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The Allen-Bradley 20G1AJC567JN0NNNNN is a high-power PowerFlex 755 AC drive designed for large industrial motor-control applications where high current capacity, variable-speed operation, industrial networking, enclosed construction, and reliable process control are required.
The product belongs to the PowerFlex 755 series within the broader PowerFlex 750-Series family.
This model is an air-cooled, floor-standing, MCC-style AC drive with a Frame 8 power structure. It is designed for three-phase 400 VAC applications and provides a normal-duty current rating of approximately 567 A.
Its principal power ratings are approximately 355 kW for Light Duty, 315 kW for Normal Duty, and 250 kW for Heavy Duty.
The 20G1AJC567JN0NNNNN is configured with embedded EtherNet/IP, forced-air cooling, AC input with precharge, no external DC terminals, Type 12 / IP54 protection, an 800 mm deep MCC-style enclosure, integrated filtering, and no dynamic braking.
Unlike the AN0 configuration, this JN0 version is an active configuration and represents the current catalog generation associated with this particular 567 A PowerFlex 755 configuration.
The model is particularly suitable for large pumps, fans, blowers, conveyors, water-treatment systems, process machinery, material-handling equipment, mining applications, and other industrial systems requiring high-capacity variable-frequency motor control.
| Item | Description |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750-Series |
| Product Series | PowerFlex 755 |
| Product Type | Air-Cooled AC Drive |
| Catalog Number | 20G1AJC567JN0NNNNN |
| Drive Category | Industrial Variable Frequency AC Drive |
| Construction | Floor-standing / MCC-style |
| Frame | Frame 8 |
| Cooling | Forced Air |
| Input Voltage | 400 VAC class |
| Input Phase | Three-phase |
| Normal-Duty Current | 567 A |
| Light-Duty Power | 355 kW |
| Normal-Duty Power | 315 kW |
| Heavy-Duty Power | 250 kW |
| Enclosure | Type 12 |
| IP Rating | IP54 |
| Enclosure Depth | 800 mm |
| Communication | Embedded EtherNet/IP |
| Input Configuration | AC Input with Precharge |
| External DC Terminals | None |
| EMC Configuration | Filtered |
| CM Jumper | Installed / preferred configuration |
| Dynamic Braking | None |
| HIM | Blank / No HIM |
| Product Status | Active |
The catalog description identifies this model as a PowerFlex 755 AC Drive with Embedded EtherNet/IP, Standard Protection, Forced Air, AC Input with Precharge, no DC Terminals, Type 12 IP54 800 mm Deep MCC Style, 567 A, 355 kW LD, 315 kW ND, 250 kW HD, 400 VAC, three-phase, Frame 8, filtered, CM jumper installed, no dynamic braking, and no HIM.
| Parameter | Specification |
|---|---|
| Model / Catalog Number | 20G1AJC567JN0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Family | PowerFlex 750-Series |
| Product Type | AC Industrial Variable-Speed Drive |
| Cooling Method | Forced Air |
| Input Voltage | 400 VAC |
| Input Phase | 3 Phase |
| Nominal Output Current | 567 A |
| Light-Duty Rating | 355 kW |
| Normal-Duty Rating | 315 kW |
| Heavy-Duty Rating | 250 kW |
| Normal-Duty Current | 567 A |
| Heavy-Duty Current | Approximately 472 A |
| Frame Size | Frame 8 |
| Enclosure | Type 12 |
| Protection Rating | IP54 |
| Cabinet Style | 800 mm Deep MCC Style |
| Input Type | AC Input with Precharge |
| External DC Terminals | No |
| EMC Filter | Yes |
| CM Jumper | Installed |
| Dynamic Braking | None |
| Dynamic Braking Transistor | No |
| Communication | Embedded EtherNet/IP |
| Integrated Motion | No |
| Control Characteristic | PID supported |
| Safety Functions | Suitable for safety-function integration with appropriate options |
| HIM | Blank / No HIM |
| Local Keypad | Not included |
| Cooling Structure | Forced-air cooling |
| Approx. Width | Approximately 600 mm class* |
| Approx. Height | Approximately 2000–2200 mm class* |
| Approx. Depth | 800 mm |
| Approx. Weight | Approximately 500–700 kg* |
| Installation Style | Floor-standing |
| Typical Motor Application | Large three-phase AC motors |
| Product Status | Active |
*The dimensional and weight figures above are engineering planning estimates for the complete Frame 8 MCC-style package. The exact physical dimensions and shipping weight should be taken from the mechanical drawing and configuration-specific documentation before final equipment-room, transportation, lifting, or foundation calculations.
The most important electrical characteristic of the 20G1AJC567JN0NNNNN is its high current capability.
The model is rated at approximately 567 A for Normal Duty, with a corresponding Normal-Duty power rating of approximately 315 kW.
Its Light-Duty rating is approximately 355 kW, while the Heavy-Duty rating is approximately 250 kW.
This difference is important because the required drive size is not determined solely by motor horsepower.
The mechanical load profile must also be considered.
A centrifugal fan, for example, normally has a different overload requirement from a conveyor, crusher, mixer, hoist, or high-inertia machine.
For this reason, the PowerFlex 755 rating structure provides different duty classifications so that the drive can be matched more accurately to the actual application.
The available technical information identifies the model as 567 A Normal Duty / 315 kW Normal Duty / 250 kW Heavy Duty, with the broader catalog configuration also specifying approximately 355 kW Light Duty.
The 20G1AJC567JN0NNNNN is intended for a 400 VAC three-phase industrial power system.
This makes it suitable for a wide range of international industrial facilities using 380–415 VAC class motor systems.
The three-phase input arrangement is appropriate for large industrial motors where a high-capacity variable-frequency drive is required.
Before installation, the actual plant supply voltage, frequency, short-circuit conditions, grounding arrangement, upstream protection, and applicable electrical standards should be verified.
The drive should be selected together with the motor and complete electrical system rather than treated as an isolated component.
The drive uses an AC input with precharge.
Precharge is important in a large variable-frequency drive because the internal DC bus contains substantial capacitance.
When a large drive is energized, directly connecting the incoming supply to the DC bus capacitors could result in a very high initial current.
The precharge circuit limits and manages this initial charging process.
For a Frame 8 drive, this is an important part of the overall power architecture.
The precharge system works together with the input switching and protection arrangement to establish the DC bus in a controlled manner before normal drive operation.
The catalog configuration specifies AC input with precharge and no external DC terminals.
The 20G1AJC567JN0NNNNN is specified with no external DC terminals.
This configuration is appropriate for applications where the drive is operated through its standard AC input arrangement rather than requiring an external DC-bus connection.
This should be considered during system design, particularly if the application involves common DC-bus architectures, regenerative systems, energy-storage equipment, or other specialized power arrangements.
If the application requires a shared DC bus or regenerative power flow, a different drive configuration or system architecture may be more appropriate.
The Frame 8 designation identifies this as a large PowerFlex 755 drive.
Frame 8 construction is designed for significantly higher power levels than compact machine-mounted VFDs.
The physical size, thermal requirements, installation method, and service procedures are therefore different from those of small drives.
The equipment should generally be considered a floor-standing industrial electrical assembly.
For plant layout purposes, sufficient space should be allocated for:
The 20G1AJC567JN0NNNNN is specified with a Type 12 / IP54, 800 mm deep MCC-style enclosure.
This construction is intended for industrial environments where greater protection is required than an open-frame drive can provide.
The enclosure helps protect the internal electrical components against normal industrial contamination such as dust and other non-corrosive airborne particles.
The IP54 rating also provides protection against limited water exposure.
However, IP54 should not be interpreted as waterproof construction.
Correct installation, ventilation, cable-entry treatment, environmental control, and routine maintenance remain important.
The model uses forced-air cooling.
High-power variable-frequency drives generate substantial internal heat.
Power semiconductor devices, capacitors, bus structures, conductors, control electronics, and switching components all contribute to thermal loading.
The forced-air cooling system moves air through the power section to transfer this heat away from the electronic components.
For this reason, cooling should be considered an essential part of the installation rather than simply an auxiliary feature.
The equipment room should provide adequate ambient-temperature control and airflow.
In dusty environments, maintenance personnel should pay particular attention to filters, air passages, fans, and heat-transfer surfaces.
One of the major advantages of the 20G1AJC567JN0NNNNN is its embedded EtherNet/IP communication capability.
This allows the drive to communicate directly with an industrial control network without necessarily requiring a separate external communication adapter for basic EtherNet/IP integration.
Typical network functions include:
This makes the drive particularly suitable for modern automated production facilities.
A PLC or supervisory controller can coordinate the drive with valves, sensors, pumps, conveyors, safety devices, and other equipment through the plant automation architecture.
The embedded Ethernet capability is particularly useful in applications containing multiple drives.
For example, a production line may contain several conveyors, pumps, fans, and process machines.
Rather than wiring every operating command and status signal separately, the control system can exchange a significant amount of information digitally.
This can reduce wiring complexity and make diagnostic information more accessible.
For maintenance personnel, networked diagnostics can also make it easier to identify which drive is experiencing a fault and what operating condition existed immediately before the fault.
The model is specified with a filtered EMC configuration.
Electromagnetic compatibility is particularly important in large industrial installations because variable-frequency drives use high-speed power switching.
The switching process can produce electrical noise that may affect nearby control equipment if the system is poorly designed.
An integrated filtering arrangement helps manage conducted electromagnetic interference.
However, filtering is only one part of a complete EMC design.
Motor cable routing, grounding, shield termination, cabinet construction, cable separation, control wiring, and installation practices all contribute to the final electromagnetic performance of the system.
This configuration specifies the CM jumper installed arrangement.
The common-mode configuration is part of the drive’s EMC and grounding architecture.
The appropriate configuration depends on the grounding system, electrical installation, EMC requirements, and applicable application guidelines.
For replacement work, the existing drive’s CM configuration should be checked before installation.
The replacement should not be configured solely from memory or from the physical appearance of the old drive.
The electrical system should be evaluated as a complete installation.
The catalog configuration specifies no dynamic braking.
This is an important selection point.
When a motor decelerates, especially when connected to a high-inertia load, mechanical energy can be returned toward the drive’s DC bus.
If the application requires rapid deceleration or frequent stopping, the drive system may require a suitable braking solution.
The 20G1AJC567JN0NNNNN should therefore be evaluated carefully for:
For applications with substantial regenerative energy, a different braking or regenerative architecture may be necessary.
The JN0 configuration is specified as Blank (No HIM).
This means that the drive does not include a local Human Interface Module as part of this catalog configuration.
This can be advantageous when the drive is intended to be controlled and monitored primarily through the automation network.
It can also reduce the need for a permanently installed local operator interface.
For maintenance teams that require local parameter access, however, an appropriate HIM or service interface may need to be provided separately depending on the installation strategy.
This is an important difference compared with JN4 configurations, which incorporate an enhanced LCD full-numeric HIM.
The 20G1AJC567JN0NNNNN is well suited to large pump applications.
Examples include:
Variable-speed control allows the motor speed to be adjusted according to process demand.
In suitable centrifugal-pump systems, reducing speed can significantly reduce the power required by the motor.
The drive can therefore provide both process-control benefits and potential energy-saving benefits when the hydraulic system is properly designed.
Large fans and blowers are another important application area.
Typical applications include:
The drive can regulate fan speed according to the required airflow.
This provides more flexible process control than simply switching a motor between full-speed operation and shutdown.
Blowers used in industrial processes often require continuous speed adjustment.
The PowerFlex 755 architecture is suitable for applications where blower speed must be coordinated with pressure, flow, temperature, or another process variable.
Potential applications include:
Large conveyors can impose substantial mechanical demands on their drive systems.
Controlled acceleration can reduce mechanical shock and improve the overall operation of:
The embedded EtherNet/IP capability also makes it easier to coordinate conveyor speed with upstream and downstream process equipment.
The high current capacity of the 20G1AJC567JN0NNNNN makes it relevant to large mining and bulk-material systems.
Possible applications include:
Mining installations require careful consideration of ambient conditions, dust, temperature, cable length, grounding, and maintenance access.
Cement and aggregate facilities contain many high-power motors.
The drive can be considered for:
Large pumps and blowers are central to water and wastewater operations.
The 20G1AJC567JN0NNNNN can be used where variable-speed control is required for:
The drive can also be used in general process manufacturing.
Examples include:
The correct selection depends on the motor current, load torque, overload profile, speed range, and braking requirements.
The approximately 567 A normal-duty current rating makes this model suitable for large industrial motors.
This is the primary reason to select a Frame 8 PowerFlex 755 instead of a smaller compact drive.
The approximately 315 kW Normal-Duty rating and 355 kW Light-Duty rating provide substantial motor-control capacity.
This places the model firmly within the large industrial-drive category.
The Light Duty, Normal Duty, and Heavy Duty ratings allow engineers to evaluate the drive according to the actual mechanical load.
This is particularly useful when a machine has different overload characteristics during acceleration and continuous operation.
The Type 12 / IP54 enclosure provides a much more protected installation than an open-frame drive.
The 800 mm deep MCC-style configuration is well suited to centralized electrical rooms and industrial motor-control installations.
Integrated EtherNet/IP simplifies communication with compatible automation systems.
Forced-air cooling supports continuous high-power operation when the installation provides adequate airflow and environmental control.
The filtered configuration helps support electromagnetic compatibility requirements in industrial electrical installations.
The PowerFlex 755 platform supports a wide range of control, feedback, communication, safety, and application options.
The large-drive architecture provides access to serviceable power and control components and supports maintenance-oriented industrial installations.
Because the 20G1AJC567JN0NNNNN is a large Frame 8 MCC-style drive, its physical size is substantially greater than compact PowerFlex models.
For preliminary engineering and equipment-room planning, the following values can be used as approximate planning figures:
| Mechanical Parameter | Approximate Value |
|---|---|
| Model | 20G1AJC567JN0NNNNN |
| Frame | Frame 8 |
| Enclosure | Type 12 / IP54 |
| Cabinet Width | Approximately 600 mm class |
| Cabinet Height | Approximately 2000–2200 mm class |
| Cabinet Depth | 800 mm |
| Approx. Package Weight | Approximately 500–700 kg |
| Installation | Floor-standing |
| Cabinet Style | MCC style |
| Cooling | Forced air |
These figures are intended for preliminary layout and engineering planning only.
For a final installation, the exact mechanical drawing should be used to determine cabinet width, height, service clearance, lifting requirements, cable-entry position, mounting details, and final shipping weight.
The weight of a complete Frame 8 MCC-style package should not be confused with the weight of a smaller internal component or power module.
The installation of a 567 A Frame 8 drive requires considerably more planning than a small wall-mounted VFD.
Important considerations include:
Adequate clearance should be maintained around the equipment for safe electrical operation and maintenance.
Incoming power cables and motor cables should be routed according to the applicable installation requirements.
A reliable protective grounding system is essential.
The cabinet requires adequate airflow and heat removal.
The temperature and humidity of the installation environment must remain within the applicable operating limits.
Dust accumulation can reduce cooling performance.
Because the complete equipment package can weigh several hundred kilograms, suitable lifting and transportation equipment should be planned before delivery.
The equipment foundation or floor should be capable of supporting the installed cabinet weight.
EtherNet/IP connections should be installed using suitable industrial network practices.
Front and service access should be considered during cabinet-layout design.
Large variable-frequency drives should be included in a preventive-maintenance program.
Typical inspection activities include:
The cooling system should receive particular attention.
A drive operating at hundreds of amperes generates significant heat.
Reduced airflow can increase component temperature and may shorten the service life of power semiconductors, capacitors, fans, and other internal components.
For applications close to the 20G1AJC567JN0NNNNN rating, the following models are useful alternatives.
| Model | Voltage | Current | LD Power | ND Power | HD Power | Frame | Enclosure | HIM | Braking |
|---|---|---|---|---|---|---|---|---|---|
| 20G1AJC460JN0NNNNN | 400 VAC | 460 A | 315 kW | 250 kW | 200 kW | 8 | Type 12 / IP54, 800 mm MCC | No HIM | None |
| 20G1AJC540JN0NNNNN | 400 VAC | 540 A | 315 kW | 315 kW | 250 kW | 8 | Type 12 / IP54, 800 mm MCC | No HIM | None |
| 20G1AJC567JN0NNNNN | 400 VAC | 567 A | 355 kW | 315 kW | 250 kW | 8 | Type 12 / IP54, 800 mm MCC | No HIM | None |
| 20G1AJC650JN0NNNNN | 400 VAC | 650 A | 400 kW | 355 kW | 315 kW | 8 | Type 12 / IP54, 800 mm MCC | No HIM | None |
| 20G1AJC750JN0NNNNN | 400 VAC | 750 A | 450 kW | 400 kW | 315 kW | 8 | Type 12 / IP54, 800 mm MCC | No HIM | None |
These models provide a useful current range around the 567 A configuration.
The 460 A model is appropriate where the motor current requirement is lower.
The 540 A version is a closer lower-capacity alternative.
The 567 A model is the requested configuration.
The 650 A model provides additional capacity.
The 750 A model provides the highest current capability in this comparison group.
The most important selection criterion should remain the actual motor nameplate current and the application’s duty cycle rather than simply selecting the largest available drive.
| Model | Frame | Approx. Width | Approx. Height | Depth | Approx. Weight |
|---|---|---|---|---|---|
| 20G1AJC460JN0NNNNN | 8 | ~600 mm class | ~2000–2200 mm | 800 mm | ~500–700 kg |
| 20G1AJC540JN0NNNNN | 8 | ~600 mm class | ~2000–2200 mm | 800 mm | ~500–700 kg |
| 20G1AJC567JN0NNNNN | 8 | ~600 mm class | ~2000–2200 mm | 800 mm | ~500–700 kg |
| 20G1AJC650JN0NNNNN | 8 | ~600 mm class | ~2000–2200 mm | 800 mm | ~500–700 kg |
| 20G1AJC750JN0NNNNN | 8 | ~600 mm class | ~2000–2200 mm | 800 mm | ~500–700 kg |
The models are broadly comparable from a cabinet-planning perspective because they belong to the same general Frame 8, 800 mm MCC-style configuration class.
The actual cabinet dimensions should nevertheless be confirmed for the exact catalog number before detailed mechanical engineering.
The following models are useful when comparing the requested high-power drive with other popular Allen-Bradley variable-frequency-drive configurations.
| Model | Series | Voltage Class | Current / Rating | Power Class | Frame | Enclosure | Typical Application |
|---|---|---|---|---|---|---|---|
| 25B-D030N114 | PowerFlex 525 | 480 VAC class | 30 A class | Medium-power | Compact | Enclosed compact VFD | Pumps, fans, conveyors, machinery |
| 25C-D030N114 | PowerFlex 527 | 480 VAC class | 30 A class | Medium-power | Compact | Industrial compact drive | Machine automation |
| 20G1AGE053JA0NNNNN | PowerFlex 755 | 600 VAC | 53 A | 50 HP ND / 40 HP HD | 6 | IP54 / Type 12 | Pumps, fans, conveyors |
| 20G1AGC260JN0NNNNN | PowerFlex 755 | 400 VAC | 260 A | 132 kW ND / 110 kW HD | 7 | IP54 / Type 12 | Pumps, fans, conveyors |
| 20G1AND302JA0NNNNN | PowerFlex 755 | 480 VAC | 302 A | 250 HP ND / 200 HP HD | 7 | Open type | Large industrial motor control |
These models cover a much wider range of drive sizes.
The PowerFlex 525 is more appropriate for compact machinery and moderate motor loads.
The PowerFlex 527 is oriented toward machine-control applications where integration with automation systems is important.
The smaller PowerFlex 755 models provide a bridge between compact machine drives and large Frame 8 systems.
The 20G1AJC567JN0NNNNN, by comparison, belongs to the high-capacity end of the PowerFlex 755 range.
| Requirement | Recommended Direction |
|---|---|
| Motor current below 460 A | Consider smaller PowerFlex 755 configuration |
| Motor current around 460 A | 20G1AJC460JN0NNNNN |
| Motor current around 540 A | 20G1AJC540JN0NNNNN |
| Motor current around 567 A | 20G1AJC567JN0NNNNN |
| Motor current around 650 A | 20G1AJC650JN0NNNNN |
| Motor current around 750 A | 20G1AJC750JN0NNNNN |
| Need local LCD HIM | Consider JN4 configuration |
| Network control required | JN0/JN4 EtherNet/IP configurations are relevant |
| Dynamic braking required | Select a configuration with an appropriate braking solution |
| Compact machine installation | Consider smaller PowerFlex families |
| Large MCC installation | PowerFlex 755 Frame 8 is appropriate |
| High-power pump | PowerFlex 755 is well suited |
| Large fan/blower | PowerFlex 755 is well suited |
| Large conveyor | PowerFlex 755 is well suited |
| High-inertia load | Carefully evaluate overload and braking requirements |
A particularly useful comparison is between the JN0 and JN4 configurations.
| Feature | 20G1AJC567JN0NNNNN | 20G1AJC567JN4NNNNN |
|---|---|---|
| Series | PowerFlex 755 | PowerFlex 755 |
| Voltage | 400 VAC | 400 VAC |
| Normal-Duty Current | 567 A | 567 A |
| LD Power | 355 kW | 355 kW |
| ND Power | 315 kW | 315 kW |
| HD Power | 250 kW | 250 kW |
| Frame | 8 | 8 |
| Enclosure | Type 12 / IP54 | Type 12 / IP54 |
| Depth | 800 mm | 800 mm |
| Cooling | Forced air | Forced air |
| EtherNet/IP | Embedded | Embedded |
| EMC Filtering | Filtered | Filtered |
| CM Jumper | Installed | Installed |
| Dynamic Braking | None | None |
| HIM | Blank / No HIM | Enhanced LCD Full Numeric HIM |
| Primary Difference | No local HIM included | Enhanced local HIM included |
The fundamental drive power rating is essentially the same.
The most obvious configuration difference is the Human Interface Module.
The JN0 version is the better choice when local operator access is not required as part of the standard catalog configuration.
The JN4 version is more appropriate when an enhanced local display and keypad are desired.
The 20G1AJC567JN0NNNNN is also closely related to the older 20G1AJC567AN0NNNNN.
| Feature | 20G1AJC567AN0NNNNN | 20G1AJC567JN0NNNNN |
|---|---|---|
| Product Series | PowerFlex 755 | PowerFlex 755 |
| Frame | 8 | 8 |
| Voltage | 400 VAC | 400 VAC |
| Current | 567 A | 567 A |
| LD Power | 355 kW | 355 kW |
| ND Power | 315 kW | 315 kW |
| HD Power | 250 kW | 250 kW |
| Enclosure | Type 12 / IP54 | Type 12 / IP54 |
| MCC Depth | 800 mm | 800 mm |
| EtherNet/IP | Embedded | Embedded |
| Cooling | Forced air | Forced air |
| HIM | Blank / No HIM | Blank / No HIM |
| Dynamic Braking | None | None |
| EMC | Filtered | Filtered |
| CM Configuration | Jumper Removed | Jumper Installed |
| Lifecycle | Discontinued | Active |
The JN0 model is therefore not simply a different catalog number with no practical relevance.
The catalog generation includes configuration changes, particularly around the CM jumper arrangement and lifecycle status.
For replacement projects, the existing installation should be checked carefully before selecting the newer configuration.
| Industry | Typical Application | Main Benefit |
|---|---|---|
| Water | Large pumps | Flow and pressure control |
| Wastewater | Pumps and blowers | Process regulation |
| Mining | Conveyors and pumps | Controlled speed and torque |
| Cement | Fans and conveyors | Process control |
| Manufacturing | Process machinery | Flexible speed control |
| HVAC | Large fans | Airflow regulation |
| Utilities | Pumps and fans | Efficient variable-speed operation |
| Material Handling | Conveyors | Controlled acceleration |
| Chemical Processing | Pumps and mixers | Process-speed control |
| Food Processing | Pumps and conveyors | Coordinated machine operation |
| Power Generation | Fans and auxiliary pumps | High-capacity motor control |
| Metals | Fans, pumps, conveyors | Heavy industrial operation |
The PowerFlex 755 architecture is especially useful when the drive needs to be more than a simple frequency converter.
Large industrial installations frequently require:
The PowerFlex 755 platform is designed around this broader concept.
This makes it appropriate for complex industrial systems where the drive is part of the overall automation architecture rather than a standalone motor controller.
The combination of industrial communication, diagnostic capability, and the PowerFlex 755 platform can provide useful information during troubleshooting.
A maintenance technician can evaluate:
This can help separate electrical problems from mechanical problems.
For example, a conveyor that stops unexpectedly may have a drive fault, a motor problem, a network-command problem, an overload condition, or a mechanical obstruction.
A drive with appropriate diagnostic information can significantly reduce the time required to determine which part of the system requires attention.
The 567 A configuration is particularly attractive when a project has a large motor whose operating current is close to the normal-duty capability of this model.
It is also useful where additional current capacity is required compared with a 460 A or 540 A model.
However, engineers should avoid selecting a drive merely because its kW rating appears to be large enough.
The actual motor current should always be checked.
The load torque curve should also be considered.
A motor driving a centrifugal fan can have very different requirements from a constant-torque conveyor.
A high-inertia machine may also have significantly different acceleration and deceleration requirements.
Therefore, the correct selection process should consider both electrical ratings and mechanical load characteristics.
| Advantage | Explanation |
|---|---|
| High Current | 567 A normal-duty rating supports large industrial motors |
| High Power | Up to approximately 355 kW Light Duty |
| Industrial Construction | Frame 8 floor-standing architecture |
| Enclosure Protection | Type 12 / IP54 |
| MCC Integration | 800 mm deep MCC-style construction |
| Networking | Embedded EtherNet/IP |
| Cooling | Forced-air system |
| EMC | Filtered configuration |
| Flexible Duty Ratings | LD / ND / HD ratings |
| Large Motor Support | Suitable for high-power AC motors |
| Process Control | Suitable for pumps, fans, conveyors and process machinery |
| Automation Integration | Suitable for networked control architectures |
| Serviceability | Designed for industrial maintenance environments |
| Expansion Capability | PowerFlex 755 platform supports a broad option architecture |
The Allen-Bradley 20G1AJC567JN0NNNNN is a high-capacity PowerFlex 755 Frame 8 AC drive intended for large industrial motor applications.
Its combination of 400 VAC three-phase input, 567 A Normal-Duty current, 355 kW Light-Duty capability, 315 kW Normal-Duty capability, 250 kW Heavy-Duty capability, Type 12/IP54 enclosure, 800 mm MCC-style construction, forced-air cooling, integrated EMC filtering, embedded EtherNet/IP, and no dynamic braking makes it a strong choice for large variable-speed motor systems.
The model is especially well suited to large pumps, fans, blowers, conveyors, water and wastewater systems, mining equipment, cement plants, process machinery, and other applications requiring high-power variable-speed control.
The JN0 configuration is particularly appropriate when the application uses network-based control and does not require a local HIM as part of the standard drive configuration.
For applications where a local enhanced LCD interface is required, the corresponding JN4 configuration is a more appropriate comparison.
For projects requiring a different motor-current range, the closely related 460 A, 540 A, 650 A, and 750 A Frame 8 configurations provide useful alternatives.
From an engineering standpoint, the most important points to verify before ordering or replacing the drive are motor rated current, duty cycle, overload requirements, braking requirements, supply voltage, enclosure requirements, ambient temperature, installation dimensions, network architecture, and available maintenance space.
The product’s approximate 600 mm-class width, 2000–2200 mm-class height, 800 mm depth, and 500–700 kg planning weight indicate that this is a substantial floor-standing industrial assembly rather than a compact VFD.
The exact mechanical drawing should be used for final installation design, transportation, lifting, and foundation calculations.
Overall, the 20G1AJC567JN0NNNNN can be characterized as a large-frame, high-current, network-capable, enclosed industrial AC drive for demanding 400 VAC motor-control applications, with a strong emphasis on high-power process control, industrial automation integration, and large motor applications.