• Allen Bradley 20G14TC770AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G14TC770AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G14TC770AN0NNNNN PowerFlex AC Drive
  • Allen Bradley 20G14TC770AN0NNNNN PowerFlex AC Drive
Allen-Bradley 20G14TC770AN0NNNNN PowerFlex 755 AC Drive — Complete Technical Specifications, Applications, Advantages, and Related Model Guide 1. Product Overview The Allen-Bradley 20G14TC770AN0NNNNN is……
Allen Bradley 20G14TC770AN0NNNNN PowerFlex AC Drive
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Allen-Bradley 20G14TC770AN0NNNNN PowerFlex 755 AC Drive — Complete Technical Specifications, Applications, Advantages, and Related Model Guide

1. Product Overview

The Allen-Bradley 20G14TC770AN0NNNNN is a high-power PowerFlex 755 Air-Cooled AC Drive designed for large industrial motor-control applications.

It is a 400 VAC, three-phase, common-DC-bus drive with a DC input with precharge, forced-air cooling, open-type construction, Frame 8 architecture, embedded EtherNet/IP capability, and an EMC-filter configuration associated with the AN catalog arrangement.

The drive provides a substantial current range depending on the selected duty classification. Its ratings are approximately 832 A Light Duty, 770 A Normal Duty, and 642 A Heavy Duty.

The corresponding power ratings are approximately 450 kW Light Duty, 400 kW Normal Duty, and 355 kW Heavy Duty.

This makes the 20G14TC770AN0NNNNN one of the higher-capacity configurations within the 400 VAC-class Frame 8 PowerFlex 755 common-DC-bus range.

It is intended for large motors and demanding industrial machinery where a compact general-purpose variable-frequency drive would not provide sufficient current capacity.

Typical applications include large pumps, fans, blowers, conveyors, crushers, mills, mining machinery, cement-processing equipment, steel-processing systems, paper machinery, compressors, and large material-handling systems.


2. Brand and Product Series

Item Specification
Brand Allen-Bradley
Product Family PowerFlex
Product Series PowerFlex 755
Product Platform PowerFlex 750-Series
Product Type Air-Cooled AC Drive
Catalog Number 20G14TC770AN0NNNNN
Drive Architecture Common DC Bus
Input Configuration DC Input with Precharge
AC Voltage Class 400 VAC
Phase Three Phase
Nominal DC Bus Class 540 VDC
Cooling Forced Air
Frame Frame 8
Enclosure Open Type
Communication Embedded EtherNet/IP
Light Duty 832 A / 450 kW
Normal Duty 770 A / 400 kW
Heavy Duty 642 A / 355 kW
Dynamic Braking None
HIM Blank / No HIM
Filter Configuration EMC Filter
CM Jumper Configuration AN configuration / jumper arrangement according to catalog configuration

The PowerFlex 755 series is intended for industrial applications that require more than basic motor speed control.

It combines high-power motor control with network integration, flexible duty ratings, common-DC-bus capability, feedback options, diagnostics, and a scalable architecture suitable for large machinery.


3. Complete Technical Parameter Table

Parameter Specification
Model / Part Number 20G14TC770AN0NNNNN
Brand Allen-Bradley
Series PowerFlex 755
Product Family PowerFlex 750-Series
Product Type Air-Cooled AC Drive
Input Type DC Input with Precharge
Nominal DC Bus 540 VDC
AC Voltage Class 400 VAC
Phase Three Phase
Light Duty Current 832 A
Light Duty Power 450 kW
Normal Duty Current 770 A
Normal Duty Power 400 kW
Heavy Duty Current 642 A
Heavy Duty Power 355 kW
Frame Size Frame 8
Enclosure Type Open Type
Cooling Forced Air / Air Cooled
Filtering EMC Filter
CM Configuration AN configuration
Dynamic Braking None
Internal Braking Resistor None
Human Interface Module Blank / No HIM
Communication Embedded EtherNet/IP
Typical Operating Temperature Approximately 0–50 °C
Relative Humidity Approximately 5–95%, non-condensing
Storage Temperature Approximately -40 to +70 °C
Approximate Height 2145 mm
Approximate Width 778 mm
Approximate Depth 421 mm
Approximate Dimensions 2145 × 778 × 421 mm
Approximate Weight 162 kg
Installation Orientation Vertical
Application Class Large Industrial
Main Application Types Pumps, fans, conveyors, mining, cement, steel, paper, compressors
Common DC Bus Yes
Current Replacement Configuration JN version is the corresponding replacement configuration

4. Electrical Rating

The 20G14TC770AN0NNNNN is designed for very large industrial motors.

Its most significant rating is the 770 A Normal Duty continuous current capability.

For Light Duty applications, the drive provides approximately 832 A and 450 kW.

For Normal Duty applications, the rating is approximately 770 A and 400 kW.

For Heavy Duty applications, the rating is approximately 642 A and 355 kW.

This range makes the drive useful for applications with significantly different torque characteristics.

A large centrifugal fan may use the Light Duty rating efficiently, while a general industrial conveyor may fall under Normal Duty.

A high-torque conveyor, crusher, or mill may require the Heavy Duty rating.

The correct rating should always be selected using the actual motor current and application load profile.


5. Light Duty Rating

The Light Duty rating is approximately 832 A / 450 kW.

This rating is particularly useful for variable-torque applications.

Large centrifugal fans and pumps are common examples.

Light Duty Parameter Specification
Continuous Output Current 832 A
Approximate Power 450 kW
Frame 8
Cooling Forced Air
Enclosure Open Type
Dimensions Approx. 2145 × 778 × 421 mm
Weight Approx. 162 kg
Typical Loads Large pumps, fans, blowers

The Light Duty rating provides the highest continuous current available from this particular catalog configuration.


6. Normal Duty Rating

The Normal Duty rating is approximately 770 A / 400 kW.

This is the most important rating for many general industrial applications.

A large conveyor, pump, fan, compressor, or process machine may use this rating when its motor current and overload requirements fit within the Normal Duty specification.

Normal Duty Parameter Specification
Continuous Output Current 770 A
Approximate Power 400 kW
Frame 8
Cooling Forced Air
Enclosure Open Type
Dimensions Approx. 2145 × 778 × 421 mm
Weight Approx. 162 kg
Typical Loads Conveyors, pumps, fans, compressors, process machinery

A 770 A Normal Duty rating gives this model a useful amount of capacity for large industrial motors.


7. Heavy Duty Rating

The Heavy Duty rating is approximately 642 A / 355 kW.

This rating is intended for applications where the mechanical load is more demanding.

Heavy Duty applications may involve:

  • High starting torque
  • Repeated acceleration
  • High inertia
  • Rapid load changes
  • Heavy mechanical loading
  • High torque at low speed
Heavy Duty Parameter Specification
Continuous Output Current 642 A
Approximate Power 355 kW
Frame 8
Cooling Forced Air
Enclosure Open Type
Dimensions Approx. 2145 × 778 × 421 mm
Weight Approx. 162 kg
Typical Loads Crushers, mills, loaded conveyors, heavy machinery

The Heavy Duty rating should be compared directly against the motor nameplate current and the machine’s actual torque requirements.


8. 400 VAC Three-Phase System

The 20G14TC770AN0NNNNN belongs to the 400 VAC-class PowerFlex 755 family.

Three-phase operation is intended for large industrial motors and high-power rotating machinery.

At this size, electrical-system engineering becomes just as important as the drive itself.

The installation should be designed around:

  • Motor voltage
  • Motor current
  • Incoming electrical supply
  • DC bus arrangement
  • Grounding
  • Motor cables
  • Protection equipment
  • Cabinet construction
  • Ventilation
  • EMC
  • Harmonics
  • Maintenance access

A high-power drive should never be selected solely from the motor’s kW rating.


9. DC Input with Precharge

The model uses a DC input with precharge configuration.

This makes it suitable for common DC bus applications.

A common DC bus can be useful when several drive sections are operating within the same machine or production system.

For example, one motor may be accelerating while another motor is decelerating.

In a suitably engineered common-bus system, energy from one drive can potentially be shared with another drive.

This can improve the overall energy architecture of a multi-drive installation.


10. Common DC Bus Applications

The 20G14TC770AN0NNNNN is particularly useful when integrated into large common-DC-bus systems.

Typical applications include:

Application Typical Benefit
Mining Conveyor Multi-drive coordination
Steel Processing Coordinated motor control
Paper Machine Energy sharing and synchronization
Large Material Handling Coordinated acceleration
Multi-Motor Production Line Centralized DC bus
Large Conveyor Network Common power architecture
Regenerative System Energy management
Large Process Machine Coordinated motor operation

This architecture becomes increasingly useful as the number of large motors in a machine increases.


11. AN Configuration

The AN portion of the catalog number identifies a specific factory configuration.

For the relevant PowerFlex catalog structure, the filtering and common-mode capacitor arrangement is encoded in the catalog number.

The 20G14TC770AN0NNNNN is associated with the AN configuration, while the corresponding JN version uses the preferred installed filter and CM-jumper arrangement.

This difference is important during replacement.

Configuration Filter / CM Arrangement
20G14TC770AN0NNNNN AN configuration
20G14TC770JN0NNNNN Filtered, CM jumper installed

The AN and JN models should therefore not be treated as completely identical just because their current and power ratings are similar.


12. Replacement Consideration

The 20G14TC770AN0NNNNN is an older catalog configuration.

The corresponding replacement configuration is 20G14TC770JN0NNNNN.

For an existing installation, the replacement should be evaluated against:

  • Motor voltage
  • Motor current
  • Duty rating
  • EMC configuration
  • Grounding system
  • CM jumper arrangement
  • Cabinet design
  • Communication architecture
  • Braking requirements
  • Existing accessories

A replacement project should therefore compare the complete catalog numbers rather than only comparing the “770” current code.


13. Filtering and EMC

The drive uses an EMC-filter configuration.

Filtering is important because large variable-frequency drives can generate electrical noise through both power and motor circuits.

The actual EMC performance of an installation depends on much more than the filter inside the drive.

Important factors include:

  • Motor cable construction
  • Cable length
  • Cable shielding
  • Grounding
  • Motor-frame bonding
  • Cabinet grounding
  • Control-cable routing
  • Communication-cable routing
  • Separation between power and control wiring

Correct installation practices are therefore essential.


14. Dynamic Braking

The 20G14TC770AN0NNNNN is specified with no internal dynamic braking.

There is no internal braking resistor.

There is also no internal dynamic-braking transistor specified for this configuration.

This is important when the machine requires rapid deceleration.

A large rotating machine can store a considerable amount of kinetic energy.

When the motor is commanded to slow down, that energy can return to the electrical system.

For applications requiring rapid stopping, the designer may need to consider:

  • External braking
  • Regenerative equipment
  • Controlled deceleration
  • Mechanical braking
  • Common DC bus energy sharing
  • Application-specific energy-management equipment

15. Mechanical Specifications

The 20G14TC770AN0NNNNN is a Frame 8 high-power drive.

The approximate open-type drive dimensions are:

2145 mm high × 778 mm wide × 421 mm deep

The approximate equipment weight is:

162 kg

Mechanical Parameter Specification
Frame 8
Enclosure Open Type
Height Approx. 2145 mm
Width Approx. 778 mm
Depth Approx. 421 mm
Dimensions Approx. 2145 × 778 × 421 mm
Weight Approx. 162 kg
Cooling Forced Air
Mounting Vertical
Installation Class Large Industrial

The finished electrical cabinet will normally be larger than the drive itself.

Additional space is required for power connections, wiring, ventilation, service access, and other equipment.


16. Weight and Handling

The approximate 162 kg weight means that this drive requires proper handling equipment.

This should be considered before the drive reaches the installation site.

Planning should include:

  • Delivery route
  • Storage position
  • Cabinet installation
  • Lifting equipment
  • Mounting hardware
  • Floor loading
  • Service access
  • Replacement procedure

The physical handling requirements are considerably greater than those of compact PowerFlex drives.


17. Cooling System

The drive uses forced-air cooling.

At a 400 kW-class power level, thermal management is an important part of the installation.

The cabinet must provide adequate airflow around the drive.

The cooling system should account for:

  • Ambient temperature
  • Internal cabinet temperature
  • Drive heat losses
  • Fan capacity
  • Airflow direction
  • Air filters
  • Installation altitude
  • Nearby heat sources
  • Continuous operating load

A high-power drive can be correctly selected electrically but still experience thermal problems if the cabinet is not properly ventilated.


18. Environmental Specifications

Typical environmental reference values for the drive include an operating temperature of approximately 0–50 °C and relative humidity of approximately 5–95% non-condensing.

Storage temperature is approximately -40 to +70 °C.

Environmental Parameter Specification
Operating Temperature Approximately 0–50 °C
Relative Humidity Approximately 5–95%, non-condensing
Storage Temperature Approximately -40 to +70 °C
Cooling Forced Air
Condensation Avoid
Environment Industrial
Thermal Management Required
Ventilation Required

Actual installation conditions and derating requirements should be checked for the complete system.


19. Embedded EtherNet/IP

The PowerFlex 755 platform provides embedded EtherNet/IP capability.

This is useful when the drive is connected to a plant automation system.

Typical data exchanged with a controller can include:

  • Start command
  • Stop command
  • Speed reference
  • Frequency reference
  • Drive status
  • Fault status
  • Alarm information
  • Output current
  • Output voltage
  • Speed
  • Diagnostic information
  • Parameter information

For large plants, network integration can significantly improve visibility of motor and drive operating conditions.


20. No HIM Configuration

The catalog configuration specifies Blank / No HIM.

This means a dedicated local Human Interface Module is not included as part of the selected configuration.

This can be suitable for installations where the drive is controlled from:

  • PLC
  • HMI
  • SCADA
  • Central control system
  • Industrial Ethernet
  • Remote operator station

For a large electrical cabinet, local keypad operation may not be necessary.


21. Large Pump Applications

Large pumping systems are one of the most suitable application areas for this drive.

Potential applications include:

  • Water treatment
  • Cooling-water circulation
  • Industrial process water
  • Mining dewatering
  • Irrigation
  • Utility pumping
  • Chemical process pumping
  • Large cooling systems

Variable-speed control allows the pump to operate according to process demand.

This can be particularly useful for centrifugal pumps.

Instead of continuously operating at full speed and controlling flow through mechanical throttling, the drive can adjust motor speed.


22. Large Fan Applications

Large fans and blowers are also strong candidates.

Applications include:

  • Industrial ventilation
  • Mine ventilation
  • Furnace fans
  • Boiler fans
  • Exhaust systems
  • Dust collection
  • Cooling systems
  • Process-air systems

The drive allows the fan motor speed to follow the required airflow.

This can improve process flexibility and may provide energy savings where the fan operates at reduced speed for substantial periods.


23. Conveyor Applications

Large conveyors often require substantial motor current.

The 20G14TC770AN0NNNNN can be considered for applications such as:

  • Mining conveyors
  • Aggregate conveyors
  • Cement conveyors
  • Port conveyors
  • Bulk material systems
  • Industrial transfer systems

Controlled acceleration can reduce mechanical shock.

This can reduce stress on:

  • Conveyor belts
  • Gearboxes
  • Couplings
  • Bearings
  • Shafts
  • Drive pulleys

For heavily loaded conveyors, the Heavy Duty rating should be checked carefully.


24. Mining Applications

Mining equipment often contains very large motors.

Potential applications include:

  • Ore conveyors
  • Crushers
  • Screens
  • Pumps
  • Ventilation fans
  • Mills
  • Material-handling equipment
  • Dewatering systems

Mining machinery can produce demanding load profiles.

Starting torque, inertia, ambient temperature, dust, altitude, and cooling conditions should therefore be considered during drive selection.


25. Cement and Aggregate Applications

Cement and aggregate facilities use large motors throughout the production process.

The drive can be considered for:

  • Crushers
  • Mills
  • Large process fans
  • Conveyors
  • Feeders
  • Pumps
  • Dust collection
  • Material handling

Variable-speed operation can improve process control and reduce mechanical stress during starting and stopping.


26. Steel and Metal Processing Applications

Steel and metal-processing plants often require high-power motor control.

Potential applications include:

  • Cooling-water pumps
  • Process fans
  • Material handling
  • Large conveyors
  • Extraction systems
  • Ventilation
  • Auxiliary process machinery

The drive’s network capability also makes it suitable for integration into centralized control systems.


27. Paper and Pulp Applications

Paper machinery often uses several motors operating as part of one coordinated production process.

Typical applications include:

  • Vacuum systems
  • Pumps
  • Fans
  • Roll drives
  • Stock preparation
  • Material handling
  • Process-air systems

A common DC bus can be valuable when several drive sections operate together.


28. Compressor Applications

Large compressors can require several hundred kilowatts of motor power.

The drive can provide controlled acceleration and variable-speed operation when compatible with the compressor design.

Potential advantages include:

  • Controlled starting
  • Reduced mechanical shock
  • Adjustable speed
  • Process regulation
  • Centralized monitoring
  • Industrial network integration

The compressor load profile should be evaluated before selecting the duty classification.


29. Main Product Advantages

29.1 Very High Current Capability

The drive’s 770 A Normal Duty rating is its most important electrical characteristic.

This makes it suitable for very large industrial motors.

The three main continuous ratings are:

  • 832 A Light Duty
  • 770 A Normal Duty
  • 642 A Heavy Duty

29.2 High Power Capacity

The drive provides approximately:

  • 450 kW Light Duty
  • 400 kW Normal Duty
  • 355 kW Heavy Duty

This places it firmly within the large industrial drive category.


29.3 Common DC Bus

The DC input configuration allows the drive to participate in common DC bus architectures.

This is especially useful in large multi-drive systems.


29.4 Embedded EtherNet/IP

Embedded EtherNet/IP provides a convenient connection to modern industrial control architectures.

It can improve:

  • Monitoring
  • Diagnostics
  • Control
  • Data collection
  • Maintenance visibility

29.5 Flexible Duty Classification

The Light Duty, Normal Duty, and Heavy Duty ratings allow the drive to be matched to different machine characteristics.

This is more useful than selecting a drive solely by nominal horsepower.


29.6 Large Industrial Motor Support

The 20G14TC770AN0NNNNN is designed for applications involving very large motors.

It is appropriate for large-scale industrial machinery rather than compact machine automation.


29.7 Scalable PowerFlex Architecture

The PowerFlex 755 platform includes multiple drive ratings.

This allows industrial facilities to standardize on a common drive family across different machine capacities.


30. Advantages for System Integrators

System integrators can benefit from using the same general drive architecture across multiple machine sizes.

This can simplify:

  • Electrical engineering
  • PLC integration
  • HMI design
  • Network configuration
  • Commissioning
  • Troubleshooting
  • Maintenance training
  • Spare-parts planning

The availability of closely related Frame 8 current ratings also makes system expansion easier.


31. Advantages for OEM Machine Builders

OEM machine builders can use the PowerFlex 755 family to create standardized electrical designs.

A machine may use a smaller drive in one configuration and a 770 A-class drive in a larger configuration while maintaining a similar control philosophy.

This can reduce engineering effort.

It can also simplify:

  • Documentation
  • Software development
  • Commissioning
  • Service training
  • Customer support
  • Spare-parts planning

32. Advantages for Plant Operators

Plant operators benefit from controlled motor operation.

Instead of starting a large motor directly across the line, the drive can control acceleration and operating speed.

This can help reduce mechanical shock.

Network integration also allows operating information to be presented through a centralized control system.


33. Advantages for Maintenance Personnel

The PowerFlex 755 architecture can provide useful diagnostic information.

Maintenance teams can monitor drive status and investigate faults through the plant control system.

This can reduce the time needed to identify problems.

For a critical production machine, faster troubleshooting can have a direct impact on plant availability.


34. Energy Management Advantages

Variable-speed control can provide significant energy-saving opportunities in appropriate applications.

The strongest examples are generally variable-torque loads.

These include:

  • Pumps
  • Fans
  • Blowers

If a process does not require full-speed operation continuously, reducing motor speed can reduce energy consumption.

Actual savings depend on the process, operating hours, load profile, motor efficiency, and control strategy.


35. Five Recommended Models from the Same Series

The following models are closely related PowerFlex 755 common-DC-bus models in the same 400 VAC-class Frame 8 group.

Model / Part Number Light Duty Normal Duty Heavy Duty Frame Dimensions Weight
20G14TC460JN0NNNNN 540 A / 315 kW 460 A / 250 kW 385 A / 200 kW 8 Approx. 2145 × 778 × 421 mm Approx. 162 kg
20G14TC540JN0NNNNN 585 A / 315 kW 540 A / 315 kW 456 A / 250 kW 8 Approx. 2145 × 778 × 421 mm Approx. 162 kg
20G14TC567JN0NNNNN 612 A / 355 kW 567 A / 315 kW 472 A / 250 kW 8 Approx. 2145 × 778 × 421 mm Approx. 162 kg
20G14TC650JN0NNNNN 750 A / 400 kW 650 A / 355 kW 540 A / 315 kW 8 Approx. 2145 × 778 × 421 mm Approx. 162 kg
20G14TC750JN0NNNNN 796 A / 450 kW 750 A / 400 kW 585 A / 315 kW 8 Approx. 2145 × 778 × 421 mm Approx. 162 kg

These are useful alternatives when the motor current is below the 770 A range.

For a lower current requirement, the 650 A and 750 A versions may be more appropriate.

The 770 A version provides the highest current capacity among these commonly compared Frame 8 TC configurations.


36. Detailed Comparison of the TC Series

Model / Part Number LD Current ND Current HD Current LD Power ND Power HD Power Frame Dimensions Weight
20G14TC460JN0NNNNN 540 A 460 A 385 A 315 kW 250 kW 200 kW 8 2145 × 778 × 421 mm 162 kg
20G14TC540JN0NNNNN 585 A 540 A 456 A 315 kW 315 kW 250 kW 8 2145 × 778 × 421 mm 162 kg
20G14TC567JN0NNNNN 612 A 567 A 472 A 355 kW 315 kW 250 kW 8 2145 × 778 × 421 mm 162 kg
20G14TC650JN0NNNNN 750 A 650 A 540 A 400 kW 355 kW 315 kW 8 2145 × 778 × 421 mm 162 kg
20G14TC750JN0NNNNN 796 A 750 A 585 A 450 kW 400 kW 315 kW 8 2145 × 778 × 421 mm 162 kg
20G14TC770JN0NNNNN 832 A 770 A 642 A 450 kW 400 kW 355 kW 8 2145 × 778 × 421 mm 162 kg

The progression makes the selection logic relatively straightforward.

The 460 A model is suitable for a lower-current application.

The 540 A and 567 A versions cover the middle range.

The 650 A and 750 A versions address larger motors.

The 770 A version is suitable when the application approaches the upper end of this Frame 8 current range.


37. Five Related PowerFlex 755 Models for 690 VAC Applications

For projects using a different voltage class, the following models are useful related PowerFlex 755 references.

Model / Part Number Voltage Normal Duty Heavy Duty Frame Braking Dimensions Weight
20G14NF119JA0NNNNN 690 VAC 119 A / 110 kW 98 A / 90 kW 6 DB Transistor Approx. 308 × 665.5 × 346.4 mm 38.6 kg
20G14NF142JA0NNNNN 690 VAC 142 A / 132 kW 119 A / 110 kW 6 DB Transistor Approx. 308 × 665.5 × 346.4 mm 38.6 kg
20G14NF171JA0NNNNN 690 VAC 171 A / 160 kW 142 A / 132 kW 7 DB Transistor Approx. 430 × 881.5 × 349.6 mm Approx. 72.6–108.9 kg
20G14NF212JA0NNNNN 690 VAC 212 A / 200 kW 171 A / 160 kW 7 DB Transistor Approx. 430 × 881.5 × 349.6 mm Approx. 72.6–108.9 kg
20G14NF263JA0NNNNN 690 VAC 263 A / 250 kW 212 A / 200 kW 7 DB Transistor Approx. 430 × 881.5 × 349.6 mm Approx. 72.6–108.9 kg

These are related models rather than direct substitutes.

The 690 VAC models operate in a different voltage class and are intended for different motor systems.


38. Five Popular Allen-Bradley Models

The following five models represent commonly encountered products from the same brand and cover substantially smaller power ranges.

Model / Part Number Series Voltage Class Current Class Approx. Power Class Dimensions Weight
25B-D017N114 PowerFlex 525 480 VAC Class 17 A Approx. 7.5 kW Class Configuration dependent Configuration dependent
25B-D024N114 PowerFlex 525 480 VAC Class 24 A Approx. 11 kW Class Configuration dependent Configuration dependent
25B-D030N114 PowerFlex 525 480 VAC Class 30 A Approx. 15 kW Class Configuration dependent Configuration dependent
20G11NC5P0JA0NNNNN PowerFlex 755 480 VAC Class 50 A Class Approx. 37–45 kW Class Configuration dependent Configuration dependent
20G11NC072JA0NNNNN PowerFlex 755 480 VAC Class 72 A Class Approx. 55 kW Class Configuration dependent Configuration dependent

The smaller PowerFlex 525 models are more appropriate for compact machines and lower-power motors.

The 20G11NC-series PowerFlex 755 models are more suitable for medium-sized industrial systems.

The 20G14TC770AN0NNNNN is positioned much higher in the power range and is intended for very large industrial motors.


39. 650 A vs 750 A vs 770 A Selection

Parameter 20G14TC650JN0NNNNN 20G14TC750JN0NNNNN 20G14TC770AN0NNNNN
Light Duty Current 750 A 796 A 832 A
Normal Duty Current 650 A 750 A 770 A
Heavy Duty Current 540 A 585 A 642 A
Light Duty Power 400 kW 450 kW 450 kW
Normal Duty Power 355 kW 400 kW 400 kW
Heavy Duty Power 315 kW 315 kW 355 kW
Frame 8 8 8
Cooling Forced Air Forced Air Forced Air
Dimensions Approx. 2145 × 778 × 421 mm Approx. 2145 × 778 × 421 mm Approx. 2145 × 778 × 421 mm
Weight Approx. 162 kg Approx. 162 kg Approx. 162 kg

This is one of the most useful comparisons when selecting a drive around the 650–770 A range.

The 650 A model is a sensible choice when the motor current is well below 750 A.

The 750 A model becomes appropriate as the application approaches 750 A Normal Duty.

The 770 A model provides the highest Normal Duty current in this comparison and offers a meaningful increase in Heavy Duty capability.


40. Motor Selection Considerations

Motor selection should begin with the motor nameplate rather than the drive catalog number.

Important information includes:

  • Motor voltage
  • Full-load current
  • Motor power
  • Motor frequency
  • Motor speed
  • Motor efficiency
  • Motor power factor
  • Starting torque
  • Load torque
  • Duty cycle

The motor’s full-load current is particularly important.

Two motors with the same nominal kW rating may have different full-load currents.

Therefore, a 400 kW motor should not automatically be matched to a 770 A drive without checking its actual nameplate current.


41. High-Inertia Load Considerations

High-inertia loads can create significant demands on the drive.

Examples include:

  • Large fans
  • Large blowers
  • Mills
  • Centrifuges
  • Rollers
  • Flywheel systems
  • Large conveyors

During acceleration, the drive must supply enough torque to accelerate the machine.

During deceleration, stored mechanical energy can return to the DC bus.

Because this catalog configuration does not include internal dynamic braking hardware, the braking strategy should be evaluated separately for applications requiring fast stopping.


42. Cabinet Design

The Frame 8 dimensions require a properly engineered cabinet.

The approximate drive envelope is:

2145 × 778 × 421 mm

The cabinet must also accommodate:

  • Power cables
  • Control cables
  • Network cables
  • Grounding
  • Airflow
  • Service access
  • Cable bending radius
  • Protection equipment
  • Auxiliary components

The final cabinet will therefore normally be larger than the drive dimensions.


43. Thermal Management

Thermal design is particularly important for a drive of this size.

The cabinet should provide sufficient airflow and heat-removal capacity.

Design considerations include:

  • Ambient temperature
  • Drive losses
  • Cabinet temperature
  • Fan capacity
  • Air inlet temperature
  • Air outlet temperature
  • Filter condition
  • Installation altitude
  • Continuous load

The cooling system should be maintained regularly.


44. Maintenance Recommendations

A large industrial drive should be incorporated into a preventive-maintenance program.

Recommended inspection areas include:

  • Cooling fans
  • Air passages
  • Filters
  • Power terminals
  • Grounding connections
  • Control connections
  • Network connections
  • Signs of overheating
  • Dust accumulation
  • Fault history
  • Unusual vibration
  • Unusual noise

Cooling fans deserve particular attention because their failure can quickly increase drive temperature.


45. Spare Parts Planning

For a critical production machine, spare-parts planning can reduce downtime.

Potential spare categories include:

  • Cooling components
  • Control components
  • Communication components
  • Power components
  • Protection components
  • Installation accessories

For extremely critical processes, maintaining an appropriate replacement-drive strategy may also be justified.


46. Practical Application Selection

Application Recommended Duty Main Concern
Large Centrifugal Pump LD / ND Motor current
Large Fan LD / ND Variable-torque load
Large Blower LD / ND Continuous operation
Conveyor ND / HD Starting torque
Mining Conveyor ND / HD Loaded starting
Crusher HD High torque
Mill HD Inertia and regeneration
Cement Conveyor ND / HD Mechanical loading
Steel Process Fan LD / ND Continuous operation
Paper Machinery ND Coordinated drives
Large Compressor ND / HD Compressor torque
Material Handling ND / HD Acceleration and deceleration

47. Selection Logic for the Five Same-Series Alternatives

20G14TC460JN0NNNNN

Best considered when the application requires approximately:

  • 460 A Normal Duty
  • 250 kW Normal Duty
  • 200 kW Heavy Duty

20G14TC540JN0NNNNN

Best considered when the application requires approximately:

  • 540 A Normal Duty
  • 315 kW Normal Duty
  • 250 kW Heavy Duty

20G14TC567JN0NNNNN

Best considered when the application requires approximately:

  • 567 A Normal Duty
  • 315 kW Normal Duty
  • 250 kW Heavy Duty

20G14TC650JN0NNNNN

Best considered when the application requires approximately:

  • 650 A Normal Duty
  • 355 kW Normal Duty
  • 315 kW Heavy Duty

20G14TC750JN0NNNNN

Best considered when the application requires approximately:

  • 750 A Normal Duty
  • 400 kW Normal Duty
  • 315 kW Heavy Duty

20G14TC770AN0NNNNN

The requested model is appropriate when the application requires approximately:

  • 770 A Normal Duty
  • 400 kW Normal Duty
  • 355 kW Heavy Duty

The key difference between the models is primarily electrical capacity rather than a completely different mechanical platform.


48. Why Choose the 20G14TC770AN0NNNNN?

The main reason to select the 20G14TC770AN0NNNNN is its combination of very high current capacity and large industrial application flexibility.

With approximately 832 A Light Duty, 770 A Normal Duty, and 642 A Heavy Duty, the model can support a wide range of large-motor applications.

The approximately 400 kW Normal Duty rating is particularly useful for large industrial motors.

The approximately 355 kW Heavy Duty rating also gives it a strong position in high-torque applications.

Its Frame 8 architecture provides a standardized mechanical platform shared with several nearby current ratings.


49. Product Positioning

The 20G14TC770AN0NNNNN can be positioned as a:

High-Power 400 VAC Frame 8 PowerFlex 755 Common-DC-Bus AC Drive

Its primary application sectors include:

  • Mining
  • Cement
  • Steel
  • Paper
  • Water treatment
  • Material handling
  • Industrial pumping
  • Industrial ventilation
  • Large conveyors
  • Heavy process machinery

It is best suited to applications where large motors operate continuously and require controlled speed and torque.


50. Final Technical Parameter Table

Category Final Specification
Model / Part Number 20G14TC770AN0NNNNN
Brand Allen-Bradley
Product Series PowerFlex 755
Product Family PowerFlex 750-Series
Product Type Air-Cooled AC Drive
Input Type DC Input with Precharge
AC Voltage Class 400 VAC
Phase Three Phase
Nominal DC Bus 540 VDC
Light Duty 832 A / 450 kW
Normal Duty 770 A / 400 kW
Heavy Duty 642 A / 355 kW
Frame 8
Enclosure Open Type
Cooling Forced Air
Filtering EMC Filter
Configuration AN
Dynamic Braking None
Internal Braking Resistor None
HIM Blank / No HIM
Communication Embedded EtherNet/IP
Operating Temperature Approx. 0–50 °C
Relative Humidity Approx. 5–95%, non-condensing
Storage Temperature Approx. -40 to +70 °C
Height Approx. 2145 mm
Width Approx. 778 mm
Depth Approx. 421 mm
Dimensions Approx. 2145 × 778 × 421 mm
Weight Approx. 162 kg
Common DC Bus Yes
Main Applications Pumps, fans, conveyors, compressors, mining, cement, steel, paper, material handling
Replacement Configuration 20G14TC770JN0NNNNN

51. Final Product Assessment

The Allen-Bradley 20G14TC770AN0NNNNN is a high-power PowerFlex 755 AC drive intended for demanding industrial motor-control applications.

Its 770 A Normal Duty rating and approximately 400 kW Normal Duty capacity make it suitable for very large motors.

Its 832 A Light Duty rating increases its suitability for variable-torque applications such as large pumps, fans, and blowers.

Its 642 A Heavy Duty rating provides useful capacity for demanding applications involving higher torque, greater inertia, or more severe loading.

The DC input with precharge configuration makes it well suited to common DC bus architectures, especially where several large drive sections operate as part of the same industrial machine.

The embedded EtherNet/IP capability provides a practical connection to modern industrial control systems.

The Frame 8 mechanical construction, approximately 2145 × 778 × 421 mm dimensions, and approximately 162 kg weight indicate that this is a substantial industrial component and should be installed with appropriate mechanical handling, cabinet support, ventilation, and service access.

The absence of internal dynamic braking hardware should be considered carefully for applications that require frequent or rapid deceleration.

The AN configuration is also important. It should not be treated as identical to the JN configuration simply because the current and power ratings are similar. The filter and common-mode configuration should be matched to the existing installation when replacing equipment.

For applications below the 770 A range, the closely related 20G14TC650JN0NNNNN and 20G14TC750JN0NNNNN models are useful alternatives.

For applications requiring a different voltage class, the 690 VAC PowerFlex 755 models provide another related product group.

Overall, the 20G14TC770AN0NNNNN is best described as a large Frame 8, 400 VAC-class PowerFlex 755 common-DC-bus AC drive with 832 A Light Duty, 770 A Normal Duty, and 642 A Heavy Duty current capability.

It is particularly well suited to large industrial pumping, ventilation, conveying, mining, cement, steel, paper, material-handling, compressor, and process-machinery applications where high motor current, controlled speed, network integration, and robust industrial drive architecture are required.



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