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The Allen-Bradley 20G1G3D960LNDNNNNN is a high-power PowerFlex 755 AC drive designed for large industrial motor-control applications where high current capacity, controlled acceleration, variable-speed operation, and integration with a larger automation system are required.
The product belongs to the PowerFlex 755 series and is a 480 VAC, three-phase, Frame 9 configuration. The D960 rating corresponds to a 960 A output-current class, making this model suitable for very large industrial motors and heavy-duty rotating equipment.
In the PowerFlex 755 range, the 20G1G3D960LNDNNNNN sits above the 800 A-class configuration and is intended for applications where a larger motor capacity is required.
The model is particularly relevant to large pumps, fans, blowers, compressors, conveyors, material-handling equipment, process machinery, mixers, and other industrial systems where a high-capacity variable-frequency drive is required.
The PowerFlex 755 architecture is designed to provide considerably more flexibility than a basic frequency converter. Depending on the final configuration, the drive can support different motor-control strategies, feedback arrangements, communication functions, operator interfaces, braking arrangements, and other options.
This makes the 20G1G3D960LNDNNNNN suitable for applications where the drive must operate as part of a complete machine or process-control system.
| Parameter | Product Information |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex |
| Product Series | PowerFlex 755 |
| Product Type | High-power AC variable frequency drive |
| Catalog Number | 20G1G3D960LNDNNNNN |
| Voltage Class | 480 VAC / 650 VDC class |
| Input Voltage | 480 VAC class |
| Input Phase | Three-phase |
| Output Current | 960 A |
| Frame Size | Frame 9 |
| Cooling | Forced air |
| Enclosure Style | IP20 / NEMA / UL Type 1 MCC-style cabinet |
| Mounting | Floor-standing |
| Motor Control | Variable-speed AC motor control |
| Main Application | Large industrial motor systems |
| Product Architecture | Modular/configurable industrial drive |
The 20G catalog family identifies the PowerFlex 755 product family, while the D voltage designation corresponds to the 480 VAC / 650 VDC class.
The 960 portion identifies the 960 A configuration.
The complete catalog number should be retained when specifying or replacing the drive because the remaining catalog characters can identify important configuration details.
| Parameter | 20G1G3D960LNDNNNNN |
|---|---|
| Model | 20G1G3D960LNDNNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Drive Type | AC variable frequency drive |
| Input Voltage | 480 VAC class |
| DC Bus Voltage Class | 650 VDC class |
| Input Phase | Three-phase |
| Output Current | 960 A |
| Frame | Frame 9 |
| Light Duty Motor Rating | Approximately 900 hp |
| Normal Duty Motor Rating | Approximately 800 hp |
| Heavy Duty Motor Rating | Approximately 700 hp |
| Cooling | Forced air |
| Cabinet Type | IP20 / NEMA / UL Type 1 MCC-style |
| Approx. Cabinet Height | 2453 mm |
| Approx. Cabinet Width | 1200 mm |
| Approx. Cabinet Depth | 600 mm or 800 mm |
| Approx. Basic Weight | 1246 kg |
| Approx. Height | 96.6 in |
| Approx. Width | 47.2 in |
| Approx. Depth | 23.6 or 31.5 in |
| Approx. Weight | 2748 lb / 1246 kg |
| Installation Type | Floor-standing |
| Motor Control | Variable-speed and torque control |
| Feedback | Configuration dependent |
| Communication | Configuration dependent |
| Dynamic Braking | Configuration dependent |
| HIM / Operator Interface | Configuration dependent |
| Intended Environment | Industrial |
| Typical Motor Size | Large industrial motors |
The 960 A rating places this model firmly in the high-power range.
For applications using the Normal Duty rating, the model is associated with approximately 800 hp of motor capacity. Under Light Duty conditions, the motor rating can reach approximately 900 hp, while the Heavy Duty rating is approximately 700 hp.
These horsepower figures should be used as selection references rather than as substitutes for actual motor current calculations.
A major consideration when selecting a large AC drive is the actual load profile.
The same motor horsepower can have very different drive requirements depending on whether the motor is operating a centrifugal fan, pump, conveyor, compressor, mixer, or another machine.
The PowerFlex 755 rating structure distinguishes between Light Duty, Normal Duty, and Heavy Duty applications.
| Duty Classification | Approx. Motor Rating | Typical Load Characteristics |
|---|---|---|
| Light Duty | 900 hp class | Variable-torque loads and applications with moderate overload requirements |
| Normal Duty | 800 hp class | General industrial variable-speed applications |
| Heavy Duty | 700 hp class | Higher torque and more demanding overload conditions |
The 800 hp Normal Duty rating is an important reference point for the 20G1G3D960LNDNNNNN.
For a high-inertia machine, constant-torque application, or equipment requiring frequent acceleration and deceleration, the Heavy Duty rating may be more relevant.
For a centrifugal pump or fan, the Light Duty rating may provide a larger usable motor range.
The final selection should therefore be based on motor nameplate current, load torque, acceleration requirements, overload requirements, and operating cycle.
The 20G1G3D960LNDNNNNN is a Frame 9 high-power drive and requires a dedicated floor-standing installation.
For the standard IP20 / NEMA / UL Type 1 MCC-style cabinet configuration, the approximate dimensions are 2453 mm high × 1200 mm wide × 600 mm or 800 mm deep, with a basic weight of approximately 1246 kg.
| Physical Parameter | Specification |
|---|---|
| Model | 20G1G3D960LNDNNNNN |
| Frame | Frame 9 |
| Height | 2453 mm |
| Width | 1200 mm |
| Depth | 600 mm or 800 mm |
| Basic Weight | 1246 kg |
| Height in Inches | 96.6 in |
| Width in Inches | 47.2 in |
| Depth in Inches | 23.6 or 31.5 in |
| Weight in Pounds | Approximately 2748 lb |
| Installation | Floor-standing |
| Cabinet Style | MCC-style |
| Cooling | Forced air |
| Handling | Heavy industrial lifting equipment |
| Floor Loading | Must be evaluated before installation |
| Service Space | Required around the equipment |
The weight of approximately 1246 kg is an important engineering consideration.
This is not a small electronic cabinet that can be moved manually. Transportation, unloading, positioning, lifting and final installation require suitable industrial handling equipment.
The installation route should also be checked in advance.
Door openings, corridors, elevators, loading areas and floor transitions can become important when moving equipment of this size.
If the final system includes additional option cabinets, the overall width and weight can increase considerably. The exact configured mechanical arrangement should therefore be confirmed before installation.
The PowerFlex 755 series is designed for demanding industrial motor-control applications where a basic variable-frequency drive is not sufficient.
The 20G1G3D960LNDNNNNN extends the PowerFlex 755 architecture into the high-capacity Frame 9 range.
Its 960 A output-current class provides the electrical capacity required by large industrial motors.
In practical terms, this means the drive can be used to control motors that would normally require a much larger electrical installation than those found in small machine applications.
The drive can provide controlled motor acceleration, speed regulation, deceleration and torque management.
This is particularly useful when the motor is connected to a large mechanical system.
Starting a large motor directly across the line can create substantial electrical and mechanical stresses. Variable-frequency control provides a way to bring the motor up to speed progressively.
The same principle applies when stopping the machine.
A controlled deceleration profile can help reduce mechanical shock and can provide a more predictable stopping response.
The PowerFlex 755 architecture also allows the drive to be integrated into a larger industrial control system.
Depending on the configuration, feedback devices, communication interfaces, operator interfaces and other options can be incorporated into the overall drive system.
Large pumps are a natural application for a high-power variable-frequency drive.
The 20G1G3D960LNDNNNNN can be used where the pump motor needs to operate at different speeds according to actual process demand.
Variable-speed operation can provide greater flexibility than fixed-speed operation.
Typical applications include large water pumps, process pumps, circulation pumps, cooling-water systems, fluid-transfer equipment and industrial pumping systems.
Controlled acceleration can also reduce sudden mechanical loading on pump components and connected piping.
Large fans and blowers frequently operate under changing airflow requirements.
The drive can adjust motor speed according to the required airflow or process condition.
This is useful for large ventilation systems, process-air systems, industrial exhaust systems, cooling systems and other high-capacity air-moving equipment.
The high current capability of the D960 configuration makes it appropriate for large fan motors that exceed the practical range of smaller drives.
Compressors can present significant starting and acceleration demands.
A high-power variable-frequency drive can provide controlled acceleration and operating-speed control.
This can be useful for industrial compressor systems where motor speed needs to be coordinated with the process.
The final drive selection should take into account compressor type, motor current, starting torque, acceleration time, operating cycle and overload requirements.
Large conveyors can have considerable inertia and can carry substantial loads.
Starting such equipment abruptly can place significant stress on belts, shafts, couplings, gearboxes and motors.
The 20G1G3D960LNDNNNNN can provide controlled acceleration and speed regulation for large conveyor systems.
This can be particularly useful in bulk-material handling and other applications where smooth starting and stopping are important.
Large material-handling systems often require controlled motor movement and coordination with other machinery.
The drive can be incorporated into a larger control system where speed references, operating commands, status information and fault information are exchanged with the machine-control architecture.
Large mixers and agitators can require significant starting torque.
The mechanical load can also vary substantially during operation.
The PowerFlex 755 platform can be configured for applications where motor speed and torque need to change according to the process.
For demanding mixer applications, Heavy Duty selection should be evaluated carefully.
Large process machines may require different operating speeds during different stages of production.
Variable-frequency control can allow the motor to operate at the speed required by the process rather than continuously operating at one fixed speed.
This can be useful for large rotating process equipment, production machinery, and industrial utility systems.
The main characteristic of the 20G1G3D960LNDNNNNN is its high output-current capability.
At 960 A, the drive is intended for large industrial motors.
This makes it suitable for applications that are beyond the practical range of compact and medium-size variable-frequency drives.
The drive can accommodate approximately 900 hp Light Duty, 800 hp Normal Duty, and 700 hp Heavy Duty motor applications.
This provides a substantial range for large motor systems.
The actual motor must still be selected according to nameplate current and application requirements, but the high power capacity gives engineers significant flexibility.
Frame 9 provides the physical and electrical structure required for high-current applications.
The larger cabinet arrangement also provides a practical platform for high-power industrial installations.
This makes the drive suitable for dedicated electrical rooms and large motor-control installations.
The Light Duty, Normal Duty and Heavy Duty ratings allow the drive to be considered for different types of mechanical loads.
A fan, pump and conveyor may all use motors of similar horsepower but require very different overload characteristics.
The duty-rating structure allows these differences to be taken into account.
Large motors can produce significant starting stress.
The drive can provide controlled acceleration rather than an abrupt start.
This can help reduce mechanical shock and provide a smoother transition to operating speed.
Controlled deceleration is equally important for high-inertia machinery.
The drive can be configured to provide a suitable deceleration profile for the application.
This can help reduce sudden loads on mechanical components and improve the overall stopping behavior of the machine.
The PowerFlex 755 platform supports a configurable architecture.
Depending on the final configuration, communication, feedback, operator-interface and other options can be added to suit the application.
This is useful when the drive must operate as part of a larger automation system.
The Frame 9 cabinet format is appropriate for centralized high-power installations.
Instead of treating the drive as a small component inside a machine, it can be installed as part of a dedicated motor-control area.
This is common in large industrial facilities where several high-power motor systems are concentrated in electrical rooms.
The following models are closely related to the D960 configuration and can be considered when selecting a suitable high-power PowerFlex 755 drive.
| Model | Voltage | Current Class | Frame | Light Duty | Normal Duty | Heavy Duty | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|---|
| 20G1G3D740LNDNNNNN | 480 VAC | 740 A | 8 | 700 hp class | 650 hp class | 500 hp class | 2453 × 600 × 600/800 mm | ~623 kg |
| 20G1G3D800LNDNNNNN | 480 VAC | 800 A class | 9 | 800 hp class | 700 hp class | 600 hp class | 2453 × 1200 × 600/800 mm | ~1246 kg |
| 20G1G3D960LNDNNNNN | 480 VAC | 960 A | 9 | 900 hp | 800 hp | 700 hp | 2453 × 1200 × 600/800 mm | ~1246 kg |
| 20G1G3D1K0LNDNNNNN | 480 VAC | 1045 A class | 9 | 900 hp class | 900 hp class | 750 hp class | 2453 × 1200 × 600/800 mm | ~1246 kg |
| 20G1G3D1K2LNDNNNNN | 480 VAC | 1135 A class | 9 | 1000 hp class | 1000 hp class | 800 hp class | 2453 × 1200 × 600/800 mm | ~1246 kg |
The D740 configuration represents the upper end of the large Frame 8 range, while the D800 and D960 configurations move into Frame 9.
The D960 is particularly useful when the motor requirement is around the 800 hp Normal Duty class.
The larger D1K0 and D1K2 configurations provide additional current capacity for even larger motor applications.
| Model | Series | Voltage | Frame | Current Class | Normal Duty Motor Rating | Heavy Duty Motor Rating | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|---|
| 20G1G3D710LNDNNNNN | PowerFlex 755 | 480 VAC | 8 | 710 A | 600 hp class | 450 hp class | 2453 × 600 × 600/800 mm | ~623 kg |
| 20G1G3D740LNDNNNNN | PowerFlex 755 | 480 VAC | 8 | 740 A | 650 hp class | 500 hp class | 2453 × 600 × 600/800 mm | ~623 kg |
| 20G1G3D800LNDNNNNN | PowerFlex 755 | 480 VAC | 9 | 800 A class | 700 hp class | 600 hp class | 2453 × 1200 × 600/800 mm | ~1246 kg |
| 20G1G3D960LNDNNNNN | PowerFlex 755 | 480 VAC | 9 | 960 A | 800 hp | 700 hp | 2453 × 1200 × 600/800 mm | ~1246 kg |
| 20G1G3D1K0LNDNNNNN | PowerFlex 755 | 480 VAC | 9 | 1045 A class | 900 hp class | 750 hp class | 2453 × 1200 × 600/800 mm | ~1246 kg |
These five models provide a practical progression around the D960 configuration.
The D710 and D740 are appropriate for applications that remain within the Frame 8 capacity.
The D800, D960 and D1K0 provide progressively greater capacity within the Frame 9 range.
For a replacement project, the motor’s actual current and duty requirement should be compared with the existing drive before moving between these ratings.
The following five models represent other widely used members of the same brand’s PowerFlex product range and cover considerably smaller power levels than the D960.
| Model | Series | Voltage Class | Current Class | Approx. Power Range | Approx. Dimensions | Approx. Weight | Typical Application |
|---|---|---|---|---|---|---|---|
| 25B-D010N114 | PowerFlex 525 | 480 VAC | 10 A class | Approx. 4–7.5 kW | Approx. 180 × 100 × 200 mm | ~2–3 kg | Small pumps, fans and conveyors |
| 25B-D017N114 | PowerFlex 525 | 480 VAC | 17 A class | Approx. 7.5–11 kW | Approx. 180 × 100 × 200 mm | ~3 kg | General industrial machinery |
| 25B-D024N114 | PowerFlex 525 | 480 VAC | 24 A class | Approx. 11–15 kW | Approx. 180 × 100 × 200 mm | ~3–4 kg | Medium motor applications |
| 25A-D017N114 | PowerFlex 523 | 480 VAC | 17 A class | Approx. 7.5–11 kW | Approx. 180 × 100 × 200 mm | ~2–3 kg | Compact machine applications |
| 20F1ANC030JA0NNNNN | PowerFlex 753 | 480 VAC | 30 A class | Approx. 15–22 kW | Approx. 300 × 200 × 250 mm | ~15–20 kg | Industrial machinery and process equipment |
These models are not direct electrical replacements for the 20G1G3D960LNDNNNNN.
They represent different levels of the PowerFlex product range and are more appropriate for smaller motors.
The comparison is useful when selecting the correct drive family for a project because it shows how the physical size and current capacity change as the motor application becomes larger.
The difference between Frame 8 and Frame 9 is important when considering the D960 configuration.
| Feature | Frame 8 | Frame 9 |
|---|---|---|
| Typical Width | 600 mm | 1200 mm |
| Typical Depth | 600 or 800 mm | 600 or 800 mm |
| Cabinet Height | 2453 mm | 2453 mm |
| Basic Weight | Approximately 623 kg | Approximately 1246 kg |
| Typical Current Range | Lower high-power range | Higher high-power range |
| Installation | Floor-standing | Floor-standing |
| Handling | Heavy industrial equipment | Very heavy industrial equipment |
| Typical Use | Large motors | Very large motors |
The most noticeable difference is the cabinet width and weight.
A Frame 9 unit is approximately twice the width of the basic Frame 8 cabinet and approximately twice the basic weight.
This means that changing from a Frame 8 model to the D960 Frame 9 configuration may require changes to the mechanical installation even when the electrical system can accommodate the larger drive.
| Application | Typical Load | D960 Application Consideration |
|---|---|---|
| Large centrifugal pump | Variable torque | Light or Normal Duty may be applicable |
| Large cooling fan | Variable torque | Light Duty may be applicable |
| Industrial blower | Variable torque | Light or Normal Duty |
| Heavy conveyor | Constant torque | Normal or Heavy Duty |
| Large mixer | High starting torque | Heavy Duty consideration |
| Compressor | Process-dependent | Normal or Heavy Duty |
| Agitator | Variable/high torque | Heavy Duty consideration |
| Material handling | Constant torque | Heavy Duty consideration |
| Large process machine | Application-specific | Duty calculation required |
| Large rotating machinery | Application-specific | Motor current and overload determine sizing |
The D960 configuration should therefore be selected based on the actual machine rather than simply using the largest horsepower number shown in the drive table.
A 960 A-class drive requires careful electrical and mechanical planning.
The physical installation should begin with the equipment footprint.
The standard Frame 9 MCC-style arrangement is approximately 2453 mm high × 1200 mm wide × 600 or 800 mm deep.
Adequate room should be provided around the equipment for cable termination, ventilation, inspection and maintenance.
The floor must also be capable of supporting the approximately 1246 kg basic cabinet weight.
The transportation route should be checked before delivery.
For equipment of this size, the available doorway width, ceiling clearance, floor transitions, lifting points and unloading area can all affect installation.
The 960 A-class rating means that the electrical installation must be designed for substantial current.
Incoming conductors, protective devices, disconnecting equipment, grounding conductors and motor cables must be selected according to the actual installation conditions and applicable electrical requirements.
The motor cable installation should also be considered carefully.
High-power variable-frequency drives can produce electrical noise and high-frequency switching effects. Appropriate grounding and cable practices are therefore important.
The motor cable route should be planned together with control wiring and communication wiring to reduce unwanted interference.
Heat management is an important part of a high-power drive installation.
The 20G1G3D960LNDNNNNN uses forced-air cooling.
The electrical room or enclosure arrangement must provide adequate airflow and heat removal.
Ambient temperature should be controlled within the applicable operating range.
Dust, humidity and contamination should also be considered because restricted airflow can increase operating temperature and reduce equipment reliability.
For large drive rooms, the total heat generated by all installed electrical equipment should be considered rather than evaluating the D960 drive in isolation.
The motor’s nameplate current is one of the most important pieces of information when selecting the D960.
A motor’s horsepower rating alone is not sufficient.
The actual current depends on motor voltage, efficiency, power factor and operating conditions.
The motor voltage must also correspond to the intended drive output range.
The mechanical load should then be evaluated.
A large fan generally has a different torque profile from a conveyor or mixer.
A conveyor may require high torque during acceleration, while a centrifugal fan normally follows a variable-torque characteristic.
The drive duty rating should therefore be selected based on the actual machine.
The PowerFlex 755 platform is designed to integrate with larger industrial control architectures.
Depending on configuration, the drive can communicate operating commands, speed references, status information, fault information and other data to the surrounding control system.
This is particularly useful in large plants.
A centralized control system can monitor the drive while the drive handles the local motor-control functions.
For large process equipment, this type of architecture can make it easier to coordinate the motor with valves, pumps, fans, sensors and other equipment.
The exact communication functions depend on the configured drive options.
Some machines require more precise motor-speed control than a basic open-loop system can provide.
The PowerFlex 755 architecture supports feedback-oriented configurations through suitable hardware and options.
This can be useful when maintaining a controlled speed under changing load conditions is important.
Examples can include high-performance material handling, large rotating machinery and applications where motor speed needs to remain stable despite significant load changes.
The exact feedback hardware should be confirmed as part of the final catalog configuration.
Because the 20G1G3D960LNDNNNNN is a high-power industrial drive, maintenance planning should be treated as part of the system design.
Forced-air cooling components should be kept clean and inspected according to the applicable maintenance schedule.
Ventilation paths should remain unobstructed.
Electrical connections should be inspected and maintained according to the applicable procedures.
The surrounding area should also be kept reasonably clean to reduce contamination of the cabinet and cooling system.
Because of the high voltage and high current involved, maintenance must be performed under appropriate electrical isolation and safety procedures by properly trained personnel.
The 20G1G3D960LNDNNNNN is particularly suitable when several of the following conditions apply:
| Advantage | Description |
|---|---|
| 960 A output class | Designed for very large industrial motors |
| 900 hp Light Duty | High-capacity variable-torque applications |
| 800 hp Normal Duty | Large general industrial applications |
| 700 hp Heavy Duty | Demanding constant-torque applications |
| Frame 9 architecture | Designed for very high-power installations |
| Variable-speed control | Motor speed can be adjusted to process demand |
| Controlled acceleration | Helps reduce mechanical starting shock |
| Controlled deceleration | Provides controlled stopping behavior |
| Flexible architecture | Multiple control and interface options |
| Industrial integration | Suitable for larger automation systems |
| Large application range | Pumps, fans, conveyors, compressors and process machinery |
| Scalable product family | Related models available above and below the D960 |
The Allen-Bradley 20G1G3D960LNDNNNNN is a high-capacity PowerFlex 755 AC variable frequency drive designed for large industrial motor applications.
It belongs to the PowerFlex 755 series and uses a 480 VAC, three-phase, Frame 9 configuration.
Its primary current rating is 960 A, with approximately 900 hp Light Duty, 800 hp Normal Duty and 700 hp Heavy Duty motor capability.
The standard IP20 / NEMA / UL Type 1 MCC-style cabinet is approximately 2453 mm high × 1200 mm wide × 600 or 800 mm deep, with an approximate basic weight of 1246 kg.
The physical dimensions and weight clearly place this drive in the large industrial equipment category.
It is intended for applications such as large pumps, fans, blowers, compressors, conveyors, material-handling equipment, mixers, agitators and other high-power rotating machinery.
Its principal advantages are its high current capacity, large motor capability, flexible duty ratings, controlled acceleration and deceleration, configurable architecture, and suitability for integration into larger industrial automation systems.
The 20G1G3D960LNDNNNNN is particularly useful when a project requires an approximately 800 hp Normal Duty motor drive at the 480 VAC class.
For a practical installation, the motor’s nameplate current should be checked first, followed by the required duty classification, overload characteristics, acceleration requirements, ambient conditions, braking requirements, feedback requirements, communication requirements and enclosure arrangement.
The physical installation should also account for the approximately 1246 kg equipment weight and the 2453 × 1200 × 600/800 mm cabinet envelope.
For replacement applications, the complete catalog number should be retained rather than selecting a replacement based only on the 960 A rating, because the complete catalog number defines the specific configuration of the drive.