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The 20G11LC1K0JN0NNNNN is a large-frame, air-cooled AC variable frequency drive belonging to the PowerFlex 755 series.
It is designed for large industrial motor applications where high current capacity, stable variable-speed operation, industrial communication, flexible motor control and robust cabinet construction are required.
This particular configuration is a 400 VAC, three-phase, 1040 A drive with a Frame 9 construction. It uses forced-air cooling, an 800 mm deep MCC-style cabinet, Type 1 / IP20 protection, an integrated EtherNet/IP interface, AC input with DC terminals, and no dynamic-braking transistor.
The drive has a listed power capability of approximately 630 kW for light-duty applications, 560 kW for normal-duty applications and 500 kW for heavy-duty applications. The exact applicable rating depends on the load profile and duty classification.
One important detail is that the 20G11LC1K0JN0NNNNN is the configuration with a blank/no HIM operator interface. This distinguishes it from closely related configurations that include an enhanced LCD HIM or other operator-interface arrangements.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Family | PowerFlex 750-Series |
| Product Series | PowerFlex 755 |
| Product Type | AC Variable Frequency Drive |
| Product Configuration | Air-Cooled AC Packaged Drive |
| Model | 20G11LC1K0JN0NNNNN |
| Frame | Frame 9 |
| Input Voltage | 400 VAC |
| Input Phase | 3-phase |
| Rated Current Class | 1040 A |
| Cooling | Forced air |
| Enclosure | Type 1 / IP20 |
| Cabinet Style | 800 mm deep MCC style |
| Input Arrangement | AC input with precharge and DC terminals |
| Dynamic Braking | None |
| Communication | Embedded EtherNet/IP |
| Operator Interface | Blank / No HIM |
| EMC Configuration | Filtered, CM jumper installed |
| Intended Application | Large industrial motor control |
The PowerFlex 755 family is positioned for demanding industrial motor-control applications, including pumps, fans, conveyors and other large rotating equipment.
The large Frame 9 configuration makes this particular model considerably different from compact drives used in small machines. It is intended for plant-level electrical installations, MCC areas and large industrial equipment.
| Parameter | Specification |
|---|---|
| Model | 20G11LC1K0JN0NNNNN |
| Brand | Allen-Bradley |
| Series | PowerFlex 755 |
| Drive Type | AC Variable Frequency Drive |
| Input Voltage | 400 VAC |
| Input Phase | 3-phase |
| Rated Current | 1040 A |
| Light-Duty Rating | 630 kW |
| Normal-Duty Rating | 560 kW |
| Heavy-Duty Rating | 500 kW |
| Frame Size | Frame 9 |
| Cooling | Forced air |
| Enclosure Type | Type 1 |
| Protection Rating | IP20 |
| Cabinet Style | 800 mm Deep MCC Style |
| Cabinet Depth | 800 mm class |
| Input Type | AC input with precharge |
| DC Terminals | Yes |
| Dynamic Braking | None |
| Brake Transistor | No |
| EMC Filter | Yes |
| CM Jumper | Installed |
| Embedded EtherNet/IP | Yes |
| Integrated Motion | No |
| Operator Interface | Blank / No HIM |
| PID Control | Supported |
| Safety Functions | Suitable for safety-related functions when properly configured |
| Operating Temperature | Approximately -20 to 60 °C, application dependent |
| Storage Temperature | Approximately -40 to 70 °C |
| Cooling Method | Forced-air cooling |
| Installation Type | Large industrial cabinet / MCC |
| Approx. Cabinet Depth | 800 mm |
| Approx. Width | Configuration-dependent |
| Approx. Height | Configuration-dependent |
| Approx. Weight | Large-frame configuration; verify final shipping weight from the specific mechanical configuration |
The 800 mm figure is the cabinet-depth classification for this MCC-style configuration. It should not be interpreted as the complete height × width × depth dimension of the finished installation.
For a Frame 9 packaged drive, the overall dimensions depend on the exact enclosure arrangement and mechanical configuration. Therefore, the final dimensional drawing should be used for cabinet design, transportation planning and installation clearance.
Likewise, the weight should not be estimated from the dimensions of a small standalone drive. This is a large packaged Frame 9 assembly, and the final mass depends on the construction and selected options. For procurement and lifting planning, the actual equipment documentation should be treated as the controlling value.
The most important electrical characteristic of the 20G11LC1K0JN0NNNNN is its high-current 400 V architecture.
The catalog configuration is rated at 1040 A, with the following duty ratings:
| Duty Class | Power Rating |
|---|---|
| Light Duty | 630 kW |
| Normal Duty | 560 kW |
| Heavy Duty | 500 kW |
This distinction is important when matching the drive to a motor.
A pump with a relatively stable load may have a different drive-sizing requirement from a crusher, conveyor or hoist-type application that repeatedly demands high torque and overload capability.
For final selection, the motor’s rated voltage, full-load current, overload requirement, operating speed range and load characteristics should be considered together.
The 1040 A figure should therefore not be interpreted as meaning that every 1040 A motor application can automatically use the drive under every duty condition.
The catalog number 20G11LC1K0JN0NNNNN identifies a specific configuration of the PowerFlex 755 platform.
| Catalog Number Portion | General Configuration |
|---|---|
| 20G | PowerFlex 755 family |
| 11 | Packaged / large-frame configuration |
| L | 400 V class |
| 1K0 | 1040 A class |
| J | Specific current-generation/configuration designation |
| N | No dynamic braking |
| 0 | Standard associated configuration |
| NNNNN | No additional option selections represented in these positions |
The complete catalog number should always be treated as one configuration code.
For practical identification, the most important characteristics of this particular model are:
400 VAC + 1040 A + Frame 9 + 800 mm MCC style + IP20/Type 1 + air cooled + EtherNet/IP + no dynamic braking + no HIM.
The PowerFlex 755 platform is designed around the requirements of industrial motor control.
Unlike a small variable-frequency drive intended for a single machine, a Frame 9 PowerFlex 755 is built for large electrical installations and substantial motor loads.
The 20G11LC1K0JN0NNNNN is particularly suitable for plants where motors are large enough to require several hundred kilowatts of power.
The 400 V input class makes it appropriate for large industrial motors operating on 400 V three-phase systems.
The air-cooled construction provides a practical solution for removing heat from the drive’s power electronics. At this power level, thermal management is a major part of system reliability.
The integrated EtherNet/IP capability also makes the drive suitable for connection to a plant automation network.
This allows the drive to function as part of a larger control system rather than simply acting as an independent motor speed controller.
Large pumps are one of the most common applications for high-power variable-frequency drives.
A drive allows pump speed to be adjusted according to process requirements.
Instead of maintaining the motor at a fixed speed and relying entirely on valves or mechanical control methods, the drive can change motor speed to match the required flow or pressure.
Potential applications include:
For continuously operating pumps, the ability to match motor speed to actual process demand can be particularly useful.
Industrial fans can consume substantial amounts of electrical power, particularly when they operate continuously.
Variable-speed control allows airflow to be adjusted according to actual requirements.
Typical applications include:
The PowerFlex 755 platform is well suited to this type of application because it combines high power capability with industrial control functions.
Large conveyors frequently require controlled acceleration and deceleration.
A high-power drive can provide smoother motor-speed changes than a simple fixed-speed motor arrangement.
This can reduce mechanical shock on:
Large conveyors in mining, cement, aggregate handling, ports and heavy manufacturing can therefore be suitable applications.
Large compressors can require several hundred kilowatts of motor power.
Variable-speed operation can allow the compressor to respond to changes in production demand or system pressure.
The 400 V / 1040 A configuration provides the electrical capacity required for many large compressor installations.
Mining facilities use large motors for:
The large-frame PowerFlex 755 architecture is appropriate for these applications because the motor-control equipment can be integrated into a larger plant automation system.
Cement and aggregate plants contain numerous high-power motor loads.
Potential applications include:
The ability to control large motors while exchanging operational data with the automation system is valuable in these environments.
Large steel and metal-processing facilities can use high-power motors throughout the production process.
Possible drive applications include:
The drive can provide variable-speed control while allowing operating information to be incorporated into the plant’s control architecture.
The 1040 A current class is the main reason to select this model.
It is intended for motor loads that are far beyond the capacity of compact general-purpose drives.
For a large 400 V motor installation, having more than 1000 A of drive capacity provides a substantial operating range.
The drive can be applied to motors in the several-hundred-kilowatt range.
Its approximate ratings are:
| Duty | Rating |
|---|---|
| Light Duty | 630 kW |
| Normal Duty | 560 kW |
| Heavy Duty | 500 kW |
This gives engineers flexibility when matching the drive to different load characteristics.
The 400 V configuration is well suited to industrial plants using 400 V three-phase distribution.
For large motors, this provides a straightforward relationship between the plant electrical system, motor voltage and drive input/output voltage class.
Embedded EtherNet/IP is a major practical advantage for automated facilities.
The drive can exchange operating information with a controller or supervisory system.
Typical information can include:
This can reduce dependence on large numbers of individual hardwired signals.
The 800 mm deep MCC-style construction is designed around large industrial electrical installations.
It is better suited to electrical rooms, MCC areas and plant-level equipment than to small machine control panels.
The large enclosure format provides the physical space required for high-power electrical equipment and cooling arrangements.
High-power semiconductor equipment produces considerable heat.
The forced-air architecture provides active cooling for the drive power section.
Correct ventilation and maintenance are therefore essential.
Dust accumulation, blocked ventilation paths, excessive ambient temperature or deteriorated cooling components can negatively affect operating reliability.
This particular model is configured with no dynamic braking transistor.
That can be an advantage when the application does not require rapid regenerative deceleration.
It can also simplify the basic configuration where external or alternative braking arrangements are not required.
However, for high-inertia loads requiring rapid stopping, the braking requirement should be evaluated before selecting this exact configuration.
The model is configured as Blank / No HIM.
This is useful for installations where local operator interaction is not required because the drive is controlled through the automation system.
For example, a plant may have a central HMI or SCADA system through which operators issue speed commands and monitor drive status.
This configuration can therefore be suitable for centralized-control architectures.
One of the strongest features of the PowerFlex 755 family is its ability to operate as part of an industrial automation system.
The embedded EtherNet/IP interface allows the drive to exchange data with a controller.
A typical system can be structured as follows:
Controller → Network → PowerFlex 755 → Motor
At the same time, information travels in the opposite direction:
Motor → Drive → Network → Controller
This creates a two-way information path.
The controller can send a speed reference, while the drive can return actual speed, current, status, warnings and faults.
For a large production line, this can make motor control much easier to integrate.
The no-HIM configuration is particularly relevant to centralized automation.
Instead of placing a local keypad on every large drive, an industrial facility can use:
This can reduce unnecessary local interfaces and make the drive part of a coordinated automation architecture.
For a large plant with many motors, centralized monitoring can also make troubleshooting more efficient.
A Frame 9, 1040 A drive should be treated as major industrial electrical equipment.
The cabinet has an 800 mm depth class and requires suitable front and service access.
The final width and height depend on the actual configuration, so the installation should be designed using the specific mechanical drawing.
The actual packaged weight can vary substantially with the final cabinet configuration.
For transportation and lifting, the final shipping weight should be obtained before installation.
Because this is an air-cooled configuration, adequate ventilation is essential.
The installation should prevent hot exhaust air from being drawn back into the cooling intake.
The incoming electrical system should be designed around the drive’s rated voltage, current, short-circuit conditions and applicable protection requirements.
Large variable-frequency drives require an appropriately designed grounding and bonding system.
The motor cable should be selected with consideration for current, insulation, cable length, grounding and the characteristics of PWM motor-drive operation.
The following models are closely related PowerFlex 755 configurations and are useful comparison choices for large industrial applications.
| Model | Voltage | Current | Light Duty | Normal Duty | Heavy Duty | Frame | Enclosure | Depth | Weight kg |
|---|---|---|---|---|---|---|---|---|---|
| 20G11LC1K0JN0NNNNN | 400 VAC | 1040 A | 630 kW | 560 kW | 500 kW | 9 | Type 1 / IP20 | 800 mm | Configuration-dependent |
| 20G11LC1K2JN0NNNNN | 400 VAC | 1175 A | 800 kW | 710 kW | 560 kW | 9 | Type 1 / IP20 | 800 mm | Configuration-dependent |
| 20G11LC1K5JN0NNNNN | 400 VAC | 1480 A | 900 kW | 850 kW | 710 kW | 9 | Type 1 / IP20 | 800 mm | Configuration-dependent |
| 20G11LF710JN0NNNNN | 690 VAC | 710 A | 800 kW | 710 kW | 590 kW | 9 | Type 1 / IP20 / MCC style | 800 mm | Configuration-dependent |
| 20G11LF960JN0NNNNN | 690 VAC | 960 A | High-power class | High-power class | High-power class | 9 | Large-frame MCC style | 800 mm | Configuration-dependent |
| 20G11TD710JN0NNNNN | 480 VAC | 710 A | 650 HP | 600 HP | 450 HP | 9 | Open / large-frame | Configuration-dependent | Configuration-dependent |
The first three models are especially relevant when the motor voltage remains at 400 VAC.
The 690 V models become more appropriate when the motor and plant distribution are based on a 690 V system.
The 480 V alternative is useful for North American-style 480 V industrial systems and other installations using that voltage class.
| Model | Voltage | Current Class | Main Difference | Recommended Application |
|---|---|---|---|---|
| 20G11LC1K0JN0NNNNN | 400 V | 1040 A | Base 400 V high-power configuration | Large pumps, fans and conveyors |
| 20G11LC1K2JN0NNNNN | 400 V | 1175 A | Higher current capacity | Larger 400 V motors |
| 20G11LC1K5JN0NNNNN | 400 V | 1480 A | Very high current capacity | Extremely large 400 V motors |
| 20G11LF710JN0NNNNN | 690 V | 710 A | Higher-voltage architecture | Large 690 V motors |
| 20G11LF960JN0NNNNN | 690 V | 960 A | Higher current 690 V solution | Very large 690 V motors |
| 20G11TD710JN0NNNNN | 480 V | 710 A | 480 V configuration | Large 480 V motors |
For users who want to compare the target drive with other commonly encountered large industrial models, the following configurations provide a useful range.
| Model | Series | Voltage | Current / Power Class | Frame | Cooling | Enclosure | Approx. Depth | Weight kg |
|---|---|---|---|---|---|---|---|---|
| 20G11LC1K0JN0NNNNN | PowerFlex 755 | 400 V | 1040 A / 630 kW LD | 9 | Forced air | IP20 / Type 1 | 800 mm | Configuration-dependent |
| 20G11LC1K2JN0NNNNN | PowerFlex 755 | 400 V | 1175 A / 800 kW LD | 9 | Forced air | IP20 / Type 1 | 800 mm | Configuration-dependent |
| 20G11LC1K5JN0NNNNN | PowerFlex 755 | 400 V | 1480 A / 900 kW LD | 9 | Forced air | IP20 / Type 1 | 800 mm | Configuration-dependent |
| 20G11LF710JN0NNNNN | PowerFlex 755 | 690 V | 710 A / 800 kW LD | 9 | Forced air | IP20 / Type 1 | 800 mm | Configuration-dependent |
| 20G11LF960JN0NNNNN | PowerFlex 755 | 690 V | 960 A / high-power class | 9 | Forced air | Large MCC style | 800 mm | Configuration-dependent |
| 20G11TD710JN0NNNNN | PowerFlex 755 | 480 V | 710 A / 650 HP LD | 9 | Forced air | Open / Frame 9 | — | Configuration-dependent |
Voltage should normally be considered before current when comparing large drives.
| Motor Voltage | Suitable Drive Example | Reason |
|---|---|---|
| 400 VAC | 20G11LC1K0JN0NNNNN | Designed for large 400 V motors |
| 400 VAC | 20G11LC1K2JN0NNNNN | Higher current for larger motors |
| 400 VAC | 20G11LC1K5JN0NNNNN | Very high-current 400 V applications |
| 480 VAC | 20G11TD710JN0NNNNN | Suitable voltage class for large 480 V motors |
| 690 VAC | 20G11LF710JN0NNNNN | Suitable for large 690 V motor systems |
| 690 VAC | 20G11LF960JN0NNNNN | Higher-current 690 V applications |
A 400 V motor should not be matched to a 480 V or 690 V drive simply because the alternative has an equal or higher current rating.
The drive voltage class must be compatible with the motor and the electrical system.
| Application | Load Characteristic | Suitability |
|---|---|---|
| Large centrifugal pump | Variable torque | Excellent |
| Large cooling pump | Long continuous operation | Excellent |
| Industrial fan | Variable torque | Excellent |
| Process blower | Variable-speed operation | Excellent |
| Conveyor | High starting and acceleration demand | Excellent |
| Mining conveyor | Large continuous load | Excellent |
| Cement conveyor | Large material load | Excellent |
| Compressor | High continuous power | Very good |
| Crusher | High torque / demanding load | Very good |
| Steel plant auxiliary drive | Large industrial load | Excellent |
| Water-treatment pump | Variable process demand | Excellent |
| Large exhaust fan | Long operating hours | Excellent |
One of the main reasons to use a variable-frequency drive is the ability to regulate motor speed instead of continuously operating the motor at a fixed speed.
For variable-torque applications such as centrifugal pumps and fans, reducing motor speed can significantly reduce the mechanical power required.
The drive can therefore be used as part of an overall energy-management strategy.
However, actual energy savings depend on the application.
A conveyor with a constant mechanical load behaves differently from a centrifugal fan or pump.
Therefore, energy-saving potential should be evaluated using the actual operating profile rather than assuming a fixed percentage of savings.
For a high-power air-cooled drive, cooling-system maintenance is particularly important.
A basic maintenance program should include:
| Maintenance Item | Purpose |
|---|---|
| Cooling fan inspection | Maintain adequate airflow |
| Air-path inspection | Prevent overheating |
| Cabinet cleaning | Reduce dust accumulation |
| Electrical connection inspection | Prevent loose-connection heating |
| Grounding inspection | Maintain electrical safety |
| Network inspection | Maintain reliable communication |
| Fault-history review | Identify recurring problems |
| Motor-cable inspection | Identify insulation or connection problems |
| Ambient-temperature monitoring | Prevent thermal stress |
| Mechanical inspection | Identify vibration or abnormal noise |
The drive should be installed in an environment appropriate for its IP20 / Type 1 enclosure configuration.
It should not be treated as a sealed outdoor unit simply because it is a large industrial drive.
The 20G11LC1K0JN0NNNNN is closely related to the 20G11LC1K0AN0NNNNN, but the catalog configuration is different.
The J-version is the active configuration and is specified as:
This configuration is therefore especially appropriate for installations where the drive is expected to be operated through a centralized control system rather than through a local keypad.
Before choosing the 20G11LC1K0JN0NNNNN, the following information should be available.
| Selection Item | Required Information |
|---|---|
| Motor voltage | 400 VAC class |
| Motor rated current | Must be within the applicable drive rating |
| Motor power | Compare against the correct duty rating |
| Load type | Pump, fan, conveyor, compressor, etc. |
| Duty | Light, normal or heavy |
| Starting requirement | Standard or high starting torque |
| Overload | Required overload percentage and duration |
| Speed range | Minimum and maximum operating speed |
| Braking | Determine whether dynamic braking is required |
| Environment | Temperature, humidity, dust and altitude |
| Enclosure | IP20 / Type 1 suitability |
| Cooling | Adequate forced-air ventilation |
| Network | EtherNet/IP requirements |
| Local control | No-HIM configuration should be acceptable |
| Installation space | 800 mm depth class |
| Lifting | Large Frame 9 handling requirements |
| Cable arrangement | Incoming and motor cable routing |
| Grounding | Plant grounding system |
| Harmonics | System-level assessment where required |
The 20G11LC1K0JN0NNNNN is a high-power 400 VAC PowerFlex 755 AC drive designed for large industrial motor-control applications.
Its core specifications are 1040 A current capacity, 630 kW light-duty rating, 560 kW normal-duty rating, 500 kW heavy-duty rating, Frame 9 construction, forced-air cooling, Type 1/IP20 protection, 800 mm deep MCC-style construction and embedded EtherNet/IP communication.
The model is particularly well suited to large pumps, fans, conveyors, compressors, mining equipment, cement machinery, material-handling systems and other high-power rotating machinery.
Its high-current capability is the most obvious advantage, but the complete value of the drive comes from the combination of high power, industrial networking, flexible control, large-frame construction and integration into plant automation.
The no-HIM configuration is particularly useful for centralized-control systems where operators interact with the drive through a PLC, HMI or supervisory system rather than through a local keypad.
For applications requiring more current while remaining at 400 VAC, the 20G11LC1K2JN0NNNNN and 20G11LC1K5JN0NNNNN are logical alternatives.
For 690 V applications, the 20G11LF710JN0NNNNN and 20G11LF960JN0NNNNN are more appropriate comparison points.
For a 480 V system, a 480 V Frame 9 configuration should be selected instead of trying to substitute a 400 V drive.
The final selection should be based primarily on motor voltage, motor full-load current, duty classification, overload requirement and load characteristics, followed by enclosure, cooling, braking, communication and installation requirements.
In short, the 20G11LC1K0JN0NNNNN can be positioned as a large-frame, high-current, 400 V industrial variable-frequency drive for centralized and networked motor-control applications, particularly where a rugged MCC-style installation and several-hundred-kilowatt motor capacity are required.
| Item | Specification |
|---|---|
| Brand | Allen-Bradley |
| Product Series | PowerFlex 755 |
| Model | 20G11LC1K0JN0NNNNN |
| Product Type | High-Power AC Variable Frequency Drive |
| Input Voltage | 400 VAC |
| Input | 3-phase |
| Current | 1040 A |
| Light Duty | 630 kW |
| Normal Duty | 560 kW |
| Heavy Duty | 500 kW |
| Frame | 9 |
| Cooling | Forced air |
| Enclosure | Type 1 / IP20 |
| Cabinet Style | 800 mm Deep MCC Style |
| Depth | 800 mm class |
| Weight | Configuration-dependent; verify final equipment weight |
| Dynamic Braking | None |
| EMC Filter | Yes |
| CM Jumper | Installed |
| EtherNet/IP | Embedded |
| HIM | Blank / No HIM |
| Main Applications | Pumps, fans, conveyors, compressors, mining, cement, steel and process machinery |
| Main Advantage | High-current 400 V motor control with industrial network integration |
The 20G11LC1K0JN0NNNNN is therefore a strong choice for large-scale 400 V industrial motor applications where high output capacity, centralized automation, robust construction and flexible variable-speed control are more important than compact physical size.