version provides additional power capacity.

The 171 A version moves into a higher-capacity Frame 7 platform.


39. Recommended Model — 20F1ANF098JN0NNNNN

Parameter Specification
Model 20F1ANF098JN0NNNNN
Series PowerFlex 753
Input Voltage 690 VAC
Output Current 98 A
Normal Duty 90 kW
Heavy Duty 75 kW
Frame 6
Dynamic Braking None
Filtering Filtered
CM Jumper Installed
Cooling Forced Air
Enclosure Open Type
Embedded I/O Yes
PID Yes
Approx. Dimensions 665.5 × 308 × 346.4 mm
Approx. Weight 38.6 kg

This is the natural lower-capacity alternative to the target model.

It is suitable when the motor current is below 119 A and the 98 A capacity provides sufficient margin.


40. Recommended Model — 20F1ANF119JA0NNNNN

Parameter Specification
Model 20F1ANF119JA0NNNNN
Series PowerFlex 753
Input Voltage 690 VAC
Output Current 119 A
Normal Duty 110 kW
Heavy Duty 90 kW
Frame 6
Dynamic Braking Internal DB Transistor
Cooling Forced Air
Enclosure Open Type
Embedded I/O Yes
PID Yes
Filtering Filtered
CM Jumper Installed
Approx. Dimensions Frame 6 class
Approx. Weight Approx. 38.6 kg class

This is arguably the most important closely related model because it has the same principal voltage, current, power and frame characteristics.

The main difference is the dynamic-braking configuration.

If rapid deceleration or braking-energy management is important, this configuration deserves serious consideration.


41. Recommended Model — 20F1ANF142JN0NNNNN

Parameter Specification
Model 20F1ANF142JN0NNNNN
Series PowerFlex 753
Input Voltage 690 VAC
Output Current 142 A
Normal Duty 132 kW
Heavy Duty 110 kW
Frame 6
Dynamic Braking None
Cooling Forced Air
Enclosure Open Type
Embedded I/O Yes
PID Yes
Filtering Filtered
CM Jumper Installed
Approx. Dimensions Frame 6 class
Approx. Weight Configuration dependent

This model provides a useful step up from the 119 A configuration.

It is appropriate when the motor current or power requirement is higher than the target drive’s practical capacity.


42. Recommended Model — 20F1ANF082JN0NNNNN

Parameter Specification
Model 20F1ANF082JN0NNNNN
Series PowerFlex 753
Input Voltage 690 VAC
Output Current 82 A
Normal Duty 75 kW
Heavy Duty 55 kW
Frame 6
Dynamic Braking None
Cooling Forced Air
Enclosure Open Type
Embedded I/O Yes
PID Yes
Approx. Dimensions Frame 6 class
Approx. Weight 38.6 kg class

This model is appropriate for applications requiring less current than the target 119 A model.

It is especially useful when the motor size falls into the 75 kW Normal Duty range.


43. Recommended Model — 20F1ANF171JN0NNNNN

Parameter Specification
Model 20F1ANF171JN0NNNNN
Series PowerFlex 753
Input Voltage 690 VAC
Output Current 171 A
Normal Duty 160 kW
Heavy Duty 132 kW
Frame 7
Dynamic Braking None
Cooling Forced Air
Enclosure Open Type
Embedded I/O Yes
PID Yes
Approx. Dimensions Frame 7 class
Approx. Weight Configuration dependent

The 171 A model is a suitable consideration when the motor is significantly larger than the 119 A range.

Because the frame changes from Frame 6 to Frame 7, the cabinet layout should be redesigned rather than simply replacing the drive mechanically.


44. Five Same-Brand Representative Models

Model Series Voltage Class Current / Capacity Normal Duty Heavy Duty Typical Application Dimensions Weight
20F1ANF098JN0NNNNN PowerFlex 753 690 VAC 98 A 90 kW 75 kW Pumps, fans, blowers 665.5 × 308 × 346.4 mm class 38.6 kg
20F1ANF119JA0NNNNN PowerFlex 753 690 VAC 119 A 110 kW 90 kW Large machinery with braking requirements Frame 6 class Approx. 38.6 kg class
20F1ANF142JN0NNNNN PowerFlex 753 690 VAC 142 A 132 kW 110 kW Large pumps, fans, process equipment Frame 6 class Configuration dependent
20G1ANC260JA0NNNNN PowerFlex 755 400 VAC class 260 A class 132 kW class 110 kW class High-power industrial machinery Frame 6 class Configuration dependent
25B-D024N114 PowerFlex 525 480 VAC class 24 A class 11 kW class Application dependent Compact industrial machinery Configuration dependent Configuration dependent

These are representative choices across different power levels and drive families.

The first three are the closest alternatives because they remain within the PowerFlex 753 platform.

The PowerFlex 755 example represents a higher-level drive platform for more demanding applications.

The PowerFlex 525 is a much smaller drive and is not a direct substitute for the 119 A model. It is included as a representative lower-power product within the same brand family.


45. 690 VAC PowerFlex 753 Current and Power Comparison

Model Current Normal Duty Heavy Duty Frame
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
20F1ANF098JN0NNNNN 98 A 90 kW 75 kW 6
20F1ANF119JN0NNNNN 119 A 110 kW 90 kW 6
20F1ANF142JN0NNNNN 142 A 132 kW 110 kW 6
20F1ANF171JN0NNNNN 171 A 160 kW 132 kW 7
20F1ANF212JN0NNNNN 212 A 200 kW 160 kW 7
20F1ANF263JN0NNNNN 263 A 250 kW 200 kW 7

The 119 A model is positioned directly between the 98 A and 142 A configurations.

This makes it a useful selection point for applications where the 98 A capacity is no longer sufficient but a 142 A drive would provide more capacity than necessary.


46. Comparison: 98 A vs. 119 A

Parameter 98 A Model 119 A Model
Model 20F1ANF098JN0NNNNN 20F1ANF119JN0NNNNN
Voltage 690 VAC 690 VAC
Current 98 A 119 A
Normal Duty 90 kW 110 kW
Heavy Duty 75 kW 90 kW
Frame 6 6
Dynamic Braking None None
Cooling Forced Air Forced Air
Embedded I/O Yes Yes
PID Yes Yes
Dimensions 665.5 × 308 × 346.4 mm class 665.5 × 308 × 346.4 mm class
Weight 38.6 kg class 38.6 kg class

The 119 A model provides a meaningful increase in both current and power capacity while remaining within the same general Frame 6 mechanical platform.

This can be advantageous for projects where the motor is close to the upper range of a 98 A drive.


47. Comparison: 119 A No-Braking vs. Braking Configuration

Parameter Standard Configuration Braking Configuration
Model 20F1ANF119JN0NNNNN 20F1ANF119JA0NNNNN
Voltage 690 VAC 690 VAC
Current 119 A 119 A
Normal Duty 110 kW 110 kW
Heavy Duty 90 kW 90 kW
Frame 6 6
Dynamic Braking None Internal DB Transistor
Cooling Forced Air Forced Air
Enclosure Open Type Open Type
Embedded I/O Yes Yes
PID Yes Yes
HIM Blank / No HIM Blank / No HIM

The electrical capacity of these two configurations is essentially aligned, but their braking arrangements are different.

For a large pump or fan that does not require rapid stopping, the standard configuration can be a sensible choice.

For a high-inertia machine where braking energy must be managed more aggressively, the braking configuration may be preferable.


48. Motor Selection

The motor should not be selected from kW alone.

The following motor information should be checked:

Motor Parameter Importance
Rated Voltage Very High
Rated Current Very High
Rated Power Very High
Rated Frequency High
Rated Speed High
Full-Load Torque Very High
Starting Torque High
Overload Requirement Very High
Acceleration Time High
Deceleration Time High
Rotor Inertia High
Duty Cycle High
Ambient Temperature Medium to High

The motor’s rated current should be compared directly with the drive’s 119 A output-current capability.

For a 110 kW Normal Duty application, the motor must also be suitable for the actual voltage and frequency conditions.


49. Cabinet Design

The drive’s approximate dimensions are:

665.5 mm high × 308.0 mm wide × 346.4 mm deep

Its approximate weight is:

38.6 kg

A cabinet should not be designed with only these dimensions as the available space.

Additional room is needed for:

  • Power cables
  • Motor cables
  • Control wiring
  • Cable bending radius
  • Ventilation
  • Maintenance access
  • Grounding
  • Terminals
  • Heat dissipation

The cabinet mounting structure should also be able to safely support the approximately 38.6 kg drive.


50. Thermal Design

Thermal management is particularly important for a 110 kW-class drive.

The total cabinet heat load may include:

  • The drive
  • Input components
  • Reactors
  • Transformers
  • Contactors
  • Power supplies
  • Control electronics
  • Communication modules
  • Other power components

The cooling system should be designed for the complete enclosure rather than only the drive.

Airflow paths should also be arranged so that hot exhaust air does not return directly to the drive’s cooling intake.


51. Installation Considerations

A proper installation should consider:

  • Electrical clearances
  • Cabinet dimensions
  • Airflow
  • Cable routing
  • Grounding
  • Motor cable length
  • EMC requirements
  • Ambient temperature
  • Maintenance access
  • Cooling-fan accessibility
  • Control wiring separation
  • Power-distribution requirements

Because this is an open-type drive, the surrounding cabinet plays an important role in environmental protection.


52. Maintenance

Maintenance Item Recommended Practice
Cooling Fan Inspect periodically
Heat Sink Keep clean
Airflow Check regularly
Cabinet Filters Clean or replace
Power Connections Inspect
Motor Connections Inspect
Ground Connections Verify
Control Wiring Check
Cabinet Temperature Monitor
Fault History Review
Drive Parameters Back up
Mounting Hardware Inspect
Ventilation Paths Keep clear

Dust accumulation is particularly undesirable in high-power air-cooled equipment.

A clean airflow path helps maintain proper thermal performance.


53. Typical Pump System

A typical large pump application can be arranged as:

Pressure Sensor → PID → 20F1ANF119JN0NNNNN → Motor → Pump

The pressure sensor measures the process condition.

The drive receives the feedback and adjusts motor speed.

If the process demand increases, motor speed can increase.

If demand decreases, motor speed can decrease.

This makes the drive particularly useful for variable-demand pumping systems.


54. Typical Fan System

A large fan application can be arranged as:

Airflow Feedback → PID → Drive → Motor → Fan

The system can adjust fan speed according to actual ventilation requirements.

This is useful for:

  • Factory ventilation
  • Exhaust systems
  • Process cooling
  • Air handling
  • Industrial extraction

The motor and fan inertia should be considered when determining acceleration and deceleration characteristics.


55. Typical Conveyor System

A conveyor system may use:

PLC → Drive → Motor → Gearbox → Conveyor

The drive can manage:

  • Start
  • Stop
  • Direction
  • Speed
  • Acceleration
  • Deceleration
  • Fault status
  • Process interlocking

For a conveyor application, the 90 kW Heavy Duty rating should be treated as the principal power-selection reference.


56. Typical Process-Control System

A process application can be structured as:

Sensor → PID Control → Drive → Motor → Process Equipment

The sensor may monitor:

  • Pressure
  • Flow
  • Airflow
  • Process conditions

The drive then changes motor speed to help maintain the desired process value.

This arrangement makes the PowerFlex 753 platform useful for industrial process-control systems.


57. Environmental Considerations

Although the drive is designed for industrial applications, the installation environment still matters.

Important environmental factors include:

  • Ambient temperature
  • Humidity
  • Dust
  • Oil mist
  • Chemical contamination
  • Conductive particles
  • Vibration
  • Airflow
  • Cabinet temperature
  • Installation altitude

A properly designed enclosure and cooling system can significantly improve the operating environment.


58. When the 20F1ANF119JN0NNNNN Is a Good Choice

This model is particularly appropriate when the project requires:

  • 690 VAC motor control
  • Three-phase operation
  • Approximately 119 A output capability
  • Up to 110 kW Normal Duty
  • Up to 90 kW Heavy Duty
  • Embedded I/O
  • PID capability
  • Filtered configuration
  • CM jumper installed
  • Forced-air cooling
  • Frame 6 construction
  • Cabinet installation
  • Remote operation
  • No internal dynamic-braking transistor

It is especially attractive for large pumps, fans, blowers, ventilation systems and appropriately sized process machinery.


59. When a Different Model May Be Better

A different configuration should be considered if the application requires:

  • Higher current
  • Higher motor power
  • Rapid deceleration
  • Frequent braking
  • High-inertia stopping
  • Internal dynamic braking
  • Different enclosure protection
  • Different frame size

For example, the 20F1ANF119JA0NNNNN is a closely related 119 A configuration with an internal dynamic-braking transistor.

If more motor capacity is required, the 20F1ANF142JN0NNNNN or 20F1ANF171JN0NNNNN can be considered.

If the motor is smaller, the 20F1ANF098JN0NNNNN may provide a more appropriately sized solution.


60. Detailed Parameter Summary

Category Parameter Specification
Identification Model 20F1ANF119JN0NNNNN
Identification Brand Allen-Bradley
Identification Series PowerFlex 753
Identification Product Type AC Variable-Frequency Drive
Electrical Input Voltage 690 VAC
Electrical Input Phase 3 Phase
Electrical Output Phase 3 Phase
Electrical Output Current 119 A
Electrical Normal Duty 110 kW
Electrical Heavy Duty 90 kW
Electrical Frequency 50/60 Hz
Input Input Type AC Input with Precharge
Input DC Terminals No
Braking Dynamic Braking None
Braking Internal DB Transistor No
EMC Filtering Filtered
EMC CM Jumper Installed
Cooling Cooling Method Forced Air
Mechanical Frame 6
Mechanical Enclosure Open Type
Mechanical Protection IP20/IP00, NEMA/UL Open Type
Control Embedded I/O Yes
Control PID Yes
Interface HIM Blank / No HIM
Motion Integrated Motion No
Mechanical Height 665.5 mm
Mechanical Width 308.0 mm
Mechanical Depth 346.4 mm
Mechanical Dimensions 665.5 × 308.0 × 346.4 mm
Mechanical Weight 38.6 kg
Installation Mounting Cabinet / Panel
Cooling Airflow Forced Air
Application Large Pumps Excellent
Application Large Fans Excellent
Application Blowers Excellent
Application Conveyors Very Good
Application Feeders Very Good
Application Mixers Very Good
Application Material Handling Very Good
Application Process Equipment Excellent

61. Overall Advantages at a Glance

Feature Practical Benefit
690 VAC Suitable for large industrial motor systems
119 A Provides substantial output-current capacity
110 kW ND Strong capability for variable-torque applications
90 kW HD Suitable for demanding constant-torque loads
Frame 6 Large-capacity industrial mechanical platform
Forced Air Suitable for high-power operation
Embedded I/O Easier machine integration
PID Useful for pressure, flow and process control
Filtered Helps with electrical-noise management
No HIM Suitable for centralized control
Open Type Flexible cabinet integration
No Internal DB Appropriate where rapid dynamic braking is unnecessary

62. Final Assessment

The Allen-Bradley 20F1ANF119JN0NNNNN is a high-capacity PowerFlex 753 AC variable-frequency drive designed for large industrial three-phase motor systems.

Its primary electrical rating is:

690 VAC / 3 Phase / 119 A / 110 kW Normal Duty / 90 kW Heavy Duty

Its principal mechanical configuration is:

Frame 6 / Forced Air Cooled / Open Type

The approximate physical dimensions are:

665.5 × 308.0 × 346.4 mm

The approximate weight is:

38.6 kg

The drive provides embedded I/O and PID capability, making it suitable for both conventional speed-control applications and process-oriented systems.

The filtered configuration with the CM jumper installed is useful in industrial installations where electrical-noise and common-mode considerations need to be addressed.

The model does not include an internal dynamic-braking transistor. For normal pump, fan, blower and other applications where rapid deceleration is not a primary requirement, this can be an entirely suitable configuration.

For high-inertia machines, frequent rapid stopping, or applications where substantial braking energy must be dissipated, the braking configuration should be evaluated instead.

The closest lower-capacity choice is the 20F1ANF098JN0NNNNN.

The closest same-current braking-oriented choice is the 20F1ANF119JA0NNNNN.

For additional capacity, the 20F1ANF142JN0NNNNN provides a useful next step, while the 20F1ANF171JN0NNNNN moves into a higher-capacity Frame 7 configuration.

Overall, the 20F1ANF119JN0NNNNN is a strong choice for large 690 VAC industrial motors, particularly in applications such as large pumps, fans, blowers, ventilation systems, process circulation, conveyors, feeders and other industrial machinery where 119 A output capability, 110 kW Normal Duty, 90 kW Heavy Duty, embedded I/O, PID functionality, filtered operation and cabinet integration are required.



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