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The 20G11LD1K3AN0NNNNN is a large-frame, air-cooled AC variable frequency drive designed for high-power industrial motor applications.
It belongs to the PowerFlex 755 drive family and is intended for applications requiring substantially higher motor power than compact or standard wall-mounted drives can provide.
The drive is rated for the 480 VAC class and has a continuous output-current rating of approximately 1365 A. Its published power ratings are approximately 1250 HP for Light Duty, 1100 HP for Normal Duty, and 900 HP for Heavy Duty.
The product uses a large Frame 9 construction and an approximately 800 mm-deep MCC-style enclosure. It is therefore intended primarily for large industrial electrical rooms, motor-control areas and process installations rather than small machine panels.
| Item | Specification |
|---|---|
| Product model | 20G11LD1K3AN0NNNNN |
| Product type | AC Variable Frequency Drive |
| Product family | PowerFlex |
| Product series | PowerFlex 755 |
| Drive construction | Air-cooled |
| Input voltage class | 480 VAC |
| Input phase | Three-phase |
| Input type | AC input with precharge |
| Output current | 1365 A |
| Light-Duty rating | 1250 HP |
| Normal-Duty rating | 1100 HP |
| Heavy-Duty rating | 900 HP |
| Frame | Frame 9 |
| Enclosure style | MCC-style |
| Enclosure rating | Type 1 |
| Protection rating | IP20 |
| Cabinet depth | 800 mm |
| Cooling | Forced air |
| Dynamic braking | None in the standard configuration |
| Filtering | EMC filter configuration |
| Installation | Floor-standing / cabinet installation |
| Application level | Large industrial motor control |
| Approximate equipment weight | ~1,300–1,500 kg |
| Approximate height | ~2,400–2,500 mm |
| Approximate width | ~1,000–1,200 mm class |
| Approximate depth | 800 mm |
| Category | Information |
|---|---|
| Brand | Allen-Bradley |
| Product family | PowerFlex |
| Product series | PowerFlex 755 |
| Product type | Industrial AC Drive |
| Model | 20G11LD1K3AN0NNNNN |
| Application category | High-power variable-speed motor control |
The PowerFlex 755 series is designed for industrial applications where motor speed, torque, acceleration, deceleration and process control need to be managed electronically.
The 20G11LD1K3AN0NNNNN is positioned toward the high-power end of this product family.
| Electrical Parameter | Specification |
|---|---|
| Model | 20G11LD1K3AN0NNNNN |
| Input voltage | 480 VAC class |
| Input frequency | 50/60 Hz class |
| Input phase | 3-phase |
| Input configuration | AC input with precharge |
| Output current | 1365 A |
| Light-Duty power | 1250 HP |
| Normal-Duty power | 1100 HP |
| Heavy-Duty power | 900 HP |
| Approx. Light-Duty metric equivalent | ~930 kW |
| Approx. Normal-Duty metric equivalent | ~820 kW |
| Approx. Heavy-Duty metric equivalent | ~670 kW |
| Frame size | 9 |
| Cooling | Forced air |
| Enclosure | Type 1 |
| Protection | IP20 |
| DC bus voltage class | Approximately 650 VDC |
| Dynamic braking | None |
| EMC filter | Included in specified configuration |
| Installation | Floor-standing |
| Cabinet depth | 800 mm |
The distinction between Light Duty, Normal Duty and Heavy Duty is important when selecting the drive for a motor.
A motor’s horsepower alone should not be used as the only selection criterion. Motor full-load current, overload requirements, duty cycle and actual load characteristics should also be considered.
One of the most useful characteristics of this model is that its capacity is expressed according to different operating-duty requirements.
| Duty Classification | Approximate Rating |
|---|---|
| Light Duty | 1250 HP |
| Normal Duty | 1100 HP |
| Heavy Duty | 900 HP |
| Output current | 1365 A |
Light-duty applications generally have comparatively moderate overload requirements.
The drive can support a motor application in the approximately 1250 HP class under the applicable light-duty conditions.
Typical examples can include variable-torque applications where the motor load changes according to process requirements.
For normal industrial operation, the approximate rating is 1100 HP.
This is useful for large industrial machinery that operates continuously but does not require the same overload capability as a severe heavy-duty application.
For demanding applications with greater torque requirements, the approximate rating is 900 HP.
Heavy-duty selection is particularly relevant for machinery such as conveyors and other loads where starting and acceleration can impose substantial torque requirements.
The 20G11LD1K3AN0NNNNN is a large industrial drive and requires considerably more installation space than compact VFDs.
| Mechanical Parameter | Approximate Value |
|---|---|
| Frame | 9 |
| Installation | Floor-standing |
| Cabinet depth | 800 mm |
| Approximate height | 2,400–2,500 mm |
| Approximate width | 1,000–1,200 mm class |
| Approximate depth | 800 mm |
| Approximate footprint | ~0.8–1.0 m² class |
| Approximate weight | 1,300–1,500 kg |
| Typical planning weight | ~1,400 kg |
| Cooling | Forced air |
| Cabinet style | MCC-style |
| Enclosure | Type 1 |
| IP rating | IP20 |
Because this is a large-frame industrial drive, the actual cabinet arrangement should be checked before designing the foundation, cable route, lifting arrangement or electrical room layout.
The approximate weight of this large Frame 9 configuration can be considered in the 1,300–1,500 kg range for preliminary planning.
A practical engineering planning value is approximately:
1,400 kg
| Weight Information | Approximate Value |
|---|---|
| Equipment weight class | Heavy industrial equipment |
| Approximate minimum planning value | ~1,300 kg |
| Typical planning value | ~1,400 kg |
| Approximate upper range | ~1,500 kg |
| Packaging weight | Additional |
| Transportation | Heavy equipment handling required |
| Floor loading | Must be evaluated |
The final shipping weight may be different depending on cabinet configuration, options and packaging.
The 20G11LD1K3AN0NNNNN is intended to control large three-phase AC motors by regulating the frequency and voltage supplied to the motor.
Instead of operating a motor at a fixed electrical frequency, the drive can vary motor operating speed according to the requirements of the machine.
This is especially useful for large industrial systems where direct-on-line starting would cause excessive starting current or mechanical shock.
The large output-current capacity of 1365 A places this model in a high-power industrial category.
It can be used for motors in applications such as large conveyors, pumps, fans, blowers, material-handling systems, mining equipment and other process machinery.
A simplified operating sequence can be described as:
Three-Phase AC Input → Rectification → DC Bus → Inverter → Variable-Frequency AC Output → Motor
The drive receives electrical power from the incoming AC supply.
The incoming AC is converted into a DC bus voltage.
The inverter section then generates a controlled AC output for the motor.
By changing the output frequency and voltage, the drive can control motor speed and operating behavior.
This makes the drive considerably more flexible than a conventional motor starter.
The biggest advantage of the 20G11LD1K3AN0NNNNN is its 1365 A output-current rating.
This allows it to control very large industrial motors.
The high current rating makes it appropriate for applications where a conventional small or medium-size VFD would be insufficient.
The drive provides approximately:
This makes it suitable for large process equipment and heavy industrial machinery.
The drive allows motor speed to be adjusted rather than keeping the motor permanently at a fixed speed.
This is valuable for:
Large motors can produce substantial starting current when connected directly to the power supply.
Using a variable frequency drive allows the motor to accelerate progressively.
This can reduce mechanical shock during startup.
Controlled acceleration can reduce stress on:
This is particularly valuable for large mechanical systems with high inertia.
Large mining conveyors are one of the most appropriate application areas for a drive of this capacity.
Typical applications include:
A conveyor can contain a very large quantity of material.
The motor therefore needs to overcome substantial inertia during acceleration.
A high-power variable frequency drive can provide a controlled acceleration profile.
Cement production facilities use many large motors.
Possible applications include:
The drive can be used where a large motor requires adjustable speed and controlled acceleration.
Large motors are commonly used throughout steel-processing facilities.
Potential applications include:
The high-current capability of the drive makes it appropriate for large industrial motor loads.
The 20G11LD1K3AN0NNNNN can also be considered for large pump systems.
Potential applications include:
Variable-speed control allows the pump to operate according to process demand rather than remaining at maximum speed at all times.
Large fans can require hundreds of kilowatts of motor power.
Typical applications include:
A variable frequency drive allows fan speed to follow airflow requirements.
Large blowers are another possible application.
Examples include:
For variable-torque loads such as fans and blowers, adjustable speed can provide useful process flexibility.
Large material-handling systems often require high motor power.
Applications can include:
The drive can provide controlled acceleration and adjustable operating speed.
A large conveyor can be mechanically complex.
When a motor starts, torque passes through the motor shaft, coupling, gearbox and conveyor structure.
A sudden application of full torque can create mechanical shock.
Variable-speed control allows acceleration to be adjusted.
This can help improve:
For long conveyors, controlled acceleration can be especially valuable.
Pump systems frequently operate at different process loads.
The drive can allow the motor speed to be adjusted to match the required pumping condition.
Potential benefits include:
Actual energy savings depend on the pump system, piping arrangement and operating profile.
Fans often operate according to airflow requirements.
If airflow requirements decrease, reducing motor speed can be an effective way of adjusting system output.
This makes a variable frequency drive particularly useful in:
The 20G11LD1K3AN0NNNNN can form part of an industrial automation system.
A typical architecture can be represented as:
Operator Interface → PLC → Industrial Network → Drive → Motor → Machine
The automation controller can issue commands such as:
The drive can return information such as:
This makes it suitable for centralized process-control systems.
A large industrial drive benefits from structured preventive maintenance.
| Maintenance Area | Recommended Inspection |
|---|---|
| Cooling fans | Check rotation and abnormal noise |
| Air passages | Keep clear |
| Cabinet | Remove dust and contamination |
| Power terminals | Inspect for loose connections |
| Grounding | Verify grounding integrity |
| Motor cables | Inspect insulation and terminals |
| Control wiring | Check connectors |
| Communication | Check network condition |
| Fault history | Review repeated faults |
| Temperature | Monitor abnormal heat |
| Cabinet ventilation | Ensure unrestricted airflow |
Because the equipment is approximately 1,400 kg class, mechanical installation must be planned carefully.
Important considerations include:
The drive should be installed in a suitable industrial environment with adequate ventilation.
The product uses forced-air cooling.
High-power semiconductor devices generate considerable heat during operation.
Therefore, the cooling system is critical to reliable operation.
Important maintenance items include:
A blocked airflow path can cause excessive internal temperature.
| Environmental Factor | Importance |
|---|---|
| Ambient temperature | High |
| Airflow | Very high |
| Dust | High |
| Humidity | High |
| Corrosive atmosphere | High |
| Installation altitude | Important |
| Electrical-room ventilation | Very high |
| Cabinet cleanliness | High |
| Floor loading | Very high |
| Maintenance access | High |
For mining, cement and similar environments, environmental protection and maintenance planning are particularly important.
The following models are useful alternatives or comparison points within the same high-power PowerFlex 755 family.
| Model | Series | Voltage | Output Current | LD Rating | ND Rating | HD Rating | Frame | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|---|---|---|
| 20G11LD1K2AN0NNNNN | PowerFlex 755 | 480 VAC | 1135 A | 1100 HP | 1000 HP | 800 HP | 9 | ~2450 × 1200 × 800 mm | ~1300 kg |
| 20G11LD1K3AN2NNNNN | PowerFlex 755 | 480 VAC | 1365 A | 1250 HP | 1100 HP | 900 HP | 9 | ~2450 × 1200 × 800 mm | ~1400 kg |
| 20G11LD1K3JN0NNNNN | PowerFlex 755 | 480 VAC | 1365 A | 1250 HP | 1100 HP | 900 HP | 9 | ~2450 × 1200 × 800 mm | ~1400 kg |
| 20G11LD1K3JN2NNNNN | PowerFlex 755 | 480 VAC | 1365 A | 1250 HP | 1100 HP | 900 HP | 9 | ~2450 × 1200 × 800 mm | ~1400 kg |
| 20G11LD1K4AN0NNNNN | PowerFlex 755 | 480 VAC | 1420 A | 1350 HP | 1250 HP | 1000 HP | 9 | ~2450 × 1200 × 800 mm | ~1450 kg |
The closest electrical alternatives are the other 1K3 configurations because they retain the same approximately 1365 A capacity.
The 1K4 configuration is useful where additional motor-current capacity is required.
| Parameter | 20G11LD1K2AN0NNNNN | 20G11LD1K3AN0NNNNN | 20G11LD1K3AN2NNNNN | 20G11LD1K3JN0NNNNN | 20G11LD1K4AN0NNNNN |
|---|---|---|---|---|---|
| Product family | PF755 | PF755 | PF755 | PF755 | PF755 |
| Voltage | 480 VAC | 480 VAC | 480 VAC | 480 VAC | 480 VAC |
| Current | 1135 A | 1365 A | 1365 A | 1365 A | 1420 A |
| LD | 1100 HP | 1250 HP | 1250 HP | 1250 HP | 1350 HP |
| ND | 1000 HP | 1100 HP | 1100 HP | 1100 HP | 1250 HP |
| HD | 800 HP | 900 HP | 900 HP | 900 HP | 1000 HP |
| Cooling | Air | Air | Air | Air | Air |
| Frame | 9 | 9 | 9 | 9 | 9 |
| Enclosure | Type 1 | Type 1 | Type 1 | Type 1 | Type 1 |
| IP | IP20 | IP20 | IP20 | IP20 | IP20 |
| Depth | 800 mm | 800 mm | 800 mm | 800 mm | 800 mm |
| Height | ~2450 mm | ~2450 mm | ~2450 mm | ~2450 mm | ~2450 mm |
| Width | ~1200 mm class | ~1200 mm class | ~1200 mm class | ~1200 mm class | ~1200 mm class |
| Weight | ~1300 kg | ~1400 kg | ~1400 kg | ~1400 kg | ~1450 kg |
For a broader comparison, the following models cover different power levels within the same product portfolio.
| Model | Series | Voltage Class | Current / Capacity | Typical Use | Approx. Dimensions | Approx. Weight |
|---|---|---|---|---|---|---|
| 25B-D2P3N114 | PowerFlex 525 | 480 VAC class | ~2.3 A | Small motors | ~180 × 100 × 150 mm | ~1.5 kg |
| 25B-D6P0N114 | PowerFlex 525 | 480 VAC class | ~6 A | Small machinery | ~180 × 130 × 170 mm | ~2–3 kg |
| 20F11ND077JA0NNNNN | PowerFlex 753 | 480 VAC class | ~77 A class | Medium industrial motors | Frame dependent | Frame dependent |
| 20G11LD1K2AN0NNNNN | PowerFlex 755 | 480 VAC | 1135 A | Large industrial motors | ~2450 × 1200 × 800 mm | ~1300 kg |
| 20G11LD1K4AN0NNNNN | PowerFlex 755 | 480 VAC | 1420 A | Very large industrial motors | ~2450 × 1200 × 800 mm | ~1450 kg |
This is a compact drive designed for a much smaller motor range.
| Parameter | Specification |
|---|---|
| Model | 25B-D2P3N114 |
| Product family | PowerFlex |
| Series | PowerFlex 525 |
| Voltage class | 480 VAC |
| Current | ~2.3 A |
| Construction | Compact |
| Cooling | Air |
| Approx. height | ~180 mm |
| Approx. width | ~100 mm |
| Approx. depth | ~150 mm |
| Approx. weight | ~1.5 kg |
| Typical application | Small pumps, fans, conveyors |
It is not a direct electrical replacement for the 20G11LD1K3AN0NNNNN.
Its value is that it provides a compact solution when the motor power is much smaller.
This is another compact model.
| Parameter | Specification |
|---|---|
| Model | 25B-D6P0N114 |
| Product family | PowerFlex |
| Series | PowerFlex 525 |
| Voltage class | 480 VAC |
| Current | ~6 A |
| Construction | Compact |
| Cooling | Air |
| Approx. height | ~180 mm |
| Approx. width | ~130 mm |
| Approx. depth | ~170 mm |
| Approx. weight | ~2–3 kg |
| Typical application | Small industrial machinery |
This model belongs to the PowerFlex 753 family and is aimed at a considerably lower power range.
| Parameter | Specification |
|---|---|
| Model | 20F11ND077JA0NNNNN |
| Series | PowerFlex 753 |
| Voltage | 480 VAC class |
| Current | ~77 A class |
| Type | Industrial AC drive |
| Cooling | Forced air |
| Application | Medium-power motor control |
| Typical loads | Pumps, fans, conveyors |
| Frame | Application dependent |
| Dimensions | Frame dependent |
| Weight | Frame dependent |
This model is more appropriate when the motor current is significantly below the 1365 A requirement.
This is one of the closest alternatives to the subject model.
| Parameter | Specification |
|---|---|
| Model | 20G11LD1K2AN0NNNNN |
| Series | PowerFlex 755 |
| Voltage | 480 VAC |
| Output current | 1135 A |
| Light Duty | 1100 HP |
| Normal Duty | 1000 HP |
| Heavy Duty | 800 HP |
| Frame | 9 |
| Cooling | Air |
| Enclosure | Type 1 |
| IP | IP20 |
| Depth | 800 mm |
| Approx. height | ~2450 mm |
| Approx. width | ~1200 mm class |
| Approx. weight | ~1300 kg |
This is a higher-capacity comparison model.
| Parameter | Specification |
|---|---|
| Model | 20G11LD1K4AN0NNNNN |
| Series | PowerFlex 755 |
| Voltage | 480 VAC |
| Output current | 1420 A |
| Light Duty | 1350 HP |
| Normal Duty | 1250 HP |
| Heavy Duty | 1000 HP |
| Frame | 9 |
| Cooling | Air |
| Enclosure | Type 1 |
| IP | IP20 |
| Depth | 800 mm |
| Approx. height | ~2450 mm |
| Approx. width | ~1200 mm class |
| Approx. weight | ~1450 kg |
This model is particularly useful when the motor current is higher than the 1365 A capacity of the subject model.
| Motor Requirement | Suggested Model Class | Reason |
|---|---|---|
| Small motor | 25B-D2P3N114 | Compact drive |
| Small/medium motor | 25B-D6P0N114 | Higher compact-drive capacity |
| Medium industrial motor | 20F11ND077JA0NNNNN | PowerFlex 753 |
| Large motor around 800–1100 HP | 20G11LD1K2AN0NNNNN | 1135 A class |
| Large motor around 900–1250 HP | 20G11LD1K3AN0NNNNN | 1365 A class |
| Larger motor around 1000–1350 HP | 20G11LD1K4AN0NNNNN | 1420 A class |
The final selection should always be based on actual motor full-load current and required overload performance.
| Feature | Fixed-Speed Starter | 20G11LD1K3AN0NNNNN |
|---|---|---|
| Adjustable motor speed | Limited | Yes |
| Controlled acceleration | Limited | Yes |
| Controlled deceleration | Limited | Yes |
| Large motor control | Yes | Yes |
| Process speed adjustment | Limited | Yes |
| Motor operating feedback | Limited | Advanced |
| Automation integration | Limited | Yes |
| Large conveyor suitability | Possible | Very suitable |
| Large pump suitability | Possible | Very suitable |
| Large fan suitability | Possible | Very suitable |
The 20G11LD1K3AN0NNNNN is especially attractive where the motor represents a significant portion of the machine’s total power consumption.
A high-power drive can provide a central point for controlling the motor.
Instead of treating the motor as a simple on/off device, the drive becomes part of the machine’s control architecture.
This can improve operating flexibility and make the motor’s behavior easier to coordinate with the rest of the process.
When using this drive, the following points should be checked during project engineering:
| Engineering Item | Why It Matters |
|---|---|
| Motor voltage | Must match drive output requirements |
| Motor full-load current | Critical for drive selection |
| Motor power | Determines basic capacity |
| Duty classification | Determines allowable operating capacity |
| Overload requirement | Important for heavy loads |
| Acceleration time | Affects motor and drive loading |
| Deceleration time | Affects braking requirements |
| Load inertia | Important for dynamic operation |
| Ambient temperature | Affects thermal performance |
| Altitude | Can affect cooling and rating |
| Cable length | May affect motor-side requirements |
| Grounding | Important for safety and EMC |
| Ventilation | Critical for air-cooled drives |
| Maintenance access | Required for service |
| Floor loading | Important because of ~1.4-ton weight |
| Category | Final Specification |
|---|---|
| Model | 20G11LD1K3AN0NNNNN |
| Brand | Allen-Bradley |
| Family | PowerFlex |
| Series | PowerFlex 755 |
| Product | Air-Cooled 755 AC Drive |
| Voltage | 480 VAC |
| Output current | 1365 A |
| Light Duty | 1250 HP |
| Normal Duty | 1100 HP |
| Heavy Duty | 900 HP |
| Frame | 9 |
| Cooling | Forced air |
| Enclosure | Type 1 |
| Protection | IP20 |
| Cabinet depth | 800 mm |
| Approx. height | 2400–2500 mm |
| Approx. width | 1000–1200 mm class |
| Approx. weight | 1300–1500 kg |
| Typical planning weight | ~1400 kg |
| Main applications | Conveyors, pumps, fans, blowers, mining and process machinery |
| Dynamic braking | None in standard configuration |
| Input | AC with precharge |
| Installation | Floor-standing |
The 20G11LD1K3AN0NNNNN is a high-capacity industrial AC drive intended for very large motor applications.
Its 1365 A output-current rating, 1250 HP Light-Duty rating, 1100 HP Normal-Duty rating and 900 HP Heavy-Duty rating place it firmly in the large industrial-drive category.
Its strongest applications are large conveyors, mining equipment, pumps, fans, blowers, material-handling machinery and other high-power process equipment.
The Frame 9, 800 mm cabinet depth, forced-air cooling and large floor-standing construction make it suitable for dedicated industrial electrical installations rather than compact machine-control cabinets.
The main advantages are high motor capacity, adjustable speed, controlled acceleration and deceleration, integration into industrial automation systems, and suitability for large mechanical loads.
For a slightly lower current requirement, 20G11LD1K2AN0NNNNN is a useful comparison.
For the same 1365 A capacity with different configuration options, 20G11LD1K3AN2NNNNN, 20G11LD1K3JN0NNNNN, and 20G11LD1K3JN2NNNNN are closely related choices.
Where additional capacity is needed, 20G11LD1K4AN0NNNNN is a suitable higher-current comparison.
One important point for procurement and replacement planning is that this particular 20G11LD1K3AN0NNNNN catalog configuration has reached discontinued status, so an engineering replacement should not be selected by horsepower alone. The replacement should be checked against voltage, motor current, duty rating, enclosure, cooling arrangement, installed options, control requirements and mechanical dimensions.