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The Allen-Bradley 20G14TF330AN0NNNNN is a high-power PowerFlex 755 AC Drive designed for industrial motor-control applications that require reliable variable-speed operation, strong overload capability, flexible control functions, and integration with larger automation systems.
It belongs to the PowerFlex 750 Series and specifically to the PowerFlex 755 product family.
The 20G14TF330AN0NNNNN is an air-cooled, open-type, three-phase AC drive with a 480 VAC input, AC input with precharge, and a 330 A normal-duty output-current rating. It uses Frame 6 construction and is configured with filtering and a common-mode capacitor jumper installed.
The drive is intended for larger industrial motors and machinery rather than small machine applications. Its combination of high current capacity, industrial construction, advanced motor-control functions, and network integration makes it suitable for conveyors, pumps, fans, compressors, process equipment, material-handling systems, and other demanding machinery.
The catalog number is:
20G14TF330AN0NNNNN
The configuration identifies an air-cooled PowerFlex 755 AC drive with AC input, precharge, filtered configuration, dynamic-braking capability, and a blank/no-HIM configuration.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750 Series |
| Product Series | PowerFlex 755 |
| Product Type | AC Drive / Variable Frequency Drive |
| Catalog Number | 20G14TF330AN0NNNNN |
| Drive Type | PowerFlex 755 AC Drive |
| Cooling Method | Air Cooled |
| Input Type | AC Input with Precharge |
| Input Voltage | 480 VAC |
| Phase | Three Phase |
| Normal-Duty Current | 330 A |
| Normal-Duty Power | 250 HP |
| Heavy-Duty Power | 200 HP |
| Frame Size | Frame 6 |
| Enclosure Type | Open Type |
| Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | DB Transistor |
| HIM | Blank / No HIM |
| Communication Platform | PowerFlex 755 industrial communication architecture |
| Dimensions | Configuration-dependent |
| Net Weight | Configuration-dependent kg |
The key distinction for this model is that the AN configuration is an AC-input configuration, while other closely related catalog numbers using different configuration characters can represent different input arrangements.
| Parameter | Specification |
|---|---|
| Model | 20G14TF330AN0NNNNN |
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750 Series |
| Product Series | PowerFlex 755 |
| Product Type | Variable Frequency AC Drive |
| Input Voltage | 480 VAC |
| Input Phase | Three Phase |
| Input Configuration | AC Input with Precharge |
| Normal-Duty Output Current | 330 A |
| Normal-Duty Power Rating | 250 HP |
| Approx. Normal-Duty Power | Approx. 186 kW |
| Heavy-Duty Power Rating | 200 HP |
| Approx. Heavy-Duty Power | Approx. 149 kW |
| Frame Size | Frame 6 |
| Cooling | Air Cooled |
| Cooling Method | Forced Air |
| Enclosure | Open Type |
| Filtering | Filtered |
| Common-Mode Jumper | Installed |
| Dynamic Braking | DB Transistor |
| Human Interface Module | Blank / No HIM |
| Motor-Control Platform | PowerFlex 755 |
| Typical Motor Voltage Class | 480 VAC class |
| Motor Application | Three-phase industrial motors |
| Communication | Industrial network integration capability |
| Mounting | Cabinet / industrial enclosure |
| Width | Configuration-dependent |
| Height | Configuration-dependent |
| Depth | Configuration-dependent |
| Overall Dimensions | Configuration-dependent |
| Net Weight | Configuration-dependent kg |
| Shipping Weight | Configuration-dependent kg |
| Installation Environment | Industrial |
| Main Application Level | Medium-to-high power industrial motor control |
The published catalog information identifies this exact configuration as a 480 VAC, three-phase, 330 A normal-duty, 250 HP normal-duty, 200 HP heavy-duty, Frame 6, air-cooled PowerFlex 755 drive.
The 20G14TF330AN0NNNNN is best understood as a high-capacity member of the PowerFlex 755 family.
Its main characteristics are:
This combination makes the drive appropriate for industrial equipment where a standard small VFD is not sufficient.
The model is especially suitable for machinery where the motor must operate at variable speed and where acceleration, deceleration, torque response, diagnostics, and integration with an automation system are important.
The PowerFlex 755 series is a high-performance industrial AC-drive platform designed for applications that demand more flexibility than a basic variable-frequency drive.
The 20G14TF330AN0NNNNN is positioned toward the higher-power portion of this family.
With a 330 A normal-duty rating, it is capable of controlling substantially larger motors than compact and mid-range drives.
Its 480 VAC three-phase architecture makes it suitable for common industrial power-distribution systems used in manufacturing plants, processing facilities, material-handling installations, utilities, and other large industrial environments.
The Frame 6 mechanical platform provides a larger physical structure capable of accommodating the electrical components, thermal-management system, power connections, and control architecture required by a high-current industrial drive.
One of the defining characteristics of the 20G14TF330AN0NNNNN is its AC Input with Precharge configuration.
The precharge circuit helps manage the initial charging of the drive’s DC-link capacitors when the drive is energized.
This is especially important for high-power drives because the internal DC bus contains substantial stored electrical energy and would otherwise create a very high initial charging current.
The precharge arrangement helps control this initial electrical event and provides a more suitable startup sequence for the drive’s power electronics.
For industrial systems, this contributes to a more controlled energization process and supports the reliable operation of the drive’s internal power-conversion stage.
The drive is designed for a 480 VAC, three-phase input system.
480 VAC is one of the most widely used industrial voltage classes for large motors and motor-control systems.
A 480 VAC-class drive can be used in many industrial environments where three-phase distribution is already available.
Typical applications include:
The three-phase design is particularly appropriate for high-power industrial motors because three-phase power provides efficient motor operation and is standard throughout large industrial facilities.
The 330 A normal-duty rating is one of the most important characteristics of this model.
A 330 A drive is intended for substantially larger motor systems than smaller PowerFlex drives.
The normal-duty rating corresponds to a published 250 HP power class.
This places the drive in the high-capacity industrial category.
The actual motor selected for an installation should always be checked against its nameplate current rather than relying on horsepower alone.
Motor current can vary according to:
For this reason, the 330 A current rating is generally more useful for final drive selection than horsepower alone.
The drive is also associated with a 200 HP heavy-duty rating.
Heavy-duty applications typically involve greater torque requirements, more frequent overload conditions, more aggressive acceleration, or higher mechanical stress.
Examples can include:
When a motor operates under a severe load profile, the heavy-duty rating should be used for drive selection rather than the larger light-duty or normal-duty number.
The 20G14TF330AN0NNNNN uses Frame 6 construction.
Frame size is an important consideration because it affects:
A Frame 6 drive is substantially larger than small and medium PowerFlex drives.
For this reason, the installation should be designed around the drive’s actual mechanical drawing rather than assuming that the drive can fit into a standard small VFD enclosure.
The drive uses an air-cooled design.
High-current switching devices generate heat during normal operation.
The cooling system removes this heat and helps maintain appropriate operating temperatures for the power electronics.
The installation should therefore provide sufficient:
The surrounding cabinet should also be designed so that hot exhaust air does not recirculate directly into the drive’s cooling intake.
The product uses an open-type construction.
This means the drive itself should normally be installed inside a suitable industrial enclosure or cabinet when the surrounding environment requires protection from personnel contact, dust, moisture, or other environmental conditions.
The final enclosure arrangement should take into account:
The drive’s open construction gives system designers greater flexibility because the final enclosure can be selected according to the specific machine or plant environment.
The catalog configuration is filtered.
Filtering can help manage electrical noise and conducted interference generated by high-frequency switching.
This is particularly important in installations containing:
Good grounding and cable-routing practices remain important even when the drive includes filtering.
Power cables and sensitive control or instrumentation cables should be routed appropriately to reduce the possibility of electrical interference.
The model configuration includes the common-mode capacitor jumper installed.
The common-mode configuration affects the relationship between the drive’s internal filtering system, grounding arrangement, motor cable system, and electrical environment.
This is particularly relevant in large motor systems because motor cables can be long and the associated electrical capacitance can become significant.
The factory configuration should therefore be considered when replacing an existing drive with another model.
Unlike a configuration specified without braking hardware, this model includes a DB transistor configuration.
Dynamic braking can be useful when a motor needs to decelerate a load quickly and the mechanical system contains substantial stored kinetic energy.
Typical applications include:
When a motor decelerates, energy can flow back toward the drive’s DC bus.
A dynamic-braking system provides a method of handling this energy by directing it toward an appropriate braking resistor arrangement.
The exact braking resistor and braking duty must be selected according to the application.
The catalog number specifies a Blank / No HIM arrangement.
This means the drive is not configured with a conventional local human-machine interface as part of the selected catalog configuration.
This can be advantageous in centralized automation systems where operators interact with the machine through:
It also keeps the drive front panel simpler for applications where local operator control is not necessary.
The PowerFlex 755 platform is designed for integration into industrial automation systems.
The drive can be incorporated into an architecture where motor control is coordinated with other equipment.
Typical information exchanged between the drive and automation system may include:
This type of integration is valuable in automated production systems because it allows the drive to become part of the overall machine-control strategy rather than operating as an isolated component.
The 20G14TF330AN0NNNNN is well suited to large conveyor applications.
Variable-speed control allows the conveyor to operate according to production requirements rather than continuously running at a fixed speed.
Controlled acceleration can also reduce mechanical stress on:
For long conveyors, controlled speed adjustment can also improve coordination between different sections of a production or material-handling system.
Large pumps are another common application for this class of drive.
A variable-speed drive can adjust pump speed according to actual process demand.
Potential applications include:
For variable-torque pump applications, reducing motor speed can provide significant energy-saving potential compared with continuously operating at full speed.
Large industrial fans and blowers can benefit from variable-speed control.
The drive can adjust airflow according to process requirements.
Applications can include:
Large compressors can require significant starting torque and carefully controlled acceleration.
The drive can provide adjustable-speed control for suitable compressor systems.
Important factors include:
The 330 A drive class is suitable for many large material-handling systems.
Potential applications include:
Mining applications generally require careful consideration of dust, ambient temperature, motor cable length, grounding, and mechanical loading.
Large manufacturing systems can use the PowerFlex 755 for coordinated variable-speed motor control.
Applications can include:
Process industries often require motors to operate at different speeds according to production conditions.
The drive can be applied to:
Its integration capabilities also make it suitable for centralized process-control systems.
The 330 A normal-duty rating makes the drive suitable for large industrial motors.
This allows the same PowerFlex 755 platform to be applied to substantially larger machinery than smaller drive configurations.
The 480 VAC three-phase configuration is compatible with a widely used industrial power class.
This simplifies integration into facilities where 480 VAC three-phase distribution is already available.
The DB transistor configuration provides a useful option for applications where controlled deceleration is important.
This is especially valuable for loads with significant inertia.
The air-cooled design provides a practical method for managing the thermal load generated by high-power switching components.
It is suitable for industrial cabinet applications where adequate airflow can be provided.
The PowerFlex 755 platform supports a broad range of motor-control applications.
This makes it useful for machines that require more than simple fixed-speed operation.
The drive can be integrated into a larger automation architecture.
This allows operating data, commands, alarms, and diagnostics to become part of the plant-control system.
Frame 6 provides a mechanical platform suitable for high-power industrial applications while remaining smaller than the very largest PowerFlex configurations.
| Industry | Typical Applications |
|---|---|
| Manufacturing | Production machinery, conveyors, pumps |
| Mining | Conveyors, crushers, fans, pumps |
| Cement | Fans, conveyors, processing equipment |
| Water Treatment | Pumps, blowers |
| Chemical Processing | Pumps, mixers, fans |
| Metals | Processing equipment, conveyors |
| Material Handling | Conveyors, feeders |
| Utilities | Pumps, fans, auxiliary machinery |
| Food Processing | Conveyors, mixers, pumps |
| General Industry | Large variable-speed machinery |
Because this is a high-current Frame 6 drive, the installation should be designed as an industrial power-electronics installation rather than as a small standalone VFD installation.
Important considerations include:
The exact mechanical dimensions and weight should be taken from the mechanical configuration and installation drawing associated with the final drive arrangement.
For catalog-level product descriptions, it is safer not to invent a single dimension or weight because the complete installation arrangement can influence the final physical configuration.
| Mechanical Parameter | Specification |
|---|---|
| Frame Size | Frame 6 |
| Mounting | Industrial cabinet / enclosure |
| Width | Configuration-dependent |
| Height | Configuration-dependent |
| Depth | Configuration-dependent |
| Overall Dimensions | Configuration-dependent |
| Mounting Clearance | Application-dependent |
| Service Clearance | Application-dependent |
| Cooling Clearance | Application-dependent |
| Net Weight | Configuration-dependent kg |
| Shipping Weight | Configuration-dependent kg |
| Mechanical Handling | Application-dependent |
For a quotation or engineering drawing, the exact dimensional drawing should always be matched to the complete catalog configuration rather than relying on a generic Frame 6 dimension.
The following models are useful alternatives or comparison models within the same high-power PowerFlex 755 family.
| Model | Input / Configuration | Current Class | Main Rating | Frame |
|---|---|---|---|---|
| 20G14TF265AN0NNNNN | AC Input / 480 VAC class | 265 A | Lower than TF330 | Frame 6 |
| 20G14TF330JN0NNNNN | DC Input / Common Bus | 330 A | Similar current class | Frame 6 |
| 20G14TF370AN0NNNNN | AC Input / 480 VAC class | 370 A | Higher capacity | Frame 6 |
| 20G14TF415AN0NNNNN | AC Input / 480 VAC class | 415 A | Higher capacity | Frame 6 |
| 20G14TF460AN0NNNNN | AC Input / 480 VAC class | 460 A | Higher capacity | Frame 6 |
These models are particularly useful when the application needs a similar PowerFlex 755 platform but requires either a different current rating or a different input architecture. The catalog family includes the TF265, TF330, TF370, TF415, and TF460 configurations in both AN and JN variants.
| Model | Normal-Duty Current | Configuration | Relative Capacity | Typical Selection Reason |
|---|---|---|---|---|
| 20G14TF265AN0NNNNN | 265 A class | AC Input | Lower | Smaller motor/load |
| 20G14TF330AN0NNNNN | 330 A | AC Input | Reference model | Large industrial motor |
| 20G14TF330JN0NNNNN | 330 A class | DC Input | Similar | Common-bus system |
| 20G14TF370AN0NNNNN | 370 A | AC Input | Higher | Increased motor current |
| 20G14TF415AN0NNNNN | 415 A | AC Input | Higher | Larger motor/load |
| 20G14TF460AN0NNNNN | 460 A | AC Input | Higher | Very high-current application |
The following models represent useful reference points from the broader PowerFlex drive range and are suitable for comparison with the 20G14TF330AN0NNNNN.
| Model | Product Series | Voltage Class | Current Class | Application Level |
|---|---|---|---|---|
| 20G11GD034AA0NNNNN | PowerFlex 755 | 480 VAC class | 34 A | Medium industrial machinery |
| 20G11GD052AA0NNNNN | PowerFlex 755 | 480 VAC class | 52 A | Medium industrial machinery |
| 20G11GD077AA0NNNNN | PowerFlex 755 | 480 VAC class | 77 A | Medium/high industrial machinery |
| 20G14TE510JN0NNNNN | PowerFlex 755 | 600 VAC class | 510 A class | High-power industrial systems |
| 20G14TD740JN0NNNNN | PowerFlex 755 | High-voltage class | 740 A class | Very high-power systems |
| Model | Voltage Class | Current Level | General Application | Relative Size |
|---|---|---|---|---|
| 20G11GD034AA0NNNNN | 480 VAC | 34 A | Medium machinery | Smaller |
| 20G11GD052AA0NNNNN | 480 VAC | 52 A | Medium machinery | Smaller |
| 20G11GD077AA0NNNNN | 480 VAC | 77 A | Medium/high machinery | Medium |
| 20G14TE510JN0NNNNN | 600 VAC | 510 A class | Large industrial machinery | Large |
| 20G14TD740JN0NNNNN | High-voltage class | 740 A class | Very large industrial systems | Very large |
The difference between the 20G14TF330AN0NNNNN and models such as 20G11GD034AA0NNNNN, 20G11GD052AA0NNNNN, and 20G11GD077AA0NNNNN is primarily the application scale.
The smaller models are suitable for lower-current motors and more compact machinery.
The TF330 configuration is intended for much larger industrial motor systems.
This makes the TF330 more appropriate when the motor current approaches several hundred amperes and when the machine requires a high-capacity drive platform.
The 20G14TF370AN0NNNNN, 20G14TF415AN0NNNNN, and 20G14TF460AN0NNNNN provide progressively higher current capacity.
This gives engineers a convenient way to remain within the same PowerFlex 755 high-power family when the motor size increases.
The basic selection principle is straightforward:
The final selection should always be based on actual motor nameplate current, duty cycle, overload requirement, ambient conditions, and application characteristics.
The model provides a useful balance between high current capacity and practical industrial installation.
It is large enough for substantial motor applications but is not positioned at the extreme upper end of the PowerFlex 755 high-current range.
For many large industrial machines, this makes the 330 A class a practical selection point.
It can provide sufficient capacity for large motors while retaining the flexibility of the PowerFlex 755 architecture.
When selecting a motor for this drive, engineers should consider more than horsepower.
Important motor information includes:
The drive should be selected according to the actual electrical and mechanical requirements of the motor and load.
A motor with a nominal rating close to 250 HP may still have a current requirement that differs from another motor of the same horsepower.
The drive can be considered for several different load types.
Examples include:
These loads can benefit from adjustable speed and process-based control.
Examples include:
These applications often require stronger torque performance across a wider operating range.
Examples include:
These applications may require careful deceleration and braking analysis.
The presence of the DB transistor makes the drive suitable for systems where dynamic braking may be required.
Dynamic braking can help manage energy generated during deceleration.
Typical situations include:
The actual braking resistor should be selected according to the required braking energy, braking time, duty cycle, and drive configuration.
Variable-speed control can improve system efficiency when the process does not require a motor to operate continuously at full speed.
This is especially relevant to:
For variable-torque applications, reducing speed can significantly reduce the power required by the mechanical system.
The actual energy savings depend on the machine design and operating profile, but variable-speed operation generally provides more control than fixed-speed operation combined with mechanical throttling.
A high-power drive should be included in a planned preventive-maintenance program.
Recommended maintenance areas include:
The cooling system deserves particular attention because restricted airflow can increase operating temperature and reduce the reliability margin of power electronics.
A typical application can be organized as follows:
Incoming 480 VAC Three-Phase Power
↓
Industrial Protection and Disconnect Equipment
↓
20G14TF330AN0NNNNN PowerFlex 755 Drive
↓
Three-Phase AC Motor
↓
Mechanical Load
The drive can simultaneously communicate with the machine-control system.
For example:
PLC / Controller
↕
Industrial Network
↕
PowerFlex 755 Drive
↕
Motor
This allows speed commands, operating status, alarms, diagnostics, and other process information to be integrated into the overall automation system.
| Advantage | Description |
|---|---|
| High Current | 330 A normal-duty class |
| High Power | 250 HP normal-duty class |
| Heavy-Duty Capability | 200 HP heavy-duty class |
| 480 VAC Input | Suitable for common industrial power systems |
| Three-Phase | Designed for industrial motor applications |
| AC Precharge | Controlled DC-link charging |
| Dynamic Braking | DB transistor configuration |
| Air Cooling | Suitable for high-power cabinet installations |
| Frame 6 | High-capacity industrial mechanical platform |
| Filtering | Helps manage electrical interference |
| CM Jumper | Factory-configured common-mode arrangement |
| PowerFlex 755 Platform | Broad industrial motor-control capability |
| Network Integration | Suitable for automation-system integration |
| Wide Application Range | Pumps, fans, conveyors, compressors, process equipment |
| Category | Specification |
|---|---|
| Model | 20G14TF330AN0NNNNN |
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750 Series |
| Product Series | PowerFlex 755 |
| Product Type | AC Drive |
| Input Voltage | 480 VAC |
| Input Phase | Three Phase |
| Input Configuration | AC Input with Precharge |
| Normal-Duty Current | 330 A |
| Normal-Duty Power | 250 HP |
| Normal-Duty Approx. Power | Approx. 186 kW |
| Heavy-Duty Power | 200 HP |
| Heavy-Duty Approx. Power | Approx. 149 kW |
| Frame | Frame 6 |
| Cooling | Air Cooled |
| Enclosure | Open Type |
| Filtering | Filtered |
| CM Jumper | Installed |
| Dynamic Braking | DB Transistor |
| HIM | Blank / No HIM |
| Motor Application | Industrial three-phase motors |
| Communication | Industrial automation network integration |
| Width | Configuration-dependent |
| Height | Configuration-dependent |
| Depth | Configuration-dependent |
| Overall Dimensions | Configuration-dependent |
| Net Weight | Configuration-dependent kg |
| Shipping Weight | Configuration-dependent kg |
| Main Application | Large industrial motor control |
The Allen-Bradley 20G14TF330AN0NNNNN is a high-capacity PowerFlex 755 AC drive designed for large industrial motor applications.
Its 480 VAC three-phase input, 330 A normal-duty current rating, 250 HP normal-duty rating, 200 HP heavy-duty rating, Frame 6 construction, air-cooled design, AC input with precharge, filtered configuration, CM jumper installation, and dynamic-braking transistor make it a strong choice for demanding industrial machinery.
The drive is particularly suitable for large conveyors, pumps, fans, blowers, compressors, process machinery, mining equipment, material-handling systems, and manufacturing equipment.
Its biggest practical strengths are the high current capacity, industrial-grade PowerFlex 755 platform, flexible motor-control architecture, dynamic-braking capability, and suitability for integration into a larger automation system.
When selecting a replacement or alternative, the most important factors are the motor’s actual full-load current, voltage, duty cycle, overload requirement, acceleration and deceleration characteristics, braking requirements, environmental conditions, and available cabinet space.
For applications requiring a lower current level, the 20G14TF265AN0NNNNN is a natural related option.
For applications requiring greater capacity, the 20G14TF370AN0NNNNN, 20G14TF415AN0NNNNN, and 20G14TF460AN0NNNNN provide progressively higher current classes within the same general PowerFlex 755 family.
For common-DC-bus applications, the corresponding JN configurations should be evaluated separately because their input architecture is different from the AN AC-input configuration.
Overall, the 20G14TF330AN0NNNNN is a strong high-power industrial drive for users who need a reliable 480 VAC variable-speed motor-control solution in a large automated machine or process system.