• Allen Bradley 20G1ALC567AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ALC567AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ALC567AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ALC567AN0NNNNN PowerFlex AC Drive
Allen-Bradley 20G1ALC567AN0NNNNN PowerFlex 755 AC Drive 1. Product Introduction The Allen-Bradley 20G1ALC567AN0NNNNN is a high-power PowerFlex 755 AC Drive designed for large industrial motor-control ap……
Allen Bradley 20G1ALC567AN0NNNNN PowerFlex AC Drive
  • Allen Bradley
  • 20G1ALC567AN0NNNNN
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Allen-Bradley 20G1ALC567AN0NNNNN PowerFlex 755 AC Drive

1. Product Introduction

The Allen-Bradley 20G1ALC567AN0NNNNN is a high-power PowerFlex 755 AC Drive designed for large industrial motor-control applications.

It is an air-cooled, three-phase AC variable-frequency drive intended for a 400 VAC electrical system and a 567 A current class.

The drive provides three principal operating ratings:

  • 355 kW Light Duty
  • 315 kW Normal Duty
  • 250 kW Heavy Duty

This combination gives the drive a useful operating range across variable-torque, general industrial, and more demanding motor applications.

The product uses a Frame 8 construction and is configured as an IP20 / NEMA Type 1, 800 mm deep MCC-style drive.

The drive includes embedded EtherNet/IP, allowing it to be integrated into industrial automation systems.

The catalog configuration uses AC input with precharge, has no DC terminals, uses a filtered input configuration, specifies the CM jumper removed, provides no dynamic braking, and is supplied in a blank/no-HIM configuration.

This particular model is therefore best suited to installations where the drive is controlled and monitored through the plant automation system or where a local HIM is not required as part of the basic catalog configuration.


2. Brand and Product Family

Category Specification
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 750-Series
Specific Drive Series PowerFlex 755
Product Type Air-Cooled AC Drive
Catalog Number 20G1ALC567AN0NNNNN
Input Voltage 400 VAC
Input Phase 3 Phase
Current Class 567 A
Frame Frame 8
Cooling Forced Air
Main Enclosure IP20 / NEMA Type 1
Cabinet Style 800 mm Deep MCC Style
Communication Embedded EtherNet/IP
HIM Blank / No HIM
Input Configuration AC Input with Precharge
DC Terminals None
Filtering Filtered
CM Jumper Removed
Dynamic Braking None

The PowerFlex 755 series is designed for high-performance industrial motor control where high motor power, flexible control, networking, diagnostics, and application-specific configuration are required.


3. Detailed Main Parameters

Parameter Specification
Model / Catalog Number 20G1ALC567AN0NNNNN
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Drive Type Air-Cooled AC Drive
Input Voltage 400 VAC
Input Phase 3 Phase
Current Rating 567 A
Light Duty Rating 355 kW
Normal Duty Rating 315 kW
Heavy Duty Rating 250 kW
Frame Size Frame 8
Cooling Method Forced Air
Main Enclosure IP20 / NEMA Type 1
Cabinet Style 800 mm Deep MCC Style
Input Type AC Input with Precharge
DC Terminals None
Input Filtering Filtered
CM Jumper Removed
Dynamic Braking None
Communication Embedded EtherNet/IP
Local HIM None / Blank
Approx. Height 2453 mm
Approx. Width 600 mm
Approx. Depth 800 mm
Approx. Weight 623 kg
Installation Type Floor-Mounted Industrial MCC Style
Primary Application Large Industrial Motor Control

The dimensions and weight shown above are approximate Frame 8 reference values intended for preliminary engineering consideration.

For final cabinet layout, shipping, lifting, foundation, and installation work, the project-specific mechanical drawing should always take priority.


4. Electrical Rating

The 20G1ALC567AN0NNNNN is designed for a 400 VAC, three-phase power system.

Its current class is 567 A.

The main duty ratings are:

Duty Classification Power Rating
Light Duty 355 kW
Normal Duty 315 kW
Heavy Duty 250 kW

This is a substantial industrial drive intended for large motor systems.

The three different ratings allow the same drive platform to serve different types of mechanical loads.


5. 355 kW Light Duty Rating

The 355 kW Light Duty rating is one of the most notable characteristics of this model.

It provides more Light Duty power capacity than the closely related 460 A and 540 A versions.

This makes the drive particularly attractive for large variable-torque loads.

Typical examples include:

  • Large centrifugal pumps
  • Large cooling-water pumps
  • Industrial fans
  • Large ventilation systems
  • Cooling tower fans
  • Process blowers
  • Large air-handling systems

For variable-torque applications, the motor power requirement can increase significantly as equipment size increases.

The 355 kW Light Duty rating therefore provides a useful margin for large fan and pump installations.


6. 315 kW Normal Duty Rating

The drive provides a 315 kW Normal Duty rating.

This makes it suitable for a broad range of general industrial motor applications.

Typical examples include:

  • Process pumps
  • Large blowers
  • Conveyors
  • Industrial fans
  • Material-handling systems
  • Process machinery
  • Factory utility equipment
  • Large rotating machinery

The final drive selection should be based on actual motor nameplate current and mechanical load characteristics.


7. 250 kW Heavy Duty Rating

The Heavy Duty rating is 250 kW.

Heavy Duty operation should be considered for applications with more demanding torque and overload requirements.

Typical examples include:

  • Heavy conveyors
  • Mining conveyors
  • Cement equipment
  • Material-handling systems
  • High-inertia machines
  • Certain mixers
  • Heavy process machinery

The Heavy Duty rating should be selected according to the actual motor current, torque requirements, overload profile, acceleration requirements, and duty cycle.


8. Product Configuration

The 20G1ALC567AN0NNNNN can be summarized as follows:

PowerFlex 755 AC Drive

Embedded EtherNet/IP

Air Cooled

AC Input with Precharge

No DC Terminals

Type 1 / IP20

800 mm Deep MCC Style

567 A

355 kW LD

315 kW ND

250 kW HD

400 VAC, 3 Phase

Frame 8

Filtered

CM Jumper Removed

No Dynamic Braking

Blank / No HIM

This is a high-power configuration intended for large industrial motor systems.


9. Embedded EtherNet/IP

One of the important features of the drive is its embedded EtherNet/IP capability.

This allows the PowerFlex 755 to be integrated into a compatible industrial Ethernet control architecture.

A typical control arrangement can be represented as:

PLC / Automation Controller

EtherNet/IP Network

PowerFlex 755

Large Industrial Motor

Pump / Fan / Blower / Conveyor / Process Equipment

This architecture allows drive operating data to be exchanged with the main automation system.


10. Remote Control and Monitoring

Because this catalog configuration is supplied without a HIM, it is particularly suitable for applications where the plant automation system is the primary operator interface.

Typical information available through the control architecture may include:

  • Start command
  • Stop command
  • Speed reference
  • Output frequency
  • Motor current
  • Drive status
  • Fault status
  • Alarm information
  • Diagnostic information
  • Operating values

This makes the drive suitable for centralized process-control systems.


11. No HIM Configuration

The catalog configuration specifies:

Blank / No HIM

This means there is no standard local operator interface included as part of the specified catalog configuration.

This can be an advantage when the project uses:

  • Centralized PLC control
  • SCADA control
  • HMI panels
  • Remote engineering workstations
  • Plant-wide control networks

It can also reduce unnecessary local hardware where operators do not need to interact directly with the drive cabinet.


12. No-HIM Advantage

For a large industrial installation, not every drive requires a permanent local operator interface.

A centralized architecture may use:

Control Room HMI

PLC

EtherNet/IP

PowerFlex 755

This arrangement allows the drive to remain dedicated to motor control while the operator interacts with the plant’s centralized automation system.

For large plants containing many drives, this can provide a consistent operating philosophy.


13. AC Input with Precharge

The drive uses an AC Input with Precharge configuration.

Precharge is associated with controlled energization of the drive’s internal DC-link system.

Because the drive operates at a 567 A current class, the upstream power system must be designed carefully.

Important considerations include:

  • Input disconnect
  • Short-circuit protection
  • Transformer capacity
  • Power cables
  • Grounding
  • Power quality
  • Harmonics
  • EMC
  • Maintenance isolation

14. No DC Terminals

The specified configuration has no DC terminals.

This means it is not primarily configured for external common-DC-bus connections.

This distinction matters in applications involving:

  • Common DC buses
  • Shared DC-link systems
  • Regenerative systems
  • Energy recovery
  • Multi-drive DC architectures

If a project requires an external DC bus, a different configuration should be evaluated.


15. Filtered Input

The drive is configured with filtered input.

The filtering arrangement contributes to the overall electrical and electromagnetic compatibility design.

It is especially relevant in industrial environments containing:

  • PLC systems
  • Industrial Ethernet
  • Instrumentation
  • Sensors
  • Multiple VFDs
  • Control electronics
  • Communication equipment

The filtering arrangement should be considered together with the grounding and cable installation.


16. CM Jumper Removed

A significant characteristic of this catalog number is:

CM Jumper Removed

This is important because it differentiates the AN0 configuration from several later or alternative configurations where the CM jumper is installed.

The common-mode capacitor arrangement should be considered as part of the overall electrical system design.

The engineer should review:

  • Transformer grounding
  • Distribution-system grounding
  • Motor grounding
  • Cable shielding
  • EMC requirements
  • Input filtering
  • Drive replacement conditions

This is particularly important when installing the drive into an existing electrical system.


17. Why CM Jumper Configuration Matters

The common-mode configuration can influence the relationship between the drive, ground, and high-frequency electrical noise.

Therefore, the CM jumper arrangement should not be changed casually.

Before changing the factory configuration, the engineer should evaluate the entire electrical system.

This is especially important for:

  • Ungrounded systems
  • Impedance-grounded systems
  • Existing installations
  • Drive replacements
  • Transformer modifications
  • EMC-sensitive environments

18. Dynamic Braking

The catalog configuration specifies:

Dynamic Braking: None

This means the specified drive does not include dynamic-braking hardware in this catalog configuration.

For many variable-torque pump and fan applications, this is not necessarily a problem.

However, applications involving large rotating inertia should be evaluated carefully.

Examples include:

  • Large centrifuges
  • High-inertia fans
  • Large conveyors
  • High-speed rotating equipment
  • Hoisting applications
  • Rapid-cycle machines

The deceleration requirement should be reviewed before final selection.


19. Forced-Air Cooling

The 20G1ALC567AN0NNNNN is an air-cooled drive.

At a current rating of 567 A and a Light Duty power rating of 355 kW, thermal management is an important part of the installation.

The cooling system requires sufficient airflow.

The electrical room must also have sufficient heat-removal capacity.

The overall cooling design should account for:

  • Drive heat generation
  • Fan airflow
  • Room HVAC
  • Other electrical equipment
  • Cabinet arrangement
  • Ambient temperature
  • Dust accumulation

20. Cooling Maintenance

Cooling performance has a direct relationship with drive reliability.

Maintenance personnel should periodically inspect:

  • Cooling fans
  • Air passages
  • Ventilation openings
  • Dust accumulation
  • Fan noise
  • Fan vibration
  • Airflow
  • Cabinet temperature

A high-power drive should not be operated with severely restricted airflow.


21. IP20 / NEMA Type 1 Enclosure

The main drive is specified as IP20 / NEMA Type 1.

This means the drive should be installed in a protected industrial environment.

The drive should not be directly exposed to:

  • Rain
  • Water spray
  • Washdown
  • Condensation
  • Excessive dust
  • Conductive contamination
  • Corrosive chemicals
  • Uncontrolled outdoor conditions

For harsh environments, an appropriate protected electrical room or enclosure arrangement should be used.


22. 800 mm Deep MCC-Style Construction

The drive uses an 800 mm deep MCC-style configuration.

This is a large floor-mounted industrial drive.

Installation planning should consider:

  • Cabinet depth
  • Door clearance
  • Power-cable entry
  • Cable bending radius
  • Control wiring
  • Network wiring
  • Ventilation
  • Maintenance access
  • Transportation
  • Lifting

The drive requires considerably more installation planning than a small wall-mounted variable-frequency drive.


23. Frame 8 Construction

The drive uses Frame 8 construction.

Frame 8 is intended for high-current industrial drive applications.

For preliminary planning, the following approximate values can be used:

Mechanical Parameter Approximate Value
Frame 8
Height 2453 mm
Width 600 mm
Depth 800 mm
Approx. Weight 623 kg
Enclosure IP20 / NEMA Type 1
Cabinet Style 800 mm Deep MCC Style
Cooling Forced Air

These values should be treated as preliminary reference information.

Final equipment drawings should be used for actual installation and construction.


24. Dimensions

The approximate Frame 8 envelope is:

Height: 2453 mm

Width: 600 mm

Depth: 800 mm

This makes the drive a large industrial electrical assembly.

Adequate clearance should be provided for:

  • Front access
  • Maintenance
  • Cable entry
  • Ventilation
  • Lifting
  • Inspection
  • Replacement

25. Weight

The approximate Frame 8 reference weight is:

623 kg

This is a substantial equipment weight.

Transportation and installation should therefore be planned before equipment delivery.

The project should verify:

  • Floor loading
  • Forklift capacity
  • Crane capacity
  • Lifting points
  • Loading dock capacity
  • Transportation route
  • Door width
  • Installation space

The actual shipping weight can be higher than the basic equipment reference because of packaging and additional cabinet components.


26. Main Product Advantages

The major advantages of the 20G1ALC567AN0NNNNN include:

  1. 567 A high-current capability
  2. 355 kW Light Duty rating
  3. 315 kW Normal Duty rating
  4. 250 kW Heavy Duty rating
  5. 400 VAC three-phase operation
  6. PowerFlex 755 high-power architecture
  7. Embedded EtherNet/IP
  8. Forced-air cooling
  9. Filtered input
  10. AC input with precharge
  11. No DC terminals
  12. Frame 8 construction
  13. 800 mm MCC-style configuration
  14. IP20 / NEMA Type 1 enclosure
  15. No-HIM configuration for centralized control
  16. Flexible industrial applications

27. Advantage – 355 kW Light Duty

The 355 kW Light Duty rating is a major advantage.

Compared with the 540 A version, this model provides additional Light Duty capacity.

This makes it attractive for large variable-torque equipment.

Potential applications include:

  • Large pumps
  • Large fans
  • Cooling towers
  • Large blowers
  • Ventilation systems
  • Process-air systems

For a properly selected variable-torque load, this additional Light Duty capacity can provide useful flexibility.


28. Advantage – 567 A Current Rating

The 567 A current rating provides substantial motor-control capacity.

This makes the drive suitable for large motors where lower-current Frame 8 models may not provide sufficient capacity.

Typical applications include:

  • Large pumps
  • Large fans
  • Blowers
  • Conveyors
  • Process equipment
  • Material handling
  • Industrial utilities

The motor nameplate current must always be checked before final selection.


29. Advantage – Embedded EtherNet/IP

Embedded EtherNet/IP simplifies integration into a compatible industrial network.

It can support centralized control and monitoring without requiring the drive to rely exclusively on a local operator interface.

This is useful in plants where many drives are managed from:

  • A central control room
  • PLC systems
  • SCADA systems
  • HMI stations
  • Industrial automation networks

30. Advantage – No-HIM Configuration

A no-HIM configuration can be advantageous when the plant already has centralized operator interfaces.

For example:

Plant HMI

PLC

EtherNet/IP

PowerFlex 755

The operator does not need to work directly at the drive for normal production control.

This can be particularly useful for large facilities with standardized centralized automation.


31. Advantage – Frame 8 Industrial Construction

Frame 8 provides the physical platform needed for large motor-control systems.

It is suitable for applications where:

  • Motor power is high
  • Motor current is high
  • Industrial networking is required
  • Continuous operation is expected
  • Process control is centralized
  • Floor-mounted electrical equipment is acceptable

32. Pump Applications

The 20G1ALC567AN0NNNNN is well suited to large pump applications.

Potential uses include:

  • Raw-water pumps
  • Process pumps
  • Cooling-water pumps
  • Transfer pumps
  • Booster pumps
  • Circulation pumps
  • Water-treatment pumps
  • Wastewater pumps
  • Industrial utility pumps

The 355 kW Light Duty rating can be particularly attractive for large variable-torque pump systems.


33. Large Fan Applications

Large fans are another major application area.

Potential uses include:

  • Furnace fans
  • Boiler fans
  • Exhaust fans
  • Cooling fans
  • Process ventilation
  • Industrial ventilation
  • Dust-collection systems
  • Large HVAC systems

Variable-speed control can allow fan output to follow process demand.


34. Blower Applications

Large blowers can require hundreds of kilowatts.

The drive can be considered for:

  • Aeration blowers
  • Process-air blowers
  • Combustion-air systems
  • Industrial ventilation
  • Large air-handling systems

The 355 kW Light Duty rating can be useful for large variable-torque blower applications.


35. Conveyor Applications

The drive can be used for large conveyors when the motor and mechanical load are compatible with its duty ratings.

Potential applications include:

  • Mining conveyors
  • Cement conveyors
  • Aggregate conveyors
  • Bulk-material handling
  • Port conveyors
  • Factory material-handling systems

Important engineering considerations include:

  • Starting torque
  • Loaded startup
  • Belt inertia
  • Acceleration time
  • Deceleration
  • Braking
  • Regenerative energy

36. Mining Applications

Mining operations frequently use high-power motors.

The drive may be considered for:

  • Conveyors
  • Dewatering pumps
  • Ventilation fans
  • Material-handling systems
  • Process equipment

Because the main enclosure is IP20, the drive should normally be installed in a protected electrical room.


37. Cement Industry Applications

Cement plants contain many large motor-driven machines.

Potential applications include:

  • Process fans
  • Exhaust fans
  • Large conveyors
  • Blowers
  • Pumps
  • Cooling systems
  • Material handling

The high Light Duty rating makes the 567 A configuration useful for large variable-torque equipment.


38. Water Treatment Applications

Large water-treatment plants often use substantial pump motors.

Potential applications include:

  • Intake pumps
  • Transfer pumps
  • Booster pumps
  • Circulation pumps
  • Process pumps
  • Aeration blowers

The embedded EtherNet/IP capability makes centralized monitoring practical.


39. Wastewater Applications

Wastewater facilities may require large motors for:

  • Lift pumps
  • Transfer pumps
  • Aeration blowers
  • Process pumps
  • Sludge systems
  • Circulation equipment

A centralized PLC can control the drive while collecting drive status and diagnostic information.


40. Factory Utility Applications

The drive can be used for large factory utility equipment.

Potential applications include:

  • Cooling-water pumps
  • Cooling towers
  • Large ventilation fans
  • Exhaust systems
  • Utility pumps
  • Process-air blowers

These systems often benefit from centralized automation.


41. Process Industry Applications

The drive is suitable for large process equipment where variable-speed operation is required.

Potential applications include:

  • Large pumps
  • Fans
  • Blowers
  • Mixers
  • Conveyors
  • Material-handling systems
  • Rotating process machinery

The actual load torque profile must be evaluated before selecting LD, ND, or HD operation.


42. Motor Selection

Motor selection should be based on actual motor nameplate information.

Motor Parameter Engineering Requirement
Motor Voltage Must be compatible with the drive system
Motor Phase 3 Phase
Motor Current Must be within applicable drive rating
Motor Power Compare with LD / ND / HD
Motor Frequency Verify operating frequency
Motor Speed Verify required speed range
Motor Torque Check load torque
Starting Torque Evaluate starting requirement
Acceleration Verify acceleration time
Deceleration Evaluate braking requirement
Duty Cycle Verify continuous and overload conditions
Environment Verify temperature and contamination
Installation Confirm protected IP20 environment

Motor kW alone should not be used to determine the correct drive.


43. Motor Current Is Critical

A motor’s nominal kW rating does not tell the entire story.

Final drive selection should consider:

  • Motor current
  • Motor voltage
  • Motor power factor
  • Motor efficiency
  • Starting torque
  • Load torque
  • Service factor
  • Operating speed
  • Duty cycle
  • Ambient conditions

The motor nameplate current should be compared directly with the appropriate drive rating.


44. Cooling and Electrical Room Design

A 567 A Frame 8 drive can produce a substantial amount of heat.

The electrical room should therefore have sufficient heat-removal capacity.

The design should consider:

  • Drive losses
  • Fan airflow
  • HVAC capacity
  • Other electrical equipment
  • Room temperature
  • Cabinet arrangement
  • Air circulation
  • Dust accumulation

Several large drives in one room can create a significant thermal load.


45. Electrical Installation

Installation should be carried out by qualified electrical personnel.

Important design areas include:

  • Input disconnect
  • Overcurrent protection
  • Short-circuit protection
  • Power cables
  • Grounding
  • Motor cables
  • Control wiring
  • Network wiring
  • EMC
  • Maintenance isolation

At 567 A, cable selection and upstream electrical protection are particularly important.


46. Grounding

Proper grounding is essential for high-power variable-frequency drive installations.

The system should provide suitable grounding for:

  • Drive chassis
  • Cabinet
  • Motor
  • Motor cable
  • Control equipment
  • Network equipment

The CM jumper removed configuration should be evaluated as part of the overall grounding strategy.


47. EMC Considerations

The drive uses a filtered configuration.

However, good EMC performance also depends on installation quality.

Important considerations include:

  • Proper grounding
  • Cabinet bonding
  • Motor-cable shielding
  • Correct cable routing
  • Separation of power and control cables
  • Proper network installation
  • Appropriate termination

The filter is only one part of the overall EMC solution.


48. Braking Considerations

The catalog configuration has no dynamic braking.

This is often acceptable for:

  • Centrifugal pumps
  • Large fans
  • Variable-torque blowers

However, applications involving high inertia may require additional evaluation.

The engineer should calculate:

  • Motor inertia
  • Load inertia
  • Speed
  • Deceleration time
  • Number of stops
  • Regenerative energy

49. Maintenance Strategy

A preventive-maintenance program should include:

Cooling System

Inspect fans and airflow.

Electrical System

Inspect connections and grounding.

Cabinet

Inspect cabinet cleanliness and mechanical condition.

Motor Cabling

Inspect cables and termination.

Network

Inspect EtherNet/IP connections.

Drive Diagnostics

Review fault and alarm history.

Environment

Check temperature, dust, moisture, and ventilation.


50. Parameter Backup

Because this configuration has no HIM, parameter management through the plant automation or engineering system becomes particularly important.

A complete backup should ideally include:

  • Motor parameters
  • Drive parameters
  • Control configuration
  • Network settings
  • Application settings
  • Safety-related configuration where applicable
  • Communication configuration

Maintaining a reliable parameter backup can significantly simplify replacement or recovery.


51. Five Closely Related PowerFlex 755 Models

The following models are closely related to the 20G1ALC567AN0NNNNN.

Model Voltage Current LD ND HD Frame HIM / Configuration Approx. Dimensions Approx. Weight
20G1ALC540AN0NNNNN 400 VAC 540 A 315 kW 315 kW 250 kW 8 No HIM 2453 × 600 × 800 mm reference 623 kg reference
20G1ALC567JN0NNNNN 400 VAC 567 A 355 kW 315 kW 250 kW 8 No HIM 2453 × 600 × 800 mm reference 623 kg reference
20G1ALC567JN2NNNNN 400 VAC 567 A 355 kW 315 kW 250 kW 8 Handheld / Local HIM Frame 8 reference 623 kg reference
20G1ALC567JN4NNNNN 400 VAC 567 A 355 kW 315 kW 250 kW 8 Enhanced LCD / Full Numeric HIM Frame 8 reference 623 kg reference
20G1ALC650AN0NNNNN 400 VAC 650 A 400 kW 355 kW 315 kW 8 No HIM Frame 8 reference 623 kg reference

These models provide a useful range around the 567 A configuration.


52. 20G1ALC540AN0NNNNN

The 20G1ALC540AN0NNNNN is a closely related 540 A version.

Its approximate ratings are:

  • 400 VAC
  • 540 A
  • 315 kW LD
  • 315 kW ND
  • 250 kW HD
  • Frame 8
  • IP20
  • 800 mm MCC style
  • No HIM

It is appropriate when the 567 A current class is not required.


53. 20G1ALC567JN0NNNNN

The 20G1ALC567JN0NNNNN is a closely related current configuration with the same major power ratings:

  • 400 VAC
  • 567 A
  • 355 kW LD
  • 315 kW ND
  • 250 kW HD
  • Frame 8
  • IP20

The important configuration difference is the CM jumper arrangement.

The JN0 version specifies the CM jumper as installed, while the AN0 version specifies it as removed.

This makes the distinction important when considering replacement or retrofit work.


54. 20G1ALC567JN2NNNNN

The 20G1ALC567JN2NNNNN retains the same basic 567 A electrical platform.

Its principal ratings are:

  • 400 VAC
  • 567 A
  • 355 kW LD
  • 315 kW ND
  • 250 kW HD
  • Frame 8

It adds a Handheld / Local HIM configuration.

This is a useful choice when local commissioning and maintenance access are required.


55. 20G1ALC567JN4NNNNN

The 20G1ALC567JN4NNNNN is another close alternative.

It provides:

  • 400 VAC
  • 567 A
  • 355 kW LD
  • 315 kW ND
  • 250 kW HD
  • Frame 8

Its major distinction is the Enhanced LCD / Full Numeric Door-Mounted HIM.

This configuration is useful when permanent local operator access is desired.


56. 20G1ALC650AN0NNNNN

The 20G1ALC650AN0NNNNN increases the current class to approximately 650 A.

Its approximate ratings are:

  • 400 VAC
  • 650 A
  • 400 kW LD
  • 355 kW ND
  • 315 kW HD
  • Frame 8

It is a logical option when the 567 A model does not provide sufficient capacity.


57. Related Model Comparison

Model Current LD ND HD Main Difference
20G1ALC540AN0NNNNN 540 A 315 kW 315 kW 250 kW Lower current
20G1ALC567AN0NNNNN 567 A 355 kW 315 kW 250 kW Target model / CM jumper removed
20G1ALC567JN0NNNNN 567 A 355 kW 315 kW 250 kW CM jumper installed
20G1ALC567JN2NNNNN 567 A 355 kW 315 kW 250 kW Handheld / Local HIM
20G1ALC567JN4NNNNN 567 A 355 kW 315 kW 250 kW Enhanced LCD Door-Mounted HIM
20G1ALC650AN0NNNNN 650 A 400 kW 355 kW 315 kW Higher current and power

58. Five Popular Allen-Bradley Models for Comparison

The following models provide a broader comparison across different PowerFlex families and power ranges.

Model Series Voltage Current / Rating Power Rating Frame Enclosure Approx. Dimensions Approx. Weight
25B-D030N114 PowerFlex 525 380–480 VAC 30 A Approx. 15 kW ND / 11 kW HD D IP20 Compact Frame D Approx. 4.76 kg
25C-D030N114 PowerFlex 527 380–480 VAC 30 A Approx. 15 kW ND / 11 kW HD D IP20 260 × 130 × 212 mm Configuration dependent
20F1AND302JA0NNNNN PowerFlex 753 480 VAC 302 A 250 HP ND / 200 HP HD 7 IP20/IP00 Frame 7 Configuration dependent
20G1AJE460JN4NNNNN PowerFlex 755 600 VAC 460 A 500 HP LD / 500 HP ND / 400 HP HD 8 IP54 / Type 12 Frame 8 Configuration dependent
20G1AJF415JN4NNNNN PowerFlex 755 690 VAC 415 A 450 kW LD / 400 kW ND / 355 kW HD 8 IP54 / Type 12 Frame 8 Configuration dependent

59. PowerFlex 525 Comparison

The 25B-D030N114 is a much smaller PowerFlex 525 drive.

Its approximate characteristics include:

  • 380–480 VAC
  • 30 A
  • Approximately 15 kW Normal Duty
  • Approximately 11 kW Heavy Duty
  • Frame D
  • IP20
  • Embedded EtherNet/IP
  • Compact construction
  • Approximately 4.76 kg

It is suitable for smaller industrial machines.

The 20G1ALC567AN0NNNNN is designed for a completely different power class.


60. PowerFlex 527 Comparison

The 25C-D030N114 is another compact drive.

Its approximate characteristics include:

  • 380–480 VAC
  • 30 A
  • Approximately 15 kW Normal Duty
  • Approximately 11 kW Heavy Duty
  • Frame D
  • IP20
  • Approximately 260 × 130 × 212 mm

It is more suitable for machine-level automation.


61. PowerFlex 753 Comparison

The 20F1AND302JA0NNNNN belongs to the PowerFlex 753 family.

Its approximate characteristics include:

  • 480 VAC
  • 302 A
  • 250 HP Normal Duty
  • 200 HP Heavy Duty
  • Frame 7
  • IP20/IP00
  • Forced-air cooling
  • Industrial high-power architecture

It is useful where a large industrial drive is required but the specific 400 VAC / 567 A configuration is not necessary.


62. 600 VAC PowerFlex 755 Comparison

The 20G1AJE460JN4NNNNN is a high-power PowerFlex 755 configuration for a 600 VAC-class system.

Its approximate characteristics include:

  • 600 VAC
  • 460 A
  • 500 HP LD
  • 500 HP ND
  • 400 HP HD
  • Frame 8
  • Type 12 / IP54
  • Door-mounted HIM

It is suitable for large industrial motors operating on higher-voltage systems.


63. 690 VAC PowerFlex 755 Comparison

The 20G1AJF415JN4NNNNN is a PowerFlex 755 configuration for a 690 VAC-class system.

Its approximate characteristics include:

  • 690 VAC
  • 415 A
  • 450 kW LD
  • 400 kW ND
  • 355 kW HD
  • Frame 8
  • Type 12 / IP54
  • Door-mounted HIM

It is a useful comparison for high-power industrial systems operating at 690 VAC.


64. AN0 vs JN0 Configuration

The AN0 and JN0 configurations require particular attention.

Feature 20G1ALC567AN0NNNNN 20G1ALC567JN0NNNNN
Voltage 400 VAC 400 VAC
Current 567 A 567 A
LD 355 kW 355 kW
ND 315 kW 315 kW
HD 250 kW 250 kW
Frame 8 8
Main Enclosure IP20 IP20
Cabinet Depth 800 mm 800 mm
Cooling Forced Air Forced Air
EtherNet/IP Embedded Embedded
Filtering Filtered Filtered
CM Jumper Removed Installed
Dynamic Braking None None
HIM No HIM No HIM
Main Difference Original CM configuration Updated CM configuration

This distinction is important when selecting a replacement for an existing installation.

The drive ratings may appear nearly identical, but the CM jumper configuration should be reviewed before treating one catalog number as a direct substitute for another.


65. Why the 567 A Model Is Attractive

The 567 A model occupies a useful position in the PowerFlex 755 Frame 8 range.

It provides:

355 kW Light Duty

while maintaining:

315 kW Normal Duty

and:

250 kW Heavy Duty

This makes it particularly useful for large variable-torque applications where the Light Duty rating is more important than the Normal Duty rating.


66. Large Pump Selection

For a large centrifugal pump, the 355 kW Light Duty rating can be particularly attractive.

The drive can provide:

  • Adjustable pump speed
  • Controlled acceleration
  • Controlled stopping
  • Centralized control
  • Process monitoring
  • Network diagnostics

Potential applications include:

  • Water supply
  • Cooling water
  • Industrial process water
  • Wastewater
  • Utility pumping

67. Large Fan Selection

For a large variable-torque fan, the 355 kW Light Duty rating can provide useful capacity.

Potential applications include:

  • Furnace exhaust
  • Boiler ventilation
  • Mining ventilation
  • Dust collection
  • Cooling
  • Industrial ventilation

Variable-speed operation can help match airflow to process requirements.


68. Large Blower Selection

The drive can be used with large blowers where the motor falls within the applicable rating.

Potential applications include:

  • Wastewater aeration
  • Process air
  • Combustion air
  • Industrial ventilation
  • Air-handling systems

The actual blower torque curve should be evaluated before selecting the drive.


69. Conveyor Selection

For conveyors, Normal Duty or Heavy Duty operation may be more appropriate than Light Duty.

Important considerations include:

  • Loaded starting
  • Static friction
  • Belt inertia
  • Acceleration time
  • Motor torque
  • Deceleration
  • Mechanical brake
  • Regeneration

The 250 kW Heavy Duty rating provides a useful range for demanding conveyor applications, subject to the actual motor current and load profile.


70. Mining Equipment

Mining applications can include:

  • Conveyors
  • Pumps
  • Fans
  • Blowers
  • Material handling
  • Process machinery

The drive should be installed in a protected electrical environment because the main enclosure is IP20.


71. Cement Equipment

Cement plants often contain:

  • Large fans
  • Large conveyors
  • Blowers
  • Pumps
  • Cooling systems
  • Material-handling equipment

The 567 A PowerFlex 755 is suitable for many of these high-power motor applications.


72. Water and Wastewater

Water and wastewater facilities can use the drive for:

  • Large pumps
  • Aeration blowers
  • Transfer systems
  • Booster stations
  • Circulation systems

The embedded network interface allows the drive to be integrated into centralized plant automation.


73. Process Manufacturing

The drive can be applied to large process machinery such as:

  • Pumps
  • Fans
  • Blowers
  • Conveyors
  • Mixers
  • Rotating process equipment

The actual application should be evaluated based on motor current, torque, overload, and duty cycle.


74. Factory Utility Systems

Large factory utilities may use the drive for:

  • Cooling-water systems
  • Large ventilation
  • Exhaust systems
  • Process-air systems
  • Utility pumping
  • Cooling towers

Centralized network control is useful where multiple drives operate as part of one plant utility system.


75. Electrical Room Requirements

Because this is a large Frame 8 drive, the electrical room should provide:

  • Adequate floor area
  • Sufficient ventilation
  • Heat removal
  • Maintenance clearance
  • Cable access
  • Safe working space
  • Suitable lifting access

The approximate physical envelope is:

2453 mm × 600 mm × 800 mm

and the approximate reference weight is:

623 kg.


76. Transportation Requirements

Transportation planning should begin before delivery.

The project should confirm:

  • Vehicle access
  • Loading dock capacity
  • Forklift capacity
  • Crane capacity
  • Door clearance
  • Floor loading
  • Transport route
  • Final installation position

Because the equipment is heavy, improper handling can create significant mechanical and safety risks.


77. Maintenance Considerations

The maintenance program should include:

Cooling

Inspect fans and airflow.

Electrical Connections

Inspect power and grounding connections.

Cabinet

Inspect cleanliness and mechanical condition.

Network

Inspect EtherNet/IP wiring.

Parameters

Maintain a current parameter backup.

Environment

Monitor temperature, humidity, dust, and ventilation.

Diagnostics

Review drive fault and alarm history.


78. No-HIM Maintenance Strategy

Because the catalog configuration has no HIM, the maintenance team should have an appropriate engineering or control-system method for accessing the drive.

A good plant strategy should include:

  • Parameter backup
  • Network configuration backup
  • Drive identification records
  • Motor data records
  • Fault-history records
  • Replacement procedures

For critical production equipment, this documentation can significantly reduce recovery time.


79. Product Selection Checklist

Selection Item Required Specification
Model 20G1ALC567AN0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Voltage 400 VAC
Phase 3 Phase
Current 567 A
Light Duty 355 kW
Normal Duty 315 kW
Heavy Duty 250 kW
Frame 8
Cooling Forced Air
Main Enclosure IP20 / NEMA Type 1
Cabinet Depth 800 mm
Cabinet Style MCC Style
Input AC with Precharge
DC Terminals None
Filtering Filtered
CM Jumper Removed
Dynamic Braking None
Communication Embedded EtherNet/IP
HIM None / Blank
Approx. Height 2453 mm
Approx. Width 600 mm
Approx. Depth 800 mm
Approx. Weight 623 kg

80. Engineering Selection Guide

Choose the 20G1ALC567AN0NNNNN when the application requires:

  • 400 VAC
  • Three-phase operation
  • Approximately 567 A current capacity
  • 355 kW Light Duty
  • 315 kW Normal Duty
  • 250 kW Heavy Duty
  • Frame 8
  • IP20 installation
  • 800 mm deep MCC-style construction
  • Embedded EtherNet/IP
  • Forced-air cooling
  • Filtered input
  • CM jumper removed
  • No dynamic braking
  • No local HIM

This configuration is particularly suitable for centralized industrial automation systems.


81. When the 567 A Model Is Better Than the 540 A Model

The main advantage is the higher Light Duty rating.

Parameter 20G1ALC540AN0NNNNN 20G1ALC567AN0NNNNN
Current 540 A 567 A
Light Duty 315 kW 355 kW
Normal Duty 315 kW 315 kW
Heavy Duty 250 kW 250 kW
Frame 8 8
Main Enclosure IP20 IP20
HIM No HIM No HIM

For large variable-torque loads approaching the 315–355 kW range, the 567 A model provides additional Light Duty capacity.


82. When to Choose the JN0 Version

The 20G1ALC567JN0NNNNN may be preferred when the project requires the same general 567 A electrical class but uses the installed CM jumper configuration.

It also retains the no-HIM architecture.

This can be useful for centralized automation systems where the drive is managed from a control room.


83. When to Choose the JN2 Version

The 20G1ALC567JN2NNNNN is more suitable when local commissioning and maintenance access are important.

It provides a Handheld / Local HIM arrangement.

This can be useful when technicians need direct access to the drive during startup and troubleshooting.


84. When to Choose the JN4 Version

The 20G1ALC567JN4NNNNN is appropriate when a permanent door-mounted operator interface is preferred.

It provides an Enhanced LCD / Full Numeric HIM arrangement.

This can be particularly useful in plants where operators or maintenance personnel regularly work at the electrical cabinet.


85. Main Advantages Compared with Smaller Drives

The 20G1ALC567AN0NNNNN offers several advantages over smaller industrial drives:

Higher Motor Capacity

Suitable for motors in the hundreds-of-kilowatts range.

Higher Current

567 A current class.

Larger Frame

Frame 8 industrial construction.

Network Integration

Embedded EtherNet/IP.

Flexible Duty

355 kW LD, 315 kW ND, and 250 kW HD.

Industrial Application Range

Suitable for pumps, fans, blowers, conveyors, and process machinery.


86. Main Limitations Compared with Smaller Drives

The drive also has several practical disadvantages compared with compact VFDs:

Larger Physical Size

It requires substantial floor space.

Greater Weight

Approximately 623 kg reference weight.

Higher Installation Cost

Power distribution, cabling, ventilation, and handling require more planning.

IP20 Main Enclosure

A protected electrical environment is required.

No Standard HIM

Local operation requires a suitable external or engineering interface.

No Dynamic Braking

High-inertia applications may require additional braking analysis.

These factors should be considered during project planning.


87. Typical System Architecture

A representative industrial system could use:

Central Control Room

PLC / Automation Controller

Industrial EtherNet/IP Network

20G1ALC567AN0NNNNN

Large AC Motor

Pump / Fan / Blower / Conveyor

The drive functions as the power-conversion and motor-control stage.

The plant automation system provides the primary operator interface.


88. Recommended Applications by Duty

Application Recommended Duty Consideration Suitability
Large Centrifugal Pump Light Duty Excellent
Large Cooling Fan Light Duty Excellent
Large Process Fan Light Duty Excellent
Large Blower Light Duty Excellent
Water Pump Light Duty / Normal Duty Excellent
Wastewater Blower Normal Duty Very Good
Large Conveyor Normal Duty / Heavy Duty Very Good
Mining Conveyor Heavy Duty Application Dependent
Cement Conveyor Heavy Duty Application Dependent
Material Handling Normal Duty / Heavy Duty Very Good
Large Mixer Heavy Duty Application Dependent
High-Inertia Equipment Heavy Duty Requires Detailed Analysis
Hoisting Heavy Duty Requires Braking Analysis

89. Overall Technical Summary

The Allen-Bradley 20G1ALC567AN0NNNNN is a high-power PowerFlex 755 air-cooled AC drive for large industrial motor-control applications.

Its primary electrical characteristics are:

400 VAC

3 Phase

567 A

355 kW Light Duty

315 kW Normal Duty

250 kW Heavy Duty

Its physical configuration is:

Frame 8

IP20 / NEMA Type 1

800 mm Deep MCC Style

Forced Air Cooling

Its communication configuration includes:

Embedded EtherNet/IP

Its power-input configuration includes:

AC Input with Precharge

No DC Terminals

Filtered Input

CM Jumper Removed

No Dynamic Braking

The catalog configuration is:

Blank / No HIM

The approximate Frame 8 reference dimensions are:

2453 mm H × 600 mm W × 800 mm D

The approximate reference weight is:

623 kg


90. Final Product Assessment

The 20G1ALC567AN0NNNNN is a high-capacity industrial AC drive intended for large motor applications where centralized automation and substantial variable-speed control capability are required.

Its most notable electrical characteristic is the combination of:

567 A current

with:

355 kW Light Duty

315 kW Normal Duty

and:

250 kW Heavy Duty.

This makes it particularly attractive for large variable-torque equipment.

For example, large centrifugal pumps, industrial fans, cooling systems, and blowers can make good use of the higher Light Duty capacity.

The drive is also appropriate for general industrial equipment within the 315 kW Normal Duty range.

For more demanding mechanical loads, the 250 kW Heavy Duty rating provides an additional application range, subject to detailed motor and load calculations.

The PowerFlex 755 Frame 8 construction provides a substantial industrial platform suitable for large process plants, utility systems, mining facilities, cement plants, water-treatment facilities, and large manufacturing operations.

The embedded EtherNet/IP capability makes the drive well suited to centralized control architectures.

The no-HIM configuration is particularly appropriate when the plant already uses centralized HMIs, PLCs, SCADA systems, or engineering workstations.

The filtered input configuration contributes to the overall electrical and EMC design.

The CM jumper removed configuration is an important catalog characteristic and should be considered carefully during installation and replacement planning.

The absence of dynamic braking means that high-inertia and rapid-deceleration applications should receive a specific braking evaluation.

The IP20 / NEMA Type 1 main enclosure means the drive should be installed in a protected industrial environment.

The approximate 2453 × 600 × 800 mm Frame 8 envelope and approximately 623 kg reference weight also mean that transportation, floor loading, lifting, ventilation, and maintenance access must be planned before installation.

Overall, the 20G1ALC567AN0NNNNN is best described as a high-power, 400 VAC, 567 A PowerFlex 755 Frame 8 AC drive with 355 kW Light Duty, 315 kW Normal Duty, 250 kW Heavy Duty, embedded EtherNet/IP, filtered input, CM jumper removed, no dynamic braking, and no HIM.

It is especially suitable for large pumps, fans, blowers, conveyors, water and wastewater systems, mining equipment, cement machinery, industrial utilities, and large process-control applications where centralized automation is preferred.



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