• Allen Bradley 20G11TF265JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11TF265JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11TF265JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G11TF265JN0NNNNN PowerFlex AC Drive
Allen-Bradley 20G11TF265JN0NNNNN PowerFlex 755 AC Drive — Detailed Product Overview, Specifications, Applications, Advantages and Model Recommendations The Allen-Bradley 20G11TF265JN0NNNNN is a high-pow……
Allen Bradley 20G11TF265JN0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20G11TF265JN0NNNNN
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Allen-Bradley 20G11TF265JN0NNNNN PowerFlex 755 AC Drive — Detailed Product Overview, Specifications, Applications, Advantages and Model Recommendations

The Allen-Bradley 20G11TF265JN0NNNNN is a high-power PowerFlex 755 AC Drive designed for demanding industrial motor-control applications where high voltage, high current capacity, reliable speed regulation, and integration with plant automation systems are required.

This model is a 690 VAC, three-phase, air-cooled drive with a 265 A Normal Duty rating, and it belongs to the high-power Frame 8 class of the PowerFlex 755 family. Its three duty ratings allow the same drive platform to cover approximately 315 kW Light Duty, 250 kW Normal Duty, and 200 kW Heavy Duty applications.

The model is particularly suitable for large conveyors, pumps, fans, compressors, mixers, crushers, mills, material-handling systems, process machinery, and other large industrial rotating equipment.


1. Basic Product Information

Parameter Specification
Brand Allen-Bradley
Product Family PowerFlex
Model 20G11TF265JN0NNNNN
Product Series PowerFlex 755
Product Type Air-Cooled AC Drive
Drive Type Variable Frequency AC Drive
Rated Voltage 690 VAC
Input Phase Three Phase
DC Input Class Approximately 932 VDC
Rated Current 265 A Normal Duty
Light Duty Rating 330 A / 315 kW
Normal Duty Rating 265 A / 250 kW
Heavy Duty Rating 215 A / 200 kW
Frame Size Frame 8
Cooling Method Forced Air / Air Cooled
Input Configuration AC Input with DC Terminals
Enclosure Type Open Type
Communication Embedded EtherNet/IP
Filtering Filtered
Common-Mode Capacitor Jumper Installed
Dynamic Braking None
HIM Blank / No HIM
Approximate Dimensions About 900 × 600 × 1000 mm class*
Approximate Weight About 300–400 kg class*

*Dimensions and weight are intended as practical equipment-planning values for the high-power Frame 8 configuration. Actual overall dimensions and shipping/installed weight can vary according to cabinet arrangement, accessories, disconnecting equipment, cooling arrangement, power wiring configuration, and other selected options. The final mechanical drawing should be used for detailed cabinet and transportation planning.


2. Brand and Product Series

Brand: Allen-Bradley

Allen-Bradley is a well-established industrial automation brand widely associated with PLC systems, industrial networking, motor control, safety systems, operator interfaces, and variable-frequency drives.

The PowerFlex product family is one of its major drive platforms, covering applications from compact machine-level drives to large industrial motor-control systems.

For large industrial motors, the PowerFlex 750 family is positioned toward applications requiring considerably more control capability, networking, application flexibility, and system integration than basic compact drives.


3. Product Series: PowerFlex 755

The 20G11TF265JN0NNNNN belongs to the PowerFlex 755 AC Drive series.

The PowerFlex 755 is intended primarily for industrial applications in which the drive is not simply required to start and stop a motor, but must also provide sophisticated speed, torque, process, and automation control.

Typical characteristics of the series include:

  • High-power motor control.
  • Flexible speed and torque regulation.
  • Multiple motor-control strategies.
  • Industrial Ethernet integration.
  • Modular I/O and option architecture.
  • Support for demanding process applications.
  • Suitable for large pumps, fans, conveyors, mixers, compressors, mills, and similar machinery.
  • Availability across a broad voltage and power range.
  • Suitable for centralized control-panel and industrial automation architectures.

The 20G11TF265JN0NNNNN represents the 690 VAC high-power section of the PowerFlex 755 family.


4. Understanding Model 20G11TF265JN0NNNNN

The catalog number contains multiple configuration identifiers.

Model Section General Meaning
20G PowerFlex 755 family identification
11 Drive configuration family
T High-voltage 690 VAC class
F 690 VAC / high-power drive configuration
265 265 A class Normal Duty rating
J Common-mode capacitor jumper installed configuration
N0NNNNN Additional factory configuration / option identifiers

The most important information for system selection is the combination of 690 VAC, 265 A Normal Duty, and the associated Light Duty and Heavy Duty ratings.

The “265” in the catalog number should not be interpreted as a simple maximum output-power value. It corresponds primarily to the drive’s Normal Duty current class.


5. Main Electrical Parameters

Parameter 20G11TF265JN0NNNNN
Model 20G11TF265JN0NNNNN
Nominal Input Voltage 690 VAC
Input Voltage Range Approximately 621–759 VAC
Input Frequency 50/60 Hz class
Input Phase 3 Phase
DC Input Voltage Class Approximately 932 VDC
Normal Duty Continuous Current 265 A
Light Duty Continuous Current 330 A
Heavy Duty Continuous Current 215 A
Light Duty Power 315 kW
Normal Duty Power 250 kW
Heavy Duty Power 200 kW
Equivalent Light Duty Power Approximately 422 HP
Equivalent Normal Duty Power Approximately 335 HP
Equivalent Heavy Duty Power Approximately 268 HP
Frame Frame 8
Cooling Forced Air
Input AC with DC Terminals
Output Variable-frequency three-phase AC
Maximum Output Frequency Up to approximately 400 Hz depending on configuration/control strategy
Dynamic Braking None
Filter Filtered
CM Jumper Installed
Communication Embedded EtherNet/IP
HIM None / Blank
Enclosure Open Type
Dimensions Approx. 900 × 600 × 1000 mm class*
Weight Approx. 300–400 kg class*

*Mechanical dimensions and weight should be treated as planning values rather than fabrication dimensions.


6. Light Duty, Normal Duty and Heavy Duty Ratings

One of the most important characteristics of the 20G11TF265JN0NNNNN is that its power capability depends on the application duty classification.

The same drive does not necessarily deliver the same kW rating for every application.

Duty Classification Continuous Current Approx. Power Typical Application
Light Duty 330 A 315 kW Fans, pumps, low-overload machinery
Normal Duty 265 A 250 kW Conveyors, process machinery, general industrial loads
Heavy Duty 215 A 200 kW Crushers, mixers, high-overload machinery

This distinction is important because industrial motors often experience significantly different load profiles.

A centrifugal fan may require relatively stable torque, while a crusher or loaded conveyor can experience sudden mechanical resistance. Therefore, simply comparing motor nameplate kW with drive kW is not sufficient.

The motor’s actual current, overload profile, acceleration requirements, ambient temperature, duty cycle, and mechanical load should all be considered.


7. Light Duty Rating — 315 kW

In Light Duty operation, the drive is rated at approximately:

330 A / 315 kW.

This rating is especially useful for variable-torque loads.

Typical examples include:

  • Large centrifugal fans.
  • Cooling-water pumps.
  • Process-water pumps.
  • Ventilation systems.
  • Large air-handling systems.
  • Some centrifugal compressors.
  • Variable-torque process equipment.

For these applications, the motor normally does not require extremely high overload capability, allowing the drive to utilize its higher Light Duty power rating.


8. Normal Duty Rating — 250 kW

The Normal Duty rating is approximately:

265 A / 250 kW.

This is one of the most useful reference ratings for selecting this model.

Applications can include:

  • Belt conveyors.
  • Material-handling machinery.
  • General process machinery.
  • Large pumps.
  • Industrial fans.
  • Mixers with moderate starting requirements.
  • Production machinery.
  • Large rotating machinery.

A 250 kW motor with a relatively stable load profile is therefore a natural application area for this drive.


9. Heavy Duty Rating — 200 kW

The Heavy Duty rating is approximately:

215 A / 200 kW.

Heavy Duty selection should be considered when the machine experiences significant overload or high starting torque requirements.

Typical applications include:

  • Crushers.
  • Heavy conveyors.
  • Mills.
  • High-load mixers.
  • Certain extruders.
  • Material-processing machinery.
  • Machinery with frequent acceleration and deceleration.
  • Equipment with high breakaway torque.

For these machines, the lower Heavy Duty kW rating is not a disadvantage. It reflects the fact that the drive must reserve more current capability for overload conditions.


10. Product Introduction

The 20G11TF265JN0NNNNN is a large-frame industrial variable-frequency drive intended to regulate the speed and torque of high-power AC motors.

Instead of operating a motor directly from a fixed-frequency 690 VAC supply, the drive controls the electrical power delivered to the motor.

This allows the motor to operate at controlled speeds according to the requirements of the mechanical process.

The drive first processes the incoming electrical power and then generates a controlled variable-frequency output.

By adjusting output frequency and voltage according to the selected motor-control method, the drive can control motor speed, torque, acceleration, deceleration, and process response.

For large industrial machines, this capability can significantly improve process control compared with simple fixed-speed operation.


11. Operating Principle

The basic operating process can be understood as:

690 VAC AC Input → Power Conversion → DC Link → Inverter → Variable-Frequency AC Output → Motor

The incoming three-phase AC power is converted into DC power inside the drive.

The DC link provides an intermediate energy-storage and power-processing stage.

The inverter section then uses high-speed switching devices to synthesize a controlled three-phase AC output.

The frequency and voltage of this output are controlled according to the motor-control algorithm and operating command.

As a result, the motor can run at different speeds while maintaining appropriate torque characteristics.


12. Main Product Functions

12.1 Variable-Speed Control

The primary function is variable-speed motor control.

Instead of operating a motor continuously at a fixed speed, the drive allows the process controller to determine the appropriate motor speed.

This is particularly useful for pumps, fans, conveyors and production equipment.


12.2 Controlled Acceleration

The drive can provide controlled acceleration instead of applying full line voltage directly to the motor.

This helps reduce mechanical shock during starting.

For large motors, controlled acceleration can be especially valuable because sudden torque can stress:

  • Gearboxes.
  • Couplings.
  • Shafts.
  • Conveyor belts.
  • Bearings.
  • Pump systems.
  • Mechanical transmission components.

12.3 Controlled Deceleration

The drive can also manage motor deceleration.

A properly configured deceleration profile can reduce sudden mechanical stress and provide smoother process operation.

However, this specific configuration has no dynamic braking, so applications involving substantial regenerative energy must be evaluated separately.


12.4 Torque Control

The PowerFlex 755 platform supports sophisticated motor-control functions suitable for applications where torque response is important.

This is useful in applications such as:

  • Conveyors.
  • Hoists.
  • Mixers.
  • Mills.
  • Material-processing machinery.
  • Heavy industrial rotating equipment.

12.5 Industrial Network Integration

The model includes embedded EtherNet/IP capability.

This makes it suitable for integration with industrial automation systems where the drive needs to exchange:

  • Start/stop commands.
  • Speed references.
  • Actual speed.
  • Motor current.
  • Fault information.
  • Status information.
  • Diagnostic information.
  • Process control values.

This reduces the need for excessive hardwired control connections in a modern automation architecture.


13. Main Advantages

Advantage Description
High Power Capacity Suitable for large industrial motors up to approximately 315 kW in Light Duty applications
690 VAC Operation Suitable for high-voltage industrial motor systems
Large Current Capacity 265 A Normal Duty rating
Flexible Duty Ratings Supports Light, Normal and Heavy Duty applications
Industrial Networking Embedded EtherNet/IP simplifies automation integration
Air Cooling Practical forced-air cooling for high-power industrial operation
High-Power Frame 8 Designed for large industrial drive applications
DC Terminals Supports system architectures requiring DC-bus access
Process Flexibility Suitable for pumps, fans, conveyors, mixers and heavy machinery
Advanced Control More sophisticated than basic VFD applications
Industrial Construction Designed for demanding industrial environments
Scalable Family Related models provide a clear power-selection path

14. Mechanical Specifications

Because this is a high-power Frame 8 drive, it should not be compared mechanically with compact wall-mounted drives.

Mechanical Parameter Approximate Value
Model 20G11TF265JN0NNNNN
Frame Size Frame 8
Cooling Forced Air
Mounting Style Floor / cabinet integration oriented
Enclosure Open Type
Approx. Height 900 mm class
Approx. Width 600 mm class
Approx. Depth 1000 mm class
Approx. Overall Size 900 × 600 × 1000 mm class
Approx. Weight 300–400 kg
Installation Industrial cabinet / equipment area
Service Clearance Required around power and cooling sections
Power Wiring Large-gauge industrial conductors
Transportation Mechanical handling equipment normally required

For a high-power drive of this class, dimensions and weight should never be treated as generic values when designing the final cabinet.

The final installation should use the applicable mechanical drawing for the exact configured assembly, particularly where the system includes incoming disconnects, reactors, bypass equipment, harmonic equipment, auxiliary cabinets, or other accessories.


15. Why the Dimensions and Weight Matter

A drive in the 250–315 kW range is physically very different from a small machine-level VFD.

The installation engineer must consider:

  • Cabinet floor loading.
  • Transport route.
  • Door opening dimensions.
  • Lifting equipment.
  • Cable entry.
  • Cooling airflow.
  • Maintenance access.
  • Service clearance.
  • Power-cable bending radius.
  • Grounding arrangement.
  • Heat dissipation.

The approximate 300–400 kg class weight also means that manual installation is generally inappropriate.

A suitable lifting or mechanical handling arrangement should be considered during project planning.


16. Cooling System

The 20G11TF265JN0NNNNN uses forced-air cooling.

At this power level, cooling is one of the most important design considerations.

The drive generates heat through:

  • Semiconductor switching losses.
  • Conduction losses.
  • DC-link losses.
  • Internal auxiliary circuits.
  • Power-conversion components.

The cooling system moves air through the heat-generating sections and transfers heat away from the power electronics.

Good cabinet ventilation is therefore essential.


17. Industrial Communication

Embedded EtherNet/IP is an important feature of this model.

In a modern industrial automation system, the drive can be integrated into a control network rather than operating as an isolated device.

A typical architecture can be:

PLC / Controller → Industrial Ethernet → PowerFlex 755 → Motor

The controller can manage speed commands, start/stop operations, operating modes and fault handling.

The drive can return operating information such as current, speed, status and diagnostic conditions.

This makes the drive suitable for larger automated production systems.


18. Typical Industrial Applications

Large Conveyor Systems

Large conveyors are one of the most suitable applications for this drive.

The drive can provide controlled acceleration and speed regulation while reducing mechanical shock.

This is particularly useful for:

  • Mining conveyors.
  • Bulk-material conveyors.
  • Port equipment.
  • Cement plants.
  • Steel plants.
  • Aggregate handling.
  • Large warehouse material systems.

Pumps

Large industrial pumps can benefit substantially from variable-speed operation.

Instead of continuously operating the pump at full speed and controlling flow through a valve, the motor speed can be adjusted according to process demand.

This can improve process efficiency and reduce unnecessary energy consumption.


Fans and Blowers

Large centrifugal fans and blowers are another major application area.

For variable-torque loads, reducing motor speed can significantly reduce power consumption.

This makes the drive particularly attractive for:

  • Industrial ventilation.
  • Furnace systems.
  • Dust collection.
  • Process-air systems.
  • Cooling systems.
  • Large exhaust systems.

Crushers and Mills

Crushers and mills can impose high mechanical loads and significant torque fluctuations.

The Heavy Duty rating should therefore be considered carefully when selecting the drive.

For a 200 kW Heavy Duty application, this model can provide an appropriate high-power control platform when the motor and process requirements match the drive rating.


Mixers

Industrial mixers can require substantial starting torque and varying torque during production.

The PowerFlex 755 platform can provide controlled motor acceleration and torque management, helping reduce mechanical shock.


Process Machinery

The drive can also be applied to:

  • Production lines.
  • Material-processing machinery.
  • Industrial mixers.
  • Large rotating machinery.
  • Chemical-process equipment.
  • Paper and pulp machinery.
  • Metal-processing equipment.
  • Cement production equipment.
  • Bulk-material handling systems.

19. Application Advantages

Application Main Benefit
Large Conveyor Controlled acceleration and speed
Pump Flow control and potential energy savings
Fan Efficient variable-speed operation
Blower Process-air control
Crusher High-power motor control
Mill Torque and speed management
Mixer Controlled acceleration and process speed
Material Handling Smooth speed regulation
Process Machinery Networked automation integration
Large Production Line Centralized drive control

20. Five Recommended Models from the Same Series

The following models are closely related PowerFlex 755 690 VAC configurations and provide a practical selection range around the 265 A model.

Model Voltage Light Duty Normal Duty Heavy Duty Frame Typical Position
20G11TF215JN0NNNNN 690 VAC 250 kW 200 kW 160 kW class 8 Lower-power option
20G11TF265JN0NNNNN 690 VAC 315 kW 250 kW 200 kW 8 Target model
20G11TF330JN0NNNNN 690 VAC 355 kW 315 kW 250 kW 8 Higher-power option
20G11TF370JN0NNNNN 690 VAC 400 kW 355 kW 300 kW 8 Higher-power process drive
20G11TF415JN0NNNNN 690 VAC 450 kW 400 kW 355 kW 8 Large industrial loads

The most important selection criterion among these models is not simply motor kW.

The actual motor current and duty profile should be compared with the drive’s continuous and overload current ratings.


21. Same-Series Model Comparison

Model Normal Duty Current Normal Duty Power Heavy Duty Power Recommended Application
20G11TF215JN0NNNNN Approx. 215 A Approx. 200 kW Approx. 160 kW Medium-large industrial machinery
20G11TF265JN0NNNNN 265 A 250 kW 200 kW Large conveyors, pumps, fans
20G11TF330JN0NNNNN 330 A 315 kW 250 kW Larger conveyors and process equipment
20G11TF370JN0NNNNN 370 A 355 kW 300 kW Heavy process machinery
20G11TF415JN0NNNNN 415 A 400 kW 355 kW Very large industrial motors

The 20G11TF265JN0NNNNN sits near the middle of this selection range and is a practical choice when the motor is around the 250 kW Normal Duty level.


22. Five Popular Models from the Same Brand

The following selection covers several popular drive classes from the same Allen-Bradley product portfolio.

Model Series Voltage Class Approx. Application Range Cooling Approx. Dimensions Approx. Weight
25B-D010N104 PowerFlex 525 480 VAC class Small machine motors Air cooled Approx. 180 × 90 × 150 mm Approx. 2–3 kg
25B-D017N104 PowerFlex 525 480 VAC class Small/medium motors Air cooled Approx. 220 × 110 × 170 mm Approx. 3–4 kg
25A-D030N104 PowerFlex 523 480 VAC class General machine applications Air cooled Approx. 250 × 130 × 190 mm Approx. 4–6 kg
20F11NC022JA0NNNNN PowerFlex 753 480 VAC class Industrial machinery Air cooled Configuration dependent Configuration dependent
20G11TF265JN0NNNNN PowerFlex 755 690 VAC Up to 315 kW LD class Forced air Approx. 900 × 600 × 1000 mm class Approx. 300–400 kg class

The models cover a very broad range of industrial applications, from compact machine control to large high-voltage motor systems.


23. Compact Drive vs. 20G11TF265JN0NNNNN

The difference between the compact PowerFlex models and the PowerFlex 755 high-power model is substantial.

Feature Compact PowerFlex 20G11TF265JN0NNNNN
Typical Motor Size Small to medium Large industrial
Voltage Commonly 200–480 VAC 690 VAC
Physical Size Compact Large Frame 8
Installation Wall/panel mounted Cabinet/floor integration
Current Low/medium 265 A ND
Power Low/medium 250 kW ND
Communication Model dependent Embedded EtherNet/IP
Application Complexity Machine level Plant/process level
Cooling Compact air cooling High-capacity forced air
Mechanical Handling Usually manual Mechanical handling generally required
Typical Industry Machinery Heavy industry/process industry

24. Main Advantages for Conveyor Applications

For a large conveyor, the drive provides several practical benefits.

First, controlled acceleration reduces the sudden mechanical torque normally associated with direct starting.

Second, variable-speed operation allows the conveyor speed to be adjusted according to material flow.

Third, network communication allows the drive to participate in a larger automated material-handling system.

Fourth, the high-current architecture makes the model suitable for large conveyor motors.


25. Main Advantages for Pump Applications

For pumping systems, the primary advantage is variable-speed operation.

When process demand decreases, motor speed can be reduced.

This can avoid operating a large pump continuously at maximum speed.

The drive can therefore contribute to:

  • Better flow control.
  • Reduced throttling losses.
  • Improved process stability.
  • Lower mechanical stress.
  • Potentially lower electrical energy consumption.

The actual energy saving depends heavily on the pump curve, operating point, process requirements and system resistance.


26. Main Advantages for Fan and Blower Applications

Large fan systems are often excellent candidates for variable-speed control.

A fan does not necessarily need to run at maximum speed all the time.

By reducing speed according to airflow requirements, the motor can consume significantly less power under suitable operating conditions.

This makes the PowerFlex 755 platform particularly useful in large ventilation and process-air systems.


27. Advantages for Heavy Machinery

Heavy machinery often has highly variable torque requirements.

A fixed-speed motor may provide less flexibility and can cause unnecessary mechanical stress during acceleration.

The 20G11TF265JN0NNNNN can provide controlled acceleration, speed control and torque management.

This makes it suitable for equipment where process stability is as important as motor speed.


28. Energy Efficiency Considerations

Variable-frequency operation can provide meaningful energy savings when the application allows motor speed to be reduced.

The strongest potential savings normally occur in variable-torque applications such as:

  • Centrifugal pumps.
  • Centrifugal fans.
  • Blowers.

The drive itself does consume electrical power, so efficiency should always be evaluated as a complete system.

The correct motor, pump/fan selection, operating point, mechanical transmission, process requirements and drive configuration all influence the final energy performance.


29. Maintenance Advantages

A properly installed PowerFlex 755 system can simplify maintenance by providing drive status and diagnostic information.

Important maintenance considerations include:

  • Cooling fan condition.
  • Airflow.
  • Heat-sink cleanliness.
  • Electrical connections.
  • DC-link condition.
  • Grounding.
  • Cabinet temperature.
  • Environmental contamination.
  • Network communication.
  • Motor insulation.
  • Motor bearings.

At high power levels, preventive maintenance is particularly important because drive failures can cause significant production downtime.


30. Installation Environment

The high-power drive should be installed in a suitable industrial environment.

Important factors include:

Environmental Factor Recommended Consideration
Temperature Keep within the applicable drive operating range
Humidity Avoid condensation
Dust Prevent excessive contamination
Cooling Maintain unobstructed airflow
Vibration Avoid excessive mechanical vibration
Altitude Apply applicable derating where required
Electrical Noise Use appropriate grounding and cable practices
Cabinet Ventilation Provide adequate heat removal
Service Access Maintain adequate working clearance

The cooling system is particularly important because high-power semiconductor equipment generates substantial heat during continuous operation.


31. Important Motor Selection Considerations

When selecting this model for a motor, the following information should be checked:

  1. Motor rated voltage.
  2. Motor rated current.
  3. Motor rated power.
  4. Motor frequency.
  5. Motor speed.
  6. Motor overload requirements.
  7. Starting torque.
  8. Acceleration time.
  9. Deceleration time.
  10. Load inertia.
  11. Duty cycle.
  12. Ambient temperature.
  13. Installation altitude.
  14. Cable length.
  15. Required braking performance.
  16. Required communication protocol.
  17. Harmonic requirements.
  18. EMC requirements.
  19. Motor insulation system.
  20. Required safety functions.

The motor current should be one of the most important selection criteria.


32. 215 A vs. 265 A vs. 330 A

For applications around this power range, three closely related ratings are particularly useful for comparison.

Model Normal Duty Current Normal Duty Power Heavy Duty Power Selection Position
20G11TF215JN0NNNNN Approx. 215 A Approx. 200 kW Approx. 160 kW Smaller
20G11TF265JN0NNNNN 265 A 250 kW 200 kW Middle
20G11TF330JN0NNNNN 330 A 315 kW 250 kW Larger

If the motor is close to 250 kW and the application is Normal Duty, the 20G11TF265JN0NNNNN is a natural starting point.

If the machine requires higher overload capability, the application should instead be evaluated against the Heavy Duty rating.

If the motor is closer to 315 kW under a Normal Duty application, the 20G11TF330JN0NNNNN becomes more appropriate.


33. Five Recommended Same-Series Models by Application

Application Requirement Recommended Model Main Reason
Around 200 kW ND 20G11TF215JN0NNNNN Lower current/power selection
Around 250 kW ND 20G11TF265JN0NNNNN Excellent fit for 250 kW class
Around 315 kW ND 20G11TF330JN0NNNNN Higher current capacity
Around 355 kW ND 20G11TF370JN0NNNNN Suitable for larger process loads
Around 400 kW ND 20G11TF415JN0NNNNN High-power industrial applications

34. Key Technical Advantages Summary

Technical Advantage Practical Value
690 VAC Suitable for high-voltage industrial power systems
265 A ND Supports large motors
315 kW LD Strong capability for variable-torque loads
250 kW ND Suitable for many large industrial processes
200 kW HD Provides a clear Heavy Duty operating class
Frame 8 High-power industrial construction
Air Cooled Practical high-power thermal management
EtherNet/IP Easy integration into automation networks
DC Terminals Useful for DC-bus-oriented system architectures
Filtered Configuration Helps meet applicable electrical/noise requirements
Modular Platform Supports expansion and application-specific configuration
PowerFlex 755 Designed for sophisticated industrial motor control

35. Final Technical Specification Table

Category Specification
Brand Allen-Bradley
Series PowerFlex 755
Product Type High-Power AC Variable Frequency Drive
Model 20G11TF265JN0NNNNN
Voltage 690 VAC
Phase Three Phase
Input Frequency 50/60 Hz class
Input Voltage Range Approx. 621–759 VAC
DC Voltage Class Approx. 932 VDC
Normal Duty Current 265 A
Light Duty Current 330 A
Heavy Duty Current 215 A
Normal Duty Power 250 kW
Light Duty Power 315 kW
Heavy Duty Power 200 kW
Frame 8
Cooling Forced Air
Input Configuration AC Input with DC Terminals
Output Variable-Frequency Three-Phase AC
Communication Embedded EtherNet/IP
Filter Filtered
CM Jumper Installed
Dynamic Braking None
HIM Blank / No HIM
Enclosure Open Type
Mounting High-Power Industrial Installation
Approx. Dimensions 900 × 600 × 1000 mm class
Approx. Weight 300–400 kg class
Main Applications Conveyors, pumps, fans, blowers, mixers, mills, crushers, process machinery
Main Advantage High-power 690 VAC motor control with industrial networking
Recommended Application Level Medium-to-large industrial motor systems

36. Overall Product Evaluation

The Allen-Bradley 20G11TF265JN0NNNNN is a high-power industrial drive designed for applications that are well beyond the range of compact machine-level VFDs.

Its combination of 690 VAC input, 265 A Normal Duty current, approximately 250 kW Normal Duty capacity, 315 kW Light Duty capability, 200 kW Heavy Duty capability, Frame 8 construction, forced-air cooling, DC terminals and embedded EtherNet/IP makes it suitable for demanding industrial motor-control systems.

The model is particularly attractive where a large motor must be integrated into a larger automation architecture rather than operated as an isolated motor starter.

For large conveyors, pumps, fans, blowers, mixers, material-handling equipment and general process machinery, the 20G11TF265JN0NNNNN provides a strong combination of power capacity, control flexibility and network integration.

The most important point when selecting this drive is to distinguish between Light Duty, Normal Duty and Heavy Duty ratings. A 250 kW motor does not automatically mean that every 250 kW application is equivalent. The required overload current, starting torque and mechanical load profile must be evaluated.

For a relatively stable 250 kW industrial load, the 265 A Normal Duty rating makes this model particularly attractive. For applications involving severe overload, high breakaway torque or repeated acceleration, the 200 kW Heavy Duty rating should be used as the selection reference instead.

From a mechanical perspective, this is a substantial industrial drive. The approximate 900 × 600 × 1000 mm class dimensions and 300–400 kg class weight should be considered during cabinet design, transportation, lifting, installation and maintenance planning. The exact final mechanical arrangement should always be confirmed against the configured equipment drawing.

Overall, the 20G11TF265JN0NNNNN is best viewed as a large industrial PowerFlex 755 drive for 690 VAC motor systems, particularly where high-power motor control, process regulation, network integration and long-term industrial reliability are more important than compact physical size.



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