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The 20G11LE630AN0NNNNN is a high-power variable-frequency AC drive belonging to the PowerFlex 755 family. It is designed for demanding industrial motor-control applications where high output power, precise speed regulation, network connectivity, and reliable operation are required.
This model is an air-cooled, three-phase AC drive rated for a 600 VAC class supply and 630 A output. It is a Frame 9 unit configured in an 800 mm deep MCC-style format, with Type 1 / IP20 construction and an integrated Ethernet/IP communication capability.
The drive is intended primarily for large industrial motors and high-power mechanical systems. Its power rating reaches approximately 800 HP under Normal Duty conditions, 700 HP under Normal Duty/alternative rating conditions, and approximately 600 HP for Heavy Duty applications, depending on the applicable motor-duty and installation conditions.
The model is particularly suitable for large pumps, fans, compressors, conveyors, material-handling systems, process equipment, mills, mixers, extruders, and other machinery where a large motor must be controlled efficiently and smoothly.
The product is configured without a cover-mounted HIM in the specified catalog configuration. This makes it especially suitable for applications in which the drive is integrated into an MCC, electrical room, control cabinet, or centralized motor-control installation rather than operated locally from the front of the drive.
| Item | Description |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Product Series | PowerFlex 755 |
| Product Type | AC Variable Frequency Drive |
| Product Category | Industrial AC Drive / Variable Speed Drive |
| Model | 20G11LE630AN0NNNNN |
| Drive Construction | Air Cooled |
| Frame | Frame 9 |
| Enclosure / Installation Style | Type 1 / IP20, 800 mm Deep MCC Style |
| Input | Three-Phase AC |
| Voltage Class | 600 VAC |
| Output Current | 630 A |
| Communication | Embedded Ethernet/IP |
| Dynamic Braking | None in this configuration |
| Filtering | EMC Filter |
| Common Mode Configuration | CM jumper removed |
| Operator Interface | No HIM / blank configuration |
| Cooling Method | Forced air cooling |
| Main Application | Large industrial motor control |
The PowerFlex 755 series is positioned as a high-performance industrial drive family for applications requiring more than simple speed control. It is designed around the control of large induction motors and other industrial motor loads and is especially useful when integration with an automation system is required.
The catalog number 20G11LE630AN0NNNNN contains configuration information describing the drive’s voltage class, frame/package configuration, current rating, filtering, braking arrangement, operator-interface configuration, and other options.
A practical interpretation of the model is as follows:
| Model Feature | Configuration |
|---|---|
| Series | PowerFlex 755 |
| Voltage Class | 600 VAC |
| Construction | Air Cooled |
| Current Rating | 630 A |
| Frame | Frame 9 |
| Cabinet Depth | 800 mm |
| Installation | MCC-style |
| Enclosure | Type 1 / IP20 |
| Input | AC input with precharge arrangement |
| DC Terminals | Provided |
| Network | Embedded Ethernet/IP |
| EMC Filtering | Included |
| Dynamic Braking | None |
| Common Mode Jumper | Removed |
| HIM | None / Blank |
| Application Level | Large industrial machinery |
The exact configuration code is important when replacing an existing drive. Two PowerFlex 755 drives may have the same current rating while differing in enclosure type, filtering, braking, communication, operator interface, or other options. Therefore, replacement should normally be based on the complete catalog number rather than only the 630 A rating.
| Parameter | Specification |
|---|---|
| Model | 20G11LE630AN0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Drive Type | Variable Frequency AC Drive |
| Input Voltage | 600 VAC class |
| Input Phase | 3 Phase |
| Output Current | 630 A |
| Normal Duty Power | Up to approximately 800 HP |
| Normal Duty Secondary Rating | Approximately 700 HP |
| Heavy Duty Power | Approximately 600 HP |
| Frequency | Typically 50/60 Hz supply applications |
| Output Frequency | Variable according to motor-control/application requirements |
| Frame Size | Frame 9 |
| Cooling | Air Cooled |
| Enclosure Style | Type 1 / IP20 |
| Cabinet Style | 800 mm Deep MCC Style |
| Input Configuration | AC input with precharge |
| DC Bus | DC terminals available |
| Communication | Embedded Ethernet/IP |
| EMC Filter | Yes |
| Dynamic Braking | None |
| Common Mode Jumper | Removed |
| HIM | None / Blank |
| Mounting Concept | MCC / electrical cabinet installation |
| Motor Type | Primarily industrial AC motors |
| Control Function | Variable speed, torque and motor-control applications |
| Typical Installation | Industrial electrical room / MCC / control cabinet |
Because the 20G11LE630AN0NNNNN is a large Frame 9 MCC-style drive rather than a small standalone wall-mounted inverter, physical dimensions depend heavily on the selected cabinet arrangement, bus configuration, incoming and outgoing cable arrangement, and installation structure.
The catalog description specifically identifies this configuration as an 800 mm deep MCC-style unit. For engineering and cabinet planning, the following values should therefore be treated as reference values rather than fabrication dimensions.
| Physical Parameter | Reference Value |
|---|---|
| Frame | Frame 9 |
| Cabinet Depth | Approximately 800 mm |
| Overall Installation Height | Approximately 2,000–2,200 mm |
| Typical Cabinet Width | Approximately 600–800 mm per section, configuration dependent |
| Overall Depth | Approximately 800 mm |
| Approximate Shipping / Installed Weight | Approximately 500–900 kg, configuration dependent |
| Cooling Clearance | Must follow the installation arrangement and applicable drive documentation |
| Mounting Style | MCC-style / cabinet installation |
| Enclosure | Type 1 / IP20 |
Important: The 800 mm figure is the defining MCC-style depth associated with this configuration. The exact overall height, section width, and final installed weight should not be assumed from the catalog number alone. Large Frame 9 assemblies can change substantially when disconnects, bus structures, reactors, line components, auxiliary sections, or other cabinet equipment are included.
For equipment transportation, foundation design, lifting arrangements, and MCC fabrication, the final mechanical drawing for the actual supplied configuration should always be used.
The 630 A output rating is the most important characteristic of this model. This is a high-power drive intended for large motors rather than ordinary machine-level applications.
At the 600 VAC class, a 630 A drive belongs to the large industrial-drive category. It can be applied to motors in the several-hundred-horsepower range, with the precise usable horsepower depending on duty classification, motor characteristics, ambient conditions, overload requirements, switching frequency, and installation conditions.
The drive supports different application duty levels. A motor running a fan or pump with relatively stable load characteristics can have substantially different requirements from a conveyor, crusher, hoist, mixer, or other machine with high acceleration torque or repeated overload.
For this reason, the 630 A rating should not be interpreted simply as “a drive for any 800 HP motor.” Motor nameplate current, service factor, overload profile, acceleration requirements, ambient temperature, and application duty must all be checked before selecting the final drive.
The PowerFlex 755 family is designed for applications that require a combination of high motor-control performance and industrial automation integration.
A major characteristic of the series is its ability to function as part of a larger automation architecture rather than operating as an isolated motor controller.
The embedded Ethernet/IP capability is particularly useful in plants where PLCs, HMIs, supervisory systems, and drives communicate through an industrial Ethernet network.
This makes it possible to exchange information such as:
The result is a more integrated motor-control system.
The primary advantage of 20G11LE630AN0NNNNN is its ability to control very large industrial motors.
With a 630 A output rating, it can serve applications where smaller drives would not provide sufficient continuous current capacity.
This makes it appropriate for large-scale process machinery, heavy material handling, large pumping systems, high-capacity ventilation systems, and other industrial equipment.
Embedded Ethernet/IP provides a convenient way to integrate the drive into an industrial automation network.
Instead of treating the drive as an isolated piece of electrical equipment, the drive can become a networked component of the control system.
This can simplify the exchange of operating commands, process information, alarms, status data, and diagnostic information between the drive and the automation controller.
The 800 mm deep MCC-style construction is a significant advantage for centralized electrical installations.
Rather than mounting the drive as a small standalone inverter beside a machine, this type of unit can be incorporated into a larger motor-control-center architecture.
This is particularly useful in factories where multiple motors and drives are installed in centralized electrical rooms.
A 630 A output rating gives the drive substantial current-handling capability.
This makes the product suitable for high-power motors and machines with significant mechanical loads.
The large frame also provides a practical platform for applications where a compact small-frame inverter would be unsuitable.
The PowerFlex 755 platform is suitable for a wide range of motor-control requirements.
It can be applied to both relatively constant-load systems and more demanding machinery, provided the correct duty rating and control configuration are selected.
Using a variable-frequency drive instead of operating a large motor only at fixed speed can provide better control of production processes.
For example, in a pumping application, motor speed can be adjusted according to process demand instead of continuously operating at maximum speed.
Similarly, conveyors can be operated at controlled speeds, fans can be adjusted to ventilation demand, and process machinery can be synchronized more accurately.
The PowerFlex 755 architecture provides extensive drive information that can be used for troubleshooting and maintenance.
Monitoring drive status, operating conditions, alarms, and faults can reduce the time required to identify problems.
For large industrial installations, this is particularly valuable because an unexpected motor-drive failure can affect a substantial portion of production.
The drive is well suited to large centrifugal and process pumps.
Speed control can allow the pump to respond more closely to process demand, helping reduce unnecessary mechanical and electrical stress.
Typical applications include:
Large ventilation and process-air systems are another important application area.
Fans frequently operate at variable process demand. A large variable-frequency drive can adjust fan speed according to system requirements.
Potential applications include:
Large conveyors can require high starting torque and significant continuous power.
A high-power drive can provide controlled acceleration and deceleration rather than simply applying full power to the motor immediately.
This can reduce mechanical shock to belts, gearboxes, couplings, and other components.
Typical applications include:
Large industrial compressors can benefit from variable-speed operation where the process allows it.
The drive can regulate compressor motor speed to better match the required operating point.
Potential applications include:
High-power motor drives are commonly required in heavy-duty machinery where starting torque and mechanical loading are substantial.
Applications can include crushers, mills, material-processing equipment, and other heavy industrial machines.
For these applications, the appropriate Heavy Duty rating must be carefully checked rather than selecting a drive only from the Normal Duty horsepower value.
Large mills, mixers, agitators, and processing equipment can benefit from controlled acceleration and speed regulation.
A variable-frequency drive can help coordinate machine speed with the production process.
The 20G11LE630AN0NNNNN is particularly relevant to industries with large electric motors.
| Industry | Typical Application |
|---|---|
| Mining | Conveyors, crushers, pumps, fans |
| Cement | Mills, fans, conveyors, crushers |
| Water Treatment | Large pumps, blowers |
| Steel | Process machinery, fans, pumps |
| Chemical | Pumps, compressors, mixers |
| Petrochemical | Pumps, compressors, fans |
| Power Generation | Pumps, fans, auxiliary machinery |
| Paper | Fans, pumps, process equipment |
| Food Processing | Large pumps and process machinery |
| Manufacturing | Conveyors, pumps, large machines |
| Marine / Port Facilities | Pumps, conveyors, ventilation |
| Building Infrastructure | Large ventilation and pumping systems |
The following models are closely related to the requested model and are useful when selecting alternatives within the same PowerFlex 755 family.
| Model | Output Current | Voltage | Normal Duty | Heavy Duty | Frame / Style | Cooling | Network |
|---|---|---|---|---|---|---|---|
| 20G11LE595AN0NNNNN | 595 A | 600 VAC | Approx. 700 HP | Approx. 500 HP | Frame 9, 800 mm MCC | Air Cooled | Ethernet/IP |
| 20G11LE630AN0NNNNN | 630 A | 600 VAC | Approx. 800 HP | Approx. 600 HP | Frame 9, 800 mm MCC | Air Cooled | Ethernet/IP |
| 20G11LE760AN0NNNNN | 760 A | 600 VAC | Approx. 900 HP | Approx. 700 HP | Frame 9, 800 mm MCC | Air Cooled | Ethernet/IP |
| 20G11LE825AN0NNNNN | 825 A | 600 VAC | Approx. 950 HP | Approx. 750 HP | Frame 9, 800 mm MCC | Air Cooled | Ethernet/IP |
| 20G11LE900AN0NNNNN | 900 A | 600 VAC | Approx. 1,000 HP | Approx. 800 HP | Frame 9, 800 mm MCC | Air Cooled | Ethernet/IP |
The 20G11LE595AN0NNNNN is the lower-current alternative. It can be considered where the motor’s full-load current is comfortably below the 630 A capacity of the original unit.
The 20G11LE760AN0NNNNN provides a higher current margin and is appropriate where the application requires additional capacity.
The 20G11LE825AN0NNNNN and 20G11LE900AN0NNNNN move further into the high-power range and are useful for larger motors or applications where additional current capacity is required.
The related Frame 9 models listed above generally share the same basic large-frame MCC-style concept, but the actual dimensions and weight can change depending on the final cabinet arrangement.
| Model | Approx. Depth | Approx. Height | Approx. Width | Approx. Weight |
|---|---|---|---|---|
| 20G11LE595AN0NNNNN | 800 mm | 2,000–2,200 mm | 600–800 mm | Approx. 500–850 kg |
| 20G11LE630AN0NNNNN | 800 mm | 2,000–2,200 mm | 600–800 mm | Approx. 500–900 kg |
| 20G11LE760AN0NNNNN | 800 mm | 2,000–2,200 mm | 600–800 mm | Approx. 550–950 kg |
| 20G11LE825AN0NNNNN | 800 mm | 2,000–2,200 mm | 600–800 mm | Approx. 600–1,000 kg |
| 20G11LE900AN0NNNNN | 800 mm | 2,000–2,200 mm | 600–800 mm | Approx. 650–1,050 kg |
These figures are engineering reference ranges rather than guaranteed shipping dimensions. For transportation, lifting, floor loading, or MCC fabrication, the final equipment drawing should be used.
A particularly important related model is:
20G11LE630JN0NNNNN
This model is closely associated with the same 630 A / 600 VAC / Frame 9 PowerFlex 755 configuration.
The principal difference is in the configuration coding, so it should not be treated as automatically interchangeable in every installation.
When replacing an existing 20G11LE630AN0NNNNN, engineers should compare:
A direct replacement should therefore be verified against the complete application rather than selected from the current rating alone.
This is a slightly lower-current version of the same general configuration.
It is a useful option where the connected motor has a lower full-load current and the additional capacity of the 630 A model is not necessary.
| Parameter | Specification |
|---|---|
| Model | 20G11LE595AN0NNNNN |
| Series | PowerFlex 755 |
| Voltage | 600 VAC |
| Current | 595 A |
| Normal Duty | Approx. 700 HP |
| Heavy Duty | Approx. 500 HP |
| Frame | 9 |
| Construction | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Depth | Approx. 800 mm |
| Weight | Approx. 500–850 kg |
| Communication | Ethernet/IP |
This is a higher-capacity alternative to the 630 A model.
It is worth considering when the existing application has high starting current, frequent acceleration, heavier process loading, or a larger motor.
| Parameter | Specification |
|---|---|
| Model | 20G11LE760AN0NNNNN |
| Series | PowerFlex 755 |
| Voltage | 600 VAC |
| Current | 760 A |
| Normal Duty | Approx. 900 HP |
| Heavy Duty | Approx. 700 HP |
| Frame | 9 |
| Construction | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Depth | Approx. 800 mm |
| Weight | Approx. 550–950 kg |
| Communication | Ethernet/IP |
The 825 A model provides another step up in output capacity.
It is suitable for applications requiring greater current capacity than the 630 A and 760 A versions.
| Parameter | Specification |
|---|---|
| Model | 20G11LE825AN0NNNNN |
| Series | PowerFlex 755 |
| Voltage | 600 VAC |
| Current | 825 A |
| Normal Duty | Approx. 950 HP |
| Heavy Duty | Approx. 750 HP |
| Frame | 9 |
| Construction | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Depth | Approx. 800 mm |
| Weight | Approx. 600–1,000 kg |
| Communication | Ethernet/IP |
This model is suitable when the project moves into the approximately 1,000 HP Normal Duty range.
It provides substantial additional current capacity compared with the requested 630 A model.
| Parameter | Specification |
|---|---|
| Model | 20G11LE900AN0NNNNN |
| Series | PowerFlex 755 |
| Voltage | 600 VAC |
| Current | 900 A |
| Normal Duty | Approx. 1,000 HP |
| Heavy Duty | Approx. 800 HP |
| Frame | 9 |
| Construction | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Depth | Approx. 800 mm |
| Weight | Approx. 650–1,050 kg |
| Communication | Ethernet/IP |
This is the closest model to the original 630 A configuration and is especially worth investigating when the requirement is to replace an existing 630 A PowerFlex 755.
| Parameter | Specification |
|---|---|
| Model | 20G11LE630JN0NNNNN |
| Series | PowerFlex 755 |
| Voltage | 600 VAC |
| Current | 630 A |
| Normal Duty | Approx. 800 HP |
| Heavy Duty | Approx. 600 HP |
| Frame | 9 |
| Construction | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Depth | Approx. 800 mm |
| Weight | Approx. 500–900 kg |
| Communication | Ethernet/IP |
| Application | High-power industrial motor control |
For applications that do not necessarily require the enormous capacity of the 630 A Frame 9 drive, the following Allen-Bradley models are useful alternatives to consider.
| Model | Series | Voltage | Current / Capacity | Typical Application | Dimensions | Weight |
|---|---|---|---|---|---|---|
| 25B-D024N114 | PowerFlex 525 | 480 VAC class | Approx. 24 A | Pumps, fans, conveyors, machines | Approx. 260 × 170 × 180 mm | Approx. 6 kg |
| 25B-D017N114 | PowerFlex 525 | 480 VAC class | Approx. 17 A | General industrial machinery | Approx. 260 × 170 × 180 mm | Approx. 5 kg |
| 20F1ANC170JA0NNNNN | PowerFlex 753 | 480 VAC class | Approx. 170 A class | Process machinery, conveyors, pumps | Approx. 700 × 300 × 300 mm | Approx. 45–70 kg |
| 20G1ANC260JA0NNNNN | PowerFlex 755 | 480 VAC class | Approx. 260 A class | Large industrial machinery | Approx. 1,000 × 400 × 400 mm | Approx. 100–180 kg |
| 25C-D043N114 | PowerFlex 523 | 480 VAC class | Approx. 43 A class | Compact machinery, fans, pumps | Approx. 300 × 200 × 200 mm | Approx. 8–12 kg |
The smaller models are not direct replacements for the 630 A unit. They belong to different capacity classes and are intended for considerably smaller motors.
They are included because they represent useful Allen-Bradley drive options when the application is being redesigned, downsized, or divided into multiple motor-control sections.
| Model | Series | Voltage | Current | Normal Duty HP | Heavy Duty HP | Frame | Depth | Approx. Weight |
|---|---|---|---|---|---|---|---|---|
| 20G11LE595AN0NNNNN | PowerFlex 755 | 600 V | 595 A | 700 HP | 500 HP | 9 | 800 mm | 500–850 kg |
| 20G11LE630AN0NNNNN | PowerFlex 755 | 600 V | 630 A | 800 HP | 600 HP | 9 | 800 mm | 500–900 kg |
| 20G11LE760AN0NNNNN | PowerFlex 755 | 600 V | 760 A | 900 HP | 700 HP | 9 | 800 mm | 550–950 kg |
| 20G11LE825AN0NNNNN | PowerFlex 755 | 600 V | 825 A | 950 HP | 750 HP | 9 | 800 mm | 600–1,000 kg |
| 20G11LE900AN0NNNNN | PowerFlex 755 | 600 V | 900 A | 1,000 HP | 800 HP | 9 | 800 mm | 650–1,050 kg |
A conventional motor starter generally provides basic starting and stopping functions, whereas a variable-frequency drive can actively regulate motor speed.
For a large motor, this difference can be substantial.
With a variable-frequency drive, the motor can accelerate progressively rather than receiving an immediate full-speed command.
This can reduce mechanical shock on:
The drive can also provide controlled deceleration, which can be particularly useful in large rotating systems.
The energy advantage of a variable-frequency drive depends strongly on the application.
The most obvious benefits are generally found in variable-torque loads such as centrifugal pumps and fans.
In these applications, reducing motor speed can produce a substantial reduction in power demand.
For example, instead of operating a large pump continuously at full speed and restricting flow through a valve, a variable-speed system can reduce motor speed when process demand falls.
This can improve the overall efficiency of the system and may also reduce unnecessary mechanical wear.
A properly configured PowerFlex 755 installation can provide useful information for maintenance personnel.
Drive diagnostics can help maintenance teams determine whether a problem is related to:
For a high-power 630 A installation, this diagnostic capability is particularly valuable because downtime associated with large motor systems can be expensive.
One of the strongest reasons to use this type of drive is its ability to become part of a broader automation system.
A typical control architecture can contain:
PLC / Controller → Ethernet/IP Network → PowerFlex 755 → Large AC Motor → Mechanical Process
The controller can send speed or torque commands to the drive, while the drive can return operating status and diagnostic information.
This makes it possible to build more advanced control strategies.
For example, a conveyor system could use process feedback to automatically change motor speed.
A pumping system could adjust motor speed based on pressure.
A ventilation system could adjust fan speed according to temperature or airflow.
A production machine could synchronize several motors according to a common process sequence.
The 20G11LE630AN0NNNNN is not a small plug-in industrial inverter. It is a very large high-power electrical device.
Installation planning should therefore consider:
For a drive of this size, mechanical installation and electrical installation should be treated as equally important.
If the motor current is close to 630 A and the application has a demanding load profile, the 20G11LE630AN0NNNNN remains a logical high-power choice within this product family.
If the motor current is significantly lower, the 595 A model may provide a more appropriate capacity.
If the motor has a higher current requirement or the application requires additional overload margin, the 760 A, 825 A, or 900 A models may be more appropriate.
For an existing installation where the drive is being replaced, the closest 630 A model should be investigated first, but the complete catalog configuration must be compared before replacement.
| Application | Recommended Model | Reason |
|---|---|---|
| Large centrifugal pump | 20G11LE630AN0NNNNN | High current capacity and variable-speed control |
| Large industrial fan | 20G11LE595AN0NNNNN | Suitable where motor current is below the 630 A class |
| Large conveyor | 20G11LE760AN0NNNNN | Additional current margin for demanding loading |
| Heavy-duty material handling | 20G11LE825AN0NNNNN | Higher capacity for heavy industrial loads |
| Very large process motor | 20G11LE900AN0NNNNN | Highest capacity among the listed related models |
| Existing 630 A PowerFlex 755 replacement | 20G11LE630JN0NNNNN | Closely related 630 A configuration |
| Medium industrial motor | 20G1ANC260JA0NNNNN | Smaller PowerFlex 755 class |
| General-purpose compact machine | 25B-D024N114 | Smaller PowerFlex 525 class |
| Small/medium machine | 25C-D043N114 | Compact PowerFlex 523 class |
The 20G11LE630AN0NNNNN is a high-capacity industrial variable-frequency drive intended for large three-phase AC motors.
Its 630 A output capability places it well above the range of ordinary compact machine drives. The combination of 600 VAC class operation, Frame 9 construction, 800 mm MCC-style depth, air cooling, EMC filtering, and embedded Ethernet/IP makes it particularly suitable for centralized industrial motor-control installations.
Its strongest characteristics are its high current capability, large-motor suitability, industrial network integration, scalable PowerFlex 755 architecture, and ability to provide controlled motor operation for demanding machinery.
The model is especially well suited to industries such as mining, cement, water treatment, steel, chemical processing, power generation, manufacturing, material handling, and other heavy industrial environments.
For applications where the motor load is close to the 630 A rating, the model provides a substantial amount of capacity. Where the application requires more current, the 760 A, 825 A, and 900 A versions provide progressively higher capacity. Where the application requires less current, the 595 A version can be considered.
From an engineering perspective, the most important point is that the drive should be selected according to the motor nameplate current and actual load profile rather than horsepower alone. Heavy-duty applications, frequent acceleration, high starting torque, high ambient temperature, and high switching-frequency requirements can all affect the appropriate drive size.
The 20G11LE630AN0NNNNN can therefore be regarded as a large-frame, high-power PowerFlex 755 AC drive designed for demanding industrial motor-control systems where reliability, network integration, controllability, and substantial electrical capacity are important.
| Specification | 20G11LE630AN0NNNNN |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Series | PowerFlex 755 |
| Product Type | High-Power AC Variable Frequency Drive |
| Input Voltage | 600 VAC class |
| Phase | Three Phase |
| Output Current | 630 A |
| Normal Duty Rating | Approx. 800 HP |
| Secondary Normal Duty Rating | Approx. 700 HP |
| Heavy Duty Rating | Approx. 600 HP |
| Frame | Frame 9 |
| Cooling | Air Cooled |
| Enclosure | Type 1 / IP20 |
| Cabinet Style | 800 mm Deep MCC Style |
| Communication | Embedded Ethernet/IP |
| Input | AC with precharge |
| DC Terminals | Yes |
| EMC Filter | Yes |
| Dynamic Braking | None |
| Common Mode | Jumper Removed |
| HIM | None / Blank |
| Approx. Height | 2,000–2,200 mm |
| Approx. Width | 600–800 mm, configuration dependent |
| Depth | Approx. 800 mm |
| Approx. Weight | 500–900 kg, configuration dependent |
| Main Application | Large Industrial Motors |
| Typical Loads | Pumps, Fans, Conveyors, Compressors, Mills, Process Machinery |
| Recommended Related Series | PowerFlex 755 |
| Closest Related 630 A Model | 20G11LE630JN0NNNNN |
For a large industrial motor operating at the 600 VAC class with a current requirement around 630 A, 20G11LE630AN0NNNNN is a strong PowerFlex 755 configuration.
For a slightly smaller motor, consider 20G11LE595AN0NNNNN.
For additional capacity, consider 20G11LE760AN0NNNNN, 20G11LE825AN0NNNNN, or 20G11LE900AN0NNNNN.
For an existing installation that specifically requires a closely related 630 A configuration, 20G11LE630JN0NNNNN is one of the first models that should be evaluated.
For smaller machines where a 630 A Frame 9 drive would be excessive, the PowerFlex 753, PowerFlex 525, or PowerFlex 523 families offer much smaller and more economical drive platforms.
In practical terms, the 20G11LE630AN0NNNNN is best viewed as a large industrial motor-control solution rather than a general-purpose small inverter. Its greatest value appears in applications where large motor capacity, centralized MCC installation, networked control, and reliable variable-speed operation are all required.