• Allen Bradley 20F1AGF212JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1AGF212JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1AGF212JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20F1AGF212JN0NNNNN PowerFlex AC Drive
20F1AGF212JN0NNNNN — Detailed Product Introduction, Specifications, Applications, Advantages and Model Selection Guide The 20F1AGF212JN0NNNNN is a high-power AC variable frequency drive designed for lar……
Allen Bradley 20F1AGF212JN0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20F1AGF212JN0NNNNN
  • PowerFlex AC Drive
  • USA
  • 1614 × 609.6 × 464.8 mm
  • 132kg
  • Xiamen, China
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20F1AGF212JN0NNNNN — Detailed Product Introduction, Specifications, Applications, Advantages and Model Selection Guide

The 20F1AGF212JN0NNNNN is a high-power AC variable frequency drive designed for large industrial motor applications. It belongs to the PowerFlex 753 series and is configured for 690 V AC, three-phase operation, with a 212 A normal-duty output rating, 200 kW normal-duty capacity, and 160 kW heavy-duty capacity.

This model is particularly suitable for large pumps, fans, conveyors, compressors, process machinery, material-handling systems and other industrial equipment requiring stable variable-speed control.

The model uses a Frame 7 construction and an IP54 / NEMA Type 12 enclosure. It is air-cooled and uses an AC input with precharge. The configuration includes embedded I/O and filtering, while the specific model does not include an internal dynamic-braking transistor.


1. Basic Product Information

Item Specification
Model 20F1AGF212JN0NNNNN
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 753
Product Type AC Variable Frequency Drive
Drive Construction Air Cooled
Input Voltage 690 V AC
Input Phase 3 Phase
Normal-Duty Power 200 kW
Heavy-Duty Power 160 kW
Normal-Duty Output Current 212 A
Heavy-Duty Output Current 171 A
Frame Size Frame 7
Enclosure IP54 / NEMA Type 12
Input Configuration AC Input with Precharge
DC Terminals No
Embedded I/O Yes
Filtering Included
Common-Mode Capacitor Jumper Installed
Dynamic Braking Transistor No
HIM / Keypad None / Blank
Cooling Forced Air
Approx. Height 1614 mm
Approx. Width 609.6 mm
Approx. Depth 464.8 mm
Approx. Dimensions 1614 × 609.6 × 464.8 mm
Approx. Weight 132 kg
Operating Temperature Approximately -20 to 60 °C
Storage Temperature Approximately -40 to 70 °C
Control Characteristic PID capable
Typical Application Large industrial motor control

2. Product Overview

The 20F1AGF212JN0NNNNN is positioned toward the high-power end of the PowerFlex 753 family.

Its main function is to provide controlled variable-frequency operation for large three-phase AC motors. Instead of allowing the motor to operate only at a fixed speed determined by the incoming power frequency, the drive adjusts the electrical output supplied to the motor according to the required operating speed and load.

For industrial equipment, this provides much more flexibility than simple direct-on-line motor starting.

A large motor can be accelerated gradually, operated at different speeds, and decelerated according to the process requirements. This can help reduce mechanical shock, improve process control and, in applications such as pumps and fans, potentially reduce energy consumption.

The 20F1AGF212JN0NNNNN is especially relevant to 690 V industrial motor systems where the motor power is around the 200 kW class.

Its 212 A normal-duty output rating provides considerable current capacity, while the 160 kW heavy-duty rating gives the drive a separate rating for applications requiring more demanding overload performance.


3. Meaning of the Main Model Configuration

The complete catalog number is:

20F1AGF212JN0NNNNN

The model designation identifies a particular combination of voltage class, input configuration, enclosure, current rating, filtering and other hardware options.

The important practical characteristics of this configuration are:

Configuration Description
690 V Class Designed for high-voltage industrial motor systems
212 A Normal-duty output-current rating
200 kW Normal-duty power rating
160 kW Heavy-duty power rating
Frame 7 Large physical drive frame
Air Cooled Forced-air thermal management
IP54 / Type 12 Protected enclosure
Precharge AC input with precharge
No DC Terminals This configuration does not provide the specified DC terminals
Filtered Filtering included
CM Jumper Installed Common-mode capacitor jumper installed
No Internal Brake Transistor Dynamic braking transistor is not included
No HIM Blank configuration without keypad/HIM

The complete model number should be used when identifying or replacing the drive. Selecting a replacement based only on voltage and kW can lead to an incorrect configuration.


4. Detailed Electrical Parameters

Electrical Parameter Specification
Model 20F1AGF212JN0NNNNN
Rated Input Voltage 690 V AC
Input Phase 3 Phase
Input Frequency 50 / 60 Hz
Normal-Duty Output Current 212 A
Heavy-Duty Output Current 171 A
Normal-Duty Power 200 kW
Heavy-Duty Power 160 kW
Drive Frame Frame 7
Output Phase 3 Phase
Cooling Method Forced Air
Input Type AC Input with Precharge
DC Terminals No
Dynamic Braking Transistor No
Filtering Yes
Common-Mode Capacitor Jumper Installed
Enclosure IP54
NEMA Rating Type 12
Control Characteristic PID
Integrated Motion No
Safety Function Compatibility Suitable for applicable safety functions
Keypad No HIM / Blank
Approx. Height 1614 mm
Approx. Width 609.6 mm
Approx. Depth 464.8 mm
Dimensions 1614 × 609.6 × 464.8 mm
Weight 132 kg

5. Normal-Duty and Heavy-Duty Ratings

One of the most important points when selecting this drive is the difference between Normal Duty (ND) and Heavy Duty (HD).

The drive is rated at:

200 kW ND / 160 kW HD

This does not mean that the drive is two different products. It means that the same hardware has different permissible ratings depending on the load profile and overload requirements.

Normal-duty applications generally have relatively moderate overload requirements.

Typical examples include large centrifugal pumps and fans where the torque characteristics are comparatively predictable.

Heavy-duty applications can require greater overload capability because the motor may experience higher starting torque, acceleration torque or repeated load peaks.

For this model, the heavy-duty rating is 160 kW.

Therefore, if the application involves a 160 kW motor with demanding overload characteristics, the heavy-duty rating becomes an important reference rather than simply looking at the 200 kW normal-duty number.


6. 690 V High-Voltage Design

The 690 V rating is one of the most significant features of this model.

A 690 V motor system is common in large industrial installations because higher voltage allows a large amount of power to be transferred with lower current compared with a lower-voltage system at the same power level.

For example, a 200 kW-class motor represents a substantial electrical load.

Using a 690 V system can be advantageous for large industrial motors because the current level can be managed more effectively throughout the electrical distribution system.

This makes the 20F1AGF212JN0NNNNN particularly suitable for large facilities where 690 V motor systems are already part of the plant architecture.


7. IP54 / NEMA Type 12 Enclosure

The drive uses an IP54 / NEMA Type 12 enclosure configuration.

This is important for industrial installations because the drive is not simply an exposed electronic assembly.

The enclosure provides protection against normal industrial dust and limited moisture exposure.

It can therefore be appropriate for environments such as:

  • Manufacturing plants
  • Pump rooms
  • Processing facilities
  • Utility rooms
  • Conveyor areas
  • Water-treatment facilities
  • Material-handling areas
  • Industrial ventilation systems

However, IP54 does not mean the drive can be installed without environmental consideration.

The surrounding temperature, humidity, corrosive substances, dust concentration and ventilation requirements must still be evaluated.


8. Air-Cooled Construction

The 20F1AGF212JN0NNNNN uses forced-air cooling.

At approximately 200 kW, thermal management is a major part of the installation design.

The power semiconductors and other electrical components generate heat during normal operation. The cooling system moves air through the drive and transfers heat away from the power section.

The installation should therefore provide adequate ventilation.

Particular attention should be given to:

  • Air inlet clearance
  • Air outlet clearance
  • Cabinet ventilation
  • Ambient temperature
  • Air cleanliness
  • Fan condition
  • Heat generated by nearby equipment
  • Installation altitude
  • Maintenance access

For a Frame 7 drive, insufficient airflow can result in excessive temperature and unnecessary thermal stress.


9. Dynamic Braking

A significant difference between this model and some related configurations is that the 20F1AGF212JN0NNNNN does not include an internal dynamic-braking transistor.

This is an important selection point.

When a high-inertia motor decelerates, energy can flow back toward the drive’s DC bus. If rapid deceleration is required, that regenerated energy may need to be dissipated through an appropriate braking arrangement.

Because this particular model does not have the internal braking transistor specified in some alternative configurations, the braking requirements should be evaluated before selecting it for:

  • High-inertia conveyors
  • Hoisting equipment
  • Centrifuges
  • Rapid-stop machinery
  • Large rotating equipment
  • Applications with frequent deceleration

For applications requiring substantial dynamic braking, a suitable drive configuration and external braking architecture should be considered.


10. Product Advantages

10.1 High 200 kW Normal-Duty Capacity

The 200 kW normal-duty rating is the primary reason to select this model.

It is designed for large industrial motors and provides considerably more capacity than the smaller members of the same series.

For a large pump, fan, conveyor or process machine, this capacity provides an appropriate operating range without requiring the system to rely on a smaller drive operating continuously near its maximum rating.


10.2 212 A Output Capability

The 212 A output rating provides substantial motor-current capacity.

This is particularly important when the motor’s actual full-load current is high.

When selecting a drive, current should be considered at least as carefully as horsepower or kilowatts.

Two motors with the same nominal power can have different current requirements depending on voltage, efficiency, power factor and operating conditions.


10.3 690 V Compatibility

The 690 V rating makes the model particularly useful in high-power industrial installations.

It allows the drive to integrate into electrical systems designed around 690 V motors without requiring the system to be redesigned around a lower-voltage motor.


10.4 Industrial Enclosure

The IP54 / Type 12 construction is useful where the drive requires a higher level of environmental protection than an open-frame unit.

This can simplify installation in certain industrial environments.


10.5 Embedded I/O

Embedded I/O provides a practical foundation for connecting the drive to control circuits and process equipment.

This reduces the need to build every basic control function from separate hardware.

Depending on the machine design, additional option cards can also be used where more specialized communication, feedback or I/O functions are required.


10.6 Integrated Filtering

The filtered configuration can help with electromagnetic compatibility considerations.

This is particularly useful in larger industrial systems where multiple drives, motors, control equipment and communication networks operate in the same electrical environment.


10.7 Large Frame Construction

The Frame 7 architecture provides the physical and thermal capacity necessary for this class of drive.

It is designed for a substantially larger motor than compact drives intended for machine-level applications.


11. Main Product Applications

11.1 Large Pumps

Large industrial pumps are one of the most natural applications for a drive of this capacity.

The drive can regulate motor speed according to actual process demand.

Instead of continuously running the motor at full speed and using a mechanical valve to control flow, variable-speed operation can be used where the pump system and process requirements permit it.

Typical applications include:

  • Water circulation
  • Cooling-water systems
  • Industrial water treatment
  • Process pumping
  • Chemical processing
  • Mining systems
  • Utility pumping

11.2 Large Industrial Fans

Large fans and blowers frequently use high-power motors.

Variable-speed operation allows the airflow to be adjusted according to demand.

This can provide better process control and may reduce energy consumption compared with continuously operating at maximum speed.

The drive is therefore well suited to large ventilation and process-air systems.


11.3 Large Conveyors

Large conveyor systems can have considerable mechanical inertia.

Controlled acceleration allows the motor to build speed gradually instead of applying full torque instantaneously.

This can help reduce:

  • Belt shock
  • Gearbox stress
  • Coupling stress
  • Mechanical vibration
  • Starting current demand

For long conveyor systems, speed control can also be useful for coordinating multiple production stages.


11.4 Compressors

Large compressors can require substantial motor power and careful acceleration control.

The drive can provide variable-speed motor control where the compressor’s mechanical design and process requirements are compatible with variable-frequency operation.

The exact suitability should be determined from the compressor manufacturer’s motor and load characteristics.


11.5 Mixers and Agitators

Industrial mixers can have high starting torque requirements, particularly when starting with a material already inside the vessel.

The ability to control acceleration and operating speed can be useful in these applications.

The heavy-duty rating should be considered if the mixer experiences frequent high-load conditions.


11.6 Material-Handling Equipment

The high-current capacity makes this drive suitable for various large material-handling systems.

Possible applications include:

  • Bulk material conveyors
  • Feed systems
  • Processing machinery
  • Large crushers
  • Heavy-duty transport systems
  • Production-line machinery

12. Mechanical Dimensions and Weight

The physical dimensions of this model are particularly important because it is a large Frame 7 drive.

Mechanical Parameter Value
Model 20F1AGF212JN0NNNNN
Frame 7
Height 1614 mm
Width 609.6 mm
Depth 464.8 mm
Overall Dimensions 1614 × 609.6 × 464.8 mm
Weight 132 kg
Cooling Forced Air
Enclosure IP54 / NEMA Type 12
Installation Consideration Adequate ventilation and service clearance required

At 132 kg, mechanical handling should be planned before installation.

The installation structure must be capable of supporting the drive and any associated equipment.

When installing inside a control cabinet or electrical room, the dimensions should not be considered alone. Clearance for airflow, cable entry, maintenance and component removal should also be incorporated into the installation design.


13. Five Recommended Models from the Same Series

The following models are useful alternatives within the PowerFlex 753 high-power family.

They cover a range around the 200 kW class and are therefore more meaningful for comparison than small compact drives.

Model Voltage ND Current HD Current ND Power HD Power Frame Approx. Dimensions Approx. Weight
20F1AGF119JN0NNNNN 690 V AC 119 A 98 A 110 kW 90 kW 6 Approx. 1000 × 500 × 450 mm Approx. 90–110 kg
20F1AGF142JN0NNNNN 690 V AC 142 A 119 A 132 kW 110 kW 6 Approx. 1000 × 500 × 450 mm Approx. 90–110 kg
20F1AGF171JN0NNNNN 690 V AC 171 A 142 A 160 kW 132 kW 7 Approx. 1614 × 610 × 465 mm Approx. 125–132 kg
20F1AGF212JN0NNNNN 690 V AC 212 A 171 A 200 kW 160 kW 7 1614 × 609.6 × 464.8 mm 132 kg
20F1AGF263JN0NNNNN 690 V AC 263 A 212 A 250 kW 200 kW 7 Approx. 1614 × 610 × 465 mm Approx. 132–145 kg

The 20F1AGF171JN0NNNNN is particularly useful when the required motor capacity is below the 200 kW level.

The 20F1AGF263JN0NNNNN is the logical step upward when approximately 250 kW of normal-duty capacity is required.

The 119 A and 142 A models are more appropriate when the motor is smaller and a 200 kW-class drive would be unnecessarily oversized.


14. Same-Series Selection Comparison

Model ND Power HD Power ND Current HD Current Recommended Load Range
20F1AGF119JN0NNNNN 110 kW 90 kW 119 A 98 A Medium-large motor
20F1AGF142JN0NNNNN 132 kW 110 kW 142 A 119 A Large motor
20F1AGF171JN0NNNNN 160 kW 132 kW 171 A 142 A Large industrial motor
20F1AGF212JN0NNNNN 200 kW 160 kW 212 A 171 A Very large industrial motor
20F1AGF263JN0NNNNN 250 kW 200 kW 263 A 212 A Very high-power motor

The 20F1AGF212JN0NNNNN therefore occupies an important middle position in the high-power 690 V range.

It is substantially larger than the 160 kW class while remaining below the 250 kW class.


15. Five Popular Models from the Same Brand

The following models cover several widely used drive families from the same brand. They are not direct replacements for the 20F1AGF212JN0NNNNN; instead, they are useful references for different application sizes and control requirements.

Model Product Series Voltage Class Approx. Power Class Typical Application Approx. Dimensions Approx. Weight
20G11ND011JA0NNNNN PowerFlex 755 480 V AC 5–7.5 kW class General industrial machinery Approx. 300–500 × 200–300 × 200–300 mm Approx. 10–20 kg
20G11ND022JA0NNNNN PowerFlex 755 480 V AC 15 kW class Pumps, fans, conveyors Approx. 400–500 × 250–350 × 250–350 mm Approx. 15–25 kg
25B-D017N114 PowerFlex 525 480 V AC 7.5 kW class Compact machinery and pumps Approx. 250 × 150 × 180 mm Approx. 5–8 kg
25B-D024N114 PowerFlex 525 480 V AC 11 kW class Machine automation and HVAC Approx. 250 × 180 × 200 mm Approx. 7–10 kg
25C-D030N114 PowerFlex 527 480 V AC 15 kW class Machine automation and motion-oriented applications Approx. 300 × 200 × 200 mm Approx. 8–12 kg

These five products should be viewed as same-brand alternatives for different application sizes, rather than direct substitutes.

A 7.5 kW or 15 kW drive, for example, cannot replace a 200 kW / 690 V drive simply because both products perform variable-frequency motor control.


16. Comparison Between the Main Model and Other Series

Parameter 20F1AGF212JN0NNNNN Smaller 753 PowerFlex 755 PowerFlex 525 PowerFlex 527
Main Purpose High-power motor control General industrial motor control Advanced/high-performance drive control Compact drive control Machine-oriented drive control
Typical Power 200 kW ND Smaller to medium Broad range Small to medium Small to medium
Voltage 690 V 690 V / other classes Multiple voltage classes 480 V class 480 V class
Current 212 A ND Lower Broad range Much lower Much lower
Frame 7 Smaller/Larger depending on model Multiple Compact Compact
Enclosure IP54 / Type 12 Depends on model Depends on model Compact enclosure Compact enclosure
Cooling Forced Air Forced Air Air cooled / other configurations Fan cooled Fan cooled
Typical Environment Large industrial equipment Industrial equipment Advanced industrial systems Machine-level applications Machine automation
Weight 132 kg Lower for smaller models Model dependent Much lower Much lower

17. Key Application Matching Table

Application Recommended Suitability Reason
Large centrifugal pump Excellent High-power variable-speed operation
Large industrial fan Excellent High motor capacity and speed control
Cooling-water pump Excellent Suitable for continuous high-power operation
Large conveyor Excellent Controlled acceleration and speed regulation
Heavy material handling Very Good High current capacity
Industrial compressor Good Requires load-specific verification
Large mixer Very Good Suitable for high-power variable-speed operation
Large blower Excellent Appropriate for high-power airflow control
Centrifuge Conditional Braking and inertia require detailed evaluation
Hoist Conditional Braking and safety architecture require special attention
High-inertia machine Conditional External braking requirements should be evaluated
HVAC fan Good May be technically oversized for smaller systems

18. Important Installation Considerations

Electrical Installation

Because this is a 690 V, 212 A, 200 kW-class drive, electrical installation should be carried out using appropriately rated equipment.

The incoming power system, disconnecting equipment, protective devices, cables, grounding system and motor must all be selected according to the actual installation.

The drive should not be selected simply because the motor nameplate says 200 kW.

The motor’s actual full-load current is one of the most important selection parameters.


Motor Compatibility

Before commissioning, the following motor information should be confirmed:

Motor Parameter Why It Matters
Rated Voltage Must be compatible with the drive output
Rated Current Determines required drive current capacity
Rated Power Determines approximate drive size
Rated Frequency Required for motor-control configuration
Rated Speed Used for motor-control setup
Power Factor Important for motor model configuration
Efficiency Useful for correct motor data
Insulation System Important for inverter-duty operation
Encoder / Feedback Required if closed-loop control is needed
Load Type Determines duty and overload requirements

19. Cabinet and Mechanical Installation

The 132 kg weight is a significant mechanical consideration.

The mounting structure should be designed for the actual drive weight, cable loads and environmental conditions.

The approximate physical size is:

1614 mm high × 609.6 mm wide × 464.8 mm deep

This is a substantial piece of equipment.

Therefore, before installation, the engineer should consider:

  • Cabinet dimensions
  • Door opening size
  • Transport path
  • Lifting equipment
  • Floor loading
  • Cable bending radius
  • Airflow
  • Maintenance clearance
  • Heat dissipation
  • Service access

The drive should not be installed in a confined space simply because its basic external dimensions appear to fit.


20. Cooling and Thermal Management

The drive’s forced-air cooling system requires a suitable air path.

The installation should avoid placing the drive directly beside equipment that produces large amounts of heat.

Dust accumulation should also be controlled.

If the drive is installed in an industrial environment with significant airborne contamination, regular inspection of the cooling path and fan system becomes particularly important.

For a high-power drive, cooling is directly related to reliability.


21. Braking Considerations

The 20F1AGF212JN0NNNNN does not include an internal dynamic-braking transistor.

This should be clearly distinguished from models in the same family that have different braking configurations.

For a pump or fan with relatively slow natural deceleration, this may not present a problem.

For a large conveyor with high inertia, however, the braking requirement can be much more significant.

If rapid deceleration is required, the complete system should be evaluated for:

  • Motor inertia
  • Load inertia
  • Deceleration time
  • Number of braking cycles
  • Regenerative energy
  • Braking resistor requirements
  • Drive DC-bus characteristics
  • Thermal capacity

This is one of the most important differences to check when comparing apparently similar catalog numbers.


22. Advantages for Pump and Fan Applications

The 20F1AGF212JN0NNNNN is especially attractive for variable-torque applications.

For centrifugal pumps and fans, power demand can change significantly as speed changes.

Reducing motor speed can therefore have a much larger effect on power consumption than simply reducing the motor’s operating voltage.

This is why high-power variable-frequency drives are widely used in:

  • Water circulation
  • Cooling towers
  • Industrial ventilation
  • Process-air systems
  • Large pumping stations
  • Utility systems

For continuously operating equipment, even a relatively modest reduction in operating speed can potentially result in meaningful energy savings.

The actual savings depend on the machine’s load profile and system design.


23. Advantages for Conveyor Systems

For conveyor applications, the drive provides controlled acceleration and deceleration.

A large conveyor motor can produce substantial mechanical forces during direct starting.

With controlled frequency and voltage, the motor can accelerate smoothly.

This can reduce mechanical shock on:

  • Conveyor belts
  • Gearboxes
  • Couplings
  • Shafts
  • Bearings
  • Material on the conveyor

Variable-speed control also allows production speed to be adjusted according to upstream and downstream processes.


24. Advantages for Process Machinery

In process machinery, motor speed is often part of the process itself.

For example, a mixer may require different speeds during different stages of production.

A pump may need to change speed according to tank level or pressure.

A fan may need to respond to process temperature.

A conveyor may need to synchronize with another machine.

A variable frequency drive makes these types of control strategies possible without continuously changing mechanical transmission components.


25. Recommended Selection Strategy

When choosing between the models in this family, the following sequence is recommended:

Selection Step Parameter Main Question
1 Motor Voltage Is the motor compatible with the drive voltage?
2 Motor Current Is the drive output current sufficient?
3 Duty Is the application ND or HD?
4 Motor Power Does the drive have sufficient kW capacity?
5 Load Type Pump, fan, conveyor, compressor or other?
6 Overload How much overload is required?
7 Braking Is rapid deceleration required?
8 Enclosure Is IP54 / Type 12 required?
9 Communication Which network or control method is required?
10 Feedback Is encoder or other feedback required?
11 Dimensions Does the installation area accommodate the drive?
12 Weight Can the mounting and lifting system handle 132 kg?

26. When to Choose 20F1AGF212JN0NNNNN

The 20F1AGF212JN0NNNNN is particularly appropriate when the application has most of the following characteristics:

  • 690 V three-phase motor
  • Motor power around 200 kW
  • Normal-duty operation
  • Required output current around 212 A or lower
  • Industrial environment
  • IP54 / Type 12 protection requirement
  • Air-cooled installation
  • Embedded I/O requirement
  • Integrated filtering requirement
  • No requirement for an internal braking transistor
  • Large pump, fan, conveyor or process machine

When these conditions are present, the model provides a well-balanced high-power solution.


27. When a Different Model May Be Better

The model may not be the best choice when:

  • The motor is substantially smaller than 200 kW.
  • The application requires more than 212 A.
  • The motor requires a different voltage class.
  • The machine needs an internal dynamic-braking transistor.
  • The installation requires a different enclosure.
  • The application requires specialized motion functionality.
  • The machine requires a substantially smaller physical footprint.
  • The process requires specialized feedback or communication hardware.

In these cases, another configuration in the same family or another drive family may be more appropriate.


28. Overall Product Strengths

Advantage Explanation
200 kW ND Capacity Suitable for large industrial motors
212 A Output High current capability
690 V Input Designed for high-power industrial motor systems
160 kW HD Rating Supports demanding load profiles
IP54 / Type 12 Suitable for protected industrial environments
Frame 7 Provides the physical and thermal capacity for large loads
Embedded I/O Convenient basic machine integration
Integrated Filtering Helps simplify EMC considerations
Forced-Air Cooling Appropriate for high-power operation
Precharge Input Suitable for high-power DC-bus charging management
Large Application Range Pumps, fans, conveyors and process machinery

29. Complete Product Specification Table

Category Parameter Specification
Product Model 20F1AGF212JN0NNNNN
Product Brand Allen-Bradley
Product Series PowerFlex 753
Product Type AC Variable Frequency Drive
Electrical Input Voltage 690 V AC
Electrical Input Phase 3 Phase
Electrical Input Frequency 50 / 60 Hz
Electrical ND Current 212 A
Electrical HD Current 171 A
Electrical ND Power 200 kW
Electrical HD Power 160 kW
Electrical Output 3 Phase AC
Construction Frame 7
Construction Cooling Air Cooled
Construction Enclosure IP54
Construction NEMA Type 12
Construction Input Type AC Input with Precharge
Construction DC Terminals No
Construction Embedded I/O Yes
Construction Filtering Yes
Construction CM Jumper Installed
Braking Internal Dynamic Braking Transistor No
Interface HIM None / Blank
Control PID Supported
Environment Operating Temperature Approx. -20 to 60 °C
Environment Storage Temperature Approx. -40 to 70 °C
Mechanical Height 1614 mm
Mechanical Width 609.6 mm
Mechanical Depth 464.8 mm
Mechanical Dimensions 1614 × 609.6 × 464.8 mm
Mechanical Weight 132 kg
Application Motor Class Large industrial AC motor
Application Typical Power Around 200 kW
Application Typical Loads Pumps, fans, conveyors, compressors, process equipment

30. Final Recommendation

The 20F1AGF212JN0NNNNN is a high-power PowerFlex 753 variable frequency drive designed for 690 V three-phase industrial motor applications.

Its most important specifications are 212 A normal-duty current, 200 kW normal-duty power, 171 A heavy-duty current, 160 kW heavy-duty power, Frame 7 construction, IP54 / NEMA Type 12 protection, air cooling, embedded I/O, filtering and AC input with precharge.

Its physical dimensions are approximately 1614 × 609.6 × 464.8 mm, with a weight of approximately 132 kg.

For large pumps, fans, conveyors and process machinery, this combination provides a strong balance between motor capacity, environmental protection and installation flexibility.

The main point that deserves attention is the absence of an internal dynamic-braking transistor in this particular configuration. If the machine has high inertia or requires rapid and repeated deceleration, braking requirements should be evaluated separately before final selection.

For applications requiring less power, the 20F1AGF119JN0NNNNN, 20F1AGF142JN0NNNNN and 20F1AGF171JN0NNNNN are useful lower-capacity choices.

For applications requiring more capacity, the 20F1AGF263JN0NNNNN is a logical higher-capacity option.

Overall, the 20F1AGF212JN0NNNNN is best understood as a large-frame, high-voltage, 200 kW-class industrial AC drive intended for serious continuous-duty motor-control applications rather than compact machine automation.



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