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The 20G11JC910JN0NNNNN is a high-power PowerFlex 755 air-cooled AC drive designed for large industrial motor-control systems.
It is a 400 VAC, three-phase, 910 A, Frame 9 drive with an approximately 500 kW normal-duty rating, 400 kW heavy-duty rating, and 560 kW light-duty rating.
This configuration is designed as an enclosed, industrial, Type 12 / IP54, 800 mm-deep MCC-style package. It uses forced-air cooling and is intended for large motors where precise speed and torque control, process regulation, communications, and industrial protection are required.
The model includes embedded EtherNet/IP, an AC input with precharge, DC terminals, EMC filtering, and a CM jumper installed configuration. It does not include a built-in dynamic-braking transistor and is supplied as a blank configuration without a HIM/keypad.
The JN0 configuration is particularly important when comparing it with similar catalog numbers. A model with the same 910 A rating can still have different operator-interface, filtering, enclosure, braking, or other configuration characteristics.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex 755 |
| Product type | Air-cooled AC drive |
| Catalog number | 20G11JC910JN0NNNNN |
| Application | Industrial variable-speed motor control |
| Construction | Frame 9 |
| Cooling | Forced air |
| Voltage class | 400 VAC |
| Input | 3-phase AC |
| Output current | 910 A |
| Normal-duty rating | 500 kW |
| Heavy-duty rating | 400 kW |
| Light-duty rating | 560 kW |
| Enclosure | Type 12 |
| Protection | IP54 |
| Cabinet depth | 800 mm |
| Communication | Embedded EtherNet/IP |
| HIM | None / blank configuration |
| Dynamic braking transistor | None |
| EMC configuration | Filtered |
| CM jumper | Installed |
| Input arrangement | AC input with precharge |
| Frame size | Frame 9 |
| Parameter | 20G11JC910JN0NNNNN |
|---|---|
| Model | 20G11JC910JN0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Drive type | Air-cooled AC drive |
| Input voltage | 400 VAC |
| Input phase | 3-phase |
| Input frequency | 50/60 Hz class |
| Output current | 910 A |
| Light-duty power | 560 kW |
| Normal-duty power | 500 kW |
| Heavy-duty power | 400 kW |
| Normal-duty motor rating | Approx. 670 HP |
| Heavy-duty motor rating | Approx. 535 HP |
| Frame size | Frame 9 |
| Cooling method | Forced air |
| Enclosure | Type 12 |
| IP rating | IP54 |
| MCC-style depth | 800 mm |
| Input configuration | AC input with precharge |
| DC terminals | Yes |
| Dynamic braking transistor | No |
| EMC filtering | Yes |
| CM jumper | Installed |
| EtherNet/IP | Embedded |
| Integrated motion | No |
| PID control | Yes |
| Safety functions | Supported through applicable configuration |
| Local keypad/HIM | None |
| Operating temperature | Approx. -20 to +60 °C |
| Storage temperature | Approx. -40 to +70 °C |
| Approx. overall dimensions | Approx. 2,000 × 800 × 800 mm* |
| Approx. weight | Approx. 1,246 kg |
| Installation | Floor-mounted / MCC-style |
| Typical motor application | Large industrial motor |
| Typical load | Pump, fan, conveyor, compressor, process machinery |
*The approximate dimensions are intended for preliminary planning. Final mechanical dimensions can depend on the complete factory configuration, enclosure arrangement, accessories and installation structure.
The approximately 1,246 kg figure represents the large packaged-drive configuration and is useful when considering transportation, lifting, floor loading and installation planning.
The PowerFlex 755 family is intended for demanding industrial motor-control applications where a simple motor starter is not sufficient.
The 20G11JC910JN0NNNNN is positioned toward the high-power end of this family.
With a continuous current capability of 910 A, the drive can control large industrial motors used in equipment where controlled acceleration, controlled speed, process regulation and reliable motor operation are required.
The drive changes the frequency and voltage supplied to the motor, allowing motor speed to be adjusted according to process requirements.
This is particularly useful when the motor does not need to operate at full speed all the time.
For example, a large pump can reduce speed when less flow is required. A large fan can slow down when ventilation demand decreases. A conveyor can accelerate gradually instead of starting abruptly.
The drive can therefore provide benefits in both process control and mechanical operation.
The 910 A output rating is the most important electrical characteristic of this model.
The drive has different power ratings depending on the application duty.
| Duty | Power Rating |
|---|---|
| Light Duty | 560 kW |
| Normal Duty | 500 kW |
| Heavy Duty | 400 kW |
The normal-duty rating is approximately 500 kW, while the heavy-duty rating is approximately 400 kW.
This distinction is important because industrial loads do not all behave in the same way.
A centrifugal pump generally has a different torque characteristic from a conveyor.
A conveyor can have considerable inertia and may require higher starting torque.
A compressor may have a different overload profile.
A mixer or process machine may experience intermittent mechanical loading.
For this reason, drive selection should be based primarily on motor current and load characteristics, not only on motor horsepower or kW.
The model is designed for a 400 VAC three-phase supply.
Its output current is 910 A.
This combination places the drive in the large industrial-drive category.
| Electrical Item | Value |
|---|---|
| Input voltage | 400 VAC |
| Input phase | 3-phase |
| Output current | 910 A |
| Normal-duty output | 500 kW |
| Heavy-duty output | 400 kW |
| Light-duty output | 560 kW |
| Frame | 9 |
| DC bus class | Approx. 540 VDC |
| Input arrangement | AC with precharge |
| DC terminals | Yes |
For a large drive of this size, incoming power-system capacity, cable selection, protection coordination, grounding, short-circuit conditions and thermal management all require careful engineering.
The model uses a Type 12 / IP54, 800 mm-deep MCC-style enclosure.
This is a major advantage for industrial installations because the drive is not simply an exposed power module.
The enclosed construction can provide better protection in industrial electrical rooms and production environments.
Typical environments include:
The 800 mm cabinet depth should be considered when planning the electrical room.
The unit also requires adequate front service clearance and sufficient ventilation around the air-cooling system.
Mechanical specifications are especially important for this particular model because it is a very large Frame 9 packaged drive.
| Mechanical Parameter | Approximate Specification |
|---|---|
| Frame | Frame 9 |
| Enclosure | Type 12 |
| Protection | IP54 |
| MCC-style depth | 800 mm |
| Approx. height | 2,000 mm |
| Approx. width | 800 mm |
| Approx. depth | 800 mm |
| Approx. overall size | 2,000 × 800 × 800 mm |
| Approx. weight | 1,246 kg |
| Cooling | Forced air |
| Mounting | Floor-mounted |
| Cabinet type | MCC-style |
| Transportation class | Heavy industrial equipment |
The approximately 1,246 kg weight is a significant engineering consideration.
Transportation equipment, lifting equipment, floor loading, access routes and installation space should all be evaluated before delivery.
The actual final weight may vary according to the exact factory configuration and accessories.
The drive uses forced-air cooling.
Large power semiconductors and other electrical components generate substantial heat during operation.
The cooling system removes this heat through forced airflow.
This makes cabinet ventilation extremely important.
The installation should provide:
Dust accumulation can reduce airflow and increase operating temperature.
For this reason, cooling-system maintenance should be considered part of the normal preventive-maintenance program.
One of the major advantages of the PowerFlex 755 platform is its industrial communication capability.
The 20G11JC910JN0NNNNN includes embedded EtherNet/IP.
This allows the drive to exchange information with a plant automation system.
Typical information can include:
This is particularly useful in large production facilities where many motors and drives need to be monitored from a central control system.
The drive supports PID control, making it useful for process-control applications.
PID control can regulate a process variable according to feedback.
Typical examples include:
A pump application is a good example.
If the system requires a fixed pressure, the drive can adjust motor speed according to pressure feedback.
When demand increases, motor speed can increase.
When demand decreases, motor speed can decrease.
This approach can improve process stability and can also reduce unnecessary motor operation.
The model is highly suitable for large pumping systems.
Typical applications include:
The drive can control pump speed according to actual flow or pressure requirements.
Large fans can consume considerable electrical power when operated continuously at full speed.
Variable-speed control allows fan operation to follow actual airflow requirements.
Typical applications include:
Large conveyors can have substantial inertia and mechanical loads.
The drive can provide controlled acceleration and deceleration.
This can help reduce:
It is particularly useful for bulk-material handling.
Large compressors can require controlled acceleration and speed.
Potential applications include:
The actual suitability should be determined from the compressor’s torque and operating characteristics.
The drive can also be used for:
Where the machine requires controlled motor speed and torque, this type of drive can provide a suitable control platform.
The 910 A output capacity allows the drive to operate large industrial motors.
This is the primary reason to choose this type of high-power drive instead of a smaller general-purpose unit.
The approximately 500 kW normal-duty rating provides substantial motor-control capacity.
The drive is suitable for large production equipment and utility systems.
The Type 12 / IP54 enclosure is suitable for many industrial electrical-room environments.
It provides substantially more protection than an exposed open-frame installation.
Integrated networking reduces the need for separate communication hardware.
It can simplify PLC integration, diagnostics and centralized monitoring.
PID capability makes the drive suitable for applications where motor speed needs to respond automatically to a process variable.
This is particularly valuable for pumps and fans.
The Frame 9 architecture provides a practical solution for high-current motor applications.
It is designed for large industrial installations rather than small machinery.
Forced-air cooling provides a straightforward thermal-management approach for high-power equipment.
There is no requirement for a dedicated liquid-cooling circuit.
The same drive family can be used across many industrial applications.
This can help standardize equipment across a plant.
The 20G11JC910JN0NNNNN has no built-in dynamic-braking transistor.
This should be considered carefully in applications with high inertia or significant regenerative energy.
Examples include certain:
If the application requires significant braking energy absorption, an appropriate external braking or regenerative solution must be evaluated.
The absence of a built-in braking transistor does not mean the drive cannot be used for high-inertia equipment.
It means that the braking system must be engineered separately.
This model is specified as a blank configuration with no HIM.
That means the drive does not include the enhanced local LCD operator interface found on certain other catalog configurations.
This can actually be useful in applications where operation is controlled primarily from:
It can also reduce unnecessary hardware when local keypad operation is not required.
However, if maintenance technicians require a local display, an appropriate operator interface can be considered separately.
The model uses a filtered EMC configuration with the CM jumper installed.
This configuration is important when electromagnetic compatibility is part of the installation requirements.
The EMC arrangement can help manage high-frequency electrical noise associated with variable-frequency motor drives.
Correct grounding, motor-cable installation and cabinet design remain important even when EMC filtering is included.
The following models are useful comparison candidates within the PowerFlex 755 family.
| Model | Series | Voltage | Current | LD Power | ND Power | HD Power | Frame | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|---|---|
| 20G11JC800JN0NNNNN | PowerFlex 755 | 400 V | 800 A class | Approx. 500 kW | Approx. 450 kW | Approx. 355 kW | 9 | Approx. 2,000 × 800 × 800 mm | Approx. 1,200 kg |
| 20G11JC910JN0NNNNN | PowerFlex 755 | 400 V | 910 A | 560 kW | 500 kW | 400 kW | 9 | Approx. 2,000 × 800 × 800 mm | Approx. 1,246 kg |
| 20G11JC1K1JN0NNNNN | PowerFlex 755 | 400 V | 1,100 A class | Approx. 670 kW | Approx. 600 kW | Approx. 480 kW | 9 | Approx. 2,000 × 800 × 800 mm | Approx. 1,250 kg class |
| 20G11JC1K5JN0NNNNN | PowerFlex 755 | 400 V | 1,480 A | 900 kW | 850 kW | 710 kW | 9 | Approx. 2,000 × 800 × 800 mm | Approx. 1,300 kg class |
| 20G11JC2K1JN0NNNNN | PowerFlex 755 | 400 V | 2,150 A | 1,400 kW | 1,250 kW | 1,000 kW | 10 | Large MCC-style package | Approx. 1,500 kg class |
The models above should be regarded as comparison candidates rather than automatic replacements.
The 20G11JC910JN0NNNNN is the reference point.
The 800 A class is useful when the motor current is lower, while the 1,100 A, 1,480 A and 2,150 A classes provide progressively greater capacity for larger motors.
| Model | Series | Voltage Class | Current / Power | Frame | Typical Application | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|
| 20G11JC910JN0NNNNN | PowerFlex 755 | 400 V | 910 A / 500 kW ND | 9 | Large pumps, fans, conveyors | Approx. 2,000 × 800 × 800 mm | Approx. 1,246 kg |
| 20G11LE825JN0NNNNN | PowerFlex 755 | 600 V | 825 A / 900 kW ND class | 9 | Large industrial machinery | Approx. 2,000 × 800 × 800 mm | Approx. 1,200 kg class |
| 20G11JF960JN0NNNNN | PowerFlex 755 | 690 V | 960 A / 900 kW ND | 9 | High-power industrial equipment | Approx. 2,000 × 800 × 800 mm | Approx. 1,200 kg class |
| 20G11JC1K5JN0NNNNN | PowerFlex 755 | 400 V | 1,480 A / 850 kW ND | 9 | Large pumps and conveyors | Approx. 2,000 × 800 × 800 mm | Approx. 1,300 kg class |
| 20G11JC2K1JN0NNNNN | PowerFlex 755 | 400 V | 2,150 A / 1,250 kW ND | 10 | Very large process equipment | Large MCC-style package | Approx. 1,500 kg class |
The models in this table are intended as useful alternatives for technical comparison.
They are not all direct replacements for the 20G11JC910JN0NNNNN.
In particular, the voltage class must be checked before selecting a model.
| Parameter | 20G11JC800JN0NNNNN | 20G11JC910JN0NNNNN | 20G11JC1K1JN0NNNNN | 20G11JC1K5JN0NNNNN | 20G11JC2K1JN0NNNNN |
|---|---|---|---|---|---|
| Series | PF755 | PF755 | PF755 | PF755 | PF755 |
| Voltage | 400 V | 400 V | 400 V | 400 V | 400 V |
| Current | 800 A class | 910 A | 1,100 A class | 1,480 A | 2,150 A |
| Frame | 9 | 9 | 9 | 9 | 10 |
| Normal-duty power | Approx. 450 kW | 500 kW | Approx. 600 kW | 850 kW | 1,250 kW |
| Heavy-duty power | Approx. 355 kW | 400 kW | Approx. 480 kW | 710 kW | 1,000 kW |
| Cooling | Air | Air | Air | Air | Air |
| Enclosure | Type 12 / IP54 | Type 12 / IP54 | Type 12 / IP54 | Type 12 / IP54 | Type 12 / IP54 |
| EtherNet/IP | Yes | Yes | Yes | Yes | Yes |
| HIM | None | None | None | None | None |
| Dynamic braking | None | None | None | None | None |
| Approx. dimensions | 2,000 × 800 × 800 mm | 2,000 × 800 × 800 mm | 2,000 × 800 × 800 mm | 2,000 × 800 × 800 mm | Large Frame 10 package |
| Approx. weight | 1,200 kg class | 1,246 kg | 1,250 kg class | 1,300 kg class | 1,500 kg class |
The 20G11JC910JN0NNNNN is particularly useful when the motor requires around 910 A of drive output capacity.
Moving to a larger model should be considered when:
However, selecting a significantly larger drive than necessary does not automatically improve the application.
A properly sized drive normally provides a better balance between equipment cost, cabinet requirements, cooling requirements and motor performance.
| Application | Recommended Evaluation |
|---|---|
| Large centrifugal pump | Excellent |
| Large water pump | Excellent |
| Cooling-water pump | Excellent |
| Large industrial fan | Excellent |
| Large blower | Excellent |
| Conveyor | Excellent |
| Bulk-material conveyor | Excellent |
| Mining conveyor | Excellent |
| Large process pump | Excellent |
| Compressor | Very good, application dependent |
| Mixer | Very good, application dependent |
| Agitator | Very good, application dependent |
| Extruder | Good, torque profile must be checked |
| Crusher | Requires careful heavy-duty sizing |
| Hoist | Requires braking/regeneration evaluation |
The drive is particularly useful in an automated production environment.
A typical system can be arranged around:
PLC → EtherNet/IP → Drive → Motor → Mechanical Equipment
The PLC can provide speed references and operating commands.
The drive can return status and diagnostic information.
The motor provides the mechanical power.
The process equipment performs the actual production function.
This structure allows the drive to become an active part of the automation system rather than simply serving as an electronic motor starter.
For pump systems, the biggest advantage is controllable speed.
A conventional motor running at fixed speed may produce more flow than the process requires.
A variable-speed drive allows the motor to slow down.
This can provide:
For systems that operate at widely varying demand levels, this can be particularly valuable.
For conveyor systems, controlled acceleration can be more important than energy savings.
The drive can gradually increase motor speed instead of applying full torque immediately.
This can reduce stress on:
Controlled deceleration can also improve process stability.
Large fans frequently operate under changing ventilation requirements.
The drive can adjust fan speed according to demand.
This can provide better airflow control and can reduce unnecessary full-speed operation.
Typical applications include:
A high-power air-cooled drive requires regular maintenance.
Important inspection areas include:
Inspect fans and air passages for dust accumulation and abnormal noise.
High-current connections should be inspected according to the applicable maintenance schedule.
Make sure intake and exhaust paths remain unobstructed.
Excessive dust, humidity or temperature can reduce equipment life.
Fault and warning information should be reviewed rather than simply reset repeatedly.
Motor-side connections and insulation condition should be periodically inspected.
| Selection Parameter | Requirement |
|---|---|
| Motor voltage | Compatible with 400 V drive class |
| Motor current | Must be within appropriate drive rating |
| Motor power | Evaluate together with current |
| Duty | Normal-duty or heavy-duty |
| Overload | Check required overload profile |
| Starting torque | Evaluate for conveyors and high-inertia loads |
| Acceleration | Check required acceleration time |
| Deceleration | Check braking requirements |
| Regeneration | Evaluate separately |
| Ambient temperature | Check operating environment |
| Enclosure | Type 12 / IP54 suitability |
| Network | EtherNet/IP integration |
| HIM | None in standard JN0 configuration |
| EMC | Filtered configuration |
| Cabinet depth | 800 mm |
| Weight | Approximately 1,246 kg |
| Cooling | Forced air |
The 20G11JC910JN0NNNNN is a high-power PowerFlex 755 air-cooled AC drive designed for demanding industrial motor-control applications.
Its principal specifications are:
The product is particularly well suited to large pumps, fans, blowers, conveyors, compressors and process machinery.
Its main advantages are its high current capacity, large motor-power capability, industrial enclosure, network connectivity, PID process control and flexible integration into automated production systems.
The main points requiring additional engineering attention are the very large physical size, approximately 1.25-ton weight, substantial cooling requirement, high-current electrical installation and lack of an internal dynamic-braking transistor.
For applications that require a local operator interface, the JN0 version should also be compared with configurations that include an appropriate HIM.
Among related products, the 800 A class is appropriate for somewhat smaller motors, while the 1,100 A, 1,480 A and 2,150 A classes provide progressively greater capacity.
For a 400 V system requiring approximately 910 A and a large enclosed industrial drive, however, the 20G11JC910JN0NNNNN remains a particularly well-matched configuration.