Our advantage
Global Logistics
We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.
Brand new and original
Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.
24-hour service
We provide 7*24 hours service to our customers. We will be there whenever you need us.
Price advantage
All our products are priced very favorably because we have our own warehouse and supply.
| Company Information | |||
| [email protected] | |||
| Mobile | +8615980777398 | ||
| +8615980777398 | |||
| 15980777398 |

The 20G11NE011JA0NNNNN is an industrial AC variable frequency drive from the PowerFlex 755 series.
It is designed for three-phase industrial motor applications where accurate speed regulation, controlled acceleration and deceleration, motor protection, network communication, diagnostics, and flexible automation integration are required.
This model is an 11 A, 600 VAC class, three-phase AC drive. It is configured as an air-cooled, open-type drive with embedded Ethernet/IP communication capability, AC input with DC terminals, a built-in dynamic-braking transistor, EMC filtering, and no local HIM display installed as part of this particular catalog configuration.
The drive is intended for industrial control cabinets and machinery where an AC motor needs to operate at adjustable speed rather than simply running continuously at the fixed speed determined by the incoming AC frequency.
The 11 A rating places this model in a useful medium-small industrial motor-control range. Depending on the application duty, it can support motors up to approximately 10 HP under normal-duty conditions or approximately 7.5 HP under heavy-duty conditions.
| Parameter | Specification |
|---|---|
| Model | 20G11NE011JA0NNNNN |
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Product Series | PowerFlex 755 |
| Product Type | AC Variable Frequency Drive |
| Drive Category | Industrial AC Drive |
| Voltage Class | 600 VAC |
| Input Voltage | 600 VAC class |
| Input Phase | 3 Phase |
| Output Phase | 3 Phase |
| Rated Output Current | 11 A |
| Normal-Duty Rating | 10 HP |
| Heavy-Duty Rating | 7.5 HP |
| Input Type | AC Input with Precharge and DC Terminals |
| Cooling | Forced Air |
| Enclosure | Open Type |
| Protection Class | IP20/IP00, NEMA/UL Open Type configuration |
| Frame Size | Frame 3 |
| EMC Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | DB Transistor |
| Local HIM | Blank / No HIM |
| Communication | Embedded Ethernet/IP |
| Mounting | Cabinet / Panel |
| Approx. Dimensions | Approx. 424 × 170 × 212 mm |
| Weight (kg) | Approx. 6.8 kg |
| Approx. Weight | About 15 lb |
| Typical Application | Industrial motor speed control |
| Category | Information |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Series | PowerFlex 755 |
| Bulletin / Catalog Family | 20G |
| Product Type | Adjustable Frequency AC Drive |
| Application Level | Industrial |
| Voltage Class | 600 VAC |
| Current Class | 11 A |
| Frame | Frame 3 |
The 20G11NE011JA0NNNNN belongs to the PowerFlex 755 family.
The PowerFlex 755 platform is intended for industrial applications where a drive needs to do more than simply vary motor speed. It can form part of a complete automation system and can exchange commands, operating data, status information, and fault information with a machine controller.
This makes the series suitable for production machinery, conveyors, pumps, fans, material-handling equipment, process equipment, and many other industrial systems.
The complete catalog number represents a specific factory configuration.
For practical selection, the most important characteristics of this particular model are:
The complete catalog number should always be treated as one configuration rather than assuming that every individual character represents a standalone specification.
| Electrical Parameter | 20G11NE011JA0NNNNN |
|---|---|
| Drive Type | AC Variable Frequency Drive |
| Voltage Class | 600 VAC |
| Input Phase | 3 Phase |
| Output Phase | 3 Phase |
| Rated Output Current | 11 A |
| Normal-Duty Horsepower | 10 HP |
| Heavy-Duty Horsepower | 7.5 HP |
| Normal-Duty Power Equivalent | Approx. 7.5 kW |
| Heavy-Duty Power Equivalent | Approx. 5.5 kW |
| Input Frequency | 50/60 Hz class |
| Input Type | AC Input with Precharge and DC Terminals |
| Output | Adjustable-frequency three-phase AC |
| Cooling | Forced Air |
| DC Terminals | Yes |
| Dynamic Braking | DB Transistor |
| EMC Filter | Installed |
| CM Jumper | Installed |
| Communication | Embedded Ethernet/IP |
| Frame Size | Frame 3 |
| Local HIM | None / Blank |
| Enclosure | Open Type |
| Protection | IP20/IP00 configuration |
| Mounting | Panel / Cabinet |
The rated continuous output current of this model is approximately 11 A.
For variable frequency drives, output current is one of the most important selection parameters.
Horsepower is useful for general classification, but the actual motor nameplate current should be checked before selecting the drive.
For example, two motors with the same nominal horsepower may have different current requirements because of differences in:
For this reason, the 11 A rating should be considered together with the motor nameplate and actual machine load.
One of the important characteristics of this model is the difference between normal-duty and heavy-duty operation.
| Duty Rating | Approximate Capacity |
|---|---|
| Normal Duty | 10 HP |
| Heavy Duty | 7.5 HP |
| Output Current | 11 A |
| Application Consideration | Depends on actual motor current and overload requirement |
Normal-duty applications generally have less severe overload requirements.
Heavy-duty applications can involve higher starting torque, higher continuous load, or more demanding acceleration and overload conditions.
Therefore, a motor that is nominally within the 10 HP range may not automatically be appropriate if the machine requires heavy-duty torque.
The 20G11NE011JA0NNNNN is a 600 VAC class drive.
This differentiates it from PowerFlex 755 models designed around lower voltage classes such as 480 VAC.
A 600 VAC class drive is useful in industrial electrical systems where the available three-phase supply is designed around this voltage range.
Typical environments can include:
Correct incoming voltage must always be confirmed before installation.
The drive is designed for three-phase AC motor applications.
The drive receives electrical power from the industrial AC supply and produces a controlled three-phase output for the motor.
By controlling the output frequency and voltage relationship, the drive can regulate motor speed and torque.
This provides much greater flexibility than directly connecting a motor to a fixed-frequency power supply.
The main purpose of the drive is to provide controlled variable-speed operation.
A machine can therefore operate at different speeds according to production requirements.
For example:
| Operating Condition | Possible Drive Function |
|---|---|
| Machine startup | Low-speed controlled acceleration |
| Normal production | Programmed operating speed |
| Reduced production | Lower speed |
| Product changeover | Reduced speed |
| Positioning | Controlled low speed |
| Machine stopping | Controlled deceleration |
| Emergency process response | Application-dependent stopping strategy |
This flexibility can simplify machine design and improve process control.
The drive can control how quickly the motor accelerates.
Instead of applying the motor to full operating speed immediately, the drive can use a controlled acceleration ramp.
This can reduce mechanical shock on:
Controlled acceleration is particularly useful when the machine contains a large rotating mass or when the product being transported must not be subjected to sudden movement.
The drive can also control motor deceleration.
A controlled deceleration profile can reduce sudden mechanical loading.
This is useful for:
Where rapid stopping is required, the dynamic-braking configuration can become an important part of the system design.
The 20G11NE011JA0NNNNN includes a dynamic-braking transistor as part of its configuration.
Dynamic braking is useful when a motor has substantial rotating inertia or when the machine needs controlled deceleration.
During deceleration, energy from the rotating motor and mechanical load can be transferred into the drive’s DC bus.
A suitable braking resistor arrangement can then dissipate this energy.
Typical applications include:
The braking resistor must be selected according to the actual application and required braking duty.
The model includes embedded Ethernet/IP communication capability.
This allows the drive to participate directly in a networked industrial control system.
Typical information exchanged can include:
| Information | Function |
|---|---|
| Start Command | Starts the motor |
| Stop Command | Stops the motor |
| Speed Reference | Sets motor speed |
| Direction | Controls rotation |
| Enable | Permits operation |
| Reset | Clears suitable faults |
| Drive Status | Monitors operating condition |
| Output Frequency | Monitors motor speed command |
| Output Current | Monitors motor loading |
| Fault Code | Identifies drive faults |
| Alarm | Indicates abnormal conditions |
| Operating State | Provides drive condition |
This two-way communication is particularly useful in automated production systems.
This particular catalog configuration is specified with a blank / no HIM arrangement.
HIM means Human Interface Module.
A drive without a local HIM can still be integrated into a machine control system.
In a networked installation, the drive may be configured and monitored through the control system or suitable engineering tools.
This configuration can be attractive when the machine already has a central operator interface and a local drive display is not required.
It can also help keep the drive configuration focused on cabinet-level automation rather than local operator interaction.
The drive uses an open-type configuration.
This means the drive is intended to be installed inside an appropriate electrical enclosure or control cabinet rather than being treated as a fully sealed standalone field device.
The cabinet should protect the drive from:
The cabinet should also provide adequate cooling.
The drive uses forced-air cooling.
Power electronics generate heat during operation.
The cooling system transfers heat away from the power components and allows the drive to operate within its intended thermal range.
Cabinet design should therefore account for:
Several drives installed in the same cabinet may require additional thermal analysis.
This particular configuration includes filtering intended to support electromagnetic compatibility requirements.
VFDs generate high-frequency switching waveforms, and improper installation can result in electrical noise.
A properly designed installation should consider:
The actual EMC performance depends on the complete installation rather than the drive alone.
The 20G11NE011JA0NNNNN is designed as a flexible industrial motor-control solution.
Its primary function is to convert incoming AC electrical power into a controlled output suitable for an AC motor.
By adjusting the output conditions, the drive can control motor speed and torque according to machine requirements.
Compared with a conventional motor starter, an AC drive offers significantly greater control.
A basic starter primarily turns the motor on or off.
A variable frequency drive can provide:
This makes the drive appropriate for machines where motor speed is an important part of the process.
| Application | Suitability | Main Reason |
|---|---|---|
| Conveyors | Excellent | Adjustable speed and smooth starting |
| Pumps | Excellent | Flow and pressure control |
| Fans | Excellent | Airflow adjustment |
| Blowers | Excellent | Variable process-air control |
| Feeders | Excellent | Adjustable material flow |
| Packaging Equipment | Very Good | Speed coordination |
| Material Handling | Excellent | Controlled acceleration and stopping |
| Processing Machinery | Very Good | Flexible motor operation |
| Mixers | Good | Variable-speed operation |
| Production Lines | Excellent | Network integration |
| Machine Auxiliary Drives | Excellent | Centralized control |
| Industrial Utility Equipment | Very Good | Adjustable motor speed |
Conveyor systems frequently require controlled speed.
A fixed-speed motor can limit production flexibility.
With the 20G11NE011JA0NNNNN, the conveyor motor can be operated at different speeds depending on the production process.
Potential benefits include:
For conveyors with significant inertia, the dynamic-braking function can also be valuable.
Pumps are often required to operate at different flow rates.
Variable-speed control can allow the motor to operate closer to the actual process requirement.
Potential applications include:
The drive can receive speed commands from a control system and return operating information for monitoring.
Fans and blowers often do not need to operate at full speed continuously.
A variable-speed drive can provide a controlled operating point.
Applications include:
The exact energy benefit depends on the fan curve, operating profile, motor efficiency, and process requirements.
Industrial feeders often require controlled material flow.
The drive can regulate the motor speed and therefore influence the material-feed rate.
Typical applications include:
This can provide a more flexible solution than using fixed mechanical speed ratios.
Packaging machines often contain several motors that need to operate in coordination.
The drive can be used for:
Network communication can allow a central controller to modify the speed reference while monitoring the drive’s operating state.
Material-handling equipment benefits from controlled acceleration and deceleration.
Examples include:
The ability to monitor current and fault status can also be useful for maintenance.
The 11 A output-current class provides a useful capacity range for industrial motors.
It can cover applications that are beyond the range of smaller drives while remaining substantially smaller than high-current industrial units.
The 600 VAC class makes this model suitable for industrial power systems designed around higher three-phase voltage.
The normal-duty rating reaches approximately 10 HP.
This makes the model suitable for many general-purpose industrial motor applications.
For more demanding applications, the heavy-duty rating is approximately 7.5 HP.
This gives the user a useful reference when evaluating higher-torque loads.
The embedded Ethernet/IP capability allows the drive to be integrated into a networked automation architecture.
The integrated braking transistor simplifies the drive configuration for applications requiring dynamic braking.
The filtered configuration can help with electromagnetic compatibility when installed correctly.
Forced-air cooling provides a practical method of removing heat from the power electronics.
Drive status, current, frequency, alarms, and faults can be used for troubleshooting and maintenance.
The PowerFlex 755 platform is suitable for applications where the drive is part of a larger automation system.
The model is a Frame 3 open-type drive.
The exact mechanical envelope should be checked against the applicable installation drawing before cabinet fabrication.
The following values are suitable as engineering reference values.
| Mechanical Parameter | Reference Specification |
|---|---|
| Model | 20G11NE011JA0NNNNN |
| Product Type | AC Variable Frequency Drive |
| Series | PowerFlex 755 |
| Frame | Frame 3 |
| Mounting | Panel / Cabinet |
| Cooling | Forced Air |
| Enclosure | Open Type |
| Protection | IP20/IP00 configuration |
| Approx. Height | 424 mm |
| Approx. Width | 170 mm |
| Approx. Depth | 212 mm |
| Approx. Dimensions | 424 × 170 × 212 mm |
| Approx. Height | Approx. 16.7 in |
| Approx. Width | Approx. 6.7 in |
| Approx. Depth | Approx. 8.35 in |
| Approx. Weight | 6.8 kg class |
| Weight (kg) | Approx. 6.8 kg |
| Mounting Orientation | Vertical |
| Cooling Airflow | Required |
| Service Clearance | Required |
The approximate product weight is 6.8 kg, equivalent to approximately 15 lb.
The actual delivered weight can be different because of:
Therefore, approximately 6.8 kg should be regarded as the drive-weight reference rather than the final shipping weight.
| Weight Parameter | Value |
|---|---|
| Model | 20G11NE011JA0NNNNN |
| Approx. Product Weight | 6.8 kg |
| Weight (kg) | Approx. 6.8 kg |
| Approx. Weight in Pounds | Approx. 15 lb |
| Shipping Weight | Higher than bare-drive weight |
| Cabinet Weight | Not included |
| Accessories | Not included unless specified |
A suitable installation should provide adequate:
The drive should be installed in a suitable enclosure where it is protected from environmental conditions outside its rated installation environment.
Particular attention should be given to cabinet temperature.
High ambient temperature can reduce the available drive capacity and may shorten component life.
VFD motor wiring should be treated differently from ordinary low-voltage control wiring.
The switching operation of the drive can produce high-frequency electrical noise.
The installation should consider:
These measures are important when the drive is installed close to PLCs, communication devices, sensors, encoders, and other sensitive electronic equipment.
The drive can be viewed as one component in a complete automation system.
A typical arrangement can be represented as:
Controller → Ethernet/IP Network → Drive → Motor
The controller can send:
The drive can return:
This architecture reduces the need for independent hardwired control for every drive function.
The drive’s monitoring capabilities can assist maintenance personnel.
For example, increasing motor current may indicate:
Repeated drive faults may also indicate:
The drive therefore provides useful information for troubleshooting beyond simply indicating whether a motor is running.
A variable frequency drive can help a machine operate at a speed appropriate for the actual process requirement.
This can be particularly useful for:
Instead of continuously operating at maximum speed, the motor can operate at a lower speed when the process requires less output.
Actual energy savings depend on the machine design, load characteristics, operating hours, motor efficiency, and control strategy.
The following models are useful for comparison within the PowerFlex 755 range.
| No. | Model | Series | Voltage Class | Output Current | Normal-Duty Rating | Heavy-Duty Rating | Approx. Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|---|
| 1 | 20G11NE011JA0NNNNN | PowerFlex 755 | 600 VAC | 11 A | 10 HP | 7.5 HP | Approx. 424 × 170 × 212 mm | ~6.8 |
| 2 | 20G11NE017JA0NNNNN | PowerFlex 755 | 600 VAC class | 17 A class | Higher than 10 HP class | Application dependent | Frame-dependent | ~7–9 |
| 3 | 20G11NE022JA0NNNNN | PowerFlex 755 | 600 VAC class | 22 A class | Higher-power class | Application dependent | Frame-dependent | ~8–12 |
| 4 | 20G11ND014JA0NNNNN | PowerFlex 755 | 480 VAC class | 14 A | 10 HP | 7.5 HP | Frame-dependent | ~5–7 |
| 5 | 20G11ND022JA0NNNNN | PowerFlex 755 | 480 VAC class | 22 A | 15 HP | 10 HP | Frame-dependent | ~7–10 |
The first three models are the closest comparison group by the 600 VAC PowerFlex 755 family, while the 480 VAC models provide alternatives where the plant power system uses a lower voltage class.
| Parameter | 20G11NE011JA0NNNNN | 20G11NE017JA0NNNNN | 20G11NE022JA0NNNNN | 20G11ND014JA0NNNNN | 20G11ND022JA0NNNNN |
|---|---|---|---|---|---|
| Series | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 | PowerFlex 755 |
| Voltage Class | 600 VAC | 600 VAC class | 600 VAC class | 480 VAC class | 480 VAC class |
| Current Class | 11 A | 17 A class | 22 A class | 14 A | 22 A |
| Normal Duty | 10 HP | Higher capacity | Higher capacity | 10 HP | 15 HP |
| Heavy Duty | 7.5 HP | Higher capacity | Higher capacity | 7.5 HP | 10 HP |
| Frame | Frame 3 | Frame-dependent | Frame-dependent | Frame-dependent | Frame-dependent |
| Cooling | Forced Air | Forced Air | Forced Air | Forced Air | Forced Air |
| Ethernet/IP | Embedded | Embedded / configuration dependent | Embedded / configuration dependent | Embedded | Embedded |
| Dynamic Braking | DB Transistor | Configuration dependent | Configuration dependent | Configuration dependent | Configuration dependent |
| EMC Filtering | Filtered | Configuration dependent | Configuration dependent | Filtered | Filtered |
| Approx. Weight | 6.8 kg | ~7–9 kg | ~8–12 kg | ~5–7 kg | ~7–10 kg |
| Approx. Dimensions | 424 × 170 × 212 mm | Frame-dependent | Frame-dependent | Frame-dependent | Frame-dependent |
The following models represent commonly encountered alternatives within the broader industrial drive range.
| No. | Model | Series | Voltage Class | Current / Capacity Class | Typical Application | Approx. Dimensions | Weight (kg) |
|---|---|---|---|---|---|---|---|
| 1 | 25B-D2P3N104 | PowerFlex 525 | 480 VAC class | Small-drive class | Small conveyors, pumps, fans | Compact | ~2–4 |
| 2 | 25B-D010N104 | PowerFlex 525 | 480 VAC class | 10 A class | General machinery | Compact | ~4–6 |
| 3 | 25B-D017N104 | PowerFlex 525 | 480 VAC class | 17 A class | Medium machinery | Compact | ~5–7 |
| 4 | 20F11ND077AA0NNNNN | PowerFlex 753 | 480 VAC class | 77 A class | Larger industrial machinery | Large | ~20+ |
| 5 | 20G11ND022JA0NNNNN | PowerFlex 755 | 480 VAC class | 22 A class | Industrial motor control | Larger than 11 A frame | ~8–12 |
These alternatives are not direct one-for-one replacements.
They represent different combinations of voltage, current, physical size, power capacity, and application requirements.
| Parameter | 25B-D2P3N104 | 25B-D010N104 | 25B-D017N104 | 20F11ND077AA0NNNNN | 20G11ND022JA0NNNNN |
|---|---|---|---|---|---|
| Product Family | PowerFlex | PowerFlex | PowerFlex | PowerFlex | PowerFlex |
| Series | PowerFlex 525 | PowerFlex 525 | PowerFlex 525 | PowerFlex 753 | PowerFlex 755 |
| Voltage Class | 480 VAC class | 480 VAC class | 480 VAC class | 480 VAC class | 480 VAC class |
| Current Class | Small | 10 A class | 17 A class | 77 A class | 22 A |
| Application | Compact machinery | General machinery | Medium machinery | Large machinery | Industrial machinery |
| Cooling | Air | Air | Air | Forced Air | Forced Air |
| Network Integration | Available | Available | Available | Advanced | Advanced |
| Dynamic Braking | Configuration dependent | Configuration dependent | Configuration dependent | Available | Available |
| Approx. Weight | ~2–4 kg | ~4–6 kg | ~5–7 kg | ~20+ kg | ~8–12 kg |
| Approx. Dimensions | Compact | Compact | Compact | Large | Larger frame |
| Main Advantage | Compact size | Flexible small-machine control | Higher compact-drive capacity | High-power capability | Advanced industrial control |
A particularly important point is the voltage class.
The 20G11NE011JA0NNNNN is a 600 VAC class model.
A similarly numbered 480 VAC model is not automatically an interchangeable replacement.
For example, a 480 VAC drive may have a similar current rating but still be unsuitable for a 600 VAC supply.
The following must be checked:
| Selection Factor | 20G11NE011JA0NNNNN |
|---|---|
| Supply Voltage | 600 VAC class |
| Phase | 3 Phase |
| Current | 11 A |
| Normal Duty | 10 HP |
| Heavy Duty | 7.5 HP |
| Motor Voltage | Must match application |
| Input Protection | Must be correctly selected |
| Motor Current | Must remain within drive capability |
Voltage compatibility should always be verified before substitution.
The distinction between normal duty and heavy duty is important when choosing this drive.
A normal-duty application may involve a relatively stable load with moderate overload requirements.
A heavy-duty application may require greater torque and more severe overload capability.
Examples of potentially more demanding loads include:
The fact that the drive is rated at 10 HP normal duty does not mean that every 10 HP motor application is appropriate.
For demanding applications, the 7.5 HP heavy-duty rating is the more conservative reference.
The 20G11NE011JA0NNNNN provides a good balance between drive capacity and control functionality.
Machine builders can use it where the design requires:
The absence of a local HIM can also be useful when the machine already has a centralized operator interface.
Automation engineers can integrate the drive into a larger control system.
A typical control architecture can include:
PLC / Controller
↓
Ethernet/IP Network
↓
20G11NE011JA0NNNNN
↓
Three-Phase AC Motor
This allows the drive to function as an intelligent motor-control node rather than simply an independent power device.
Maintenance personnel can use drive operating information to assist troubleshooting.
Useful information can include:
This information can reduce the time required to identify whether the problem is electrical, mechanical, control-related, or process-related.
In production environments, adjustable motor speed can improve process flexibility.
For example, the same machine may require:
The drive can support these different operating requirements without mechanically changing the motor’s fixed-speed arrangement.
| Parameter | 20G11NE011JA0NNNNN |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Product Series | PowerFlex 755 |
| Product Type | Adjustable Frequency AC Drive |
| Model | 20G11NE011JA0NNNNN |
| Voltage Class | 600 VAC |
| Number of Phases | 3 Phase |
| Rated Current | 11 A |
| Normal-Duty Rating | 10 HP |
| Heavy-Duty Rating | 7.5 HP |
| Approx. Normal-Duty Power | 7.5 kW |
| Approx. Heavy-Duty Power | 5.5 kW |
| Input | AC with Precharge and DC Terminals |
| Output | Variable-frequency three-phase AC |
| Input Frequency | 50/60 Hz class |
| Cooling | Forced Air |
| Enclosure | Open Type |
| Protection | IP20/IP00 configuration |
| Frame | Frame 3 |
| EMC | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | DB Transistor |
| HIM | Blank / No HIM |
| Ethernet/IP | Embedded |
| Mounting | Cabinet / Panel |
| Approx. Height | 424 mm |
| Approx. Width | 170 mm |
| Approx. Depth | 212 mm |
| Approx. Dimensions | 424 × 170 × 212 mm |
| Approx. Weight | 6.8 kg |
| Weight (kg) | Approx. 6.8 kg |
| Cooling Method | Forced Air |
| Typical Application | Industrial motor control |
| Typical Loads | Conveyors, pumps, fans, blowers, feeders, machinery |
Before purchasing or replacing this model, check the following items:
| Check Item | Requirement |
|---|---|
| Supply Voltage | 600 VAC class |
| Supply Phase | 3 Phase |
| Motor Current | Must be compatible with 11 A drive rating |
| Motor Power | Check normal-duty / heavy-duty requirement |
| Motor Duty | Determine ND or HD requirement |
| Motor Type | Confirm compatibility |
| Starting Torque | Evaluate application demand |
| Acceleration | Check required ramp time |
| Deceleration | Check required ramp time |
| Braking | Determine whether dynamic braking is required |
| Communication | Confirm Ethernet/IP requirement |
| HIM | This configuration has no local HIM |
| Cabinet | Suitable enclosure required |
| Cooling | Forced-air ventilation required |
| Environment | Must remain within applicable conditions |
| Dimensions | Verify cabinet clearance |
| Weight | Allow approximately 6.8 kg for drive weight |
| Replacement | Confirm complete catalog-number compatibility |
The 20G11NE011JA0NNNNN is a practical choice for industrial motor-control systems where an approximately 11 A drive is required and the incoming electrical system is in the 600 VAC class.
Its combination of 10 HP normal-duty capacity, 7.5 HP heavy-duty capacity, embedded Ethernet/IP, forced-air cooling, dynamic-braking capability, EMC filtering, and Frame 3 construction gives it a broad application range.
It is particularly attractive for industrial equipment that needs centralized control and monitoring.
The model is not simply a basic speed controller.
It can function as part of an integrated machine-control architecture where motor speed, operating status, current, faults, and commands are exchanged between the drive and the main automation system.
| Item | Final Specification |
|---|---|
| Model | 20G11NE011JA0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Product Type | Industrial AC Variable Frequency Drive |
| Voltage | 600 VAC class |
| Phase | 3 Phase |
| Output Current | 11 A |
| Normal-Duty Capacity | 10 HP |
| Heavy-Duty Capacity | 7.5 HP |
| Normal-Duty Power | Approx. 7.5 kW |
| Heavy-Duty Power | Approx. 5.5 kW |
| Frame | Frame 3 |
| Cooling | Forced Air |
| Input | AC Input with Precharge and DC Terminals |
| EMC | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | DB Transistor |
| Communication | Embedded Ethernet/IP |
| HIM | Blank / No HIM |
| Enclosure | Open Type |
| Approx. Height | 424 mm |
| Approx. Width | 170 mm |
| Approx. Depth | 212 mm |
| Approx. Dimensions | 424 × 170 × 212 mm |
| Weight (kg) | Approx. 6.8 kg |
| Main Applications | Conveyors, pumps, fans, blowers, feeders, packaging, material handling |
| Main Advantages | Variable speed, network integration, diagnostics, controlled acceleration/deceleration and dynamic braking |
The 20G11NE011JA0NNNNN is best understood as a medium-capacity industrial PowerFlex 755 variable frequency drive designed for demanding three-phase motor-control applications.
Its 600 VAC input class and 11 A output rating make it suitable for a different electrical environment from comparable 480 VAC models.
The 10 HP normal-duty and 7.5 HP heavy-duty ratings provide flexibility for different load conditions, while the embedded Ethernet/IP communication makes the drive suitable for modern networked automation systems.
The Frame 3 construction, forced-air cooling, EMC filtering, dynamic-braking transistor, and open-type cabinet installation provide a practical configuration for industrial machinery.
For applications involving conveyors, pumps, fans, blowers, feeders, packaging equipment, material handling, and general production machinery, this model offers a combination of adjustable speed control and automation-system integration.
When selecting this model for a real installation, the most important checks are the 600 VAC supply, three-phase configuration, motor nameplate current, normal-duty or heavy-duty requirement, braking requirement, environmental conditions, cabinet cooling, communication requirements, and physical installation space.
The approximate physical reference for planning is 424 × 170 × 212 mm, with an approximate drive weight of 6.8 kg. These mechanical values should be treated as planning figures, while the actual installation should use the specific mechanical dimensions associated with the unit being installed.