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The 20G14TE395JN0NNNNN is a high-power industrial variable frequency drive designed for controlling large three-phase AC motors in demanding industrial applications. It belongs to the PowerFlex 755 series, which is part of the broader PowerFlex 750 Series of industrial AC drives.
This model is designed for applications where conventional fixed-speed motor operation is not sufficient. It allows the motor speed and operating conditions to be adjusted according to the requirements of the process. This makes it suitable for equipment such as large pumps, industrial fans, blowers, conveyors, compressors, mixers, and other high-power motor-driven systems.
The drive uses a DC input with precharge configuration and provides controlled three-phase AC output to the connected motor. Its 395 A output-current class places it in the high-power range of the PowerFlex 755 platform.
Depending on the selected duty rating and application requirements, the drive is suitable for approximately 450 HP Light Duty, 400 HP Normal Duty, and 350 HP Heavy Duty motor applications.
The product is designed for large industrial electrical installations rather than small machine-mounted applications. Its Frame 8 construction requires appropriate electrical space, mechanical support, cooling, cable routing, grounding, and maintenance access.
| Item | Description |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750 Series |
| Product Series | PowerFlex 755 |
| Model | 20G14TE395JN0NNNNN |
| Product Type | High-Power Variable Frequency Drive |
| Drive Type | AC Motor Drive |
| Application Class | Industrial Motor Control |
| Frame | Frame 8 |
| Cooling Method | Forced Air |
| Input Configuration | DC Input with Precharge |
| Output | Three-Phase Variable-Frequency AC |
| Enclosure | Open Type |
| Interface Configuration | Blank / No Local HIM |
| Dynamic Braking | None |
| Filtering | Filtered Configuration |
The PowerFlex 755 series is intended for industrial motor-control applications where high power capacity, adjustable motor speed, controlled acceleration, and integration into larger automation systems are required.
| Parameter | Specification |
|---|---|
| Model | 20G14TE395JN0NNNNN |
| Product Series | PowerFlex 755 |
| Product Family | PowerFlex 750 Series |
| Product Type | Variable Frequency AC Drive |
| Input Type | DC Input with Precharge |
| Voltage Class | 600 VAC Class |
| DC Bus Class | Approximately 810 VDC Class |
| Output System | Three Phase |
| Output Current | 395 A |
| Light-Duty Capacity | Approximately 450 HP |
| Normal-Duty Capacity | Approximately 400 HP |
| Heavy-Duty Capacity | Approximately 350 HP |
| Frame Size | Frame 8 |
| Cooling Method | Forced Air |
| Enclosure Type | Open Type |
| Filtering | Filtered |
| Common-Mode Configuration | CM Jumper Installed |
| Dynamic Braking | None |
| Local HIM | Blank / No HIM |
| Dimensions | Configuration-dependent, Frame 8 high-power class* |
| Approximate Weight (kg) | Configuration-dependent, approximately 300–400 kg class* |
*The exact physical dimensions and weight of high-power Frame 8 equipment can vary depending on the complete mechanical configuration, installation arrangement, cabinet design, and optional equipment. Exact values should be confirmed before lifting, transportation, or installation.
One of the important characteristics of this drive is its ability to support different duty categories.
| Duty Category | Continuous Current Class | Approximate Motor Capacity | Typical Applications |
|---|---|---|---|
| Light Duty | 395 A Class | 450 HP | Pumps and Fans |
| Normal Duty | 395 A Class | 400 HP | General Industrial Equipment |
| Heavy Duty | 395 A Class | 350 HP | Higher-Torque Applications |
The Light-Duty category is generally suitable for variable-torque loads, especially large centrifugal pumps and fans.
The Normal-Duty category is suitable for a broad range of industrial applications requiring stable motor control.
The Heavy-Duty category is intended for applications where higher torque requirements or more demanding overload conditions are present.
The final drive selection should always be based on motor current, torque requirements, acceleration requirements, load inertia, operating cycle, and environmental conditions.
The drive receives electrical energy through its DC input arrangement and converts this energy into controlled three-phase AC output for the motor.
The output frequency supplied by the drive determines the operating speed of the motor.
By adjusting the output frequency, the drive allows the motor to operate at different speeds rather than continuously operating at one fixed speed.
This is particularly useful in industrial systems where the production process does not always require maximum motor speed.
For example, a pumping system may require different flow rates during different production periods.
A ventilation system may require different airflow levels.
A conveyor may require different speeds according to the material-handling process.
A variable frequency drive allows these operating conditions to be controlled electrically.
The 20G14TE395JN0NNNNN uses a DC input with precharge configuration.
High-power drives contain internal DC-link components that require controlled energization.
The precharge arrangement helps manage the charging process of the DC-link section before normal drive operation.
This type of configuration can be used in engineered DC-bus and high-power industrial drive systems.
In larger installations, the drive may form part of a coordinated electrical architecture involving multiple motor-control components.
The overall electrical system should be designed to ensure that the DC input, protection equipment, grounding system, and connected loads are compatible.
The drive belongs to the Frame 8 mechanical category.
Frame 8 equipment is intended for substantial industrial applications.
Compared with smaller drives, installation planning becomes much more important at this power level.
Important installation factors include:
Because this is a large high-power drive, the complete equipment should be handled using suitable mechanical lifting methods.
| Mechanical Parameter | Reference Specification |
|---|---|
| Frame Category | Frame 8 |
| Cooling | Forced Air |
| Enclosure | Open Type |
| Width | Approximately 600–800 mm class* |
| Depth | Approximately 600–800 mm class* |
| Height | Approximately 2,000–2,500 mm class* |
| Weight (kg) | Approximately 300–400 kg class* |
| Installation | Industrial Electrical System |
| Handling | Mechanical Lifting Recommended |
*These dimensions and weight values are planning-level reference ranges for the high-power Frame 8 configuration. The final physical values can vary according to the complete equipment configuration.
Before installing the drive, the exact dimensions should be confirmed to ensure that sufficient cabinet space and service clearance are available.
Before lifting the equipment, the actual shipping and installed weight should also be confirmed.
Large pumping systems are among the most common applications for high-power variable frequency drives.
The motor speed can be adjusted according to the required flow or pressure.
Typical applications include:
Controlled acceleration can also reduce mechanical stress on the pump, coupling, motor, and connected pipework.
Large fans frequently operate under changing airflow requirements.
A variable frequency drive allows the fan speed to be adjusted according to the actual ventilation requirement.
Typical applications include:
Variable-speed operation provides greater flexibility than operating a fan continuously at maximum speed.
Industrial blowers can require controlled motor speed to regulate airflow and pressure.
The drive can be considered for applications involving:
The final selection should consider the mechanical load profile and required operating range.
Large conveyor systems can involve significant mechanical inertia.
A controlled acceleration profile can reduce sudden mechanical shock during starting.
This can help reduce stress on:
The Heavy-Duty rating should be considered when the conveyor has high starting torque or demanding overload requirements.
Large industrial compressors may require high motor capacity.
The drive can provide adjustable motor speed according to changing process requirements.
Potential applications include:
The final selection depends on the compressor type, torque profile, acceleration requirement, and operating cycle.
Mixing equipment can experience changing mechanical resistance.
The material viscosity may change during processing.
A variable frequency drive provides adjustable speed and controlled acceleration for suitable mixer and agitator applications.
High-torque applications should be evaluated according to the appropriate duty category.
The drive can also be used in high-power material-handling applications.
Typical examples include:
Adjustable motor speed can help coordinate material movement with the overall production process.
The 395 A output-current class provides substantial capacity for large industrial motors.
The drive can support approximately 450 HP Light Duty, 400 HP Normal Duty, and 350 HP Heavy Duty applications.
This makes it suitable for substantial industrial equipment.
The drive allows the motor speed to be adjusted according to process requirements.
This can improve control of:
Large motors can create significant mechanical stress when started abruptly.
The drive provides controlled acceleration and deceleration.
This can help reduce mechanical shock on motors and connected equipment.
Components that may benefit include:
The drive can be applied to different categories of industrial loads.
A large fan and a heavily loaded conveyor may require different duty characteristics.
The available duty ratings allow the drive to be considered for different application types when the electrical and mechanical requirements are correctly matched.
The Frame 8 platform is intended for substantial industrial installations.
It is suitable for systems where the motor drive is an important part of the overall electrical and production infrastructure.
The drive uses forced-air cooling to manage the heat generated by high-power electronic components.
Correct airflow remains important.
The surrounding electrical installation should provide sufficient cooling capacity and avoid unnecessary airflow restrictions.
| Model | Product Series | Current Class | Approximate Capacity | Application Position |
|---|---|---|---|---|
| 20G14TE295JN0NNNNN | PowerFlex 755 | 295 A | Approximately 300 HP Normal Duty | Lower Capacity Alternative |
| 20G14TE355JN0NNNNN | PowerFlex 755 | 355 A | Approximately 350 HP Normal Duty | Medium High-Power Alternative |
| 20G14TE435JN0NNNNN | PowerFlex 755 | 435 A | Approximately 450 HP Normal Duty | Higher Capacity Alternative |
| 20G14TE460JN0NNNNN | PowerFlex 755 | 460 A | Approximately 500 HP Normal Duty | High Capacity Alternative |
| 20G14TE510JN0NNNNN | PowerFlex 755 | 510 A | Approximately 500 HP Normal Duty | Very High Capacity Alternative |
The 20G14TE295JN0NNNNN is suitable when a lower output-current capacity is required.
The 20G14TE355JN0NNNNN provides a useful alternative for applications below the 395 A class.
The 20G14TE435JN0NNNNN provides additional capacity for larger motors.
The 20G14TE460JN0NNNNN and 20G14TE510JN0NNNNN are intended for applications requiring substantially higher power capacity.
| Model | Series | Current Class | Approximate Normal-Duty Capacity | Relative Size |
|---|---|---|---|---|
| 20G14TE295JN0NNNNN | PowerFlex 755 | 295 A | 300 HP | Lower |
| 20G14TE355JN0NNNNN | PowerFlex 755 | 355 A | 350 HP | Medium |
| 20G14TE395JN0NNNNN | PowerFlex 755 | 395 A | 400 HP | Reference Model |
| 20G14TE435JN0NNNNN | PowerFlex 755 | 435 A | 450 HP | Higher |
| 20G14TE460JN0NNNNN | PowerFlex 755 | 460 A | 500 HP | High |
| 20G14TE510JN0NNNNN | PowerFlex 755 | 510 A | 500 HP Class | Very High |
The requested model occupies the 395 A high-power position and is suitable for applications requiring more capacity than the 295 A and 355 A versions while remaining below the larger high-current configurations.
| Model | Product Series | Main Parameters | Typical Application |
|---|---|---|---|
| 20G11GD034AA0NNNNN | PowerFlex 755 | 34 A class, industrial motor drive | General Machinery |
| 20G11GD052AA0NNNNN | PowerFlex 755 | 52 A class, three-phase drive | Pumps and Process Equipment |
| 20G11GD077AA0NNNNN | PowerFlex 755 | 77 A class, medium-power motor control | Industrial Machinery |
| 20G14TD355AN0NNNNN | PowerFlex 755 | 355 A class, high-power configuration | Large Industrial Motors |
| 20G14TD740AN0NNNNN | PowerFlex 755 | 740 A class, very high-power configuration | Major Industrial Equipment |
These models demonstrate the broad capacity range available within the same general industrial drive family.
Lower-current models are suitable for machine-level applications and medium industrial equipment.
Higher-current models are intended for large motors and substantial industrial systems.
| Installation Item | Main Requirement |
|---|---|
| Power System | Confirm compatibility with DC input |
| Motor Current | Match to the required duty rating |
| Motor Power | Confirm actual motor capacity |
| Cabinet Space | Provide sufficient physical clearance |
| Cooling | Ensure adequate forced airflow |
| Grounding | Use appropriate industrial grounding |
| Power Wiring | Select according to current requirements |
| Control Wiring | Separate from high-power wiring where practical |
| Service Access | Allow adequate maintenance space |
| Structural Support | Confirm installation capacity |
| Weight | Plan for approximately 300–400 kg class handling |
| Lifting | Use suitable mechanical equipment |
The installation should be planned as a complete electrical and mechanical system.
A high-power drive should not be treated in the same manner as a small control-panel component.
High-power drives generate substantial heat during operation.
The cooling arrangement must therefore be considered during the design of the electrical installation.
Important factors include:
Restricted airflow can increase the internal operating temperature.
Regular inspection of cooling passages and ventilation components is recommended.
Proper grounding is important for high-power motor-drive systems.
The drive, motor, enclosure, and associated equipment should be incorporated into a suitable grounding and bonding arrangement.
Power cables and control cables should be routed separately where practical.
Good installation practices can help reduce electrical interference and improve the stability of the complete motor-control system.
Routine maintenance should focus on the electrical and cooling systems.
Typical inspection areas include:
If repeated faults occur, the complete system should be investigated.
The cause may be associated with the motor, mechanical load, electrical supply, cooling system, or installation conditions.
| Advantage | Description |
|---|---|
| High Output Capacity | 395 A high-power current class |
| Large Motor Capability | Up to approximately 450 HP Light Duty |
| Adjustable Speed | Motor speed can match process demand |
| Controlled Acceleration | Helps reduce mechanical shock |
| Flexible Duty Rating | Supports different industrial load types |
| DC Input Architecture | Suitable for engineered DC-bus applications |
| Frame 8 Platform | Designed for substantial industrial installations |
| Forced-Air Cooling | Suitable for high-power thermal requirements |
| Wide Application Range | Pumps, fans, conveyors, compressors, and process equipment |
| Industrial Design | Suitable for demanding production environments |
| Category | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Series | PowerFlex 755 |
| Product Family | PowerFlex 750 Series |
| Model | 20G14TE395JN0NNNNN |
| Product Type | High-Power Variable Frequency Drive |
| Input | DC Input with Precharge |
| Output | Three-Phase Variable-Frequency AC |
| Voltage Class | 600 VAC Class |
| Output Current | 395 A |
| Light-Duty Capacity | Approximately 450 HP |
| Normal-Duty Capacity | Approximately 400 HP |
| Heavy-Duty Capacity | Approximately 350 HP |
| Frame | Frame 8 |
| Cooling | Forced Air |
| Enclosure | Open Type |
| Dynamic Braking | None |
| Local Interface | Blank / No HIM |
| Dimensions | Approximately 600–800 × 600–800 × 2,000–2,500 mm class* |
| Weight (kg) | Approximately 300–400 kg class* |
| Main Applications | Pumps, Fans, Blowers, Conveyors, Compressors, Mixers, and Process Machinery |
*Dimensions and weight are configuration-dependent reference values and should be confirmed for the final equipment before mechanical installation.
The 20G14TE395JN0NNNNN is a high-power PowerFlex 755 variable frequency drive designed for large industrial motor-control applications.
Its 395 A current class and approximate motor capacity of 450 HP in Light Duty, 400 HP in Normal Duty, and 350 HP in Heavy Duty make it suitable for demanding industrial systems.
The DC-input-with-precharge arrangement provides a configuration suitable for high-power electrical architectures, while the Frame 8 construction is intended for substantial industrial installations.
The drive is particularly suitable for large pumps, industrial fans, blowers, conveyors, compressors, mixers, and material-handling equipment.
Its major advantages include high output capacity, adjustable motor speed, controlled acceleration, flexible duty capability, forced-air cooling, and suitability for large industrial applications.
For mechanical planning, the equipment should be treated as a large high-power drive assembly. Approximate planning dimensions are within the 600–800 mm × 600–800 mm × 2,000–2,500 mm class, with an approximate 300–400 kg weight class, although the exact final dimensions and weight depend on the complete installed configuration.