• Allen Bradley 20F1ANF098JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF098JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF098JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1ANF098JN0NNNNN PowerFlex AC Drive
Allen-Bradley 20F1ANF098JN0NNNNN — Detailed Technical Specifications, Product Introduction, Applications, Advantages and Recommended Models 1. Product Overview The Allen-Bradley 20F1ANF098JN0NNNNN is a ……
Allen Bradley 20F1ANF098JN0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20F1ANF098JN0NNNNN
  • PowerFlex AC Drive
  • USA
  • 665.5 × 308 × 346.4 mm
  • 38.6kg
  • Xiamen, China
  • New & In Stock
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Allen Bradley 20F1ANF098JN0NNNNN 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 20F1ANF098JN0NNNNN 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 20F1ANF098JN0NNNNN 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 20F1ANF098JN0NNNNN 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 20F1ANF098JN0NNNNN — Detailed Technical Specifications, Product Introduction, Applications, Advantages and Recommended Models

1. Product Overview

The Allen-Bradley 20F1ANF098JN0NNNNN is a high-power PowerFlex 753 AC variable-frequency drive designed for industrial three-phase motor control.

This configuration is rated for 690 VAC, three-phase input, with a 98 A nominal output current. Its principal power ratings are 90 kW Normal Duty and 75 kW Heavy Duty. It uses a Frame 6, air-cooled, open-type construction and is intended primarily for installation inside an appropriate electrical cabinet or industrial control enclosure.

The model is equipped with embedded I/O, making it suitable for machine-control and process-control applications where external control equipment needs to exchange signals directly with the drive.

The catalog configuration also specifies filtered operation with the CM jumper installed, AC input with precharge and no DC terminals, and no internal dynamic-braking transistor.

Another notable characteristic is the blank/no-HIM configuration. The drive therefore fits especially well into systems where operation and monitoring are handled through a PLC, HMI, industrial network or centralized control system rather than through a permanently mounted local keypad.


2. Brand and Product Series

Item Specification
Brand Allen-Bradley
Product Family PowerFlex
Series PowerFlex 753
Product Type AC Variable-Frequency Drive
Catalog Number 20F1ANF098JN0NNNNN
Voltage Class 690 VAC
Input 3-Phase AC
Output 3-Phase AC
Rated Output Current 98 A
Normal Duty Rating 90 kW
Heavy Duty Rating 75 kW
Frame Frame 6
Cooling Air Cooled / Forced Air
Enclosure Open Type
Embedded I/O Yes
PID Capability Yes
Dynamic Braking None
Internal Dynamic-Braking Transistor No
EMC Filtering Filtered
CM Jumper Installed
HIM Blank / No HIM
Integrated Motion No

The PowerFlex 753 series is intended for flexible industrial motor control, especially applications requiring variable-speed operation, integrated I/O, process functions and integration into larger automation systems.

The 20F1ANF098JN0NNNNN is positioned toward the higher-power end of the 690 VAC PowerFlex 753 range, making it suitable for substantial industrial motors and large mechanical systems.


3. Main Technical Parameters

Parameter Specification
Model 20F1ANF098JN0NNNNN
Brand Allen-Bradley
Series PowerFlex 753
Product Type Air-Cooled AC Drive
Input Voltage 690 VAC
Input Phase 3 Phase
Output Phase 3 Phase
Nominal Output Current 98 A
Normal Duty Power 90 kW
Heavy Duty Power 75 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 Class IP00/IP20, NEMA/UL Open Type
Frame Size Frame 6
Embedded I/O Yes
PID Control 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
Operating Temperature Approximately 0 to 50 °C for typical full-rated operating conditions
Storage Temperature Approximately -40 to 70 °C
Cooling Method Forced Air
Installation Cabinet / Panel

The 90 kW Normal Duty rating is the principal rating for variable-torque applications, while the 75 kW Heavy Duty rating is the more appropriate reference for demanding constant-torque applications.

The approximate mechanical size is 665.5 × 308.0 × 346.4 mm, with an approximate weight of 38.6 kg for the Frame 6 configuration.


4. Product Identification

The full catalog number is:

20F1ANF098JN0NNNNN

This catalog number identifies a specific PowerFlex 753 configuration rather than simply identifying the general series.

The important characteristics represented by the catalog configuration include the 690 VAC voltage class, 98 A output rating, filtered configuration, CM jumper arrangement, lack of internal dynamic braking, and blank/no-HIM configuration.


5. Catalog Number Interpretation

Catalog Section General Meaning
20F PowerFlex 753 family
1 Product configuration
A AC input with precharge
N Open-type configuration
F 690 VAC class
098 98 A output-current class
J Filtered / CM jumper configuration
N No internal dynamic-braking transistor
0 Blank / no HIM
NNNNN No additional options in the corresponding positions

The 098 portion is particularly important because it identifies the drive’s 98 A output-current class.

The J configuration indicates the filtering and CM capacitor arrangement.

The N immediately following that configuration indicates that the drive does not contain an internal dynamic-braking transistor.

Therefore, this model should not be confused with a similarly rated PowerFlex 753 configuration that has a different braking option.


6. 690 VAC Three-Phase Configuration

The 20F1ANF098JN0NNNNN is a 690 VAC three-phase drive.

This makes it suitable for large industrial motor systems where 690 VAC motors are used.

Electrical Parameter Specification
Input Voltage 690 VAC
Input Phase 3 Phase
Output Phase 3 Phase
Nominal Output Current 98 A
Normal Duty 90 kW
Heavy Duty 75 kW
Frequency 50/60 Hz
Frame 6

The 690 VAC class is particularly relevant to larger industrial installations.

For large motors, using a higher motor voltage can allow the motor system to operate at lower current than an equivalent lower-voltage system for the same power level.

This can affect cable sizing, electrical distribution design, motor connections and cabinet layout.


7. 98 A Output Current

The drive provides a nominal output-current capacity of 98 A.

For drive selection, motor current should be treated as one of the most important selection parameters.

Motor power alone is not sufficient.

Two motors with identical power ratings can have different rated currents because of differences in:

  • Motor efficiency
  • Power factor
  • Motor design
  • Speed
  • Voltage
  • Operating conditions
  • Load characteristics
  • Motor duty

The actual motor nameplate should therefore be checked before final drive selection.


8. 90 kW Normal Duty Rating

The 90 kW Normal Duty rating gives the drive considerable capacity for variable-torque applications.

This rating is especially useful for equipment such as:

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

Variable-torque machinery often benefits significantly from adjustable motor speed.

The motor does not necessarily need to operate at full speed continuously.

The drive can adjust motor speed according to the process requirement.


9. 75 kW Heavy Duty Rating

The Heavy Duty rating is 75 kW.

This rating is more relevant to applications with higher torque requirements or greater overload demands.

Examples include:

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

The distinction between 90 kW Normal Duty and 75 kW Heavy Duty is important.

A 90 kW variable-torque application should not automatically be considered equivalent to a 90 kW constant-torque application.

The actual load profile and required overload performance should determine the correct drive rating.


10. Normal Duty and Heavy Duty Comparison

Duty Classification Rating Typical Applications
Normal Duty 90 kW Pumps, fans, blowers, ventilation
Heavy Duty 75 kW Conveyors, mixers, feeders, material handling

This dual-rating approach gives the PowerFlex 753 a wide range of industrial applications.

For a centrifugal pump, the 90 kW Normal Duty rating may be the main selection criterion.

For a conveyor or mixer, the 75 kW Heavy Duty rating should receive greater attention.


11. Product Introduction

The 20F1ANF098JN0NNNNN is designed to provide adjustable-speed control for large three-phase AC motors.

Instead of operating the motor at only one fixed speed, the drive generates a controlled output waveform that allows the motor’s operating speed to be adjusted.

This makes it possible to match motor operation to the actual requirements of the machine.

For example, a pump can run slower when system demand is low.

A fan can increase speed when more airflow is required.

A conveyor can accelerate gradually rather than starting abruptly.

A blower can adjust its speed according to process demand.

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

This flexibility is one of the main reasons the PowerFlex 753 platform is used in industrial automation systems.


12. Air-Cooled Construction

The drive uses forced-air cooling.

This is an important design feature for a high-power 90 kW-class drive.

During operation, the drive’s power electronics generate heat.

The cooling system transfers this heat away from the power components and heat sink.

A properly designed installation should therefore provide adequate:

  • Airflow
  • Cabinet ventilation
  • Heat dissipation
  • Cooling-fan operation
  • Clearance around the drive
  • Separation from other heat-producing equipment

The surrounding cabinet should be designed so that heated air does not simply circulate back into the drive’s cooling intake.


13. Frame 6 Construction

The model uses a Frame 6 mechanical platform.

Frame size is important because it affects:

  • Physical dimensions
  • Mounting arrangement
  • Cooling requirements
  • Cable entry
  • Cabinet layout
  • Service access
  • Weight

The approximate dimensions of this configuration are:

665.5 mm × 308.0 mm × 346.4 mm

The approximate weight is:

38.6 kg

Mechanical Parameter Specification
Model 20F1ANF098JN0NNNNN
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 represent the drive itself.

The final cabinet dimensions should be larger because additional space is needed for power cables, control wiring, ventilation and maintenance access.


14. Open-Type Enclosure

The drive uses an open-type construction.

It is therefore normally integrated into a suitable industrial cabinet or electrical enclosure.

The cabinet should provide protection against unsuitable environmental conditions such as:

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

The cabinet must also provide appropriate thermal management.


15. Dynamic Braking

The 20F1ANF098JN0NNNNN has no internal dynamic-braking transistor.

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

For applications such as large pumps and fans where controlled deceleration is acceptable and rapid regenerative braking is not required, this configuration can be entirely appropriate.

However, high-inertia machines may require a different braking arrangement.

Potential examples include:

  • Large rotating equipment
  • High-speed fans
  • Large blowers
  • Heavy conveyors
  • High-inertia mixers
  • Machines requiring rapid stops

When a motor decelerates, energy can flow back toward the drive’s DC bus.

If that energy must be dissipated quickly, an appropriate braking solution must be included in the overall system design.


16. Why the No-Braking Configuration Can Be Useful

The absence of an internal dynamic-braking transistor is not automatically a disadvantage.

For applications that do not need rapid braking, it can be a straightforward configuration.

Examples include:

  • Centrifugal pumps
  • Cooling pumps
  • Process circulation
  • Large ventilation fans
  • Continuous-flow blowers
  • Utility systems

These machines often have relatively predictable operating cycles and may not require aggressive stopping.

The correct choice therefore depends on the machine’s mechanical behavior rather than simply its motor power.


17. EMC Filtering

The model is configured as:

Filtered, CM Jumper Installed

This configuration is useful for industrial installations where electrical noise management is important.

Variable-frequency drives use high-speed switching electronics.

Those switching events can generate high-frequency electrical noise.

A complete EMC strategy should therefore consider:

  • Drive filtering
  • Motor cable shielding
  • Cable routing
  • Grounding
  • Cabinet bonding
  • Control-cable separation
  • Proper termination
  • Motor grounding

The integrated filtering configuration is an important part of the system, but good installation practices remain necessary.


18. Embedded I/O

The PowerFlex 753 platform provides embedded I/O functionality.

This allows the drive to interact with machine-control signals without necessarily requiring a separate interface for every basic function.

Typical control signals can include:

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

This can simplify the control architecture.

For a machine builder, it can also reduce wiring complexity.


19. PID Control

The drive’s process-control capability makes it useful for systems that need automatic adjustment based on feedback.

A typical pressure-control application can operate as:

Pressure Sensor → PID → Drive → Motor → Pump

The measured pressure is compared with the desired setpoint.

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

Similar arrangements can be used for:

  • Flow control
  • Airflow control
  • Pressure control
  • Circulation systems
  • Ventilation
  • Process utilities

This gives the drive greater functionality than simple fixed-speed motor control.


20. No HIM Configuration

The model is configured with a blank / no HIM arrangement.

This is useful when the drive is installed inside a cabinet and operated remotely.

A typical control architecture may be:

PLC → Drive

or:

HMI → PLC → Drive

or:

Industrial Network → Drive

The absence of a local HIM can also make sense when the machine’s main operator interface is already located on a central control panel.


21. Industrial Applications

Application Typical 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
Process Machinery Normal / Heavy Duty Very Good
Production Equipment Application Dependent Very Good

22. Pump Applications

Large pumps are one of the strongest application areas for this model.

Possible uses include:

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

A variable-speed drive allows the pump to respond to changing demand.

Instead of operating continuously at full speed, the motor can be adjusted according to system requirements.

When combined with PID control, the drive can maintain a pressure or flow-related process variable automatically.


23. Fan Applications

Large industrial fans can also make excellent use of this drive.

Typical applications include:

  • Factory ventilation
  • Exhaust systems
  • Industrial cooling
  • Process ventilation
  • Air handling
  • Extraction systems
  • Large air-moving equipment

For variable-torque fan applications, the 90 kW Normal Duty rating provides considerable capacity.

One point that should be evaluated carefully is fan inertia.

Large fans can store substantial rotational energy.

If the fan must stop very quickly, the absence of an internal dynamic-braking transistor becomes an important design consideration.


24. Blower Applications

Large blowers can have substantial motor-power requirements.

The 690 VAC, 98 A configuration provides the electrical capacity needed for many large blower installations.

Typical applications include:

  • Process air
  • Industrial ventilation
  • Air supply
  • Exhaust
  • Cooling
  • Combustion air
  • Process machinery

Variable-speed operation can allow the blower to respond to changing process requirements.


25. Conveyor Applications

The 75 kW Heavy Duty rating makes this drive suitable for many large conveyor applications when the actual motor current and overload requirements are within the drive’s capability.

Typical applications include:

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

Important selection factors include:

  • Starting torque
  • Conveyor load
  • Belt weight
  • Material weight
  • Acceleration time
  • Deceleration time
  • Gearbox ratio
  • Motor current
  • Braking requirement

A conveyor with heavy inertia and frequent rapid stops may require a different braking configuration.


26. Mixer Applications

Large industrial mixers can impose high torque requirements, particularly during startup.

The drive provides controlled acceleration and adjustable operating speed.

Potential benefits include:

  • Reduced mechanical shock
  • Controlled acceleration
  • Adjustable process speed
  • Repeatable operation
  • Controlled stopping
  • Integration with machine sequencing

For extremely high-inertia mixers or applications requiring repeated rapid braking, braking requirements should be evaluated separately.


27. Feeder Applications

Large feeders require stable and repeatable motor-speed control.

The drive can provide controlled acceleration and speed regulation while communicating with the wider machine-control system.

Typical functions include:

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

The embedded I/O can be useful in these systems.


28. Material Handling

Large material-handling equipment can also benefit from the drive’s high current capacity.

Possible applications include:

  • Bulk material transfer
  • Conveyors
  • Feeders
  • Processing lines
  • Industrial handling equipment

The 98 A output-current class provides substantial capacity for large motors.

However, the actual motor nameplate current and load torque must be checked before final selection.


29. Major Product Advantages

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

30. Advantage — High Power Capacity

One of the most obvious advantages of the 20F1ANF098JN0NNNNN is its combination of:

98 A output current

90 kW Normal Duty

75 kW Heavy Duty

This makes it considerably more capable than lower-current PowerFlex 753 models.

It is particularly suitable when the motor is too large for the 50 A or 61 A class drives but does not yet require the next higher current rating.


31. Advantage — 690 VAC Industrial Compatibility

The 690 VAC rating is valuable in large industrial systems.

It allows the drive to be paired with motors designed for this voltage class.

This can be beneficial when designing:

  • Large motor feeders
  • Industrial distribution systems
  • Pump stations
  • Ventilation systems
  • Process plants
  • Large mechanical systems

The motor voltage and complete electrical distribution system must always be matched correctly.


32. Advantage — Large Normal Duty Rating

The 90 kW Normal Duty rating gives the drive strong capability for variable-torque machinery.

This is especially useful for pumps and fans.

Variable-torque applications can often benefit from running the motor at a speed appropriate to actual demand rather than simply operating at full speed.


33. Advantage — Strong Heavy Duty Capability

The 75 kW Heavy Duty rating provides considerable capacity for constant-torque machinery.

This makes the model more versatile than a drive intended solely for variable-torque equipment.

It can therefore be considered for applications such as:

  • Conveyors
  • Feeders
  • Mixers
  • Material handling
  • Processing machinery

provided the actual motor current and overload requirements are compatible.


34. Advantage — Embedded I/O

Embedded I/O simplifies many basic control architectures.

The drive can receive commands and exchange status information with the machine-control system.

This can reduce the need for additional interface components.

It can also make troubleshooting easier because control signals can be associated directly with the drive.


35. Advantage — PID Function

PID capability is valuable when the motor speed must respond automatically to a process variable.

This makes the drive useful in:

  • Pressure systems
  • Flow systems
  • Ventilation
  • Air-handling
  • Water circulation
  • Industrial utility systems

The drive can become part of the process-control loop rather than simply acting as a motor speed controller.


36. Advantage — Remote-Control Architecture

The blank/no-HIM configuration is appropriate for centralized control systems.

For example, a large pumping station may have its operator interface located in a central control room.

In that situation, a local drive keypad may not be necessary.

The drive can instead be controlled through the automation system.


37. Advantage — Cabinet Integration

The open-type construction allows system designers to install the drive inside a larger cabinet.

This can provide a centralized location for:

  • Power distribution
  • Motor protection
  • Control equipment
  • PLC systems
  • Communication equipment
  • Terminal blocks
  • Drive accessories
  • Braking equipment where necessary
  • Cooling equipment

This makes the drive suitable for large machine panels and industrial control cabinets.


38. Five Recommended Same-Series or Closely Related Models

Model Series Voltage Current Normal Duty Heavy Duty Dynamic Braking Frame Approx. Dimensions Approx. Weight
20F1ANF082JN0NNNNN PowerFlex 753 690 VAC 82 A 75 kW 55 kW None 6 665.5 × 308 × 346.4 mm 38.6 kg
20F1ANF098JA0NNNNN PowerFlex 753 690 VAC 98 A 90 kW 75 kW Internal DB 6 Frame 6 class Approx. 38.6 kg class
20F1ANF119JN0NNNNN PowerFlex 753 690 VAC 119 A 110 kW 90 kW None 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
20F1ANF171JN0NNNNN PowerFlex 753 690 VAC 171 A 160 kW 132 kW None 7 Frame 7 class Configuration dependent

These models provide useful alternatives around the target 98 A configuration.

The 82 A model is a logical choice when the motor current is lower.

The 98 A JA configuration is particularly interesting when the same electrical capacity is required but internal dynamic braking is desired.

The 119 A and 142 A versions provide additional capacity for larger motors.

The 171 A version moves into the Frame 7 range and is appropriate for substantially larger power requirements.


39. 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
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.

It can be considered when the motor current is below the 98 A requirement and the application does not require the additional capacity of the target model.


40. Recommended Model — 20F1ANF098JA0NNNNN

Parameter Specification
Model 20F1ANF098JA0NNNNN
Series PowerFlex 753
Input Voltage 690 VAC
Output Current 98 A
Normal Duty 90 kW
Heavy Duty 75 kW
Frame 6
Dynamic Braking Internal DB Transistor
Cooling Forced Air
Enclosure Open Type
Embedded I/O Yes
PID Yes
Filtering Configuration dependent
Approx. Dimensions Frame 6 class
Approx. Weight Frame 6 class

This is one of the closest alternatives to the target model.

The main reason to consider it is the dynamic-braking configuration.

If the machine requires substantial braking energy management, this version may be more suitable than the target configuration.


41. Recommended Model — 20F1ANF119JN0NNNNN

Parameter Specification
Model 20F1ANF119JN0NNNNN
Series PowerFlex 753
Input Voltage 690 VAC
Output Current 119 A
Normal Duty 110 kW
Heavy Duty 90 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 Frame 6 class

The 119 A version is useful when the target 98 A capacity is not enough.

It provides a higher power range while retaining the general characteristics of the PowerFlex 753 platform.


42. 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
Approx. Dimensions Frame 6 class
Approx. Weight Configuration dependent

This model is appropriate when the motor power requirement is significantly higher than the 98 A configuration.

It can be considered for larger pumps, fans, blowers and industrial process equipment.


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 version represents a significant increase in power capacity.

Because it moves into Frame 7, the cabinet and mechanical requirements should be considered separately from the Frame 6 target model.


44. Five Same-Brand Representative Models

Model Series Voltage Class Current / Capacity Normal Duty Heavy Duty Typical Application Dimensions Weight
20F1ANF082JN0NNNNN PowerFlex 753 690 VAC 82 A 75 kW 55 kW Pumps, fans, process equipment 665.5 × 308 × 346.4 mm class 38.6 kg
20F1ANF098JA0NNNNN PowerFlex 753 690 VAC 98 A 90 kW 75 kW Large machinery with braking requirements Frame 6 class Approx. 38.6 kg class
20F1ANF119JN0NNNNN PowerFlex 753 690 VAC 119 A 110 kW 90 kW Large pumps, fans, blowers 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 models represent several different capacity levels and product positions.

The PowerFlex 753 models are the closest choices when maintaining the same general drive architecture is important.

The PowerFlex 755 model represents a higher-performance industrial drive platform.

The PowerFlex 525 is a much smaller product and is not a direct replacement for the 98 A drive, but it is a useful example of a lower-power drive within the same broader brand family.


45. 690 VAC PowerFlex 753 Model Comparison

Model Output 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

This comparison shows where the 98 A model sits within the 690 VAC PowerFlex 753 range.

It is positioned above the 82 A configuration and below the 119 A configuration.

The 98 A model therefore provides a useful middle-to-high capacity point for large industrial motors.


46. Motor Selection Guidelines

When selecting a motor for the 20F1ANF098JN0NNNNN, the following parameters should be checked.

Motor Parameter Importance
Rated Voltage Very High
Rated Current Very High
Rated Power Very High
Motor 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 most important practical point is that the motor’s nameplate current should be compared with the drive’s 98 A output-current capability.

The 90 kW and 75 kW ratings provide useful reference points, but actual motor current and load behavior remain essential to final sizing.


47. Cabinet Design Considerations

The approximate drive dimensions are:

665.5 mm × 308.0 mm × 346.4 mm

The approximate weight is:

38.6 kg

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

Additional room should be allowed for:

  • Power cables
  • Motor cables
  • Control wiring
  • Grounding
  • Ventilation
  • Cooling airflow
  • Maintenance
  • Inspection
  • Terminal access
  • Cable bending radius

The mounting structure should also be strong enough to support the approximately 38.6 kg drive.


48. Thermal Management

Thermal design becomes increasingly important as drive power increases.

A 90 kW-class drive can generate significant heat.

The cabinet designer should consider the complete heat load rather than evaluating the drive in isolation.

Potential heat sources include:

  • AC drives
  • Power supplies
  • Transformers
  • Reactors
  • Contactors
  • Braking components
  • Control equipment
  • Communication equipment

Adequate ventilation and heat removal should be provided.


49. Maintenance Recommendations

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

For a high-power air-cooled drive, cooling maintenance is especially important.

Dust or contamination on heat-dissipation surfaces can gradually reduce cooling performance.


50. Typical Pump Control System

A large pump application can be arranged as:

Pressure Sensor → PID Control → 20F1ANF098JN0NNNNN → Motor → Pump

The sensor measures the process condition.

The PID function compares the measured value with the target setpoint.

The drive then adjusts motor speed.

This allows the pump to respond to demand.

The system can therefore operate the motor at an appropriate speed rather than continuously operating at maximum speed.


51. Typical Fan Control System

A ventilation system can use:

Airflow Feedback → PID → Drive → Motor → Fan

When airflow demand increases, the drive can increase motor speed.

When demand decreases, the drive can reduce motor speed.

This type of variable-speed operation is particularly appropriate for a high-power Normal Duty application.

The fan’s inertia should still be considered when determining stopping requirements.


52. Typical Conveyor Control System

A conveyor can use:

PLC → Drive → Motor → Gearbox → Conveyor

The drive can control:

  • Start
  • Stop
  • Direction
  • Acceleration
  • Deceleration
  • Running speed
  • Fault status
  • Interlocking

For heavy conveyors, the 75 kW Heavy Duty rating should be considered rather than simply using the 90 kW Normal Duty value.


53. Typical Process-Control System

A process system can be organized as:

Process Sensor → PID Controller → Drive → Motor → Mechanical Equipment

The process sensor may provide:

  • Pressure feedback
  • Flow feedback
  • Airflow feedback
  • Other process-related feedback

The drive can then modify motor speed according to the required process condition.

This makes the drive suitable for industrial process applications where the motor must continuously adapt to changing demand.


54. Environmental Considerations

The drive is designed for industrial installation, but the surrounding environment remains important.

Particular attention should be paid to:

  • Ambient temperature
  • Humidity
  • Dust
  • Chemical vapors
  • Oil mist
  • Conductive contamination
  • Mechanical vibration
  • Cabinet ventilation
  • Cooling airflow

A clean and properly ventilated cabinet can significantly improve the operating environment for the drive.


55. When the 20F1ANF098JN0NNNNN Is a Good Choice

This model is particularly attractive when the application requires:

  • 690 VAC operation
  • Three-phase motor control
  • Approximately 98 A output capability
  • Up to 90 kW Normal Duty
  • Up to 75 kW Heavy Duty
  • PowerFlex 753 functionality
  • Embedded I/O
  • PID control
  • Filtered configuration
  • Cabinet installation
  • Remote control
  • No internal dynamic-braking transistor

It is especially well suited to large industrial pumps, fans, blowers, ventilation equipment, circulation systems and appropriately sized process machinery.


56. When Another Model Should Be Considered

Another configuration may be more appropriate when the application requires:

  • Rapid deceleration
  • High regenerative-energy dissipation
  • Frequent braking
  • High-inertia stopping
  • Higher motor current
  • Higher Heavy Duty power
  • Different frame dimensions

For example, if internal dynamic braking is important, a closely related 98 A PowerFlex 753 configuration with an internal dynamic-braking transistor should be considered.

If the motor requires more than the 98 A class, the 119 A or 142 A configurations provide additional capacity.


57. Detailed Parameter Summary

Category Parameter Specification
Identification Model 20F1ANF098JN0NNNNN
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 Nominal Output Current 98 A
Electrical Normal Duty 90 kW
Electrical Heavy Duty 75 kW
Electrical Frequency 50/60 Hz
Input Input Configuration 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
Construction Frame 6
Construction Enclosure Open Type
Construction Protection IP00/IP20, 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
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

58. Comparison with the 82 A Version

The 20F1ANF082JN0NNNNN is the most obvious lower-capacity comparison.

Parameter 82 A Model 98 A Model
Model 20F1ANF082JN0NNNNN 20F1ANF098JN0NNNNN
Voltage 690 VAC 690 VAC
Output Current 82 A 98 A
Normal Duty 75 kW 90 kW
Heavy Duty 55 kW 75 kW
Frame 6 6
Dynamic Braking None None
Cooling Forced Air Forced Air
Embedded I/O Yes Yes
PID Yes Yes
Approx. Dimensions 665.5 × 308 × 346.4 mm 665.5 × 308 × 346.4 mm
Approx. Weight 38.6 kg 38.6 kg

The 98 A model provides a significant increase in power capacity while retaining the same general Frame 6 mechanical platform.

This can make it a convenient choice when a project moves beyond the capacity of the 82 A configuration.


59. Comparison with the 119 A Version

Parameter 98 A Model 119 A Model
Model 20F1ANF098JN0NNNNN 20F1ANF119JN0NNNNN
Voltage 690 VAC 690 VAC
Output 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
Enclosure Open Type Open Type
Embedded I/O Yes Yes
PID Yes Yes
Dimensions Frame 6 Frame 6
Weight Approx. 38.6 kg Configuration dependent

The 119 A version becomes attractive when the motor or load exceeds the practical range of the 98 A model.


60. Comparison with the Braking Configuration

Parameter No-Braking Configuration Braking Configuration
Model 20F1ANF098JN0NNNNN 20F1ANF098JA0NNNNN
Voltage 690 VAC 690 VAC
Current 98 A 98 A
Normal Duty 90 kW 90 kW
Heavy Duty 75 kW 75 kW
Frame 6 6
Internal DB Transistor No Yes
Cooling Forced Air Forced Air
Main Difference Standard no-internal-DB configuration Internal dynamic-braking capability

This is an important comparison because the two configurations can have very similar electrical capacity while serving different machine requirements.

For a pump or fan with normal stopping requirements, the target configuration can be appropriate.

For a high-inertia machine requiring substantial dynamic braking, the braking configuration deserves consideration.


61. Overall Product Advantages

The 20F1ANF098JN0NNNNN combines high electrical capacity with a flexible industrial drive platform.

Its 690 VAC three-phase rating makes it appropriate for large industrial motor systems.

Its 98 A nominal output provides substantial motor-current capacity.

Its 90 kW Normal Duty rating makes it well suited to large variable-torque machinery.

Its 75 kW Heavy Duty rating provides useful capacity for demanding constant-torque applications.

The PowerFlex 753 platform adds embedded I/O and process-control functionality.

The filtered configuration with CM jumper installed supports practical industrial EMC design.

The Frame 6 forced-air construction provides a substantial industrial drive platform while maintaining a manageable cabinet footprint for this power class.

The blank/no-HIM configuration is particularly suitable for centralized automation systems.


62. Final Assessment

The Allen-Bradley 20F1ANF098JN0NNNNN is a high-capacity PowerFlex 753 AC variable-frequency drive intended for large industrial three-phase motor applications.

Its key electrical rating is:

690 VAC / 3 Phase / 98 A / 90 kW Normal Duty / 75 kW Heavy Duty

Its mechanical configuration is:

Frame 6 / Air Cooled / Open Type

Its approximate physical dimensions are:

665.5 × 308.0 × 346.4 mm

Its approximate weight is:

38.6 kg

The drive includes embedded I/O and PID capability, while the specified configuration provides filtered operation with the CM jumper installed.

The model does not include an internal dynamic-braking transistor, so braking requirements should be evaluated carefully for high-inertia machinery or applications involving frequent rapid deceleration.

For large pumps, fans, blowers, ventilation systems and other variable-torque machinery, the 90 kW Normal Duty rating is particularly significant.

For conveyors, feeders, mixers and other constant-torque equipment, the 75 kW Heavy Duty rating should be used as the main power-selection reference.

The closest lower-capacity alternative is the 20F1ANF082JN0NNNNN.

The closest braking-oriented alternative is the 20F1ANF098JA0NNNNN.

For greater capacity, the 20F1ANF119JN0NNNNN, 20F1ANF142JN0NNNNN, and 20F1ANF171JN0NNNNN provide progressively higher power ranges.

Overall, the 20F1ANF098JN0NNNNN is a strong choice for a 690 VAC, high-power industrial motor-control system where approximately 98 A output capability, 90 kW Normal Duty, 75 kW Heavy Duty, embedded I/O, PID functionality, filtered operation and cabinet integration are required, while an internal dynamic-braking transistor is not necessary.



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