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The 20G14TE460AN0NNNNN is a high-power industrial variable frequency drive designed for large three-phase AC motors and demanding industrial machinery.
It belongs to the PowerFlex 755 series within the PowerFlex 750 Series product family. The drive is intended for applications where large motor capacity, adjustable speed, controlled acceleration, and reliable operation are required.
With a high-current configuration, this model is particularly suitable for large pumps, fans, blowers, conveyors, compressors, mixers, material-handling equipment, and other process machinery.
The drive uses a DC input with precharge configuration and an air-cooled high-power design. It is intended to be installed as part of an engineered industrial electrical system rather than as a small standalone machine drive.
The model is positioned in the upper range of the high-power PowerFlex 755 configurations. Its approximately 460 A Normal-Duty current class makes it suitable for substantial motor applications, with the actual usable motor horsepower determined by duty rating, motor voltage, motor nameplate current, overload requirements, and application characteristics.
| Item | Description |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750 Series |
| Product Series | PowerFlex 755 |
| Model | 20G14TE460AN0NNNNN |
| Product Type | High-Power Variable Frequency AC Drive |
| Drive Category | Industrial AC Motor Drive |
| Input Configuration | DC Input with Precharge |
| Output | Three-Phase Variable-Frequency AC |
| Frame | Frame 8 |
| Cooling | Air Cooled / Forced Air |
| Enclosure | Open Type |
| Dynamic Braking | None |
| Filtering | Filtered Configuration |
| Local HIM | Blank / No HIM |
| Application Class | High-Power Industrial Motor Control |
The PowerFlex 755 platform is designed for applications where the motor must operate at adjustable speed and where the drive needs to be integrated into a larger industrial control system.
The platform is suitable for applications ranging from process equipment to large rotating machinery.
| Parameter | Specification |
|---|---|
| Model | 20G14TE460AN0NNNNN |
| Product Family | PowerFlex 750 Series |
| Product Series | PowerFlex 755 |
| Product Type | High-Power AC Drive |
| Input Type | DC Input with Precharge |
| Voltage Class | 600 V AC Class |
| DC Bus Class | Approximately 810 VDC Class |
| Output | Three-Phase Variable-Frequency AC |
| Current Class | 460 A |
| Light-Duty Current | Approximately 510 A |
| Normal-Duty Current | Approximately 460 A |
| Heavy-Duty Current | Approximately 395 A |
| Light-Duty Motor Capacity | Approximately 500 HP |
| Normal-Duty Motor Capacity | Approximately 500 HP |
| Heavy-Duty Motor Capacity | Approximately 400 HP |
| Frame Size | Frame 8 |
| Cooling Method | Forced Air |
| Enclosure Type | Open Type |
| Dynamic Braking | None |
| Filtering | Filtered |
| Common-Mode Configuration | CM Jumper Installed |
| Local Operator Interface | Blank / No HIM |
| Installation | Industrial Electrical System |
| Dimensions | Configuration-dependent Frame 8 high-power assembly |
| Weight (kg) | Configuration-dependent; confirm actual configured weight |
The 460 A rating places this model among the larger high-power configurations of the PowerFlex 755 platform.
The actual motor size should not be selected solely from horsepower. Motor full-load current, operating voltage, duty cycle, overload requirements, acceleration time, torque characteristics, ambient temperature, and altitude should all be considered.
The drive can be evaluated according to different application duty categories.
| Duty Category | Approximate Current | Approximate Motor Capacity | Typical Application |
|---|---|---|---|
| Light Duty | 510 A | 500 HP | Pumps, Fans, Blowers |
| Normal Duty | 460 A | 500 HP | General Industrial Equipment |
| Heavy Duty | 395 A | 400 HP | Higher-Torque Machinery |
Light-Duty operation is particularly relevant to variable-torque equipment such as centrifugal pumps and fans.
These loads generally have increasing torque requirements as speed increases.
Normal Duty provides a broad operating range for general industrial motor applications.
It can be considered for process equipment, conveyors, machinery, and other applications where the motor operates under relatively predictable loading.
Heavy Duty is intended for more demanding applications where greater overload capability and higher torque performance are required.
Examples can include heavily loaded conveyors, mixers, and other machinery with significant starting or operating torque requirements.
The actual drive selection should always be based on the motor’s nameplate current and application duty rather than horsepower alone.
The 20G14TE460AN0NNNNN controls an AC motor by producing a controlled three-phase output.
The drive adjusts output frequency and voltage according to the motor-control requirements.
Changing the output frequency changes the motor operating speed.
This allows the connected machine to operate according to the actual production requirement instead of operating continuously at one fixed speed.
For example, a pump may only need 70% speed during part of the production cycle.
A fan may need reduced speed when the ventilation demand is lower.
A conveyor may need to accelerate gradually before reaching production speed.
A mixer may need different speeds during different stages of processing.
The drive provides the electrical control needed to accommodate these operating conditions.
The 20G14TE460AN0NNNNN uses a DC input with precharge arrangement.
High-power drive systems contain a DC-link section that must be energized in a controlled manner.
The precharge arrangement manages the initial charging process before normal operation.
This type of architecture is useful in engineered high-power systems where a DC bus or coordinated drive electrical architecture is required.
The DC input system must be designed together with the appropriate electrical protection, isolation, grounding, bus components, and control equipment.
The drive uses a Frame 8 high-power mechanical platform.
Frame 8 equipment is intended for large industrial installations.
The installation therefore requires considerably more planning than a compact motor drive.
Important factors include:
The physical installation should be planned around the complete configured drive assembly.
| Mechanical Parameter | Specification |
|---|---|
| Frame | Frame 8 |
| Cooling | Forced Air |
| Enclosure | Open Type |
| Installation Type | Industrial Electrical Cabinet/System |
| Width | Configuration-dependent |
| Depth | Configuration-dependent |
| Height | Configuration-dependent |
| Overall Dimensions | Dependent on final mechanical configuration |
| Weight (kg) | Configuration-dependent |
| Handling | Mechanical lifting equipment recommended |
| Service Clearance | Required |
| Cabinet Cooling | Adequate airflow required |
For this high-power model, the exact dimensions and weight should be confirmed from the final configured equipment before cabinet fabrication, transportation, structural calculations, or lifting.
The weight can vary depending on the complete configuration and associated hardware.
Because this is a large industrial drive, mechanical handling equipment should be used rather than manual lifting.
The drive is well suited to large pumping applications.
Typical uses include:
Variable-speed operation allows the pump to respond to changing flow and pressure requirements.
Instead of continuously running the motor at maximum speed, the drive can adjust the motor speed according to actual process demand.
Large industrial fans can require substantial motor power.
The drive can regulate fan speed according to airflow requirements.
Typical applications include:
Variable-speed operation can provide better process control than fixed-speed operation.
Blowers are commonly used in industrial processes where airflow and pressure must be controlled.
Potential applications include:
The motor duty should be evaluated carefully because blower torque characteristics vary according to the equipment design.
Large conveyors can have significant inertia and starting torque requirements.
The drive can provide controlled acceleration to reduce mechanical shock.
This can be beneficial for:
The Heavy-Duty rating should be considered when the conveyor has substantial starting or operating torque requirements.
Large industrial compressors can require considerable motor capacity.
The drive can be considered for compatible compressor applications where adjustable motor speed is desirable.
Potential uses include:
The compressor’s torque curve and operating cycle should be reviewed before selecting the final duty rating.
Industrial mixers can experience changing load conditions.
Material viscosity may change throughout the production process.
The drive allows motor speed to be adjusted to suit different stages of the mixing operation.
Applications can include:
High-torque applications should be evaluated according to actual motor current and overload requirements.
The 460 A Normal-Duty current class provides substantial motor-control capability.
This makes the drive suitable for large industrial motors and high-capacity machinery.
It can be considered when smaller drive configurations do not provide sufficient current capacity.
The drive can support large motor applications depending on the selected duty category.
Approximate capacity classes are:
The actual selection should be based on motor nameplate current and operating conditions.
The drive allows the motor speed to be changed according to process requirements.
This is particularly useful in:
Large motors can impose significant mechanical stress during direct starting.
The drive allows controlled acceleration, which can provide smoother motor starting.
This can help reduce mechanical shock on:
The drive is suitable for a broad range of large industrial equipment.
It can be used in:
The DC input with precharge arrangement allows the drive to be considered for suitable high-power DC electrical architectures.
This can be particularly useful when multiple drive systems or engineered DC-bus arrangements are part of the overall electrical design.
High-power electronic equipment generates considerable heat.
The forced-air cooling arrangement provides active heat removal from the drive.
Proper ventilation and thermal design remain essential for reliable operation.
| Model | Series | Current Class | Approximate Capacity | Application Position |
|---|---|---|---|---|
| 20G14TE295AN0NNNNN | PowerFlex 755 | 295 A | Up to approximately 300 HP ND | Lower Capacity |
| 20G14TE355AN0NNNNN | PowerFlex 755 | 355 A | Up to approximately 350 HP ND | Medium Capacity |
| 20G14TE395AN0NNNNN | PowerFlex 755 | 395 A | Up to approximately 400 HP ND | Lower High-Power |
| 20G14TE435AN0NNNNN | PowerFlex 755 | 435 A | Up to approximately 450 HP ND | Closely Related |
| 20G14TE510AN0NNNNN | PowerFlex 755 | 510 A | Up to approximately 500 HP ND | Higher Capacity |
These models provide a useful selection range around the 460 A configuration.
The 20G14TE295AN0NNNNN is suitable when the application requires less current.
The 20G14TE355AN0NNNNN provides a mid-range high-power option.
The 20G14TE395AN0NNNNN is another closely positioned alternative.
The 20G14TE435AN0NNNNN is particularly close to the requested model in terms of overall capacity.
The 20G14TE510AN0NNNNN is suitable when additional output-current capacity is required.
| Model | Light-Duty Rating | Normal-Duty Rating | Heavy-Duty Rating | Frame |
|---|---|---|---|---|
| 20G14TE295AN0NNNNN | 355 A / 350 HP | 295 A / 300 HP | 272 A / 250 HP | Frame 8 |
| 20G14TE355AN0NNNNN | 395 A / 400 HP | 355 A / 350 HP | 295 A / 300 HP | Frame 8 |
| 20G14TE395AN0NNNNN | 435 A / 450 HP | 395 A / 400 HP | 329 A / 350 HP | Frame 8 |
| 20G14TE435AN0NNNNN | 460 A / 500 HP | 435 A / 450 HP | 355 A / 350 HP | Frame 8 |
| 20G14TE460AN0NNNNN | 510 A / 500 HP | 460 A / 500 HP | 395 A / 400 HP | Frame 8 |
| 20G14TE510AN0NNNNN | 545 A / 550 HP | 510 A / 500 HP | 425 A / 450 HP | Frame 8 |
The 20G14TE460AN0NNNNN sits in the upper portion of this high-power range.
It provides a significant increase in capacity compared with the 295 A, 355 A, and 395 A models while remaining below the 510 A configuration.
| Model | Product Series | Current Class | General Capacity | Typical Application |
|---|---|---|---|---|
| 20G11GD034AA0NNNNN | PowerFlex 755 | 34 A | Small to Medium | General Machinery |
| 20G11GD052AA0NNNNN | PowerFlex 755 | 52 A | Medium | Pumps and Process Equipment |
| 20G11GD077AA0NNNNN | PowerFlex 755 | 77 A | Medium High | Industrial Motor Control |
| 20G14TD545JN0NNNNN | PowerFlex 755 | 545 A | Very High | Large Industrial Motors |
| 20G14TD740JN0NNNNN | PowerFlex 755 | 740 A | Extremely High | Major Industrial Equipment |
These models cover a broad range of industrial motor-control requirements.
The lower-current versions are more appropriate for smaller machines and medium-sized process equipment.
The high-current versions are intended for large industrial motors and heavy process machinery.
| Model | Current Class | General Application | Installation Level |
|---|---|---|---|
| 20G11GD034AA0NNNNN | 34 A | General Machinery | Machine Level |
| 20G11GD052AA0NNNNN | 52 A | Pumps and Process Equipment | Machine / Process |
| 20G11GD077AA0NNNNN | 77 A | Medium Industrial Equipment | Process Level |
| 20G14TD545JN0NNNNN | 545 A | Large Industrial Motors | High-Power |
| 20G14TD740JN0NNNNN | 740 A | Major Industrial Systems | Very High-Power |
The 20G14TE460AN0NNNNN can be considered for many industrial sectors where large motors are used.
Large pumps, circulation systems, aeration equipment, and water-treatment machinery can benefit from variable-speed motor control.
Large conveyors, fans, pumps, and material-handling systems often require substantial motor power and controlled acceleration.
Cement production uses large fans, conveyors, pumps, crushers, and process equipment.
Industrial fans, pumps, conveyors, cooling systems, and other high-power rotating machinery can require large variable frequency drives.
Pumps, mixers, blowers, and process equipment often require adjustable motor speed.
Large production machinery can use variable-speed motor control to coordinate equipment with production requirements.
| Installation Area | Recommended Consideration |
|---|---|
| Electrical Input | Confirm DC input compatibility |
| Motor Voltage | Match motor and drive voltage class |
| Motor Current | Verify motor nameplate current |
| Duty Rating | Select according to actual load |
| Cooling | Ensure sufficient airflow |
| Cabinet | Provide adequate physical space |
| Grounding | Provide suitable grounding and bonding |
| Cable Routing | Separate power and control wiring where practical |
| Service Clearance | Provide sufficient maintenance access |
| Structural Support | Verify equipment loading |
| Weight (kg) | Confirm actual configured weight |
| Lifting | Use suitable mechanical lifting equipment |
The installation environment should be kept within the applicable operating conditions for the drive.
The surrounding equipment should also be designed to prevent excessive heat, dust accumulation, moisture, and restricted airflow.
Thermal management is especially important for high-power drives.
The drive produces heat during normal operation, and the cooling system must continuously remove this heat.
The installation should provide:
Dust accumulation can restrict airflow and reduce cooling effectiveness.
Regular inspection and cleaning should therefore form part of routine maintenance.
A high-power motor-drive installation should use appropriate grounding and bonding practices.
The drive enclosure, motor frame, cabinet, and associated equipment should be incorporated into the industrial grounding system.
Power cables and control cables should be routed carefully.
Where possible, high-power motor cables should be separated from sensitive control and communication wiring.
Proper cable installation can help reduce unwanted electrical interference and improve system reliability.
The most important information for selecting a drive is the motor nameplate data.
The following information should be checked:
| Motor Parameter | Why It Matters |
|---|---|
| Rated Voltage | Must match the drive application |
| Full-Load Current | Critical for drive sizing |
| Rated Power | Determines approximate capacity |
| Rated Frequency | Determines normal operating frequency |
| Speed | Important for application matching |
| Power Factor | Important for electrical loading |
| Efficiency | Relevant to system performance |
| Starting Torque | Important for high-inertia loads |
| Overload Requirement | Determines appropriate duty rating |
| Motor Insulation | Important for inverter-fed applications |
A motor with a particular horsepower rating does not automatically require a specific drive.
The motor’s actual full-load current and application duty should be used for final selection.
Routine inspection can help maintain reliable operation.
Important maintenance areas include:
Repeated overcurrent, overtemperature, or DC-bus-related faults should be investigated rather than simply reset.
A recurring fault may originate from the motor, mechanical equipment, power system, cooling system, or installation conditions.
| Advantage | Description |
|---|---|
| High Current Capability | 460 A Normal-Duty class |
| Large Motor Support | Approximately 500 HP Normal-Duty class |
| Adjustable Speed | Flexible process control |
| Controlled Starting | Reduced mechanical shock |
| High-Power Architecture | Suitable for large industrial systems |
| DC Input with Precharge | Suitable for compatible DC electrical systems |
| Forced-Air Cooling | Designed for high-power thermal requirements |
| Frame 8 | Large industrial mechanical platform |
| Wide Application Range | Pumps, fans, conveyors, blowers, compressors |
| Industrial Flexibility | Suitable for many process industries |
| Category | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750 Series |
| Product Series | PowerFlex 755 |
| Model | 20G14TE460AN0NNNNN |
| Product Type | High-Power Variable Frequency AC Drive |
| Input | DC Input with Precharge |
| Output | Three-Phase Variable-Frequency AC |
| Voltage Class | 600 V AC Class |
| Current Class | 460 A |
| Light-Duty Current | Approximately 510 A |
| Normal-Duty Current | Approximately 460 A |
| Heavy-Duty Current | Approximately 395 A |
| Light-Duty Motor Capacity | Approximately 500 HP |
| Normal-Duty Motor Capacity | Approximately 500 HP |
| Heavy-Duty Motor Capacity | Approximately 400 HP |
| Frame | Frame 8 |
| Cooling | Forced Air |
| Enclosure | Open Type |
| Dynamic Braking | None |
| Filtering | Filtered |
| CM Configuration | CM Jumper Installed |
| Local Interface | Blank / No HIM |
| Dimensions | Configuration-dependent |
| Weight (kg) | Configuration-dependent |
| Main Applications | Pumps, Fans, Blowers, Conveyors, Compressors, Mixers, and Process Machinery |
The 20G14TE460AN0NNNNN is a high-power PowerFlex 755 variable frequency drive intended for large industrial motor-control applications.
Its 460 A Normal-Duty current class, approximately 500 HP Normal-Duty capacity, and Frame 8 construction make it suitable for substantial industrial equipment.
It is particularly appropriate for large pumps, fans, blowers, conveyors, compressors, mixers, material-handling systems, and other process machinery where adjustable motor speed and controlled acceleration are important.
The DC input with precharge configuration provides flexibility for appropriately engineered high-power electrical systems.
Its main advantages are high current capacity, large motor capability, adjustable speed control, controlled acceleration, flexible duty selection, forced-air cooling, and suitability for large industrial installations.
For mechanical planning, the exact dimensions and weight in kg should be confirmed for the final configured unit before transportation, lifting, cabinet fabrication, or structural installation.