• Allen Bradley 20J1F3F1K8LNANNNNN PowerFlex AC Drive
  • Allen Bradley 20J1F3F1K8LNANNNNN PowerFlex AC Drive
  • Allen Bradley 20J1F3F1K8LNANNNNN PowerFlex AC Drive
  • Allen Bradley 20J1F3F1K8LNANNNNN PowerFlex AC Drive
20J1F3F1K8LNANNNNN — Detailed Product Overview, Technical Specifications, Applications, Advantages and Related Models 1. Product Identification The 20J1F3F1K8LNANNNNN is a high-power PowerFlex 755TM AFE……
Allen Bradley 20J1F3F1K8LNANNNNN PowerFlex AC Drive
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20J1F3F1K8LNANNNNN — Detailed Product Overview, Technical Specifications, Applications, Advantages and Related Models

1. Product Identification

The 20J1F3F1K8LNANNNNN is a high-power PowerFlex 755TM AFE Bus Supply configuration designed for large industrial drive systems using a common DC-bus architecture.

The model is part of the 20J1 bus-supply family and is intended for applications where several drive sections can share a centralized DC bus. The F1K8 rating identifies the approximately 1.914 MW 690 V-class configuration.

Item Specification
Model 20J1F3F1K8LNANNNNN
Brand Allen-Bradley
Product Family PowerFlex 755T
Product Series PowerFlex 755TM
Product Type AFE Bus Supply
Configuration Family 20J1
Input Architecture Active Front End
Operating Principle Regenerative AC/DC power conversion
Voltage Class 690 V AC
Rated Power Approximately 1,914 kW
Power Class Approximately 1.91 MW
Rated Current Class Approximately 1,914 A DC-output class
Cooling Air cooled
Installation Floor-standing industrial system
Enclosure Configuration IP21 / NEMA Type 1 class
Common DC Bus Yes
Regenerative Capability Yes
Typical Application High-power multi-drive systems
Frame Frame 11 class
Approx. Width Configuration dependent, approximately 2,600–3,400 mm class
Approx. Depth Approximately 720 mm class
Approx. Height Approximately 2,291 mm class
Approx. Weight Approximately 2,500–2,700 kg class
Weight Unit kg

The F1K8 rating corresponds to approximately 1,914 kW at 690 V AC for the AFE bus-supply configuration. The same rating is associated with Frame 11 in the relevant power-conversion configuration.

The exact mechanical dimensions and shipping weight can vary according to the complete cabinet arrangement, wiring bays and selected options. Therefore, the dimensions and weight above should be treated as engineering-level approximate values rather than guaranteed shipping measurements.


2. Product Introduction

The 20J1F3F1K8LNANNNNN is a high-power regenerative bus-supply unit designed for large industrial electrical drive systems.

Its main function is to convert incoming AC electrical power into controlled DC-bus power for connected inverter sections.

A simplified system architecture can be represented as:

Three-Phase AC Supply → AFE Bus Supply → Common DC Bus → Inverter Sections → Motors

This arrangement is different from a conventional single-motor variable-frequency drive.

A conventional VFD normally receives AC power and directly produces a variable-frequency output for one motor or one motor group.

A bus-supply architecture instead establishes a common DC-bus power source that can supply several individual inverter sections.

This makes the product particularly suitable for large machines with multiple motors, coordinated axes and significant regenerative energy.

The approximately 1.914 MW rating places this model firmly in the high-power industrial category.

It is intended for applications where electrical power requirements are measured in megawatts rather than tens or hundreds of kilowatts.


3. Product Brand and Series

Category Information
Brand Allen-Bradley
Product Family PowerFlex 755T
Product Series PowerFlex 755TM
Bus-Supply Series 20J1
Product Type AFE Bus Supply
Power Class Approximately 1.91 MW
Voltage Class 690 V AC
Main Architecture Regenerative common DC bus

The PowerFlex 755T platform includes regenerative, low-harmonic and common-bus solutions, with TotalFORCE-based control technology used across the product platform.


4. Catalog Number Interpretation

The catalog number is:

20J1F3F1K8LNANNNNN

The individual characters identify different aspects of the product configuration.

Catalog Number Section General Meaning
20J1 PowerFlex 755TM bus-supply family
F 690 V-class rating group
3 IP21 / NEMA Type 1 class enclosure selection
F1K8 Approximately 1,914 kW AFE bus-supply rating
L Filtering / configuration option
NANNNNN Additional configuration positions

The exact meaning of every option character should be checked against the particular catalog-number revision when the unit is being purchased or replaced.

For a replacement project, the complete catalog number is important. Two units with the same voltage and kW rating can still have different enclosure, filtering, mechanical or factory configuration options.


5. Detailed Technical Parameters

Parameter Specification
Model 20J1F3F1K8LNANNNNN
Brand Allen-Bradley
Series PowerFlex 755TM
Product Family PowerFlex 755T
Product Type AFE Bus Supply
Input Three-phase AC
Voltage 690 V AC class
Frequency 50 Hz class / system dependent
Rated Power Approx. 1,914 kW
Power Approx. 1.91 MW
Current Class Approx. 1,914 A
DC-Bus Function Yes
Common DC Bus Yes
Regenerative Operation Yes
Active Front End Yes
Harmonic-Control Architecture Yes
Cooling Air cooled
Enclosure IP21 / NEMA Type 1 class
Installation Floor mounted
Frame Frame 11
Control Platform TotalFORCE-based PowerFlex 755T architecture
Application High-power industrial drive system
Approx. Width 2,600–3,400 mm class
Approx. Depth 720 mm class
Approx. Height 2,291 mm class
Approx. Weight 2,500–2,700 kg class
Weight kg
Construction Large industrial cabinet / power bay
Main Function Central DC-bus power conversion

The published technical data identifies 20J…F1K8 as a Frame 11 configuration with approximately 2,146 kW light-duty output and 2,146 A continuous DC output for the corresponding common-bus inverter data; the AFE bus-supply rating itself is approximately 1,914 kW at 690 V. These ratings should not be confused with each other because bus-supply and inverter catalog tables use different rating definitions.


6. Electrical Characteristics

The main electrical characteristic of this model is its combination of 690 V-class operation and approximately 1.914 MW of power capacity.

This is a very high electrical power level.

At this scale, the product is normally incorporated into a complete electrical system containing an upstream transformer, medium- or low-voltage switchgear as appropriate to the installation, protection equipment, disconnect equipment, high-current cabling or busbars, grounding equipment and multiple inverter sections.

The bus supply establishes the DC-bus energy source for the connected drive system.

The exact DC-bus voltage and operating limits depend on the actual AC supply conditions and system configuration.


7. Common DC-Bus Architecture

The common DC bus is one of the main reasons to select a product from this family.

A typical system can be arranged as follows:

AC Supply

↓

20J1 AFE Bus Supply

↓

Common DC Bus

↓

Drive Inverter 1 → Motor 1

Drive Inverter 2 → Motor 2

Drive Inverter 3 → Motor 3

Drive Inverter 4 → Motor 4

This arrangement is particularly useful when multiple motors are part of one machine.

Instead of providing a completely separate incoming power-conversion system for every motor drive, a centralized bus supply can provide the DC power required by several inverter sections.


8. Regenerative Operation

Regenerative operation is another important feature.

A motor normally consumes electrical power when accelerating and driving a load.

During deceleration, the motor can operate as a generator.

The generated electrical energy is transferred back toward the DC bus.

In a suitable regenerative system, this energy can either be used by another connected drive section or transferred back toward the AC electrical system.

This is particularly valuable in machinery with:

  • High inertia
  • Frequent braking
  • Rapid acceleration and deceleration
  • Vertical movement
  • Hoisting and lowering
  • Reversing
  • Large rotating equipment
  • Long conveyor systems

The higher the motor power and the more frequently the machine regenerates, the more important the energy-management architecture becomes.


9. Harmonic and Power-Quality Considerations

An active-front-end system is also relevant to applications where input-current quality is important.

The power-conversion stage actively controls the relationship between the AC supply and the DC bus.

This architecture can provide substantially different input-current characteristics from a simple diode-rectifier front end.

The actual harmonic performance depends on the complete installation, including the AC system impedance, filtering configuration, transformer arrangement and operating conditions.

For this reason, harmonic compliance should be evaluated at system level rather than assumed from the drive catalog number alone.


10. Product Advantages

10.1 Very High Power Capacity

The approximately 1.914 MW rating makes this product suitable for large industrial machinery.

It is intended for power requirements well beyond the range of ordinary compact variable-frequency drives.


10.2 Centralized Power Conversion

A centralized bus supply can provide the electrical foundation for multiple inverter sections.

This can simplify the power architecture of a large machine.

Instead of designing every motor drive as an independent incoming-power system, the machine can be organized around a common DC bus.


10.3 Regenerative Energy Handling

The regenerative architecture allows the system to handle energy flowing from motors back toward the electrical supply.

This is particularly useful in high-inertia machinery.


10.4 Energy Sharing

A common DC bus can allow electrical energy to be shared among connected drive sections.

If one drive is consuming energy while another is regenerating, the regenerated energy can potentially contribute to the DC-bus power available to the other drive.

This depends on the operating state and complete system configuration.


10.5 Suitable for Multi-Motor Machinery

The product is particularly relevant when a machine contains several large motors.

Typical examples include:

  • Large conveyors
  • Cranes
  • Hoists
  • Mining equipment
  • Steel-processing equipment
  • Material-handling machinery
  • Large process lines
  • Rolling systems
  • Test systems

10.6 690 V-Class Industrial System

The 690 V class is widely associated with large industrial motor systems.

At a given power level, higher voltage reduces the current required compared with a lower-voltage system.

This can influence conductor size, busbar design and electrical-distribution architecture.


11. Typical Applications

Application How the Product Can Be Used
Large conveyor Central power source for multiple conveyor drives
Mining High-power drive systems for material handling and processing
Crane Regenerative power management during lowering and braking
Hoist High-power motor systems with frequent regenerative operation
Steel processing Multi-motor synchronized process equipment
Rolling machinery Coordinated high-power drive sections
Material handling Large multi-axis drive systems
Test stand Repeated acceleration and regenerative braking
Large process machine Centralized DC-bus power architecture
Heavy production line Multiple synchronized motor drives
Large fans High-power variable-speed systems
Large pumps High-power process drive applications

12. Application in Large Conveyor Systems

A large conveyor can have several motors distributed along the machine.

During acceleration, the motors require significant electrical power.

During normal operation, power consumption can stabilize.

During deceleration, some motors may regenerate electrical energy.

A common DC-bus architecture provides a way to coordinate these different power conditions.

The basic system can be represented as:

AC Grid → AFE → DC Bus → Drive Sections → Conveyor Motors

This architecture is particularly relevant when the conveyor is very long, heavily loaded or operated with frequent speed changes.


13. Application in Crane and Hoist Systems

Cranes and hoists have a special electrical characteristic: the direction of energy flow can change frequently.

During lifting, the motor supplies mechanical energy to the load.

During lowering, gravitational energy can cause the motor to regenerate.

During stopping, additional regenerative energy may be produced.

A regenerative common-bus system is therefore well suited to this type of operating cycle.

The final system design must still consider mechanical braking, safety functions, emergency stopping and load-control requirements separately from the electrical regeneration system.


14. Application in Mining

Mining machinery can require extremely high motor power.

Long conveyors, crushers, feeders and material-handling systems can contain multiple motors operating together.

The approximately 1.9 MW class of this model provides a suitable scale for large industrial power-conversion systems.

The common-bus arrangement can also be useful where several motors need coordinated control.

For mining environments, additional attention should be given to dust, ambient temperature, altitude, ventilation and enclosure requirements.


15. Application in Steel and Heavy Processing

Steel-processing and other heavy industrial machines frequently use multiple high-power motors.

The machine may require:

  • Synchronized speed
  • Coordinated torque
  • Rapid acceleration
  • Rapid deceleration
  • Regenerative operation
  • Precise tension control
  • High continuous power

A common DC-bus architecture can provide an effective electrical foundation for these requirements.


16. Dimensions and Weight

Because this model belongs to the large-frame, approximately 1.9 MW class, physical installation is a major consideration.

Mechanical Parameter Approximate Specification
Model 20J1F3F1K8LNANNNNN
Frame Frame 11
Installation Floor standing
Width Approx. 2,600–3,400 mm class
Depth Approx. 720 mm class
Height Approx. 2,291 mm class
Approx. Weight Approx. 2,500–2,700 kg
Weight Unit kg
Cabinet Construction Large industrial cabinet/bay
Cooling Air cooled
Floor Loading Must be checked
Lifting Requirement Heavy industrial lifting equipment
Service Clearance Required
Wiring Bays Can increase overall dimensions and weight

The F1K8 configuration is associated with Frame 11.

Because the exact suffix includes configuration options, the final physical dimensions should be confirmed against the equipment’s mechanical drawing before fabrication of the electrical room, foundation or cabinet layout.


17. Installation Requirements

A unit of this size should be treated as a major industrial installation.

Floor Loading

With an equipment mass in the approximately 2.5-tonne class, the supporting floor or foundation should be checked before installation.

Ventilation

The equipment is air cooled and therefore requires appropriate airflow.

The electrical room must be capable of removing the heat generated during normal operation.

Electrical Clearance

Adequate working space should be maintained around the equipment.

The exact clearance depends on the installation arrangement and applicable electrical regulations.

Transportation

The equipment’s physical dimensions and weight should be considered before delivery.

Door openings, lifting points, access routes and floor loading should all be checked.


18. Five Closely Related Models in the Same Series

The following five models are useful for comparison because they are part of the same 20J1 AFE bus-supply family and cover adjacent power levels.

Model Product Type Voltage Approx. Power Frame Cooling Approx. Dimensions Approx. Weight
20J1F3F1K1LNANNNNN AFE Bus Supply 690 V 1,180 kW 10 Air cooled Large cabinet Approx. 2,100 kg class
20J1F3F1K4LNANNNNN AFE Bus Supply 690 V 1,456 kW 10 Air cooled Large cabinet Approx. 2,100–2,500 kg class
20J1F3F1K8LNANNNNN AFE Bus Supply 690 V 1,914 kW 11 Air cooled Approx. 2,600–3,400 × 720 × 2,291 mm class Approx. 2,500–2,700 kg
20J1F3F2K3LNANNNNN AFE Bus Supply 690 V 2,379 kW 12 Air cooled Large multi-bay cabinet Approx. 3,000 kg class
20J1F3F2K7LNANNNNN AFE Bus Supply 690 V 2,851 kW 13 Air cooled Very large multi-bay cabinet Approx. 4,000–5,000 kg class

The 690 V AFE bus-supply range includes F1K1 at approximately 1,180 kW, F1K4 at approximately 1,456 kW, F1K8 at approximately 1,914 kW, F2K3 at approximately 2,379 kW and F2K7 at approximately 2,851 kW.


19. Same-Series Model Comparison

Parameter 20J1F3F1K1LNANNNNN 20J1F3F1K4LNANNNNN 20J1F3F1K8LNANNNNN 20J1F3F2K3LNANNNNN 20J1F3F2K7LNANNNNN
Voltage 690 V 690 V 690 V 690 V 690 V
Power ~1,180 kW ~1,456 kW ~1,914 kW ~2,379 kW ~2,851 kW
Frame 10 10 11 12 13
AFE Yes Yes Yes Yes Yes
Common DC Bus Yes Yes Yes Yes Yes
Regeneration Yes Yes Yes Yes Yes
Cooling Air cooled Air cooled Air cooled Air cooled Air cooled
Installation Floor standing Floor standing Floor standing Floor standing Floor standing
Approx. Weight ~2,100 kg ~2,100–2,500 kg ~2,500–2,700 kg ~3,000 kg ~4,000–5,000 kg
Application High-power High-power Very high-power Multi-megawatt Multi-megawatt

The F1K8 configuration is one step above F1K4 and below F2K3 in the 690 V AFE bus-supply rating sequence.


20. Five Related Models from the Broader Product Range

The following models are from related industrial drive families and can be considered when the application does not require a 1.9 MW common-bus supply.

They are not direct replacements for the 20J1F3F1K8LNANNNNN.

Model Product Family Product Type Voltage Class Approx. Power Class Cooling Approx. Dimensions Approx. Weight
20F1AGF012JN0NNNNN PowerFlex 753 AC Drive 690 V class Approx. 7.5 kW Air cooled Approx. 665 × 308 × 346 mm Approx. 38.6 kg
20F1AGF020JN0NNNNN PowerFlex 753 AC Drive 690 V class Approx. 15 kW Air cooled Approx. 665 × 308 × 346 mm Approx. 38.6 kg
20G2ANF050JA0NNNNN PowerFlex 755TS AC Drive 690 V class Approx. 45–50 kW Air cooled Configuration dependent Configuration dependent
20G2ANF119JA0NNNNN PowerFlex 755TS AC Drive 690 V class Approx. 110–120 kW Air cooled Configuration dependent Configuration dependent
20G2ANF212JA0NNNNN PowerFlex 755TS AC Drive 690 V class Approx. 200–220 kW Air cooled Configuration dependent Configuration dependent

These products are considerably smaller and serve individual motor-control applications rather than the large centralized bus-supply role of the 20J1F3F1K8LNANNNNN.


21. Main Model vs. Related Drive Models

Feature 20J1F3F1K8LNANNNNN PowerFlex 753 Class PowerFlex 755TS Class
Main Function AFE bus supply Individual AC motor drive Advanced AC motor drive
Power Level ~1.914 MW Low/medium power Medium/high power
Common DC Bus Yes Application dependent Application dependent
Regenerative Function Core architecture Configuration dependent Configuration dependent
Installation Large floor-standing cabinet Cabinet/panel Cabinet/panel
Typical Number of Motors Multiple inverter sections Usually one Usually one
Approx. Weight ~2,500–2,700 kg Tens of kg at smaller ratings Frame dependent
Main Application Large multi-drive system Individual motor High-performance motor/process control
System Architecture Centralized Distributed Distributed/system based

22. Major Product Advantages in Detail

High-Power Industrial Capability

The approximately 1.914 MW rating makes this configuration appropriate for large machines with very high installed motor power.

The product is intended for applications where the electrical power requirement is too large for conventional compact drives.


Regenerative Power Management

Regeneration is particularly important for applications where mechanical energy repeatedly returns to the electrical system.

Examples include cranes, hoists, conveyors and large rotating machinery.

A regenerative AFE architecture provides a controlled electrical path for this returned energy.


Common-Bus Energy Sharing

A common DC bus provides the possibility of sharing energy among different drive sections.

This can be valuable in machines where different axes have different load cycles.


Centralized Architecture

The bus supply creates a central power-conversion point.

This can make large machine electrical architecture easier to organize.


High-Voltage Operation

The 690 V-class configuration is appropriate for large industrial systems.

The higher voltage allows the required power to be handled at a lower current than an equivalent lower-voltage system.


23. Typical Industries

Industry Possible Application
Mining Conveyors, crushers, material handling
Metals Rolling equipment and processing
Steel High-power synchronized drive systems
Cement Conveyors, fans and process machinery
Marine Large propulsion and auxiliary systems where applicable
Material Handling Cranes, hoists and conveyors
Manufacturing Large production machinery
Paper Large process and tension-control systems
Power Generation Large auxiliary machinery
Heavy Processing Multi-motor production systems

24. Recommended Selection Criteria

When choosing a related model, the following parameters should be checked rather than comparing only the kW rating.

Selection Parameter Why It Matters
AC voltage Must match the electrical supply
Power rating Must support continuous machine demand
Current rating Must support motor and transient requirements
Regeneration Important for loads returning energy
DC-bus voltage Must match connected inverter sections
Frame size Determines mechanical installation
Cooling Determines thermal and ventilation requirements
Enclosure Determines environmental protection
Filtering Influences input power quality
Cabinet width Must fit available space
Cabinet depth Important for electrical-room layout
Cabinet height Important for transportation and installation
Weight Important for floor loading and handling
Communication Must match the control system
Options Must match the existing installation

25. Replacement Considerations

If the purpose is to replace an existing 20J1F3F1K8LNANNNNN, selecting another 1.9 MW drive simply because it has the same nominal power is not sufficient.

The following characteristics should be checked:

Voltage

The replacement should be compatible with the existing 690 V-class electrical system.

Power

The replacement needs to provide adequate continuous and transient power.

Current

The current rating must be suitable for the connected DC-bus load.

Frame

A different frame can change the cabinet dimensions and installation requirements.

Cooling

A different cooling configuration can change the electrical-room ventilation requirements.

Enclosure

The enclosure configuration must be suitable for the installation environment.

Filtering

The input filtering configuration should be checked.

DC Bus

The replacement must be compatible with the connected inverter sections.

Regeneration

If the machine relies on regenerative operation, the replacement architecture must support the required energy flow.

Control

The replacement must be compatible with the machine-control system.


26. Mechanical Considerations

The approximate 2,500–2,700 kg equipment weight is one of the most important mechanical considerations.

The installation area should be checked for adequate floor loading.

The delivery route should also be checked.

Particular attention should be paid to:

  • Door openings
  • Ceiling height
  • Turning space
  • Floor strength
  • Lifting capacity
  • Forklift capacity
  • Crane access
  • Cabinet positioning
  • Maintenance access

The actual final weight may differ from the approximate value because of cabinet sections, wiring bays and other factory options.


27. Thermal Considerations

A 1.9 MW-class power-conversion system can generate substantial heat.

Although the air-cooled design provides a practical cooling method, the installation still needs adequate ventilation.

The engineering calculation should consider:

  • Equipment losses
  • Ambient temperature
  • Room volume
  • Airflow
  • Altitude
  • Adjacent equipment
  • Cabinet arrangement
  • Filter condition
  • Maintenance requirements

The ventilation system should be designed for the complete electrical room rather than considering the bus supply in isolation.


28. Product Selection Summary

Category Main Specification
Model 20J1F3F1K8LNANNNNN
Brand Allen-Bradley
Product Family PowerFlex 755T
Product Series PowerFlex 755TM
Bus Supply Series 20J1
Product Type AFE Bus Supply
Voltage 690 V AC class
Power Approx. 1,914 kW
Power Level Approx. 1.91 MW
Current Class Approx. 1,914 A
Frame 11
Cooling Air cooled
Enclosure IP21 / NEMA Type 1 class
DC Bus Yes
Regeneration Yes
Installation Floor standing
Approx. Width 2,600–3,400 mm class
Approx. Depth 720 mm class
Approx. Height 2,291 mm class
Approx. Weight 2,500–2,700 kg class
Weight Unit kg
Primary Application High-power multi-drive systems
Secondary Applications Mining, conveyors, cranes, hoists, metals, heavy processing
Main Feature High-power regenerative common DC-bus architecture

29. Overall Product Description

The 20J1F3F1K8LNANNNNN is a high-power PowerFlex 755TM AFE Bus Supply designed for large industrial drive systems.

Its approximately 1,914 kW rating places it in the megawatt-class category.

The 690 V electrical configuration makes it suitable for large industrial power-distribution systems, while the AFE architecture provides a controlled interface between the AC electrical supply and the common DC bus.

The most important application characteristic is its ability to form the central power-conversion section of a multi-drive system.

Several inverter sections can be connected to the common DC bus, allowing the machine to operate as a coordinated electrical system rather than a collection of completely independent drives.

This is particularly useful for machinery containing several high-power motors.

Conveyors, cranes, hoists, mining equipment, steel-processing machinery, rolling equipment and large process systems are typical examples of applications where this architecture can be considered.

The regenerative capability is another important feature.

When a motor decelerates or a mechanical load drives the motor, electrical energy can flow back toward the DC bus. In a suitable regenerative system, this energy can be shared with other drive sections or transferred back toward the AC system.

From a physical standpoint, this is a very large industrial power-conversion system.

The approximately 2,600–3,400 mm width, approximately 720 mm depth and approximately 2,291 mm height should be used as an initial planning range, while the approximately 2,500–2,700 kg weight class should be considered when planning transportation, lifting and floor loading.

The F1K8 rating is the key distinction from the nearby F1K1 and F1K4 configurations. The F1K8 version provides approximately 1.914 MW, while the adjacent configurations provide approximately 1.180 MW and 1.456 MW respectively. The next larger F2K3 configuration moves into the approximately 2.379 MW class.

For procurement, replacement or system design, the complete catalog number 20J1F3F1K8LNANNNNN should be treated as the reference identifier. Voltage, power, frame, enclosure, filtering, cabinet arrangement and option positions should all be checked before selecting an alternative.

In practical terms, this model is best understood as a large regenerative power-conversion and common-DC-bus supply for multi-motor industrial machinery, rather than as an ordinary single-motor frequency inverter.



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