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The Allen-Bradley 20G11TF370JN0NNNNN is a high-power PowerFlex 755 AC Drive designed for large industrial motor-control applications. It is a 690 VAC, three-phase, air-cooled drive with a 370 A normal-duty output-current rating, making it suitable for large motors used in conveyors, pumps, fans, blowers, crushers, mills, mixers, material-handling equipment and other demanding industrial machinery.
This model is a PowerFlex 755 Air-Cooled AC Drive, Frame 8, with an open-type construction, filtered configuration, common-mode jumper installed, AC input with precharge, DC terminals, embedded EtherNet/IP communication and no built-in dynamic-braking transistor or resistor arrangement.
The model provides approximately 400 kW Light-Duty, 355 kW Normal-Duty and 300 kW Heavy-Duty capability. This makes it a particularly useful choice for applications around the 300–400 kW range where the motor requires controlled acceleration, variable-speed operation, reliable torque control and integration with an industrial automation system.
| Parameter | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Series | PowerFlex 755 |
| Product Family | PowerFlex 750-Series |
| Product Type | High-Power AC Variable Frequency Drive |
| Model | 20G11TF370JN0NNNNN |
| Drive Configuration | Air-Cooled AC Drive |
| Voltage Class | 690 VAC |
| Input Voltage | 690 VAC nominal |
| Input Phase | 3 Phase |
| Normal-Duty Current | 370 A |
| Light-Duty Current | Approx. 410 A class |
| Heavy-Duty Current | Approx. 308 A class |
| Light-Duty Power | 400 kW |
| Normal-Duty Power | 355 kW |
| Heavy-Duty Power | 300 kW |
| Light-Duty Horsepower | Approx. 536 HP |
| Normal-Duty Horsepower | Approx. 476 HP |
| Heavy-Duty Horsepower | Approx. 402 HP |
| DC Voltage Class | Approx. 932 VDC |
| Frame Size | Frame 8 |
| Cooling | Forced Air / Air Cooled |
| Enclosure | Open Type |
| Input Configuration | AC Input with Precharge |
| DC Terminals | Yes |
| Filtering | Filtered |
| Common-Mode Jumper | Installed |
| Dynamic Braking | None |
| HIM | Blank / No HIM |
| Communication | Embedded EtherNet/IP |
| Typical Installation | Industrial Cabinet / Equipment Room |
| Approx. Dimensions | Approximately 900 × 1000 × 500 mm class, configuration dependent |
| Approx. Weight | Approximately 300–400 kg class, configuration dependent |
| Main Application | Large industrial motor control |
The brand of the 20G11TF370JN0NNNNN is Allen-Bradley.
Allen-Bradley products are widely used in industrial automation, motor control, factory machinery, process equipment, material handling and large industrial installations.
Within the drive product range, the PowerFlex family covers everything from compact drives for small motors to large industrial drives designed for hundreds of kilowatts of motor power.
The 20G11TF370JN0NNNNN belongs to the high-power section of this range and is intended for applications where motor current, torque requirements and machine size are significantly greater than those normally associated with compact VFDs.
The 20G11TF370JN0NNNNN belongs to the:
PowerFlex 755 Series
It is also part of the broader:
PowerFlex 750-Series
The PowerFlex 755 is intended for applications requiring more than basic variable-frequency speed control.
It is designed for large industrial machines where the drive may need to provide:
The 20G11TF370JN0NNNNN is therefore much more than a simple frequency converter. It is a high-power industrial motor-control platform.
The catalog number 20G11TF370JN0NNNNN contains several configuration identifiers.
| Model Section | General Meaning |
|---|---|
| 20G | PowerFlex 755 drive family |
| 11 | High-power AC drive configuration |
| TF | 690 VAC three-phase high-power configuration |
| 370 | 370 A current class |
| J | Common-mode jumper installed |
| N0 | Standard configuration |
| NNNNN | Standard / no additional selected options in these positions |
The 370 portion is especially important because it identifies the drive’s normal-duty current class.
The J configuration is also important. In this version, the common-mode jumper is installed.
This differentiates the model from the closely related 20G11TF370AN0NNNNN, which uses the corresponding removed-jumper configuration.
| Electrical Parameter | Specification |
|---|---|
| Model | 20G11TF370JN0NNNNN |
| Nominal Input Voltage | 690 VAC |
| Input Voltage Class | 690 VAC |
| Approx. Input Range | 621–759 VAC class |
| Input Phase | 3 Phase |
| Normal-Duty Current | 370 A |
| Light-Duty Current | Approx. 410 A |
| Heavy-Duty Current | Approx. 308 A |
| Light-Duty Power | 400 kW |
| Normal-Duty Power | 355 kW |
| Heavy-Duty Power | 300 kW |
| Light-Duty Horsepower | Approx. 536 HP |
| Normal-Duty Horsepower | Approx. 476 HP |
| Heavy-Duty Horsepower | Approx. 402 HP |
| DC Input Class | Approx. 932 VDC |
| Frame | Frame 8 |
| Cooling | Forced Air |
| Input | AC Input with Precharge |
| DC Terminals | Yes |
| Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | None |
| HIM | Blank / No HIM |
| Communication | Embedded EtherNet/IP |
One of the most important aspects of the 20G11TF370JN0NNNNN is that it has three different application ratings.
It should therefore not simply be described as a “400 kW drive” without explaining the duty classification.
| Duty Classification | Current | Motor Power | Approx. HP | Typical Load |
|---|---|---|---|---|
| Light Duty | ~410 A | 400 kW | ~536 HP | Fans, blowers, centrifugal pumps |
| Normal Duty | 370 A | 355 kW | ~476 HP | Conveyors, process equipment |
| Heavy Duty | ~308 A | 300 kW | ~402 HP | Crushers, mills, high-torque machines |
The correct rating depends on the mechanical characteristics of the driven equipment.
A 400 kW centrifugal fan and a 400 kW crusher do not place the same demands on the drive.
The fan may operate with relatively stable torque characteristics, while the crusher may require significant starting torque and short-term overload capability.
For this reason, the motor nameplate current and the machine’s actual torque profile should always be considered together with the kW rating.
The maximum Light-Duty application rating is approximately 400 kW.
This corresponds to approximately 536 HP.
Light-Duty operation is generally associated with applications where the motor does not frequently experience substantial overload conditions.
Typical examples include:
For these applications, the drive can provide variable-speed operation while allowing the motor speed to follow process demand.
The Normal-Duty rating is approximately 355 kW, equivalent to about 476 HP.
This rating is particularly useful for general industrial machinery.
Typical applications include:
For a motor in the 300–350 kW range, the 20G11TF370JN0NNNNN can provide a useful combination of power capacity and current capability.
The Heavy-Duty rating is approximately 300 kW, equivalent to approximately 402 HP.
This is the rating that deserves particular attention for machines with higher torque demands.
Examples include:
The Heavy-Duty rating is generally more relevant than the maximum Light-Duty figure when the application has severe acceleration or overload requirements.
The 20G11TF370JN0NNNNN is a high-power industrial AC drive designed for controlling large three-phase motors.
Its 690 VAC class makes it suitable for large industrial electrical systems where higher motor voltage is advantageous for managing current at high power levels.
With a normal-duty current rating of 370 A and a 355 kW Normal-Duty power rating, it is positioned toward the high-power end of the PowerFlex 755 range.
The drive is designed for cabinet or equipment-level installation rather than the type of simple wall mounting normally associated with small VFDs.
The complete installation needs to be engineered around the drive’s electrical, mechanical and thermal requirements.
The drive receives three-phase AC electrical power and converts it into controlled electrical power for the motor.
The simplified power path can be described as:
690 VAC Three-Phase Input → Rectifier → DC Bus → Inverter → Three-Phase Motor
The inverter controls the switching of the output power devices.
By adjusting the output voltage, frequency and control parameters, the drive can regulate motor speed and torque.
The actual control behavior depends on the selected motor-control method, motor characteristics, feedback configuration and application requirements.
The primary purpose of the drive is to provide controlled variable-speed operation.
A motor connected directly to a fixed-frequency supply normally operates close to a fixed operating speed.
With the PowerFlex 755, motor speed can be adjusted according to the process.
For example:
This flexibility is one of the main reasons high-power drives are used in modern industrial equipment.
Large motors can produce considerable mechanical shock when started directly across the supply.
The drive allows acceleration to be controlled.
Instead of immediately applying full operating conditions to the motor, the motor can be brought up to speed in a controlled manner.
This can help reduce mechanical stress on:
For large machines, controlled acceleration can be particularly valuable because even a small reduction in mechanical shock can have a meaningful effect over thousands of operating cycles.
The drive can provide controlled motor speed according to a programmed reference.
The speed reference can originate from:
This makes the drive suitable for both standalone machine control and larger plant-wide automation systems.
The PowerFlex 755 platform is intended for applications where torque control is important.
Torque-related applications include:
In these applications, the motor may experience rapidly changing mechanical loads.
The drive can therefore be configured for more sophisticated control than basic frequency adjustment.
The 20G11TF370JN0NNNNN includes embedded EtherNet/IP capability.
This is particularly useful in industrial automation systems where drives need to communicate with controllers and other automation equipment.
Typical information exchanged through the control network may include:
This network integration can reduce wiring complexity and make drive monitoring more convenient.
For a large production line, several drives may need to operate together.
For example, a material-handling system might contain:
A networked architecture allows these systems to exchange control and status information.
The 20G11TF370JN0NNNNN can therefore form part of a larger coordinated automation system.
The model uses a filtered configuration.
Filtering is useful in industrial drive systems because inverter switching can produce high-frequency electrical noise.
Good system-level design should still include attention to:
The drive’s filtering should therefore be considered one part of the complete EMC design rather than the only EMC measure.
The J in the model number indicates that the common-mode jumper is installed.
This is an important distinction from the A configuration.
| Model | CM Jumper Configuration |
|---|---|
| 20G11TF370JN0NNNNN | Installed |
| 20G11TF370AN0NNNNN | Removed |
The appropriate configuration depends on the electrical system, grounding arrangement and application requirements.
When replacing an existing drive, it is important to match the complete catalog number rather than selecting a replacement based only on voltage and current.
The drive uses an AC input with precharge.
A high-power drive contains a substantial DC-bus capacitor system.
During energization, the precharge function manages the initial charging process of the DC bus.
This is especially important for a drive of this size because uncontrolled charging of the DC bus would place considerable electrical stress on the power-conversion components.
The drive configuration includes DC terminals.
The DC terminals provide additional flexibility for certain high-power system architectures.
They can be useful when designing systems that require DC-bus integration or coordinated power-conversion arrangements.
Their use should always be based on the complete electrical design and applicable installation requirements.
The specified configuration does not include an internal dynamic-braking transistor or resistor arrangement.
This is important for applications involving rapid deceleration or regenerative energy.
Applications that may require special braking consideration include:
If significant regenerative energy is expected, the braking architecture should be designed separately.
The model is configured with a blank / no HIM arrangement.
This is often suitable for large industrial systems where the drive is installed inside a cabinet and operated primarily through the plant control system.
Instead of relying on a local display for routine operation, the drive can be integrated into the automation network.
The 20G11TF370JN0NNNNN uses forced-air cooling.
At this power level, thermal management is a major engineering consideration.
Heat is generated by:
The cooling fans move air through the drive to remove heat.
For reliable operation, the cooling path should be kept clean and unobstructed.
The 20G11TF370JN0NNNNN is a Frame 8 high-power drive, so its physical dimensions are considerably larger than those of compact PowerFlex products.
Because exact dimensions can vary with the installation arrangement and associated hardware, the following values are best used as engineering reference values.
| Mechanical Parameter | Approximate Specification |
|---|---|
| Model | 20G11TF370JN0NNNNN |
| Frame Size | Frame 8 |
| Construction | Open Type |
| Cooling | Forced Air |
| Approx. Height | ~900 mm class |
| Approx. Width | ~1000 mm class |
| Approx. Depth | ~500 mm class |
| Approx. Overall Dimensions | ~900 × 1000 × 500 mm class |
| Approx. Weight | ~300–400 kg class |
| Installation Type | Industrial Cabinet / Equipment Installation |
| Mounting Structure | Heavy-Duty Industrial Support |
| Handling | Mechanical lifting equipment recommended |
| Service Access | Large service area required |
The exact mechanical drawing should be used for final cabinet fabrication, lifting arrangements, transportation planning and installation.
The physical size of this drive is an important difference between the PowerFlex 755 high-power range and compact drives.
A unit in the several-hundred-kilogram class requires planning for:
The cabinet should be designed to support both the drive weight and the additional weight of associated power equipment.
The most obvious advantage is its high-power output capability.
With approximately 400 kW Light-Duty capacity, this model is suitable for motors that are far beyond the normal range of compact machine drives.
This makes it suitable for large-scale industrial machinery.
The 690 VAC configuration is particularly useful for large motors.
At high power levels, higher voltage can help reduce current for a given motor power.
This can make the overall electrical distribution system more practical.
It is especially useful in:
The 370 A normal-duty current rating gives the drive substantial output capability.
This provides the electrical capacity needed for large industrial motors.
It also places the model in a useful position between smaller 330 A-class equipment and larger 415 A-class models.
The three duty categories provide useful flexibility.
The same drive can be evaluated for:
This allows the engineer to select the appropriate operating mode based on the actual mechanical load.
Embedded EtherNet/IP makes the drive well suited to networked automation.
This can simplify:
The PowerFlex 755 platform is intended for more demanding motor-control applications.
It can support applications requiring:
Large conveyors are one of the most suitable applications for this type of drive.
A large conveyor may experience:
Controlled acceleration can reduce mechanical shock.
Variable-speed operation also allows the conveyor to be matched to production requirements.
Mining conveyors can require hundreds of kilowatts of motor power.
The motor may need to move large amounts of material over long distances.
The drive can provide:
The 690 VAC configuration is also well suited to large industrial electrical systems.
Large pumps are another important application.
A pump does not always need to operate at maximum capacity.
Variable-speed operation allows pump speed to be adjusted according to:
For suitable centrifugal-pump applications, reducing speed can also provide significant energy-saving potential.
Large industrial fans frequently operate for long periods.
The required airflow may change throughout the process.
A variable-frequency drive allows fan speed to be adjusted rather than keeping the motor continuously at maximum speed.
This can improve:
Industrial blowers may be used in:
The ability to control speed makes the drive suitable for processes where airflow requirements change.
Crushers are demanding applications because of their high mechanical torque requirements.
The machine can experience sudden load changes.
For this reason, the 300 kW Heavy-Duty rating should receive particular attention when evaluating this drive.
Important factors include:
Large mills can require high motor torque and significant acceleration capability.
The drive may need to operate for long periods while responding to changing load conditions.
The PowerFlex 755 architecture is suitable for evaluating this type of application.
Large industrial mixers may have very different load characteristics depending on the material being processed.
The motor may need:
The 20G11TF370JN0NNNNN is suitable for consideration in large mixer systems when its current and duty ratings match the motor requirements.
Material-handling systems often use multiple large motors.
Examples include:
Networked drive control can make coordination between different sections of the system easier.
| Application | Suitability | Main Benefit |
|---|---|---|
| Large Conveyor | Excellent | High power and controlled acceleration |
| Mining Conveyor | Excellent | High current and industrial control |
| Large Pump | Excellent | Variable-speed operation |
| Large Fan | Excellent | Adjustable airflow |
| Industrial Blower | Excellent | Process-speed control |
| Crusher | Very Good | High torque capability |
| Mill | Very Good | Large motor control |
| Mixer | Very Good | Adjustable speed and torque |
| Material Handling | Excellent | Networked drive control |
| Process Machinery | Excellent | Flexible automation integration |
The following models are closely related members of the high-power 690 VAC PowerFlex 755 family.
| Model | Voltage | Current Class | Light Duty | Normal Duty | Heavy Duty | Frame |
|---|---|---|---|---|---|---|
| 20G11TF265JN0NNNNN | 690 VAC | 265 A class | 315 kW | 250 kW | 200 kW | 8 |
| 20G11TF330JN0NNNNN | 690 VAC | 330 A | 355 kW | 315 kW | 250 kW | 8 |
| 20G11TF370JN0NNNNN | 690 VAC | 370 A | 400 kW | 355 kW | 300 kW | 8 |
| 20G11TF415JN0NNNNN | 690 VAC | 415 A | 450 kW | 400 kW | 355 kW | 8 |
| 20G11TF460JN0NNNNN | 690 VAC | 460 A | 500 kW | 450 kW | 375 kW | 8 |
These models provide a logical progression in current and power capacity.
| Model | Normal-Duty Current | LD Power | ND Power | HD Power | Recommended Application |
|---|---|---|---|---|---|
| 20G11TF265JN0NNNNN | 265 A class | 315 kW | 250 kW | 200 kW | Large pumps, fans, smaller conveyors |
| 20G11TF330JN0NNNNN | 330 A | 355 kW | 315 kW | 250 kW | General high-power industrial machinery |
| 20G11TF370JN0NNNNN | 370 A | 400 kW | 355 kW | 300 kW | Large conveyors and process machinery |
| 20G11TF415JN0NNNNN | 415 A | 450 kW | 400 kW | 355 kW | Larger heavy industrial systems |
| 20G11TF460JN0NNNNN | 460 A | 500 kW | 450 kW | 375 kW | Very high-power industrial equipment |
Because these models are all in the same high-power Frame 8 class, their mechanical requirements are broadly similar.
| Model | Frame | Cooling | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|
| 20G11TF265JN0NNNNN | 8 | Forced Air | ~900 × 1000 × 500 mm class | ~300–400 kg class |
| 20G11TF330JN0NNNNN | 8 | Forced Air | ~900 × 1000 × 500 mm class | ~300–400 kg class |
| 20G11TF370JN0NNNNN | 8 | Forced Air | ~900 × 1000 × 500 mm class | ~300–400 kg class |
| 20G11TF415JN0NNNNN | 8 | Forced Air | ~900 × 1000 × 500 mm class | ~300–400 kg class |
| 20G11TF460JN0NNNNN | 8 | Forced Air | ~900 × 1000 × 500 mm class | ~300–400 kg class |
Exact mechanical dimensions and final shipping weight should be confirmed against the particular configuration before cabinet fabrication or transport planning.
For comparison, the following models represent several different power levels within the same brand’s PowerFlex product range.
| Model | Series | Voltage Class | Approx. Rating | Approx. Dimensions | Approx. Weight | Typical Application |
|---|---|---|---|---|---|---|
| 25B-D010N104 | PowerFlex 525 | 480 VAC class | ~4 HP | ~180 × 90 × 150 mm | ~2–3 kg | Small machines |
| 25B-D017N104 | PowerFlex 525 | 480 VAC class | ~7.5 HP | ~220 × 110 × 170 mm | ~3–4 kg | Small conveyors and pumps |
| 25A-D030N104 | PowerFlex 523 | 480 VAC class | ~15 HP | ~250 × 130 × 190 mm | ~4–6 kg | General machine control |
| 20F11NC022JA0NNNNN | PowerFlex 753 | 480 VAC class | ~22 A class | Configuration dependent | Configuration dependent | Industrial machinery |
| 20G11TF370JN0NNNNN | PowerFlex 755 | 690 VAC | 370 A / 355 kW ND | ~900 × 1000 × 500 mm class | ~300–400 kg class | Large industrial systems |
| Characteristic | Compact Drive | PowerFlex 753 | 20G11TF370JN0NNNNN |
|---|---|---|---|
| Motor Size | Small | Medium / Large | Very Large |
| Typical Voltage | 200–480 VAC class | Various | 690 VAC |
| Power Level | Low / Medium | Medium / High | High |
| Current | Low | Medium / High | 370 A |
| Frame | Compact | Larger | Frame 8 |
| Cooling | Compact / Fan | Fan Cooled | Forced Air |
| Network Integration | Available | Advanced | Embedded EtherNet/IP |
| Large Conveyor | Limited | Good | Excellent |
| Large Pump | Limited | Very Good | Excellent |
| Large Fan | Limited | Very Good | Excellent |
| Crusher | Generally unsuitable | Application dependent | Very Good |
| Approx. Weight | Few kg | Larger | Several hundred kg class |
The 20G11TF330JN0NNNNN provides approximately 315 kW Normal-Duty capability, while the 20G11TF370JN0NNNNN increases the Normal-Duty rating to approximately 355 kW.
This makes the 370 A model attractive when the motor is larger or when additional current capacity is needed.
The 370 A model is particularly useful when:
However, selecting a larger drive simply for additional margin is not always the best approach.
The motor’s actual nameplate current and duty cycle should remain the primary selection criteria.
The 20G11TF415JN0NNNNN provides approximately:
Compared with the 370 A model, it provides a higher power and current class.
It may therefore be a better choice when the motor approaches 400 kW in Normal Duty or when a heavy-duty application approaches the 355 kW range.
The 20G11TF265JN0NNNNN is the lower-capacity option among the recommended models.
It provides approximately:
It can therefore be more appropriate when the motor is smaller and the higher capacity of the 330 A or 370 A model is unnecessary.
This can help reduce equipment cost and avoid unnecessary oversizing.
Variable-frequency drives can provide substantial energy-management benefits, particularly with variable-torque loads.
Large centrifugal pumps and fans are good examples.
When the process requires less flow or airflow, the motor speed can be reduced.
This can be more efficient than operating the motor at full speed continuously and restricting the process mechanically.
The actual energy savings depend on:
The drive should therefore be viewed as an important part of an energy-management strategy rather than as an automatic fixed-percentage energy-saving device.
The drive can also provide mechanical benefits.
Controlled acceleration and deceleration can reduce sudden torque changes.
This can help reduce stress on:
For equipment operating continuously over many years, reducing repeated mechanical shock can be valuable.
A large industrial drive requires a proper preventive-maintenance program.
| Maintenance Item | Importance |
|---|---|
| Cooling Fans | Very High |
| Airflow | Very High |
| Electrical Connections | Very High |
| Grounding | Very High |
| Cabinet Temperature | Very High |
| Dust Removal | High |
| Motor Cable Condition | High |
| Communication Connections | High |
| Fault History | High |
| DC-Bus Safety | Critical |
Cooling-system maintenance deserves particular attention.
Dust accumulation can restrict airflow and increase operating temperature.
The drive’s forced-air cooling system should be treated as a critical component.
A large industrial drive can generate considerable heat during operation.
The installation should therefore provide adequate airflow.
Important considerations include:
The drive should not be installed in a cabinet where heat from other equipment causes the internal temperature to exceed the applicable operating limits.
The installation environment can have a significant impact on long-term reliability.
The following conditions should be evaluated:
Because the drive is an Open Type product, the final cabinet must provide the appropriate environmental protection.
| Cabinet Design Factor | Importance |
|---|---|
| Structural Support | Very High |
| Heat Dissipation | Very High |
| Forced Ventilation | Very High |
| Electrical Clearance | Very High |
| Grounding | Very High |
| Power Cable Routing | Very High |
| Maintenance Access | High |
| Communication Cable Routing | High |
| Fan Accessibility | High |
| Mechanical Handling | High |
The cabinet should be designed around the actual drive configuration rather than simply around the nominal drive dimensions.
Before choosing the 20G11TF370JN0NNNNN, the following parameters should be checked.
Confirm that the motor and electrical distribution system are compatible with the 690 VAC class.
This is one of the most important selection parameters.
Determine whether the application is Light Duty, Normal Duty or Heavy Duty.
High starting torque can reduce the applicable motor power rating.
Large-inertia loads may require longer acceleration.
The mechanical inertia of the machine should be evaluated.
Applications requiring rapid deceleration should receive a separate braking analysis.
Cabinet temperature directly affects thermal performance.
Determine how the drive will communicate with the automation system.
| Application | Recommended Model | Main Reason |
|---|---|---|
| Large pump around 200–250 kW | 20G11TF265JN0NNNNN | Appropriate lower capacity |
| Industrial motor around 315 kW | 20G11TF330JN0NNNNN | Good balance |
| Conveyor around 355 kW | 20G11TF370JN0NNNNN | Strong Normal-Duty rating |
| Industrial motor around 400 kW | 20G11TF415JN0NNNNN | Higher current capacity |
| Very large motor around 450 kW | 20G11TF460JN0NNNNN | Higher-power platform |
| Feature | Benefit |
|---|---|
| 690 VAC | Suitable for large industrial motor systems |
| 370 A | High continuous current capability |
| 400 kW LD | Strong variable-torque application capability |
| 355 kW ND | Excellent general industrial rating |
| 300 kW HD | Suitable for demanding torque applications |
| Frame 8 | High-power mechanical architecture |
| Forced Air | High-capacity thermal management |
| Embedded EtherNet/IP | Industrial automation integration |
| AC Precharge | Controlled DC-bus energization |
| DC Terminals | Flexible high-power system architecture |
| Filtered | Supports industrial EMC design |
| CM Jumper Installed | Specific grounding/system configuration |
| Advanced Control | Suitable for speed and torque applications |
| Open Type | Flexible cabinet integration |
| Category | Specification |
|---|---|
| Model | 20G11TF370JN0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Family | PowerFlex 750-Series |
| Product Type | High-Power Air-Cooled AC Drive |
| Voltage | 690 VAC |
| Input Phase | 3 Phase |
| Normal-Duty Current | 370 A |
| Light-Duty Current | ~410 A class |
| Heavy-Duty Current | ~308 A class |
| Light-Duty Power | 400 kW |
| Normal-Duty Power | 355 kW |
| Heavy-Duty Power | 300 kW |
| Light-Duty HP | ~536 HP |
| Normal-Duty HP | ~476 HP |
| Heavy-Duty HP | ~402 HP |
| DC Voltage Class | ~932 VDC |
| Input Type | AC Input with Precharge |
| DC Terminals | Yes |
| Cooling | Forced Air |
| Frame | Frame 8 |
| Enclosure | Open Type |
| Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | None |
| HIM | Blank / No HIM |
| Communication | Embedded EtherNet/IP |
| Approx. Height | ~900 mm class |
| Approx. Width | ~1000 mm class |
| Approx. Depth | ~500 mm class |
| Approx. Dimensions | ~900 × 1000 × 500 mm class |
| Approx. Weight | ~300–400 kg class |
| Main Applications | Conveyors, pumps, fans, blowers, crushers, mills, mixers |
| Main Advantage | High-power 690 VAC industrial motor control |
The Allen-Bradley 20G11TF370JN0NNNNN is a high-power PowerFlex 755 AC Drive designed for large industrial motor-control systems.
Its 690 VAC three-phase input, 370 A normal-duty current rating, approximately 400 kW Light-Duty rating, 355 kW Normal-Duty rating and 300 kW Heavy-Duty rating place it firmly in the high-power industrial drive category.
The model is particularly well suited to applications where motor power, mechanical load and operating requirements are too demanding for compact variable-frequency drives.
Its strongest application areas include large conveyors, mining conveyors, pumps, fans, blowers, crushers, mills, mixers, material-handling equipment and process machinery.
The embedded EtherNet/IP capability makes it suitable for integration into networked industrial automation systems, while the forced-air cooling system provides the thermal-management architecture required for high-power operation.
The Frame 8 construction also gives the product a substantial physical footprint. For engineering purposes, the approximate mechanical envelope can be considered in the 900 × 1000 × 500 mm class, with an overall equipment weight in the 300–400 kg class, although the exact dimensions and weight should be confirmed against the final mechanical configuration before cabinet fabrication and transportation planning.
The J configuration is another important characteristic of this model. It indicates the common-mode jumper-installed configuration and distinguishes the model from the closely related 20G11TF370AN0NNNNN configuration.
For general industrial equipment around the 355 kW Normal-Duty range, this model offers a strong balance between power capacity and system flexibility.
For applications below this range, the 20G11TF330JN0NNNNN may be sufficient. For larger loads, the 20G11TF415JN0NNNNN or 20G11TF460JN0NNNNN provides additional capacity.
Overall, the 20G11TF370JN0NNNNN can be considered a large-capacity industrial drive for demanding 690 VAC motor applications, combining high current capability, flexible duty ratings, advanced motor control, industrial Ethernet communication, forced-air cooling and cabinet-level integration into one high-power drive platform.