• Allen Bradley 20G1AJE295AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1AJE295AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1AJE295AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G1AJE295AN0NNNNN PowerFlex AC Drive
Allen-Bradley 20G1AJE295AN0NNNNN PowerFlex 755 AC Drive 1. Product Overview The 20G1AJE295AN0NNNNN is an Allen-Bradley PowerFlex 755 air-cooled AC drive designed for large industrial motor-control appli……
Allen Bradley 20G1AJE295AN0NNNNN PowerFlex AC Drive
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Allen-Bradley 20G1AJE295AN0NNNNN PowerFlex 755 AC Drive

1. Product Overview

The 20G1AJE295AN0NNNNN is an Allen-Bradley PowerFlex 755 air-cooled AC drive designed for large industrial motor-control applications requiring high output current, substantial horsepower capability, reliable speed regulation, network integration, and a rugged enclosure suitable for industrial environments.

It belongs to the PowerFlex 755 series, a high-performance family of variable frequency AC drives intended for demanding industrial machinery and process applications.

This particular model is a 600 VAC, three-phase, 295 A, Frame 8 drive. It is configured as an IP54 / NEMA Type 12, 800 mm deep MCC-style packaged drive with an integrated EMC filter, AC input with precharge, no DC terminals, and an embedded EtherNet/IP interface.

The model provides three principal motor-duty ratings:

  • Light Duty: 350 HP
  • Normal Duty: 300 HP
  • Heavy Duty: 250 HP

This combination makes the drive particularly suitable for large pumps, fans, blowers, conveyors, compressors, material-handling systems, process equipment, and other high-power industrial machinery where a conventional small-frame drive would not provide sufficient current capacity.

The AN0 configuration is supplied without a local HIM display, which makes it particularly appropriate for applications where the drive is intended to be commissioned, monitored, and controlled from a PLC, HMI, engineering workstation, or industrial Ethernet network rather than from a permanently mounted local keypad.

The product is also configured with the common-mode jumper removed and EMC filtering enabled. The AC input incorporates precharge, while the packaged configuration does not provide DC terminals or an internal dynamic-braking transistor.

The original 20G1AJE295AN0NNNNN configuration has been discontinued, with 20G1AJE295JN0NNNNN identified as its direct replacement. For new projects, the replacement configuration should therefore be evaluated first, while the original catalog number remains important for installed-base identification, maintenance, spare-parts management, and equipment documentation.

2. Basic Product Identification

Parameter Specification
Brand Allen-Bradley
Series PowerFlex 755
Product Family PowerFlex 755 AC Drive
Product Type High-Power Air-Cooled AC Variable Frequency Drive
Catalog Number 20G1AJE295AN0NNNNN
Rated Input Voltage 600 VAC
Input Configuration Three-phase AC
Rated Output Current 295 A
Frame Size Frame 8
Enclosure IP54 / NEMA Type 12
Enclosure Style 800 mm Deep MCC Style
Cooling Method Forced-air / air-cooled
Input Arrangement AC Input with Precharge
DC Terminals Not provided
EMC Filter Integrated
Common-Mode Jumper Removed
Dynamic Braking None
Local HIM Blank / No HIM
Communication Embedded EtherNet/IP
Light-Duty Rating 350 HP
Normal-Duty Rating 300 HP
Heavy-Duty Rating 250 HP
Approximate Dimensions 2100–2500 × 600 × 800 mm
Approximate Weight About 600–650 kg
Installation Style MCC / industrial cabinet installation
Primary Application Large industrial motor speed and torque control

3. Detailed Electrical Parameters

The 20G1AJE295AN0NNNNN is a high-current drive intended for large motors. Its 295 A continuous normal-duty output rating places it firmly in the large industrial-drive category.

The 600 VAC class is particularly important because it allows the drive to be used with industrial motor systems operating above the more common 400/480 VAC range. This makes it suitable for certain North American and international industrial installations where 575/600 V-class motors and power distribution systems are used.

Electrical Parameter Specification
Catalog Number 20G1AJE295AN0NNNNN
Input Voltage Class 600 VAC
Input Phase 3 Phase
Output Current – Normal Duty 295 A continuous
Normal-Duty 1-Minute Current 325 A
Normal-Duty 3-Second Current 490 A
Light-Duty Continuous Current 355 A
Light-Duty 1-Minute Current 391 A
Light-Duty 3-Second Current Not applicable
Heavy-Duty Continuous Current 272 A
Heavy-Duty 1-Minute Current 408 A
Heavy-Duty 3-Second Current 490 A
Light-Duty Horsepower 350 HP
Normal-Duty Horsepower 300 HP
Heavy-Duty Horsepower 250 HP
Frame 8
Motor Control Variable-frequency AC motor control
Cooling Air cooled
Input Precharge Yes
DC Bus Terminals No
Internal Dynamic Braking None
EMC Filter Yes
Common-Mode Jumper Removed

4. Duty Rating

One of the most important characteristics of the 20G1AJE295AN0NNNNN is its multi-duty capability.

The drive can be selected according to the mechanical characteristics of the application rather than simply according to the motor nameplate horsepower.

For relatively steady loads such as centrifugal pumps and fans, the Light-Duty rating can provide a higher available horsepower rating.

For more demanding applications, the Normal-Duty rating provides a balance between continuous current capability and overload capacity.

For high-torque applications with more severe acceleration or load variations, the Heavy-Duty rating is the more appropriate reference point.

Duty Classification Continuous Current 1-Minute Current 3-Second Current Horsepower
Light Duty 355 A 391 A N/A 350 HP
Normal Duty 295 A 325 A 490 A 300 HP
Heavy Duty 272 A 408 A 490 A 250 HP

The duty rating should always be selected according to actual motor current, load profile, acceleration requirements, overload conditions, ambient temperature, and the required operating cycle.

For example, a 300 HP motor with a relatively smooth centrifugal-pump load can have a very different drive requirement from a 300 HP conveyor or crusher with frequent acceleration and high breakaway torque.

5. Model Number Interpretation

The catalog number contains configuration information that distinguishes this drive from other PowerFlex 755 versions.

Catalog Number Section General Meaning
20G PowerFlex 755 AC drive family
1 Product/configuration designation
AJ High-power packaged-drive configuration
E 600 VAC class
295 295 A nominal normal-duty output-current class
A Configuration with common-mode jumper removed
N EMC/filter configuration designation
0 Blank / no HIM
NNNNN Additional factory configuration positions

The most useful practical distinction is the ending configuration.

The AN0 version is a no-HIM configuration with the common-mode jumper removed.

This makes it different from variants such as JN0, where the common-mode jumper configuration is different, and JN4, where a local HIM configuration is included.

For equipment replacement, the entire catalog number should therefore be checked rather than selecting a replacement based only on the 295 A rating.

6. Embedded EtherNet/IP

The 20G1AJE295AN0NNNNN is configured with embedded EtherNet/IP capability.

This is a major advantage in modern industrial automation because the drive can participate directly in a plant-wide control architecture.

Instead of relying entirely on hardwired start/stop signals, the drive can be integrated into a PLC-based control system for functions such as:

  • Start and stop commands
  • Speed reference
  • Frequency reference
  • Torque-related control information
  • Drive status
  • Fault status
  • Alarm information
  • Current monitoring
  • Output-frequency monitoring
  • Diagnostic information
  • Parameter management
  • Production-status feedback

For a large industrial installation, this can significantly simplify the control architecture.

A central controller can supervise multiple drives while the drive itself handles the motor-control function.

This is particularly useful for systems containing several pumps, multiple conveyors, large fans, process lines, or groups of motors that must operate according to a coordinated production sequence.

7. AC Input with Precharge

The 20G1AJE295AN0NNNNN uses an AC input with precharge configuration.

The precharge arrangement helps manage the initial charging of the DC bus when the drive is energized.

This is particularly important for a large Frame 8 drive because the internal DC-bus energy storage is considerably greater than that of a small industrial inverter.

The configuration does not provide external DC terminals as part of the specified packaged-drive arrangement.

For system designers, this means the installation should be designed around the specified AC input architecture rather than assuming the drive can be integrated into a common external DC-bus system.

8. EMC Filtering

The drive includes an EMC filter.

The integrated filtering helps reduce conducted electromagnetic interference generated by the switching operation of the inverter.

This can be important in industrial plants where multiple electronic systems operate in close proximity.

A suitable EMC strategy can help reduce interference affecting:

  • PLC systems
  • Industrial Ethernet networks
  • Instrumentation
  • Analog signals
  • Sensors
  • Measurement equipment
  • Communication equipment
  • Other variable frequency drives

Actual system EMC performance still depends on the complete installation, including cable routing, grounding, motor-cable construction, enclosure bonding, shield termination, and installation practices.

9. Common-Mode Jumper Configuration

The AN0 configuration uses the common-mode jumper removed arrangement.

This is an important installation detail and should not be treated as a cosmetic catalog-number difference.

Common-mode configuration can affect the way the drive interacts with the motor grounding system, cable system, and electrical distribution arrangement.

For replacement work, the technician should verify the configuration of the existing drive before installing a replacement.

The catalog number should be matched against the intended grounding and electrical-distribution requirements rather than assuming that all PowerFlex 755 drives have identical factory jumper configurations.

10. Enclosure and Environmental Protection

The 20G1AJE295AN0NNNNN uses an IP54 / NEMA Type 12 enclosure configuration.

This is particularly useful for industrial applications where the drive may be exposed to dust, dirt, airborne contaminants, and normal industrial operating conditions.

The 800 mm deep MCC-style construction is intended for integration into larger industrial electrical assemblies.

This type of construction is much more substantial than the compact enclosure used for small motor drives.

Mechanical / Environmental Parameter Specification
Enclosure Rating IP54
NEMA Rating NEMA Type 12
Cabinet Style MCC Style
Cabinet Depth Class 800 mm
Frame Frame 8
Cooling Air cooled
Typical Installation Industrial electrical room / MCC / equipment enclosure
Dust Protection Suitable for normal industrial dust exposure
Water Protection Protected against normal enclosure-level water exposure, subject to installation conditions

11. Dimensions and Weight

Because this is a large Frame 8 packaged drive, mechanical planning is important.

The drive should not be treated like a compact wall-mounted inverter.

The approximate planning envelope is in the range of 2100–2500 mm high × approximately 600 mm wide × approximately 800 mm deep, with a planning weight of approximately 600–650 kg.

The exact dimensions and shipping weight should be confirmed against the mechanical drawing and shipping documentation for the specific unit before designing foundations, MCC sections, lifting equipment, or transportation arrangements.

Mechanical Parameter Approximate Value
Height Approx. 2100–2500 mm
Width Approx. 600 mm
Depth Approx. 800 mm
Approximate Weight Approx. 600–650 kg
Frame Size Frame 8
Mounting Concept MCC-style / floor-supported industrial installation
Handling Requirement Heavy equipment lifting provisions recommended

The large physical size is not simply a disadvantage.

It reflects the high-power electrical architecture, cooling system, enclosure, bus structure, protection components, and high-current switching hardware required for this class of drive.

12. Product Structure and Configuration

The 20G1AJE295AN0NNNNN can be understood as a complete industrial drive package rather than merely a small electronic inverter module.

The major functional sections normally associated with this class of drive include:

  1. AC input section
  2. Input protection and precharge arrangement
  3. Rectifier / DC-bus section
  4. DC-link energy storage
  5. High-power inverter section
  6. Motor output section
  7. Control electronics
  8. Embedded communication interface
  9. Cooling system
  10. EMC filtering
  11. Protective monitoring
  12. Industrial enclosure

This architecture allows the drive to control a large motor while maintaining communication and diagnostic capabilities suitable for an automated production environment.

13. Main Applications

The 20G1AJE295AN0NNNNN is best suited to applications where motor power is substantial and the mechanical load requires controlled acceleration, speed regulation, energy management, or process coordination.

13.1 Large Pumps

Large water pumps are one of the most natural applications for a drive of this size.

A variable frequency drive can regulate pump speed according to process demand rather than simply operating the motor continuously at full speed.

Typical applications include:

  • Water-treatment pumps
  • Industrial-water pumps
  • Cooling-water pumps
  • Process pumps
  • Circulation pumps
  • Large transfer pumps
  • Municipal pumping systems
  • Cooling-tower pumps

For centrifugal pumps, reducing motor speed can substantially change the operating point of the pump and can provide significant process-control and energy-management benefits.

13.2 Large Fans and Blowers

Large industrial fans often require substantial motor power but do not necessarily need to operate at full speed continuously.

The drive can regulate fan speed based on:

  • Airflow demand
  • Pressure
  • Temperature
  • Production rate
  • Furnace conditions
  • Ventilation requirements

Typical applications include:

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

13.3 Conveyors

The 20G1AJE295AN0NNNNN is also appropriate for large conveyors.

A conveyor may require:

  • High starting torque
  • Controlled acceleration
  • Controlled deceleration
  • Adjustable speed
  • Reduced mechanical shock
  • Process synchronization

The drive’s high-current capability is useful when a conveyor has a large mechanical inertia or significant material load.

Applications can include:

  • Mining conveyors
  • Aggregate conveyors
  • Cement conveyors
  • Bulk-material conveyors
  • Port handling systems
  • Warehouse material-handling systems
  • Heavy industrial production lines

13.4 Mining Equipment

Mining environments frequently involve large motors and demanding mechanical loads.

Applications may include:

  • Conveyors
  • Fans
  • Pumps
  • Crushers
  • Material-handling systems
  • Dewatering systems
  • Ventilation equipment

The high-current Frame 8 architecture is particularly appropriate when a large motor requires controlled starting and speed regulation.

13.5 Cement and Aggregate Equipment

Cement plants and aggregate-processing facilities use many large motors.

Potential applications include:

  • Material conveyors
  • Large fans
  • Dust collectors
  • Pumps
  • Feed systems
  • Crushers
  • Process blowers

Variable speed control can be used to match equipment output to the production process.

13.6 Water and Wastewater

Large pumping stations can benefit from variable speed control because demand frequently changes throughout the day.

Applications include:

  • Raw-water pumping
  • High-lift pumping
  • Process-water pumping
  • Wastewater pumping
  • Sludge systems
  • Aeration equipment
  • Cooling-water circulation

The embedded network capability can also be useful when the drive must be supervised from a central PLC or SCADA-oriented control architecture.

13.7 Process Manufacturing

The drive can be used in large process machines where motor speed needs to be coordinated with other production equipment.

Typical applications include:

  • Process pumps
  • Large blowers
  • Material feeders
  • Mixing systems
  • Production conveyors
  • Large cooling systems
  • Material-handling equipment

14. Product Advantages

14.1 High-Power Motor Control

The 295 A normal-duty rating places this model in the high-power industrial category.

It can support substantial motor loads while providing adjustable frequency and speed control.

This is particularly useful when a fixed-speed motor arrangement would result in excessive starting current, mechanical stress, or poor process control.

14.2 Three Duty Ratings

The 350 HP Light-Duty, 300 HP Normal-Duty, and 250 HP Heavy-Duty classifications provide useful flexibility.

The same basic drive platform can be matched to different load characteristics.

This allows the engineer to consider the actual motor current and mechanical load rather than using horsepower alone as the selection criterion.

14.3 600 VAC Capability

The 600 VAC class is one of the key characteristics of this model.

It makes the drive suitable for higher-voltage industrial motor systems that are not appropriate for a standard 400/480 VAC drive.

This is especially valuable in industrial facilities using 575/600 V-class motors.

14.4 Robust IP54 / NEMA Type 12 Enclosure

The enclosure provides a more substantial level of environmental protection than an open-frame drive.

This makes it suitable for industrial electrical rooms and MCC-style installations where dust and normal industrial contamination must be considered.

14.5 Embedded EtherNet/IP

Embedded EtherNet/IP simplifies integration with modern automation architectures.

The drive can exchange control and diagnostic information with the supervisory control system without requiring a separate basic communication interface for standard network integration.

14.6 EMC Filtering

The integrated EMC filter provides an additional layer of electromagnetic-noise management.

This is especially valuable in large industrial facilities where numerous electronic devices, instrumentation circuits, and communication systems share the same electrical environment.

14.7 Air-Cooled Architecture

Air cooling provides a practical thermal-management method for a large industrial drive.

The system is relatively straightforward to maintain compared with more specialized cooling arrangements, although the cooling-air path, filters, fans, and cabinet ventilation still require regular inspection.

14.8 Industrial MCC-Style Construction

The 800 mm deep MCC-style configuration makes the product appropriate for large centralized motor-control installations.

It can be incorporated into an industrial electrical lineup where multiple motor-control systems are grouped together.

14.9 Suitable for Centralized Automation

Because the AN0 configuration does not depend on a permanently installed local HIM, it is particularly suitable for centralized control systems.

The drive can be commissioned and monitored through the plant automation architecture, while local maintenance personnel can use appropriate service tools when required.

15. Installation Considerations

A drive of this size requires substantially more planning than a small wall-mounted inverter.

The electrical room should provide sufficient clearance for:

  • Air intake
  • Exhaust airflow
  • Cable installation
  • Inspection
  • Maintenance
  • Door access
  • Component replacement
  • Cooling-fan service

The mechanical installation should also account for the approximate 600–650 kg equipment weight.

Adequate lifting and positioning provisions should be included during installation planning.

The final mechanical arrangement should always be based on the applicable installation drawing rather than the approximate dimensions shown in a product summary.

16. Motor Cable Considerations

Large PowerFlex drives can generate substantial high-frequency switching energy.

Motor-cable selection is therefore important.

The installation should consider:

  • Motor cable insulation rating
  • Cable ampacity
  • Cable length
  • Shielding
  • Grounding
  • Cable routing
  • Separation from sensitive instrumentation
  • Separation from communication cables
  • Motor-frame bonding

Long motor cables can increase reflected-wave and common-mode effects.

For long-distance motor installations, the cable and motor system should be evaluated as a complete electrical system rather than selecting the cable solely on ampacity.

17. Grounding Considerations

Grounding is especially important for a high-power inverter.

The drive enclosure, motor frame, electrical cabinet, cable shields, and protective-earth system should be integrated according to the applicable installation requirements.

A poor grounding system can contribute to:

  • Communication interference
  • Bearing-current problems
  • EMC problems
  • Nuisance faults
  • Excessive common-mode current
  • Measurement instability

The fact that the catalog configuration specifies the common-mode jumper removed should be taken into account during the grounding-system design.

18. Cooling and Maintenance

Because the 20G1AJE295AN0NNNNN is air cooled, maintaining clean and adequate airflow is essential.

Periodic maintenance should include inspection of:

  • Cooling fans
  • Air passages
  • Cabinet ventilation
  • Filters where installed
  • Heat-transfer surfaces
  • Electrical connections
  • Power terminals
  • Grounding connections
  • Network connections

Dust accumulation can reduce cooling performance.

In a high-power drive, degraded cooling can eventually cause thermal stress and reduce the reliability of semiconductor switching components.

19. Recommended Same-Series / Related Models

The following models are useful comparison choices when selecting a PowerFlex 755 drive around the 600 VAC and high-power range.

Recommended Model Voltage Class Current / Rating Duty Range Frame Key Difference
20G1AJE295AN0NNNNN 600 VAC 295 A ND 350 HP LD / 300 HP ND / 250 HP HD 8 Reference model
20G1AJE355AN0NNNNN 600 VAC 355 A ND 400 HP LD / 350 HP ND / 300 HP HD 8 Higher current
20G1AJE395AN0NNNNN 600 VAC 395 A ND 450 HP LD / 400 HP ND / 350 HP HD 8 Higher motor capacity
20G1AJE435AN0NNNNN 600 VAC 435 A ND 500 HP LD / 450 HP ND / 350 HP HD 8 Higher-power option
20G1AJE460AN0NNNNN 600 VAC 460 A ND 500 HP LD / 500 HP ND / 400 HP HD 8 Higher-current Frame 8 option

These models form a useful progression for 600 VAC high-power applications.

If the motor current is close to 295 A, the 20G1AJE295AN0NNNNN can be appropriate.

If the motor requires additional continuous current or higher overload capability, moving upward through the 355 A, 395 A, 435 A, and 460 A models provides a logical selection path.

20. Additional Closely Related Configurations

Other catalog-number variations can also be considered when the electrical rating is suitable but the required user interface or common-mode configuration is different.

Model Series Voltage Class Current Class HIM Configuration Main Difference
20G1AJE295AN0NNNNN PowerFlex 755 600 VAC 295 A Blank / No HIM Reference configuration
20G1AJE295JN0NNNNN PowerFlex 755 600 VAC 295 A Blank / No HIM Different CM jumper configuration; direct replacement configuration
20G1AJE295JN4NNNNN PowerFlex 755 600 VAC 295 A Enhanced LCD Full Numeric HIM Adds local operator interface
20G1AJE355AN0NNNNN PowerFlex 755 600 VAC 355 A Blank / No HIM Higher current
20G1AJE395AN0NNNNN PowerFlex 755 600 VAC 395 A Blank / No HIM Higher current and horsepower

For retrofit projects, the distinction between AN0, JN0, and JN4 should be checked carefully.

A higher-current drive is not automatically a direct replacement merely because it belongs to the same PowerFlex family.

21. Five Popular Allen-Bradley Models for Comparison

The following are five widely encountered Allen-Bradley drive models from other PowerFlex families and power classes. They are useful as comparison points when deciding whether the application actually requires the large Frame 8 architecture.

Model Series Typical Voltage Class Current Class Approx. Power Class Typical Application
25B-D030N114 PowerFlex 525 480 VAC class 30 A class Approx. 15 HP class General machinery
25C-D030N114 PowerFlex 527 480 VAC class 30 A class Approx. 15 HP class Networked machine control
20G1AGE053JA0NNNNN PowerFlex 755 600 VAC class High-current class Large motor control High-power industrial equipment
20G1AGC260JN0NNNNN PowerFlex 755 400/480 VAC class 260 A class Large motor control Pumps, fans, conveyors
20G1AND302JA0NNNNN PowerFlex 755 400/480 VAC class 302 A class Large motor control Heavy industrial machinery

These models are not direct electrical substitutes for the 20G1AJE295AN0NNNNN.

They represent different voltage classes, power ranges, frame configurations, and application requirements.

The correct model should always be selected from motor voltage, motor full-load current, duty cycle, overload requirement, load type, ambient conditions, enclosure requirements, and communication architecture.

22. Comparison: 20G1AJE295AN0NNNNN vs. Smaller Drives

The biggest distinction between the 20G1AJE295AN0NNNNN and smaller PowerFlex drives is scale.

A compact drive may be physically easier to install and less expensive for small motors.

However, a 295 A, 600 VAC Frame 8 drive is intended for a completely different class of industrial equipment.

Feature 20G1AJE295AN0NNNNN Smaller General-Purpose Drive
Voltage 600 VAC Often 200–480 VAC
Current 295 A ND Typically much lower
Frame 8 Smaller frame
Motor Size Up to 350 HP LD class Usually much smaller
Enclosure IP54 / NEMA Type 12 Often IP20/IP30 or compact enclosure
Cooling Large air-cooled architecture Compact cooling
Installation MCC / floor-standing Wall or cabinet mounted
Network Integration Embedded EtherNet/IP Model dependent
Industrial Load Capability Very high Low to medium
Typical Application Large industrial equipment Machine-level applications

23. Selection Advantages for Large Industrial Systems

The 20G1AJE295AN0NNNNN is particularly attractive when the project has one or more of the following requirements:

  • 600 VAC motor supply
  • Three-phase industrial motor
  • High motor current
  • Large motor horsepower
  • Variable-speed operation
  • High starting torque
  • Large mechanical inertia
  • Controlled acceleration
  • Controlled deceleration
  • Industrial Ethernet integration
  • IP54 / NEMA Type 12 protection
  • MCC-style installation
  • Centralized automation
  • High-power pump control
  • Large fan control
  • Heavy conveyor operation

24. Product Positioning

Within the PowerFlex 755 family, the 20G1AJE295AN0NNNNN represents a high-power 600 VAC Frame 8 configuration.

Its most important characteristics are not simply the 295 A number.

The combination of:

  • 600 VAC operation
  • 295 A normal-duty current
  • 350 HP light-duty rating
  • 300 HP normal-duty rating
  • 250 HP heavy-duty rating
  • Frame 8 construction
  • IP54 / NEMA Type 12 enclosure
  • 800 mm MCC-style architecture
  • Embedded EtherNet/IP
  • EMC filtering
  • AC input precharge
  • Air cooling

makes it a specialized industrial drive for large motors and demanding automation systems.

25. Recommended Use Cases by Load Type

Load Type Suitability Reason
Large centrifugal pump Excellent Variable-speed operation and high motor power
Large fan Excellent Speed control and process regulation
Large blower Excellent High-power variable-speed operation
Conveyor Excellent High current and controlled acceleration
Water-treatment pump Excellent Process flow regulation
Wastewater pump Excellent Large motor and variable demand
Mining conveyor Excellent Heavy-duty industrial load
Cement equipment Excellent Large motor applications
Material handling Excellent Controlled speed and acceleration
Compressor Good to Excellent Depends on compressor type and load profile
Crusher Good Requires careful heavy-duty sizing
Extrusion equipment Good Depends on torque and control requirements
Small machine motor Poor choice Drive is substantially oversized
Small pump Poor choice More economical smaller drive normally preferred

26. Engineering Advantages

From an engineering standpoint, the main benefit of the 20G1AJE295AN0NNNNN is that it combines high electrical capacity with a structured industrial automation platform.

The engineer does not need to treat the inverter simply as a frequency source.

It can become part of the machine-control architecture.

The PLC can manage operating commands.

The drive can provide operating information.

The network can transport status and diagnostic information.

The drive can control acceleration and speed.

The enclosure can form part of a larger MCC-style installation.

This creates a more integrated solution for large motor systems.

27. Maintenance Advantages

The air-cooled architecture is familiar to industrial maintenance teams.

A properly planned maintenance program can focus on:

  • Fan condition
  • Airflow
  • Electrical connections
  • Cabinet cleanliness
  • Grounding
  • Network connections
  • Motor cables
  • Drive diagnostics
  • Operating temperature
  • Fault history

For large industrial facilities, this can make preventive maintenance easier to organize than for highly specialized drive technologies.

28. Replacement and Retrofit Considerations

For existing equipment, catalog-number matching is extremely important.

The original 20G1AJE295AN0NNNNN has been discontinued.

The direct replacement identified for this configuration is 20G1AJE295JN0NNNNN.

However, a replacement should not be selected solely from the current rating.

Before replacing an installed drive, verify:

  1. Motor voltage.
  2. Motor full-load current.
  3. Motor horsepower.
  4. Duty classification.
  5. Input voltage.
  6. Enclosure type.
  7. Frame size.
  8. Network configuration.
  9. HIM requirements.
  10. Common-mode jumper configuration.
  11. EMC requirements.
  12. Dynamic-braking requirements.
  13. Motor cable characteristics.
  14. Cabinet dimensions.
  15. Cooling requirements.
  16. Existing control-system interface.

This is particularly important for a large Frame 8 installation because mechanical replacement can involve lifting, cabinet modification, bus connections, cable routing, and control-system changes.

29. Summary Specification Table

Category Detailed Specification
Brand Allen-Bradley
Series PowerFlex 755
Model 20G1AJE295AN0NNNNN
Drive Type Air-Cooled AC Variable Frequency Drive
Input Voltage 600 VAC
Input Phase 3 Phase
Normal-Duty Current 295 A
Light-Duty Current 355 A
Heavy-Duty Current 272 A
Light-Duty Rating 350 HP
Normal-Duty Rating 300 HP
Heavy-Duty Rating 250 HP
Normal-Duty 1-Minute Overload 325 A
Normal-Duty 3-Second Overload 490 A
Heavy-Duty 1-Minute Overload 408 A
Heavy-Duty 3-Second Overload 490 A
Frame 8
Enclosure IP54
NEMA Rating Type 12
Cabinet Style 800 mm Deep MCC Style
Cooling Air Cooled
Network Embedded EtherNet/IP
Input AC with Precharge
DC Terminals None
EMC Filter Yes
CM Jumper Removed
Dynamic Braking None
HIM Blank / No HIM
Approx. Height 2100–2500 mm
Approx. Width 600 mm
Approx. Depth 800 mm
Approx. Weight 600–650 kg
Main Applications Pumps, fans, blowers, conveyors, process equipment, mining, cement, water and wastewater
Lifecycle Discontinued
Direct Replacement 20G1AJE295JN0NNNNN

30. Final Product Assessment

The Allen-Bradley 20G1AJE295AN0NNNNN is a high-power PowerFlex 755 AC drive intended for large industrial motor applications operating from a 600 VAC three-phase supply.

Its 295 A normal-duty rating, 350 HP light-duty capability, 300 HP normal-duty capability, and 250 HP heavy-duty capability provide a wide range of application flexibility.

The Frame 8, IP54 / NEMA Type 12, 800 mm deep MCC-style package is designed for substantial industrial installations rather than compact machine applications.

The embedded EtherNet/IP interface makes it suitable for centralized automation systems, while the EMC filter, AC precharge arrangement, air-cooling architecture, and industrial enclosure provide the basic infrastructure expected in a high-power industrial drive system.

The AN0 configuration is especially appropriate where a permanently installed local HIM is not required and the drive is expected to operate as part of a PLC-centered automation system.

Its strongest application areas are large pumps, fans, blowers, conveyors, water-treatment systems, wastewater equipment, mining equipment, cement plants, material-handling systems, and other industrial machinery requiring controlled operation of large motors.

For replacement work, the most important point is that the original 20G1AJE295AN0NNNNN is a discontinued configuration. The direct replacement 20G1AJE295JN0NNNNN should be considered for new replacement projects, but the complete electrical, mechanical, network, enclosure, and common-mode configuration should be checked before final selection.

For an engineering or purchasing specification, the 20G1AJE295AN0NNNNN can therefore be summarized as a 600 VAC, three-phase, 295 A normal-duty, Frame 8, IP54/NEMA Type 12, air-cooled PowerFlex 755 AC drive with embedded EtherNet/IP, EMC filtering, AC precharge, no DC terminals, and no local HIM.



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