• Allen Bradley 20G1ALD740JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ALD740JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ALD740JN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1ALD740JN0NNNNN PowerFlex AC Drive
Allen-Bradley 20G1ALD740JN0NNNNN PowerFlex 755 AC Drive 1. Product Overview The 20G1ALD740JN0NNNNN is a high-power air-cooled AC drive in the PowerFlex 755 series, designed for large industrial motor-co……
Allen Bradley 20G1ALD740JN0NNNNN PowerFlex AC Drive
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  • 20G1ALD740JN0NNNNN
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Allen-Bradley 20G1ALD740JN0NNNNN PowerFlex 755 AC Drive

1. Product Overview

The 20G1ALD740JN0NNNNN is a high-power air-cooled AC drive in the PowerFlex 755 series, designed for large industrial motor-control applications where high current capacity, reliable speed regulation, controlled acceleration, and integration with an industrial automation system are required.

This model is rated at 740 A and is designed for a 480 VAC, three-phase electrical system. It uses a Frame 8 power structure and is intended for large motors and demanding industrial machinery.

The model is particularly suitable for applications such as large pumps, fans, blowers, conveyors, compressors, mining equipment, cement machinery, material-handling systems, process machinery, and other large rotating equipment.

The catalog configuration uses AC input with precharge, does not provide external DC terminals, uses forced-air cooling, and has a Type 1 / IP20, 800 mm deep MCC-style construction.

Another important characteristic is its filtered configuration with the CM jumper installed. This makes the exact catalog number important when comparing it with similar 740 A versions of the same drive family.


2. Brand and Product Series

Item Specification
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Product Type High-Power AC Drive
Catalog Number 20G1ALD740JN0NNNNN
Drive Construction Air-Cooled AC Drive
Cooling Method Forced Air
Rated Voltage 480 VAC
Input Phase Three Phase
Output Current 740 A
Frame Size Frame 8
Enclosure Type 1 / IP20
Cabinet Style 800 mm Deep MCC Style
Communication Embedded EtherNet/IP
Input Configuration AC Input with Precharge
External DC Terminals None
Dynamic Braking None
EMC Configuration Filtered
CM Jumper Installed
HIM Blank / No HIM
Application Class Large Industrial Motor Control

The PowerFlex 755 series is designed for applications that require more capability than a compact general-purpose variable-frequency drive.

The platform is intended for larger industrial systems where motor control, networking, diagnostics, process integration, and high-power electrical performance are all important.


3. Main Technical Parameters

Parameter Specification
Model 20G1ALD740JN0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product Type AC Variable Frequency Drive
Rated Input Voltage 480 VAC
Input Phase 3 Phase
Output Current 740 A
Light-Duty Rating 700 HP
Normal-Duty Rating 650 HP
Heavy-Duty Rating 500 HP
Frame Size Frame 8
Cooling Forced Air
Enclosure Type 1 / IP20
Cabinet Depth 800 mm MCC Style
Input Type AC Input with Precharge
External DC Terminals No
Dynamic Braking None
EMC Filtering Filtered
CM Jumper Installed
Communication Embedded EtherNet/IP
HIM Configuration Blank / No HIM
Typical Application Large Industrial Motor Control
Approx. Dimensions 2453 × 600 × 800 mm*
Approx. Weight 620–725 kg*

*Dimensions and weight are practical planning figures for the large Frame 8 installation class. The actual supplied mechanical configuration, cabinet arrangement, options, and shipping configuration should be checked before final foundation, transportation, lifting, or enclosure work.


4. 740 A High-Current Design

The defining electrical characteristic of the 20G1ALD740JN0NNNNN is its 740 A output-current rating.

A drive with this level of current capacity is intended for large industrial motors rather than small machine applications.

The high current capability provides sufficient capacity for many large motors used in:

  • Water pumping systems
  • Industrial fans
  • Large blowers
  • Mining conveyors
  • Crushers
  • Cement machinery
  • Aggregate processing
  • Compressors
  • Process machinery
  • Material-handling systems

The actual motor should still be selected according to its nameplate current, voltage, operating duty, overload requirement, ambient conditions, and process load.

Horsepower is useful for initial selection, but the motor’s actual full-load current is one of the most important values when determining drive compatibility.


5. Horsepower and Duty Ratings

The drive provides three commonly referenced duty classifications.

Duty Approximate Motor Rating
Light Duty 700 HP
Normal Duty 650 HP
Heavy Duty 500 HP

These ratings should be interpreted together with the application.

A motor driving a relatively stable centrifugal pump may have a very different operating profile from a conveyor carrying heavy material or a crusher experiencing frequent load changes.

For high-inertia or high-torque applications, the heavy-duty rating may become the more important selection reference.

Therefore, the drive should be selected based on the complete load profile rather than simply matching the motor horsepower.


6. 480 VAC Three-Phase System

The 20G1ALD740JN0NNNNN is designed for a 480 VAC, three-phase industrial power system.

480 VAC three-phase power is widely used for large industrial motors and electrical distribution systems.

This voltage class is particularly common in:

  • Manufacturing plants
  • Processing plants
  • Water facilities
  • Mining operations
  • Cement facilities
  • Aggregate plants
  • Large HVAC installations
  • Material-handling facilities
  • Industrial utility systems

The drive should be installed as part of a properly engineered power system, including upstream protection, disconnect equipment, grounding, power conductors, motor connections, and control wiring.


7. Frame 8 Construction

The drive uses a Frame 8 power structure.

Frame size is an important consideration because it affects the physical arrangement as well as the electrical capacity.

A Frame 8 drive requires considerably more installation space than compact variable-frequency drives.

The frame affects:

  • Cabinet dimensions
  • Power connections
  • Cooling requirements
  • Cable routing
  • Service access
  • Component accessibility
  • Transportation
  • Lifting requirements
  • Electrical-room layout
  • Maintenance procedures

For this reason, a Frame 8 drive should be treated as a major electrical installation rather than a simple panel-mounted component.


8. Forced-Air Cooling

The 20G1ALD740JN0NNNNN uses forced-air cooling.

Large semiconductor power sections produce significant heat during operation. Forced-air cooling moves heat away from the power electronics and helps maintain acceptable operating temperatures.

A suitable installation should provide:

  • Clean cooling air
  • Adequate ventilation
  • Correct airflow
  • Proper service clearance
  • Appropriate ambient temperature
  • Regular fan inspection
  • Regular filter inspection where applicable

Dusty industrial environments deserve special attention.

Mining, cement, aggregate, and bulk-material facilities can expose electrical equipment to substantial airborne dust. Keeping the cooling path clean can have a direct effect on long-term reliability.


9. AC Input with Precharge

The model uses an AC input with precharge arrangement.

Large drives contain a substantial DC-link energy-storage section. When the drive is energized, the DC bus must be charged in a controlled manner.

The precharge arrangement manages this initial charging process before the drive enters normal operating conditions.

This is particularly important for a high-power drive because uncontrolled capacitor charging could create excessive transient current.

The upstream electrical system should therefore be designed with the drive’s input and protection requirements in mind.


10. No External DC Terminals

The 20G1ALD740JN0NNNNN configuration does not provide external DC terminals for general external DC-bus connection.

This is important when considering applications that require:

  • Common DC bus
  • Regenerative operation
  • External DC sources
  • Shared DC bus architecture
  • Specialized braking systems

The absence of external DC terminals means the catalog configuration should not automatically be treated as a common-DC-bus drive.

If the application requires regenerative or shared-bus operation, the complete drive architecture should be reviewed before selection.


11. Embedded EtherNet/IP Communication

The PowerFlex 755 platform provides embedded industrial Ethernet communication.

For the 20G1ALD740JN0NNNNN, embedded EtherNet/IP can be used to connect the drive to a larger automation system.

Typical information exchanged with a controller can include:

  • Start commands
  • Stop commands
  • Speed reference
  • Frequency reference
  • Motor speed
  • Motor current
  • Drive status
  • Fault status
  • Warning status
  • Diagnostic information
  • Process information

This makes the drive suitable for centralized plant automation.

A large pump, conveyor, fan, or compressor can therefore be controlled as part of the production process rather than operating as an isolated motor.


12. Type 1 / IP20 Construction

The drive uses a Type 1 / IP20 enclosure arrangement.

This type of construction is intended for a controlled industrial installation environment.

It is generally more appropriate for:

  • Electrical rooms
  • Motor-control rooms
  • Indoor industrial installations
  • Controlled equipment rooms

The IP20 rating should not be interpreted as protection against outdoor weather, water spray, or severe environmental exposure.

Where the drive is installed in a harsh environment, the overall installation may require an appropriately engineered enclosure or controlled electrical room.


13. 800 mm Deep MCC-Style Cabinet

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

This is particularly relevant during mechanical planning.

The cabinet depth affects:

  • Floor-space planning
  • Cable entry
  • Conduit positioning
  • Power-cable bending radius
  • Door clearance
  • Maintenance access
  • Cabinet lineup arrangement
  • Heat management
  • Transportation

The 800 mm depth should be considered during the early design stage rather than after the electrical room has already been constructed.


14. Filtered Configuration

The 20G1ALD740JN0NNNNN uses a filtered configuration.

EMC filtering is important in variable-frequency-drive installations because high-frequency switching can produce electrical noise.

A well-designed installation should also consider:

  • Motor cable construction
  • Cable length
  • Shielding
  • Grounding
  • Bonding
  • Control-cable separation
  • Encoder wiring
  • Communication wiring
  • Cabinet grounding

The drive’s filter is only one part of the overall EMC design.


15. CM Jumper Installed

The JN0 configuration includes the CM jumper installed.

This is an important distinction when comparing the model with other 740 A PowerFlex 755 configurations.

For example, a model with an otherwise similar current and voltage rating may use a different common-mode configuration.

The CM configuration can affect the relationship between the drive’s EMC circuitry and the grounding system.

It should therefore be kept consistent with the intended power-system and grounding arrangement.


16. Dynamic Braking

The catalog configuration does not include dynamic braking.

This is important for applications involving high inertia or rapid deceleration.

Examples include:

  • Large conveyors
  • Centrifugal equipment
  • High-inertia fans
  • Large rotating machinery
  • Certain material-handling equipment

If the application requires rapid deceleration or significant energy dissipation, braking requirements should be calculated separately.

The correct braking arrangement depends on the load inertia, deceleration time, stopping frequency, motor characteristics, and process requirements.


17. Blank / No HIM Configuration

The basic configuration is specified as Blank / No HIM.

This means the drive is not supplied with a standard local human-interface module as part of this base catalog configuration.

For applications requiring local operator control or local parameter access, a compatible HIM arrangement can be considered separately.

This approach can be useful when the drive is intended to be controlled primarily from a PLC, HMI, SCADA system, or other centralized automation system.


18. Approximate Dimensions and Weight

Because the 20G1ALD740JN0NNNNN is a large Frame 8 drive, physical size and weight must be considered carefully.

Mechanical Parameter Approximate Value
Model 20G1ALD740JN0NNNNN
Frame Frame 8
Approx. Height 2453 mm
Approx. Width 600 mm
Approx. Depth 800 mm
Approx. Weight 620–725 kg
Enclosure Type 1 / IP20
Cabinet Style 800 mm Deep MCC Style
Cooling Forced Air
Installation Floor-Mounted Industrial Equipment

The dimensions and weight above are suitable for preliminary engineering discussion.

For final construction, the actual mechanical drawing associated with the supplied configuration should be used.

The weight is particularly important when planning:

  • Truck transportation
  • Factory handling
  • Forklift access
  • Crane lifting
  • Door dimensions
  • Elevator capacity
  • Floor loading
  • Foundation design
  • Cabinet placement

19. Mechanical Installation

The installation location should provide enough room for the drive to operate correctly and for technicians to perform maintenance.

The following areas should be considered:

  • Front service access
  • Cable access
  • Airflow
  • Cabinet-door movement
  • Cooling-air inlet
  • Cooling-air outlet
  • Electrical isolation
  • Maintenance space
  • Transportation route
  • Lifting access

The large physical size means that the drive should be brought into the building and positioned according to the final installation plan.


20. Typical Applications

The 20G1ALD740JN0NNNNN can be used in a wide range of high-power industrial applications.

Application Main Requirement
Large Water Pumps Variable flow and pressure control
Industrial Fans Variable airflow
Large Blowers Speed and airflow regulation
Conveyors Controlled acceleration and speed
Crushers High-power motor control
Mining Machinery High-current motor operation
Cement Equipment Continuous industrial operation
Aggregate Equipment Process motor control
Compressors Controlled motor speed
Process Machinery Variable speed and torque
Material Handling Controlled starting and stopping
Water Treatment Large pump and blower control
Industrial Ventilation Airflow regulation
Large Mixers Controlled torque and speed

21. Pump Applications

Large pumps often operate under changing process conditions.

A variable-frequency drive allows motor speed to be adjusted to suit the required process demand.

Typical applications include:

  • Water transfer
  • Cooling-water circulation
  • Industrial process pumps
  • Wastewater pumping
  • Irrigation
  • Chemical process pumping
  • Large utility pumps
  • Water treatment systems

The ability to adjust motor speed can also provide smoother process control compared with simply operating the motor continuously at full speed.


22. Fan and Blower Applications

Large fans and blowers are another important application area.

A variable-speed drive can adjust airflow to match actual operating requirements.

Applications include:

  • Factory ventilation
  • Dust collection
  • Furnace systems
  • Industrial exhaust
  • Tunnel ventilation
  • Mining ventilation
  • Cement production
  • Large HVAC systems

For processes where airflow requirements change during the day or production cycle, variable-speed control can provide more flexibility.


23. Conveyor Applications

Large conveyors can require high motor power, particularly when transporting heavy materials over long distances.

The drive can provide controlled acceleration and deceleration.

This can reduce sudden mechanical stress on:

  • Conveyor belts
  • Gearboxes
  • Couplings
  • Bearings
  • Shafts
  • Drive pulleys

Controlled acceleration can also help reduce material movement and mechanical shock during startup.


24. Mining Applications

Mining environments often involve high-power motors and demanding mechanical loads.

Potential applications include:

  • Long conveyors
  • Crushers
  • Pumps
  • Fans
  • Blowers
  • Material-handling equipment
  • Dewatering systems
  • Processing machinery

The 740 A output capacity provides the electrical capacity needed for many large mining motors.

However, environmental conditions must be considered carefully. Dust, temperature, vibration, and maintenance accessibility can all affect the final installation design.


25. Cement and Aggregate Applications

Cement and aggregate facilities contain many large rotating machines.

Typical equipment includes:

  • Crushers
  • Conveyors
  • Fans
  • Blowers
  • Pumps
  • Mills
  • Feeders
  • Dust-collection systems

The PowerFlex 755 platform can provide variable-speed motor control while also allowing the motor controller to communicate with the larger automation system.


26. Compressor Applications

Large compressors can require substantial motor power.

A variable-frequency drive can provide controlled acceleration and speed adjustment.

Potential applications include:

  • Industrial compressed-air systems
  • Process compressors
  • Refrigeration equipment
  • Gas-handling systems
  • Production facilities
  • Industrial utility systems

The compressor manufacturer’s operating requirements should always be considered when selecting the motor and drive.


27. Process Machinery Applications

Large process machines may require both speed control and torque control.

Examples include:

  • Mixers
  • Processing machines
  • Large rotating equipment
  • Material-processing systems
  • Industrial production machinery
  • Heavy-duty mechanical systems

The PowerFlex 755 architecture is appropriate where the drive must operate as part of a broader automation system.


28. Main Product Advantages

28.1 High 740 A Current Capacity

The 740 A rating makes the drive suitable for large industrial motors.

This provides a substantial current margin compared with smaller machine-oriented drives.

28.2 Large Motor Compatibility

With approximately 700 HP light-duty, 650 HP normal-duty, and 500 HP heavy-duty classifications, the drive covers a significant range of large industrial motors.

28.3 Embedded EtherNet/IP

Integrated industrial networking makes it easier to connect the drive to centralized automation equipment.

28.4 Forced-Air Cooling

Forced-air cooling is appropriate for removing heat from a high-power drive system.

28.5 Frame 8 Architecture

The Frame 8 platform provides the physical and electrical structure required for high-power applications.

28.6 Flexible Industrial Applications

The drive can be used across pumps, fans, conveyors, compressors, mining equipment, and process machinery.

28.7 Filtered Configuration

The filtered configuration supports applications where electromagnetic compatibility is an important part of the electrical design.

28.8 CM Jumper Installed

The JN0 configuration provides a defined common-mode configuration that distinguishes it from other catalog-number variants.

28.9 Industrial Automation Integration

The drive can exchange operating information with a larger control system, making it suitable for centralized motor management.

28.10 Large-Plant Standardization

Using a common high-power drive family across multiple applications can simplify training, maintenance, diagnostics, and spare-parts planning.


29. Five Recommended Related PowerFlex 755 Models

The following models are useful when comparing current capacity and configuration.

Model Output Current LD ND HD Voltage Frame Main Relationship
20G1ALD617AN0NNNNN 617 A 600 HP 500 HP 400 HP 480 VAC 8 Lower-current alternative
20G1ALD710AN0NNNNN 710 A 650 HP 600 HP 450 HP 480 VAC 8 Lower-current alternative
20G1ALD710AN2NNNNN 710 A 650 HP 600 HP 450 HP 480 VAC 8 Similar AN2 configuration
20G1ALD740AN0NNNNN 740 A 700 HP 650 HP 500 HP 480 VAC 8 Same current, different CM configuration
20G1ALD740AN2NNNNN 740 A 700 HP 650 HP 500 HP 480 VAC 8 Same current, alternate configuration

These models are useful for engineering comparison because they remain within the same high-power drive family.

The 617 A and 710 A versions may be considered when the motor current does not require the full 740 A capacity.

The 740 A variants are more relevant when the motor current is close to the upper range of this Frame 8 configuration.


30. Current Comparison of Related Models

Model Current Light Duty Normal Duty Heavy Duty
20G1ALD617AN0NNNNN 617 A 600 HP 500 HP 400 HP
20G1ALD710AN0NNNNN 710 A 650 HP 600 HP 450 HP
20G1ALD710AN2NNNNN 710 A 650 HP 600 HP 450 HP
20G1ALD740AN0NNNNN 740 A 700 HP 650 HP 500 HP
20G1ALD740AN2NNNNN 740 A 700 HP 650 HP 500 HP
20G1ALD740JN0NNNNN 740 A 700 HP 650 HP 500 HP

This comparison shows that the 740 A versions provide the highest current capacity within this group.


31. 740 A Configuration Comparison

Model Current Voltage Frame Filter CM Configuration Input
20G1ALD740AN0NNNNN 740 A 480 VAC 8 Filtered CM Jumper Removed AC + Precharge
20G1ALD740AN2NNNNN 740 A 480 VAC 8 Filtered AN2 Configuration AC + Precharge
20G1ALD740JN0NNNNN 740 A 480 VAC 8 Filtered CM Jumper Installed AC + Precharge
20G1ALD740JN2NNNNN 740 A 480 VAC 8 Filtered Alternate Configuration AC + Precharge

The important lesson is that two drives with identical current and horsepower ratings may still have different catalog configurations.

For replacement projects, the complete catalog number should therefore be checked rather than selecting only by current rating.


32. Five Same-Brand Popular Models

The following five models represent different levels and application areas within the same overall product family.

Model Series General Class Typical Application Main Characteristic
25B-D010N104 PowerFlex 525 Compact Pumps, fans, conveyors, machines Compact general-purpose drive
25C-D010N103 PowerFlex 527 Compact Machine Automated machine systems Network-oriented machine control
20F11NC2P1JA0NNNNN PowerFlex 753 Industrial Process and production machinery Flexible industrial motor control
20F11NC8P0JA0NNNNN PowerFlex 753 Large Industrial Large process equipment Higher-capacity industrial applications
20G1ALD740JN0NNNNN PowerFlex 755 Very High Power Large industrial motors 740 A high-power motor control

The five models are not direct substitutes for one another.

The correct model depends on motor current, motor voltage, application duty, physical installation requirements, communication requirements, and the desired control architecture.


33. Same-Brand Model Parameter Comparison

Model Series Typical Application Level Communication Orientation Physical Class
25B-D010N104 PowerFlex 525 Small/medium machines Industrial automation Compact
25C-D010N103 PowerFlex 527 Machine automation Network-oriented Compact
20F11NC2P1JA0NNNNN PowerFlex 753 Medium/large industrial Industrial automation Industrial
20F11NC8P0JA0NNNNN PowerFlex 753 Large industrial Industrial automation Large industrial
20G1ALD740JN0NNNNN PowerFlex 755 Very large industrial Embedded EtherNet/IP Frame 8

34. Motor Selection

When selecting a motor for this drive, the following information should be collected from the motor nameplate.

Motor Parameter Importance
Rated Voltage Must match the drive output system
Full-Load Current Critical sizing parameter
Rated Power Used with current and duty
Rated Frequency Required for speed calculation
Rated Speed Important for process control
Motor Type Must be compatible with drive control
Service Factor Useful for load analysis
Starting Torque Important for high-load starting
Peak Torque Important for shock loading
Duty Cycle Important for thermal sizing
Encoder Required for certain control strategies
Cable Length Important for installation and motor protection

The motor current should be compared with the drive’s applicable duty rating.


35. Electrical System Planning

A 740 A drive requires careful electrical engineering.

The installation should account for:

  • Incoming power
  • Input protection
  • Disconnect equipment
  • Grounding
  • Power conductors
  • Motor conductors
  • Control circuits
  • Communication cables
  • EMC
  • Short-circuit coordination
  • Thermal conditions
  • Cabinet ventilation
  • Maintenance access

The power connections are substantially larger than those used by compact drives, so conductor routing and termination space should be considered during the cabinet-layout stage.


36. Cable and Grounding Considerations

Variable-frequency drives create high-frequency switching components that can affect motor cables and nearby control wiring.

The installation should therefore consider:

  • Correct grounding
  • Bonding
  • Motor cable routing
  • Shielding where required
  • Separation between power and control cables
  • Separation between motor and communication cables
  • Correct termination
  • Cable length
  • EMC requirements

A well-designed cable system helps maintain reliable motor operation and communication performance.


37. Maintenance Considerations

A large Frame 8 drive should have a planned maintenance program.

Typical maintenance activities include:

  • Checking cooling fans
  • Inspecting airflow
  • Cleaning accumulated dust
  • Checking electrical connections
  • Inspecting cabinet ventilation
  • Reviewing fault history
  • Monitoring operating temperature
  • Checking communication status
  • Inspecting wiring
  • Checking motor operating current
  • Reviewing abnormal alarms

The cooling system deserves particular attention because high-power electronics generate substantial heat.


38. Spare-Parts Planning

For a high-power installation, keeping critical replacement components available can reduce downtime.

Potential maintenance planning can include:

  • Cooling fans
  • Fuses
  • Control components
  • Power-related components
  • Communication components
  • Interface components
  • Appropriate cable assemblies

The exact spare-parts list should be based on the installed drive revision and the equipment configuration.


39. Application Selection Table

Application Main Requirement Suitability
Large Pump Variable flow High
Large Fan Variable airflow High
Large Blower Speed regulation High
Conveyor Controlled acceleration High
Crusher High torque and power High
Mining Equipment High-current motor control High
Cement Equipment Large continuous-duty motors High
Aggregate Equipment High-power process control High
Compressor Variable motor speed High
Large Mixer Torque and speed control High
Material Handling Controlled starting/stopping High
Small Machine Low-power motor control Generally oversized

The final application suitability should always be checked against actual motor current, duty cycle, mechanical load, and environmental conditions.


40. Mechanical Planning Table

Mechanical Parameter Planning Value
Model 20G1ALD740JN0NNNNN
Frame Frame 8
Approx. Height 2453 mm
Approx. Width 600 mm
Approx. Depth 800 mm
Approx. Weight 620–725 kg
Enclosure Type 1 / IP20
Cabinet Style 800 mm Deep MCC Style
Cooling Forced Air
Installation Floor Mounted
Service Access Required
Airflow Must Remain Unobstructed
Floor Loading Must Support Equipment Weight
Transportation Heavy Equipment Handling

The dimensions and weight should be treated as preliminary engineering information.

The final mechanical drawing should be used when designing the equipment room, foundation, lifting arrangement, and cabinet lineup.


41. Electrical Planning Table

Electrical Parameter Specification
Model 20G1ALD740JN0NNNNN
Input Voltage 480 VAC
Input Phase Three Phase
Output Current 740 A
Light Duty 700 HP
Normal Duty 650 HP
Heavy Duty 500 HP
Input AC with Precharge
External DC Terminals None
Dynamic Braking None
EMC Filtered
CM Jumper Installed
Communication Embedded EtherNet/IP
Cooling Forced Air
Frame 8
Enclosure Type 1 / IP20

42. Advantages for Pump Stations

For large pump stations, the drive can provide variable-speed operation while allowing the control system to respond to changing process conditions.

This can be useful when the pump does not need to operate continuously at full speed.

The drive can receive a speed reference and provide feedback to the automation system.

This can help integrate motor speed with:

  • Flow
  • Pressure
  • Tank level
  • Water demand
  • Process conditions

The result is a more flexible pumping system.


43. Advantages for Conveyor Systems

For conveyors, controlled acceleration is often important.

A large conveyor can contain substantial mechanical inertia.

Starting the motor abruptly can create high mechanical stress.

A properly configured drive can ramp motor speed gradually.

This can help reduce mechanical shock and provide smoother operation.

The drive can also communicate operating status to the plant control system.


44. Advantages for Fans and Blowers

Large fans often do not need to operate continuously at maximum speed.

Variable-speed control can allow the process to adjust airflow according to actual demand.

Potential benefits include:

  • Flexible airflow
  • Reduced mechanical stress
  • Better process control
  • Adjustable operating speed
  • Easier integration with plant control

The actual energy savings depend on the mechanical system and operating profile.


45. Advantages for Mining and Heavy Industry

Heavy industrial equipment can have demanding motor loads.

A high-power drive provides the current capacity necessary for large motors while offering centralized control and monitoring.

This can be useful for:

  • Mining conveyors
  • Crushers
  • Large pumps
  • Ventilation systems
  • Material-processing machinery
  • Dewatering systems
  • Aggregate equipment

The installation environment must still be evaluated carefully for dust, temperature, vibration, and maintenance access.


46. Replacement Selection Checklist

When replacing an existing drive, the following information should be compared.

Check Item Requirement
Complete Catalog Number Verify
Motor Voltage Verify
Motor Current Verify
Motor Horsepower Verify
Duty Rating Verify
Input Voltage Verify
Input Frequency Verify
Frame Size Verify
Enclosure Verify
CM Configuration Verify
EMC Filtering Verify
Braking Requirement Verify
Communication Verify
HIM Requirement Verify
Cabinet Dimensions Verify
Cooling Arrangement Verify
Cable Arrangement Verify
Grounding System Verify

This is particularly important when replacing a 740 A drive because similar-looking models may have different electrical configurations.


47. Why the Complete Catalog Number Matters

The complete catalog number 20G1ALD740JN0NNNNN contains more information than simply the current rating.

The difference between catalog numbers can represent changes in:

  • Current
  • Frame
  • Input arrangement
  • Filtering
  • CM configuration
  • Braking
  • HIM configuration
  • Enclosure
  • Other factory-defined options

For this reason, a replacement should not be ordered based solely on the phrase “740 A PowerFlex 755.”

The entire catalog number should be compared against the original equipment requirement.


48. Recommended Related Models

Model Current LD ND HD Voltage Frame Recommended Comparison
20G1ALD617AN0NNNNN 617 A 600 HP 500 HP 400 HP 480 VAC 8 Lower-current application
20G1ALD710AN0NNNNN 710 A 650 HP 600 HP 450 HP 480 VAC 8 Slightly lower current
20G1ALD710AN2NNNNN 710 A 650 HP 600 HP 450 HP 480 VAC 8 Alternate configuration
20G1ALD740AN0NNNNN 740 A 700 HP 650 HP 500 HP 480 VAC 8 CM configuration comparison
20G1ALD740AN2NNNNN 740 A 700 HP 650 HP 500 HP 480 VAC 8 Alternate 740 A configuration

49. Same-Brand Popular Model Recommendations

Model Series Main Application General Parameter Class
25B-D010N104 PowerFlex 525 General-purpose machines Compact AC drive
25C-D010N103 PowerFlex 527 Networked machine control Compact machine drive
20F11NC2P1JA0NNNNN PowerFlex 753 Industrial equipment Medium/large industrial drive
20F11NC8P0JA0NNNNN PowerFlex 753 Large process machinery Large industrial drive
20G1ALD740JN0NNNNN PowerFlex 755 Large industrial motors 740 A / 480 VAC / Frame 8

50. Product Advantages in a Complete Industrial System

The main advantage of the 20G1ALD740JN0NNNNN is the combination of high-power motor control and industrial automation integration.

A large motor can be operated at controlled speed while its status and operating information are integrated into the larger plant-control architecture.

This is particularly useful in plants where multiple motors must be coordinated.

For example, a production facility may use:

  • One large drive for a main conveyor
  • One drive for a large pump
  • One drive for a ventilation fan
  • One drive for a compressor
  • Several smaller drives for auxiliary equipment

Using a structured drive architecture can simplify plant-wide motor management.


51. Reliability Considerations

The reliability of a high-power drive depends on more than the drive itself.

The installation environment has a major influence.

Important factors include:

  • Ambient temperature
  • Dust
  • Humidity
  • Ventilation
  • Electrical quality
  • Motor cable installation
  • Grounding
  • Maintenance frequency
  • Cooling-fan condition
  • Cabinet cleanliness
  • Load profile

A well-sized drive operating within its environmental and electrical limits can provide reliable long-term service.


52. Benefits for Large Electrical Rooms

The MCC-style construction is useful for centralized electrical-room installations.

Instead of distributing high-power motor-control equipment throughout the facility, large drives can be organized within dedicated electrical areas.

This can simplify:

  • Maintenance
  • Cable management
  • Network organization
  • Equipment identification
  • Electrical isolation
  • Spare-parts management
  • System documentation

The 800 mm cabinet depth should nevertheless be included in the room-layout calculations.


53. Benefits for Centralized Automation

The embedded EtherNet/IP capability allows the drive to communicate with the plant control system.

A centralized automation system can monitor:

  • Motor current
  • Motor speed
  • Drive status
  • Faults
  • Warnings
  • Operating commands
  • Speed references
  • Process-related information

This provides maintenance and operations personnel with more information than a basic standalone motor starter.


54. Final Technical Summary

Category Specification
Model 20G1ALD740JN0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product Type High-Power Air-Cooled AC Drive
Rated Voltage 480 VAC
Input Three Phase
Output Current 740 A
Light Duty 700 HP
Normal Duty 650 HP
Heavy Duty 500 HP
Frame 8
Cooling Forced Air
Enclosure Type 1 / IP20
Cabinet Style 800 mm Deep MCC Style
Input Configuration AC Input with Precharge
External DC Terminals None
Dynamic Braking None
EMC Filtering Filtered
CM Jumper Installed
Communication Embedded EtherNet/IP
HIM Blank / No HIM
Approx. Dimensions 2453 × 600 × 800 mm
Approx. Weight 620–725 kg
Typical Applications Pumps, Fans, Conveyors, Compressors, Mining, Cement, Aggregate, Process Machinery

55. Final Product Description

The 20G1ALD740JN0NNNNN is a high-power Allen-Bradley PowerFlex 755 AC drive intended for demanding industrial motor-control applications.

Its 740 A output rating, 480 VAC three-phase input class, and Frame 8 construction place it firmly in the large industrial-drive category.

The drive is suitable for motors in the approximate 700 HP light-duty, 650 HP normal-duty, and 500 HP heavy-duty range, with actual selection determined by motor current and the specific application duty.

The unit uses forced-air cooling and an 800 mm deep MCC-style Type 1/IP20 construction, making it well suited to controlled indoor electrical installations and centralized motor-control systems.

Its embedded EtherNet/IP communication allows the drive to become part of a larger automation architecture, where motor speed, current, status, warnings, faults, and operating commands can be exchanged with the plant control system.

The filtered configuration with the CM jumper installed is an important characteristic of the JN0 catalog configuration. This is also why the exact catalog number should be checked when replacing the drive with another 740 A model.

The drive is well suited to large pumps, industrial fans, blowers, conveyors, compressors, mining machinery, cement equipment, aggregate-processing systems, material-handling equipment, water systems, and other large process machines.

Its high current capacity is especially useful where a smaller variable-frequency drive would not provide sufficient motor capacity.

For mechanical planning, an approximate installation envelope of 2453 × 600 × 800 mm and an approximate weight of 620–725 kg can be used for preliminary planning. Final dimensions, mounting details, lifting requirements, and shipping weight should be confirmed against the actual mechanical configuration before construction or transportation.

When selecting this drive for a new project, the most important parameters to verify are the motor nameplate current, motor voltage, horsepower, duty cycle, overload requirement, braking requirement, environmental conditions, cable arrangement, grounding system, communication architecture, and available installation space.

For replacement projects, it is particularly important to compare the complete catalog number rather than selecting another drive solely because it has the same 740 A rating.

Overall, the 20G1ALD740JN0NNNNN is a high-capacity PowerFlex 755 drive intended for large-scale industrial motor control, combining substantial current capability, large-frame construction, forced-air cooling, industrial networking, and a configuration suited to centralized electrical and automation systems.



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